SOVIET HANDBOOK ON ELECTRONIC TUBES
Document Type:
Collection:
Document Number (FOIA) /ESDN (CREST):
CIA-RDP80T00246A063400150001-1
Release Decision:
RIPPUB
Original Classification:
S
Document Page Count:
690
Document Creation Date:
December 22, 2016
Document Release Date:
December 8, 2011
Sequence Number:
1
Case Number:
Publication Date:
July 5, 1962
Content Type:
REPORT
File:
Attachment | Size |
---|---|
CIA-RDP80T00246A063400150001-1.pdf | 36.49 MB |
Body:
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
COUNTRY USSR/East Germany
SUBJECT Soviet Handbook on Electronic Tubes
I~Jf? T~~hn~~~,l c_}lq-c~c_TionSTbc_~ ".>~ c?I~?c^~fvc~
TO , Erc-Y
DATE OF
INFO.
PLACE &
DATE: ACQ.
Comments:
English-language translation of the handbook consisting of
64
and bound in.three s
50X1-HUM
2.#,'A tab a ion of electrovacuum and semiconductor devices appearing in
Volume I has been extracted and is attached to this report as an appendix. _
This tabulation is essentially a complete listing of the devices covered
in the five-volume series, except that type numbers for magnetrons ar'e
not given. According to the index for the series, given in Volume I.
magnet ro s are covered in Volume TV., Volumes II through V are not 50X1-HUM
available. For convenience, the tabulation has been rearranged fr
original numero-alphabetical listing to a class list y&u
%tribution indiccf.d bi
ARMY W XI NA I R NSA I#X OCR
Field distribution by "#".)
DIA
USIA
3
2
Ix AW NIC 11 X1
X JCS v
50X1-HUM
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Next 1 Page(s) In Document Denied
Iq
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S -E -C -R-E -T
-1-
A P P E N D I X
GOST # Old Types
RECEIVING TUBES
1A1II
15111
1B211
1E17B
1E18B
1124B
17K29B
06112B
-
-
4-2
CK505AX
1R5; DK 91
1S5; DAF 91
1I 211
181E
1T4; DF 91
1K211
106-GT/G
CK507AX
11155
11165
11122B
1II24B
1C121I
DC 96
1u1c
1u7C
1B3/8016
111,1111
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
S-E-C-R-E-T
-2-
GO,= # Old Types
2A1C A K2--10
2A2C ,WII2-10
2A3E 2A3C
23K14E -
2 C15E -
U27.1
2E2711
2?K28J1
211111
211211
2115E
21119E
21129.1[
2112917
2C3A
2C4C
2C14B
2R1Ji
2mC
3A6A
3K1E
312B
3JIK 1E
3C65
3075
3916C
3L1811
Foreiun Eauivp);ent
LG-16
3S4; IL 92
2A3
2X2/879
3B2
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
-3-
GOST # Old Types
Foreign Eguivlent
4A5C A-1-A
411U -
41110C VT-127-D
VT-127-D
4C3C -
-
4116C 4A2 , 4LTM
-
5L1,3C -
5u4G
5114C -
5240
548C
599C
5L9C-E
5L1211
6A21I
6BE6; 6H31; EK 90
6A311
6BN6
6A7
6SA7
6A7-E
6A8
6A8
6A10C
68A7
6ES 6B8; VT-93
6B1II
6r1 6SR7
6P2 6sQ7
6P311
61'7
6A3A Audi
6A4i, 6X1E
EABC 80
6Q7
559
9004
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
S-E-C-R-E-T
-4-
OOST
6A6A
6A6A-B
6A8A
6A1OZ
6E1II
6E5C
6Et1B
6X1B-B
6)K]JK
6)K1II
6}K1II-B
6x11 7-E
6EC2E
6EC2E-B
6EC2II
6XC2II--B
6}K2II-E
6 K3
6EC3II
6E4
6X4-E
6)K4II
6Et5B
6 K5B -B
Old Z es
Foreign Eauivalent
6E5
CK5702
954
6AK5; 6F 32; EF 96
CK5639
6is6; 6F 33
6SH7
6AG5
6AC7
6AU6; EF 94
2-62-D
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
S-E-C-R-E-T
-5-
GOST #
Old Types
Foreign Equivalent
6)1(7
6J7
6)1(8
6'sJ7
6)K8-E
6)K9B
6)1(911
E1. 80F
6)K911-E
6)1(108
6)K10B -B
6)1(1011
6)1(1111
611331
6(13
VR-126
6)1(2111
6}K221I
6)1(2311
6)R28B
6)K29B
6H11I
ECH 81; 6AJ8
6K1B
6K 1)K
956
61(131
61(111
9003
61(3
6SI 7
61(4
6337
6x411
6BA6; 6F 31; EF 93
6x411--B
6K4I1-E
61(7
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
S-E-C-R-E-T
-6-
,
6K9C 6K9M
6J17
61.7
6H1II
6H1II--B
6H1II-E
6H1II-YI
6H2II
6H211 -B
6H2II-E
6H3II
2C51
6H3II-B
6H3II--YI -
-
6H411 12H4H
12AV7
6H5II -
-
6H5C 6H11
6AS7GT
6H61I -
6H611-K -
-
6H7C -
6N7GT
6H8C 6H8M
6SI17GT
6H8C-E -
-
6H9C 6H9M
65L7GT
6H9C-E -
-
6H1OC 6H10M
6sc7
6H12C -
5687
6H13 C -
6A37GT
6H141I
ECC 84
6H15II 6H15
6J6; ECC 91; 6CC31
6H16s -
-
GOST
Old ,des
Foreign Eauiyalent
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
S-E-C-R-E-T
-7- 50X1-HUM
40ST # Old Types
6H17B
611111
611111-B
611111-E
Foreic Ecauivalent
6AQ5; EL 9o; 6L 31
6113C 6113 6L6
6113C-E -
6116C -
6117C 6117
6118C 6b16C
6119
6119-E
61113C
6111411
6111511
6111811
61120C
61121C
6112311
6C1(
6C111
6C2E
6C211
6C211-B
6C2C
6C3B
6C311
6V6GT
6BG6G
6U6GT
6AG7
El 84; 6BQ5
6CB5
5516
955
9002
6J4
6J5
6K4A
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
S-E-C-R-E-T
-
8-GOT # Old TPYogs
6C4C
6C5A
6C5C
6C6B
6C65-B
6C7B
6?7B-B
6C8C
6C9A
6C10A
6C11A
6C13A
6C15II
6C16A
6C171c
6C18C
6C19II
6C20C
6C21A
6CQ8B
6C29B
"1U
6X2II
6X211-B
6X21-E
6X211-1
6X6C
Foreign Equivalent
6B/o
2040
6C5; 6C5QT
2043
6884
6.L5
6116aT
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
S-E-C-R-E-T
-9- 50X1 -HUM
GOST f O1d Tunes
6X6C-E
6X7B
6L14H
694II-B
694II-E
6L(5C
6Li101I
691311
6L[15C
6L117C
6919II
63511
6 3511-YI
63611
6 36r1--E
7112C
71112C
10}1(1Ji
10) 3J1
1OX12C
10II12C
10311103
12P1
1212
1211Ji
Foreirrn Eouivalent
6x4
6x5; 6x5GT
68,4
12SR7
12SQ7
12SJ7
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
S-E-C-R-E-T
-10-
0OAT # Old Tres Foreign Equivalent
12KU
-
12K3
- 12SK7
12K4
- 12537
12H10C
12H1OM 12SC7
12H11C
12H11M 12SH7
12II4C
12A6
121117.)1
12C3C
12X3C
141II
12X11I
SCILLATOR TUBES 25?600 MC/3
rY--4
- -
rY-4A
-
rY-5A
r%-5A -
PY-5E
P-511A -
PY-8
rK-300 -
rY-10A
r,-10A -
rY-.OB
T--10PA -
rY--11A
P-15A -
Pt 12A
r-880 -880
rY-13
D-813 813
I'Y-15
11-15 -
PY*-16B
rY-17
I~15PA
- Qc O.3-10
r~ 18
- QQVO,3-20
rY-21$
- -~-- -
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
S-E-C-R-E-T
-11-
GOST
Old Tunes Foreign Equivalent
PY-22A
-
M--23A
-
PY-23B
-
PY-24A
-
PY-25B
-
-
PY--26A
-
-
PY-27A
-
-
PY-27B
827P
827R
PY-28A
-
PY--28B
-
-
PY-29
829
829-B
M -30A
-
PY--32
832
832_A
PY--33B
PY-33
-
PY-34B
-
PY-35B
-
-
PY 36B
-
-
PY-37B
-
_
PY-38A
-
_
PY-39B
-
_
PY-50
U-50
_
PY--72
PY-80
11-800
PY--81
PY-89A
889A
889-A
PY-89B
889E
8898-A
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
S-E-C-R-E-T
-12-
GOST Old T-rms
03C]ILLATOR TUBES ABOVE 600 MQ
rC-1B -
rc-2B -
Foreivn Equivalent
rC-3S - -
rC-4 - -
rC-9B JO-9 LD 9
rC-90B JIA,-90 LD 90
TRAVEG WAVE TUBES
YB-6
YB-7
YB-14
1B-204
YB-205
rr-1
PULSE TUBES
PULSE A , PLIFIERS
rUt $ rx--3 100
rM-4A -
P11-5E -
m6B JIA-6
rL1-7B JIA-7
PH-3 U-3000
LD 6
LD 7
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
S-E-C-R-E-T
-13-
COST # Old Types
P14-10 r-488
P14--11E J1,1I-11
P1--12B JIA-12
PLI-13 p14-130
PR-13B -
P4-145 -
P14 155 -
rh16E -
P14-17 P-480
PIS 18B P1--300
r1-19B -
P1-20 -
P14--215 -
P14-22 PC-5
PM-23B
Foreign Equivalent
LD 14
NT 90
P14--24A
-
P14 30
3E29
3E29
P1-705
JIA-70
LD 70
P1--150
-
PULSE VACUUM DIODES
BH1-520 -
BLI1-530 -
BUI1-1532 -
B11-18/32 BYI1-20 32
B11-2735 -
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
S-E-C-R-E-T
GO$T # Old Tunes Foreign Equivalent
BLit-30 25 BAMA
BYI1-7032 BAUI4A
BYI1-100 50 BA91A
B I2-5 30
BYI2-2735 -
B12-?O/32 - -
B142-100/50
- -
Pi SE MODtLTORS
PM -1B
PMI -2B
PMYi 3
rMN-4B
PM1 5
-
-
MR-6
-
I'MYI-7
-
PMLF-30
M,-30450
PMI'I-83
P-483
PMM-85
P-485
PMYI-89
r-489
PMYI-90
r-490
POWER TUBES
PK-1A
17KO-250
PK-2A
I'KP-500
PH-3A
r-100A
PK-4A
-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
S-E-C-R-E-T
-15-
GOST -
PK-6A
PK-71
PM-1A
PM-51A
PM-57
PM-60
P-70
PM-100
Old T Des Foreign Eauiva -ent
P-471
M-20/35
M-451
YB-180,M-457
M-600
1470
M-1000
471A
RECTIFIER TUBES
B1-0,02/20
B20/20
B1-0,03/13
B13/30
B1-0,05/12
VU-111-D
VU-111-D
B1-0,05/70
B1-0,06/25
B1-0,06/30
K-30
B1-0,075/2,5
V-1906-D
V-1906-D
B1-0,1/30
705A
705A
B-0,1/40
B40/100
B1-0,2/40
BA2
B1-0,3/70
B70/1000
B1-0,45/40
BA1
B1-1/2,5
PP1-0,25/1,5
PP-0,8/1,6;BP-0,251500
PP1-3/4000
PPC-3/400
P-807
807
PP1-0,5/5
BP-1,5/5000; PP-1,5/5
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
S-E -C -R-E-T
-16-
SST Old vies Foreip-n Equivalent
IT1-0,5/20 -
rr1-2/16 -
rrl-6/15 -
P-3 ' PE-6
P-4
DISCHA,R(}E TUBES
EI =CTRO J TCI TUB, ES
J04 1(1-5
m5 HA-6
cr1II
cr1II-B
Cr11I-E
Cr211
Cr2C
Cr3c
Cr4C
CP5B
cr5B -B
cr6C.
S-E-C-R-E-T
MM S' A ZERS
75C5-30 VR-75/30
105C5-30 VR-105/30
150C-30 VR--150/20
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
S-E-C-R-E-T
-17-
GOST ;`. Old Tyres Forgic n Equivalent
CP151I -
01611
-
CP201C CP10C
CP202B CP11B
CP301C CP7C
CP302C Cr8C
CP303C CP9C
CP304C CP12C
GAS FACED THYRATRONS
'TP1B-- TiE
TP1B -B -
TP1-0,02 0,5 -
-
-
-
Trl-0,10,3 TP-0,3/0,3;TP-884
884
TP1-0,1 1,3 TP-0,5/1,3.;TP-2050
2050
TP1-0,512 -
-
TP1-1/0,8 -
-
TPl-i,6/1 -
-
1TP1-2,5/4 TP-8/3;TP1-2,5 3
-
Trl-2,5/10 -
-
Trl-2,5/12 Tr-2,512
-
Trl-3,2/1 -
-
Trl-5/3 Tr-153
-
Tr1-6,41 -
-
Trl-12,51 -
-
Tr2-0,1 0,1 TP-T050 1050
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
S-E-C-R-E-T
-18-
Grp
gLd Types
Foreign Equivalent
T!'E-O,5/12
-
TP2-2,510
-
11
3
TI'3-0
2A21
,
,
TI3-2,510
-
TI'YI1-3/1
-
TI'Yil-10/ 1
-
-
TPIi1-35 3
-
3CL1.5
TPM1-50 5
TPi -3
_
TPM1-90 8
TPYI-90 8; MTX-4
TPHl-1308
-
TPYil-13010
TPYI--4
_
TPH1'-260 12
TPYil-325 16
TPYI-325/16; }
5 -
TPYil-4003, 5
TPH-4003, 5
TP1i1-400 16
-
TPH2-2003 , 5
-
YERCURY FILLFD IRONS
TP 1-5/2 TP-152; TP 1-2 , 5/2
TPl-6 15 TP-20/15
TP1-1515 -
TP 1-4015 TP-120/15
TPl -8515 TP1-400/15;TP1-130 15
COLD CATHODE THY,f TRONS
TXl PT-6 313C
TX2
TX3E
TX4B
PP1-0,0122,8
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
S-E-C-R-E-T
-19-
GOST # Old Types
IGNITRONS
X1-70/0, 8 YIM-50;M1-50 0,5
H1-1001,5 -
H1-10015 -
141-140/0, 8 -
K1-2001,5 -
141-350/0,8 -
M2-50/1,5 -
CATHODE RAY TUBES
5.103814 10-738; 5.11038
5JI03 8M -
6JIK1A -
6J1H1B -
6JIK1u -
6TiK1II -
7JI01M 7JI01A
7JI0551 7.11055
7JI055M -
8JIH1b -
8JIM3B 8JIM3
81O1BP 8JIO1BA
8JI0214 -
810291'I J10-729; 8JI029
8A029M -
8JI030H J10-.730; W030
8JI030M -
8J1039B .110-739; 8JI039
S-E-C-R-E-T
Foreign Equivalent
3BP1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
S-E-C-R-E-T
-20-
GO'ST # 01d Tvoes
10JU 2E -
10J1M2 -
10J10431 J10-743;101043
1311iR1B -
13JIK2B -
13JIM4B 13JW 1A
13J1M31B 10-731;131M31
13,1IM56YI 131M56
13JIM574 13J1M57
13.1M581( 13JIM58
13103X 131060;13103
13J104M 131061;13104
13105A -
13JI06M -
13JI07A -
131036B .10-736;13.!036
131037A 10-737;131037
131037M
13103714 -
1320481'I 10-748;131048
131049M 10-749;131049
131054A 10-754;131054
13JI054B -
131054M -
1310101M -
1310102M -
1310103M
51??
5CF7
5cp1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
S-E-C-R-E-T
-21-
GOST Old Types
13J10104A -
13II1C 13II1M
15311102 M-4
15 3II102A IIYIM-4
18JLK2B -
18JIK4B -
18J1K5E -
18JIK8)K -
18JIK9A -
18JIK9)K -
18JIK13JI -
183IR15 JIK-715A
18JIM1 -
18JIM35B J10-735;18311v135
18JI01A -
1831047A J10-747; 18.9047
1831047B -
20JIM1E -
23JIK2E -
23JIK4E -
23JIK7B -
23J1K41 JIK-741
23J1M3 4B 10-73 4; 23J1M3 4
23JIO1B -
23JI051A 10-751; 23.1051
30111C 30111M
30u6C -
Forei ;r, Eguiya]ent
7BP7
9GP7
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S-E-C-R-E-T
-22-
GOSTA
91d Leers Foreign EgMjv&1en
3 LAK2B
-
31JIM32B
10-732; 3131M32
12DP7
31JI033B
10-733; 31J1033
12GP7
35JIH2B
-
40JIH1B
-
43JIK2B
-
43JIK3B
43JIK4B
43.II (6B
43J1K7B
43.IIK8B
45JIM1B
53J1K2B
53JIK3b
53JIR4 A
53JIK5B
JIHt
JIM3.
X116
TO
JiM13
.r~17
Ts`~ 1
TV CAMERA TUBES
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GOST
JIK28
I M101
JIN201
.IIK202
JIN203
JIN401
JIM403
JI1404
8311101
8SH101A
JIH1
S-E-C-R-E-T
-23-
Old Tyner
J1K50;.AYI752
OTHER IMAGE TUBES
rmM--3
JIM7 J[K3M
INDICATOR TUBES
OP1 EP1
0P2 EP2
CKiP
CK1BP
CK1'
CR-ii
C112E HTC-40; TM-40
CK2BP CTC-1
CMB )5cT-18
Fore n iiva ent
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S-E-C-R-E-T
-24-
50X1-HUM
GOST # OldTy , s Foreign Equiv ent
cx3Br
CH4Br
Cx5r
c' r
Cx7r
Cx8P
CH9BP
CT2C
CIJP-3
CLiB-4
CI B-51
PHOTO TUpE3
4A2
4A3
A4
CM-PA
BC1 1
CM-6
L(B-6
BCL(-2
MB-3
-OA IA
OA 2A
OA -4
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S-E-C-R-E-T
-25-
GOST Old Tunes
PHOTO MULTIPL.IER TUBES
''3Y-1
~3Y-2
~3Y--11
~3Y-1IA
c~3Y-11B
~3Y--12
OY--12A
43Y-13
NY-13A
4?3Y-13E
43Y-14
O3Y-14A
03Y-15
O3Y-16
4>3Y-17
4? 3Y--17A
ODY--18
VU-18A
O3Y-19
43Y-20
43Y--20A
~3Y-22
IBY-23
43Y-24
O3Y-25
-;I)3Y--27
OY-29
Foreign Equivalent
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S-E-C-R-E-T
-26-
50X1-HUM
GOST #
Old Tvnes Forejgn Eguivalent
NY-31
-
4b3Y-33
-
13Y-35
-
-M-40
NY-3m
43Y-41
?3Y-2M
,b3Y-42
4'3Y-19
43Y-43
OY-1B
M-44
3Y-2B
?3Y-45
O3Y-3B
O3Y-46
OSY P-5
?3Y-46A
OY-P-3
O3Y 47
4t3Y--1B
ODY 48
03Y-1B1B
sT s
K-29
R-30
K-31
K-32
K-33
K-34
K-35
K-41
R-42
K-48
K-308
K-309
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S-E-C-R-E-T
-27-
GOST # Old Types
TRANSISTORS - POINT CONTACT
KC1
KC2
C1B KC4
C iP KC5
CiA KC6
C3A
111A
TRANSISTORS - JUNCTION
Foreic Bauivalent
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S-E-C-R-E-T
-28-
114A
II5A
Old Tvoea Foreign EqM jvalent
1112 2N112
1113 116 2N43
II13A 116
1113B 116
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S-E-C-R-E-T
-29-
1119
11101
U101A
11102
11103
11104
11105
11106
11107
11201
11201A
11202
11203
11204
II204A
11205
11206
11207
II207A
11208
11208A
11209
11209A
11210
S-E-C-R-E-T
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S-E-C-R-E-T
-30-
QOST .1 Old e
11401
11402
11403
11404
11404A
11405
II405A
11406 -
23
11407 -
2N114
11410 -
-
11410A -
-
11411 -
-
II411A -
-
11501 -
-
11502 -
-
11503 -
-
11601 -
DIODE - SEHIICQJDUCTORS
A2E
A2B
A2P
A211
A7A
Alb
?S-E-C-R-E-T
Foreign Equivalent
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S-E-C-R-E-T
-31- 50X1-HUM
GOST # Old Types
),7B
A7P
A7A
A7y
L
A7K
A9A
A9B
A9B
A9P
A9A
A9E
A93K
A10
A10A
A10B
All
A12
A12A
A13
A14
A14A
A101
A101A
A102
A102A
A103
A103A
A104
Foreign Equivalent-
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S-E-C-R-E-T
-32- 50X1-HUM
GOST Old Types Foreign E valgnt
A104A
A105
A105A
A106
A106A
A201A A8A
A201B
A201B
A2o1r
A201A
A201E
A201E
A201H
A202
A203
A204
A205
A206
A207
A208
A209
A210
A211
A301
A302
A303
4304
A305
A8E
ASB
A8r
48E
A8x
AS
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S-E-C-R-E-T
-33-
GOST # Old Types
A306 -
A307 -
A308 -
A309 -
A401 A6
A403A A52A; All-CJI
A403B A52B;ZP-CH
A403B A52B; AP-CB
A405 -
A405A -
A405AII
-
A405B -
A405BII
-
A602A A5 3A; AT--H3
4602B A53B; AT-r14
A603 -
A808 -
A808A -
A809 -
A809A -
A810 -
A810A -
A811 -
A811A -
A813 -
A813A -
A1001 -
A100 1A -
Foretgn uivplentt
1N23D
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S
A1002
41002A
A1003A
AlA
A1A
A1E
S-E-C-R-E-T
_34-
IMKWNS
31-151,5 I'P50-15 1,5
31-40/1,5 PP50-401,5
OM -4 13311
S-E-C-R-E-T
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State Committee of the Council of Ministers of
? the USSR on Radioelectronics
ELECTRON-TUBE DEVICES
HANDBOOK
Second Edition
Volume I
Copy No. 487
General Section,
Receiving-Amplifier Tubes (through 6K7)
Planning-Design Bureau
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APAwr.-
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ARRANGEMENT OF HANDBOOK SECTIONS BY VOLUME
Volume I
General section
Receiving-amplifier tubes (through 6K7 inclusive)
Volume II
Receiving-amplifier tubes (continuation, beginning with 6N1P)
Traveling-wave tubes
Semiconductor devices
Volume III
Cathode-ray tubes
Photocells, photomultipliers, and electrooptical converters
Electron x-ray tubes
High-voltage rectifier tubes
Volume IV
Transmitting tubes
Klystrons and magnetrons
Volume V
Gas-discharge devices
Ballast tubes and regulator tubes
Elementary-particle counters
Various devices
1959
Composition Shop of the PKB Order No. 19
[Planning-Design Bureau]
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This handbook is an official publication of the State Committee
50X1-HUM
of the Council of Ministers of the USSR for Radioelectronics.
The handbook is designed for enterprises and organizations in-
volved in the development, production, and operation of equipment
utilizing electron-tube and semiconductor devices.
The handbook is a subscription publication, and is periodically
supplemented with new loose-leaf sheets, distributed to subscribers.
The information given in the handbook is based upon data from ap-
propriate technical specifications.
This information is supplemented by recommendations as to standard
operating conditions in which electron-tube devices are to be utilized.
This handbook does not replace existing standards and technical
specifications for electron-tube devices, and thus is not a legal
document in the filing of complaints.
Reprinting of information in the handbook is forbidden.
Inquiries, requests, and comments on problems connected with the
content of the handbook should be directed to the Planning-Design
Bureau.
Planning-Design Bureau, State Com-
mittee of the Council of Ministers
of the USSR on Radioelectronics
SECS] i3 -
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INSTRUCTIONS FOR USE OF THE HANDBOOK
To facilitate rapid finding of required groups of devices, the
sections of the handbook are separated by inserted sheets of fully
colored paper.
On the pages included in the "General Section" of the handbook,
or the introductory sections of the other parts, there are:
a) title page;
b) the month and year of publication of the page - in the lower
left-hand corner;
c) the page identification (for example: "Instructions, page 1,"
"Instructions, page 2," etc.) - in the lower right-hand corner.
On each handbook page for a device we have:
a) the tube-type designation - in the upper right-hand corner;
b) the month and year of publication of the handbook page - in
the lower left-hand corner;
c) the number of the text page (for example: page 1, page 2) or
the symbol and page number for graphical material (for example: G-1,
G-2) - in the lower right-hand corner.
Dimensional drawings for receiving-amplifier tubes and low-power
rectifier tubes are combined on separate loose-leaf pages located in
the "Receiving-Amplifier Tube" section.
Handbook pages referring to devices being produced experimentally
bear the additional legend "preliminary data" in the lower left-hand
corner of the page.
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All changes and additions are introduced into the handbook by re-
placing old pages with new pages, as well as by adding new pages.
An arrow (+-) is placed in the text of a handbook page opposite
changed values, and the lower left-hand corner bears the note "+-change
introduced."
New pages should be -inserted at the appropriate places in the se-
quence indicated in the accompanying special instructions.
On pages designed to replace previously published pages, the new
date of publication is noted.
New loose-leaf sheets are sent out periodically.
material
(Above published April 1959, PKV, Instructions, page 1)
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EXPLANATIONS FOR HANDBOOK PAGES
1. The "General Data" section gives cathode curves, tube dimen-
sions, and tube maximum weights.
2. In the diagrams showing the connections of tube electrodes
with external leads, the arrangement of the pins is shown by circles
with numbers corresponding to the bottom base or stem view; for tubes
with bases having keys, the location of the key with respect to the
pins is indicated. Top and side additional leads, disk contacts, as
well as upper and lower pins for "acorn" type tubes are shown by means
of black rectangles, and are located between the circles.
For tubes not having pins, the diagrams showing the connection of
electrodes with external leads indicate the leads in the form of black
rectangles arranged on corresponding sides of a square which is ar-
bitrarily used to represent the body of the tube itself.
3. In the "Electrical Data" section, we give the rated values for
electrode voltages, values of characteristics, together with permis-
sible deviations from them, provided by the technical specifications
for the corresponding tube type.
The electrical characteristics, as a rule, are measured with nom-
inal voltages on the electrodes, unless otherwise specified, in accord-
ance with the state standards whose number appears on the list of
standards relating to electron-tube devices in the "General Part" sec-
tion (Volume I). The tube life shown in the handbook sheets hold, as a
rule, for 90% of all of the devices.
- 3 -
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4. The "maximum permissible operating data" Section indicates the
maximum value of currents, voltages, powers, and frequencies which
cannot be exceeded if reliable operation of a tube is to be guaranteed,
without damage to the device or a decrease in its operating life.
5. The characteristics for electron-tube devices shown in the
handbook pages are, as a rule, averaged, plotted by graphical averag-
ing of the individual curves for a certain number of tubes of the
given type that possess basic electrical characteristics close to the
nominal values.
(Above material published April 1959, PKB, explanation, page 1)
Individual curves may differ from the averaged characteristics given
within limits of the permissible deviations of the electrical con-
stants.
6. On the plate curves for amplifier output and transmitting
tubes, a dashed line is shown, corresponding to the maximum permis-
sible power dissipated by the plate under static conditions.
Points corresponding to rated filament voltage are shown on the
curves for the filament and emission characteristics of transmitting
tubes by intersection of the dashed lines.
7. The cooling standards (water and air flow rates) are given in
the handbook sheets for high-power transmitting and amplifier tubes
and gas-discharge devices for the maximum permissible powers dissi-
pated by the electrodes.
8. The negative grid blanking voltage for oscillograph tubes is
determined by the voltage at which the stationary focused point van-
ishes.
9. For tubes with electrostatic or magnetic beam control (focus-
ing and deflection) the undeflected focused spot normally lies within
a square or a circle the size of which is shown in the technical spe-
- 4 -
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cifications for the appropriate tube type. The center of the square or
circle in this case coincides with the geometric center of the tube
screen, while for tubes with electrostatic beam deflection, one side of
the square is parallel to the sweep line D1D2.
10. Leakage currents in modulator, first-anode, and accelerating-
electrode circuits of oscillograph tubes are determined, as a rule,
with a negative voltage on these electrodes of 100 v, unless otherwise
specified in the handbook pages.
11. The negative grid blanking voltage (control electrode) in
transmitting pick-up tubes is defined as the grid voltage at which the
image of a 0249 (or 0150) pattern vanishes from the screen.
12. Measurement of the pulse emission from metal-ceramic tubes is
carried out with an application to the connected electrodes of voltage
pulses lasting from 2 to 5 psec at a frequency of 50 cps, unless other-
wise specified in the handbook sheets.
13. Measurement of thermal current from grids of metal-ceramic
tubes is carried out under pulsed conditions at maximum dissipated
grid power, and with a grid-cylinder temperature of 100?C, unless
otherwise specified in the handbook sheets.
14. The maximum wavelength for metal-ceramic tubes is defined as
the wavelength at which generation of oscillations still takes place,
without taking into account the magnitude of the output power.
(Above data published April 1959, PKB, explanation, sheet 1)
-5-
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SYSTEM FOR ARBITRARY DESIGNATIONS FOR VACUUM-TUBE
AND SEMICONDUCTOR DEVICES
In accordance with the GOST "Electron-Tube and Crystal Devices.
Ion Devices. System of Designations," the system of arbitrary desig-
nations for electron-tube and semiconductor devices consists of the
following four elements (in order of the symbols).
First Element in Designation
Group of Devices Arbitrary Designation
Long- and short-wave transmitting
tubes (with maximum frequencies
extending to 25 Mc) ........ ... GK
Microwave transmitting tubes (with
maximum frequencies ranging
from 25 to 600 Mc) .............. GU
Centimeter-band transmitting tubes
(with maximum frequencies
above 600 Mc) ................... GS
Modulator tubes ...................... GM
Magnetrons ........................... M
Klystrons ............................ K
Traveling-wave tubes ................. UV
Backward-wave tubes .................. OV
Rectifier tubes..... ............... V
Stabilization tubes (voltage regula-
tors)....... SG
Regulation tubes (current regula-
tors) ............................ ST
Thyratrons ........................... T
Gas-filled rectifier tubes........... G
Ignitrons ............................ I
Exitrons ............... E
Discharge tubes of all types......... R
Decatrons. 0
Noise generators ..................... GSh
Photocells ......... .. ................ F
Photomultipliers..................... FEU
Photodiodes. FD
Phototransistors ..................... FT
(Above material published April 1959 PKB, system of designa-
tions, sheet 1)
- 6 -
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SYSTEM FOR ARBITRARY DESIGNATIONS FOR VACUUM-TUBE
AND SEMICONDUCTOR DEVICES (Cont'd.)
First Element in Designation
Group of Devices Arbitrary Designation
Electrooptical converters ........... A number indicating the enve-
lope diameter in centimeters
(rounded off).
Elementary-particle counters
(radiation counters)............ SI
Electrometer tubes ............... .. EM
Receiving-amplifying tubes and recti-
fier tubes classified as re-
ceiving-amplifying tubes........ A number indicating the fili-
Cathode-ray devices (with the ex-
ception of electron-beam
switches, transmitting tele-
vision devices, and special-
ment voltage in volts (rounded
off)
purpose electron-beam devices).. A number indicating the diameter
or diagonal of the screen in
centimeters (rounded off)
Special-purpose cathode-ray de-
vices, television pickup
devices, and electron-beam
switches ............... ......... L
Semiconductor diodes ................. D
Transistors:
a point-contact................ S
b junction ..................... P
Notes:
T. For gas-filled rectifier tubes and thyratrons, we add to the
first element of the designation: for a gas-filled tube the letter
"G," for mercury-vapor filled tubes - the letter "R."
2. For low-discharge (cold-cathode) thyratrons, the letters "Kh"
are added to the first element of the designation.
3. For all types of pulse devices, the letter "I" is added to
the first element in the designation.
Second Element in Designation
Group of Devices Arbitrary Designation
Diodes ............................... D
Twin diodes .......................... Kh
Triodes ....... ....................... S
Tetrodes ............................. E
Pentode and beam tetrode output tubes P
Remote-cutoff pentodes and beam-
power tubes........ K
Sharp-cutoff pentodes and beam
tetrodes. ........ .... Zh
(Above material published April 1959, PKB, system of designa-
tions, sheet 1)
- 7 -
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SYSTEM FOR ARBITRARY DESIGNATIONS FOR VACUUM-TUBE
AND SEMICONDUCTOR DEVICES (Cont'd.)
Second Element in Designation
Group of Devices Arbitrary Designation
Frequency conversion tubes with
two control grids .....
Secondary-emission pentodes.......... ---
Dual-triodes .........................
Diode-triodes .......................
Diode-pentodes ......................
Triode-pentodes ......................
Triode and hexodes,__heptode, octode..
Beam-power
Tuning indicators....................
Klystrons:
a amplifier, .. .
b multiplier ..................
Gas-filled rectifiers................)
Ignitrons ............................
Exitrons .............................
Thyratrons ...........................
Rectifier tubes ......................
Noise generators.....................
Voltage regulators ..................
Current regulators ...................
Elementary-particle counters (radia-
tion counters)..................
Semiconductor diodes.................
Transistors ..........................
Photodiodes ..........................
Phototransistors....................
Oscilloscope tubes and kinescopes
with electrostatic beam de-
flection......... .. ..........
Oscilloscope tubes with electro-
magnetic beam deflection........
Kinescopes with electromagnetic
beam deflection .................
Cathode-ray memory tubes .............
Television pick-up devices ...........
Electron-beam switches and trocho-
trons ...........................
Electrooptical converters ............
Discharge devices with pressures
higher than atmospheric (triga-
trons) ..........................
Resonant discharge devices ...........
Vacuum decatrons.....................
Gas-filled decatrons . ........... ...
Rectifier tubes classified as receiv-
ing-amplifier tubes.............
LK
N
I
P
EP
ransmitting and modulator tubes,untuned discharge devices, magne-
-8-
A
V
N
G
B
F
I
L
Ye
A number, indicating the sequence
of the device.
~A number, indicating the sequence
number of type of device
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trons, reflex klystrons, traveling-wave tubes, backward-wave tubes,
photocells, photomultipliers, and electrometer tubes have no second
element in their designation.
(Above material published April 1959, PKB, system of designa-
tions, sheet 2)
SYSTEM FOR ARBITRARY DESIGNATIONS FOR VACUUM-TUBE
AND SEMICONDUCTOR DEVICES (Cont'd.)
Third Element in Designation
Group of Devices Arbitrary Designation
Transmitting tubes for all bands .....
Modulator tubes ...................... Number, indicating the serial
All types of discharge devices ....... Inumber of the type of device.
Decatrons...........................
Cathode-ray devices of all types.....
Receiving-amplifier tubes and recti-
fier tubes classified in this
category ......................
Electrometer tubes ................... Number, indicating the serial
Photocells ......... .. ................ number of the type of device.
Photomultipliers.......... ..........
Traveling-wave tubes .................
Backward-wave tubes ..................
Klystrons ............................
Magnetrons ..........................
Electrooptical converter ............. Three digit number the first
number of which indicates the
number of cameras
Low-power thyratrons and cold-
cathode thyatrons designed in A letter indicating that the
the form of receiving-ampli- device belongs to a specific
fier tubes ...................... series of envelope designs
Voltage regulators ................... (the same as in the case of
Current regulators ................... the fourth element for receiv-
ing-amplifier tubes)
Alpha-radiation counters............. A
Soft beta-radiation counters......... B
Hard beta-radiation counters......... BG
Gamma-radiation counters ............. G
Neutron counters ..................... N
X-ray counters ....................... R
Photon counters ..................... F
Semiconductor diodes .................~A letter indicating the variety
Transistors ......................... of device.
Note:
Gas-filled rectifiers, thyratrons (with the exception of low-
power receiving-type thyratrons), ignitrons, exitrons, noise diodes,
rectifier tubes, as well as semiconductor diodes not varying in
type have no third element in their designation.
(Above material published April 1959, PKB, system of designa-
tions, sheet 3)
-9-
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SYSTEM FOR ARBITRARY DESIGNATION FOR VACUUM-TUBE
AND SEMICONDUCTOR DEVICES (Cont'd.)
Fourth Element in Designation
Group of Devices Arbitrary Designation
Transmitting tubes for all ranges
and modulator tubes ............. A letter indicating the nature
of the forced cooling where it
is present: water cooling, A;
air-cooling, B
Magnetrons ........................... Letter, indicating variety of
Electrooptical converters............ device
Photomultipliers ....................
Gas-filled rectifiers ............... A number in the form of a
Ignitrons............................lfraction in which the numera-
Exitrons .............................
Rectifier tubes . ....................
Thyratrons (with the exception of
glow-discharge thyratrons and
low-power receiving-type recti-
fiers) ..........................
Receiving-amplifier tubes and recti-
fiers classified in this cate-
gory ............................
tor indicates the average value
of the current in amperes (for
pulse devices - the surge value
of the current), and the de-
nominator - the peak value of
the inverse voltage in kilovolts.
In metal envelope.................. No designation
In glass envelope .................. S
In ceramic envelope ................ K
"Acorn" type ....................... Zh
Miniature, diameter 19 and 22.5 mm. P
Subminiature, diameter 10 and
8.5 mm .......................... B
Subminiature, diameter 7 mm ........ A
Subminiature, diameter no more than
4 mm. .... R
With lock in base key .............. L
With disk contacts ................. D
Oscilloscope tubes and kinescopes.... A letter indicating the type
of screen
Note:
1. Receiving-amplifier tubes, low-power rectifier tubes, thyra-
trons, voltage regulators, and current regulators resembling receiv-
ing-amplifier tubes that differ from the main types in additional
properties, have a dash following the fourth element and:
the letter "V" for tubes of increased reliability and mechanical
strength;
the letter "Ye" for tubes with increased service lives;
the letter "I" for pulse tubes.
2. Magnetrons, electrooptical converters, and photomultipliers
not broken down within a type, klystrons, traveling-wave tubes, back-
ward-wave tubes, discharge devices, decatrons, special-purpose cathode-
ray devices, including pick-up tubes, electron-beam switches and
trochotrons, photocells, photodiodes, and phototransistors, radia-
tion counters, glow-discharge thyratrons, low-power receiving-type
thyratrons, noise generators, voltage regulators.(stabilitrons) as
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well as current regulators, electrometer tubes, and all types of
semiconductor devices do not have a fourth element in their desig-
nations.
An element missing in an arbitrary designation (with the excep-
tion of the last element) is indicated by means of the dash (-).
(Above material published April 1959, PKB, system of designa-
tions, sheet 3)
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TABLES OF CONVENTIONAL DESIGNATIONS FOR ELECTRON-TUBE
AND SEMICONDUCTOR DEVICES
Below we give conversion tables for conventional designations
for electron-tube and semiconductor devices.
For convenience in utilization, the tables are given in two
versions: To convert from designations based upon the GOST "Elec-
tron-Tube and Crystal Devices. Ion Devices. System of Designations"
to older designations and, conversely, from the old designations
to the new.
The conventional designations for the devices listed in the
tables are arranged in order of their component numbers and letters.
Designations Based Upon GOST, old designations, and
Foreign Analogs
06)(66 txoZkbs
Designation
Old Foreign Analogs
06in26 a69 CKSO5AX
IAIT] 1/ UP - IR5, DK 91
1 A2n 0ZP - -
16In /0Y - ISS. DAF 91
15211 169 - -
IA1751Zk1713 - I --
IY{I851Zh1W - I _
1)1(2451 2A.1 All --
I )K295 1 Z!+-298 U-2
jS?~i -
IH2n 1IZP -
IKIn 1K19 - IT4, DF9I
I Ken ! KVP
I H3C I N35 1H1 IN 1 1 G6-GT/G
Ines 1PZ13 - CK507AX
1 m5 I P36
--
11146 1P46 -? -
April 1959
PKB Sheet [13]
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no ('OCTy
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1 1155 1959
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DC96
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- 13 -
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- 14 -
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- 23 -
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- 24 -
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- 25 -
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- 28 -
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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- 37 -
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
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- 38 -
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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'DEFINITIONS OF CERTAIN TERMS USED IN THE HANDBOOK
The definitions given below refer to certain terms for many
classes of vacuum-tube devices covered in the handbook.
Internal resistance - the ratio of a change in plate voltage to-
the change in plate current caused by it with the voltages on the re-
maining electrodes kept constant.
Output power, pulsed - the mean value of the power developed in
a load during a pulse.
Note. The power in a pulse is taken to equal the product of the
mean power measured calorimetrically, or in some other manner, by a
quantity that is a reciprocal of the duty factor.
Dynamic operation of a device - changing the voltage on elec-
trodes over time (with the exception of the filament voltage), deter-
mining the currents of the electrodes, which also change with time.
Dynode - an emitter of secondary_electrons.
Length of a current pulse - the interval of time between the in-
itial and final instants of a pulse, assuming that the final instant
is defined by the point equal in value to one half of the maximum peak
pulse value.
Note. In order to determine the maximum instantaneous amplitude
of a pulse, we do not take into account very short and high horns on
the edges of the pulse.
Life (service life) ?- the number of hours after which one of the
-44-
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basic tube constants, for which special values have been established
as a criterion of lifetime, goes beyond the limits of these values, or
the device itself becomes unsuitable for normal service for other
reasons.
Input capacitance - the static interelectrode capacitance of the
control grid with respect to those electrodes upon which, under normal
tube operating conditions, there are no AC voltages at fre quencies
operating in the control-grid circuit.
Output capacitance - the static interelectrode capacitance of the
plate with respect to those electrodes upon which, under tube operat-
ing conditions, there are almost no AC voltages of the same frequen-
cies as the alternating voltage across the tube load.
(Above material published April 1959, PKB, Terminology, Sheet 1)
Transfer capacitance - static interelectrode capacitance between
plate and control grid.
Natural cooling - cooling of a vacuum-tube device by the surround-
ing air, without forced application of air to the cooled parts.
Grid ion current (ion component of grid current) - a component of
the grid current caused by ions incident upon the grid.
Cathode core - the base for a complex cathode to which an active
coating is applied.
Traveling-wave tube attenuation constant - the ratio of the sig-
nal power at the amplifier output to a traveling-wave tube (LBV) to
the signal power at its input, in the absence of an electron flow in
the LBV delay line.
The attenuation constant indicates the magnitude of signal at-
tenuation by the delay line of the LBV in the absence of an electron
flow in it.
The attenuation constant Is normally expressed in decibels.
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Noise nonlinearity factor - a quantity, expressed in percent, de-
termining the degree of deviation from linearity of the function relat-
ing the plate current of a noise diode to its noise power.
Amplification factor - the ratio of plate and grid voltage incre-
ments causing identical variations in plate current.
Duty factor - the ratio of the length of a pulse to the length of
the space between two successive pulses.
Passband factor - the ratio of the slope of a characteristic
curve to the sum of the input and output capacitances.
Noise factor of traveling-wave tube - the ratio of the power of
fluctuating noise at the output of a LBV amplifier to the power of the
fluctuating noise at the output of an ideal ("noiseless") amplifier,
possessing the same gain and bandwidth, as the actual amplifier in the
LBV, provided that the input circuits of both amplifiers are connected
to matched, pure resistances, at a temperature of 293?K.
F = (S vkh/Pvkh)/(Svykh/Pvykh) = P vykh/Ku*Pvkh = Pvykh/Pvykh id.
where F is the noise factor; Svkh is the signal power at the input of
the LBV amplifier; Svykh is the signal power at the output of the LBV
amplifier; Pvkh is the power of the fluctuating noise at the input of
the LBV amplifier; Pvykh is the power of the fluctuating noise at the
output of the LBV amplifier;
(Above material published April 1959, PKB, Terminology, Sheet i)
Ku = Svykh/Svkh is the power gain of the amplifier of the LBV;
Pvykh id =.i*Pvkh is the power of the fluctuating noise at the output
of an ideal ("noiseless") amplifier.
Criterion of lifetime - arbitrarily adopted extreme value of a
constant which may-be obtained in testing a device for lifetime. When
this constant deteriorates further, the instrument is considered to be
-46-
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unsuitable for normal service.
Grid-plate transconductance - the magnitude of the change in
plate current in milliamperes for a one-volt change in control grid
voltage.
Conversion transconductance - the effective value of the alter-
nating component of the intermediate-frequency current in milliamperes,
set up in a tube by an effective signal voltage with an amplitude,of
one volt.
Sharp-cutoff tube - a tube whose plate-grid curve shows a sharp
drop to zero current.
Remote-cutoff tube - a tube whose plate-grid curve has a special
lengthened shape at small values of plate currents, which makes it
possible to control the gain by varying the DC component of the con-
trol-grid voltage.
Output power (radio-frequency) - the maximum RF power which may
be developed in the plate circuit of a tube operating under CW condi-
tions (class C) for rated filament voltage and maximum plate voltage.
The output power is defined as the difference between the applied DC
power, and the power dissipated at the plate.
Note. In tables and handbook sheets, where the frequency is es-
pecially mentioned, the value of the output power is shown for the max-
imum working frequency.
Maximum peak inverse plate voltage - the maximum amplitude of the
difference in voltages between the cathode and plate, characterized by
the presence on the cathode of a higher voltage with respect to the
plate.
Maximum plate voltage - the maximum permissible DC voltage be-
tween plate and cathode of a tube, applied from a power source when
the tube is operated under dynamic and static conditions.
-47-
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Maximum input power - the maximum DC power that may be supplied to
the tube under given conditions.
Pulsed grid voltage - the algebraic sum of the peak excitation
pulse voltage and the DC bias voltage.
Electrode voltage - the difference in potential between the leads
to a given electrode and the cathode.
Electrode null current - the current in an electrode under a
given static regime where the voltage on the basic control electrode
is zero.
(Above material published April 1959, PKB, Terminology, Sheet 2)
Grid back current - the current in a grid that is negative with
respect to the cathode, equal to the sum of all currents flowing in
the grid circuit: the ion, leakage, thermionic, and other current com-
ponents.
Peak plate voltage with plate modulation - the maximum value of
the plate voltage, varying in time, with plate modulation, equal to
the sum of the DC power-supply voltage and the amplitude of the modu-
lating voltage.
Input power - the DC power supplied to the plate circuit of a
tube from the power-supply source.
Forced cooling - cooling of a vacuum-tube device by forced appli-
cation of air or liquid to the cooled sections.
Grid penetrance - a quantity that is roughly equal to the recip-
rocal of the corresponding amplification factor.
Filament starting current - the maximum filament current during
the time interval from the instant.that filament voltage is applied to
the cold (unheated) cathode to the instant that the cathode working
temperature is reached.
Note. The working temperature of a cathode corresponds to the
-'+8-
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steady-state value of filament current at rated filament voltage.
Pulse density - the reciprocal of the duty factor.
Electrode insulation resistance - the resistance of the insula-'
tion of a given electrode with respect to all other electrodes (with
the cathode unheated).
Spectral density of noise power for noise generator - the noise
power developed across a load matched to the generator in a 1-cps
frequency band, and defined by the formula:
f Nw .. K ~ T~ ~ ~T1~? .~
where k is the Boltzmann constant, equal to 1.38.10-23 watts/degree-cps;
TE-equivalent temperature of noise generator in ?K; T 0 = 293?K.
The relative temperature of a noise generator is defined by the
relationship:
and thus, the spectral density may be found from the formula:
p,~.N?K?T
The quantity kT0 equals the noise power for a resistance equal to
the output resistance of the generator, developed across a matched
load in a 1-cps frequency band at a resistance temperature T0.
(Above material published April 1959, PKB, Terminology, Sheet 2)
Static operation of a device - constant voltages on the elec-
trodes determining the currents (which are also constants) of all
electrodes.
Thermal shock - a sharp variation in the temperature of the am-
bient medium for a device (as a rule, from 100 to 0?C) occurring over
a period of fractions of a second.
Grid thermal current (thermionic component of grid current) - a
grid-current component caused by electrons emitted by the grid owing
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to heating.
Plate current, pulsed - the value of the amplitude of an equiva-
lent current pulse, i.e., an absolute square wave, having the same
length as the pulse, and the same average value for the amplitude as
does the given pulse.
Cathode current - the current, equal to the algebraic sum of all
currents in other electrodes, measured in the portions of the external
circuit common to all of these electrodes.
Leakage current in grid circuit - the grid-current component due
to imperfect grid insulation with respect to other electrodes.
Electrode current - the current set up by all free elementary
charges (electrons and ions), incident upon a given electrode, or
leaving it, as well as by the varying electromagnetic fields in which
the electrode lies, measured directly at the lead from the given elec-
trode.
Cathode emission current - the current from the cathode to the
tube electrodes, connected together, with rated filament voltage, and
voltages on the remaining electrodes as indicated especially in the
technical specifications.
Cathode emission current, pulsed - mean value of cathode emission
current during a pulse.
(Above material published April 1959, PKB, Terminology, Sheet 3)
Manu-
script
Page
No.
List of Transliterated Symbols
45 JIBB = LBV = Lampa Begushchey Volny = Traveling-Wave Tube
46 BX = vkh = vkhod = input; BWX = vykh = vykhod = output
46 y = u = usileniye = gain; xA = id = ideal'nyy = ideal
-50-
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RECOMMENDATIONS FOR THE APPLICATION OF ELECTRON-TUBE DEVICES
The equipment designer must be guided by the following recommenda-
tions:
1. The filament voltage of an electron-tube device should equal
its rated value when the equipment is serving under normal operating
conditions.
Deviations from the nominal filament voltage, as a result of
power-supply voltage fluctuations or the action of other factors,
should not exceed values specified in the handbook sheets, and should
be brief.
2. Electron-tube devices operate most reliably in the equipment
with rated values of electrode voltages.
If these rated voltages are exceeded, there will be a decrease in
tube life, and thus in critical cases, we recommend that measures be
taken to stabilize or carry out appropriate regulation of the elec-
trode voltages.
3. The equipment should be capable of operating when any elec-
tron-tube devices are used that have any constants lying within limits
of permissible deviations.
If this condition is not met, it will be necessary to make a spe-
cial choice of corresponding tubes when they are replaced in the equip-
ment, which is impermissible, since it excludes the possibility of in-
terchangeability.
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4. The values of electron-tube constants vary in the course of
their service, and at the end of their useful life, constants may drop
to values specified as criteria for tube life.
A drop in the values of electrical constants should be taken into
account in designing equipment, so that the equipment will operate
stably over the entire useful lifetime of the tube.
5. When operating electron tubes in equipment, no more than one
maximum value should be reached simultaneously; the maximum values are
given in the section "Maximum Permissible Operating Data" (unless spe-
cial cases are specified), since this will sharply decrease tube life.
(Above material published April 1959, PKB, Recommendations, Sheet 1)
6. Exceeding, even briefly, the values shown in the "Maximum Per-
missible Operating Data" section, is impermissible, since this may
cause damage to the tube, or may sharply decrease its life.
7. Electron-tube devices are not guaranteed with respect. to in-
dividual service life. Thus, in especially critical equipment, it is
desirable to provide for the possibility of rapid tube replacement (in-
cluding replacement of individual tube units), or other methods for
providing uninterrupted operation of the equipment.
(Above material published April 1959, PKB, Recommendations, Sheet 1)
-52-
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BASE DIAGRAMS
OCTAL SOCKETS
Classification and Basic Dimensions
Octal bases, depending upon type, are divided into two classes:
can-type bases and button-type bases.
The standard designation for an octal socket, in accordance with
official standard NIO.537.000, consists of the word "base," the letter
"Ts," and the number "1," characterizing the type of base (octal),
with the numbers after the dash indicating the type of base (1 - but-
ton, 2, 3, 4, etc. - can-type, in accordance with Table 1); next, fol-
lowing a dash there are a number and letter indicating the number and
arrangement of the pins, in accordance with Table 2, where the + (plus)
indicates the presence, and the - (minus) - the absence of,a pin in a
given position in the base.
Example. A button-type octal base with eight pins is designated:
Base Tat-1-8A
A can-type octal base, 32 - 0.8 mm in diameter, lacking the
eighth pin, is designated:
Tsl-4-7V
The basic dimensions of octal bases for electron-tube devices are
given by official standard NIO.537.000, and are shown in drawings 1
and 2. The arrangement and connection dimensions for the pins corres-
pond to RSh5 of GOST 7842-58.
(Above material published April 1959, PKB, Bases, Sheet 1)
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TABLE 1
l P. p?
aoaoa.
b~+ru~a' I 24
5-
.1N3MCTp 6 25x0.?
3 111.3 3 111.1 ,3 1114
z
If P&MOPW MA
27+0,3
-0.2
41
13 1{
3 111.7
33 I 41
32+ " 34,? 381
lUaMITp ac-
PrusocTa Px. 17.5?0.2 17
.5?0.2
NOMIKS"s
ITwP.ro.
38
40
17.5?0.2 17.5?0.2 17.5t0.2 22?0.2
10?0,3 ?CtM 1103
22?0,3 27?0.3 19?0,3 27t0.3
1) Base dimensions; 2) type of base - can; 3) Ts; ti) dimen-
sions mrn; 5) height; 6) diameter; 7) diameter of pin cir-
cle; A) height of cylindrical section.
Notes: 1. Tsl-2 and Tsl-5 bases, regardless of the number of
pins and their arrangement, should not be utilized for newly
designed electron tubes.
2. Reference dimensions are indicated by an asterisk.
-54-
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TABLE 2
Ycsowoc~ o6oa~s~e- - --? -- 2 -- ~ ~a100~ ~
am so"
w
8A + + + + + I + ? { +
7A +i+{+i++
75 -_+{+_++{+ +
m? + , .}. ? - I + + I ++
{* +. { +{-~+{+
S 615
SA
9 56
+
+ + + - J
+ ++ + +
1) Conventional designation for arran ement of pins; 2) num-
ber of pins; 3) 7V*; 4) 7G*; 5) 6B; 61 6V*; 7) 6G*; 8)' 6D*;
9) 5B?
(Above material published April 1959, PKB, Bases, Sheet 1)
-55-
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TABLE 2 (Continued)
Ycaoawoe fi6oaoare- z. M. WnWWW.
am OU" 0. _[_4
'3 5B'
SWO
.5 5A' + I -r + I + - + -
/0 41'
gob +i+
p 48 7
4K'
/'o~. 4.1'
4M?
is 4H'
-I+i-t - -~+I+
1) Conventional designation for pin arrangement; 2) number
of pins; 5V*; 4) 5G*; 5) 5D*; 6) Ye*; 7) 5Zh*; 8) 4B;
9) 4v; 103)4G; 11) 4D*; 12) 4Ye*; 13) 4Zh*; 14) 4L*; 15) 1N*.
Note. The asterisk indicates that the given type of pin ar-
rangement in the base is not used in newly designed electron
tubes.
(Above material published April 1959, PKB, Bases, Sheet 2)
-56-
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Drawing 1. Type Tsl-1 button base. 1) Button base.
Notes. 1. Maximum.base diameter 33 mm. 2. Reference dimen-
sion indicated by asterisk.
(Above material published April 1959, PKB, Bases,-Sheet 2)
-57-
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Un, rs
- 1 m?4 t Qf
Drawing 2. Types Tsl-2, Tsl-3, Tsl-4, Tsl-5, Tsl-6, Tsl-7
can-type bases (see Table 1). 1) Can-type base.
(Above material published April 1959, PKB, Bases, Sheet 3)
-58-
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FOURTEEN-PIN SOCKET
Basic Dimensions
In accordance with official standard VN MPSS 918-52, the conven-
tional designation for the 14-pin plastic base designed for cathode-
ray tubes consists of the word "base", the letter Ts, the number 3,
indicating the type of base (14-pin), a dash, a number and a letter
(14, 12A, or 8A), indicating the number of pins in the base and the
order of their arrangement (Table 1). Here the "+" sign (plus) indi-
cates the presence "-" sign (minus) indicates the absence of a pin in
a given position in the base.
Example. A 14-pin base lacking the sixth and thirteenth pins is
designated:
Base T83-12A
The basic dimensions of a 14-pin base should correspond to Draw-
ing 1. The arrangement and connection dimensions of the pins should
correspond to RShlO GOST 7842-58.
-59-
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TABLE 1
1) Conventional designation for pin arrangement; 2) pin num-
bers.
(Above material published April 1959, PKB, Bases, Sheet 3)
-60-
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?57_C6 -
0 535'~
Drawing 1. Fourteen-pin socket. 1) Base blank; 2) pin.
Note. Reference dimension indicated by asterisk.
(Above material published April 1959, PKB, Bases, Sheet 4)
-61-
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LOCKTAL BASE SHIELD
Basic Dimensions
Official standard VN MPSS 920-52 established the basic dimensions
for metal locktal base-shields, designed for low-power transmitting
and receiving tubes.
The base designation consists of the words "base-shield," the
letter Ts, and the number 4, defining the type of base (locktal, with
shield), a dash, and a number indicating the base dimensional type.
Example. A base-shield with a 46.5-mm high shield is designated
Base-shield Ts4-1
The basic base dimensions should correspond to Drawing 1 and
Table 1. The arrangement and connection dimensions of the pins corres-
pond to RSh7 GOST 7842-58.
TABLE 1
060:isa'ItHMC IWKaAs I
3' 114-1
I ~} 114.2
Pssrepw s xx
31.5 60.5
:38 67
1) Base designation; 2) dimensions in mm; 3) Ts4-1; 4) Ts4-2.
Note. Reference dimension indicated by asterisk.
(Above material published April 1959, PKB, Bases, Sheet 4)
-62-
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/7,~ !Q)
~,
32 avu6
Drawing 1. 1) Maximum.
(Above material published April 1959, PKB, Bases, Sheet 5)
_63_
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ARRANGEMENTS AND DIMENSIONS OF PINS
FOR MINIATURE GLASS TUBES
The arrangement and connection dimensions for the pins of minia-
ture glass receiving tubes correspond to R3h4 and RSh8 GOST 7842-58,
and are shown in Drawings 1 and 2.
Drawing 1
t~ [ ~1 Ij `
Drawing 2
(Above material published April 1959, PKB, Miniature-tube pins, Sheet 1)
-64-
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EXTERNAL LEADS AND CAPS
Types and Dimensions
Official standard NIO.730.000 establishes the types and sizes for
external leads and caps designed for low-power electron-tube devices.
Depending upon design, leads and caps are classified into three
types:
a) lead-cap without shaped flange - VK1;
b) lead-cap with shaped flange - VK2;
c) lead-cap with shoulder - VK3 (used only for cathode and fila-
ment lead of transmitting tubes in metallic-ceramic envelope).
Types and dimensions of leads and caps are shown in Figs. 1, 2,
and 3.
Fig. 1. Type VK1 lead-cap.
r Yee o6031$ItIIN
Tsaop"Me"
n,. `, p.?
AA MA
U
2 BKi-1 s BK1-2
9_C4 11_0.43
10_
3 BK14
14 15..
13-o.43
i) Conventional designation for dimension type; 2) VK1-1 and
VK1-2; 3) VK1-3.
Notes: 1. Dimension types VK1-l and VK1-2 differ only in the
-65-
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diameter of the central hole through which the electrode is
passed and soldered.
2. Type VK1-3 caps are not specified for newly developed
electron tubes.
(Above material published April 1959, PKB, Leads-Caps, Sheet 1)
Fig. 2. Type VK2 lead-cap.
Ycao.Noe
D,.
nv
DO N. h.
06@13Na'1erne
MA
ar AA r.r
tNnopastiepa
L
~.
BK2-1 6.5-0.2
9,3-0'.26
11 _0.43
8-0,36 6.5+0,3
+0.36
3 BK2-2 6.5-0.s
7.5-0.36
8.5-0.?6
5
7-0.36
4 0
3 6
BK2-3 6.5--0.2
8.5-0.36
9.5-0.36
7
.
9-0.36
1) Arbitrary designation for dimension type; 2) VK2-1; 3)
VK2-2; 4) VK2-3.
Note. Lead caps types VK2-2 and VK2-3 are-not specified for
newly developed electron tubes.
-66-
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~7-Q?
Fig. 3. Type VK3 lead-cap.
(Above material published April 1959, PKB, Leads-Cape, Sheet 1)
-67-
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LIST OF GENERAL STANDARDS APPLYING TO ELECTRON-TUBE DEVICES
Name of GOST
Plastic cans and buttons for
bases of electron-tube devices
Low-power electron tubes.
Methods for electrical testing
Electronic amplifier, recti-
fier, and transmitting tubes
with continuous plate dissi-
pation greater than 20 watts
for commonly employed de-
vices. General technical
specifications
Electron tubes, cathode-ray
tubes, and gas-discharge de-
vices with solid indirectly
heated cathodes. Series of
filament and plate voltages
Mercury rectifiers. Classifi-
cation and technical specifi-
cations
Low-power electron tubes.
Methods of testing for useful
service life
Electron vacuum-tube and brys-
tal devices. Ion devices. Sys-
tem of designations
Rectifiers for X-ray equipment
Transmitting and high-power
amplifier electron tubes.
Electrical-test methods
(Above material published April
Current stabilizers (baret-
ters). General technical spe-
cifications
Current regulators (baretters).
Basic constants and dimensions
X-ray equipment. General tech-
nical specifications
Number Took effect
GOST 345-54 (re- 1 July 1955
places GOST
345-51)
GOST 1879-42 1 February 1943
GOST 1914-55 (re- 1 April 1956
places GOST
V-1914-42)
GOST 2182-54 (re- 1 October 1954
places GOST
2182-43)
GOST 2329-43 1 December 1944
GOST 3839-47
1 January 1948
GOST 5461-56 (re-
1 July 1956
places GOST
5461-50)
GOST 6919-54 (re-
1 July 1954
places OST 40121)
GOST 7046-54
1 January 1955
1959, PKB, Standards, Sheet 1)
GOST 7161-54
1 July 1955
GOST 7162-54 (re-
places OST 40119)
1 July 1955
GOST 7248-54
1 July 1955
-68-
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Name of GOST Number Took effect
Hot-cathode thyratrons for
commonly used devices. Gen-
eral technical specifications
Electronic amplifer, recti-
fier, and transmitting tubes
with plate dissipations of up
to 20 watts, for commonly used
devices. General technical
specifications
Formation of multiplicative
and fractional units of meas-
urement. Abbreviation of units
of measurement
Electron-tube devices. Ar.
rangement and connection di-
mensions of pins
Light units
Low-power electron tubes. Test
set-ups and general rules for
electrical tests
Low-power electron tubes.
Method of measuring filament
current and voltage
Low-power electron tubes.
Methods of measuring plate
current and grid current where
the grid is positive with re-
spect to the cathode
Low-power electron tubes.
Method of measuring grid cur-
rent with grid negative rela-
tive to cathode
GOST 7391-55 1 January 1956
GOST 7428-55 1 October 1955
GOST 7663-55 1 January 1956
GOST 7842-58 1 April 1959
GOST 7932-56 (re- 1 July 1956
places OST 4891)
GOST 8089-56 1 April 1957
GOST 8090-56 (re- 1 April 1957
places GOST
1879-42, section
I)
GOST 8091-56 (re- 1 April 1957
places GOST
1879-42, sections
II and IV)
GOST 8092-56 (re- 1 April 1957
places GOST
1879-42, section
III)
(Above material published April 1959, PKB, Standards, Sheet 1)
Low-power electron tubes. GOST 8093-56 (re- 1 April 1957
Method of measuring cathode places GOST
current 1879-42, section.
V
Low-power electron tubes. GOST 8094-56 (re- 1 April 1957
Method of measuring cathode places GOST
electron-emission current 18
79-42, section
VI)
Low-power electron tubes. GOST 8095-56 (re- 1 April 1957
Test methods under rectifier places GOST
conditions 1879-42, sections
VII, VIII, XXI,
pages 286-288,
XXVII and XXVIII)
-69-
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Name of GOST
Low-power electron tubes.
Methods for measuring trans-
conductance
Low-power electron tubes.
Methods for measuring amplifi-
cation factor
Low-power electron tubes.
Methods for measuring internal
resistance
Low-power electron tubes.
Methods for measuring output
power and nonlinear distortion
created by the tube, testing
tubes under class A and class
B conditions in audio amplifi-
cation
Low-power electron tubes.
Method for testing static in-
terelectrode capacitances
Low-power electron tubes.
Method for testing cathode
warm-up time
(Above material published April
Low-power electron tubes.
Method for measuring insula-
tion resistance between elec-
trodes, as well as between
electrodes and other tube
elements
Low-power electron tubes.
Methods for measuring grid
cutoff voltage and cutoff
voltage for grid electron-
current
Low-power electron tubes.
Test method for maximum per-
missible plate dissipation
Low-power electron tubes.
Methods for measuring dynamic
amplification factor and low-
frequency gain response
Number Took effect
GOST 8096-56 (re- 1 April 1957
places GOST
X879-42, section
GOST 8097-56 (re- 1 April 1957
places GOST
1879-42, section
XI)
GOST 8098-56 (re- 1 April 1957
places GOST
1879-42, section
XII)
GOST 8099-56 (re- 1 April 1957
places GOST
1879-42, sections
XIII and XIV)
GOST 8100-56 (re- 1 April 1957
places GOST
1879-42, section
XVI
GOST 8101-56 (re- 'l April 1957
places GOST
1879-42, section
XVII)
1959, PKB, Standards, Sheet 2)
GOST 8102-56 (re- 1 April 1957
places GOST
187 -42, section
XIX)
GOST 8103-56 (re-
places GOST
1879-42, section
XX)
1 April 1957
GOST 8104-56 (re-
places GOST
1879-42, section
x85, pages 281-
2
1 April 1957
GOST 8105-56 (re- 1 April 1957
places GOST
1879-42, section
XXIII)
-70-
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Name of GOST
Number
Took effect
Low-power electron tubes.
GOST 8106-56 (re-
1 April 1957
Test methods for short cir-
places GOST
cuiting and open circuiting
1879-42, section
XXVI)
Electronic X-ray tubes. Gen-
GOST 8490-57
1 January 1958
eral technical specifications
Electric-Lighting Bulbs
Electric incandescent bulbs
for railway use
Electrical incandescent bulbs
for local illumination
(Above material published April
Electric incandescent bulbs
for ship-board use
Electric incandescent bulbs
for automobiles and tractors
Miniature electric incandes-
cent bulbs
Electric incandescent bulbs
for normal lighting
Electric incandescent bulbs
for projection and sound-
reproducing motion-picture
equipment
Electric incandescent bulbs in
cylindrical envelopes
Mercury fluorescent bulbs
Electric incandescent switch
bulbs
Starters for fluorescent tubes.
Ballast chokes
Electric incandescent bulbs
for general-purpose projectors
(Above material published April
GOST 1181-54 (re-
1 July 1954
places GOST
1181-48)
GOST 1182-54 (re-
1 July 1954
places GOST
1182-49)
1959, PKB, Standards, Sheet 2)
GOST 1608-56 (re- 1 October 1956
places GOST
1608-47)
GOST 2023-50 (re- 1 January 1951
places GOST
V-2023-43)
GOST 2204-52 (re 1 January 1953
places GOST
2204-43)
GOST 2239-54 (re- 1 July 1954
places GOST
2239-43)
GOST 4019-54 (re- 1 July 1954
places GOST
4019-48)
GOST 5011-54 (re- 1 July 1954
places GOST
5011-49)
GOST 6825-54 1 June 1954
GOST 6940-54 (re- 1 July 1954
places GOST
2204-43 in switch-
bulb section)
GOST 7853-55 1 July 1956
GOST 7874-56 1 July 1956
1959, PKB, Standards, Sheet 3)
-71-
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List of Standards for Various Types of Electron Tubes for
Commonly Used Devices
MaMu `MOUMMt How p 3 ii M~a~tansaaat H 3
Tuna apa0opa roc c ' 'I-a& ap.oopi t'OC Cpoi 90""M
OK3
f1
1 A 1
7708-55
I/IV 1956
.
~K~
6K3
8084-56
1/IV 195
f
1P
16
1 iK1 P
8006-56
1 /X 1956 r.
6K
6K#P
8083-56
1/IV 195
L 7s
1 K ll
1T
707-55
1 /IV 1956 r.
6K~K7
8352-57
1/X 195
,
1
117
91P
8359-57
1 /X 1957 r.
1 fP
8363-57
1/X 196
2n 1 ,
8005-56
1 /X 1936 F.
sH
8355-57
1/X 195
25
2P
L1
l/1 1958 r.
6111,
3P
.57
8356
1/X 195
Crg35
5113
8360.57
I /X 1957 r.
~
~ 7vc
8357-57
8374
57
1/X 195
1
X
95
5
5U
if.
079-56
8
1/IV 1957 r.
6H
3S
~ !
-
/
1
51180
57
8361-57
1/X .1957 r.
sH
P
~
8378-57
1/X 195
S
P
8362-57
1/X 1957 F.
6n
~s
8358-57
1/X 195
A,t
6A211
8354-57
I/X 1957 r.
6n
P65
n
8376-57
1/X
195
6A7
6A~
8486. 56
1/IV 1957 r.
s
~
8375.57
1/X 195
6A8611X06
8367-57
I/C 1957 r.
sII9
~O52P
8377-57
1/X 196
6AIQC85
~p
8087-
56
1/IV 1957 r.
6
9152$
8353-57
1/X 195
1 fi~8
'
836x-57
1/X 1957 r.
~s?s
8081-56
1/1V 195
6r2 1
8310-57
I/X 1957 r.
~,qms
8373.57
1/X 195
617655
8371-57
1957 r.
I/X
8368
-57
1/X 196
6
bZb1P
-57
.
1/X 1957 r.
8372-57
196
1/X
6 Z
8349-57
I /X 1957 r.
606S14;
SM-56
1/IV 196
M3
Zh3P
56
1/IV 1957 r.
7y6S
8348.57
0
1/X 195
IV
95
I /X 1957 r.
?P
8
80-56
1/
1
M~Afp
8364-57
t/X 1957 F.
6UG
8347-57
1/X 196
6JK5
,~,
8351-57
1/X 1957 r.
8528-57
1/1 195
B
8365.57
1/X 1957 r.
8078.56
1/IV 195
"1
8366-57
1/X 1957 r.
1) Type of device; 2) GOST number; 3) Date effective; 4) Low-power
electron tubes.
-72-
44
7
r.
7
r.
7 r.
7
r.
7 r.
7 r.
7
r.
7 r.
7
r.'
7
r.
7 r.
7 r.
r.
7
7 r.
7 r.
7 r.
7
r.
7 r-
7
r.
7
r.
7
r.
7 r.
8
r.
7
r.
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(Above material published April 1959, PKB, Standards, Sheet 3)
HaMMewOY011e HOMep `~ t17NYlN/n]NN! 11~~?p 3
TNM Q`NOOp/ rUCT IcpOS wwAcums f TNU~ II~~N(i0~1~ ioCT Cpou IseleVRI
STpy6'Ku aaeKTponiio.lygeBLcc H 92CKTpoHUWC
peuTrcHOBcKHC
,JLK.4B
35JIK26
. 1
8815-58
" ' BM's Z'/DO
c 1!1 19:-9 r. ' 35
71,N 2.100
860257
I 11958 r
43L.KZB
foil?.to'
,
io 1 j l 19' 2 r. ; 3B~fi 1-,20c~
.
43.1 K26
8814-58
c 1 '1 1959 r.'i 35TM 1.200
8603-57
VII 1958 r.
lQP1~t-!r0
!
ao 1,1' 1962r I 1oS f-y10
6?
8492-57 '
1/1 1958 r.! I OB 110
8805
1958 r
2-bb,aM13-100
VIM'
8604-57 I,VII 1958 r : GCB
86:0.57
I %'II 1958 r
2SDnt4-75
.
2SAM4.75
8601-57 1,VII 1958 r.i GCB3
1
8491.57
1 1 1958 r
6 Jlaflnu $aeKTpOU1161e reHepaTOpuwe
rW
8380-57
I IX 1957 r. r 3
r -7
U-S
7'7109-55
1/IV 1956 r. I"Y-150
rY4
7711-55
1/IV 1956 r.
1.77 10-55 ? t I L' 1956 r.
1 7712-55 1 IV 1956
aS ~
uparpOHa
(...
Trl-0.1,J.3 7843-55. 1/VII 1956 r.~ 2
7954-56
1.1 1957 r.
Tr l -2.5/4 7952-56 1/1 1957 r. TP I -6,' 15
7955-56
3,1 1957 r.
Tr l -S/3 7953-56 1/1 1957 rI TP I-40'15
7956-56
1 11957 r
I N
.
1) Type of device; 2) GOST number; ) Date effective; 5) Cathode-ray
tubes and electronic X-ray tubes; 6) 3 Electronic transmitting tubes;
7) Thyratrons.
(Above material published April 1959, PKB, Standards, Sheet 4
-73-
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CLASSIFICATION OF RECEIVING TUBES DEALT WITH IN HANDBOOK
H'apo-
'Z
3
4
G
Tpwo *7
Steve
UK&"
Anoai M
a It
ANOa.
Tp+Oab
ANO*?
neN
AsoANYe
TpNo3Y
TpNOAY
eeNTulM.
Tp$Oa? 1
rCKCOAY
f
As"U
AM
N TQNOa?
renTOaM
0.6
1.2
15111
162n
- 211
1C125 111
2
2=6
,' -
--
-
x145
- { -
2X111
-
-
-
- -
-74-
By Types of Tubes and Filament Voltages
1) Filament voltage volts; 2) diodes and dual diodes; 3) diode-triode;
4) diode-pentode; 55 triode; 6) twin triodes; 7) triode-pentodes,
triode-hexodes, and triode-heptodes; 8) pentodes; 9) sharp cutoff; 10)
remote cutoff; 11) heptodes; 12) power amplifiers; 13) triodes and
tetrodes; 14) twin triodes; 15) pentodes and beam-power tetrodes; 16)
tuning indicators; 17) rectifier tubes.
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IICNTV.tw _j ~~ YCH1NttAN YOUtHOCTN
C r,npl-t.
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(Above material published April 1959, PKB, Receiving Tubes, Classifi-
cation, Sheet 1)
-75-
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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9
8
1) Load resistance, kohm; 2) output power, watts; 3) suppressor
voltage, 15 v; 4+) 0 v.
(Above material published April 1959, PKB, G-3)
-290-
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LOW-POWER TRANSMITTING PENTODE 2P29P
*****
Basic function power amplifier and radio-frequency oscillator
(to 120 Mc).
Construction glass miniature with flexible leads for mounting
into equipment by means of soldering
General Data
Cathode - oxide-coated filament-type
Maximum height (without leads)
Maximum diameter
Weight
Number of leads
Dimension drawing - 11P
19 1 nun
mm
12 grams
8
Connection Diagram for Electrodes and Leads
A
I - ceTKa TpeTba
2 - SKp3H sHyTpeH-
HH
3 - ceTKa nepsam
- Karo. (HHTi
HaKa la)
no more than 4.8 v
cut-off voltage from 0 to 1 v
(Above material published April 1959, PKB, Sheet 1)
-291-
3 -- K TOj (nKTb
Haws)
6 - 3E: H sH)-Tpea
HHfl
I - ceTKa STOpaa
.4 - aep1HHA RU-
BOA -aH01 ,
1) Suppressor grid; 2) internal shield; 3) control grid; 4) cathode
(filament); 5) cathode (filament); 6) internal shield; 7) screen
grid; A) top lead - plate.
Electrical Data
Filament voltage (_)
Filament current
2.2 v
110 ? 15 ma
Plate voltage (_)
Screen voltage (_)
120 v
45 v
Control-grid voltage
Suppressor-grid voltage (_)
0 v
0 v
Plate current
Screen current
no less than 3 ma
no more than 1 ma
Transconductance:
for filament
voltage of
2.2
v
no
less
than
1.7 ma/v
for filament
voltage of
2.0
v
no
less
than
1.6 ma/v
for, filament
voltage of
1.8
v
no
less
than
1.4 ma/v
Negative control-grid voltage for plate
current of 100 pa
Negative electron-current control-grid
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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LOW-POWER TRANSMITTING PENTODE
Control-grid back current*
Cathode emission current
Service life
Service-life criterion:
transconductance
*For control grid voltage of -1 v.
2P29P
no more than 0.5 ?a
no less than 35 ma
1000 hours
no less than 1.45 ma/v
Interelectrode Capacitances
Input
Output
Transfer
Plate-cathode
4.85 ? 0.65 if
2 ? 0.5 ??f
no more than 0.015 ??f
no more than 0.01 ??f
Maximum Permissible Operating Data
Maximum filament voltage
Minimum filament voltage =
Maximum plate voltage (_)
Maximum screen voltage (_)
Maximum plate dissipation
Maximum screen dissipation
Maximum cathode current
2.4 v
2.0 v
200 v
120 v
1 watt
0.3 watt
5 ma
(Above material published April 1959, PKB, Sheet 1)
-292-
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LOW-POWER TRANSMITTING PENTODE 2P29P
T o u r a7, fl ! Corn 6mc r 7. wa
Average Characteristics
Plate
-------- Grid-plate (for screen grid)
Filament voltage, 2.2 v; screen voltage, 4+5 v; suppressor
voltage, 0 v.
1) Plate current, screen current, ma; 2) plate voltage, v; 3) first-
grid voltage, 0 v; 4) -0.2 v; 5) -0.4 v; 6) -0.6 v; 7) -0.8 v;
8) -1 v; 9) -1.2 v; 10) -1.4 v; 11) -1.6 v; 12) -1.8 v; 13) -2 v;
14) -0.2 v; 15) -2 v.
(Above material published April 1959, PKB, G-1)
-293-
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LOW-POWER TRANSMITTING PENTODE
2P29P
Average Characteristics for Transconductance as Function of First-
Grid Voltage
Filament voltage, 2.2 v; plate voltage, 120 v; screen voltage,
45 v; suppressor voltage, 0 v.
- 2 -W -12 -48 .44
to
1) First-grid voltage, v; 2) transconductance, ma/v.
(Above material published April 1959, PKB, G-3)
-294-
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
LOW-POWER TRANSMITTING PENTODE 2P29P
Average Characteristics
Plate-grid
Grid (for screen grid)
Filament voltage, 2.2 v; plate voltage, 120 v; suppressor
voltage, 0 v.
MAI-
~i
?
H IT
M.-Ld e
v
a t r
1
YV
~ ~~AA~~
r~L'jW+s .r g :il .ate N' 1w.4 Y.i.
ftvAmeHLE cemnu naW. 6
1 First-grid voltage, v; 2) plate current, screen current, ma;
3 screen voltage, 60 v; 4) 45 v; 5) 30 v; 6) 60 v; 7) 45 v;
8 30 v.
(Above material published April 1959,PKB, G-2)
-295-
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TRANSMITTING TRIODE
2S14?B
Basic Function voltage amplifier and radio-frequency and audio-
frequency oscillator.
Construction glass subminiature.
Cathode - oxide-coated filament-type
Maximum height (without leads)
Maximum diameter
Number of leads
Lead length
Lead diameter
Maximum weight
Dimension drawing - 8B
4.5 mm
10.2 mm
4+
no less than 40 mm
about 0.4 mm
4.5 grams
Connection Diagram for Electrodes and Leads
2- KaTOA (Man
- UTO* (m.m
1734
H,. w omo,ia, N t7
1 Plate; 2) cathode (filament); 3) cathode (filament); 4) grid;
A) indicator dot.
Electrical Data
Filament voltage (_) 2.2 v
Filament current 60 + 6 ma
Plate voltage (_) 90 v
Grid voltage (_) -3 v
Plate current 3.6 + 0.9 ma
Transconductance 1.8 + 0.145 ma/v
Transconductance for filament voltage
of 2 v no less than 1.1 ma/v
Gain 15 ? 3
Negative voltage* no more than 8 v
Grid back current no more than 0.2 ?a
Vibration-noise voltage** no more than 150 my (eff)
Service life - 2000 hours
Service-life criterion:
transconductance
*For plate current of 100 ?a.
no less than 1.1 ma/v
**For 2 kohm resistance with 50 cps vibration frequency and accelera-
tion of 6 G.
4- Change introduced.
(Above matet?ial published April 1959, PKB, Sheet 1)
-296-
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TRANSMITTING TRIODE 2S14B
Interelectrode'Capacitances
Grid-cathode no more than 2.1 ??f
Grid-plate no more than 2 ??f
Plate-cathode no more than 2.8 ??f
Maximum Permissible Operating Data
Maximum filament voltage (with dro{~ in
service life to 400 hours) (=1 2.5 v
Minimum filament voltage (with dro in
service life to 600 hours) ) 1.8 v
Maximum plate voltage (_) 250 v
Maximum plate dissipation 0.75 watt
Maximum cathode current 5 ma
Maximum frequency of oscillation 300 Mc
(Above material published April 1959, PKB, Sheet 1)
-297-
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DUAL DIODE 2KhlL
Basic function detector.
Construction glass using button stem with internal metal shield.
General Data
Cathode - oxide-coated heater type
Maximum height (without knob) 65 mm
Maximum diameter 32 mm
Maximum weight 45 grams
Base - shield with lock in key, Ts4-2
Dimension drawing - 3L
Connection Diagram for Electrodes and Pins
r , r
~
1 - nOaorpeUUTear .~ : 5-
I
2- neparil aio.a now 6- nropoA anot
3- UTOA 7- upon
4 - sEpae A 8 - aOAorpesaTea-
1) Heater; 2) first plate; 3) cathode; 4) shield; 5) shield; 6) second
plate; 7) shield; 8) heater.
Electrical Data
cu
ea er
Alternating voltage on plate of each diode 50 v (eff)
Plate current for each diode* no less than 1 ma Plate current for each diode with
heater voltage of 2.0 v* 0.85 ma
Mutual conductance of each diode no*less than 0.4 ma/v
Plate-current cutoff voltage for each
diode no less than.-1.5 v
Heater-cathode insulation resistance 2 megohms
Service life 500 hours
Service-life criterion:
plate current for each diode no less than 0.8 ma
*For plate voltage of 5 v W.
rrent 130 + 10 ma
H t
*- Change introduced.
(Above material published April 1959, PKB, Sheet 1)
-298-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80TOO246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
DUAL DIODE 2KH1L
Interelectrode Capacitances
Cathode-plate of each diode 0 2.25 ??f
Between the plates no more than 0.0015 ??f
Maximum Permissible Operating Data
Maximum heater voltage _ or 2.4 v
Minimum heater voltage k- or =3 2.0 v
Maximum alternating plate voltage for each diode 100 v (eff)
Maximum voltage between cathode and heater (_) 30 v
(Above material published April 1959, PKB, Sheet 1)
-299-
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
DUAL DIODE 2Kh1L
*****
Average Initial Plate Characteristic
(for a single diode)
Heater voltage, 2.2 v.
1) Plate voltage, v; 2) initial plate current, ?a..
(Above material published April 1959, PKB, G-1)
-300-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1 -
DUAL DIODE 2KhlL
Average Dynamic Characteristics for Rectified Current as a Function
of Load Voltage
Heater voltage, 2.2 v.
O N nW ntnrJrwadu,fg
1) Load voltage, v; 2) rectified current, pa; 3) first-grid alter-
nating voltage 50 v (eff); 4+) load resistance, 50 kohm; 5) 500 kohm;
6) 300 kohm; 7j 200 kohm; 8) 150 kohm; 9) 100 kohm; 10) 40 v; 11) 30 v;
12) 20 v; 13) 15 v; 14) 10 v; 15) 5 V.
(Above material published April 1959, PKB, G-3)
-301-
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
DUAL DIODE 2Kh1L
Average Plate Characteristic
(For a single diode)
Heater voltage, 2.2 v.
1) Plate current, ma; 2) plate voltage, v.
(Above material published April 1959, PKB, G-2)
-302-
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HIGH-VOLTAGE RECTIFIER
2Ts2S
Basic function rectification'-of alternating current.
Construction glass.
Cathode - oxide-coated heater-type
Maximum height
Maximum diameter
Maximum weight
Base - octal, Tsl-4-4A
Lead-cap, VK1-1
Dimension drawing - 18S
Working position - vertical
Connection Diagram for Electrodes and Pins
NOAiO/pONAv.AM
Nf NOAKAUMION
? - Mt NOANAOWN
1 -- N4I0A N NOW-
Ipf/aTLAb
A - NOpxwA sm.
POA?NOAIIA?
WN - ANOA
114 mm
40 mm
55 grams
2 Heater; 4) not connected; 5) not
A upper lead-cap - plate; B) Key.
connected; 7)
cathode and heater;
Heater voltage (_ or =)
2.5 v
Heater current
1.75 ? 0.2 amp
Transformer secondary AC voltage
4.5 kv (eff)
Load resistance
0.6 megohm
Filter capacitance
0.06 ?f
Plate current*
47.5 ? 17.5 ma
Rectified current*
than 6.8 ma
Service life
Service-life criteria:
500 hours
rectified current
plate current
*With a plate voltage of 200 v.
A
no less
no less
than 5.4 ma
than 20 ma
Change introduced.
(Above material published April 1959, PKB, Sheet 1)
-303-
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HIGH-VOLTAGE RECTIFIER 2Ts2S
Maximum Permissible Operating Data
Maximum heater voltage or
Minimum heater voltage or
Maximum peak inverse plate voltage
Maximum AC plate voltage
Maximum peak plate current
Maximum deviation in plate current at moment
of turning on
Maximum rectified current
2.75 v
2.25 v
12.5 kv
4.5 kv (eff)
45 ma
100 ma
7.5 ma
Change introduced.
(Above material published April 1959, PKB, Sheet 1)
-304-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
HIGH-VOLTAGE RECTIFIER 2Ts2S
Average Plate Characteristic
Heater voltage, 2.5 v.
1) Plate current, ma; 2) plate voltage, v.
(Above material published April 1959, PKB, G-1)
-305-
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3Ts16S
Basic function rectification-of voltage pulse from horizontal-
sweep flyback in color television receivers and special devices.
HIGH-VOLTAGE RECTIFIER
*****
Construction glass.
Cathode - oxide-coated
Maximum height
heater-type
0.5 mm
Maximum diameter
32.8 mm
Maximum weight
40 grams
Base - octal Tsl-4-8A
Dimension drawing - 20S
Connection Diagram for Electrodes and Leads
1 - K1TO1'v noio-
rpeuTe t-
2- nolorpesareai
3 - KUTO,I N nOa0-
rpesaTeAb
4- lie notuawjeN
5- KsT0 ? Rojo.
W"TCAb
6- nosorpCgteri
--,KaTOi N 00a0.
rpe"Tea-
8 - tic nolsawuj
A - sepiumA sa-
sol - sso.1
1) Cathode and heater; 2) heater; 3 cathode and heater; 4) not
connected; 5) cathode and heater; 6) heater; 7) cathode and heater;
8) not connected; A) top lead - plate; B) Key.
3.15 v
210 ? 20 ma
no less than 4.5 ma
no more than 15 sec
750 hours
no less than 3.6 ma
Heater voltage (_ or =)
Heater current
Plate current*
Cathode warm-up time
Service life
Service-life criterion:
plate current*
*For plate voltage-of 120 v.
Interelectrode Capacitance
Preliminary data.
1.5 ? 0.4 ??f
(Above material published April 1959, PKB, Sheet 1)
-306-
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HIGH-VOLTAGE RECTIFIER 3Tsl6S
Maximum Permissible Operation Data
Maximum heater voltage or 3.45 v
Minimum heater voltage (_ or =) 2.85 v
Maximum peak inverse pulsed plate voltage* (_) 35 kv
Maximum rectified current 1.1 ma
Maximum peak pulsed plate current 80 ma
Maximum horizontal-sweep frequency 12 kc
Maximum envelope temperature 150?C
*With a rectified voltage of no more than 28 kv, and a flyback
pulse length of no more than 12 psec.
Resistance to External Effects
Maximum ambient temperature +100?C
Minimum ambient temperature -60?C
Maximum relative humidity at ambient temperature 98%
of up to +40?C
Minimum atmospheric pressure 500 mm Hg
Maximum acceleration in the presence of vibration* 4 G
*In frequency range of 20 to 200 cps.
Preliminary data.
(Above material published April 1959, PKB, Sheet 1)
-307-
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HIGH-VOLTAGE RECTIFIER 3Ts16S
Average Initial Plate Curve
Heater voltage, 3.15 v.
Plate current, ma; 2) plate voltage, kv.
(Above material published April 1959, PKB, G-1)
-3o8-
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HIGH-VOLTAGE RECTIFIER 3Ts16S
Average Plate Characteristic
Heater voltage, 3.15 v.
1) Plate current, ma; 2) plate voltage, v.
(Above material published April 1959, PKB, G-2)
-309-
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GENERAL-PURPOSE SHARP-CUTOFF PENTODE kZh1L
*****
Basic function voltage and power amplifier and radio-frequency
oscillator (up to 200 Mc).
Construction glass, using button stem with internal metal shield.
General Data
Cathode - oxide-coated heater-type
Maximum height
69
mm
Maximum diameter
32
mm
Maximum weight
35
grams
Base - shield with lock-in key, Ts4-1
Dimension drawing - 4L
Connection Diagram for Electrodes and Pins
I - noaorpesaTCah
2- ceTKa TpCTbw
N PNyTpCNNNA
9KpaN
3 - aso2
CeTK3 TpeT16f H
NNyTpeNNN%
*Kpan
S - ceu* iTopas
6- uToa
7 - ceTKa ncpsas
8 - no.orpesaTea'.
1) Heater; 2) suppressor and internal shield; 3) plate; 4+) suppressor
and internal shield; 5) screen grid; 6) cathode; 7) first grid;
8) heater; A) Key.
Electrical Data
Heater voltage (_ or
4+.2 v
Heater current
225 ? 15 ma
Plate voltage (_)
150 v
Suppressor voltage (_)
0 v
Screen voltage (_)
75 v
First-grid voltage (_)
0 v
Plate current
6.80+2.20 ma
-2.05
Plate current for heater.voltage of
3.6 v
no less than 3.75 ma
Plate current for first-grid voltage
of -2.1 v
Screen current*
*For first-grid voltage of -2.1 v.
{-- Change introduced.
(Above material published April 1959, PKB, Sheet 1)
-310-
2.35 ? 0.95 ma 1-
0.55 ? 0.35 ma
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GENERAL-PURPOSE SHARP-CUTOFF PENTODE 4ZhlL
Transconductance* 1.65 ? 0.45 ma/v
Penetrance, triode-connected** 5%
Internal resistance*** - no less than 1.0 megohm
Output power**** -- no less than 0.50 watt
Output power for heater voltage of
3.6 v**** no less than 0.40 watt
First-grid back current*,***** no more than 0.6 pa
Leakage current between cathode and
heater no more than 20 ?a
Service life****** 2000 hours
Service-life criteria:
transconductance* no less than 1.0 ma/v
Plate current no less than 3.8 ma
*For first-grid voltage of -2.1 v.
**For plate and screen voltages of 125 v and first-grid voltage so
set that the plate and screen currents will equal 3 ma.
***First-grid voltage so set that the plate current will equal 2 ma.
****For plate and screen voltages of 250 v, effective first-grid
voltage of 2.8 v plate-load resistance of 35 kohm, screen-circuit
resistance of 2O~kohm, and resistance in cathode circuit of 500 ohms.
*****With resistance in first-grid circuit of no nore than 0.1 megohm.
******For plate and screen voltages of 220 v, resistance in first-
grid, screen, and plate circuits of 0.3 kohm each and 700 ohms in
cathode circuit.
Interelectrode Capacitances
Input 4.0 ? 0.3 ??f
Output 4.2 ? 0.3 ??f
Transfer no more than 0.007 ??f
Plate-cathode* no more than 0.007 ??f
*With all other electrodes grounded.
Maximum Permissible Operating Data
Maximum heater voltage or
Minimum heater voltage (. or =
Maximum plate voltage (_):
working
no-load
Maximum screen voltage (_):
working
no-load
Maximum plate dissipation
Maximum screen dissipation
Maximum voltage between cathode and heater (_)
Maximum cathode current
+- Change introduced.
(Above matei?ial published April 1959, PKB, Sheet 1
-311-
4.8 v
3.6 v
250 v
300 v
225 v
300 v
2 watts
0.7 watt
100 v
11 ma
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GENERAL-PURPOSE SHARP-CUTOFF OENTODE 4Zh1L
Average Plate Characteristics
Heater voltage, 4.2 v; screen voltage, 75 v; suppressor voltage,
1) Plate current, ma; 2) plate voltage, v; 3) first-grid voltage,
o v; 4+) -0.5 v; 5) -1 v; 6) -1.5 v; 7) -2 v; 8) -2.5 v; 9) -3 v;
10) -3.5 v; 11) 24 v.
(Above material published April 1959, PKB) G-1)
-312-
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GENERAL-PURPOSE SHARP-CUTOFF PENTODE 4ZhlL
Average Grid-Plate Characteristics
(for screen grid)
Heater voltage, 4.2 v; screen voltage, 75 v; suppressor voltage,
0 v.
'*% 7bc wn &MODW. Boa
1) Screen current ma; 2) plate voltage, v; 3) first-grid voltage,
o v; 4+) -0.5 v 5$ -1 v; 6) -1.5 v; 7) -2.5 v; 8) -2 v; 9) -3 v;
10) -3.5 v; 11i v.
(Above material published April 1959, PKB, G-3)
-313-
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GENERAL-PURPOSE SHARP-CUTOFF PENTODE kZhlL
Average Characteristics
Plate-grid
------- Grid (for screen grid)
Heater voltage, 4.2 v; plate voltage, 150 v.
t kjVMK&qx Wrxu no6al.6
=f - -5 -y -3
1 First-grid voltage, v; 2 plate current, screen current, ma;
3) screen voltage, 100 v; 243 75 v; 5) 100 v; 6) 75 v.
(Above material published April 1959, PKB, G-2)
-314-
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GENERAL-PURPOSE SHARP-CUTOFF PENTODE
Average Plate Characteristics
(triode connection)
Heater voltage, 4.2 v.
4Zh1L
1) Plate current, ma; 2) plate voltage, v; 3) first-grid voltage,
0 v; 4) -2 v; 5) -4 v; 6) -6 v; 7) -8 v; 8) -10 v; 9) -12 v; 10) -14 v.
(Above material published April 1959, PKB, G-4)
-315-
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TRANSMITTING PENTODE
*****
Basic function oscillator and radio-frequency
(up to 100 Mc).
Construction glass, button stem.
General Data
Cathode - oxide-coated filament-type
Maximum height
Maximum diameter
Maximum weight
Base - with lock-in key
Dimension drawing - 2L
1P1L
Connection Diagram for Electrodes and Pins
KaTO. NNTb
Nava
awOJ
- CCTKk /TOPUO
S - 9KpaK iHyTpew.
HH
6 - CCTKK nepu*
7- WTo. (HNT16
NANSA&)
KKTOu
amplifier
75 mm
32 mm
35 grams
1) Cathode (filament); 2) plate; 3) screen; 4+) suppressor; 5) inter-
nal shield; 6) first grid; 7) cathode (filament); 8) cathode center
tap; A) Key.
Electrical Data
Cathode connection
Parallel
Series
Filament voltage (_ or =)
2.1 v
4.2 v
Filament current
650
+ 50 ma
325,? 25 ma
Plate voltage M
150 v
0
Suppressor voltage (_)
v
Screen voltage (_)
150 v
First-grid voltage at operating point* (_)
-7
? 2.5 v
Plate current**
60
- 20 ma
Plate current at filament voltage of
3.5 v**
no less than 35 ma
Screen current*
no more than 6.5 ma
Transconductance*,***
6+1.8 ma/v
Penetrance, triode connected**** 10.5 ? 2%
*For plate current of 35 ma.
**For first-grid voltage of -3.5 v.
***For screen-voltage increment of ? 0.5 v.
*f**For plate voltages of 125 and 175 v and plate current of 35 ma.
(Above material published April 1959, PKB, Sheet 1)
-316-
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TRANSMITTING PENTODE 4P1L
Output power*,** no less
Output power with heater voltage of 3.6 v* no less
First-grid back current*** no more
Cathode warm-up time - no more
Insulation resistance of third grid
Service-life criteria:
output power*,**
output power at filament voltage
of 3.6 watts*
than
4.2
watts
than
3.5
watts
than
1.5
?a
than
1.5
sec
at filament voltage of 4.8 v no less than 10 megohm
Service life**** 1000 hours
no less than 3.3 watts
no less than 2.5 watts
*In power-amplifier operation, with plate voltage of 200 v, first-
grid voltage of -20 v, suppressor voltage of 15 v, signal voltage
in first-grid circuit of 18 v (eff), and frequency of 12 Mc.
**.For cathode current not exceeding 50 ma, first-grid current of
about 1.0 ma, and screen current not exceeding 10 ma.
***For plate current of 35 ma and resistance in first-grid circuit
of-0.1 megohm.
****For plate and screen voltages of 440 v, suppressor voltage of
O-v, effective excitation voltage in first-grid circuit of 100 v,
resistance in first-grid circuit of 25 kohm, resistance in screen
circuit of 40 kohm, resistance in plate circuit of 4 kohm, at a
frequency of 50 cps.
Interelectrode Capacitances
Input 8.5 ? 1 ??f
Output 9.4 ? 1.5 ?.?.f
Transfer no more than 0.1 ??f
Maximum Permissible Operating Data
Cathode connection
Maximum filament voltage o
=
Minimum filament voltage (... orr
Maximum plate voltage: (_)
working
-no-load
Maximum screen voltage: (_)
working
no-load
Maximum output power*
Maximum plate dissipation
Maximum screen dissipation
Maximum cathode current
Maximum resistance in first-grid circuit
Maximum resistance in suppressor circuit
Parallel Series
2.35 v 4.7 v
1.95 v 3.9 v
250 v'
300 v
250 v
300 v
about 4.5 watts
7.5 watts
1.5 watts
50 ma
0.5 megohm
0.1 megohm
*At frequency not exceeding 30 Mc, and suppressor voltage of 15 v.
(Above material published April 1959, PKB, Sheet 1)
-317-
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TRANSMITTING PENTODE
4PlL
Average Plate-Grid Characteristics
(for screen grid)
Filament voltage, 4.2 v; screen voltage, 150 v; suppressor
voltage, 0 v.
1 K C ff$ I G+,, i. A 2
1) Screen current, ma; 2) plate voltage, v; 3) ?r? v; 4+) 2 v; 5) first-
grid voltage, 0 v; 6) -2 v; 7) -4+ v; 8) -6 v; 9) -8 v; 10) -10 v.
(Above material published April 1959, PKB, G-2)
-318-
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TRIODE
Basic function microwave oscillator.
Construction glass, with guide key
General Data
4S3S
for upper socket.
Cathode - oxide-coated heater-type
Maximum height
Maximum diameter
Maximum weight
Number of pins
Dimension drawing - 27 S
Connedtion Diagram for Electrodes and Pins
0orpcs3TCab
2 - wtoA
3 - pe"Yeai
4.5 - anol
6.7--CCT"a
Kam^ - SWAY"'
,WCT- "a SCp}
MCM U9W"*
Samoa
49.2 mm
32 mm
38 grams
7
1) Heater; 2) cathode; 3) heater; 4+, 5) plate; 6, 7) grid; A) Key:
Key - projection from upper tube base.
Electrical Data
4.4 v
300 ? 30 ma
100 v
-4 v
-4+2v
27.5 ? 12.5 ma
3 ? 1 ma/v
12.5 ? 4.5
no less than 275 mw
no more than 0.6 ?a
***For plate voltage of 130 v, cathode current of 30 ma, and a wave-
length of 30 cm.
****For heater voltage of 5 v, plate voltage of 200 v, and plate
current of 20 ma.
Heater voltage (_ or =)
Heater current
Plate voltage (_)
Grid voltage (_)
Grid voltage at operating point**
Plate current*
Transconductance**
Amplification factor**
Output power***
Grid back current****
*For 0 grid voltage.
**For plate current of 10 ma.
+- Change introduced.
(Above material published April 1959, PKB, Sheet 1)
-319-
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TRIODE 1S3S
Leakage current between cathode and heater no more than 100 ?a
Service life 400 hours
Service-life criteria:
output power* no less than 206 mw
back current no more than 1.2 ?a
*For plate voltage of 130 v, cathode current of 30 ma, and at a
wavelength of 30 cm.
Interelectrode Capacitances
Input
Output
Transfer
Maximum Permissible Operating Data
Maximum heater voltage S or
Minimum heater voltage ( or =
Maximum plate voltage (_)
Maximum plate dissipation
Maximum grid dissipation
Maximum mean cathode current
Maximum voltage between cathode and heater (_)
Minimum wavelength
Maximum envelope temperature
1.55 ? 0.25 ??f
0.65 ? 0.15 ??f
1.15 ? 0.25 ??f
4 v
300 v
5 watts
0.25 watt
30 ma
100 v
30 cm
15000
+- Change and addition introduced.
(Above material published April 1959, PKB, Sheet 1)
-320-
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TRIODE
Average Plate Characteristics
-?-?-?- Maximum permissible plate dissipation;
Heater voltage, 4.4 v.
ToK aMOCo. Ma
4S3S
1) Plate current, ma; 2) plate voltage, v; 3) grid voltage, 0 v;
4 -2 v; 5) -4 v; 6) -6 v; 7) -8 v; 8) -10 v.
(Above material published April 1959, PKB, G-1)
-321-
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TRIODE
Average Plate-Grid Characteristics
Heater voltage, 4.4 v.
-14 -2
1 hpp eMup ce/nM : D
4S3S
1) Grid voltage, v; 2) plate current, ma; 3) plate voltage, 250 v;
4+ 200 v; 5) 150 v; 6 100 v; 7) 50 v.
(Above material published April 1959, PKB, G-2)
-322-
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DUAL-PLATE RECTIFIER 5Ts3S
*****
Basic Function AC rectification.
'Construction glass.
General Data
Cathode -oxide-coated filament-type
Maximum height
Maximum diameter
Maximum weight
Base - octal Tsl-5-5G
Dimension drawing - iS
140 mm
52 mm
72 grams
Connection Diagram for Electrodes and Pins
I - Ne no men
2-s,toi(w?
Msaaa)
auos sTOporo -
6- ANO,* Nepsoro
aria
11TO2 (NNns
Nasaaa)
1 Not connected; 2) cathode (filament) ; 4) plate or second diode;
6) plate of first diode; 8) cathode (filament); A) Key.
Electrical Data
Filament voltage (_ or =)
Filament current
Alternating voltage across transformer
secondary
Resistance in plate circuit
Filter capacitance
Emission current for each cathode*
Rectified current
Insulation resistance of each plate
Service life
Service-life Criterion:
rectified current
*With plate voltage (_) of 75 v.
5 v
3 ? 0.3 amp
2 x 500 v (eff)
2 kohm
4?f
no less than 225 ma
no less than 230 ma
no less than 20 megohm
500 hours
no less than 200 ma
(Above material published April 1959, PKB, Sheet 1)
-323-
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DUAL-PLATE RECTIFIER 5Ts3S
Maximum Permissible Operating Data
Maximum filament voltage S_. or 5.5 v
Minimum filament voltage l_ or = 4.5 v
Maximum peak inverse plate voltage 1.7 kv
Maximum mean rectified current 250 ma
Maximum peak plate current 750 ma
Typical Operating Conditions
No. 1 No. 2
Alternating voltage across transformer
secondary, v (eff) 2 x 500 2 x 500
Total pure resistance in plate circuit,*
ohms 50 50
Filter capacitance, pf 4 20
Peak inverse plate voltage, kv 1.2 1.3
Rectified current, ma 250 225
Rectified voltage, v 500' 570
Peak plate current, ma 730 750
*The total pure resistance in the plate circuit is formed by the
resistance component of half of the transformer secondary. If the
resistance value for half of the transformer secondary is less
than the value indicated, then in order to limit the peak plate
current, it is necessary to connect additional resistance into
the plate circuit.
(Above material published April 1959, PKB, Sheet 1)
-324-
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DUAL-PLATE RECTIFIER
Average Plate Characteristic Curve
(for a single diode)
Filament voltage, 5 v.
::::
?.
..........
7 7
~~ is
_f :?,..:~ ..~,.-... ..
::
JN 0M&0. w0
1) Plate current, ma; 2) plate voltage, v.
(Above material published April 1959, PKB, G-1)
-325-
5Ts3s
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DUAL-PLATE RECTIFIER 5Ts3S
*****
Average Rectified-Voltage Curves as a Function of Rectified Current
Filter
acitance
ca
20 ?f
,
p
-------
Filter
capacitance,
10 ?f
- ?- ?- ?-
filter
capacitance,
4+ ?f
Pure resistance in circuit of each anode, 90 ohms; filament
voltage, 5 v.
U:4
:i4
4:J
H =
ice
s}
=iji...
7
~ M_
Z
2. ')d gwn&ft m200
OK.-b
1) Rectified voltage, v; 2) rectified current, ma; 3) voltage in
each side of transformer secondary, 500 v (eff); 4) 450 v (eff);
5) 400 v (eff); 6) 350 v (eff); 7) 300 v (eff); 8) 250 v (eff);
9) 200 v (eff).
(Above material published April 1959, PKB, G-3)
-326-
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DUAL-PLATE RECTIFIER
*****
5Ts3S
Average Rectified-Voltage Curves as a Function of Rectified Current
Filament voltage, 5 v; filter capacitance, 4?f; pure resis-
tance in circuit of each plate, 30 ohms.
om:
.:........ I :t
: ::_ ....:f:_::x::
is
r ~
I:_
a
:
7 50 1150
&w ,OM #"w m,)t. Ma
150
1) Rectified voltage, v; 2) rectified current, ma; 3) voltage (eff)
for each side of transformer secondary, 450 v; 4+) 400 v; 5) 350 v;
6) 300 v; 7) 250 v.
(Above material published April 1959, PKB, G-2)
-327-
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DUAL-PLATE RECTIFIER 5Ts3S
Average Curves for Plate Power Dissipation as a Function of Recti-
fied Current
Filter capacitance, 20 ?f; filament voltage, 5 v; pure resis-
tance in circuit of each plate, 90 ohms.
' '?.t ...
1) Plate power dissipation, watts; 2) rectified current, ma; 3) volt-
age in each side of transformer secondary, 500 v (eff); 4+) 400 v (eff);
5) 300 v (eff); 6) 200 v (eff).
(Above material published April 1959, PKB, G-k)
-328-
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DUAL-PLATE RECTIFIER 5Ts4M
*****
Basic function AC rectification.
Construction glass
Cathode - oxide-coated heater-type
Maximum height 92 mm
Maximum diameter 33 mm
Maximum weight 45 grams
Socket - octal, Tsl-1-4V
Dimension drawing - 24S
Note: The tube can also be produced in a cylindrical envelope with
a case sleeve (Tsl-1-4V), or with a can-type base (Tsl-~+-4V .
Connection Diagram for Electrodes and Pins
2 - nosorpesai a-
s - a*oa nepsoro
a*oaa
I - a*oa aroporo
saoia
e - saroa ^ sofo-
rpeaatraa
2) Heater; 4) plate of second diode; 6) plate of
8) cathode and heater; A) Key.
first
diode;
Heater voltage (_ or
5 v
Heater current
2
? 0.2 amp
Alternating voltage across transformer secondary
2
x 400 v (eff)
Plate-circuit resistance
3300 ohms
Filter capacitance
4?f
Emission current for each diode* no less than 300 ma
Rectified current no less than 133 ma
lt
h
t
r
er vo
age
rent for
ea
Rectified cu
of4.5v
Insulation resistance for each plate
Service life
Service-life criterion:
rectified current
*For plate voltage (_) of 50 v.
no less than 110 ma
no less than 20 megohm
500 hours
no less than 115 ma
(Above material published April 1959, PKB, Sheet 1)
-329-
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DUAL-PLATE RECTIFIER 5Ts4M
Maximum Permissible Operating Data
Maximum heater voltage ~__ or 5.5 v
Minimum heater voltage or 4.5 v
Maximum peak inverse plate voltage 1550 v
Maximum mean rectified current 1440 ma
Maximum peak plate current 415 ma
Maximum deviation of plate current at instant
of turn-on 1)+00 ma
Resistance to External Effect
Minimum atmospheric pressure 41 mm Hg
Note: The minimum atmospheric pressure is 35 mm Hg for tubes pro-
duced in cylindrical envelopes (with flat stems).
(Above material published April 1959, PKB, Sheet 1)
-330-
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DUAL-PLATE RECTIFIER
Average Plate Curve
(for a single plate)
Heater voltage, 5 v.
t2:
tiff
:a
~22ii
?
2'
:
ii
50
ool
ti
i
11
..
i
ii??
i
s
m
~
fir;
fir,
:
I
.:t
2:?
i2
y
4t
2
r
u
1
1) Plate current, ma; 2) plate voltage, v.
(Above material published April 1959, PKB, G-1)
-331-
5Ts2+M
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DUAL-PLATE RECTIFIER
*****
Basic function AC rectification.
Construction glass.
Cathode - oxide-coated heater-type
Maximum height
Maximum diameter
Maximum weight
Base, octal, Tsl-4-4V
Dimension drawing - 2S
Connection Diagram for Electrodes and Pins
4 - sNOA aTOpOru
1HOAs
a;- awoA Dep.oIO
JNoAa
8 --boAOrpesaTea-
N KaTO]
5Ts4S
115 mm
42 mm
55 grams
2 Heater; 4) plate of second diode; 6) plate of first diode;
8) heater and cathode; A) Key.
Heater voltage (_ or =)
Heater current
Alternating voltage across transformer secondary
Resistance in plate circuit
Filter capacitance
Emission current for each cathode*
Rectified current
Rectified current for heater voltage
of 4.5 v
Insulation resistance for each plate
Service life
Service-life criterion:
rectified current
*For plate voltage (_) of 50 v.
5 v
2 ? 0.2 amp
2 x 500 v (eff)
4.7 kohm
4 ?f
no less than 300 ma
no less than 122 ma
no less than 100 ma
no less than 20 megohm
500 hours
no less than 105 ma
(Above material published April 1959, PKB, Sheet 1)
-332-
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DUAL-PLATE RECTIFIER
Maximum Permissible' Operating Data
Maximum heater voltage or
Minimum heater voltage or
Maximum peak inverse plate voltage
Maximum mean rectified current
Maximum peak plate current
Maximum deviation in plate current at instant
of turn-on
(Above material published April 1959, PKB, Sheet 1)
-333-
5Ts4+s
5.5 v
4.5 v
1.35 kv
125 ma
375 ma
1.25 amp
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DUAL-PLATE RECTIFIER 5Ts4S
Average Plate Curve
(for a single plate)
Heater voltage, 5 v.
1) Plate current, ma; 2) plate voltage, v.
(Above material published April 1959, PKB, G-1)
-334-
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DUAL-PLATE RECTIFIER 5TskS
Average Rectified-Voltage Curves as a Function of Rectified Current
Filter capacitance, 8 if.
------- Filter capacitance, 4 ?f.
Heater voltage, 5 v; total pure resistance in circuit of each
plate, 30 ohms.
?J 50
&fPAWV9" X16'+. MU
1) Rectified voltage, v; 2) rectified current, ma; 3) voltage (eff)
for each side or transformer secondary, 350 v; 4) 300 v; 5) 250 v.
(Above material published April 1959, PKB, G-2)
-335-
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DUAL-PLATE RECTIFIER 5Ts8S
*****
Basic function AC rectification.
Construction glass baseless.
General Data
Cathode - oxide-coated heater-type
Maximum height 134 mm
Maximum diameter 52 mm
Maximum weight 110 grams
Dimension drawing - 31S
Connection Diagram for Electrodes and Pins
J - no, orpcaness
r3TOA a DOAO-
rper4reas
r3TOA ^ CO*O.
rpea.~reab
- ausoA aepsoro
6 - maa Koporo
MOO
1) Heater; 2) cathode and heater; 3) cathode and heater; 4) plate
of first diode; 5) plate of second diode.
Heater voltage (_ or =)
Heater current
Alternating voltage across transformer secondary
Resistance in,plate circuit
Filter capacitance
Emission current for each diode*
no
less
Rectified current
no
less
First-plate - cathode** leakage current
no
more
Second-plate - cathode** leakage current
no
more
Service life ***
Service-life criterion:
rectified current
5 v
5 ? 0.75 amp
2 x 500 v (eff)
1000 ohms
4 ?f
than 300 ma
than 400 ma
than 50 pa
than- 50 ?a
500 hours
no less than 360 ma
*For plate voltage (_) of 75 v.
**For heater voltage of 0 v, plate
voltage
(_) of
***For a rectified current of 400
ma.
500 v.
(Above material published April 1959, PKB, Sheet 1)
-336-
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DUAL-PLATE RECTIFIER
Maximum Permissible Operating Data
Maximum heater voltage or =)
Minimum heater voltage or
Maximum peak plate current
Maximum peak inverse plate voltage
Maximum mean rectified current
Maximum plate-current deviation at instant
of turn-on
Maximum plate power dissipation
Maximum envelope temperature
Typical Operating Conditions
Heater voltage (_ or =)
Alternating voltage across transformer secondary
Rectified current
5Ts8s
5.5 v
4.5 v
1.2 amp
1700 v
420 ma
5 amp
30 watts
200?C
2 x 500 v (eff)
400 ma
Notes:
1. It is possible to operate these tubes in the following regimes:
a) Continuous - for a heater voltage (_ or =) of 5 v, rectified cur-
rent of 380 ma, and peak inverse plate voltage of 1700 v;
b) Intermittent - for no more than five minute periods - with heater
voltage (.r or =) of 5 v, rectified current of 420 ma, and peak
inverse plate voltage of 1700 v.
2. It is possible to apply the heater and plate voltages simultaneously.
3. It is recommended that a 1.5 amp cartridge fuse be connected into
each plate circuit.
(Above material published April 1959, PKB, Sheet 1)
-337-
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DUAL-PLATE RECTIFIER
Average Plate Curve
(for a single plate)
Heater voltage, 5 v.
Z. Mcr #eNue 0h'X*.6
1) Plate current, ma; 2) plate voltage, v.
(Above material published April 1959, PKB, G-1)
- 338-
5Ts8s
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DUAL-PLATE RECTIFIER 5Ts8S
Average Rectified-Voltage Curves as a Function of Rectified Current
Heater voltage, 5 v; filter capacitance, 4+ ?f, Pure resistance
in circuit of each plate, 30 ohms.
1) Rectified voltage, v; 2) rectified current, ma; 3) voltage (eff)
for each side of transformer secondary, 450 v; 4) 400 v; 5) 350 v;
6) 300 v; 7) 250 v.
(Above material published April 1959, PKB, G-2)
-339-
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DUAL-PLATE RECTIFIER 5Ts9S
Basic function AC rectification.
Construction glass baseless.
General Data
Cathode - oxide-coated, heater-type
Maximum height
93.5 mm
Maximum diameter
45.3 mm
Maximum weight
95 grams
Dimension drawing - 29S
Connection Diagram for Electrodes and Pins
2 - earoA n aono-
rpeeareA-
3 - ratos a 0010-
rpesaTeAb
4 -a "01 nepporo
jnoaa
S - aeon eroporo
AMOAU
1) Heater; 2) cathode and heater; 3) cathode
of first diode; 5) plate of second diode; A)
*The key is formed by a protuberence on the
sion coincides with the direction of pin 2.
and heater; 4+) plate
Key.
envelope whose exten-
Heater voltage (_ or =)
Heater current
5 v
3 ? 0.3 amp
Alternating voltage across transformer secondary
2 x 500 v (eff)
Resistance in plate circuit
2200 ohms
Filter capacitance
' 4 ?f
Heater current
3 ? 0.3 amp
Emission current for each diode*
no
less
than
180 ma
Rectified current
no
less
than
190 ma
Insulation resistance for each plate**
no
less
than
10 megohm
Service life***
500 hours
Service-life criterion:
rectified current
*For plate voltage of 75 v W.
no less than 150 ma
**For a heater voltage of 0 v, a plate voltage of 500 v.
***For rectified current of 200 ma.
(Above material published April 1959, PKB, Sheet 1)
-340-
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Maximum Permissible Operating Data
Maximum heater voltage or
Minimum heater voltage _. or
Maximum peak plate current
1
5Ts9S
5.5 v
4.5 v
600 ma
1700 v
205 ma
Maximum peak inverse plate voltage
Maximum average rectified current
Maximum average plate-current deviation at
instant of turn-on
Maximum plate power dissipation
Maximum envelope temperature
(Above material published April 1959, PKB, Sheet 1)
341-
-341-
3.0 amp
3. 0
12.0 watts
2000C
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DUAL-PLATE RECTIFIER
Average Plate Curve
(for a single plate)
Heater voltage, 5 v.
1 ` .
.=
.. tL.
?
i=
w
:
...
.:~
:
.
ter
.
.
kkk
y
f
. j-.'v
5
Z iorc eme v o,Q
1) Plate current, ma; 2) plate voltage, v.
(Above material published April 1959, PKB, G-i)
- 342-
5Ts9S
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DUAL-PLATE RECTIFIER
5Ts9S
Average Rectified-Voltage Curves as a Function of Rectified Current
Heater voltage, 5 v; filter capacitance, 4 ?f; total pure resis-
tance in circuit of each plate, 30 ohms.
1) Rectified voltage, v; 2) rectified current, ma; 3) voltage (eff)
for each side of transformer secondary, 450 v; 4) 400 v; 5) 350 v;
6) 300 v; 7) 250 v.
(Above material published April 1959, PKB, G-2)
-343-
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DUAL-PLATE RECTIFIER (LONG-LIFE) 5Ts9S-Ye
*****
Basic function AC rectification.
Construction glass baseless.
General Data
Cathode - oxide-coated
Maximum height
heater-type
93.5 mm
Maximum diameter
x+5.3 mm
Maximum weight
95 grams
Dimension drawing - 29S
Connection Diagram for Electrodes and Pins
I - ao2orpesatea-
2 - nozorpeeareal,
a raTO;
3 - aoiorpeuTeab
a r1TO2
1) Heater; 2) heater and cathode; 3) heater and cathode;
diode plate; 5) second-diode plate; A) Key.
*The key is a protuberence on the envelope the extension
- no% aepeoro
zdsoaa
5- auoa sioporo
inOaa
4) first-
coincides with the direction of pin 2.
Heater voltage (_ or =)
5 v
Heater current
3 ? 0.3 amp
Alternating voltage across transformer
secondary
2 x 500 v (eff)
Resistance in plate circuit
2200 ohms
Filter capacitance
4 ?f
Emission current for each diode*
no less than
190 ma
Rectified current
no less than
190 ma
Service life
5000 hours
Service-life criterion:
Rectified current
*For plate voltage of 75-v
no less than 160 ma
(Above material published April 1959, PKB, Sheet 1)
-344-
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DUAL-PLATE RECTIFIER (LONG-LIFE)
Maximum Permissible Operating Data
5Ts9S-Ye
Maximum heater voltage ... or
5.25 v
Minimum heater voltage _ or
4.75 v
Maximum peak plate current
600 ma
Maximum peak inverse plate
voltage
1700 v
Maximum average rectified
Maximum deviation in plate
current
current
at
200 ma
instant of turn-on
Maximum plate power dissipation
Maximum envelope temperature
Resistance to External Effects
Atmospheric pressure
Vibration resistance*
Vibration-resistance criterion -
absence of short circuits at vibration fre-
quency of 50 cps
*For vibration in the 12-50 cps range.
(Above material published April 1959, PKB, Sheet 1)
-345
3 amp
12 watts
2000C
41 mm Hg
8 G
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DUAL-PLATE RECTIFIER (LONG-LIFE)
Average Plate Curve
Heater voltage, 5 v.
1) Plate current, ma; 2) plate voltage, v.
(Above material published April 1959, PKB, G-1)
- 346-
5Ts9S-Ye
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HIGH-VOLTAGE RECTIFIER
Basic function AC rectification.
Construction glass miniature.
General Data
5Ts12P
Cathode - oxide-coated heater-type
Maximum height 75 mm
Maximum diameter 22.5 mm
Maximum weight 25 grams
Number of pins 9
Dimension drawing - 18P
Connection Diagram for Electrodes and Pins
I -be
~'n~KAKN1CN
2- w a ~ nru
.? - ae N' tl~ap~ell
- noaof pesaTea-
f - KaTO* N lO*O-
"esaTea-
6 - Ne aoaKaar{eu
7 - Nt aoaz.il qeN
- NC aOAKapuM
9 - NO 1O2Ka1D9eM
A-sepxNNA a aol-
Koana(4OK -
aNn.
1 Not connected; 2) not connected; 3) not connected; 4) heater;
5) cathode and heater; 6) not connected; 7) not connected; 8) not
connected; 9) not connected; A) Top lead-cap - plate.
Electrical Data
Heater voltage (.r or =)
Heater current-
Alternating voltage across transformer
Load resistance
Filter capacitance
Plate current*
Rectified current
Service life
Service-life criterion:
rectified current
*For plate voltage (=) of-40 v.
5 v
770 70 ma
secondary 2 kv (eff)
40 kohm
1 p.f
no less than,50 ma
no less than 50 ma
500 hours
45 ma
(Above material published April 1959, PKB, Sheet 1)
-347-
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HIGH-VOLTAGE RECTIFIER
Maximum Permissible Operating Data
5Ts12P
Maximum heater voltage or 5.5 v
Minimum heater voltage or 4.5 v
Maximum peak inverse plate voltage 5 kv
Maximum average rectified current 50 ma
Maximum peak plate current 350 ma
Maximum plate power dissipation 5 watts
Maximum deviation in plate current at instant
of turn-on 2 amps
Maximum envelope temperature 2000C
(Above material published April 1959, PKB, Sheet 1)
-348-
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Average Plate Curve
Heater voltage, 5 v.
'
=tit
T
,
+i~f
-1717 --r7
4-4
+
s
)
.
-r
?.+-~-f-~-
z
a.~-~-!-
!j-""4r
..t-a dti-r
1 ~ ~
?VI Y~ ~VI
u,' ", o
1) Plate current, ma; 2) plate voltage, v.
(Above material published April 1959, PKB, G-1)
-349-
5Ts12P
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HIGH-VOLTAGE RECTIFIER 5Tsl2P
Average Dynamic Charactel?istics
Heater voltage, 5 v.
MICK=
1) Rectified current, ma; 2) rectified voltage, v; 3) load resis-
tance, 40 kohm; 4) 45 kohm; 5) 50 kohm.
(Above material published April 1959, PKB, G-2)
-350-
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HEPTODE-CONVERTER 6A2P
Basic function frequency conversion.
Construction glass miniature.
General Data
Cathode - oxide-coated heater-type
Maximum height 57 mm
Maximum diameter 19 mm
Number of pins 7
Dimension drawing - 3P
Connection Diagram for Electrodes and Pins
1 - COTU Repo"
? - tavu M estsa
nstas
J - noAorpesatsab
4 - ao2orpesattab
3-1102
J - utns 8TOPas
^ sigmas
7- estEs tps?s
1 First grid; 2) cathode and fifth grid; 3) heater; 4) heater;
5) plate; 6) second and fourth grids; 7) third grid.
Electrical Data
Heater voltage (_ or =) 6.3 v
Filament current 300 ? 25 ma
Plate voltage (=) 250 v
Second and fourth grid voltages (_) 100 v
Third grid voltage (_) -1.5 v
Plate current 3 + 1 ma
Second and fourth grid currents* 7 ? 2.1 ma
First-grid current no more than 0.5 ma
Conversion transconductance*,** no less than 0.3 ma/v
Conversion transconductance for third-
grid voltage of -35 v from 0.5 to 25 pa/v
Heterodyne transconductance*** no less than 4.5 ma/v
Internal resistance 0.8 kohm
Third-grid back current no more than 2 pa
Leakage current between cathode and
heater no more than 20 ?a
Cathode emission current no less than 60 ma
Service life 500 hours
Service-life criterion:
Heterodyne transconductance*** no less trian 3.6 ma/v
*For an alternating first-grid voltage corresponding to a current
of 0.8 ma in the grid circuit, and 20 kohm resistance in the grid
circuit.
**With an alternating third-grid voltage of 0.7 v (eff).
***For a plate voltage of 100 v.
+- Change and addition introduced.
(Above material published April 1959, PKB, Sheet 1)
-351-
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HEPTODE-CONVERTER
Interelectrode Capacitances
Input, first grid
Input, third grid
Output
Plate-third grid
Maximum Permissible Operating Data
Maximum heater voltage S or
Minimum heater voltage 1_ or =
Maximum plate voltage (_)
Maximum second and fourth grid voltage
Maximum negative third-grid voltage
Maximum plate power dissipation
(_)
Maximum second and fourth grid power dissipation
Maximum cathode current
Maximum voltage between cathode and heater (_)
+- Change and addition introduced.
(Above material published April 1959, PKB, Sheet 1)
-352-
6A2P
3.6 ??f
8 ??f
10.5 ??f
0.35 ??f
6.9 v
5.7 v
330 v
110 v
-50 v
1.1 watts
1.1 watts
14 ma
100 v
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HEPTODE-CONVERTER 6A2P
Average Plate Characteristics
Heater voltage, 6.3 v; second-grid voltage, 100 v; first-grid
voltage, 0 v.
:*_: :c: .:h. is :;: :,:_ :{: .,.. _---?--.,..Zo
Y? -
Tort c.ro
1 Plate current, ma; 2) plate voltage, v; 3) third-grid voltage,
4) -2 v; 5) -4 v; 6) - 6 v; 7) -8 v; 8) -10 v; 9) -15 v.
0 v;
(Above material published April 1959, PKB, G-1)
-353-
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HEPTODE-CONVERTER 6A2P
Average Heterodyne Characteristics
Mutual conductance; ------- Plate-grid; heater voltage, 6.3 v;
plate, second-grid, fourth-grid voltage, 100 v; third-grid voltage,
0 V.
:f?
:t.
i
:
F
.
.
n
ii?i
...i
1
U
1
t
44
a.
Ui'
'~
:::
'?
r
??+
~
:.
:I"
.N.
I
W
_
-
.
?
:
f... Ii
,
:
t? 1
:::i:
:t
.
t
....
?t
"i?
ti::
1) Plate current, ma; 2) first-grid voltage, v; 3) mutual conductance,
ma/v.
(Above material published April 1959, PKB, G-3)
-354-
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HEPTODE-CONVERTER 6A2P
AVERAGE PLATE CURVES
Heater voltage, 6.3;'screen voltage, 100 v; suppressor volt-
age, 0 v.
I a &,*.No
1) Plate current, ma; 2) plate voltage, v; 3) first-grid voltage,
0 v; 4+) -2 v; 5) -4+ v; 6) -6 v; 7) -8 v; 8) -10 v; 9) -15 v.
(Above material published April 1959, PKB, G-2).
-355-
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DUAL-CONTROL BEAM-POWER TUBE 6A3P
Basic function applications in amplitude limiters, detectors
for frequency and phase-modulated.signals, and in coincidence cir-
cuits.
Construction glass miniature.
General Data
Cathode - oxide-coated heater-type
Maximum height
Maximum diameter
Maximum weight
Number of pins
Dimension drawing - 9P
70 mm
19 mm
17 grams
7
Connection Diagram for Electrodes and Pins
KaTOa. KycN-
PYI)wn , lacK-
Tpoa acpaw*.
4OKYCNPYKMuNA
saeKTpoa STO-
POA N sEpaN
aNOaa
2 - ceTKa nepaaa
3 - noaorpe.ayeas
t - aolorpeuTeab
S - ycxopnreab ^
erT 1 $TOpan
6 - ctrxa Tpema
I-som
1) Cathode, first focusing electrode, second focusin electrode,
plate shield; 2) first grid; 3) heater; 4) heater; 5) accelerator
and second grid; 6) third grid; 7) plate.
Electrical Data
Heater voltage (.r or =) 6.3 v
Heater current 300 ? 25 ma
Plate voltage (_) .75 v
Accelerator voltage and second-grid voltage (_) 75 v
Plate current* no less than 3.5 ma
Accelerator current* 7 ma
*For first and third grid voltage of +4 v.
(Above material published April 1959, PKB, Sheet 1)
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DUAL-CONTROL BEAM-POWER TUBE
Maximum Permissible Operating Data
Maximum heater voltage or
Minimum heater voltage ~__ or =
Maximum plate voltage (_)
Maximum accelerator voltage (_)
Maximum plate power dissipation
Maximum accelerator dissipation
Maximum voltage between cathode and heater
Maximum cathode current
(_)
Typical Operating Conditions in
Detector Circuit
1 Input- 2) ??f? 3) choke; 4) ohms;
8) ?f; 9j Mc; 105 volts.
Plate power-supply voltage
Accelerator supply voltage
Signal amplitude at input
Signal amplitude at output
Slope of detection curve
Initial plate current
f=3
5)
200 v
6o v
2 v
no more than 50 v
450 my/Mc
no more than 0.5 ma
(Above material published April 1959, PKB, Sheet 2)
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6A3P
7 v
5.7 v
150 v
100 v
1.2 watts
1.5 watts
100 V
20 ma
output; 6) kohms; 7) +Eus-60 v;
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DUAL-CONTROL BEAM-POWER TUBE 6A3P
First-grid mean mutual conductance*
Mean third-grid mutual conductance*
Mean first-grid mutual conductance-for
heater voltage of 5.7 v*
First-grid current**
Third-grid current**
Negative first-grid-voltage for plate
current of 100 ?a***
Negative third-grid voltage for plate
current of -100 ?a****
Negative first-grid voltage corresponding
to plate half-current***
Negative third-grid current-corresponding
to plate half-current****
First-grid back current*****--
Catnode-heater leakage current******
Service life ......
Service-life criteria:
Plate current variation from initial
no less than 1.2 ma/v
no less than 0.95 ma/v
no less than 1.1 ma/v
500 ?a
300 ?a
2.75 0.75 v
3 ? 0.75 v
1.65 ? 0.65 v
0.75 ? 0.75 v [ sic ]
no more than 0.5 ?a
no more than 30 ?a
500 hours
value no more than 12%
*The mean mutual conductance is determined in accordance with the
formula .
Sav = O.81a/(UsO.9-UsO.l)'
where Ia is the plate current for first and third grid voltages of
4 v; UsO.9 and US0.1 are the first and third grid voltages at which
the plate current equals 0.9 and 0.1 amp respectively.
**For first and third grid voltages of 10 v.
***For third-grid voltage of 4 v.
****For first-grid voltage of 4 v.
*****For first-grid voltage of -10 v.
******For voltage between heater and cathode of ? 250 v.
Interelectrode Capacitances
Input, first grid
Input, third grid
Output, first grid
Output, third grid
.First grid-plate
Third grid-plate
First grid-third grid
no more than 5.2 ??f
no more than 2 ??f
4 ??f
2.2 ??f
no more than 0.007 ??f
no more than 2 ??f
no more than 0.007 ??f
(Above material published April 1959, PKB, Sheet 1)
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DUAL-CONTROL BEAM-POWER TUBE
6A3P
Mean Plate Characteristics
Heater voltage, 6.3 v; third-grid voltage, 4 v; accelerator
voltage, 75 v.
1) Plate current, ma.; 2) plate voltage, v; 3) first-grid voltage,
3 v; 4) 1 v; 5) 0 v; 6) -1 v; 7) -1.5 v.
(Above material published April 1959, PKB, G-1)
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DUAL-CONTROL BEAM-POWER TUBE
Average Plate-Grid Characteristics
Heater voltage, 6.3 v; plate voltage, 75 v.
75 v.
4 . 4..
1) First-grid voltage, v; 2) plate current, ma; 3) third-grid voltage,
4 v; 4) 2 v; 5) 1 v; 6) 0 v; 7) -1 v; 8) -1.5 v.
(Above material published April 1959, PKB, G-3)
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6A3P
accelerator voltage, '
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DUAL-CONTROL BEAM-POWER TUBE
6A3P
Average Characteristics
(as a function of first-grid voltage)
Cathode current,; ------- Accelerator current; heater voltage,
6.3 v; plate voltage, 75 v; accelerator voltage, 75 v.
_-
_
1 Third-grid voltage, l v 3 v; 2) 0 v; 3) -1 v; 4) -1.5 v; 5) -1.5.v;
6) -1 v; 7) 0 v; 8) 1 v; 9~ 3 v; 10) cathode current, accelerator
current, ma.
(Above material, published April 1959, PKB, ?
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DUAL-CONTROL BEAM-POWER TUBE 6A3P
Average Plate Characteristics
'Heater voltage, 6.3 v; first-grid voltage, 4 v; accelerator
voltage, 75 v.
1) Plate current, ma; 2) plate voltage, v; 3) third-grid voltage,
3 v; 4) 1v; 5) Ov; 6) -1v; 7) -1.5 v.
(Above material published April 1959, PKB, G-2)
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DUAL-CONTROL BEAM-POWER TUBE
*****
Average Plate-Grid Characteristics
Heater voltage, 6.3 v; plate voltage, 75 v;
75 v.
6A3P
accelerator voltage,
1) Third-grid voltage, v; 2) plate current, ma; 3) first-grid voltage,
4 v; 4) 1 v; 5) 0 v; 6) -0.5 v; 7) - 1 v; 8) -1.5 v.
(Above material published April 1959, PKB, G-L)
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HEPTODE CONVERTER
Basic function frequency conversion.
Construction metal.
Cathode - oxide-coated heater-type
Maximum height
Maximum diameter
Base - octal, Tsl-1-8A
Maximum weight
Dimension drawing - 1M
6A7
67 mm
33 mm
45 grams
Connection Diagram for Electrodes and Pins
.3 - ce?w aepw
2 - owWCpeuteab
6-
3 - asou~ 7 - sO*Otpesu?ea.
- c em sTopss ^ , R 8 - ce?us ?pens
1) Envelope and fifth grid; 2) heater; 3) plate; 4) second and
fourth grid; 5) first grid; 6) cathode; 7) heater; 8) third grid;
A) Key.
Electrical Data
Heater
voltage
(_ or =)
6.3 v
Heater
current
300 ? 25 ma
Plate
voltage (
_)
250 v
Second
and
fourth
grid voltages (_)
100 v
Third
grid
voltage
(
)
0 v
Fifth grid
voltage
_
? 0 v
Plate current*
Second and fourth grid currents*
First grid current*
Conversion transconductance*
Conversion transconductance-for third-grid
voltage of -35 v*
Heterodyne transconductance*
Heterodyne transconductance-for heater
voltage of 5.7 v*
3.5 ? 1 ma
9 2.5 ma
0.51 ? 0.13 ma
0.4+5 ? 0.15 ma/v
from 0.5 to 2.5 ?a/v
4.7 ? 1.2 ma/v
no less than 2.8 ma/v
*Under dynamic conditions. The oscillator section of the tube operates
in a Hartley circuit with a first-grid circuit resistance of 20 kohm;
the alternating voltage on the third grid is 0.7 v (eff).
**For a plate voltage of 100 v and a first-grid voltage of 0 v.
(Above material published April 1959, PKB, Sheet 1)
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HEPTODE CONVERTER
6A7
Third-grid back current*
no
more
than 2.0 ?a
First-grid thermionic-emission current*
no
more
than 5.0 ?a
Cathode emission current -
no
less
than 70 ma
Leakage current between cathode and
heater
no
more
than 20 pa
Plate insulation resistance
no
less
than 20 megohm
Third-grid insulation resistance
no
less
than 20 megohm
Service life
Service
lif
it
i
1000 hours
-
e cr
er
a:
Conversion transconductance*** no less than 0.23 ma/v
First-grid current --- no less than 0.33 ma
*For third-grid voltage of -2 v and resistance in the third-grid
circuit of 0.1 megohm.
**For first and third grid voltages of -3.4 v.
***Under dynamic conditions. The oscillator section of the tube
operates in a Hartley circuit with a first-grid circuit resistance
of 20 kohm; the alternating. voltage on the third grid is 0.7 v (eff).
Interelectrode Capacitances
Oupput 912 5 ? 1.9 ??f
t Transfer no more than 0.136 ?.?ff
Maximum Permissible Operating Data
Maximum heater voltage or 6.9 v
Minimum heater voltage or =) 5.7 v
Maximum plate voltage (_) 330 v
Maximum second and fourth grid voltages (_) 110 v
Maximum plate power dissipation 1.1 watts
Maximum second and fourth grid power dissipations 1.1 watts
Maximum first-grid current 0.5 ma
Maximum cathode current 15.5 ma
Maximum voltage between cathode and heater (_) 100 v
Standard Operating Conditions
No. 1 No. 2
Plate voltage (_) 100 v 250 v
Second and fourth grid voltages (_) 100 v 100 v
Third grid voltage (_) 0 v 0 v
Plate current 3.3 ma 3.5 ma
Second and fourth grid currents 8.5 ma 8.5 ma
Conversion transconductance 0.425 ma/v 0.450 ma/v
Conversion transconductance for third-
grid current of -35 v 0.002 ma/v 0.002 ma/v
Internal resistance 0.5 megohm 1 megohm
First-grid resistance 20 kohm 20 kohm
4- Change introduced.
(Above material published April 1959, PKB, Sheet 1)
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Average Characteristics
(as a function of first-grid current)
6A7
Cathode current; ------- Conversion transconductance; heater
voltage, 6.3 v; plate voltage, 250 v; third-grid voltage, -2 v;
second and fourth grid voltages, 100 v; resistance in first-grid
circuit, 20 kohm.
-
31
42 Z. b v cemw M02). An
1 Conversion transconductance, ma/v; 2) first-grid current, ma;
3) cathode current, ma.
(Above material published April 1959, PKB, G-1)
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HEPTODE CONVERTER 6A7
*****
Average Conversion Characteristics
Heater voltage, 6.3 v; plate voltage, 250 v; second and fourth
grid voltages, 100 v; first-grid current, 0.5 ma; resistance in
first-grid circuit, 20 kohm.
o.7
43
0.4
0,0? k
407 nox
-~" -24 -20 ?i -1? -8 -4
bvweua ce7 su nwn),e4 Q
0~0Q007
005
a004
Q003
0,002
4001
1) Third-grid voltage, v; 2) conversion transconductance, ma/v.
(Above material published April 1959, PKB, G-2)
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H.EPTODE CONVERTER 6AlOS
Basic Function frequency conversion.
Construction glass.
Cathode - oxide-coated heater-type
Maximum height
Maximum diameter
Base - octal, Tsl-1-8A
Maximum weight
Dimension drawing - 12 S
Connection Diagram for Electrodes and Pins
I - ssYTpemalk s-
pan a ceta
nIT1I
2 - ao.aotpesates-
3-
- non
I ccna stopas a
%cmcpYas
s - tetra aepsas
- tatty
7 - voAarpesatess
8 - ceUa tpe?s
85 mm
33 mm
45 grams
1) Internal shield and fifth grid; 2) heater; 3) plate;
4+)
second
and fourth grid; 5) first grid; 6) cathode; 7) heater;
grid; A) Key.
8)
third
Electrical Data
Heater voltage (_ or
6.3 v
Heater current
300 + 25 ma
Plate voltage (_)
250 v
Second and fourth grid voltages (_)
100 v
Third grid voltage (
)
0 v
_
Fifth grid voltage
0 v
Plate current*
3.5 ? 1 ma
Second and fourth grid currents
9 ? 2.5 ma
First grid current*
0.51 + 0.13 ma
Conversion transconductance*
Conversion transconductance with third grid
450 1 150 ?a/v
voltage of -35 v*
from 0.5 to 25 ?a/v
*Under dynamic conditions, oscillator portion of tube operates in
Hartley circuit with first-grid-circuit resistance of 20 kohm, alter-
nating third-grid voltage of 0.7 v (eff).
(Above material published April 1959, PKB, Sheet 1)
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HEPTODE CONVERTER 6A10S
Heterodyne mutual conductance* 4.7 ? 1.2 ma/v
Heterodyne mutual conductance for heater
voltage of 5.7 v*
no
less
than 3.2 ma/v
Internal resistance*
no
less
than 0.3 megohm
Third-grid back current**
no
more
than
2
?a
First-grid thermionic emission current***
no
more
than
5
?a
Cathode emission current --
Leakage current between cathode and
no
less
than
70
ma
heater no more than 20 ?a
Plate insulation resistance no less than 20 megohm
Third-grid insulation resistance no less than 20 megohm
Service life 500 hours
Service-life criteria:
conversion transconductance**** no less than 230 ?a/v.
first-grid current* - no less than 0.33 ma
*For plate voltage of 100 v and first-grid voltage of 0 v.
**For third-grid voltage of -2 v and third-grid-circuit resistance
of < 0.1 megohm.
***For first grid and third grid voltage of -3.4 v.
****Under dynamic conditions. Oscillator section of tube operates
in-Hartley circuit with first-grid circuit resistance of 20 kohm,
alternating third-grid voltage of 0.7 v (eff).
Interelectrode Capacitances
Output 10 ? 3 ??f
Transfer no more than 0.13 ??f
Maximum Permissible Operating Data
Maximum heater voltage or 6.9 v
Minimum heater voltage ~__ or =) 5.7 v
Maximum plate voltage (_) 330 v
Maximum second and fourth grid voltage (_) 110 v
Maximum plate power dissipation 1.1 watts
Maximum second and fourth grid power dissipations ? 1.1 watts
Maximum first-grid current 0.5 ma
Maximum cathode current 15.5 ma
Maximum voltage between cathode and heater (_) 100 v
(Above material published April 1959, PKB, Sheet 1)
-369-
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HEPTODE CONVERTER
Average Plate Characteristics
Heater voltage, 6.3 v; second-grid voltage,
voltage, 0 v.
6AloS
100 v; third-grid
1 Plate current, ma; 2) plate voltage, v; 3) -1 v; 4) -2 v; 5) -3 v;
6 -4 v; 7) -5 v; 8) -6 v; 9) -7 v; 10) -8 v; 11) first-grid voltage,
0 v.
(Above material published April 1959, PKB, G-1)
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HEPTODE CONVERTER 6AlOS
Average Heterodyne Characteristics
Mutual conductances; ------- plate-grid; heater voltage,
6.3 v; third-grid voltage, 0 v; plate and second-grid voltages,
100 v.
2
f2 -tp -o
o -ehue cemna r~eo&t). d
1) First-grid voltage, v; 2) Plate heterodyne current, ma; 3) hetero-
dyne mutual conductance, ma/v.
(Above material published April 1959, PKB, G-3)
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HEPTODE CONVERTER 6AlOS
Average Characteristics
(as a function of first-grid current)
Conversion transconductance; ------- cathode current; heater
voltage, 6.3 v; plate voltage, 250 v; second-grid voltage, 100 v;
third-grid voltage, -3 v; grid leakage resistance, 20 kohm.
nr,
Lt1
2 b cemru repU. AU
A2 Q4 L15 ~5 Gil
1) Cathode current, ma; 2) first-grid current, ma; 3) conversion.
transconductance, ma/v [probable translation;obscured in original].
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HEPTODE CONVERTER 6AlOS
Average Plate Characteristics
Heater voltage, 6.3 v; second-grid voltage, 100 v; first-grid
voltage, 0 v.
1) Plate current, ma; 2) plate voltage, v; 3) third-grid voltage, 0 v;
4+) -2 v; 5) -4 v; 6) -6 v; 7) -8 v; 8) -10 v; 9) -15 v.
(Above material published April 1959, PKB, G-2)
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HEPTODE CONVERTER 6AlOS
Average Dynamic Characteristics
(as a function of negative first-grid voltage)
Conversion transconductance; ------- cathode current; heater
voltage, 6.3 v; second-grid voltage, 100 v; plate voltage, 250 v;
third-grid voltage, -3 v; alternating first-grid voltage, 11 v (eff).
18
`...
...
i..
?}
..
,
'
.:
i
:..-.::
..
...
...
:'
.
::. ....
...
:::
C( u r'Lu.6
1) Cathode current, ma; 2) first-grid voltage, v; 3) conversion
transconductance, ma/v.
(Above material published April 1959, PKB, G-4)
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HEPTODE CONVERTER 6AlOS
Average Characteristics --
Conversion transconductance; ------- grid (for second grid);
-?-?-?- Plate-grid; heater voltage, 6.3 v; plate voltage, 250 v;
second-grid voltage, 100 v; grid leakage resistance, 20 kohm;
first-grid current, 0.5 ma.
1 Third-grid voltage, v; 2) plate current, second-grid current, ma;
3 conversion transconductance, ma/v.
(Above material published April 1959, PKB, G-6)
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DUAL DIODE-PENTODE 6B8
Basic function radio-frequency detector and amplifier.
Construction metal.
Cathode - oxide-coated heater-type
Maximum height 80 ma
Maximum diameter 33 mm
Maximum weight 4+4+ grams
Dimension drawing - kM
Connection Diagram for Electrodes and Leads
1-6aaaoN
2-.ooaorpssa ira
3-aioa nes ula
6--aoo~t stuporo
nt peuro
alwla
6--cctia ?TUPaa
7- nuaorpe"Tenb
H-katua. ccr a
1F1e1-w
C~ -- tl W MOA-wana-
4oY -CP1ra nep-
Ndw
1 Envelope;'2) heater; 3) pentode plate; 4+) plate of second diode;
5) plate o:' first diode; 6) screen; 7) heater; 8) cathode, suppressor;
Cl) lead-cap - first grid; A) Key.
Electrical Data
Heater voltage (.. or =) 6.3 v
Heater current 300 ? 25 ma
Pentode plate voltage (_) 250 v
Screen voltage (_) 125 v
First-grid voltage (_) -3 v
Plate current for each diode no less than 0.8 ma
Pentode plate current 10 ? 2.7 ma
Pentode plate current for first-grid voltage
of -21 v no more than 70 pa
Screen current
2.45 ? 0.75 ma
Pentode transconductance
1.65 ? 0.35 ma/v
Pentode transconductance for heater voltage
of 5.7 v
no less
than
0.9 ma/v
First-grid back current
no more
than
1 ?a
First-grid thermionic-emission current
no more
than
1.5 pa
Cathode emission current
no less
than
25 ma
Cathode warm-up time
no more
than
25 sec
Leakage current between cathode and
heater
no more than 20 ?a
(Above material published April 1959, PKB, Sheet 1)
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DUAL DIODE-PENTODE 6B8
First-grid insulation resistance - no less than 20 megohm
Plate insulation resistance no less than 20 megohm
Service life 500 hours
Service-life criteria:
pentode transconductance no less than 0.95 ma/v
diode plate current no less than 0.3 ma
Interelectrode Capacitances
Input 6 ? 1 ??f
Output 8.25 ? 1.75 ??f
Transfer 0.005 ??f
Maximum Permissible Operating Data
Maximum heater voltage or 6.9 v
Minimum heater voltage l~ or =) 5.7 v
Maximum plate voltage (_) 275 v
Maximum screen voltage (_) 140 v
Maximum mean rectified current for each diode 1 ma
Maximum voltage between cathode and heater (_) 100 v
(Above material published April 1959, PKB, Sheet 1)
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DUAL DIODE-PENTODE 6B8
Average Diode Plate Curve
Heater voltage, 6.3 v.
N
6K Owl dp i. U*
1) Diode plate current, ma; 2) diode plate voltage, v.
(Above material published April 1959, PKB, G-1)
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DUAL DIODE-PENTODE
Average Characteristics (Triode Connection)
6.3 v,
Plate; ------- grid-plate (for first
1Gwzk~,Mu
6B8
grid); heater voltage,
1) Plate current, ma; 2) plate voltage, v; 3) first-grid current, ma;
4) first-grid voltage, 6 v; 5) 3 v; 6) 0 v; 7) -3 v; 8) -6 v; 9) -9 v;
10 -12 v; 11 -15 v; 12) -18 v; 13) -21 v; 14) -2-l v; 15) 6 v;
163 -30 v; 173 3 v.
(Above material published April 1959, PKB, G-3)
-379-
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DUAL DIODE-PENTODE 6B8
Average Characteristics
--- Plate; ------- Grid-plate (for second grid); heater voltage,
6.3 v; second-grid voltage, 125 v.
1) Plate current, screen current, ma; 2) plate voltage, v; 3) first-
grid voltage -2 v; 4) O V; 5) -4 v; 6) -6 v; 7) -8 v; 8) 0 v;
9) -10 v; 10j -4 v; 11) -8 v; 12) -12 v; 13) -12 v.
(Above material published April'1959, PKB, G-2)
-380-
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6B8
Average Characteristics
Plate-grid; ------- grid (for second grid); heater voltage,
6.3 v; plate voltage, 250 v.
a
:~: 2 . 1 ~ j i ~: ?i:
::
?
'
??
::
::
:
?
:
7 7
f
ill'
. Aji
a
{
,
10
iww
-28 1 bnn~e-~ue cerrM- f? -8 -v 0
u raeG&xi.6
1 First-grid voltage, v; 2) plate current, screen current, ma;
3 screen voltage, 175 v; 4) 150 v; 5) 125 v 6) 100 v; 7) 75 v;
8 175 v; 9) 150 v; 10) 125 v; 11) 100 v; 125 75 v.
(Above material published April 1959, PKB, G-4)
-381-
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SECONDARY-EMISSION PENTODE 6viP
Basic function service in pulse-amplifier circuits.
Construction glass miniature.
Cathode - oxide-coated
Maximum height
Maximum diameter
Maximum weight
Number of pins
Dimension drawing - 18P
General Data
heater-type
75 mm
22.5 mm
19 grams
9
Connection Diagram for Electrodes and Pins
1-aNO~
? - ceTYa TpeT-w
(npaH1
3 - ceTxa sTOpaf
- no*orpC/aTC b
s - oolorpcuTe*b
6 - uaroz
7 - ceTxa aepsa^
8 - X&TO1
9 - INHOA
1 Plate; 2) third grid (shield); 3) second grid;
6 cathode; 7) first grid; 8) cathode; 9) dynode.
4) heater; 5) heater;
Electrical Data
Heater voltage (_ or =) - 6.3 v
Heater current no more than 400 ma
Plate voltage'(=) 250 v
Second-grid volts e (_) 250 v
Dynode voltage (_) 150 v
Resistance in cathode circuit using self-
biasing
Resistance of internal circuit between dynode
?00 ohms
'and cathode no more than 1.5 kohm
Plate current* 26 ? 4 ma
Plate current-mutual conductance* 29 ? 5 ma/v
Plate current mutual conductance for heater
voltage of 5.7 v* no.less than 20 ma/v
Dynode current (inverse)* 20 ? 4 ma
*Power-supply for dynode is shunted by a resistance of not less
than 1.5 kohm.
(Above material published April 1959, PKB, Sheet 1)
-382-
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SECONDARY-EMISSION PENTODE 6viP
Dynode-current mutual conductance* 21 ? 5 ma/v
Dynode-current mutual conductance for heater
voltage of 5.7 v* no less than 14 ma/v
Second-grid current* no more than 3.2 ma
Equivalent noise resistance plate)* 1.8 megohm
Equivalent noise resistance (dynode)* 2.3 megohm
Input resistance at a frequency of 60 Mc* 7.5 megohm
Input resistance at a frequency of 100 Mc* 2.3 megohm
Natural resonant frequency of tube input circuit** 600 Mc
Negative first-grid voltage for plate current -
of 10 ?a* no more than 8 v
First-grid back current* no more than 0.5 ?a
Leakage current between cathode and
heater*** no more than 30 ?a
Service life,-pulse operation 500 hours
Service life, continuous operation 250 hours
Service-life criteria:
plate-current mutual conductance no less than 19 ma/v
dynode-current mutual conductance no less than 13 ma/v
*Dynode power-supply is shunted by resistance of no less than 1.5 kohm.
**Two cathode leads connected in parallel.
***For heater voltage, with respect to cathode, of -250 v.
Interelectrode Capacitances
Input (first Trid-remaining electrodes, with exception
of plate 9 ? 0.4 ??f
Output (plate-remaining electodes, with exception of
first grid) 4.6 ? 0.4 ??f
Output (dynode-remaining electrodes, with exception
of first grid) 6.4 ? 0.4 ??f
Transfer (first grid-plate)* no more than 0.007 ??f
Transfer (first grid-dynode)* no more than 0.025 ??f
Cathode heater - 7.25 ? 0.25 ?.?f
Plate-dynode 2.4 ??f
*Measurements carried out within internal shield.
Maximum Permissible Operating Data
Maximum heater voltage .. or.= 7 v
Minimum heater voltage or =) 5.7 v
Maximum plate voltage (_) 500 v
Maximum dynode voltage (_) 200 v
Maximum second-grid voltage (_) 500 v
(Above material published April 1959, PKB, Sheet 1)
-383-
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SECONDARY-EMISSION PENTODE 6vip
Maximum dynode power dissipation*
0.8
watt
Maximum plate power dissipation**
4.5
watts
Maximum second-grid power dissipation
0.8
watt
Maximum first-grid power dissipation
0.1
watt
Maximum voltage between cathode and heater (_):
for negative heater potential
250 v
for positive heater potential
160 v
Maximum first-grid-circuit voltage 0.5 megohm [sic]
*The power dissipated by the dynode equals the product of the
dynode voltage and the difference between the plate and dynode
currents.
**The plate power dissipation equals the product of the plate current
and the difference between the plate and dynode voltages.
Resistance to External Effects
Maximum atmospheric pressure 20 mm Hg
Maximum vibration acceleration* 6 g
Maximum constant acceleration - 100 g
*For vibration frequency of 50 cps.
(Above material published April 1959, PKB, Sheet 2)
-384-
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SECONDARY-EMISSION PENTODE
6vlP
Average Plate Characteristics
Heater voltage, 6..3 v; dynode voltage, 150 v; second-grid
voltage, 250 v.
7" :7.'THTT77F
2 Nilrp;pnsc''l~ ur,r.ki; i
fl Plate current, ma; 2) plate voltage, v; 3) first-grid voltage, 0 v;
-0.5 v; 5) -1 v; 6) -1.5-v; 7) -2 v; 8) -2.5 v; 9) -3 v.
(Above material published April 1959, PKB, G-1)
-385-
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SECONDARY-EMISSION PENTODE 6vip
Average Dynode-Plate Curves
Heater voltage, 6.3 v; dynode voltage, 150 v; second-grid
voltage, 250 v.
AT
....:;-i= =ce--
1) Dynode current, ma; 2) 0 v; 3) 0.5 v; 4-1 v; 7) -2.5 v; 8) -3 v; ) 5) -1.5 v; 6) -2 v;
9) plate current, v; 10) -3 v; 11) first-grid
voltage, -2.5 v; 12) -2 v; 13) -1.5 v; 14) -1 v; 15) -1.5 v; 16) 0 v.
(Above material published April 1959, PKB, G-3)
-386-
$ rod..:.....'....:i:
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SECONDARY-EMISSION PENTODE
6v1P
Average Characteristics
Plate-grid; ------- grid (second grid); heater voltage,
6.3 v; plate voltage, 250 v; dynode voltage, 150 v.
1 First-grid voltage, v; 2) plate current, second-grid current, ma;
3 second-grid voltage, 300 v; 4) 250 v; 5) 200 v; 6) 300 v; 7) 250 v;
8 200 v.
(Above material published April 1959, PKB, G-5)
-387-
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6viP
Average Plate-Dynode Curves
Heater voltage, 6.3 v; plate voltage, 250 v; second-grid volt-
age, 250 v.
1) Plate current, ma; 2) dynode voltage, v; 3) first-grid voltage,
0 v;.4) -0.5 v; 5) -1 v; 6) -1.5 v; 7) -2 v; 8) -2.5 v; 9) -3 v.
(Above material published April 1959, PKB, G-2)
-388-
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SECONDARY-EMISSION PENTODE
6v1P
Average Dynode Curves
Heater voltage, 6.3 v; plate voltage,?250 v; second-grid voltage,
250 v.
~II}..i art ':~ , ff:2
' : ' : ::
~ 1
:Tj
rt[`" ~"
~
{
'r
~
'?
~
?
:? :
-{:'
~s
te
~
~
f5
x
.............
hiii::. ::r :::::......_.._
1) Dynode current, ma; 2) dynode voltage, v; 3) first-grid voltage,
-1 5 v; 4) -2 v; 5) -2.5 v; 6) -3 v; 7) -3.5 v; 8) -1.5 v; 9) -2 v;
10) -2.5 v; 11) -3 v; 12) -3.5 v.
(Above material published April 1959, PKB, G-k)
-389-
4:
, wL... 1~?1 s 7 1 1/
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SECONDARY-EMISSION PENTODE 6v1P
*****
Average Pulse Characteristics
Plate-grid;
grid); heater voltage,
voltage, 250 v.
dynode-grid; ------- grid (for second
6.3 v; dynode voltage, 150 v; second-grid
1) Dynode pulse current, amps; 2) first-grid pulse voltage, v;
3 plate pulse current, amp; 4) second-grid pulse current, amp;
5 plate voltage, 500 v; 6 400 v; 7) 300 v; 8) 500 v; 9) 400 v;
10) 300 v; 11) 300 v; 12) 400 v; 13) 500 v.
(Above material published April 1959, PKB, G-6)
-390-
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DUAL DIODE-TRIODE
6G1
Basic function audio-frequency detector and voltage amplifier.
Construction metal.
Cathode - oxide-coated
Maximum height
Maximum diameter
Maximum weight
Base - octal, Tsl-1-8A
Dimension drawing - 1M
General Data
heater-type
67 mm
33 mm
40 grams
Connection Diagram for Electrodes and Pins
I- 6aaaou
2 - CeTaa
4-.aunt s rupor u
S - aaoA nepsoro
WO-13
6 - - aso. rpuOAa
% noaorpesarea-
A notorpestreAb
1) Envelope; 2) grid; 3) cathode; 4) plate of second diode; 5) plate
of first diode; 6) triode plate; 7) heater; 8) heater; A) Key.
Electrical Data
Heater voltage (_ or =) 6.3 v
Triode plate voltage H. 250 v
Grid voltage (_) -9 v
Plate current for each diode* no less than 0.8 ma
Triode plate current 9.5 ? 3.2 ma
Triode transconductance 1.9 + 0.4 ma/v
Triode transconductance for heater voltage
of 5.7 v no less than 1.25 ma/v
Amplification factor 16 ? 2
Triode-section cathode emission current** no less than 30 ma
Grid back current no more than 1.0 ?a
Leakage current between cathode and heater no more than 20 ?a
Warm-up time for cathode no more than 20 sec
*For diode plate voltage of 10 v and 0 volts on remaining electrodes.
**For plate and grid voltages of 30 v.
+- Addition introduced.
(Above material published April 1959, PKB, Sheet 1)
-391-
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DUAL DIODE-TRIODE 6G1
Grid insulation resistance no less than 20 megohm
Plate insulation resistance no less than 20 megohm
Service life 500 hours
Service-life criteria:
triode transconductance no less than 1.2 ma/v
diode plate current* no less than 0.3 ma
*For diode plate current of 10 v and 0 volts on remaining electrodes.*
Maximum Permissible Operating Data
Maximum heater voltage or 7 v
Minimum heater voltage (_ or =) 5.7 v
Maximum triode plate voltage (_) 275 v
Maximum average value of rectified current for
each diode 1.0 ma
Maximum plate power dissipation 2.75 watts
Maximum voltage between cathode and heater (_) 100 v
(Above material published April 1959, PKB, Sheet 1)
-392-
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DUAL DIODE-TRIODE
Average Plate Characteristics of Diode
Heater voltage, 6.3 v.
6G1
fi
-::?
..:
'~
':' :
t:'~
'? .
t. ..
.i
-
t:
4+4
?~
:;
.?II
...
'?
t~.'
~~H
??
?1?
?..
?
S
~
t
I
1) Diode plate current, ma.; 2) diode plate voltage, v.
(Above material published April 1959, PKB, G-1)
-393-
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DUAL DIODE-TRIODE 6G1
Average Plate-Grid Curves
Heater voltage, 6.3 v.
1 Plate current, ma; 2) grid voltage, v; 3) plate voltage, 300 v;
4 250 v; 5) 200 v; 6) 150 v; 7) 100 v.
(Above material published April 1959, PKB, G-3)
-394-
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DUAL DIODE-TRIODE 6G1
Average Plate Curves
Heater voltage, 6.3 v.
;Z vr~"-6~xffl
1 Plate current, ma; 2) plate voltage, v; 3) grid voltage, 0 v;
4) -3 v; 5) -6 v; 6) -9 v; 7) -12 v; 8) -15 v; 9) -18 v; 10) -21 v
(Above material published April 1959, PKB, G-2)
-395-
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DUAL DIODE-TRIODE 6G2
Basic function detector and'audio-frequency. amplifier.
Construction metal.
Cathode - oxide-coated heatei-type
Maximum height 67 mm
Maximum diameter 33 mm
Maximum weight 40 grams
Base - octal, Tsl-1-8A
Dimension drawing - 1M
Connection Diagram for Electrodes and Pins
1) Envelope; 2) grid; 3) cathode; 4) plate of second diode; 5) plate
of first diode; 6) plate of triode; 7) heater; 8) heater; A) Key.
Heater voltage (_ or =)
Heater current
Triode plate voltage (_)
Grid voltage (_)
Plate current for each diode*
Triode plate current
Triode transconductance
Triode transconductance for heater voltage
of 5.7 v
Amplification factor
Cathode emission current**
Grid back current
Leakage current between cathode and
heater
6.3 v
300 ? 25 ma
250 v
-2 v
no less than 0.8 ma
1.15 ? 0.65 ma
1.10 ? 0.30 ma/v
no less than 0.65 ma/v
100 ? 15
no less than 30 ma
no more than 0.5 ?a
no more than 20 ?a
*For heater voltage of 6.3 v; diode plate voltage of 10 v, and 0 volts
on remaining electrodes.
**For plate and grid voltages of 30 v.
+- Addition introduced.
(Above material published April 1959, PKB, Sheet 1)
-396-
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DUAL DIODE-TRIODE
6G2
Warm-up time for cathode
Plate insulation resistance
Grid insulation resistance
Service life
Service-life criteria:
diode plate current
triode plate current
triode transconductance
no more than 20 sec
no less than 20 megohm
no less than 20 megohm
500 hours
0.3 ma
0.4 ma
no less than 0.73 ma/v
Maximum Permissible Operating Data
Maximum heater voltage or 6.9 v
Minimum heater voltage __ or 5.7 v
Maximum triode plate voltage (_) 330 v
Maximum value for average rectified current for
each diode 1 ma
Maximum voltage between cathode and heater (_) 100 v
4- Addition introduced.
(Above material published April 1959, PKB, Sheet 1)
-397-
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DUAL DIODE-TRIODE
Average Plate Curve for Diode
Heater voltage, 6.3 v.
.. :. ?~S' 2 .?` :~ :.tom N_ :j-
::
14
1) Diode plate current, ma; 2) diode plate voltage, v.
(Above material published April 1959, PKB, G-1)
-398-
6G2
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DUAL DIODE-TRIODE 6G2
Average Plate-Grid Curves
Heater voltage, 6.3 v.
?7 7
cf' .;.
1 Grid voltage, v; 2 plate voltage, 350 v; 3) 300 v; 4) 250 v;
5 200 v; 6) 150 v; 7) plate current, ma.
(Above material published April 1959, PKB, G-2)
-399-
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TRIPLE DIODE-TRIODE
Basic function amplitude-modulated and
signal detector and audio-frequency voltage
Construction glass miniature.
General Data
6G3P
frequency-modulated
amplifier.
Cathode - oxide-coated heater-type
Maximum height
60 mm
Maximum diameter
22.5 mm
Maximum weight
15 grams
Number of pins
9
Dimension drawing - 15P
Connection Diagram for Electrodes and Pins
1- all'%I TPCIaI'1li
Alfa tai
2 - auoa sTOPoI o
lno la
3 - KaTOA siOPOrO
1NOtJ!'l; '
t - notorpc*aTe.
5 - ROAOT'j)CRJTCai
aio1 ncpsoro
AWAA
KaTOA Tplfoaa,
n(P6oro x
TPCT6tro aNO-
lios. lKp3N
N - CCTKa
V - &Nox TrWOaa
1) Plate of third diode; 2 plate of second diode; 3) cathode of
second diode; 4) heater; 5) heater; 6). plate of first diode;
7) cathode of triode, first and thide diodes, shield; 8) grid;
9) triode plate. ?
Heater voltage (_ or =)'
Heater current
Triode plate voltage (_)
Triode grid voltage (_)
First-diode plate current*
Second-diode plate current*
Third-diode plate current*-
Triode plate current
Triode transconductance
Amplification factor
Service-life
*For diode plate voltages of 5 v.
(Above material published April 1959, PKB, Sheet 1)
-400-
6.3 v
0.45 amp
?50 v
-3 v
1.5 ma
25 ma
25 ma
1 ma
1.3 ma/v
63
750 hours
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
TRIPLE DIODE-TRIODE 6G3P
Interelectrode capacitances
Triode input
Triode output
Triode transfer
First-diode transfer
Second-diode transfer
Third-diode transfer
Triode plate-first diode plate
Triode plate-second diode plate
Triode plate-third diode plate
Triode grid-first diode plate
Triode grid-third diode plate
Triode grid-second diode cathode
Second diode cathode-remaining electrodes
Second diode cathode-heater
2.05 ??f
1.25 ??f
2.3 ??f
1.05 ??f
4.9 ??f
4.5 ??f
no more than 0.1 ??f
no more than 0.1 ??f
no more than 0.1 ??f
no more than 0.05 if
no more than 0.02 if
no more than 0.005 ??f
5.4 p.p.f
2.8 ??f
Maximum Permissible Operating Data
Maximum heater voltage or =)
Minimum heater voltage (. or
Maximum inverse plate voltage for each diode (_)
Maximum triode plate voltage (_)
Maximum mean rectified current for first diode
Maximum mean rectified current for second diode
Maximum mean rectified current for third diode
Maximum peak plate current, first diode
Maximum peak plate current, second diode
Maximum peak plate current, third diode
Maximum plate dissipation, triode
Maximum mean triode cathode current ?
Maximum voltage between cathode and heater (_)
Maximum resistance. in triode grid circuit
with fixed bias
Maximum resistance in triode grid circuit
with self-bias
(Above material published April 1959, PKB, Sheet 1)
-401-
7 v
5.5 v
350 v
300 v
1 ma
10 ma
10 ma
6 ma
75 ma
75 ma
1 watt
5 ma
150 v
3 megohms
22 megohms
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TRIPLE DIODE-TRIODE
Average Triode Plate Curves
Heater voltage, 6.3 v.
I ( a-+Orb.ma
6G3P
1) Plate current, ma; 2) plate voltage, v; 3) grid voltage, 0 v;
-1 v; 5) -2 v; 6) -3 v; 7) -4 v; 8) -5 v; 9) -6 v.
(Above material published April 1959, PKB, G-1)
-402-
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TRIPLE DIODE-TRIODE
Average Triode Characteristics-
6G3P
Plate-grid; ------- transconductance; heater voltage, 6.3 v.
7 f; h
4 3 2
2
4)IJ/ .1 HI' i-, 4r,KU,h
1
Transconductance, ma/v 2)
grid voltage,
4
plate voltage, 300 v? 5) 250 v; 6) 300
9
200 v; 10) 150 v; 11) 150 v.
v; 3) plate current, ma;
v; 7) 250 v; 8) 200 v;
(Above material published April 1959, PKB, G-3)
-403-
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TRIPLE DIODE-TRIODE
6G3P
Average Plate Curves --'
6.3 amp.
Second and third diodes; ------- first diode; heater voltage,
1) Plate current, second and third diodes, ma; 2) diode plate
voltages, v; 3) first-diode plate current, ma.
(Above material published April 1959, PKB, G-2)
-4o4-
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DUAL DIODE-TRIODE 6G7
(Common Cathode)
*****
Basic function Detector, audio-frequency voltage amplifier.
Construction metal.
Cathode - oxide-coated heater-type
Maximum height
Maximum diameter
Maximum weight
Base - octal, Tsl-1-7A
Lead cap - VK2-3
Dimension drawing - 3M
8o mm
33 mm
45 grams
Connection Diagram for Electrodes and Pins
I - 6aaaon
2 - noaorpesareaa
3- axoa rpxoaa
- anon sroporo
AMOU
5- aeon nepsoro
AROAa
7- aolOrpesar'eai
8- KarOA
C aepxnag am.
&OA-YOaAa-
%OK - CeTKa
1 Envelope; 2) heater; 3) triode plate; 4) second-diode plate;
5 first-diode plate; 7) heater; 8) cathode; C) top lead-cap - grid;
A Key.
Electrical Data
Heater voltage (_ or =)
6.3 v
Heater current
300 ? 25 ma
Triode plate voltage (_)
250 v
Grid voltage (_)
-3 v
Plate current for each diode*
no less than 0.8 ma
Triode plate current
1.4 ? 0.8 ma
Triode transconductance
Triode transconductance for heater voltage
1.3+0'3, ma/v
of 5.7 v
no less than 0.85 ma/v
Amplification factor
70
? 15
Internal resistance
58 kohm
Grid back current
Triode-section cathode emission current**
no more than 1.0
no less than 30 ma
pa
*For diode plate voltage of 10 v and 0 volts on remaining electrodes.
**For plate and grid voltages of 30 v.
.-Change and addition introduced.
(Above material published April 1959, PKB, Sheet 1)
-405-
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DUAL DIODE-TRIODE
(Common Cathode)
6G7
Leakage current between
Cathode warm-up time
cathode-and heater no more than 20 pa
Grid insulation resistance
Plate insulation resistance
Service life
Service-life criteria:
plate current for 1 diode*
triode plate current
triode transconductance
20 sec
no less than 20 megohms
no less than 20 megohms
500 hours
no
no
no
less than 0.3 ma
less than 0.48 ma
less than 0.8 ma/v
*For diode plate voltage of 10 v and 0 volts on remaining electrodes.
Maximum Permissible Operating Data
Maximum heater voltage S or 7.0 v
Minimum heater voltage l_ or =) 5.7 v
Maximum triode plate voltage (_) 300 v
Maximum average rectified current for each diode 1 ma
Maximum plate power dissipation 1 watt
Maximum voltage between cathode and heater (_) 100 v
4- Change introduced.
.(Above material published April 1959, PKB, Sheet 1)
-406-
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DUAL DIODE-TRIODE
(Common cathode)
Average Plate Curves
Heater voltage, 6.3 v.
2 'Oar'i1 p-pp(f,b--- .,,
6G7
1) Plate current, ma; 2) plate voltage, v; 3) grid voltage, 0 v;
4) -0.5 v; 5) -1 v; 6) -1.5 v; 7) -2 v; 8) -2.5 v; 9) -3 v;
10) -3.5 v; 11) -4 v; 12) -4.5 v; 13) -5 v.
.(Above material published April 1959, PKB, G-1)
-407-
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DUAL DIODE-TRIODE
(Common Cathode)
Average Diode Plate Curve
Heater voltage, 6.3 v.
? 4 6 6 V.
yarpRmeHue alloo(i ooa. d
f?
1) Diode plate current, ma; 2) diode plate voltage, v.
(Above material published April 1959, G-3)
-L+08-
~T?Y ? T 1y?- ?. .. ?.H
.?
.S.
.?.?
~1L
. F
f?
log$
~H .
?
t
?ti
?. ?
6G7
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DUAL DIODE-TRIODE
(Common Cathode)
Average Plate-Grid Curves
Heater voltage, 6.3 v.
4
6G7
1 Plate current, ma; 2) grid voltage, v; 3) plate voltage, 250 v;
4 200 v; 5) 150 v; 6) 100 v.
.(Above material published April 1959, PKB, G-2)
-409-
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MICROWAVE DIODE
Basic function detection of microwave signals.
Construction glass with disk leads.
General Data
Cathode - oxide-coated heater-type
Maximum height
Maximum diameter
Maximum weight
Base - octal, Tsl-1-6A
Dimension drawing - 4D
Connection Diagram for Electrodes and Pins
6D3D
50 mm
33 mm
35 grams
1) Housing; 2) heater; 3) cathode; 5) cathode; 7) heater; 8) cathode;
A) Disk electrode,.,- plate; K) Housing - radio-frequency lead; B) Key.
Electrical Data
Heater voltage (.., or =)
Heater current
Plate voltage*
Plate-cathode voltage drop**
Leakage current between cathode and
heater
Service life
Service-life criterion:
plate voltage*
*For plate current of 27 ma.
**Working as a rectifier, with a peak plate
6.3 v
7751 75 ma
no more than 7 v
no more than 45 v
no more than 50 pa
500 hours
no more than. 8-.4 v
current of 150 ma.
(Above material published April 1959, PKB, Sheet 1)
-410-
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MICROWAVE DIODE 6D3D
Interelectrode-Capacitances
Plate-cathode
Cathode-housing
Maximum Permissible Operating Data
Maximum heater voltage (_. or =~
Minimum heater voltage N or
Maximum peak inverse voltage
Maximum peak plate current
Maximum mean plate current
Maximum voltage between cathode and heater (_)
Maximum envelope temperature ,
no more than 2.8 ??f
87.5 ? 62.5 ??f
(Above material published April 1959, PKB,?Sheet 1)
-#11-
6.6 v
6 v
200 v
150 ma
27 ma
90 v
15O?C
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MICROWAVE DIODE
Average Plate Characteristics
Heater voltage, 6.3 v.
I r"3:
:ir
1) Plate current, ma; 2) plate voltage, v.
(Above material published April 1959, PKB, Q-1)
-412-
6D3D
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:sue
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DIODE
Basic function detector.
Construction glass, "acorn" type.
General Data
Cathode - oxide-coated heater-type
Maximum height
Maximum diameter
Maximum weight
Number of pins
Dimension drawing - lZh
Connection Diagram for Electrodes and Pins
I / - ?o~lofpe$atea h
4 - "o.torpui nt at
6D4Zh
35 mm
29.4 mm
12 grams
5
1) Heater; 2) plate; 3) cathode; 4) heater; 5) not connected.
Electrical Data
-Heater voltage (_ or =)
6.3 v
Heater current
Initial plate current
150 ? 10 ma
From 1 to 70 pa
Cathode emission current*
no less than 20 ma
Rectified current
Rectified current for heater voltage
no less than 4.8 ma
of 5.5 v
no less than 4 ma
Input resistance
of cold tube
no less than 50 kohm
Cathode warm-up
Leakage current
time
between cathode and
no more than 20 sec
heater
Plate insulation resistance
Service life
Service-life criterion:
rectified current
*For?plate voltage of 10 v.
no more than 20 pa
no less than 20 megohms
5?,0 hours
no less than 4.4 ma
(Above material published April 1959, PKB, Sheet 1)
-413-
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DIODE 6D4Zh
Interelectrode Capacitances
Input 1.91 ? 0.33 ??P
Maximum Permissible Operating Data
Maximum heater voltageS or 6.9 v
Minimum heater voltage l~ or =) 5.7 v
Maximum alternating plate voltage 130 v (eff)
Maximum peak inverse voltage 365 v
Maximum mean rectified current (_) 5 ma
Maximum peak plate current 30 ma
Maximum plate-current deviation 100 ma
Maximum voltage between cathode and heater (=) 100 v'
(Above material published April 1959, PKB, Sheet 1)
-414-
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6D4zh
Average Plate Curve
Heater voltage, 6.3 v.
Vii: "r w::.?' 't~ :i: ::i
In t;
fiff P"
~:? iii ?:ii i:it .... ......--- --- -
:i: ~:?: ~ic r.~i :::. iii :is? :=i; i; ::"
rte ~: i t t:: i s : :f ~ t' tt?
:- :~+ .F~i :S :Jt tf::::a tt i
:: a? a: :::' iii 't ii t'ti fit: it:i~~ N-L:
PUHffiHflIItMffiMUllWllU##llMUf}HHThihfflIllAfffh9
?T TS 7 T~
~ ? w w - 11
.?~i ?~ t t it ~ _
:
ij 2 ?1'
TIM, it
S
2 - JWP"~ oti X*2, d
1) Plate current, ma; 2) plate voltage, v.
(Above material published April 1959, PKB, G-1)
-45-
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DIODE
Basic function detection.
Construction glass subminiature.
General Data
Cathode - oxide-coated heater-type
Maximum height (without leads)
Maximum diameter
Number of leads
Length of leads
Lead diameter
Maximum weight
Dimension drawing - 3B
6D6A
36 mm
7.2 mm
about 440 mm
about 0.4 mm
2.5 grams
Connection Diagram for Electrodes and Leads
1) Plate; 2) heater; 3) heater; 4) cathode; A) Indicator dot.
Electrical Data
Heater voltage (_ or =) 6.3 v
Heater current 150 t 15 ma
Alternating plate voltage 165 v (eff)
Load resistance in plate circuit 22 kohm
Filter capacitance (in parallel with load) 8 ?f
Initial plate current* no more than 20 ?a
Cathode emission current** no less than 35 ma
Rectified current*** - no less than 8 ma
Leakage current between cathode and
heater no more than 20 pa
*For 40 kohm load resistance and 0 plate voltage.
**For plate voltage of 10 v.
***The total pure resistance in the circuit to the rectified current
(without the load resistance in the plate circuit), including the
transformer primary resistance appearing in the secondary circuit
and the transformer resistance should lie within the 150-200 ohm range.
(Above material published April 1959, PIG, Sheet 1)
416-
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DIODE
6D6A
Insulation resistance* no less than 100 megohms
Service life 500 hours
Service-life criterion:
rectified current
*For plate voltage of -240 v.
no less than 7 ma
Interelectrode Capacitances*
Plate-cathode**
Cathode-heater
*Measured within shield.
.**With heater grounded.
3 i O.7 ??f
3.5 ??f
Maximum Permissible Operating Data
Maximum heater voltage, intermittent fluctuations
(.r or =) 6.6 v
Minimum heater voltage, intermittent fluctuations
(~ or =)
Maximum heater voltage (with a decrease in service
life to 100 hours) (.., or =)
Minimum heater voltage (with a decrease in service
lif
t
e
o 100 hours) (~ or =)
Maximum inverse plate voltage
Maximum rectified current
Maximum current pulse in rectifier operation
Maximum plate power dissipation
Maximum voltage between cathode and heater (_)
Resonant frequency
Maximum envelope temperature
about
(Above material published April 1959, PKB, Sheet 1)
-417-
6 v
6.9 v
5.7 v
450 v
10 ma
70 ma
0.2 watt
165 v
700 Mc
17O0C
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Average Plate Curve
Heater voltage, 6.3 v.
DIODE
:; R ?
it
is
:~-
..
a
.
T.
:
....
.
.
i
:
:
.
77
41 i.6 1.
775:
ii
66 .
Nt :
?
?
:::
i
::.. .
:.
it
:: t .
;~ ,
.
.
?
?
~: ::
Nfl
:i' i :
:...
x::..Zt
2
:'::
;
12
Vi i4:
.
' s..
:?i:
::::
? i :?~: .
:? ri ?:: .:
cis
8: :z: t
?t:
ti"
:' ::. i
is
.
:
t
?
tt
~t
?
'
i
::'
:
2: i:i.
- 1.
t
:
: lt::
S
I
s
Hi
.
3it
~
tilt
i:~'
is
~
s??:.i.: ~
...
i
'
it'
i
:
?2
iI
:r: NIP
HE :
?
:
2
;
,
?
2::2 LZ
??;
' :5~:
?
Kt:
~if
S
?
::.t
?2::
iii ':
?
?t
~
'
?i ::
::
Lw . ?
I
'
'i
i: ='t
lit
!
SI . t
T
44
4
ft
1 '.
Tow oho. *'t ,
6D6A
1) Plate current, ma; 2) plate current, v.
(Above material published April 1959, PKB, a-1)
-418-
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DIODE
Average Initial Plate Curve
Heater voltage, 6.3 v.
Mpg." gooMV a
1). Plate voltage, v; 2) plate current, ?a.
(Above material published April 1959, PKB, G-2)
-4l9-
6D6A
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VIBRATION-RESISTANT DIODE
Basic function detection. ' -
Construction glass subminiature.
General Data
Cathode - oxide-coated heater-type.
Maximum height (without leads)
Maximum diameter
Number of leads
Length of leads
Lead diameter
Maximum weight
Dimension drawing -'3B
6D6A-V
36 mm
7.2 mm
4
about 40 mm
about 0.4 mm
2.5 grams
Connection Diagram for Electrodes and Leads
Plate; 2) heater; 3) heater; 4) cathode; A) Indicator dot.
Electrical Data
Heater voltage (_ or 6.3 v
Heater current 150 ? 15 ma
Alternating plate voltage' 165 v (eff)
Load resistance in plate c.rcuit 22 kohm
Filter capacitance (in parallel with load) 8 ?f
Initial plate current* no more than 20 ?a
Cathode emission current** no less than 35 ma
Rectified current*** - no less than 8 ma
Leakage current between cathode and
heater**** no more than 20 pa
Vibration-noise voltage no more than 30 my (eff)
Insulation resistance***** no less than 100 megohm
*For load resistance of-40 kohm and plate voltage of 0.
**For plate voltage of 10 v.
*'*Total pure circuit resistance for rectified current (without load
resistance in plate circuit), including transformer primary resis-
tance appearing in secondary circuit and transformer resistance,
should lie within the 150-200-ohm range.
****For voltage between cathode and heater of ? 250 v.
*****For plate voltage of -240 v.
(Above material published April 1959, PKB, Sheet 1)
-420-
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VIBRATION-RESISTANT DIODE 6D6A-V
Service life
Service-life criterion:
500 hours
rectified current no less than 7 ma
Stable operating time no less than 100 hours
Stable-operation criteria:
rectified current no less than 7 ma
Variation in rectified current from initial
value no more than 20%
Interelectrode Capacitances*
Plate-cathode 3 ? 0.7 ??f
Cathode-heater 3.5+1?5 ??f
*Measured within shield.
Maximum
(-.
Minimum
( -
Maximum
to
Minimum
. to
Maximum
Maximum
Maximum
Maximum
Maximum
heater
or =)
heater
or =)
heater voltage with
100 hours (-.or =)
fluctuations
fluctuations
in service life
filament voltage with
100 hours (... or =)
inverse voltage
rectified current
plate pulse current*
Maximum Permissible Operating Data
voltage, intermittent
voltage, intermittent
decrease
plate power dissipation
voltage between cathode
Cathode warm-up time
Resonant frequency
Maximum envelope temperature
*In rectifier operation.
in service life
(_)
6.6 v
6 v
6.9 v
5.7 v
450 v
10 ma
70 ma
0.2 watt
165 v
15 sec
about 700 Mc
+170?C
Stability Under External Effects
Stable operating time at ambient temperature of
+100 C no less than 98 hours
Maximum envelope temperature over a 100-hour
period at ambient temperature of not more
than 1000C
Stable operating time at ambient temperature of
+200?C
+200?C no less than 2 hours
Maximum envelope temperature over 2-hour
period at ambient temperature of not
more than +200 C
+250?C
(Above material published April 1959, PKB, Sheet 1)
-421-
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VIBRATION-RESISTANT DIODE 6D6A-V
Minimum ambient temperature Minimum atmospheric pressure -700C
5 mm Hg
Maximum relative humidity at ambient temperature
of +50?C 98%
Maximum-acceleration under shock conditions
(10 shocks lasting 1 msec each) 500 g
Maximum constant acceleration 100 g
Long-term vibration*:
for 6-g acceleration 80 hours
for 10-g acceleration 20 hours
Criterion of suitability for extended vibration:
transconductance no less than 3.2 ma
Frequency range over which there are no
mechanical resonances in the tube structure from 20 to 500 cps
Cathode Warm-up time at ambient temperature of
-70 C
*At frequency of 50 cps.
(Above material published April 1959, PKB, Sheet 2)
-422-
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VIBRATION-RESISTANT DIODE 6D6A-v
aaaa?~ja* ?
Average Plate Curve
Heater voltage, 6.3 v.
I I
RPM
.;
11
.
11
1J
0
J
{:_
'1
111
1
111
10
1,11
1
MM
#
li
16
lt
I i
,
H
il
l
.:
..
j
.!
-
..
1
.=
J
!
{::
. {
{
:
:
3J
{
' {
'!
! i
:'
1
!
s
{
I
iii
'
11111
i
=
11
I
ll
lit-
It
'll
~?
Q
S
t
J
!
11
P
101
1111
111
1
1
11
M
{
I
t
{
1
! 1
11
1 il
l li
lt
J
!
!
:
11
?f!'
t
t
121:
~!i
!
=?
J'
:.
i
!11
!
L
:
JJ
:
!
!
.4
z o
p
,no~?~r aMoaa,1
1) Plate voltage, v; 2) plate current, pa.
(Above material published April 1959, PKB, G-1)
-423-
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MULTIPLIER "&OjjZ D1OD
**** 50X1-HUM
Basic function frequency multiplication in the decimeter and
top part of centimeter bands.
Construction glass, with disk-type cathode lead.
General Data
Cathode - oxide-coated heater-type
Maximum height
Maximum diameter
Maximum weight
Dimension drawing - 1D
Connection Diagram for Electrodes and Leads
K!1-"C"WWA s m.
aoa-arot o
oou orpewreai
KP Kn n; ?r
/l- .oaorpe,areab
A) Plate; KP) disk lead - cathode and heater; P) heater.
Electrical Data
Heater voltage (_ or =)
Heater current
Trans conductance*
Plate-current cut-off voltage**
Cathode emission current***
Plate-cathode leakage current
Stability
Stability criterion:
variation in rectified current from
40 mm
20.2 mm
9 grams
6.3 v
0.75 + 0.1 amp
no less than 1.8 ?a/v
from -1.5 to 0 v
30 ma
no more than 0.2?a
50 hours
initial value no more than +10%
*On section corresponding to plate current from 0.1 to 1 ?a.
**For plate current of 0.3 ?a.
***For plate voltage of not more than 10 v.
Plate-cathode
Interelectrode Capacitances
no more than 3.5 ??f
(Above material published April 1959, PKB, Sheet. 1)
-424-
1.." k
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MULTIPLIER D1 E 6D10D
*****
Maximum Permissible Operating Data
Maximum heater voltageS or =
Minimum heater voltage l~ or
Maximum peak inverse plate voltage
Maximum mean rectified current
Maximum peak plate current
Maximum plate power dissipation
Maximum permissible envelope temperature
7 v
5.7 v
100 v
10 ma
30 ma
065 watt
120C
(Above material published April 1959, PKB, Sheet 1)
-425-
n
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MULTIPLIER DIODE
Average Plate Curve
Heater voltage, 6.3 v.
:ii
?fir
E
ii
:SIt
ii
i??s
i. .
:r1?
is=s
.11
iI
iifT
}n
}r.}
4 J:.
t J:
i..I
41111
}ii?
r}i
11
f
tir
tfr~~I=ti~
1?: i
?ft
fi?}
sirs
}rs:
% of;
l? ii
:J1r
kOi
is
I la
1) Plate current, ma; 2) plate voltage, v.
(Above material published April 1959, PKB, G1)
-x+26
6D10D 50X1-HUM
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Iq
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TUNING INDICATOR 6Ye1P 50X1-HUM
basic function tuning indicator.
Construction glass miniature.
General Data
Cathode - oxide-coatcd heater-type
Maximum height
72 mm
,
Maximum diameter
22.5 mm
Number of pins
9
Maximum weight
20 grams
Dimension araWing - 17P
Connectipn Diagram for Electrodes and Pins
'pate,.
a - aao1 kpattps
4 - aoaa'psaaea.
6 - at NOZLI1D4tN
~'~ aMO~ M $oq?
+aertwad
poa
? - aaoa rpattpa
~+- SMA K"T"
1 Grid; 2) cathode and target grid; 3) target plate; 4) heater;
5 heater; 6) not connected; 7) plate and focusing electrode;
8 target plate; 9) target plate.
Electrical Data
Heater voltage (.r or =) 6.3 v
Heater current 300 ? 25 ma
Plate voltage (_) 100 v
Target plate voltage (_) 250 v
Grid voltage (_) -2 v
Plate current 2 ? 1.5 ma
Target plate current no more than 4 ma
Transconductance no less than 0.5 ma/v
Amplification factor 24 ? 10
Grid voltage, with edges of bright sector
of target touching but not overlapping (_)* -15 ? 5 v
Grid back current no more than 0.5 pa
*With 250-v supply voltage for plate and plate target circuits and
resistance in plate circuit-of 0.5 megohm. There may be a dark band
at the borders of contact that is not more than 1 mm wide.
?- Change introduced.
(Above material published April 1959, PKB, Sheet 1)
-427-
y
L t
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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TUNING INDICATOR 6Ye1P
Leakage current between cathode and heater no more than 20 pa
Service life 500 hours
Service-life criterion:
quality of light from target plate*
*With plate and target-plate power supply voltage of 250 V. plate-
circuit resistance of 0.5 megohm, and grid voltage of -20 v.
Maximum Permissible Operating Data
Maximum heater voltage (~ or =)
6.9 v
'Minimum heater voltage (p.. or =
5.7 v
Maximum plate voltage
(_)
250 v
Maximum plate voltage
connected
across cold tube (_)
350 v
Maximum target-plate
voltage (
)
250 v
Minimum target-plate
_
voltage (( ))
150 v
Maximum target-plate
d
voltage connected across
0
tube (_)
. col
v
35
Maximum plate power dissipation
0.2 watt
Maximum voltage between cathode and heater (_)
100 v
Maximum grid-circuit resistance
3 megohm
(Above material. published April 1959, PKB, Sheet 1)
-428-
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nrnr..ri
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1/12/08: CIA-RDP80T00246A063400150001-1
TUNING INDICATOR
6Ye1P 50X1-HUM
Average Plate Curves
Heater voltage, 6.3 v; target-plate voltage, 250 V.
?.
. ~~ mot:: : ~? .M
::. ?~ M 2.?
'::.;..F.
'? M.
ti ]HE
AMI,
l j current, 1 ma; 2) plate voltage,.v; 3) grid voltage, 0 v;
43 -2 v; 5) -4 v; 6) -6 v; 7) -8 v; 8) -10 v.
(Above material published April 1959, PKB,.G-1)
-429-
?
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TUNING INDICATOR 6Ye1P
Average Plate-Grid Curves - -""
Heater voltage, 6.3 v; target-plate voltage, 250 v.
E
l
f
lit
4+
4
1
ZV
1
.
N1 ?..M1? ~~
404
?
+
I
(~
?
f:
?
1A
[I
~
,tit
1) Grid voltage, v; 2) plate current, ma; 3) plate voltage, 300 v;
4) 250 v; 5) 200 v; 6) 150 v; 7) 100 v.
(Above material published April 1959, PKB,.G-2)
-1t30-
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TUNING INDICATOR 6Ye5S
* 9EdE9E9E '
Basic function tuning indicator.
Construction glass.
General Data
Cathode - oxide-coated heater-type
Maximum height
101 mm
Maximum diameter
32.8 mm
Maximum weight
42 grams
Base - octal, Tsl-4-6V
Dimension drawing - 4S
Connection Diagram for Electrodes and Pins
2-- .oawrpewteab
J - a~oa
.S- cet a
6 - aMOA Kp repa
7 - use o pe.a te.s
N -- ratoa
2) Heater; 3) plate; 5) grid; 6) target plate, 7) heater; 8) cathode;
A) Key.
Electrical Data
Heater voltage (.r or =) 6.3 v
Heater current 300 + 25 ma
Plate voltage (_) 250 v
Target-plate voltage (_) 250 v
Grid) voltage (_ ) -4 v
Plate current 5.3 ? 1.9 ma
Target-plate current no more than 5 ma
Transconductance 1.2 + 0.4 ma/v
Amplification factor 24 2
Grid voltage at which bright tar et sectors
will touch but not overlap (-7.5 ? 2 v
Grid back current no more than 2 ?a
Leakage current between cathode and heater no more than 20 ?a
Cathode emission current no less than 15 ma
Grid insulation resistance no less than 20 megohms
Plate insulation resistance no less than 20 megohms
Service life 500 hours
Service-life criterion:
quality of light from target plate
(Above material published April 1959, PKB,'Sheet 1)
_431
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TUNING INDICATOR 6Ye5S
Maximum Permissible Operating Data
Maximum heater voltage (_. or =) 6.9 v
? Minimum heater voltage (M or 5.7,v
Maximum plate operating voltage (_) 250 v
Maximum target-plate operating voltage (_) 250 v
Maximum plate and target plate voltages at
instant of turn-on ? 350 v
(Above material published April 1959, PKB,*Sheet 1)
-432-
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TUNING INDICATOR
Average Plate Curves
Heater voltage, 6.3 v; target-plate voltage, 250 v.
.......a? ..... iii. _
:~ ::iii : :ii? ::s: _
3
:'iii iii
i . iit?
ti
6Ye5S
1 Plate current, amp; 2) plate voltage, v; 3) rid voltage, 0 v;
43 -2 v; 5) -1 v; 6) -6 v; 7) -8 v; 8) -10 v; 9) -12 v; 10) -14 v.
(Above material published April 1959, PKB, *G-1)
-433-
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
TUNING INDICATOR
6Ye5S
Average Curves for Target Dark-Sector Angle as a Function of Triode
Grid Voltage
Heater voltage, 6.3 v; plate supply voltage, 250 v; target-
plate voltage, 250 v.
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30
1) Triode grid voltage, v; 2) dark-sector angle, degrees; 3) resis-
tance in plate circuit, .1 megohm; 4) 0.5 megohm.
(Above material published April 1959, PKB, G-3)
-434-
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TUNING INDICATOR
6Ye5S
Average Curves for Convergence of Edges of Target Dark Sector as a
Function of Value of Plate Load Resistance and Triode Grid Voltage
.Heater voltage, 6.3 v; dark-sector angle, Oo; plate supply.
voltage equal~to target-plate-voltage.
1 Triode grid voltage, v; 2) resistance in plate circuit, kohm;
33 250 v; 4) target-plate voltage'150 v.
(Above material published April 1959, PKB, G-5)
-435-
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TUNING INDICATOR 6Ye5S
Average Plate-Grid Curves -
Heater voltage, 6.3 v; target-plate voltage, 250 v.
- ---- ----------------
W!Wt-. 11M,
Vifyj: :1
imi I E a.',
12
20
MMR
1 Triode grid voltage, v; 2) plate voltage, 350 v; 3) 300 v;
4) 250 v; 5) 200 v.
(Above material published April 1959, PKB, G-2)
-436-
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TUNING INDICATOR 6Ye5S
*****
Average Curves for Target Dark-Sector Angle as a Function of Triode
Grid-Voltage
Heater voltage, 6.3 v; plate power supply voltage, 150 v;
target-plate voltage, 150 v.
Ofbl~tM~f ~rMY11gO~,1.b .
1) Triode grid voltage, v.; 2) dark sector angle, degrees; 3) resis-
tance in plate circuit, 1 megohm; 4+) 0.5 megohm.
(Above material published April 1959, PKB, G-L)
-437-.
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6ZhlB
Basic function radio-frequency voltage amplifier.
Construction glass subminiature.
General Data
Cathode - oxide-coated heater-type
Maximum height (without leads)
Maximum diameter
Number of leads
Lead length
Lead diameter
Maximum weight
Dimension drawing - 5B
36 mm 10.2 mm
7
about 40 mm
about 0.4 mm
3.5 grams
Connection Diagram for Electrodes and Leads
2 -came stops.
d - ao p.UT.ab
- GDAWpasai ab
1 Plate; 2) screen; 3) heater; 4+) heater; 5) suppressor; 6) cathode;
7) control grid; A) Indicator dot.
Electrical Data
Heater voltage (.., or =)
Heater current
Plate voltage (_)
Screen voltage (_)
Resistance in cathode circuit, self biasing
operation
Plate current
Screen current
Transconductance
Transconductance with heater voltage of
5.7 v
6.3 v
200 + 20 ma
120 v
120 v
200 ohms
7.5 ? 2.5 ma
no more _than._3.5 ma
4.8 ? 1.2 ma/v
no less than 3 ma/v
(Above material published April 1959, PKB, Sheet 1)
-238-
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6ZhlB
Equivalent internal noise resistance no more than 4 kohm
Input resistance at frequency of 50 Mc no less than 8 kohm
First-grid back current no more than 0.1 ?a
First-grid thermionic emission current* no more than 0.1 pa
Leakage current between cathode and heater no more than 20 ?a
Vibration-noise voltage** no more than 200 my (eff)
First-grid insulation resistance no less than 100 megohms
Plate insulation resistance no less than 100 megohms
Service life 500 hours
Service-life criteria: transconductance no less than 3 ma/v
first-grid back current no more than 0.5 pa
*For heater voltage of 7.5 v, first-grid voltage of -2 v, and plate
and screen voltages equal to zero.
**For plate load resistance of 10 kohm, at vibration frequency of
50 cps for an amplitude of 1 mm.
Interelectrode Capacitances*
Input
Output
Transfer
Cathode-heater
4.8?0..85??f
3.8 t 0.95 I f
no more than 0.03 ??f
no more than 7 ??f 4-
*Measured within shield.
Maximum Permissible Operating Data
Maximum heater voltage or = 6.9 v
Minimum heater voltage or =) 5.7 v
Maximum plate voltage (_) 150 v
Maximum plate voltage with tube cut off (plate
current no more than 5 ?a) (_) 250 v
Maximum screen voltage (_) 125 v
Maximum screen voltage with tube cut off (plate
current no more than 5 pa) ('_) 250 v
Maximum plate power dissipation 1.2 watts
Maximum screen power dissipation 0.4 watt
Maximum cathode current 14 ma
Minimum cathode warm-up time 15 sec
Maximum voltage between cathod and heater (_) 150 v
Maximum first-grid circuit resistance .1 megohm
Maximum envelope temperature 170?C
-- Change and addition introduced.
(Above material published April 1959, PKB, Sheet 1)
-k39-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE
6ZhlB
Average Characteristics
Plate; ------- grid-plate (for screen grid); heater voltage,
6.3 v; screen voltage, 120 v.
1) Plate current, screen current, ma; 2) plate voltage, v; 3) first-
grid voltage 0 v; 4) first-grid voltage, 0 v; 5) -0.5 v; 6) -1 v;
7) -1.5 v; 8j -2 v; 9) -2.5 v; 10) -3 v; 11) -3.5 v; 12) -2 v;
13) -4 v.
(Above material published April 1959, PKB, a-1)
-440-
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Average Pulse Characteristics -
SHARP-CUTOFF RADIO FREQUENCY PENTODE 6ZhlB
Plate; ------- grid-plate; -.-?-?- grid-plate (for screen
grid); voltage, 6.3 v [sic]; screen voltage, 120 v; pulse repetition
rate, 1 kc; pulse length, 2 psec.
::: ? viii fi' : S?2
ME F".
?3 of)
I
51,nr,
sail
?: ? :2 ?':2 is ...:::.. '
irflhi
i
^ 1)
i 2
2i?i ~ ' ?ii t'-~_'
.? iii: ir: ?
ii?'
12
13
w 2XI ioo 400, 5W
2 b!#emue amA.b
1 Plate current, screen current, first-grid pulse current, ma;
2 plate voltage, v; 3) first-grid voltage, pulsed, 150 v; 4) 125 v;
5 loo v; 6) 1.50 v; 7) 125 v; 8) 100 v; 9) 75 v; 10) 75 v; 11) 50 v;
12 75 v; 13) 100 v; 14) 125 v; 15) 150 v; 16) 25 v; 17) 50 v;
183 50 v; 19) 25 v; 20) 25 v.
(Above material published April 1959, PKB, G-3)
_441-
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ti'}1 i.
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6ZhlB
Average Pulse Characteristics -
(third grid connected to plate)
Plate; ------- grid-plate; -?-?-?- grid-plate (for screen grid);
heater voltage, 6.3 v; screen voltage, 120 v; pulse repetition rate,
1 kc; pulse length, 2 ?sec.
KXJ N 10 UAJ `,G J
1 Plate current, first-grid current, screen current, pulsed ma;
2 plate, voltage, v; 3) first- rid volts e, pulsed 125 v; 41 150 v;
5 100 v; 6) 75 v; 7) 150 v; 8) 125v ; 9g 50 v; 101 100 v; 11) 150 v;
12 75 v; 13 25 v; 14) 125 v; 15) 50 v; 16) 25 v; 17) 100 v; 18) 75 v;
193 50 v; 20) 25 v.
(Above material published April 1959, PKB, G-5)
-442-
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6ZhlB
Average Characteristics
Plate-grid; ------- grid (for screen grid); -.-.-.--mutual
conductances; heater voltage, 6.3 v; plate voltage, 120 v; screen
voltage, 120 v.
..N
-3
1 First-grid voltage, v; 2) plate current, screen current, ma;
3) mutual conductance, ma.
(Above material published April 1959, PKB2 Q-2)
443-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE
6ZhlB
Average Pulse Characteristics
(triode connection)
Plate; ------- grid-plate; heater voltage, 6.3 v; screen
voltage, 120 v; pulse repetition rate, 1 kc; pulse length, 2 p.sec.
400
ii' ii
ii
f'}
iii
i
iii
?iii
3 is
i:i
ii
.:?
~'
ii
?
::2 '
~
Sis
u-
::'
i
i?
?
2?it'
?
a.
.:::
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2:
:7'
~-
1 14
..
1...
::i
lit*
!/ ~:
}iii
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M
7M
si'
:i?i
O
4
MITI
I";
.
1
1) Plate current, first-grid current, pulsed, ma; 2) plate voltage,
v? 3) 150 v; ) 125 v; 5) 100 v; 6) first-grid voltage, pulsed, 75 v;
7 50 v; 8) 150 v; 9) 25 v;. 10) 25 v; 11) 100 v; 12) 75 v; 13) 50 v;
1 ) 25 v.
(Above material published April 1959, PKB, G-4)
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
SHARP-CUTOFF VIBRATION-RESISTANT RADIO-FREQUENCY PENTODE 6ZhlB-V
Basic function radio-frequency voltage amplifier..
Construction glass subminiature.
General Data
Cathode - oxide-coated heater-type
Maximum height (without leads)
Maximum diameter
Number of leads
Lead length
Lead diameter
Maximum weight
Dimension drawing - 5B
36 mm
10.2 mm
7
no less than 40 mm
about 0.4 mm
3.5 grams
Connection Diagram for Electrodes and Leads
I - so"
2-cenu ftqM
3 - wnaorpeasTeab
1 - anlorpeas sa
1 Plate; 2) screen; 3) heater; 4+) heater; 5) suppressor; 6) cathode;
7) control grid; A) Indicator dot.
Electrical Data
Heater voltage (.r or
Heater current
Plate voltage (_)
Screen voltage (_)
Resistance in cathode circuit, self biasing
Plate current
Plate current for first-grid voltage of -2 v
Plate current for first-grid voltage
of -10 v
Screen current
Transconductance
*Rough value.
6.3 v
200 + 20 ma
120 v
200 v
200 ohms
7.5 ? 2.5 ma
7.5 ma*
no more than 50 pa
no more than 3.5 ma
5 1.2 ma/v
+- Change introduced.
(Above material published April 1959, PKB, Sheet 1)
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
SHARP-CUTOFF VIBRATION-RESISTANT RADIO-FREQUENCY PENTODE 6ZhlB-V
Left-hand side of original Russian copy missing; items followed by
?" have been identified only tentatively]
Transconductance for heater voltage _
Of 5.7 v no less than 3.2 ma/v
Transconductance for first-grid voltage
of -2 v 5 ma/v*
Internal resistance 0.2 megohm*?
Equivalent internal noise resistance no more than 1.8 kohm*
Load resistance at frequency of 50 Mc no less than 25 kohm*?-
Positive first-grid voltage for plate current
of 50?a 6v?
First-grid back current no more than 0.1 ?amp?
First-grid leakage current** no more than 0.1.p.a?
Leakage current between cathode and
heater*** no more than 20 ?a
Vibration-noise voltage**** no more than 180 my (eff)'
Service life -- 500 hours
Service-life criteria:
transconductance no less than 3.2 ma/v
variation in transconductance from
initial value from -40 to +3O%?
First-grid back current no more than 0.5 ?a
Stable operation no less than 100 hours?
Stable operation criteria:
transconductance 3.2 ma/v
variation in transconductance from
initial value +28%
First-grid back current no more than 0.5 pa
*Rough value.?
**For heater voltage of 7.5 v, first-grid voltage of -2 v, and plate
and screen voltages equal to. zero.?
***With voltage between cathode and heater of ? 250 v.?
****Across 10-kohm load resistor, with vibration at frequency of
50-cps, acceleration 12 g.?
Interelectrode Capacitances*
Input 4.8 ? 0.85 ??f?
Output 3.8 ? 0.95 ??f?
Transfer no more than 0.03 ??f
?-heater no more than 5 ??f
*Measured within shield.
Maximum Permissible Operating Data
Maximum heater voltage ? 6.9 v
Minimum heater voltage or
(.. or =) 5.7 v
Maximum plate voltage (.. or =) 150 v
?- Change introduced.?
(Above material published April 1959, PKB, Sheet 1)
-446-
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SHARP-CUTOFF VIBRATION-RESISTANT RADIO-FREQUENCY PENTODE 6ZhlB-V
Maximum plate voltage with tube-cat off (plate current
no more than 5 ?a) (=) 250 v
Maximum screen voltage (_) 125 v
Maximum screen voltage with tube cut off (plate current
no more than 5 pa) (=) 250 v
Maximum plate power dissipation 1.2 watts
Maximum screen power dissipation 0.4 watt
Maximum first-grid power dissipation 0.1 watt
Minimum cathode warm-up time 15 sec
Maximum voltage between cathode and heater (_) 150 v
Maximum resistance in first-grid circuit 1 megohm
Maximum envelope temperature 170?C
Resistance to External Effects
Stable operating time at ambient temperature of
+100?C no less than 98 hours
Maximum envelope temperature over 100-hour
period at ambient temperature of not more
then +100?C +200?C
Stable operating time at ambient temperature
of +200 C no less than 2 hours
Maximum envelope temperature over 2-hour
period for ambient temperature of
no more than +200 C +250?C
Minimum ambient temperature -70?C
Cathode warm-up time at ambient temperature of
-70?C 1 min
Minimum atmospheric pressure 5 mm Hg
Maximum relative humidity at ambient temperature 98%
of + 50oC
Maximum constant acceleration* 100 g
Maximum shock acceleration (10 shocks'lasting
1 msec each) 500 g
Extended vibration:**
for 6-g acceleration 80 hours
for 10-g acceleration 20 hours
Criterion of suitability for extended-vibration conditions:
transconductance no less than 3.2 ma/v
Frequency range over which there are no
mechanical resonances of tube structure from 10 to 500 cps
*Plate-current variation no-more than ?7%.
**At frequency of 50 cps.
Note: The characteristics are the same as for the 6ZhlB.
4-Change and Addition introduced.
(Above material published April 1959, PKB, Sheet 2)
-447-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6ZhlZh
Basic function radio-frequency voltage amplifier.
Construction glass ,"acorn" type.
General Data
Cathode - oxide-coated
Maximum height
heater-type
47.6 mm
Maximum diameter
29.4 mm
Maximum weight
15 grams
Number of pins
7
Dimension drawing - 2Zh
Connection Diagram for Electrodes and Pins
/ - ~oaofpeaaTeai
2- cetsa ITOpas
d - cress TpeT".
A - acpawwi or -
per _ an"
Co- w-i a=Tr-
pec - ceTSs
1) Heater; 2) screen; 3) suppressor; 4) heater; 5)
pin - plate; Cl) lower pin - control grid.
Electrical Data
Heater voltage (_ or =)
Heater current
Plate voltage (_)
Suppressor voltage
Screen voltage (_)
(_)
Control-grid voltage
Plate current
(_)
Plate current for first-grid voltage of
-10 v
Screen current
Transconductance
Transconductance for heater voltage of
5.5 v
Internal resistance
First-grid back current
cathode; A) top
6.3 v
150 ? 15 ma
250 v
0 v
100 v
v
2.75 _ 1.75 ma
no more than 1~ pa
0.7_0.4 ma
1.6 t 0.6 ma/v
no less than 0.8 ma/v
1.2 megohm
no more than 1.0 ?a
(Above material published April 1959, PKB, Sheet 1)
-448-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6ZhlZh
Cathode emission current* no less than 20 ma
Cathode warm-up time no more than 20 sec
Plate insulation resistance no less than 20 megohms
First-grid insulation resistance no less than 20 megohms
Service life 200 hours
Service-life criterion:
transconductance
no less than 0.8 ma/v
*With 15 volts on plate and grid.
Interelectrode Capacitances
Input 3.5 t 1 ??f
Output 3 ? 1 ??f
Transfer no more than 0.018 ??f
Maximum Permissible Operating Data
Maximum heater voltage or
Minimum heater voltage or =
Maximum plate voltage (_)
Maximum screen voltage (_)
Maximum first-grid voltage (_)
Maximum plate power dissipation
Maximum screen power dissipation
Maximum voltage between cathode and heater (_)
(Above material published April 1959, PIG, Sheet 1)
-449-
6.9 v
5.7 v
250 v
125 v
0 v
0.55 watt
1.11 watt
90 v
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6ZhlZh
Average Plate Curves
Heater voltage, 6.3 v; first-grid voltage, -3 v; third-grid
voltage, 0 v.
CV4
w NH:. ?:N ~ HT. .~.~ ?..: 2:.
~..-_~ rte. ~.. ~~ .. . .... l..? ...? ?N. w: ~~ t.:: ~'?
?w._Mt NT ..i j i S
opoft W,
1 Plate current, ma; 2) plate voltage, v; 3) screen voltage, 125 v;
100 v; 5) 150 v.
(Above material published April 1959, PKB, a-1)
-450-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6ZhlZh
Average Characteristics
Plate-grid; ------- grid (screen grid); -?-?-?- transconduc-
tance; heater voltage, 6.3 v; plate voltage, 250 v; screen voltage,
100 v; suppressor voltage, 0 v.
. ......
tit
':
ct
.
i' it
: ct
i
~ ~:
~i~
N i
~a
' c--~ ??
j.
as
s.::
iii
:t?...
:;.
r -Z
1 V)PRMI IL ('evriq'i rq)604.6
1) Transconductance, ma/v; 2
screen current, ma.
first-grid voltage, v; 3) plate current,
(Above material published April 1959, PKB, G-3)
-,451-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE
6Zhl,Zh
Average Characteristics
Plate; ------- grid-plate (for screen grid); heater voltage,
6.3 v; screen voltage, 100 v; suppressor voltage, 0 v.
1 Plate current, screen current, ma; 2 plate voltage, v; 3) 0 v;
4 first-grid voltage -1 v; 5) -2 v; 6) -3 v; 7) 0 v; 8) -3 v;
9 -1 v; 10) -2 v; 11) -4 v; 12) -3 v; 13) -5 V.
(Above material published April 1959, PKB, G-2)
-452-
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SHARP-CUTOFF RADIO.-FREQUENCY PENTODE 6ZhlZh
Average Plate-Grid Curve -
Heater voltage, 6.3 v; plate voltage, 250 v; screen voltage,
100 v; first-grid voltage, -3 v.
VI
M
Hiii
i:
:
.
..
_
.: .
.
:
u?
IT
T
'
22
2:22
'i2
I
I+
:2
.2
?
ice:
?
~Si:
.~::
:::'
2:2.
.:5:
.::'
:2:
?_~
i
:i:
si
is ?
tt
':.
rN
Vii'
':iii
?w
-r
V 3
fit
1
-
:2:
H.
IM
.t
::
U
lm
i
K.
.2
2
. ?
?z.
-w
-
0
pP ue 1 wm igwr w'. h
1) Suppressor voltage, v; 2) plate current, ma.
(Above material published April 1959,PKB, G-4)
-453-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6ZhlP
Basic function broad-band radio-frequency voltage amplifier.
Construction glass miniature.
General Data
Cathode - oxide-coated heater-type
Maximum height 48 mm
Maximum diameter 19 mm
Maximum weight 15 grams
Number of pins 7
Dimension drawing - 2P
Connection Diagram for Electrodes and Pins
ceTKa nepsas
2- um. ccua
TPCTbe a capon
3- noaorpcsstcab
?oaorpeuTesb
S - 3Mba
6,- CeTKa *YTupaM
7 - KaTox. rcixa
TpeTha M 0"M
1 First grid; 2) cathode, third grid, and shield; 3)' heater; 4) heater;
53 plate; 6) screen grid; 7) cathode, third grid, and shield.
Electrical Data
Heater voltage (_ or =)
Heater current
Plate voltage (_)
Screen voltage (_)
Cathode-circuit resistance, self-biasing
Plate current
Plate current for first-grid voltage of
-l0 v
Screen current
Transconductance
Transconductance for heater voltage of
5-7-v
Internal resistance
Equivalent internal noise resistance
6.3 v
170 ? 15 ma
120 v
120 v
200 ohms
7.35 ? 2.35 ma
no more than 100 pa
no more than 3 ma
5.i5 ? 1.25 ma/v
no .less than 3.4 ma/v
from 0.1 to 1.1 megohms
no more than 3.7 kohm
(Above material published April 1959, PKB, Sheet 1)
-454-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6ZhlP
*****
Input resistance at frequency of 60 Mc from 12 to 25 kohm
Negative plate-current cutoff voltage (for
plate current of no more than 5.?a) no more than 15 v
Negative first-grid electron-current cut-
off voltage no more than 1.5 v-
First-grid back current* no more than 0.1 ?a
Cathode emission current no less than 30 ma
Leakage current between cathode and
heater no more than 20 ?a
Service life 500 hours
Service-life criteria:
transconductance no less than 3.4 ma/v
first-grid back current no more than 0.15 ?a
*For first-grid voltage of -2 v.
Interelectrode Capacitances
Input 4.35 ? 0.45 ??f
Output 2.35 0.25 ??f
Transfer no more than 0.02 ??f
Cathode-heater no more.than 4.6 ??f
Maximum Permissible Operating Data
Maximum heater voltage S or 7 v
Minimum heater voltage (_ or = 5.7 v
Maximum plate voltage (_) 200 v
Maximum plate voltage with tube cut off (for
plate current of no more than 5 ?a) k=) 225 v
Maximum screen voltage (_) 150 v
Maximum screen voltage with tube cut off (for
plate current of no more than 5 ?a) _) 225 v
Maximum plate power dissipation 1.8 watts
Maximum screen power dissipation 0.55 watt
'Maximum cathode current 20 ma
Maximum voltage between cathode and heater (_) 120 v
Maximum resistance in first-grid circuit 1 megohm
Minimum resistance in cathode circuit, self-biasing 200 ohms
Maximum envelope temperature 14OoC
+- Change and 'addition introduced.
(Above material published April 1959, PKB, Sheet 1)
-455-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6ZhlP
Average Characteristics
Plate; ------- grid-plate (for. screen grid); heater voltage,
6,3 v; screen voltage, 120 v.
1) Plate current, screen current, ma; 2) plate voltage, v; 3) first-
grid voltage, 0 v; 4) -0.5 v; 5) -1.0 v; 6) -1.5 v; 7) -2.0 v;
-2.5 v; 91'-3.0 v; 10) -3.5 v; 11) -3.5 v.; 12) 0 v.
(Above material published April 1959, PKB, Q-1)
-456-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE
Average Plate Curves
(triode connection)
Heater voltage, 6.3 v.
6ZhlP
1) Plate current, ma; 2) plate voltage, v; 3) first-grid voltage, 0 v;
4 -0.5 v; 5j -1 v; 6) -1.5 v; 7) -2 v; 8) 2. v; 9) -3 v; 10) -3.5 v;
11) -4 v; 12?-4.5 v; 13) -5v; 14.) -5.5 v; 15) -6 v.
(Above material published April 1959, PKB, G-3)
-457-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE
6ZhlP
Average Pulse Characteristics -
(first and second grids connected)
Plate; ------- grid-plate; heater voltage, 6.3 v; pulse
repetition rate, 1 kc; pulse length, 2 p.sec.
1) Plate current, first-grid current, pulsed, ma; 2) plate voltage,
v? 3) first-grid voltage, pulsed 150 v; 4 125 v; 5 100 v; 6 75 v;
7 150 v; 8) 125 v; 9) 100 v; 10) 75 v; 113 50 v; 123 50 v; 13 25 v;
14) 25 v.
(Above material published April 1959, PKB, 0-5)
-458-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6ZhlP
Average Characteristics
Mutual conductances; ------- plate-grid(for screen grid);
r?-?-?- grid; heater voltage, 6.3 v; screen voltage, 120 v.
i.
0
:
{
.
.?
T
.
??
?
.
.
't
?
..
-
~::::t
?::
....
6
,
-4 -3
-? -1
.1
1) Mutual conductance, ma/v; 2) first-grid voltage, v; 3) plate
current, screen current, ma.
(Above material published April 1959, PKB, G-2)
-459- ,
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE
*****
Average Pulse Characteristics
(screen connected to plate)
Plate;
------- grid-plate; heater voltage,
repetition rate, 1 kc; pulse length, 2 p.sec.
Wt gill!
z. rmenuc? unoda.6
6ZhlP
6.3 v; pulse
1 Plate current, first-grid current, pulsed, ma; 2) plate voltage, v;
3) first- rid volts e, pulsed, 150 v; 4) 125 v; 5) 100 v; 6) 7 v;
7) 50 v; 8) 2.5 v; 9) 150 v; 10) 125 v; ii) 100 v; 12) 75 v; 13) 50 v;
14) 25 v.
(Above material published April 1959, PKB, G-k)
-460-
~
?
.
.,
:
:I:
...
:22
S:
Ail
12
?t
d
bw
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SHARP-CUTOFF INCREASED-RELIABILITY 6ZhlP-V
RADIO-FREQUENCY PENTODE
[Left-hand side of this page is-missing in original; items identified
only tentatively are marked with a
Basic function broad-band radio-frequency voltage amplifier.
Construction glass miniature.
General Data
Cathode - oxide-coated
Maximum height
heater-type
48 mm
Maximum diameter
19
mm
Maximum weight
15
grams
Number of pins
7
Dimension drawing - 2P
Connection Diagram for Electrodes and Pins
aTOa. ceriA
pe1-a a %Kpaw
S-a?na
S - ccvwa ITOpaa
- Ka TOa. ccTKa
TPWT" K w par
1) First rid; 2) cathode, third-grid, and screen; 3) heater; 4)
heater; 5) plate; 6) screen; 7) cathode, third-grid, and shield.
Electrical Data
Heater voltage or
Heater current
Plate voltage (_)
Screen voltage (_)
Resistance in cathode circuit for self biasing
Plate current
Plate current with first-grid
-10 v
Screen current
Transconductance
voltage
Transconductance for heater voltage of
5.7 v
Internal resistance
Resistance at frequency of 60
6.3 v
170 ? 15 ma
120 v
120 v
200 ohms?
7.35 ? 2.35 ma?
no more than 50 ?a?
no more than 3.0 ma?
5.15 - 1.25.ma/v
no less than 3.4 ma/v
from 0.1 to 1 megohm?
no less than 12 kohm?
+--Change introduced.
(Above material published April 1959, PKB, Sheet 1)
. -461-
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SHARP-CUTOFF INCREASED-RELIABILITY
RADIO-FREQUENCY PENTODJE
6ZhlP-V
Equivalent internal noise. resistance 1.5 kohm
Negative plate-current cut-off voltage (for
plate current of no more than 5 ?a) 18-12 v
Negative first-grid electron-current cut-off
voltage 1.5 v
First-grid back current* no more than 0.1 ?a
Cathode emission current no less than 25 ma
Leakage current between cathode and
heater no more than 15 ?a
Service life 500 hours
Service-life criteria:
transconductance no less than 3.4 ma/v
first-grid back current no more than 0.15 ?a
*For first-grid voltage of -2 v.
Interelectrode Capacitances
Input 4.35 ? 0.45 ??f
Output 2.35 ? 0.25 ??f
Transfer no more than 0.018 ??f
Cathode-heater no more than 4.6 ??f
Maximum Permissible'Operating Data
Maximum heater voltage ~__ or 7 v
Minimum heater voltage or =) 5.7 v
Maximum plate voltage (_) 200 v
Maximum plate voltage with tube cut off (for plate
current of no more than 5 ?a) (_) 225 v
Maximum screen voltage (_) 150 v
Maximum screen voltage with tube cut off (for plate
current of no more than 5 pa) (_) 225 v
Maximum plate power dissipation 1.8 watts
Maximum screen power dissipation 0.55 watt
Maximum cathode current 20 ma
Maximum voltage between cathode and heater (_) 120 v
Minimum resistance in cathode circuit with
self biasing 200 ohms
Maximum resistance in first-grid circuit 1 megohm
Maximum envelope temperature 130?C
(Above material published April 1959, PKB, Sheet 1)
-462-
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SHARP-CUTOFF INCREASED-RELIABILITY
RADIO-FREQUENCY PENTODE
*****
6ZhlP-V
Resistance to External Effects
Minimum atmospheric pressure 20 mm Hg
'Maximum centrifugal acceleration 100 g
Maximum acceleration*:
for short-duration vibration 10 g
for long-term vibration (up to 100 hours) 6 g
Maximum acceleration for individual shocks
(up to 10 shocks) 500 g
*At frequency of 50 cps
Note: Characteristics the same as for the 6ZhlP.
(Above material published April 1959, PKB, Sheet 2)
-463-
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SHARP-CUTOFF LONG-LIFE RADIO-FREQUENCY PENTODE 6ZhlP-Ye
Basic function broad-band radio-frequency voltage amplification.
Construction glass miniature.
General Data
Cathode - oxide-coated heater-type
Maximum height 48 mm
Maximum diameter 19 mm
Number of pins 7
Dimension drawing - 2P
Connection Diagram for Electrodes and Leads
TpeT1~ ^ supa? =W~ ceru ?ropa.
3 OoIofpesaTtah 9 i 4TO1, cet a
4 aowrpea aTt I b
1)
4
First grid; 2) cathode, third rid, and shield; 3) heater;
heater; 5) plate; 6) screen; 7) cathode, third grid, and shield.
Electrical Data
Heater voltage (_ or =) 6.3 v
Heater current 170 + 10 ma
Plate voltage (_) 120 v
Screen voltage (=) 120 v
Resistance in cathode circuit for self biasing 200 ohms
Plate current
Plate current for first-grid voltage of
-10 v
Screen current
Transconductance
Transconductance for heater voltage of
5.7 v
Internal resistance
Input resistance at frequency of 60 Mc
Negative first-grid electron-current cut-
off voltage
First-grid back current*
*For first-grid voltage of -2 v.
7.35 ? 2.35 ma
no more than 50 ?a
no more than 3 ma
5.15 ? 1.25 ma/v
no less than 3.4 ma/v
0.1 - 1.0 megohm
no less than 12 kohm
no more than 1.5 v
no more than 0.1 pa
(Above material published April 1959, PKB, Sheet 1)
-464-
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SHARP-CUTOFF LONG-LIFE RADIO-FREQUENCY PENTODE 6Zh1P-Ye
Cathode-heater insulation resistance*
Cathode warm-up time
Service life
Service-life criteria:
first-grid back current
transconductance
variation in transconductance from
initial value
*For voltage between cathode and heater
no less than 17 megohms
.no more than 20 sec
5000 hours
no more than 0.3 ?a
no less than 3.4 ma
no more than +3
-3
of + 250 V.
Interelectrode Capacitances
Input 4.35 ? 0.45 ??f
Output 2.35 ? 0.25 if
Transfer no more than 0.018 ??f
Cathode-heater no more than 4+.6 ??f
Maximum Permissible Operating Data
Maximum heater voltageS or - * 6.6 v
Minimum heater voltage l~ or =~* 6 v
Maximum plate voltage (_)* 120 v
Maximum screen voltage (_)* 120 v
Maximum plate power dissipation* 1.2 watts
Maximum screen power dissipation* o.4 watt
Maximum cathode current* - 13 ma
--
-
1`la.4..LUiwu vv-~,.,~6.. ----
for negative heater potential* 120 v
for positive heater potential- 90 v
Maximum first-grid-circuit resistance 1 megohm
Minimum resistance in cathode circuit with 200 ohms
self biasing 100 g
Maximum constant acceleration
Maximum vibration acceleration** 10 g
*With tube in use fora 500-hour period, the maximum permissible
values for these constants are the same as for the 6Zh1P.
** At vibration frequency of 50 cps,.
Note: Characteristicq the same for the 6ZhlP.
-465-
(_)
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE
Basic function pulse generator.
Construction glass subminiature.
General Data
Cathode - oxide-coated heater-type
Maximum height (without leads)
Maximum diameter
Number of leads
Length of leads
Lead diameter
Maximum weight
Dimension drawing - 5B
6zh2B
36 mm
10.2 mm
7
about 40
about 0.4 mm
3.5 grams
.Connection Diagram for Electrodes and Leads
/ - aaoa
2- cerrca Tpems
3- ceTw ITOpas
4 - aoaorpesaTeab
5 - aoAorpeaaTeab
1234567 . 7 - CeTra nepaaa
K ucanagomameftra 4
1 Plate; 2) suppressor; 3) screen; 4) heater; 5)
7) control grid; A) Inidcator dot.
Electrical Data
Heater voltage (' or
Heater current
Plate voltage (_)
Screen voltage (_)
Resistance in cathode circuit, self biasing
Plate current
Plate current for suppressor voltage
of -15 v
Screen current
Transconductance
Transconductance at heater voltage of
5.7 v
Suppressor-grid mutual conductance*
*For suppressor voltage of -3 v.
6.3 v
200 ? 20 ma
120 v
120 v
200 ohms
5.5 ? 2 ma
no more than 20 ?a
no more than 6 ma
3'2?0.6 ma/v
(Above material published April 1959, PKB, Sheet 1)
-466-
heater; 6) cathode;
than 2.2 ma/v
0.8?0.6 ma/v
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh2B
Suppressor mutual conductance* - no more than 25 ?a/v
First-grid back current - no more than 0.2 ?a
First-grid thermionic emission current** no more than 0.2 ?a
Leakage current between cathode and -
heater no more than 20 pa
Vibration-noise voltage*** no more than 200 my (eff)
First-grid insulation resistance no less than 100 megohms
Service life 500 hours
Service-life criteria:
transconductance no less than 2.1 ma/v
first-grid back current no more than 0.5 ?a
*For third-grid voltage of 20 v.
**For heater voltage of 7.5 v, first-grid voltage of -2 v, and zero
plate voltage.
***For plate-load resistance of 10 kohm, at a vibration frequency of
50 cps and an amplitude of 1 mm.
Interelectrode Capacitances*
Input 11.9 ? 0.85 ??f
Output 11.1 ? 1 if
Transfer no more than 0.03 ??f
'Cathode-heater no more than 7 ??f
*Measured within shield.
Maximum Permissible Operating Data
Maximum heater voltageS or = 6.9 v
Minimum heater voltage l~ or =3 5.7 v
Maximum plate voltage (_) 150 v
Maximum plate voltage with tube cut off (for
? plate current of no more than 5 pa) (=) 250 v
Maximum plate power dissipation 0.9 watt
Maximum screen power dissipation 0.7 watt
Maximum voltage between cathode and heater (_) 150 v
Maximum first-grid resistance 1 megohm
Maximum cathode current 14 ma
Maximum cathode warm-up time 15 sec
Maximum emvelope temper ture 1700C
Maximum screen current equal) 125 v
Maximum screen voltage, tube cut off (plate current < 5 ?a)
(equal) 250 v
~-- Change and addition introduced.
(Above material published April 1959, PKB, Sheet 1)
_467-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh2B
Average Characteristics
Plate; ------- grid-plate (for screen grid); heater voltage,
6.3 v; screen*voltage, 120 v; suppressor voltage, 0 v.
--+ado. mac ce 7'W O'mu. 4
1) Plate current, screen current, ma; 2) plate voltage
v; 3) first-
grid voltage, 0 v; 4) -1 v; 5) 0 v; 6) -2 v; 7) -1 v;
-3 v;
9) -2 v; 10) -k v; ii) -3 v; 12) -4 v.
(Above material published April 1959, PKB, G-l)
-468-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE
6Zh2B
Average Characteristics
Plate-grid; ------- grid (for screen grid); heater voltage,
6.3 v; plate voltage, 120 v; screen voltage, 120 v.
1 Plate current, screen current, ma; 2 third-grid volts e.9 ;
3 first-grid voltage, -1 v; 4) -2 v; 5) -3 v; 6) -1 v; 7) -2 v;
8 -3 v.
(Above material published April 1959, PKB, G-3)
-469-
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE
6Zh2B
Average Characteristics
Plate-grid; ------- grid (for screen grid); heater voltage,
6.3 v; suppressor voltage, 0 V.
1
First-grid voltage, v; 2) plate current screen
0
k~ 1
current., m~
a
5) 120 v
?
120 v
3
v;
5
plate voltage, screen voltage, 150 v;
;
;
7
9o v; 8) 5o v; 9) 60 v; 10) 60 v.
(Above material published April 1959, PKB, G-2)
_470-
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Average Pulse Characteristics --
(triode connection)
Plate; ------- grid-plate (first grid); heater voltage, 6.3 v.
SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh2B
rw
,gyp t
7. VF 7
is
X
:T
Al
~4:
PH-
:?-
-
'
1
i
I
t
:
L
P
.
?
"
.2
2.?
N
1) First-grid current, screen current, third-grid current, plate
current, ma- 2) plate voltage, v; 3) first-grid voltage, 140 v;
4) 120 v; 55 100 v; 6) 80 v; 7) 60 v; 8) 40 v; 9) 20 vi 10) 140 v;
11) 120 v; 12) 100 v; 13) 80 v; 14) 60 v; 15) 40 v; 165 20 v.
(Above material published April 1959, PKB, G-4)
-471-
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SHARP-CUTOFF VIBRATION-RESISTANT RADIO-FREQUENCY PENTODE 6Zh2B-V
*****
Basic function Pulse formation in special radio equipment.
Construction glass subminiature.
General Data
Cathode - oxide-coated heater-type
Maximum height (without-leads)
Maximum diameter
Number of pins
Pin length
Pin diameter
Maximum weight
Dimension drawing - 5B
36
10.2 mm
7
no less than 40, mm
0.3 -0.4 mm
3.5 grams
Connection Diagram for Electrodes and Leads
I - Awn
~'- crt-a Tprr.r
J - at-a stopis
? - n~~T~~peratta~
1234567 7 - l?CTAa oepwar
Ll~-%duK2r ywem~a A
1 Plate; 2) sup ressor; 3) screen; 4+) heater; 5)
7) first grid; A) Indicator dot.
Electrical Data
Heater voltage (_ or
Heater current
Plate voltage (_)
Screen voltage (=)
Resistance in cathode circuit for self biasing
Plate current
Plate current for suppressor voltage of
-15 v
Plate current for first-grid voltage of
-2v
Screen current
Transconductance
Transconductance for first-grid voltage
of -2 v
*Rough value.
heater; 6) cathode;
6.3 v
200 + 20 ma
120 v
120 v
200 ohms
5.5 ? 2.0 ma
3.75 ma/v*
than 30 pa
5.5 ma* ?-
more than 5.5 ma
3.75 ? 0.95 ma/v
Change and addition introduced.
(Above material published April 1959, PKB, Sheet 1)
-272-
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SHARP-CUTOFF VIBRATION-RESISTANT RADIO-FREQUENCY PENTODE 6Zh2B-V
is missin; items that cannot be
[Left side of original Russian
are page
marked with "? ?~
established with certainty
Transconductance for heater voltage of no less than 2.3 ma/v
5.7 v 0.8_0.35 ma/v
Suppressor-grid mutual conductance*
Suppressor-grid mutual conductance for firsno more than 25 ?a/v***?
grid voltage of -2 v** 25 kohm*?-.
Resistance
Maximum first-grid voltage for plate current 5.5 v?
of 50?a
Maximum suppressor voltage for plate current 9 v?
of 50 ?a no more than 15 ?a?
First grid current** no more than 0.2 ?a?
First-grid current
Leakage current between cathode and no more than 20 ?a?
heater***** no more than 180 my (eff)
Vibration noise-voltage****** 500 hours
Service life -'-
Service-life criterion: no less than 2.3 ma/v
transconductance
deviation of transconductance from from -40 to +30%?
initial value no more than 0.5 ?a?
no less than 100 hours
First-grid current no
t
Stable operating
Criterion of stable operation: no less than 2.3 ma/v
transconductance
deviation of transconductance from ~
initial value +28
?a? 0.5
no more than %?
Initial first-grid current
*Third-grid voltage -3 v.?
**?
? ***Third-grid voltage, -20 v.? v, and ,O volts on
****Heater voltage, 7.5 v, first-grid voltage, -2
plate and screen.? ? 250 v.?
*****Voltage between cathode and heater,
******Plate load resistance 10 kohm for vibration at 50 cps and ac-
celeration of 12 g.?
Interelectrode Capacitances*
~4.9?0.85??f
Input 4.1 ? 1.0 ??f
Output Transfer no more than 0.03 ??f
no more than 5 ??f?
Cathode-heater
*Measured within shield.
Maximum Permissible Operating Data
6.9
v
Maximum heater voltage or X50,97 v
v
Minimum heater voltage (- or 5.
Maximum plate voltage
4- Change introduced.? Sheet 1)
(Above material published April 1959, PKB,
-L+73-
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SHARP-CUTOFF VIBRATION-RESISTANT RADIO-FREQUENCY PENTODE 6Zh2B-V
Maximum plate voltage with tube cut off (plate 250 v
current no more than 5 ?a) (_) 125 v
Maximum screen voltage (_)
Maximum screen voltage with tube cut off (plate
current no more than 5 ?a) (_) 250 v
Maximum plate power dissipation 0.9 watt
Maximum screen power dissipation 0.1 watt
Maximum first-grid power dissipation 0.1 watt
Maximum cathode current l4 ma
Minimum cathode warm-up time 15 sec
Maximum voltage between cathode and heater (_) 150 v
Maximum resistance in first-grid circuit 1 megohm
Maximum envelope temperature 170?C
Resistance to External Effects
Stable operating time at ambient temperature of
100?C no less than 98 hours
Maximum envelope temperature over 100-hour period 200?C
at ambient temperature not exceeding 1000C
Stable operating time for ambient temperature of
200 C no less than 2 hours
Maximum temper-ature over 2-hour period at ambient
temperature not exceeding 200?C 250?C
Minimum ambient temperature
Cathode warm-up time at ambient temperature of 1 min
-70?C 5 mm Hg
Minimum atmospheric pressure
Maximum re]ative humidity at ambient temperature 98%
of5Oc
Maximum constant acceleration* 100 g
Maximum shock acceleration'(10 shocks lasting 500 g
1 msec each)
Continuous vibration:**.
for acceleration of 6 g $ 80 hours
20 hours
for acceleration of 10 g
Criterion for suitability for extended vibration:
transconductance no less than 2.3 ma/v
frequency range over which there are no
mechanical resonances of tube structure from 10 to 500 cps
*Plate current variation no-more than ? 7%.
**At frequency of 50 cps .
Note: Characteristics the same as for the 6Zh2B.
i-Change and addition introduced.
(Above material published April 1959, PKB, Sheet 2)
k74-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE
6Zh2P
Basic function broad-band radio-frequency voltage amplifier
and frequency converter.
Construction glass miniature.
General Data
Cathode - oxide-coated heater-type
Maximum height
Maximum diameter
Maximum weight
Number of pins
Dimension drawing - 2P
Connection Diagram for Electrodes and Pins
i - cet.a nep?ar
.1 -- u oipc atr.s .
l 'wwnlie"aIv It.
1) First grid; 2) cathode and shield; 3) heater; 4)
6) screen grid; 7) suppressor grid.
Electrical Data
Heater voltage (_ or =)
Heater current
Plate voltage (_)
Screen voltage (_)
Suppressor voltage
Resistance in cathode circuit for self biasing
Plate current
Plate current for suppressor voltage
-15 v
Suppressor current
Transconductance
Transconductance at heater voltage of
5.7 v
Suppressor-grid mutual conductance*
Suppressor-grid mutual conductance**
*For suppressor voltage of -3 v.
**For suppressor voltage of -20 v.
48 mm
19 mm
15 grams
7
heater; 5) plate;
6.3 v
170 ? 15 ma
120 v
120 v
0 v
200 ohms
5.5 ? 2 ma
no more than 50 ?a
no more than 5 ma
3.85 ? 0.85 ma/v
no less than 2.4 ma/v
no less than 0.5 ma/v
no more than 25 pa/v
(Above material published April 1959, PKB, Sheet 1)
-475-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh2P
Internal resistance 0.08-0.31 megohm.
Negative grid electron-current cutoff
voltage no more than 1.5 v
First-grid back current* no more than 0.2 ?a
Cathode emission current no less than 25 ma
Leakage current between cathode and
heater no more' than 20 ?a
Service life 500 hours
Service-life criteria:
first-grid transconductance no less than 2.5 ma/v
first-grid back current* no more than 0.3 pa
*For first-grid voltage of -2 v.
Interelectrode Capacitances
Input 4.5 ? 0.5 ??f
Output 2.4 ? 0.3 ??f
Transfer no more than 0.018 ??f
First grid-screen grid no more than 1.9 ??f
Cathode-heater no more than 4.5 ??f
Maximum Permissible Operating Data
Maximum heater voltage 7 v
Minimum heater voltage (.r or or =3 5.7 v
Maximum plate voltage (_) 200 v
Maximum screen voltage (_) 150 v
Maximum plate power dissipation 1.8 watts
Maximum screen power dissipation 0.85 watt
Maximum voltage between cathode and heater (_) 120 v
Maximum cathode current 20 ma
Minimum resistance in cathode circuit for self biasing 200 ohms
Maximum resistance in first-grid circuit 1 megohm
Maximum enve.Lope temperature 140?C
4- Change introduced.
(Above material published April 1959, PKB, Sheet 1)
-476-
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE
6Zh2P
Average Characteristics
Plate; ------- grid-plate (for screen grid); heater voltage,
6.3 v; screen voltage, 120 v.
r1~.
:: is 'ii:- ?i::~i~ :~ ~..
A MUM
mirm
9
. 7 mt. - ''
4
. )I & ?fU$ CVnKU 6Rttp&.*i
1) Plate current, screen current, ma; 2) plate voltage, v; 3) first-
grid voltage, .O v; 4) -0.5 v; 5) -1 v; 6) -1.5 v; 7) 0 v; 8) -2 v;
9) -2.5 v; 10) -3 v; 11) -3 v.
(Above material published April 1959, PKB, G-1)
-477-
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE 6Zh2P
Average Characteristics
------- Plate-grid; grid (for screen grid); heater voltage,
6.3;,plate voltage, 120 v; screen voltage, 120 v; first-grid voltage,
-2 v.
-
?H
Now g1d
O ~D
c?
1) Third-grid voltage, v; 2) plate current, screen current, ma.
(Above material published April 1959, PKB, G-3)
-478-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE
6Zh2P
Average Characteristics
Mutual conductances; ------- Plate-grid; -?-?-?- grid (for
screen grid); heater voltage, 6.3 v; screen voltage, 120 v.
N?
?
i'
iql
n
:
---
------- -
-
?.
M
N
?
~.:
i
?
~ I
N
??
N
?N.
yA
.. jo*.ina2 mw dmooai.wa
1) Plate current, screen current, ma; 2) first-grid voltage, v;
3) mutual conductance, ma/v.
(Above material published April 1959, PKB, G-2)
-479-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh2P
Average Plate Characteristics
(triode connection)
Heater voltage, 6.3 v.
IN
M?
? .
2
I?
?
?
1) Plate current, ma; 2) plate voltage, v; 3) first-grid voltage,
0 v; k) 2 v; 5) 1 v; 6) -1 v; 7) -2 v; 8) -3 v.
(Above material published April 1959, PKB, Cr-L)
-480-
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SHARP-CUTOFF INCREASED--RELIABILITY
RADIO-FREQUENCY PENTODE
6Zh2P-V
Basic function broad-band radio-frequency voltage amplifier
and frequency converter.
Construction glass miniature.
General Data
Cathode - oxide-coated heater-type
Maximum height 48 mm
Maximum diameter 19 mm
Maximum weight 15 grams
Number of pins 7
Dimension drawing - 2P
Connection Diagram for Electrodes and Pins
I -- CCTK. nCpaa$
--K~TUl N ~1ipai
- n4 .1fpesaTC 16
i ce a Tpe;-/
1 First grid; 2) cathode and shield; 3) heater; 4) heater; 5) plate;
6) screen; 7) suppressor.
Electrical Data
Heater voltage (... or =)
Heater current
Plate voltage (_)
Screen voltage (_)
Suppressor voltage (_)
Resistance in cathode circuit, self biasing
Plate current
Screen current
Plate current for first-grid voltage of
-10 v
Plate current for suppressor voltage of
-15 v
Transconductance
Transconductance for heater voltage of
5.7 v
6.3 v
170 ? 15 ma
120 v
120 v
0 v
200 ohms
5.5 ? 2 ma
no more-than 5.0 ma
no more than 40 pa
no more than 50 pa.
3.85 ? 0.85 ma/v
no less than 2.5 ma/v
(Above material published April 1959, PKB, Sheet 1)
-481-
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SHARP-CUTOFF INCREASED-RELIABILITY
RADIO-FREQUENCY PENTODE
6Zh2P-V
Resistance to External Effects
Minimum atmospheric pressure 20 mm Hg
Maximum centrifugal acceleration 100 g
Maximum acceleration*:
brief vibrations 10 g
continuous vibration (up to 100 Hours) 6 g
Maximum acceleration, single shocks (up to
10 shocks) 500 g
*At frequency of 50 cps.
Note: Characteristics the same as for the 6Zh2P.
(Above material published April 1959, PKB, Sheet 2)
-L+82-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6zh3
Basic function radio-frequency voltage amplification.
Construction metal.
General Data
Cathode - oxide-coated heater-type 67 mm
Maximum height
Maximum diameter 33 mm
mmams
Maximum weight 45 Base - octal, Tsl-1-8A
Dimension drawing - 1M
Connection Diagram for Electrodes and Pins
1-- 6suo?
2- no*orp.wiru
3-- ~:acn~ w ce1-a
TpCT-u
4 cet-a ntp%ar
Lh
1 Envelope; 2)
heater;
3)
5) cathode; 6)
screen;
7)
Electrical Data
Screen voltage (_)
First-grid voltage
Plate current
Cathode current
Screen current
Transconductance
Heater voltage (. or =
Heater current
Plate voltage (_)
(_)
i -/T.-1
A tr1-a ~ta~V
rwax~~e.ate
cathode and suppressor; 1+) first grid;
heater; 8) plate; A) Key.
Transconductance at heater voltage of
5.7 v
First-grid back current
Cathode emission current*
Leakage current between cathode and
heater
Cathode warm-up time
*For plate and.grid voltage of 20 v.
6.3 v
300 ? 25 ma
250 v
150 v
-1 v
10.8 ? 2.6 ma
no more than 50 ?a
4f 2ma
4.9 + 1.0 ma/v
no less than 3.1 ma/v
no more than 1.0 pa
no less than 95 ma
no more than 20 ?a
no more than 20 sec
(Above material published April 1959, PKB, Sheet 1)
-1483-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
SHARP-CUTOFF INCREASED-RELIABILITY
RADIO-FREQUENCY PENTODE
6Zh2P-V
Suppressor-grid mutual conductance for suppressor-
grid voltage of -3 v. no less than 0.5 ma/v
Third-grid mutual conductance for third-
grid voltage of -20 v no more than 20 ?a/v
0.160?0.08 megohm
Internal resistance
Negative plate-current cutoff voltage (for. 18-12 v
plate current of not more than 5 ?a)
Negative first-grid electron-current cutoff
voltage no more than 1.2 v
First-grid back current* no more than 0.1 ?a
Cathode emission current no less than 25 ma
Leakage current between cathode and no more than 15 ?a
heater
Service life 500 hours
Service-life criteria:
transconductance no less than 2.5_ma/v
first-grid back current* no more than 0.2 ?a
*For first-grid voltage of -2 v.
Interelectrode Capacitances
Input 4.5 ? 0.5 ??f
Output 2.1 ? 0.3 ??f
Transfer no more than 0.018 ??f
First grid-screen no more than 1.9 ??f
Cathode-heater no more than 4.5 ??f
Maximum Permissible Operating Data
Maximum heater voltage or 7.0 v
Minimum heater voltage (... or ) 5.7 v
Maximum plate voltage (_) 200 v
Maximum plate voltage with tube cut off (for
plate current not exceeding 5 ?a) (_)
Maximum screen voltage (_)
Maximum screen voltage with tube cut off (for
plate current not exceeding
Maximum plate power dissipation
Maximum screen power dissipation
Maximum voltage between cathode and heater (_)
Maximum cathode current
Minimum resistance in cathode circuit for self
Maximum resistance in first-grid circuit
Maximum envelope temperature
225 v
150 v
225 v
1.8 watts
0.85 watt
120 v
20 ma
biasing 200 ohms
1 megohm
1250C
*-- Change introduced.
(Above material published April 1959, PKB, Sheet i)
_48L_
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE
First-grid insulation resistance-
Plate insulation resistance
Service life
Service-life criteria:
transconductance
6zh3
no less than 20 megohm
no less than 20 megohm
1000 hours
no less than 3.2 ma/v
Interelectrode Capacitances
Input
Output
Transfer
8.5+ 1.7 ??f
7.0 1 2.1 ??f
no more than 0.003 ??f
Maximum Permissible Operating Data
Maximum heater voltage S or
Minimum heater voltage l_ or =
Maximum plate voltage (_)
Maximum screen voltage (_)
Maximum plate power dissipation
Maximum screen power dissipation
Maximum voltage between cathode and heater
6.9 v
5.7 v
330 v
165 v
3.3 watts
0. 7 watt
100 v
(_)
Standard Operating Conditions
Class A Amplifier
No. 1
Plate voltage (_) v 100
Screen voltage (=), v 100
First-grid voltage, v
rid voltage for plate current
First
-g
-4
of 0.01 ma, v
Plate current, ma 5.3
Screen current, ma 2.1
Transconductance, ma/v 4
Internal resistance, megohms 0.35
Change introduced.
(Above material published April 1959, PKB, Sheet 1)
-485-
No. 2
250
150
-1
10.8
4.1
4.9
0.9
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6zh3
Average Plate Characteristics
Heater voltage, 6.3 v; first-grid voltage, -1 v.
Tors aixt'. wt1
l j current, ma; 2) plate voltage, v; 3) screen voltage, 150 v;
4) 100 v; 5) 50 v.
(Above material published April 1959, PKB, G-l)
-486-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE
Average Characteristics
Plate-grid; ------- grid (for-screen grid); heater voltage,
6.3 v; plate voltage, 250 v.
Ia..
41
.4.f
?tH
..,.
.f
.?.
?.tr
}?f
?.,?
:f
,f..
f +~
,1.
T
?..
,?H ~:..
? ?.
.~?
..-.+
4
I'
2...
...
fo?Y
~',~.~r~sr,re,~,~n Cemna n('kl(-r'! 6
6zh3
1 First-grid voltage, v; 2) plate current, screen current, ma;
3 screen voltage, 150 v; 100 v; 5) 150 v; 6) 50 v; 7) 100 v;
8 50 v.
(Above material published April 1959, PKB, G-3)
-487-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6zh3
Average Plate Characteristics
(Triode connection: screen connected with plate)
Heater voltage, 6.3 v.
1 Plate current, ma; 2) plate voltage, v; 3) first-grid voltage, 3 v;
4) 0 v; 5) -2 v; 6) -4 v; 7) -6 v.
(Above material published April 1959, PKB, G-5)
-k88-
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6zh3
Average Characteristics
Plate; ------- grid-plate (for screen); heater voltage, 6.3 v;
screen voltage, 100 v.
bnpa.e?~e o' b, A
L iw
I10
1) Plate current, screen current, ma; 2) plate voltage, v; 3) first-
grid voltage, 0 v; 4) -0.5 v; 5) -1 v; 6) -1.5 v; 7) 0 v; 8) -1 v;
9) -2 v; 10) -3 v.
(Above material published April 1959, PKB, G-2)
-k89-
. .,Wi=t ...,, ] L
:
... ....
....
....
... t
..
i
.
3--
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6zh3
Average Mutual-Conductance Curves as a Function of First-Grid Voltage
Heater voltage, 6.3 v; plate voltage, 250 v.
-3 -2 -err..u rty&).
1) First-grid voltage, v; 2 mutual conductance, ma/v; 3) screen
voltage, 150 v; 4) 100 v; 5) 50 v.
(Above material published April 1959, PKB, G-4)
-490-
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PENTODE-TYPE RADIO-FREQUENCY TETRODE
*****
Basic function broad-band radio-frequency
Construction glass miniature.
Cathode - Oxide-coated
Maximum height
Maximum diameter
Maximum weight
Number of pins
Dimension drawing - 4P.
General Data
heater-type
voltage
Connection Diagram for Electrodes and Pins
.i aHOI
6 - cen a ,tOpa/
- KaTOa N ,Kp1N
I - cetKu Nepssa
2 KaTOA N supaN
3 - NOmfpeUTe.T-
~- nolffpeUTla-
1 First grid; 2) cathode and shield; 3) heater; 4
6) screen; 7) cathode and shield.
6zh3P
amplification.
58 mm
19 mm
12 grams
7
heater; 5) plate;
Electrical Data
Heater voltage (.r or =)
6.3 v
Filament current
300 ? 20 ma
255 v
Plate voltage (_)
Screen voltage (_)
150 v
Resistance in cathode circuit for self-biasing
200 ohms
Plate current
7.0 ? 1.8 ma
Plate current for first-grid voltage of
-9 v
than 30 pa
Screen current
2.0 ? 0.7 ma
Transconductance
5.0 ? 1.0 ma/v
Transconductance at heater voltage of
5.5 v
than 3.25 ma/v
Internal resistance
0.8_0.3 megohm
Negative first-grid electron-current cutoff
voltage
no more
than 1.3 v
First-grid back current*
no more
than 1.0 ?a
*For first-grid voltage of -2 v.
?- Change introduced.
(Above material published April 1959, PKB, Sheet 1)
-491-
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PENTODE-TYPE RADIO-FREQUENCY TETRODE 6Zh3P
First-grid thermionic emission current* no more than 1.0 pa
Cathode emission current
I sulation resistance between cathode
n
no less than 25 ma
and heater no less than 8 megohm
First-grid in-ulation resistance no less than 10 megohm
Plate insulation resistance no less than 10 megohm
Service life 500 hours
Service-life criteria:
transconductance no less than 3.25 ma/v
first-grid back current** no more than 4.0 ?a
*For heater voltage of 7.5 v and first-grid voltage of -9 v.
**For first-grid voltage of -2 v.
Interelectrode Capacitances*
Input 6.5 ? 1.3 ??f
Output 1.4 ? 0.4 ??f
Transfer no more than 0.25 ??f
*Measured inside shield.
Maximum Permissible Operating Data
Maximum heater voltage S or
Minimum heater voltage l~ or =
Maximum plate voltage (_)
Maximum screen voltage (_)
Maximum plate power dissipation
Maximum screen power dissipation
Maximum voltage between cathode and heater'(=)
Minimum resistance in cathode circuit with self
biasing
Maximum resistance in first-grid circuit
~- Change introduced.
(Above material published April 1959, PKB, Sheet 1)
-492-
7.0 v
5.7 v
330 v
165 v
2.5 watts
0.55 watt
100 v
200 ohms
0.5 megohm
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PENTODE-TYPE RADIO-FREQUENCY TETRODE 6Zh3P
Average Characteristics
- Plate; grid-plate (for screen grid); -?-?-?- maximum
permissible plate power dissipation; heater voltage, 6.3 v; screen
voltage, 150 v.
22
aq'rp.'e 0nA.6
1) Plate voltage, v; 2) plate current, screen current, ma; 3 first-
grid voltage, 0 v; 4+) -0.5 v; 5) -1 v; 6) -1.5 v;.7) -2 v; 8 -2.5 v;
9) -3 v; 10) first-grid voltage, -3 v; 11) 0 V.
(Above material published April 1959, PKB, G-1)
-493-
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PENTODE-TYPE RADIO-FREQUENCY TETRODE 6Zh3P
Average Characteristics
Plate-grid; ------- grid (for screen grid);
mutual
conductances; heater voltage, 6.3 v; plate voltage, 250 v; screen
voltage, 100 v.
}1?
t? bm
k-
}
Nr
~?N
om}
?. ?+ ? .?+ N f{r 11 t4
IT'S
'77 -7
?r
.?1
? H
:T! T
R
TIT
2 wme,ve cemw nepU.6
9
1) Mutual conductances., ma/v; 2) first-grid voltage, v; 3) plate
current, screen current, ma.
(Above material published April 1959, PKB, G-2)
-494-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6zh4
*****
Basic function radio-frequency voltage amplification in broad-
band amplifiers.
Construction metal.
General Data
Cathode - oxide-coated heater-type 67 mm
Maximum height
Maximum diameter 33 mm
Maximum weight 43 grams
Base - octal, Tsl-1-8A
Dimension drawing - 2M
Connection Diagram for Electrodes and Pins
1 - Gaaaou 5- KaTO*
N 6
I - noaurykNanaw ~N 6 - CCTKa stOpai
J - cct ri?.tb^ 7 7 - aO.jOrpcsaTeaa
J - . et .' ncpxar d - aNO1t
1 Envelope; 2) heater; 3) suppressor; 4) first grid; 5) cathode;
6) screen; 7) heater; 8) plate; A) Key.
Electrical Data
Heater voltage (_ or =)
Heater current
Plate voltage (_)
Suppressor voltage (_)
Screen voltage (_)
Resistance in cathode circuit
Plate current
Plate current for first-grid voltage of
-6 v
Screen current
Transconductance
Transconductance for heater voltage of
5.5 v
Internal resistance
Suppressor back current*
Cathode emission current
*For suppressor voltage of -2 v.
6.3 v
450 + 25 ma
305 v
0 v
150 v
160 ohms
10.25 + 2.25 ma
no more than 900 ?a
2.2 ? 1.0 ma
9.0 f 2.0 ma/v
no less. than 5.5 ma/v
about 1 megohm
no more than 6.0 ?a
no less than 40 ma
(Above material published April 1959, PKB, Sheet 1)
-495-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh1
Second-Circuit
R1 =
71 kohm, R2 = 0.1 megohm; 1) 6Zhk.
No. 1
No. 2
Supply voltage v
200
200
Screen voltage ((- , v
110
100
Negative first-grid voltage (_), v
1.2
1.1
Alternating first-grid voltage, v (eff)
0.15
.15
1
6
Plate current, ma
8.0
.5
Screen current,ma
1.7
1.4
8
Transconductance, ma/v
9
Note: 1. Regime No. 1 is designed for stages using series-connected
tuned circuits (Circuit 1).
2. Regime No. 2 is designed for stages using parallel-connected
tuned circuits with values of Ra from 1 to 10 kohm (Circuit 2).
3. Capacitances C1, C2 and C3 (for circuits 1 and 2) are
selected as a function of the frequency band.
(Above material published April 1959, PKB, Sheet 2)
_496-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh4
Cathode warm-up time
Leakage current between cathode and
heater
Insulation resistance for first grid
Plate insulation resistance
Service life
Service-life criteria:
transconductance
suppressor back current*
*For suppressor voltage of -2 v.
no more than 30 sec
no more than 20 p.a
no less than 10 megohm
no less than 10 megohm
500 hours
no less than 5.8 ma/v
no more than 6.0 pa
Interelectrode Capacitances
Input
Output
Transfer
9.5 2 ??f
5?1.5??f
no more than 0.015 ??f
Maximum Permissible Operating Data
Maximum heater voltage S or
Minimum heater voltage l_ or =
Maximum plate voltage (_)
Maximum screen voltage (_)
Maximum plate power dissipation
Maximum screen power dissipation
Maximum voltage between cathode and
(=)
7.0 v
5.7 v
330 v
165 v
3.3 watts
0.45 watt
100 v
Standard Operating Conditions
Tuned Broad-Band Amplifier Circuits
First Circuit
R1 = 53 kohm; R2 < 0.1 megohm; 1) 6Zh14.
(Above material published April 1959, PKB, Sheet 1)
-497-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6ZhL
Average Plate Characteristics
(triode connection)
Heater voltage, 6.3 v; suppressor voltage, 0 v.
1 Plate current, ma; 2) plate voltage, v; 3) first-grid voltage, 1 v;
4) 0 v; 5) -1 v; 6) -2 v; 7) -3 v; 8) -4+ v; 9) -5 v.
(Above material published April 1959, PKB, G-1)
-498-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE
6zh4
Average Characteristics
Plate-grid; ------- grid (for screen grid); heater voltage,
6.3 v; plate voltage, 300 v; suppressor voltage, 0 v.
................
to
-7 -6 -5 -4 -3 -2
I TAMMue Chu nI^ ".6 I
OO current, m;
1 .First-grid voltage, v; 2) plate ,cujr eOO ,vscreen
3 screen voltage, 200 v;. 150 v; v; 7) 150 v;
8 50 v; 9) 100 v; 10) 50 v.
(Above material published April 1959, PKB, G-3)
-499-
:ut is ' ?:? a ''
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zhk
Average Characteristics
(As a function of first-grid voltage)
Internal resistance; ------- transconductance; heater voltage,
6.3 v; plate voltage, 300 v; screen voltage, 150 v; suppressor voltage,
0 v.
-~ -t
~Q~Htie (j T? 4 '-~1~;c~,A
2
1) Transconductance, ma/v; 2) first-grid voltage, v; 3) internal
resistance, ohms.
(Above material published April 1959, PKB, G-5)
-500-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6ZhL
Average Characteristics
Plate; ------.Grid-plate (for screen); heater voltage, 6.3 v;
screen voltage, 150 v; suppressor voltage, 0 v.
1) Plate current, screen current, ma; 2) plate voltage, v; 3) first-
grid voltage, 0 v; 4+) -0.5 v; 5) -1 v; 6) -1.5 v; 7) -2 v; 8 0 v;
9) -2.5 v; 10) -3 v; 11) -4 v; 12) -0.5 v; 13) -1 v; 14) -1.5 v;
15) -2 v; 16) -2.5 v; 17) -3 v.
(Above material published April 1959, G-2)
-501-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh4
Average Plate-Grid Curve
Heater voltage, 6.3 v; plate voltage, 300 v; screen voltage,
150 v; cathode-circuit resistance, 160 ohms.
9
:
7
. . .
. . . .
.
?f2f
..
...
.
:
I=
t::
tt
tt
_=
??
:
;:
:
i ?
~
:
. :
t: :
::::
1: -7 1
1
J
.r,
i.
1) Suppressor voltage, v; 2) plate current, ma.
(Above material published April 1959, PKB, G-4)
-502-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh4
Average Characteristics
(As a function of screen voltage)
Internal resistance; ------- transconductance; heater voltage,
6.3 v; plate voltage, 300 v; suppressor voltage, 0 V.
'
1
T
.
IT
-
i
F
??
?
-
i
s`t
_` 6 :::
s
?
7
,
~
'
_
.v:
...
r?
.
::::
it
2 Ibn aw Cefrxu &rvw. 8
1) Transconductance, ma/v; 2) screen voltage, v; 3) first-grid voltage,
-1 v; 4) -2 v; 5) -2 v; 6) -1 v; 7) internal resistance, kohm.
(Above material published April 1959, PKB, G--6)
-503-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh4
Average Pulse Characteristics
Plate; ------- grid-plate (for screen grid); heater voltage,
6.3 v; screen voltage, 150 v; suppressor voltage, 0 v; pulse length,
2 psec; repetition rate, 100 cps.
ii
:.
.?
i`~
. ?
-.?
'ii
iii
'
it:
..
1Eq
.
I:.:rr ::........,...s ~;
....
.
.
{: ?
:
'
.
~
:
.
?
.:.
w, t.
?
.
:
_t.:. .:_:}::
::
i::{
....
i
}'
'
t
:i
::
..:
?....!-t1'?.+.r-..~~ :. :...... ? .............
N...?
'.
~
A
1
t
aj: t
11~Y..~
6.j...?i?
1) Plate current, pulsed, screen current, pulsed, amp; 2) plate
voltage, vj 3) first-grid voltage, pulsed, 100 v; 4) 60 v; 5) 4o v;
6) 20 v; 7j 40 v; 8) 6o v; 9) loo v; lo) 10 v; il) 20 v; 12) 0 v;
13) 10 v; 14) 0 v.
(Above material published April 1959, PKB, G-7)
-504-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE
6ZhL
Average Pulse Characteristics
(triode connection)
Plate; ------- grid-plate; heater voltage, 6.3 v; pulse
length, 2 ?sec; repetition rate, 100 cps.
2 rv e t anoOo.5
1) Plate current, pulsed, screen current, pulsed, amp; 2) plate
voltage, v? 3) first-grid voltage, pulsed 100 v; 4) 60 v; 5) 40 v;
6) 20 v; 7 10 v; 8) 100 v; 9) 60 v; 10) 40 v; 11) 20 v; 12) 10 v;
13) 5 v; ; 14) 5 v; 15) 0 v.
(Above material published April 1959, PKB, G-9)
-505-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE
6Zhi
Average Pulse Characteristics
Plate; ------- Plate-grid (for screen grid); heater voltage,
6.3 v; screen voltage, 300 v; suppressor voltage, 0 v; pulse length,
2 ?sec; repetition rate, 100 cps.
L
tt
f
i
------------
::.''!'fir
:
:: -- .-
lrX1'
.777
if
1) Plate current, pulsed, screen current, pulsed, amp; 2) plate
voltage, pulsed, v; 3) first-grid voltage, pulsed, 100 v; 4) 60 v;
5) 40 v; 6) 20 v; 7) 60 v; 8) 100 v; 9) 10 v; 10) 20 v; 11) 10 v;
*12) 0 v; 13) 10 v.
(Above material published April 1959, PKB, G-8)
-506-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zhk
Average Plate Pulse Characteristics
Heater voltage, 6.3 v; plate voltage, 300 v; pulse length,
2 psec; repetition rate, 100 cps.
-` ? O r,!
lire tOQMCflUt rPm' u , , 'r C~ ; urw~nc,ce,C
1 First-grid current, pulsed, amp; 2 first-grid voltage, pulsed, v;
3) screen voltage, 150 v; 4) 300 v; 5 600 v.
(Above material published April 1959, PKB, G-10)
-507-
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LONG-LIFE SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zhl-Ye
*****
Basic function radio-frequency voltage amplification in broad-
band amplifiers.
Construction metal.
General Data
Cathode - oxide-coated heater-type
Maximum height 67 mm
Maximum diameter 33 mm
Maximum weight 37 grams
Base - octal, Tsl-1-8A
Dimension drawing - 2M
Connection Diagram for Electrodes and Pins
2- ooiorpeuTeab
.~ - CeTu Tpems
I = CeTU aePUI
5 - UTOA
6- CeTKu itopi!
7 - nozorpeUTe *b
d - aio
1 Envelope; 2) heater; 3) suppressor; 4) first grid; 5) cathode;
63 screen; 7) heater; 8) plate; A) Key.
Electrical Data
Heater voltage or =)' 6.3 v
Heater current 450 ? 25 ma
.Plate voltage (_) 300 v
Suppressor voltage (_) 0 v
Screen voltage (_) 150 v-,
Resistance in cathode circuit for self biasing 160 ohms
Plate current 9.2 ? 1.8 ma
Plate current with first-grid voltage of
-6 v no more than 900 pa
Screen current 2.2 + 1.0 ma
Transconductance 8.5 1 1.5 ma/v
Transconductance at heater voltage of
5.5 v no less than 5.6 ma/v
Cathode emission current no less than 4+0 ma
Suppressor back current* no more than 6.0 ?a
*With suppressor voltage of -2 v.
(Above material published April 1959, PKB, Sheet i)
-508-
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LONG-LIFE SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zhk-Ye
Leakage current between cathode and
heater no more than 20 ?a
Cathode warm-up time no more than 30 sec
Vibration-noise voltage* no more than500 my (eff)
First-grid insulation resistance no less than 10 megohm
Plate insulation resistance no less than 10 megohm
Service life 5000 hours
Service-life criterion:
transconductance no less than 5.6 ma/v
*For plate load resistance of 2 kohm, at vibration frequency of
12-50 cps and 6 g acceleration.
Interelectrode Capacitances
Input 11 ? 2.2 ??f
Output 4.5 ? 0.9 ??f
Transfer no more than 0.015 ??f
Maximum Permissible Operating Data
Maximum heater voltage S or 6.6 v
Minimum heater voltage ( or =) 6.0 v
Maximum plate voltage (_) 330 v
Maximum screen voltage (_) 165 v
Maximum plate power dissipation 2.5 watts
Maximum screen power dissipation 0.35 watt
Maximum voltage between cathode and heater (_) 200 v
Resistance to External Effects
Atmospheric pressure 41 mm Hg
(Above material published April 1959, PKB, Sheet 1)
-509-
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'fl
?T~ ~ 1
Pig ~', _ Y1~" ; b k
r j
i
w x f ? t ?~ ZI t ;
,. a.r ra.
4+ tl+
LONG-LIFE SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zhk-Ye
Average Plate Characteristics
(triode connection: second and third grids connected to plate)
Heater voltage, 6.3 v.
Effiffft-
m1fo
M
+e,
Ej
.~i.T~
,i1f.. . ,?r..
~rli'$I+igttl11,.i1 + 1:Pi '~1'dY=
~4T1~???-+S}`;1PD 4 bafdl Efh {~-a .W~~
17 ++}} } J l xx 1 +''
fill
F4Yd1Y ~12Dlt.2V+i~ilRl~b' !1 ;nj TI
..
MM
i..
Itil
HIT H
ii
I2?
Q
TO>K ,Aia
1 Plate current, ma; 2) plate voltage.. v; 3) first-grid voltage, 0 v;
4) -l v; 5) -2 v; 6) -3 v; 7) -4 v; 8) -5 v; 9) -6 v.
(Above material published April 1959, PKB, G-1)
-510-
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
LONG-LIFE SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh4-Ye
Average Characteristics
Plate; ------- Grid-plate (for screen grid); heater voltage,
6.3 v; screen voltage, 150 v; suppressor voltage, 0 v.
?. 1
,? T01 ar .mac wwu OOCPO,MO
1) Plate current, screen current, ma; 2) plate voltage, v; 3) first-
grid voltage, 0 v; 4+) -0.5 v; 5) -1 v; 6) -1.5 v; 7) -2 v; 8 0 v;
9) -1.5 v; 10) -2 v; 11) -3 v; 12) -2.5 v.
(Above material published April 1959, PKB, G-3)
-511-
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LONG-LIFE SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh1-Ye
Average Characteristics
Plate-grid; ------- grid (for screen grid); heater voltage,
6.3 v; plate voltage, 300 v; suppressor voltage, 0 v.
-5 -4 -3 -2 -1 0
'uriRicehue cerr u neoW.6
1 First-grid voltage, v; 2) plate current, screen current, ma;
3 screen voltage, 300 v; L~ 150 v; 5) 100 v; 6) 200 v; 7) 150 v;
8 l00 v.
(Above material published April 1959, PKB, G-2)
-512-
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LONG-LIFE SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6ZhM-Ye
Average Plate-Grid Characteristic Curve
Heater voltage, 6.3 v; plate voltage, 300 v; screen voltage,
150 v; resistance in cathode circuit, 160 ohms.
0
-140 -120 -100 -80 -60 -40 -20 0
'`arpRace* cen~ru n et .5
1) Suppressor voltage, v; 2) plate current, ma.
(Above material published April 1959, PKB, G-L)
-513-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh14P
Basic function radio-frequency voltage amplification.
Construction glass miniature.
General Data
Cathode - oxide-coated heater-type
Maximum height 65 mm
Maximum diameter 19 mm
Maximum weight 13 grams
Number or pins 7
Dimension drawing - 8P
Connection Diagram for Electrodes and Pins
1 First grid; 2) third grid, screen; 3) heater; 4+) heater; 5) plate;
6) screen; 7) cathode.
Electrical Data
Heater voltage (... or =) 6.3 v
Heater current 300 ? 25 ma
Plate voltage (_) 250 v
Screen voltage (_) 150 v
Resistance in cathode circuit with self biasing 68 ohms
Plate current 11 ? 3.3 ma
Plate current at beginning of curve with first-
grid voltage of -5 v no more than 1000 pa
Screen current 4+.5 ? 1.7 ma
+1.3
Transconductance 5.7-0,9 ma/v
Internal resistance about 0.9 megohm
First-grid back current no more than 0.5 ?a
Leakage current'between cathode and
heater no more than 20 p.a
Service life 500 hours
Service-life criteria:
transconductance no less than 3.8 ma/v
first-grid back current no more than 2 ?a
(Above material published April 1959, PKB, Sheet 1)
-514-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE
6Zh4P
Interelectrode-Capacitances
Input
Output
Transfer
6.3 ??f
6.3 ??f
no more than 0.0035 ??f
Maximum Permissible Operating Data
Maximum heater voltage or
Minimum heater voltage : or
Maximum plate voltage (_)
Maximum screen voltage (_)
Maximum plate power dissipation
Maximum screen power dissipation
Maximum cathode current
Maximum voltage between cathode and heater
Maximum resistance in first-grid circuit
(_)
(Above material published April 1959, PKB, Sheet 1)
-515-
7 v
5.7 v
300 v
150 v
3.5 watts
0.9 watt
20 ma
90 v
0.5 megohm
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE
Average Characteristics
Plate; ------- grid-plate (for screen grid);
permissible plate power dissipation; heater voltage,
voltage, 150 v; suppressor voltage, 0 v.
fl1U AJO X0
Haroas?-ue aso& ,6
6zhkP
maximum
6.3 v; screen
1) Plate current, screen current, ma; 2) plate voltage, v; 3) first-
grid voltage, -1 v; 4+) 0 v4 5) 0.5 v4.6)-1.5 -1.5 v; 7) -2 v; 8) -2.5 v;
9) -3 v; 10).-3.5 v; 11) -4 v; 12) -4.5 v; 13) 0 v; 14) -0.5 v;
15) -1 v; 16) -1.5 v; 17) 2 v; 18) -2.5 v; 19) -3 v; 20) -3.5 v;
21) -4 v; 22) -4.5 v.
(Above material published April 1959, PKB, G-1)
-516-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6ZhkP ?
Average Characteristics
Plate; ------- grid plate (for screen-grid); heater voltage,
6.3 v; screen voltage, 50 v; suppressor voltage, 0 v.
??
~S
..
~?
:
M.
:
.... .
?-
'
(~
;
~!~'
::
i~
t
111
:.
::
:~
?i?
?-
is
~
:'
i
.~:
{?,
:.:?: .:~
?t::
IN
rf, Psi ( ;rJ U.
:t=
....
?
.... ...
_ is .... XT
....:;
rise Hii:
I PL..
t....
0 '1,4t
:}1::i#ti?'~~it*r1., it
IOU
It 1iarv ano~o.b
1) Plate current, screen current, ma; 2) plate voltage, v; 3 first-
grid volta e, o v; 4) -0.25; 5) -0.5; 6) -0.75.v; 7) -1 v; 8 -1.25 v;
9) 0 v; 10) -2.5 v; 11) -.2.5 v; 12) -0.75 v; 13) -1 v.
(Above material published April 1959, PKB, G-3)
-517-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE
Average Plate Characteristics
(triode connection)
Heater voltage, 6.3 v.
6zh4P
w ?W
x Hw ce* a ano .b
1 Plate current, ma; 2) plate volta e, v; 3) first-grid voltage, 0 v;
4) -1 v; 5) -2 v; 6) -3-v; 7) -4 v; 8) -5 v; 9) -6 v; 10) -7 v.
(Above material published April 1959, PKB, G-5)
-518-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh4p
Average Characteristics
Plate; ------- grid-plate (for screen grid); heater voltage,
6.3 v; screen voltage, 100 v; suppressor voltage, 0 v.
1) Plate current, screen current, ma; 2) plate voltage, v; 3 first-
grid voltage, 0 v; 4) -0.5 v; 5) -1 v; 6) -1.5 v; 7) -2 v; 8 -2.5 v;
9) -3 v; 10) 0 v; ll -O.5 v; 12) -1 v; 13) -1.5 v; 14) -2 v; 15) -2.5 v.
(Above material published April 1959, PKB, G-2)
-519-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE
6ZhkP
Average Characteristics
Plate-grid; ------- grid (for screen grid); heater voltage,
6.3 v; plate voltage, 250 v; suppressor voltage, 0 V.
e
I narp ce> w ,b
1 First-grid voltage, v; 2) plate current, screen current, ma;
3 screen voltage, 150 v; k) 100 v; 5) 150 v; 6) 100 v; 7) 50 v;
8 50 v.
(Above material published April 1959, PKB)? G-L)
-520-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh5B
Basic function radio-frequency voltage amplification.
Construction glass subminiature.
General Data
Cathode - oxide-coated heater-type
Maximum height (without leads) 43 mm
Maximum diameter 10.2 mm
Number of leads 7
Lead length no less than 35 mm
Lead diameter 0.3 - 0.4 mm
Maximum weight 4.5 grams
Dimension drawing - 7B
Connection Diagram for Electrodes and Leads
AM04
- cci a aiuyas
d - noaorpcaarca-
4 - noaorpe.areJ-
1 Plate; 2) screen; 3) heater; 4+) heater; 5) suppressor; 6) cathode;
73 Control grid; A) Indicator dot.
Electrical Data
Heater voltage or =) 6.3 v
Heater current 250 ? 25 ma
Plate voltage (_) 120 v
Screen voltage (_) 120 v
Suppressor voltage (_) 0 v
Resistance in cathode circuit for self biasing 100 ohms
Plate current 16 ? 6 ma
Transconductance 10 ? 2.5 ma/v
Transconductance for heater voltage of,
5.7 v no less than 6.3 ma/v
Input resistance at frequency of 50 Mc about 7 kohm
Figure of merit (broad-band factor) about 1 ma/v?p.?f
Equivalent noise resistance about 1 kohm
(Above material published April 1959, PKB,?Sheet 1)
-521
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh5B
First-grid back current no more than 0.3 ?a
First-grid thermionic emission current* no more than 0.2 pa
Leakage current between cathode and
heater** no more than 20 ma
Vibration-noise voltage***. no more than 270 ma (eff)
Service life - 500 hours
Service-life criteria:
Transconductance no less than 6.5 ma/v
first-grid back current no more than 1 pa
*At heater voltage of 7.5 v and first-grid voltage of -2 v.
f*For voltage between cathode and heater of ?100 v.
**For plate-load resistance of 10 kohm at vibration frequency
of-50 cps and 12 g acceleration.
Interelectrode Capacitances*
Input 6 ??f
Output 4 ??f
Transfer no more than 0.05 ??f
Between cathode and heater no more than 7 ??f
*Measured in shield.
Maximum Permissible Operating Data
Maximum heater voltage or
Minimum heater voltage l~ or =
Maximum plate voltage (_)
Maximum screen voltage (_)
Maximum plate power dissipation
Maximum screen power dissipation
Maximum voltage between cathode and heater
Maximum cathode current
Maximum cathode warm-up, time
Maximum resistance in first-grid circuit
Maximum envelope temperature
(=)
6.9 v
5.7 v
150 v
150 v
2.4 watts
0.8 watt
150 v
28 ma
15 sec
1 megohm
1700C
(Above material published April 1959, PKB, Sheet 1)
-522
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VIBRATION-RESISTANT SHARP-CUTOFF 6zh5B-V
RADIO-FREQUENCY PENTODI~
Basic function radio-frequency voltage amplification.
Construction glass subminiature.
General Data
Cathode - oxide-coated heater-type
Maximum height (without leads)
Maximum diameter
Number of leads
Lead length
Lead diameter
Maximum weight
Dimension drawing - 7B
43 mm
10.2 mm
7
no less than 35 mm
0.3 - 0.4 mm
4.5 grams
Connection Diagram for Electrodes &nd Leads
!-Aso*
2- CCTK* ITUpaa
! - noAorperaTe.n
1 no AorpeMMTea-
S - .rTra Tpetb-a
ti - IiaTOA
12345b7 7 - cetaa nepsaw
sHauAromr)I 1aR Afcm~ro,
fl Plate; 2) screen; 3) heater; 4) heater; 5) suppressor; 6) cathode;
control grid; A) Indicator dot.
Electrical Data
Heater voltage (_ or
6.3 v
Heater current
250 ? 25 ma
Plate voltage (_)
120 v
Screen voltage (_)
120 v
Suppressor voltage (_)
0 v
Resistance in cathode circuit for self biasing
100 ohms
Plate current
Screen current
Transconductance
Transconductance for heater voltage of
15+5.5 ma
4+2 ma
10 ? 2.5 ma/v
5.7 v no less than 6.3 ma/v
Input resistance at frequency of 50 Mc* about 7 kohm
*Input resistance determined from formula:
Rvkh=a% ,
where a = 0.27 kohm/m2, X = wavelength, in meters.
Change introduced.
(Above material published April 1959, PKB, Sheet 1)
-523-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
VIBRATION-RESISTANT SHARP-CUTOFF
RADIO-FREQUENCY PENTODE,
6zh5B-V
Figure of merit (broad-band factor) about 1 ma/v???f
Equivalent noise resistance about 1 kohm
First-grid back current no more than 0.2 ?a
First-grid thermionic emission current* no more than 0.2 ?a
Leakage current between cathode and -
heater** no more than 40 ?a
Vibration-noise voltage*** no more than 270 my (eff)
Service life 500 hours
Service-life criteria:
transconductance no less than 6.5 ma/v
variation in transconductance from
initial value' from -40 to +35%
first-grid back current no more than 1 pa
Stable operating time 100 hours
Stability criteria:
transconductance no less than 6.5 ma/v
variation in transconductance from
initial value ?28%
first-grid back current no more than 1 ?a
*For heater voltage of 7.5 v and first-grid voltage of -2 v and plate
and screen voltages of 0 volts.
**For voltage between cathode and heater of ?.250 v.
***For plate load resistance of 10 kohm with 50-cps vibration and
12-g acceleration.
Interelectrode Capacitances*
Input 6 ??f
Output 4 ??f
Transfer no more than 0.05 ??f
Cathode-heater no more than 7.0 if
*Measured within shield.
Maximum Permissible Operating Data
Maximum heater voltage ~__ or 6.9 v
Minimum heater voltage or =) 5.7 v
Maximum plate voltage (_) 150 v
Maximum plate voltage with tube cut off (for
plate current not exceeding 5 ?a) (_) 300 v
Maximum screen voltage (_) 150 v
Maximum screen voltage with tube cut off (for
plate current not exceeding 5 ?a) (_) 300 v
Maximum plate power dissipation 2.6 watts
Maximum screen power dissipation 0.8 watt
Maximum voltage between cathode and heater (_) 150 v
Maximum cathode current 28 ma
(Above material published April 1959, PKB, Sheet 1)
-524-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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INCREASED-RELIABILITY SHARP-CUTOFF
RADIO-FREQUENCY PENTOD$
6zh5B-V
Maximum cathode warm-up time 15 sec
Maximum first-grid-circuit resistance 1 megohm
Maximum envelope temperature 170?C
Resistance to External Effects
Stable operating time at 100?C ambient temperature 98 hours
Maximum envelope temperature over a 100-hour period
at ambient temperature not exceeding 100 C 200?C
Stable operating time at ambient temperature of
200?C 2 hours
Maximum envelope temperature over 2-hour period at
ambient temperature not exceeding 200?C 250?C
Minimum ambient temperature -70?C
Maximum cathode warm-up time at ambient temperature
of -70?C 30 sec
Maximum humitidy at temperature or +500C 98%
Minimum atmospheric pressure 5 mm Hg
Extended vibration:
at acceleration of 6 g 80 hours
at acceleration of 10 g 20 hours
.Suitability criterion for extended vibration:
transconductance no less than 6.5 ma
Variation in plate current for constant
100-g acceleration, from initial value no more than ? 7%
Maximum acceleration, shock (10 shocks
lasting 1 msec each) 500 g
Frequency range over which there are. no mechanical
resonances of the tube structure 20-600 cps
(Above material published April 1959, PKB, Sheet 2)
-525-
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INCREASED-RELIABILITY SHARP-CUTOFF
RADIO-FREQUENCY PENTODE
6zh5B-V
Average Characteristics
Plate; ------- grid-plate (for screen grid); heater voltage,
6.3 v; screen voltage, 120 v.
1) Plate current, screen current, ma.; 2) plate voltage, v; 3 first-
grid voltage, 0 v; 4) -0.5 v; 5)-l v; 6) -1.5 v; 7) -2 v; 8 -2.5 v;
9) -3 v; 10) -3.5 v; 11) -4 v; 12) -4.5 v; 13) -5 v; 14) -1 v; 15) -2 v;
16) -3 v.
(Above material published April 1959, PKB, G-1)
-526-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1 '
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
INCREASED-RELIABILITY SHARP-CUTOFF
RADIO-FREQUENCY PENTODE
6zh5B-V
Average Characteristics
Plate-grid; ------- grid (for screen grid); heater voltage,
6.3 v; screen voltage, 120 v; plate voltage, 120 v.
F
:F
.M
.Ha
?'?~
Hr
t .41
:2:
?
.::.
:::
`IBC
:~
::a
~::
I:
:i.::.:
~
.
Zip??
.:
f.
II 2
1 {IYI.+{
SX~4
I
22~ ('.' Y
,. }}jj~:Ilj
~l k.-i
:IL
I
'
{
2
i
H
,' ..~.
r
te
:
?
;Iii
t
y
t
:
Y
: ~ ,td x ~
t S.t2 :..
1) First-grid voltage, v; 2) plate voltage, screen voltage, ma.
(Above material published April 1959, PKB, G-2)
-527-
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
PENTODE-TYPE RADIO-FREQUENCY BEAM-POWER TETRODE 6Zh5P
Basic function broad-band radio-frequency voltage amplifier.
Construction glass miniature.
General Data
Cathode - oxide-coated
Maximum height
heater-type
57
mm
Maximum diameter
19
mm
Maximum weight
12
grams
Number of pins
7
Dimension drawing - 3P
Connection Diagram for Electrodes and Pins
J - CeTKa nepea.
? - as',co6pa3y .
lame naacTNNM
J - nojorpeeaTea.
4 - nosorpeeaTea,
5 aaol
6 - cenu &Topa$
- K8TOJI
1 First grid; 2) beam-forming plate; 3) heater; 4) heater; 5) plate;
6) screen; 7) cathode.
Heater voltage (_ or =) 6.3 v
Heater current 450 ? 25 ma
Plate voltage (_) 300 v
Screen voltage (_) 150 v
First-grid voltage (_) -2 v
Plate current 9.5 ? 4.5 ma
Plate current for first-grid voltage of
-7 v no more.than 30 ?a
Screen current no more than 3.5 ma
Transconductance 9 + 3 ma/v
Internal resistance no less than 240 kohm
First-grid back current no more than 0.3 pa
Leakage current between cathode and heater no more than 15 pa,
Cathode emission current no less than 4+0 ma
Service life 500 hours
Service-life criteria:
transconductance no less than 4+.8 ma/v
first-grid back current no more than 1 ?a
f-- Change introduced.
(Above material published April 1959, PKB, Sheet 1)
-528-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
PENTODE-TYPE RADIO-FREQUENCY BEAM-POWER TETRODE 6Zh5P
No. 1 No. 2
Heater voltage, v 6.3 6.3
Heater current, amp 0.45 0.45
Plate voltage, v 300 150
Screen voltage, v 150 150
Resistance in cathode circuit with
self biasing, ohms 160 160
Plate current, ma 10 12.5
Screen current, ma 2.5 -
Transconductance, ma/v 9 11
Amplification factor - 40
Internal resistance, kohm 500 3.6
(Above material published April 1959, PKB, Sheet 2)
-529-
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PENTODE-TYPE RADIO-FREQUENCY BEAM-POWER TETRODE
6zh5P
Interelectrode Capacitances
Input 8.5 + 1.7 ??f
Output 2.2 ? 0.5 ??f
Transfer no more than 0.03 ??f
Maximum Permissible Operating Data
Maximum heatervoltage S
Minimum heater voltage l: or
or
Maximum plate voltage (_)
Maximum screen voltage (_)
Maximum plate power dissipation
Maximum screen power dissipation
Maximum voltage between cathode and heater
Maximum first-grid-circuit resistance
Maximum envelope temperature
(_)
Standard Operating Conditions
Broad-Band Amplifier
7 v
5.7 v
300 v
150 v
3.6 watts
0.5 watt
100 v
1 megohm
180?C
Ra = 1 kohm, 1 watt; Rc = 0.5 megohm, 0.25 watt; La = 10 mh; C1 =
0.05 ?f; C2 = 0.05 ?f; C3 = 0.01 ?f; 1) input; 2) output.
~-- Change introduced.
(Above material published April 1959, PKB, Sheet 1)
-530-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
PENTODE-TYPE RADIO-FREQUENCY BEAM-POWER TETRODE 6Zh5P
*****
Average Characteristics
Plate; ------- grid-plate (screen grid);
plate power dissipation; heater voltage, 6.3 v; screen voltage,
150 v.
Ton ate. nO ( -wxj %rir" va
1) Plate current, screen current, ma; 2) plate voltage, v; 3 first-
grid voltage, o v; 4) -0.5 v; 5) -1 v; 6) -1.5 v; 7) -2 vi 8 0 v;
9) -2.5 v; 10) -0.5 v; 11) -1 v; 12) -1.5 v; 13) -2 v; 145 -2.5 v.
(Above material published April 1959, PKB, G-1)
-531-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
PENTODE-TYPE RADIO-FREQUENCY BEAM-POWER TETRODE 6zh5P
Average Pulse Characteristics
Plate; ------- grid-plate (for screen grid); heater voltage,
6.3 v; screen voltage, 150 v; pulse length, 2 p.sec; pulse repetition
rate, 100 cps.
'
t..i:
:
f:
:~
ti?
.1:.
..
L
.
t
I.:?
34
Ith
"J
a:
i..
....
.
~'
?
F:
i2:~
152
1:.2#
'~I:'
a
l7
In.
~
T:
I
tv
+4
11
7 IM 7 r
XXJ 4GC! 6W 8W +oolo tao
2 vp sue wub 6 uw w.6
1) Plate current, pulsed, screen current, pulsed, amp; 2) plate
voltage, pulsed, v; 3) first- rid voltage, pulsed,-100 v; 4) 40 v;
5) 6o v; 6) 100 v; 760 v; 8) 40 v; 9) 20 v; 10) 10 v; 11) 20 v;
12) 10 v; 13) 0 v; 14) 0 v.
(Above material published April 1959, PKB, G-3)
-532-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
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PENTODE-TYPE RADIO-FREQUENCY BEAM-POWER TETRODE 6Zh5P
Average Pulse Grid Characteristics
Heater voltage, 6.3 v; plate voltage, 300 v; pulse length, 2 .Lsec;
pulse repetition rate, 100 cps.
.
.
.:
i:
?
:: .
Vi
:
;wg.:
- -r
~ . .
. ....
......... .... ....
...
..
.
....: i. i
ir :~:= ..i ..
~i
. ...
:i
ce
............:
T
..::
....
.
.
?
?
..
.... :::... Y.::.
...
?.. ?..
to
qy
.
1 First-grid current, pulsed, amp; 2) first-grid voltage, pulsed, v;
3) second-grid voltage, 150 v; 4+) 300 v; 5) 550 v.
(Above material published April 1959, PKB, G-5)
-533-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
PENTODE-TYPE RADIO-FREQUENCY BEAM-POWER TETRODE 6Zh5P
[Left-hand third of this page missing in original manuscript;
indicates doubtful lines]
Average Characteristics?
Plate-grid?; ------- grid (for screen grid)?; heater voltage,
6.3 v; plate voltage, 300 v.
ylv.n.it,i, vn'r.i. ?'~~i~r~..n
1 First-grid voltage, v; 2 plate current, screen current, ma;
3 screen voltage, 200 v; 4 150 v; 5) 100 v; 6) 200 v; 7) 150 v;
8 100 v.
(Above material published April 1959, PKB, G-2)
-534-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
PENTODE-TYPE RADIO-FREQUENCY BEAM-POWER TETRODE 6Zh5P
Average Pulse Characteristics
Plate; ------- grid-plate (for screen grid); heater voltage,
6.3 v; screen voltage, 300 v; pulse length, 2 ?sec; pulse repetition
rate, 100 cps.
i:2i~
:ti
?i2
2~
ij
~
:.:I
2
~I
iii?~
r:
.:
?I
-
-
:::I
2
--
-
.. Y c2: .S.
::--; ..N,4 5 :::.....
dil
-1n iii
i?
: a
:i: :u:f. .;. 7.`_''_?'_'+"'''77 E:i = i' iii r.
1) Plate current, pulsed, screen current, pulsed, amp; 2) first-
grid volts e, pulsed, 100 v; 3) first- rid voltage pulsed, 100 v;
4) 4+0 v; 5) 60 v; 6) 100 v; 7) 20 v; 8 ~ 60 v; 9) 1b v; 10) 40 v;
11) 20 v; 12) 0 v; 13) 10 v; 14+) 0 v.
(Above material published April 1959, PKB, G-k)
-535-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
PENTODE-TYPE RADIO-FREQUENCY BEAM-POWER TETRODE 6Zh5P
Average Pulse Characteristics
(triode connection)
Plate; -------grid-plate; heater voltage, 6.3 v; pulse length,
2 psec; pulse repetition rate, 100 cps.
?
te
:f:
'.' .r
i . f
=~
-
~
-- ? ~:~---z~:
- -:::
:2:..
,
iii
:
:
:
_
.
.
.
.
..
.
.
. ....
1) Plate current, pulsed, screen current, pulsed, amp; 2) plate volt-
a e, pulsed, v; 3) first-grid voltage pulsed, 60 v; ~4) 0 v; 5) 20 v;
6) 10 v; 7) 0 v; 8) 60 v; 9) 40 v; loj 20 v; 11) 10 v.
(Above material published April 1959, PKB, G-6)
-536-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh7
Basic function radio-frequency voltage amplification.
Construction metal.
General Data
Cathode - oxide-coated heater-type
Maximum height 80 mm
Maximum diameter 33 mm
Maximum weight 4+4 grams
Base - octal, Tsl-1-7A
Lead-cap-VK2-2
Dimension drawing - 4M
Connection Diagram for Electrodes and Leads
I - aaaoM
2 - .pzorpcSlTC]b
3 - &MO1
1 - ccTKi Nn~pa~
1 - notorpCUTCab
8 us"A
Cl .epxuna w-
soA-ctT1a
nepsai
1 Envelope; 2 heater; 3) plate; 4) screen; 5) suppressor; 7) heater;
8) cathode; C1) top lead - control grid; A) Key.
Electrical Data
Heater voltage (_ or
Heater current
Plate voltage (_)
Control-grid voltage
Screen voltage (_)
Suppressor voltage
Plate current
(_)
(_)
Plate current with control-grid voltage
of -8 v
Screen current
Transconductance.
Transconductance for heater voltage of
5.7 v
Internal resistance
First-grid back current*
*With resistance in first-grid circuit not
6.3 v
300 ? 25 ma
250 v
-3 v
100 v
0 v
2.1. ? 0 ma [sic]
no more t Ilan 30 ?a
0.6 ? 0.14 ma
1.225 ? 0.225 ma/v
no less than 0.8 ma/v
1.2 megohm
no more than 0.5 ?a
exceeding 0.1 megohm.
(Above material published April 1959, PKB, Sheet 1)
-537-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh7
Leakage current between heater and cathode no more than 20 ?a
Cathode emission current* no less than 4+5 ma
Cathode warm-up time no more than 20 sec
First-grid insulation resistance no less than 20 megohms
Plate insulation resistance no less than 20 megohms
Service life 500 hours
Service-life criteria:
transconductance no less than 0.8 ma/v
first-grid back current** no more then 2 pa
*For plate voltage of 30 v.
**With resistance in first-grid circuit not exceeding 0.1 megohm.
Interelectrode Capacitances
Input 7 ? 1.4 ??f
Output 12 ? 3.6 ??f
Transfer no more than 0.005 ??f
Maximum Permissible Operating Data
Maximum heater voltage S or
Minimum heater voltage l~ or =3
Maximu;n plate voltage (_)
Maximum control-grid voltage (_)
Maximum plate power dissipation
Maximum screen power dissipation
Maximum voltage betweezi cathode and heater (_)
+- Change introduced.
(Above material published April 1959, PKB, Sheet 1)
--b 0
? -538-
7 v
5.7 v
330 v
140v
0.8 watt
0.11 watt
100 v
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE
Average Plate Characteristics
Heater voltage, 6.3 v; screen voltage.,
0 v.
? &
IM hY~',Y~l
6Zh7
100 v; suppressor voltage?
1) Plate current, ma; 2) Plate voltage, v; 3) first-grid voltage,
0 v; 4) -0.5 y j ) -1 v; 6) -1.5 v; 7) -2 v; 8) -2.5 v; 9) -3 v;
10) -3.5 v; 11~ v; 12) -4.5 v; 13) -5 v.
(Above material published April 1959, PKB, G-1)
-539-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE
Average Grid-plate Characteristics
Heater voltage, 6.3 v; screen voltage, 100 v;
age, 0 v.
` ITj
---:i ~ 4567 6 910 11
6zh7
suppressor volt-
N
C"I
1 DX Ctll1A11 OI11hP011,va
1) Screen current, ma; 2) plate voltage, v; 3) first-grid voltage, 0 v;
4) -0.5 v; 5) -1 v; 6) -1.5 v; 7) -2 v; 8) -2.5 v; 9) -3 v; 10) -4 v;
11) -5 v.
(Above material published April 1959, PKB, G-3)
-540-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE
6zh7
Average Characteristics
Plate-grid; ------- grid (for screen grid); heater voltage,
6.3 v; plate voltage, 250 v; suppressor voltage, 0 v.
1 First-grid voltage, v; 2) plate current, screen current, ma;
3 screen voltage, 125 v; 100 v; 5) 75 v; 6) 125 v; 7) 100 v;
8 75 v.
(Above material published April 1959, PKB, G-2)
-541-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh7
Average Plate Characteristics
(triode connection)
Heater voltage, 6.3 v.
q
:t
?'
t- ::
71
i ?-7j:::'17 .j.'? fit, i
:
:
200
2 "revue o1aob.6
1) Plate current, ma; 2) plate voltage, v; 3) 3 v; 4) first-grid
voltage, 0 v; 5) -3 v; 6) -6 v; 7) -9 v; 8) -12 v; 9) -15 v.
(Above material published April 1959, PKB, G-k)
-5142-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE
6zh8
Basic function radio-frequency voltage amplification.
Construction metal.
Cathode - oxide-coated heater-type
Maximum height
Maximum diameter
Maximum weight
Base - octal, Tsl-1-8A
Dimension drawing - 2M
Connection Diagram for Electrodes and Pins
/ - 6aaaow
- 00.OrpC$3TCJI
3 --CQKa WTbI
4 - cema nepfi:ta
s uama
ti - CeTKa 9TOpaa
nO' of pesa:ea-
67 mm
33 mm
42 grams
Kmav ,q
1 Envelope; 2) heater' 3) suppressor; 4) first-grid; 5) cathode;
6) screen; 7) heater; $) plate; A) Key.
Electrical Data
Heater voltage (.r or =) 6.3 v
Heater current 300 ? 25 ma
Plate voltage (_) 250 v
Suppressor voltage (_) 0 v
Screen voltage (_) 100 v
First-grid voltage (_) -3 v
Plate current 3 ? 1 ma
Plate current for first-grid voltage of
-10 v no more than 30 ?a
Screen current 0.8 + 0.4 ma
Transconductance 1.65 0.35 ma/v
Transconductance for heater voltage of no less than o.8 ma/v
v
5.7
Internal resistance about 2 megohms
First-grid back current no more than 0.5 pa
Leakage current between cathode and
heater no more than 20 pa
Cathode emission current no less than 60 ma
Cathode warm-up time no more than 20 sec
First-grid insulation resistance no less than 20 megohm
Plate insulation resistance no less than 20 megohm
(Above material published April 1959, PKB, Sheet 1)
- 543-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE
n 1-J 1:.1 l'4 XR) 41v JW
Kul $ 111l* ACI+NC. 1~1 : l li
Kim of %CMUCNNM LCU 1541 .'1111 21111 :111 .?O
11ep N.11111MACNIIC
w D CN~MSaa,a1sd1~1 0.2 0. IS 0.1 O..5 u.. 0.1.
Coo j: Me aNu*MON N.1 .
r~ 111, au.w . . . log .'61) Soo lul 150 301)
Coo F Mae a Me""
h poA 4R9k Axw 4k3N 0.91 1.00 0..b 1.10 1.0D
~ra was CfTMM
a* I)..wc0. . . . 0.07 0.s7 o,2 0.0: 0`01 0.2
C OR sae a &was r.
ua . 91e 1500 2700 310 100 IOOu
raw
24 1
4CtIM aatu-
nepi f CN OCt. *CIL-
Ar inn (C31.vK* . 0.011 00.3 O.Z.S. 0,03 0.43 0.23
Coapi---sae rterKs
Cr 10A cae.Vrawlero
WA ? 1. MO.w . . . 0.13 0.91 1.30 043 0.91 1.30
6zh8
A) Supply voltage, v; B) output voltage, v; C) amplification factor;
D) alternatin input-signal voltage, v (eff); E plate load resistance
(R1), kohm; F) resistance in-screen circuit (R2), megohms; G) capa-
citance in screen circuit (Cl), ?f; H) resistance in cathode circuit
(R3), ohms; I) capacitance in cathode circuit (C2), ?f; J) inter-
stage coupling capacitance (C3), ?f; K) first-grid leakage resistance
to following 8tage (R4), megohm.
(Above material published April 1959, PKB, Sheet 2)
-544-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh8
Service life
Service-life criteria:
transconductance
first-grid back current
no less than 1.1 ma/v
no more than 2.0 pa
Interelectrode Capacitances
Input
Output
Transfer
6 ? 1.1 ??f
7 ? 1.8 ??f
no more than 0.005 ??f
Maximum Permissible Operating Data
Maximum heater voltage S or
Minimum heater voltage l- or =
Maximum plate voltage (_)
Maximum screen voltage (_)
Maximum plate power dissipation
Maximum screen power dissipation
Maximum voltage between cathode and, heater (_)
6.9 v
5.7 v
330 v
140 v
2.8 watts
0.7 watt
100 v
$tandard Audio-Frequency Voltage-Amplification Conditions
Resistance-Coupled Stage
1) 6Zh8; 2) Uin; 3) Uout?
+- Change introduced.
(Above material published April 1959, PKB, Sheet 1)
-5145-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE
6zh8
Average Characteristics
Plate; ------- grid-plate (for screen grid); heater voltage,
6.3 v; screen voltage, 100 v; suppressor voltage, 0 v.
1) Plate current, screen current, ma; 2) plate voltage, v; 3) first-
grid voltage, 0 v; 4) -1 v; 5) -2 v; 6) -3 v; 7) -1 v; 8) 0 v;
9) -4 v; 10) -2 v; 11) -3 v; 12) -4 v; 13) -5 v; 14.) -6 v.
(Above material published April 1959, PKB, G-1)
-546-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE
Average Plate-Grid Characteristics-
Heater voltage, 6.3 v; plate voltage, 250 v;
100 v; first-grid voltage, -3 v.
- --- _ :r -= -
--------------
- :sue _.a
-p` AT -50 -60 -40 -20 R
c~ernw mce+* .6
1) Suppressor voltage, v; 2) plate current, ma.
(Above material published April 1959,.PKB, G-3)
-5L 7-
6Zh8
screen voltage,
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE
6zh8
Average Characteristics
Plate-grid; ------- grid (for screen grid); heater voltage,
6.3 v; plate voltage, 250 v; suppressor voltage, 0 v.
-pmeKie ce mU n Oi.h
-6 -5 -4 -3 -?
1 First-grid voltage, v; 2 plate current, screen current, ma;
3 screen voltage, 125 v; 14) 100 v; 5) 75 v; 6) 125 v; 7) 100 v;
8 75 v.
(Above material published April 1959, PKB, G-2)
-5148-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE
Average Plate Characteristics
(triode connection)
Heater voltage, 6.3 v.
oHode.mo
6zh8
1) Plate current, ma; 2) plate voltage, v; 3 first-grid voltage, 6 v;
4) 3 v? 5) 0 v; 6) -3 v; 7) -6 v; 8) -9 v; 9) -12 v'; 10) -15 v;
11) -18 v.
(Above material published April 1959, PKB, G-k)
-5k9-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
LONG-LIFE SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh8-Ye
Basic function radio-frequency voltage amplification.
Construction metal.
General Data,
Cathode - oxide-coated heater-type
Maximum height
67 mm
Maximum diameter 33 mm
Maximum weight 37 grams
Space - octal, Tsl-1-8A
Dimension drawing - 2M
Connection Diagram for Electrodes and Pins
I -- 6a.JON
2 - no orpeBJTeJh
3 - reTKX TplT1^
4 - ceTKu nepias
i-KATt11
i - feiKi sTApaw
% - co orpeSaTc.ii
mg .4
1 Envelope; 2) heater; 3) suppressor; 4+) first-grid; 5) cathode;
6) screen grid; 7) heater; 8) plate; A) Key.
Electrical Data
Heater voltage (.r or
Heater current
Plate voltage (_)
Suppressor voltage
Screen voltage (_)
First-grid voltage
Plate current
(_)
(_)
Plate current with first-grid voltage of
-10 v
.01 Screen current
Transconductance
Transconductance for heater voltage of
5.7 v
First-grid back current
Leakage current between cathode and heater
Cathode emission current
Cathode warm-up time
6.3 v
300 ? 25 ma
250 v
0 v
100 v
-3 v
3?0.7ma
no more than 80 ?a
0.8 + 0.3 ma
1.65 ? 0.25 ma/v
no less than 1.1 ma/v
no more than 0.5 ?a
no more than 20 pa
no less than 60 ma
no more than 20 sec
(Above material published April 1959, PKB, Sheet 1)
-550-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
LONG-LIFE SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh8-Ye
Vibration noise voltage*
First-grid insulation resistance
Plate insulation resistance
Service life
Service-life criterion:
transconductance
*For plate load resistance of 10 kohm at
12-50 cps and 6-g acceleration.
no more than 200 my (eff)
no less than 20 megohm
no less than 20 megohm
5000 hours
no less than 1.1 ma/v
vibration frequency or
Interelectrode Capacitances
Input
Output
Transfer
6 ? 1.1 ??f
7? 1.8 ??f
no more than 0.005 ??f
Maximum Permissible Operating Data
Maximum heater voltage
Minimum heater voltage (-- oorr =
Maximum plate voltage (_)
Maximum screen voltage (_)
Maximum plate power dissipation
Maximum screen power dissipation
Maximum voltage between cathode and heater
(_)
Resistance to External Effects
Atmospheric pressure
6.6 v
6.o v
330 v
160 v
2 watts
0.3 watt
200 v
4+1 mm Hg
(Above material published April 1959, PKB, Sheet 1)
-551-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80TOO246AO63400150001-1
LONG-LIFE SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh8-Ye
Average Plate Characteristics
(triode connection: screen and suppressor connected to plate)
Heater voltage, 6.3 v.
'!`
434+
11-
I
45
tj
tl::
4+.I
q
::..
x
l't
iii
+ I t + ..
i.
ILE
r+
j
F+ r-11
3 Wthttt tt Of f t i`t . ..
hif Wt,
lit; llflitlqfmit'"
141M 4' 44+4
R R
`` TON aito Ca, NQ
(Above material published April 1959, PKB, G-1)
-552
1) Plate current, ma; 2) plate voltage, v; 3) first-grid voltage,
0 v; k) -2 v; 5) -4 v; 6) -6 v; 7) -8 v; 8) -10 v; 9) -12 v.
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80TOO246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
LONG-LIFE SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6zh8-Ye
Average Characteristics
Plate-grid; ------- grid (for screen grid); heater voltage,
6.3 v; plate voltage, 250 v; suppressor voltage, 0 v.
M
?
?
?
: :
N
Ni?
H
?
?
N
t-0p.
1
Ira
iMl
M
14
43
?i
:.
j.. ~ ~c.tr ,:: 9
-7 -6 -5 -4 -3
v)J*&w C w" nerodai, 6 .
1 First-grid voltage, v; 2) plate current, screen current, ma;
3 screen voltage, 150 v; 4 125 v; 5) 100 v; 6) 75 v; 7) 150 v;
8 125 v; 9) 100 v; 10) 75 v.
(Above material published April 1959, PKB, G-3)
-553-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
LONG-LIFE SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh8-Ye
Average Characteristics
Plate; ------- grid-plate (for screen grid); heater voltage,
6.3 v; screen voltage, 100 v.
Mot( cemcu 6rrapoa, Uu
1) Plate current, screen current, ma; 2) plate voltage, v; 3) first-
grid voltage, 0 v; 1+) -1 v; 5) -2 v; 6) -3 v; 7) 0 v; 8) -1 v;
9) -14 v; 10) -2 v; 11) -3 v; 12) -4 v; 13) -5 v; 1k) -5 v.
(Above material published April 1959, PKB, G-2)
- 554-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
LONG-LIFE SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh8-Ye
Average Plate-Grid Curve
Heater voltage, 6.3 v; plate voltage, 250 v; screen voltage, 100 v;
first-grid voltage, -3 v.
I
I.?
M7
77
N
R
PM
:
w~
?
-80 -60 -40 -20
rv,v ie w cemcu mpen eu.6
1) Suppressor voltage, v; 2) plate voltage, ma.
A-
(Above material published April 1959, PKB, G-k)
-555-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE
Basic function radio-frequency voltage
band amplifiers.
Construction glass miniature.
General Data
Cathode - oxide-coated heater-type
Maximum height
Maximum diameter
Maximum weight
Number or pins
Dimension drawing - 12P
Connection Diagram for Electrodes and Pins
I - E3T0*
2- cenca sepsis
3 - Xatoa
? - nOIOrpesaTeab
.~ -? oo3orpessTeab
S - re aouaores
7 - aMO;a
8 - ceTU TpCTU.
51 mm
22.5 mm
15 grams
9
1) Cathode; 2) first grid; 3) cathode; 4+) heater; 5) heater; 6) not
connected; 7) plate; $) suppressor, shield; 9) screen.
Electrical Data
Heater voltage (_ or =)
Heater current
Plate voltage (_)
Suppressor voltage
Screen voltage (_)
(_)
Resistance in cathode circuit, self biasing
Plate current
Screen current
Transconductance
Transconductance for heater voltage of
5.7 v
Internal resistance
Equivalent internal noise resistance
Input resistance at frequency of 60 Mc
4-- Change introduced.
6zh9P
amplification in broad-
6.3 v
300 ? 25 ma
150 v
0 v
150 v
80 ohms
15.5 ? 4.5 ma
no more than 4.5 ma
17.5 ? 3.5 ma/v
no less than 12 ma/v
(Above material published April 1959, PKB, Sheet 1)
-556-
0.15 megohm
350 ohms
5 kohm
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh9P
Negative first-grid voltage for plate current
.of 10 pa, no more than 6.5 v
Negative first-grid electron-current cut-
off voltage no more than 1.1 v
First-grid back current* no more than 0.3 p.a
Leakage current between cathode and heater no more than 20 ?a
Service life 500 hours
Service-life criteria:
variation in transconductance no more than ?25%
first-grid back current no more than 1 p.a
*For first-grid voltage of -2 v.
Interelectrode Capacitances
Input
Output
Transfer*
Cathode-heater
8.5 ? 1 ??f
3.1 + 0.5 ??f
no more than 0.03 ??f
no more than 7 ??f
*Measured within shield.
Maximum Permissible Operating Data
Maximum heater voltage S or
Minimum heater voltage l~ or =
Maximum plate voltage (_)
Maximum grid voltage (_)
Maximum negative first-grid voltage (_)
Maximum plate power dissipation
Maximum screen power dissipation
Maximum cathode current
Maximum voltage between cathode and heater
for negative heater potential
for positive heater potential
Maximum voltage (_):*
between first grid and plate
between first grid and screen
Maximum resistance in first-grid circuit
*With tube cut off (plate current no more than 5 ?a).
Resistance to External Effects
Maximum constant acceleration
Maximum acceleration with vibration at frequency*of
50 cps
7 v
5.7 v
250 v
160 v
100 v
3 watts
0.75 watt
35 ma
150 v
100 v
500 v
300 v
1 megohm
100 g
6g
(Above material published April 1959, PKB, Sheet 1)
-557-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh9P
Average Characteristics
Plate; ------- grid-plate (for screen grid); -?-?-?- maximum
permissible plate power dissipation; heater voltage, 6.3 v; screen
voltage, 150 v; suppressor voltage, 0 v.
3) screen current,
1) Plate current, ma; 2) plate voltage, v
ma;
i
8 -2.5 v; 9) first-
4 -0.5 v; 5) -1 v; 6) -1.5 v; 7) -2 v
rid
i
voltage, 0 v; 10) -0.5 v; 11) -1 v; 12) -1.5 v; 13) -2 v; 1.
(Above material published April 1959, PKB, G-1)
-2.5 v.
-558-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh9P
Average Characteristics
Plate-grid; ------- input resistance as a function of first-
grid voltage; heater voltage, 6.3 v; plate voltage, 180 v; screen
voltage, 150 v; suppressor voltage, 0 v; frequency, 210 Mc.
wEMe Caw .6
1) First-grid voltage, v; 2) input resistance, kohm; 3) plate current,
ma.
(Above material published April 1959, PKB, G-3)
-559-
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE
6Z h9P
Average Characteristics
Plate-grid; ------- grid (for screen grid); -.-?-?- trans-
conductance; heater voltage, 6.3 v; plate voltage, 150 v; suppressor
voltage, 0 v.
VOM&W CM4 fie0 w,
1) Transconductance, ma/v 2) first-grid, voltage v; 3) plate current,
screen current, ma; 4screen voltage, 150 v; 5~ 125 vj 6) 100 v;
7) 150 v; 8) 125 v; 9) 100 v; 10) 150 v; 11) 125 v; 12 100 v.
(Above material published April 1959, PKB, G-2)
-560
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LONG-LIFE SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh9P-Ye
Basic function radio-frequency voltage amplification and broad-
band amplifier.
Construction glass miniature.
General Data
?
Cathode - oxide-coated heater-type
Maximum height
51 mm
Maximum diameter
22.5
Maximum weight
15 grams
Number of pins
9
Dimension drawing - 12P
Connection Diagram for Electrodes and Pins
" - Mc no1K ibsei+
- u no.z
B - cetKA TPCTbI
it sKPae
?TKA $1Uplr
1) Cathode; 2) first rid; 3) cathode; 4) heater- 5) heater; 6) not
connected; 7) plate; 8) suppressor and shield; 9~ screen grid.
Electrical Data
Heater voltage (_ or =)? 6.3 v
Heater current 300 ? 15 ma
Plate voltage (_) 150 v
Screen voltage (_) 150 v
Suppressor voltage (_) 0 v
Resistance in cathode circuit, self biasing 80 ohms
Plate current 15 ? 4.5 ma
Screen current no more than 4 ma
Transconductance 18 ? 4 ma/v
Transconductance for heater voltage of
5.7 v no less than 12 ma/v
Amplification factor for triode connection 50
Internal resistance 0.15 megohm
Input resistance at frequency of 60 Mc 5 kohm
Preliminary data.
(Above material published April 1959, PKB, Sheet 1)
-561-
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LONG-LIFE SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh9P-Ye
Negative first-grid voltage for plate current
of 10 ?a no more than 6.5 v
Negative first-grid electron-current cut-
off voltage* no more than 1.1 v
First-grid back current** no more tnan 0.2 ?a
Equivalent internal noise resistance 350 ohms
Leakage current beween cathode and
heater*** no more than 20 ?a
Service life- 5000 hours
Service-life criteria:
transconductance no less than 10 ma/v
first-grid back current** no more than 1.5 ?a
*For heater voltage of 6.3 v and 0 voltage on remaining electrodes.
**For first-grid voltage of -2 v.
***For voltage between cathode and heater of ? 150 v.
Interelectrode Capacitances
Input 8.5 ? 1 ??f
Output 3.35 ? 0.5 I4Lf
Transfer* no more than 0.03 ??f
Cathode-heater no more than 7 ??f
*Measured within shield.
Maximum Permissible Operating Data
Maximum heater voltage or 6.6 v
Minimum heater voltage (_ or =) 6 v
Maximum plate voltage (_) 150 v
Maximum screen voltage (_) 150 v
Maximum plate power dissipation 3 watts
Maximum screen power dissipation 0.75 watt
Maximum voltage between cathode and heater (_):
with heater at negative potential 150 v
with heater at positive potential 100 v
Maximum cathode current 24 ma
Maximum resistance in first-grid circuit:
self biasing 0.5 megohm
fixed bias 0.25 megohm
Preliminary data.
(Above material published April 1959, PKB, Sheet 1)
-562-
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LONG-LIFE SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh9P-Ye
Resistance to External Effects
Maximum constant acceleration 100 g
Maximum acceleration in the presence of vibration
at 50 cps frequency 6 g
Maximum envelope temperature* 11OoC
*In order to decrease envelope temperature, we recommend that a
heat sink be used.
Note: Characteristics the same as for the 6Zh9P.
(Above material published April 1959, PKB, Sheet 2)
-563-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6ZhlOB
Basic function service in special equipment.
Construction glass subminiature.
General Data
Cathode - oxide-coated heater-type
Maximum height (without leads)
Maximum diameter
Number of leads
Lead length
Lead diameter
Maximum weight
Dimension drawing - 7B
43 mm
10.2 mm
7
no less than 35 mm
0.3 - 0.4 mm
4.5 grams
Connection Diagram for Electrodes and Pins
3 - ccTxa 8TUp39 ~' .
4 - nvlorpcsaTe.n. / 12 4Fi 7
1) Plate; 2) suppressor; 3) screen; 4) heater; 5) heater; 6) cathode;
7) first grid; A) indicator dot.
Heater voltage (_ or =)
Heater current
Plate voltage (_)
Screen voltage (_)
Suppressor voltage, (_)
Resistance in cathode circuit, self biasing
Plate current
Transconductance
Transconductance for heater voltage of
5.7 v
Suppressor-grid mutual conductance for
suppressor-grid voltage of -3 v
6.3 v
250 ? 25 ma
120 v
120 v
0 v
100 ohms
10.5+3.5 ma
no more than 9 ma
5+l 4 ma/v
no less than 3.1 ma/v
no less than 0.8 ma/v
(Above material published April 1959, PKB, Sheet 1)
-564-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6ZhlOB
Suppressor-grid mutual conductance with suppressor-
grid voltage of -20 v no more than 25 ma/v
Negative suppressor voltage for plate current of
100 ?a no more than 15 v
First-grid back current no more than 0.4 ?a
First-grid thermionic emission current* no more than 0.4 ?a
Leakage current between cathode and
heater** no more than 20 ?,a
Vibration noise voltage*** no more tnan 270 my (eff)
Service life 500 hours
Service-life criteria:
transconductance no less than 3.1 ma/v
first-grid back current no more than 1 ?a
*For heater voltage of 7.5 v and first-grid voltage of -2 v.
**With voltage between cathode and heater of 100 v.
***For plate load resistance of 10 kohm at vibration frequency of
500 cps and acceleration of 12 g.
Interelectrode Capacitances*
Input
Output
Transfer
Between cathode and heater
*Measured within shield.
6.5 ??f
4.5 ??f
no more than 0.05 ??.f
no more than 7 ??f
Maximum Permissible Operating Data
Maximum heater voltage o
Minimum heater voltage (... orr
Maximum plate voltage (_)
Maximum plate voltage with tube cut off (for plate
current of 5 ?a)(=)
Maximum screen volta e with tube cut off (for plate
current of 5 ?a)(=)
Maximum plate power dissipation
Maximum screen power dissipation
Maximum cathode current
Maximum cathode warm-up time
Maximum voltage between cathode and heater (_)
Maximum resistance in first-grid circuit
Maximum envelope temperature
(Above material published April 1959, PKB, Sheet 1)
-565-
6.9 v
5.7 v
150 v
250 v
250 v
2.1 watts
1.3 watts
28 ma
15 sec
150 v
1 megohm
1700C
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
INCREASED-RELIABILITY SHARP-CUTOFF
RADIO-FREQUENCY PENTODE
Basic function service in special radio equipment.
Construction glass subminiature.
General Data
Cathode - oxide-coated heater-type
Maximum height (without leads)
Maximum diameter
Number of pins
Lead length
Lead diameter
Maximum weight
Dimension drawing - 7B
6zhlOB-V
43 mm
10.2 mm
7
no less than 35 mm
about 0.3-0.4 mm
4.5 grams
Connection Diagram for Electrodes and Leads
/ - 240.1
2- CCTr2 TPC I0.11
.; - CCTK1 ?TOP.Ii
4 - nt-TOrT+cnttea-
f24557
N,Nt? xlrroj WMA'I
5 - noaorpcuTeA-
6 - KaTO]
%- CCTCa nfr8aa
4
fl Plate; 2) suppressor; 3) screen; 4) heater; 5) heater; 6) cathode;
first grid; A) indicator dot.
Electrical Data
Heater voltage (_ or
Plate voltage (_)
Screen voltage (_)
Suppressor voltage (_)
Resistance in cathode circuit, automatic biasing
Heater current
Plate current
Screen current
Transconductance
Transconductance for heater voltage
of 5.7 v
Suppressor-grid mutual conductance for
suppressor voltage of -3 v
(Above material published April 1959, PKB, Sheet 1)
-566-
6.3 v
120 v
120 v
0 v
100 ohms
250 ? 25 ma
10.5 ? 3.5 ma
6+3 ma
5 +1.3 ma/v
than 3.1 ma/v
1.5- 0.7 ma/v
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
INCREASED-RELIABILITY SHARP-CUTOFF
RADIO-FREQUENCY PENTODE
Maximum screen power dissipation--
Maximum voltage between cathode and heater (_)
Maximum cathode warm-up time
Maximum resistance in first-grid circuit
Maximum envelope temperature
Stable operating time at ambient tempevature of
200?C
Maximum envelope temperature over 2-hour period at
ambient temperature of not more than 2000C
Stable operating time at ambient temperature of
100?C
Maximum envelope temperature over 100-hour period
at ambient temperature not exceeding 100?C
Minimum ambient temperature
Maximum cathode warm-up time at ambient temperature
. of -70?C
Minimum atmospheric pressure
Maximum humidity at temperature of 50?C
Plate current variation with constant acceleration
of 10 g no more
Extended vibration:
6-g acceleration
10-g acceleration
Criterion of suitability for extended vibration:
transconductance no'less
Maximum shock acceleration (10 shocks lasting
1 msec each)
6zhlOB-V
1.3 watts
150 v
15 sec
1 megohm
1700C
2 hours.
2500C
98 hours
200?C
-70?C
30 sec
98%mm Hg
t nan ?7%
80 hours
20 hours
than 3.1 ma/v
500 g
(Above material published April 1959, PKB, Sheet 2)
-567-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
INCREASED-RELIABILITY SHARP-CUTOFF 6ZhlOB-V
RADIO-FREQUENCY PENTODE
Suppressor-grid mutual conductance for suppressor
voltage of -20 v no more than 25 p.a/v
Negative suppressor voltage for plate current
of 100 pa no more than 15 v
First-grid back current no more than 0.4 pa
First-grid thermionic emission current* no more than 0.4 p.a
Leakage current between cathode and
heater** no more than 40 p.a
Vibration noise voltage*** no more than 270 my (eff)
Service life -- 500 hours
Service-life criteria:
transconductance no less than 3.1 ma/v
variation in transconductance from
initial value no more than -40%
first-grid back current no more than 1 p.a
Stable operating time 100 hours
Stability criteria:
transconductance no less than 3.1 ma/v
variation in transconductance from
initial value +28%
first-grid back current no more than 1 p.a
*For heater voltage of 7.5 v and first-grid voltage of -2 v.
**For voltage between heater and cathode of ? 230 v.
***For plate load resistance of 10 kohm at vibration frequency of
50-cps and 12 g acceleration.
Interelectrode Capacitances*
Input 6.5 ??f
Output 4.5 ??f
Transfer no more than 0.05 ??f
Cathode-heater no move than 7 ??f
*Measured inside shield.
Maximum Permissible Operating Data
Maximum heater voltage or 6.9 v
Minimum heater voltage _ or = 5.7 v
Maximum plate voltage (_) 150 v
Maximum plate voltage with tube cut off (for plate
current of 5 pa) 300 v
Maximum first-grid voltage (_) 150 v
Maximum screen voltage with tube cut off (for plate
current of 5 ?a) (=) 300 v
Maximum plate power dissipation 2.1 watts
(Above material published April 1959, PKB, Sheet 1)
-568-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
INCREASED-RELIABILITY SHARP-CUTOFF
RADIO-FREQUENCY PENTODI~
6ZhlOB-V
Average Characteristics
Plate; ------- grid-plate (for screen grid); screen voltage,
120 v.
1) plate current, screen current, ma; 2) plate voltage, v; 3) first-
grid voltage, -1.5 v; 4) -2 v; 5) -2.5 v; 6) -1.5 v; 7) -3 v; 8) -2 v;
9) -3.5 v; 10) -2.5 v; 11) -4 v; 12) -3.5 v; 13) -4.5 v; 14) -4 v;
15) -5 v; 16) -5.5 v.
(Above material published April 1959, PKB, G-1)
-569-
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
INCREASED-RELIABILITY SHARP-CUTOFF 6ZhlOB-V
RADIO-FREQUENCY PENTODE
Average Characteristics
Plate-grid; ------- grid (for screen grid); heater voltage,
6.3 v; plate voltage, 120 v, screen voltage, 120 v.
1
Plate current, screen current, ma; 2
suppressor voltage, v;
3
first-grid voltage, -1 v; 4) -1 v; 5)
-2 v; 6) -3 v; 7) -4 v;
8
-2 v; 9) -3 v; 10) -4 v.
.(Above material published April 1959, PKB, G-3)
-570-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
INCREASED-RELIABILITY SHARP-CUTOFF
RADIO-FREQUENCY PENTODE,
6zhlOB-V
Average Characteristics
Plate-grid; ------- grid (for screen grid); heater voltage,
6.3 v; plate voltage, 120 v; screen voltage, 120 v.
R 5 4 3-
I w vmaw cemw r ,6
1) First-grid voltage, v; 2) plate current, screen current, ma.
(Above material published April 1959, PKB, G-2)
-571-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80TOO246AO63400150001-1
DUAL-GRID CONTROL SHARP-CUTOFF
RADIO-FREQUENCY PENTODE,
*****
Basic function radio-frequency voltage
Construction glass miniature.
Cathode - oxide-coated
Maximum height
Maximum diameter
Maximum weight
Number of pins
Dimension drawing - 12P
General
heater-type
Connection Diagram
I - KaTOA
2 - feTKa nepRa^
KaTnl ? .
4 - np.7orpeRaTeA~
- nOAorpesaTej
fs - He no7sAwge"
CCTAd Ipe!'a
M upa"
9- Ce1AJ Rr )pal
51 mm
22.5 mm
15 grams
9
1) Cathode; 2) first grid; 3) cathode;.k) heater 5) heater; 6) not
connected; 7) plate; 8) suppressor and shield; 9S screen grid.
Electrical Data
Heater voltage (_ or =) 6.3 v
Heater current 300 ? 25 ma
Plate voltage (_) 200 v
Suppressor voltage (_) 0 v
Screen voltage (_) 100 v
Resistance in cathode circuit, self biasing 80 ohms
Plate current 6.5 ? 1.5 ma
Plate current with suppressor voltage of
-12 v no more than 50 ?a
Screen current no more than 5.5 ma
First-grid mutual conductance 6.5 1.5 ma/v
First-grid mutual conductance for heater voltage
of 5.7v no less than 5.6 ma/v
Suppressor-grid mutual conductance* no less than 1.5 ma/v
h
m
Internal resistance 0.1 mego
Negative first-grid voltage for plate current
of 10 pa**. no more than 5 v
*For plate voyage of 75 v, screen voltage of 85 v, suppressor
voltage of -1 v, first-grid voltage of 0 v, and resistance in screen
it of 3 kohm
i
.
c
rcu
**For plate voltage of 200 v, screen voltage of 100 v, and suppressor
voltage of 0 v.
+- Change introduced.
(Above material published April 1959, PKB, Sheet 1)
-972-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80TOO246AO63400150001-1
Data
Electrodes and Pins
6ZhlOP
amplification.
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
DUAL-GRID CONTROL SHARP-CUTOFF
RADIO-FREQUENCY PENTODE
6ZhlOP
Negative first-grid electron-current cut-off
voltage no more than 1.1 v
Negative first-grid back current* no more than 0.3 ?a
Leakage current between cathode and
heater**
Service life-
Service-life criteria:
variation in first-grid mutual
conductance
first-grid back current
*For first-grid voltage of -1.5 v..
more than 20 ?a
500 hours
no more than ? 20%
no more than 1 ?a
**For voltage between cathode and heater of ? 150 v.
Interelectrode Capacitances
Input 8.5 ? 10 ??f
Output 3.9 ? 0.5 ?.?f
Transfer* no more than 0.025 ??f
Cathode-heater no more than 7 ??f
*Measured within shield.
Maximum Permissible Operating Data
Maximum heater voltage or
Minimum heater voltage l~ or =
Maximum plate voltage (_)
Maximum screen voltage (_)
Maximum negative first-grid voltage
Maximum plate power dissipation
Maximum screen power dissipation
Maximum cathode current
(_)
Maximum voltage between cathode and heater
with heater at positive potential
with heater at negative potential
Maximum voltage* (_):
between first grid and plate
between first grid and screen
Maximum resistance in first-grid circuit
*With tube cut off (Plate current no more than 5.?a).
Resistance to External Effects
Maximum centrifugal acceleration
Maximum acceleration with vibration at
frequency of 50 cps
Change introduced.
(Above material published April 1959, PKB, Sheet 1)
-573-
7 v
5.7 v
250 v
120 v
100 v
3 watts
0.75 watt
35 ma
100 v
150 v
500 v
300 v
1 megohm
100 g
6g
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
DUAL-GRID CONTROL SHARP-CUTOFF
RADIO-FREQUENCY PENTODE
6ZhlOP
Average Characteristics
Plate; ------- grid-plate (for screen grid); heater voltage,
6.3 v; screen voltage, 100 v; suppressor voltage, 0 v.
1) Plate current, screen current, ma; 2) plate voltage, v; 3) first-
rid voltage, 0. v; 4) 0 v; 5) -0.25 v; 6) -0.5 vi 7) -0.75 v
-1 v; 9) -1.25 v; 10) -1.5 v; 11) -0.25 v; 12j -0.5 v; 13j -0.75 v;
1) -1 v; 15) -1.25 v; 16) -1.5 v; 17) -1.75 v.
(Above material published April 1959, PKB, G-1)
-574-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
DUAL-GRID CONTROL SHARP-CUTOFF
RADIO-FREQUENCY PENTODE
6ZhlOP
Average Characteristics
Plate-grid; ------- grid (for screen grid); heater voltage,
6.3 v; plate voltage, 200 v; screen voltage, 100 v; first-grid
voltage, -0.85 v.
F EM
Ell _j
:
E
-
ff
~ ~
E
a ':2 ^??
r
n
r
4
i~
rj4
SJi:
9
DA
C
1) Plate current, screen current, ma; 2) suppressor voltage, v.
(Above material published April 1959, PKB, G-3)
-575-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
DUAL-GRID CONTROL SHARP-CUTOFF
RADIO-FREQUENCY PENTODE
6ZhlOP
Average Characteristics
Plate-grid; ------- grid (for screen grid); -?-?-?- mutual
conductances; heater voltage, 6.3 v; plate voltage, 200 v; suppressor
voltage, 0 v.
1) First-grid voltage, v; 2) plate current, screen current, ma,
mutual-conductance, ma [sic]; 3 screen voltage, 120 v; 4) 120 v;
5) 100 v; 6) 120 v; 7) 100 v; 8) 80 v; 9) 80 v; 10) 100 v; 11) 80 v.
(Above material published April 1959, PKB, G-2)
-576-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
DUAL-GRID CONTROL SHARP-CUTOFF
RADIO-FREQUENCY PENTODE
6ZhlOP
Average Characteristics
Plate-grid; ------- input resistance as a function of first-
grid voltage; heater voltage, 6.3 v; plate voltage, 200 v; screen
voltage, 120 v; suppressor voltage, 0 v; frequency, 210 Mc.
-2
4 larvameme cerrsu re".5
1) First-grid voltage, v; 2) input resistance, kohm; 3) plate current,
ma.
(Above material published April 1959, PKB, G-4)
-577-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh11P
Basic function voltage amplification for broad-band amplifiers.
Construction. glass miniature.
General Data
Cathode - oxide-coated heater-type
Maximum height
Maximum diameter
Maximum weight
Number of pins
Dimension drawing - 15P
60 mm
22.5 mm
17 grams
9
Connection Diagram for Electrodes and Pins
I - UTO2
2 - ceTna nepsa*
3 -- uuTOa
4-- noiorpeaaTeaw
S -- nOAOi'peuuTeab
A - Ne no 1K.TK)Yen
7 - sNOi
8 - feTxa Tpem a.
srpa"
Q - teTKa /Tupa%
1) Cathode; 2) first grid; 3) cathode; 4+) heater; 5) heater; 6) not
connected; 7) plate; ) suppressor, shield.; 9) screen.
Electrical Data
Heater voltage (_ or 6.3 v
Heater current 440 + 30 ma
Plate voltage (_) 150 v
Screen voltage (=) 150 v
Suppressor voltage H 0 v
Resistance in cathode circuit, self biasing 50 ohms
Plate current 25 ? 7.5 ma
Screen current no more than 7.5 ma
Transconductance 28 + 7 ma/v
Transconductance for heater voltage of no less than 17 ma/v
5.7 v
Internal resistance 34 kohm
Negative first-grid voltage for plate no more than 15 v
current of 10 ?a,
Negative first-grid electron-current no more than 1.5 v
cut-off voltage
Preliminary data.
(Above material published April 1959, PKB, Sheet 1)
-578-
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE
6ZhllP
no more than 0.5 ?a
g
heater** no more than 30 ?a
Service life 2000 hours
Service-life criteria:
transconductance no less than 16.8 ma/v
first-grid back current no more than 1.5 ?a
*For first-grid voltage of -2 v.
**For voltage between heater and cathode of ?150 v.
Interelectrode Capacitances
First-grid back current*
Leaks e current between cathode and
Input
Output
Transfer*
Cathode-heater
First grid-heater*
*Measured within shield.
14 ? 2 ??f
3.5 ? 0.5 ??f
no more than 0.005 ??f
no more than 10 ??f
no more than 0.15 ??f
Maximum Permissible.
Operating Data
Maximum heater voltage or =
Minimum heater voltage (_. or =
Maximum plate voltage (_)
Maximum screen voltage (=)
Maximum plate power dissipation
Maximum screen power dissipation
Maximum cathode current
Maximum voltage between cathode and heater
Maximum resistance in first-grid circuit
(_)
6.6 v
6 v
150 v
150 v
4.9 watts
1.15 watts
It0 ma
100 v
0.3 megohm
Preliminary data.
(Above material published April 1959, PKB, Sheet 1)
-579-
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh2lP
(With Cathode Grid)
Basic function radio-frequency voltage amplification
band amplifiers and generation of nanosecond
pulses.
in broad-
Construction glass miniature.
General
Cathode - oxide-coated
Maximum height
heater-type
60 mm
Maximum diameter
22.5 mm
Maximum weight
15 grams
Number of pins
9
Dimension drawing - 15P
Connection Diagram for Electrodes and Pins
S - NoaorpeaaTta&
- a*Tu*NaTpON?
NMC ala1CTNNY
1-- aSoa
4 notorpr.Irca-
- Tnp1Masr~wa?
coma
1 Screen grid; 2) space-charge limiting plate? 3) plate; 4) heater;
5 heater; 6) cathode grid; 7) control grid; 8~ cathode grid;
9 cathode.
Electrical Data
Heater voltage (_ or =)
6.3 v
+
Heater current
35 ma
350
Plate voltage (_)
150 v
Screen voltage (_)
150 v
Cathode-grid voltage.
(
)
12.6 v
_
Control-grid voltage
-1.1 v
.Plate current
17 ? 4.4 ma
Screen current
5 ma
Cathode-grid current
35 ma
Transconductance
17 + 4.4 ma/v
Internal resistance
60 kohm
Internal resistance at frequency of 200 Mc
0.5 kohm
Equivalent noise resistance.
1 kohm
Broad-band factor
2.5
Control-grid back current
no more than 0.5 ?a
Service life
500 hours
Service-life criterion:
transconductance
no less than 10 ma/v
Preliminary Data.
(Above material published April 1959, PKB, Sheet 1)
-580-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh2lP
(With Cathode Grid)
Interelectrode Capacitances
Input
Output
Transfer
5.9 ? 0.5 ??f
1.9 ? 0.2 ??f
no more than 0.035
Maximum Permissible Operating Data*
Maximum heater voltage or
Minimum heater voltage or =
Maximum plate voltage (_)
Maximum screen voltage (_)
Maximum cathode-grid voltage (_)
Minimum cathode-grid voltage
Maximum plate power dissipation
Maximum screen power dissipation
Maximum cathode-grid power dissipation
Minimum voltage between cathode and heater (_):
with heater at negative potential
with heater at positive potential
Maximum resistance in control-grid circuit
*For continuous operation.
Preliminary data.
(Above material published April 1959, PKB, Sheet 1)
-581-
7 v
5.7 v
200 v
200 v
13.8 v
11.5 v
3 watts
0.9 watt
0.55 watt
150 v
0 v
0.3 megohm
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE
(With Cathode Grid)
6Zh2lP
Average Characteristics
Plate; ------- grid-plate (for screen grid); heater voltage,
6.3 v; cathode-grid voltage, 12.6 v; screen voltage, 150 V.
1) Plate current, screen current,-ma; 2) plate voltage, v; 3) con-
trol-grid voltage, -0.75 v; 4) -1 v? 5) -1.25 v; 6) -1.5 v? 7) -1.75 v;
84 -2 v; 9) -2.25 v; 10) -2.5 v; 11~ -0.75 v; 12) -1 v; 13~ -1.25 v
1) -1.5 v; 15) -1.75 v; 16) -2 v; 17) -2.25 v; 18) -2.5 v.
(Above material published April 1959, PKB, G-1)
-582-
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh21P
(With Cathode Grid)
Average Characteristics
Plate-grid; - ?- ?- grid (for cathode grid) ; - ? ?- ? ?- grid
(for screen grid); ------- mutual conductance; heater voltage,
6.3 v; cathode-grid voltage, 12.6 v.
2: :iii :i .:..? .S C' Q ~~ ?.
N :M ? i
.:;
Itt:
t. v y Y ??
MW T:lt='
t:t :2 `. ?i.
a -4 -3 -2
- w P9aie, ~ordnPy aI owes c wb
1) Cathode-grid current, ma; 2) control-grid voltage, v; 3) plate
voltage and screen volts e, 180 v; 4) 150 v 5) 120 v; 6) 180 v;
7) 150 v; 8) 120 v; 9) 180 v; 10) 150 v; 115 120 v; 12) 18o v;
13) 150 v; 14) 120 v; 15) plate current, screen current, ma, mutual
conductance, ma/v.
(Above material published April 1959, PKB, G-3)
-583-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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SHARP-CUTOFF RADIO-FREQUENCY PENTODE
(With Cathode Grid)
Average Characteristics
Plate-grid; ------- grid (for screen);
6Zh2lP
grid (for
cathode grid); heater voltage, 6.3 v; plate voltage, 150 v; screen
voltage, 150 v.
A VVW4 2 of +uir caer-r41,0
4 6 A .10 f2 w
1) Plate current, screen current, ma; 2) cathode-grid voltage, v;
3 control-grid voltage -0.9 v; 4 cathode-grid current, ma; 5) -1.3 v;
6) -1.1 v; 7) -0.9 v; 8j -1.1 v; 93 -1.3 v;'10) -0.9 v; 11) -1.1 v;
12) -1.3 v.
(Above material published April 1959, PKB, G-2)
-584-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh22P
(With Cathode Grid)
Basic function radio-frequency voltage amplification in broad-
band amplifiers and formation of nanosecond pulses.
Construction glass miniature.
General Data
Cathode - oxide-coated heater-type
Maximum height 70 mm
Maximum diameter 22.5 mm
Maximum weight 20 grams
Number of pins 9
Dimension drawing - 16P
Connection Diagram for Electrodes and Pins
1... pWa csTU
? -- *P0?
? ewe anacruNw
1 Screen grid; 2) space-charge limiting plate?)3) plate; 4) heater;
5 heater; 6) cathode grid; 7) control grid; cathode grid;
9 cathode.
Heater voltage (_ or =)
Electrical Data
6.3 v
500 ? 50 ma
150 v
150 v
12.6 v
-1.2 v
30 ? 7.5 ma
7.5 ma
65 ma
30 ? 7.8 ma/v
65 kohm
0.3 kohm
2.63
0.5 kohm
Heater current
Plate voltage (_)
Screen voltage (_)
Cathode-grid voltage
Control-grid voltage
Plate current
Screen current
Cathode-grid current
Transconductance
Internal resistance
Input resistance
Broad band factor
Equivalent noise resistance
ti control-grid voltage for plate current
e
N%-,6a v
of 10 pa no more than 15 v
Preliminary data.
(Above material published April 1959, PKB, Sheet 1)
-585-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE
(With Cathode Grid)
Negative control-grid electron-current cut-
6Zh22P
off voltage no more than 1.1 v
Control-grid back current no more than 1 ?a
Service life 500 hours
Service-life criterion:
transconductance no less than 18 ma/v
Interelectrode Capacitances
Input 9 ? 0.9 ??f
Output 2.4 ? 0.2 ??f
Transfer no more than 0.05??f
Maximum Permissible Operating Data*
Maximum heater voltage or 7 v
Minimum heater voltage (... or =) 5.7 v
Maximum plate voltage (_) 200 v
Maximum screen voltage (_) 200 v
Maximum cathode-grid voltage (_) 13.8 v
Minimum cathode-grid voltage (( )) 11.5 v
Maximum plate power dissipation 5.5 watts
Ma imum screen power dissipation 1.5 watts
Maximum cathode-grid power dissipation 1 watt
Maximum voltage between cathode and heater, heater 150 v
at negative potential (_)
Maximum resistance in control-grid circuit 0.15 megohm
*For continuous operation.
Preliminary data.
(Above material published April 1959, PKB, Sheet 1)
_586-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
SHARP-CUTOFF RADIO-FREQUENCY PENTODE 6Zh22P
(With Cathode Grid)
Average Characteristics
Plate; ------- grid-plate (for screen grid); heater voltage,
6.3 v; cathode-grid voltage, 12.6 v; screen voltage, 150 V.
1) Plate current, screen current, ma; 2) plate voltage, v; 3) 0 v;
4) -0.25 v; 5 -0.5 v;.6) -0.75 v; 7) control-grid voltage, -1 v;
8) -1.25 v; 93 -1.5 v; 10) -1-75 v; 11 -2 v; 12) -2.25 v; 13) -2.5 v;
1 ;2. 75 v; 15) -3 v; 16) -3.25 v; 173 -3.5 v; 18) -3.75 v' 19) -4 v;
20 v; 21) -0.25 v; 22) -0.5.v; 23) -0.75 v; 24) -1 v; 255 -1.25 v;
26 -1.5 v; 27) -1.75 V.
(Above material published April 1959, PKB, G-1)
- 587-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
SHARP-CUTOFF'RADIO-FREQUENCY PENTODE
(With Cathode Grid)
6Zh22P
Average Characteristics-
Plate-grid; - ? ?- ? ?- grid (for screen grid) ; ------- grid
(for cathode grid); -?-?-?- mutual conductances; heater voltage,
6.3 v; cathode-grid voltage, 12.6 v_
:.I
80
70
60
55
I. :I.
'5l .. 2 Si.. .~? ... :: ?~
till ::i
2: 2::2 :2if ::2i
till II': tlii ?" ::::
lit.
ti
I :2 ...{ . iii ?ii {:i? s iii.
:i2 tit. .a ~ ?'.: ~'
?; ~ ' ~ ? ~ ? 'RAJ i;Y'+'~:. ..
i :?ii Ia a ii ?iii i s 2j t
+i' {.2 {222 :tl i J ? I i! S ~~ t.;{ I?~~
~i~ i'zI .: ? a '
.:: ;: ~~ :ill '. :y i::? . 2 ., r ~g
{ 2 ? .' ; i? ~;i' l.? :I'i 15.. i i '?t? :2 i Ii ?l I.
40 -. - -25 -W -f5 -10 _(5
VW&U u6 cenrcu,6
66
? 1) Cathode-grid current, ma; 2) control-grid voltage, v; 3) plate
current, screen current, ma, mutual conductance, ma/v; 4 plate
voltage and screen voltage, 180 vi 5) 150 v; 618 120 v; 7) 120 v;
8) 150 v; 9) 180 v; 10) 120 v; il5 150 v; 12) 0 v; 13) 180 v;
11+) 150 v; 15) 120 v.
(Above material published April 1959, PKB, G-3)
-588-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Average Characteristics
plate-grid; ------- grid (for screen grid) ; - ?- ?-'- grid
(for cathode grid); Heater voltage, 6.3 v; plate voltage, 150 v;
screen voltage, 150 v.
lfJ
.MM
.4 .
4
NN N
....
2:.
.?.?
?:?2
f~J
?..
. N+
?.4.1.22:
.N?
.?.:
?::2
M.
. M .
Hit.
2ft.
2???
22.2
iN
.S.f
M M
:4..
.. N
?2..
I.~
.. 10
-t6
.. .
eta;
2f2
~$ f 2
I
....
.....:::i:..:#:...::
s??
..f
4 6 d IN rI
lorf-sroe"ue moi-w'+uu Ce1TMU.0
SHARP-CUTOFF RADIO-FREQUENCY PENTODE
(With Cathode Grid)
+~ 9
4-
A)
?11
to
6Zh22P
1) Plate current, screen current, ma; 2) cathode-grid voltage, v;
3) control-grid voltage -1 v; cathode-grid current ma; 5) -1.4 v;
6-1.2 v; 7) -1.2 v; 85 -1 v; 9) -i.4 v; 10) -l.v; 111 -1.2 v;
12) -1.4 v.
(Above material published April 1959, PKB, G-2)
-589-
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
RADIO-FREQUENCY PENTODE WITH TWO SEPARATE PLATES 6Zh23P
Basic function voltage amplification in broad-band amplifiers
with separate output signals.
Construction glass miniature.
General Data
Cathode - oxide-coated heater-type
Maximum height
60 mm
Maximum diameter
22.5 mm
Maximum weight
17 grams
Number of pins
9
Dimension drawing - 15P
Connection Diagram for Electrodes and Pins
Ii &N0:% nepwYN
i - cetKa ti.?tia
*KpaN
a"01 Ntoptln
9 - crt4a ?topar
1 Cathode; 2) first grid; 3) cathode; 4+) heater; 5) heater;
6 first plate; 7) suppressor grid, shield; 8) second plate;
9 screen grid.
Electrical Data
Heater voltage or =)
6.3 v
Heater current.
440 ? 30 ma
150 v
Plate voltages (_)
1
0
Screen voltage
v
5
0 v
Suppressor voltage (_)
Resistance in cathode circuit self biasing
50 ohms
?
Current for each plate
12.5
3.75 ma
Screen current
than %7.5 ma
Transconductance, each plate
14 ? 3.5 ma/v
Transconductance, each plate, for heater
/
8
voltage of 5.7 v
v
.5 ma
than
First-grid voltage for plate currents,
plate connected, of 10 pa
no more than 15 v
Negative first-grid electron-current cut-
1
off voltage
.5 v
no more than
(Above material published April 1959, PKB, Sheet 1)
_590-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
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RADIO-FREQUENCY PENTODE WITH TWO SEPARATE PLATES 6Zh23P
First-grid back current*
Leaks a current between cathode and
no more than 0.5 ?a
g
heater** no more than 30 ?a
Service life 2000 hours
Service-life criteria:
transconductance, each plate no less than 8.4 ma/v
first-grid back current no more than 1.5 pa
*For first-grid voltage of -2 v.
**With voltage between cathode and heater of ? 150 v.
Interelectrode Capacitances
Input 14 + 2 ??f
Output* 3.5 t 0.5 ??f
Transfer**,* no more than 0.07 ??f
Cathode-heater no more than 10 ??f
First grid-heater** no more than 0.15 ??f
*Plates connected together.
**Measured inside shield.
Maximum Permissible Operating Data
Maximum heater voltage or =)
Minimum heater voltage (.. or
Maximum plate voltages
Maximum screen voltage
Maximum plate power dissipation, each plate
Maximum screen power dissipation
Maximum cathode current
Maximum voltage between cathode and heater
Maximum resistance in first-grid circuit
(_)
(Above material published April 1959, PKB, Sheet 1)
-591-
6.6 v
6 v
150 v
150 v
2.45 watts,
1.15 watts
40 ma
100 v
0.3 megohm
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
TRIODE-HEPTODE, COMMON CATHODE 61lp
*****
Basic function frequency conversion.
Construction glass miniature.
General Data
Cathode - oxide-coated heater-type
Maximum height 80 mm
Maximum diameter 22.5 mm
Maximum weight 20 grams
Number of pins 9
Dimension drawing - 19P
Connection Diagram for Electrodes and Pins
J -- CCTKN ITOplf N
tCTPCpT1f rea-
TOO1
2- CcTK1 atp.af
reaTO21
3- KUTO2. CCTK1
. Max rti1TO.Ta
11 ltp1M
- aoiorptaaTta-
3 - 11020rpCUTt la
11402 rCATO;a
7- CcTK1 TpemA
reaTo21
8 - 1102 Tp1102a
9 - CCtI1 Tplroas
1) Second and fourth heptode grids; 2) heptode first grid; 3) cathode
and fifth grid of heptode, shield; 4) heater; 5) heater; 6) heptode
plate; 7) third grid of heptode; 8) triode plate; 9) triode grid.
Electrical Data
Heater voltage (_ or =) 6.3 v
Heater current 300 25 ma
Service life 750 hours
Service-life criteria:
triode transconductance* no less than 1.4 ma/v
heptode conversion transconductance** no less than 0.45 ma/v
Triode Section.
100 v
Plate
voltage
(_)
0 v
Grid
voltage
(_)
Plate
current
***
13.3 ? 4.75 ma
Grid
current
**
200 pa
Transconductance*** 3.7 ma/v
Amplification factor 23.5
**Under dynamic conditions. Grid connected to heptode third grid.
Alternating grid voltage 8.5 v (eff); resistance in grid circuit,
47 kohm.
***For grid voltage of 0 v.
*- Change introduced.
(Above material published April 1959, PKB, Sheet 1)
-592-
*For triode grid voltage of -2 v;
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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TRIODE-HEPTODE, COMMON CATHODE 611P
Maximum triode plate power dissipation 0.8 watt
Maximum heptode plate power dissipation 1.7 watts
Maximum heptode second and fourth grid power
dissipation 1 watt
Maximum triode cathode current 6.5 ma
Maximum heptode cathode current 12.5 ma
Maximum voltage between cathode and heater (_) 100 v
Maximum resistance in heptod.e first-grid circuit 2 megohm
Maximum voltage in heptode third-grid circuit 3 megohm
Maximum resistance in triode grid circuit 0.5 megohm
Standard Operating Conditions
I. Radio-frequency,Conversiari Operation
I .361 A! 263 364
1 H&vpaacewwc prrraaan am-
JtOa. a . . . . 109 170 20' U6
~a . ce. .. U~ 1.1 2 Z4 2
Haupmenne
cero rratou. . GD 100 114 103.
4CoupoTaaewwe u1oNaTa e-
CKOrO caaealtarrali a Won
KITOaa. our . ' .' . . . , 150 150 150 140
CORpOTi*aeaae a peaty Ce-
TOK aTOpO* a wTaepto8
atUTOia. KO.N . . . . . . 12 12 12 'Z^
CORpOTriaaexlle a was ceT-
e
~
ce
47 47 47 .47
crcRTOSa. Krx
eTUa
7 COapoTNaaewae a WON U0-
A& TpIOaa. KO.$ . . . . 1s 13 *5 33
B ToK awou Tpaxxa..aa . . . 2.5 4S s.4 45
9 noCTOIMwas cocTaaaagaa n
TOKa ceTKa TpIO.u...a. 0612 w o 0,24 0,20
10 Too[ auaoxa rewTO,%a.Ad . . 1.5 2.9 3,?S 3.25
ToK CeTOK aropori a reT/ep..
Toil rraTOTa. 4a . . . . 3.3 6.0 7.2 6.7
Z KpyTNSNa apeo6paaoaaawa
renrosa..aa, a . . . . . 0.56 0.725 0.76 0.775
13 fiyTpCNNee CMIpOTaaaewae
rrnTOxa. Mon 0.95 0.9 1 '1
143KaKaaaCNTNOC COUpOTNLIC-
NNe W Y O , KU.N . . . . 6;1 70 75 70
1) Plate supply voltage, v; 2) heptode first-grid voltage, v, minus;
3) heptode second and fourth grid voltages, v; 4) self-biasing re-
sistance in cathode circuit, ohms; 5) resistance- in second and fourth
heptode-grid circuits, kohm; 6) resistance in triode grid circuit
and heptode third-grid circuit, kohm; 7) resistance in triode plate
circuit, kohm; 8) triode plate current, ma; 9) DC component of
triode grid current, ma; 10) heptode plate current, ma; 11) heptode
second- and fourth-grid currents,, ma; 12) heptode conversion trans-
conductance, ma/v; 13) heptode internal resistance, megohm; 14) equiva-
lent noise resistance, kohm.
(Above material published April 1959, PKB, Sheet 2)
-593-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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TRIODE-HEPTODE, COMMON CATHODE 611P
Heptode Section
Plate voltage (_) 250 v
Second- and fourth- rid voltage (_) 100 v
First-grid voltage -2 v
Suppressor voltage )) 0 v
Plate current 7 ma
Plate current* 3.3 - 1.2 ma
Second- and fourth-grid currents 3.5 ma
Second- and fourth-grid currents* 6 f 2 ma
Conversion transconductance* 0.77 ma/v
Conversion transconductance for first-grid voltage
of -28.5 v* no less than 2 ?a/v
Transconductance 2.5 ma/v
Internal resistance* about 0.7 megohm
First-grid back current no more than 0.5 ?a
*Under dynamic conditions. Third grid connected to triode grid.
Alternating triode grid voltage, 8.5 v (eff); resistance in grid
circuit, 147 kohm.
Interelectrode Capacitances
Triode input 2.6 + 0.6 ??f
Triode output 2 ? 0.3 4f
Triode transfer 1 f 0.2 ??f
Heptode input, first grid 5.1 + 1 3 ??f
?
Heptode input, third grid 6.3 1.3
1.3 ??f
Heptode output 7?
Heptode transfer no more than 0.006 ??f
Triode plate-hept.ode plate no more than 0.24 ??f
Triode plate-heptode first grid no more than 0.06 ??f
Heptode first grid-heptode third grid
and triode grid no more than 0.45 ??f
Heptode first grid-triode grid no more than 0.17 ??f
Heptode plate-triode plate no more than 0.1 ??f
Heptode plate-heptode third grid-and
triode plate no more than 0.35 ??f
Maximum Permissible Operating Data
Maximum heater voltage (_ or =) 7 v
Minimum heater voltage or.= 5.7 v
Maximum triode plate voltage (_) 250 v
Maximum heptode plate voltage (=), 1300 v
Maximum second- and fourth grid voltages (_) 300 v
+- Change introduced.
(Above material published April 1959, PKB, Sheet 1)
-594-
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TRIODE-HEPTODE, COMMON CATHODE 611P
II. Radio-Frequency and Intermediate-Frequency Operating Conditions
e3
I tianpoxcN C aNTaaan ..w
loU 170 200 250
a0a. a . .
?
ConpOTHSACHHe a ItenH CCTOr
ssopoil w %eTaeroit ren- Ig 39
Toza. KOX . . . . . . 15 is
'3 CgnpOTHaacHHe aNTOHaT"e?
cKoro cMentCNHN a uenH 200 X10 200
KaTOA2. 04 . . . .
~
i b .
Haaps.ZCNSC nepso
remora. a . . . . >,HNyc 1.1 2 2.3 2
5 HanpaucNae ccTOK vTopO*
^ %eTaepTo9 rcasoaa. a . 60 100 120 102
7.4.5 6.5
Tor anoa renoaa. 4a 3.4 6.2S
7TOK CCTOK rropoA H \eTSCp-
ToH rt Toy..va . 2.2 3$
8 KPSTu a zspaLTep"TAKA. 2.l 2.3
.ra: 6
318
2.4
9 Bur~~p NNee conpornaaenue. o~ 0.6 0.6 0.7
MO.n .........
103Ksuaaae'Taoe coapoliale- 8.8 9.7 If.S
o
$He m7
M
s.. %04 . . . .
o
a
p
11 &OAMW 100C
Alice
1) Plate supply voltage, v; 2) heptode second- and fourth-grid cir-
cuit resistances, kohm; 3) self biasing resistance in cathode cir-
cuit, ohms; 4) heptode first-grid voltage, v, minus;'-5) heptode
second- and fourth-grid voltage, v; 6) heptode plate current, ma;
7) heptode second- and fourth-grid currents, ma; 8) transconductance,
ma/v; 9) internal resistance, megohm; 10) equivalent noise resis-
tance, kohm; 11) input resistance (f = 100 Mc), ohms.
III. UHF Frequency-Conversion Conditions
No. 1
No. 2
Plate power supply voltage, v
250
250
Plate-circuit resistance, kohm
30
.30
Grid-circuit resistance, kohm
30
1000
Grid current, pa
190
5.5
Bias voltage, v
-5.7
-5.5
Alternating grid. voltage, v (eff)
5
Plate current, ma
5
5
Conversion transconductance, ma/v
1.2.
1
Internal resistance, kohm
19
17
Input resistance at frequency of 100 Mc, kohm
5
5
Equivalent noise resistance, kohm
8
3
11
(Above material published April 1959, PKB, Sheet 2)
-595-
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TRIODE-HEPTODE, COMMON CATHODE 61lP
Average Triode Plate Curves
Heater voltage, 6.3 v.
Z:
L2 40 (0
TOR OOt mm*.ro
? 1 Triode plate current, ma; 2) triode plate voltage, v; 3) L4 v;
4) 2 v; 5) grid voltage, 0 v; 6) -2 v; 7) -4 v; 8) -6 v; 9) -8 v;
10) -10 v; 11) - 12 v; 12) -13 v.
(Above material published April 1959, PKB, G-1)
-596-.
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TRIODE-HEPTODE, COMMON CATHODE
611P
Average Triode Curves
Plate-grid; ------- transconductance; heater voltage, 6.3 v;
triode plate voltage, 100 v.
_1 :-ft . -6 . -4
/kvvwa 2 w m0im.6
3
1) Triode transconductance, ma/v 2) triode grid voltage, v; 3) triode
plate current, ma.
(Above material published April 1959, PKB, G-2)
-597-
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TRIODE-HEPTODE, COMMON CATHODE
*****
Average Plate-grid Heptode Curves
611P
Heater voltage, 6.3 v; heptode plate voltage, 250 v; triode
plate voltage, 100 v; third-grid voltage, 0 v.
Y~_YI IA I 1Atl ;ll I
A
I / pia W aiaMngo"mrr?gAt 6
-30 -fir -6 ,
9
1) Heptode first-grid voltage, v; 2) heptode plate current, ma;
3 second- and fourth-grid voltages, 300 v; 4~) 250 v; 5) 200 v;
6) 150 v; 7) 1O0 v; 8) 50 v.
(Above material published April 1959, PKKB, G-3)
-598-
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TRIODE-HEPTODE, COMMON CATHODE 611P
Average Heptode Mutual Conductance Curves as Functions of Heptode
First-Grid Voltage
Heater voltage, 6.3'v; heptode plate voltage, 250 v; third-
grid voltage, 0 v;
I
V
~0 3
0 2
0
0
00
1 s
6
5
4
1) Heptode first-grid voltage, v; 2) heptode mutual conductance, ma/v;
3 second- and fourth-grid voltages, 300 v; 4) 250 v; 5) 200 v;
6) 150 v; 7) 100 v; 8) 50 v.
(Above material published April 1959, PKB0G-5)
-595-
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TRIODE-HEPTODE, COMMON CATHODE
611P
Average Heptode Grid Curves
Heater voltage, 6.3 v; heptode plate voltage, 250 v; heptode
Third-grid voltage, 0 v.
L
P
fit
F
.
3
' /brio #. i.e ae mw nr au xradv s
6
4
3
1) Heptode first-grid voltage, v; 2) second- and fourth-grid currents,
ma; 3) second- and fourth-grid voltages, 300 v; 4) 250 v; 5) 200 v;
6) 150 v; 7) 100 v; 8) 50 v..
(Above material published April 1959, PKB, G-4)
-600-
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TRIODE-HEPTODE, COMMON CATHODE 61lP
*****
Average Dynamic Plate-Grid Heptode.Curves
Heater voltage, 6.3 v; heptode plate voltage, 250 v; triode
plate voltage, 100 v; alternating voltage on heptode third grid and
triode grid, 8.5 v (eff); resistance in heptode third-grid circuit
and triode grid circuit, 47 kohm.
i
, el
J
' ; I
L
'O - 6
-50 -40
-30 -20
-n n'
1 Heptode first-grid voltage, v; 2) heptode plate current, ?a;
3 second- and fourth-grid voltages, 300 v; 4) 250 v; 5) 200 v;
6 150 v; 7) 100 v; 8) 50 v.
. (Above material published April 1959, PKB, G--6)
--601-
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TRIODE-HEPTODE, COMMON CATHODE 61lP
Average Heptode Dynamic Characteristics
Conversion transconductance; ------- grid; -?-?-?- grid
(for second and fourth grids); - ?- ?- Plate-grid; heater voltage,
6.3 v; heptode plate voltage, 250 v; triode plate voltage 100 v;
heptode first-grid voltage, -2 v; resistance in triode grid circuit
and heptode third-grid circuit, 47 kohm.
Emil
tin
.1 il:
'2
2
'
:.
2
.'
.? I.
I
t
2'
t
.
.
i
t
-1
1.
t
n:i
I
T
N
M
?
.
1
11. I
22
:
i:
:
::
:2
.i:
;
tta
..
Itt
u
ii{i Vii
t
t {:i?
...
.
.. ...
..
......
1) Conversion transconductance, ma/v 2) heptode third-grid current
and triode-grid current, ma; 3) alternating voltage on triode grid
and heptode third grid, v (eff); 4) plate current, ma; 5) second-
and fourth-grid currents, ma.
(Above material published April 1959, PKB, G-7)
-602-
jj..
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TRIODE-HEPTODE, COMMON CATHODE 611P
Average Dynamic Conversion-Transconductance Curves as Functions of
ep o e First-Grid Voltage
Heater voltage, 6.3 v; heptode plate voltage, 250 v; triode
plate voltage, 100 v; third-grid voltage, 0 v; alternating voltage
on heptode third grid and triode grid, 8.5 v (eff); resistance in
heptode third-grid circuit and triode grid circuit, 47 kohm.
_
-
f
3
6
6
.IA
~s 0
Napbow Cer w nq*vi N)7. 0
?+
1) Heptode first-grid voltage, v; 2) conversion transconductance,
pa/v; 3) second- and fourth-grid voltage, 300 v; 4) 250 v; 5) 200 v;
6) 150 v; 7) loo v; 8) 50 V.
(Above material published April 1959, PKB, G-3)
_603-
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VIBRATION-RESISTANT TRIODE-HEPTODE
WITH COMMON CATHODE
Maximum Heptode plate power dissipation
Maximum heptode second- and fourth-grid
power dissipations
Maximum heptode cathode current
Maximum voltage between cathode and heater (_)
Maximum resistance in heptode first-grid circuit
Resistance to External Effects
Maximum ambient temperature
Minimum atmospheric pressure
Maximum acceleration in the presence of extended
vibration (up to 100 hours)*
Maximum acceleration for individual shocks
*At frequency of 50 cps.
Standard Conversion Operating Conditions
Triode plate voltage (_)
Alternating voltage on triode grid connected
to heptode third grid
Resistance in triode grid'circuit, grid connected
with third grid of heptode
Triode grid current, grid connected with heptode
thide grid
Heptode plate voltage (_)
Heptode second- and fourth- rid voltage (_)
Heptode first-grid voltage (_)
Heptode plate current
Heptode second- and fourth-grid currents
Conversion transconductance
Conversion transconductance at beginning
of curve*
*With first-grid voltage of -12 v.
61lp-v
1.7 watts
1 watt
12.5 ma
200 v
1 megohm
2000C
5mmHg
6g
500 g
100 v
8.5 v (eff)
47 kohm
200 pa
250 v
100 v
-2 v
3.3 ma
6.0 ma
0.75 ma/v
no less than 5 ?a/v
Preliminary data.
(Above material published April 1959, PKB, Sheet 2
-604-
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE 6KlZh
Basic function radio frequency voltage amplification.
Construction glass, "acorn" type.
General Data
Cathode - oxide-coated heater-type
Maximum height 47.6 mm
Maximum diameter 29.4 mm
Maximum weight 15 grams
Number of pins 7
Dimension drawing - 2Zh
Connection Diagram for Electrodes and Pins
i - noaorpeuTea-
? - terra ITOpas
J - terra TpCTM
1 - no.*orpe.aTeab
A - .ep;spi rTu-
per - anoal
C1- MRap1.a ntTth
per - ceTra
nepsas
1) Heater; 2) screen; 3) suppressor; 4) -heater; 5) cathode; A) top
pin - plate; Cl) lower pin - control grid.
Heater voltage (_ or =)
6.3 v
Heater current
150 ? 10 ma
Plate voltage (_)
250 v
Suppressor voltage (_)
0 v
Screen voltage(_)
100 v
Control-grid voltage (_)
v
Plate current
6.65 - 2.25 ma
Screen current
2.7 + 1.3 ma
Transconductance
Transconductance for heater voltage of
1.85 ? 0.55 ma/v
5.5 v
Transconductance for first-grid voltage
of -35 v
Internal resistance
First-grid back current
no less than 1.1 ma/v
from 2 to 50 pa/v
no less than 0.45 megohm
no more than 1 pa
(Above material published April 1959, PKB, Sheet 1)
-605-
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE 6KlZh
Cathode emission current* no less than 20 ma
First-grid insulation resistance no more than 20 megohm
Plate insulation resistance no less than 20 megohm
Grid-plate** insulation resistance no less than 17 kohm
Service life 250 hours
Service-life criterion:
transconductance no less than 1.2 ma/v
*For plate and grid voltages of 15 v.
**At frequency of 200 Mc with cold cathode.
Interelectrode Capacitances
Input 3 + 1 ??f
Output 3 ? 1 ??f
Transfer no more than 0.009 ??f
Maximum Permissible Operating Data
Maximum heater voltage S or 6.9 v
Minimum heater voltage l~ or =) 5.7 v
Maximum plate voltage (_) 275 v
Maximum screen voltage (_) 100 v
Maximum first-grid voltage (_) -3 v
Maximum plate power dissipation 1.8 watts
Maximum screen power dissipation 0.33 watt
Maximum voltage between cathode and heater (_) 90 v
(Above material published April 1959, PKB, Sheet 1)
-606-
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE 6KlZh
Average Plate Curves
Heater voltage, 6.3 v; first-grid voltage, -3 v.
1) Plate current, ma; 2) plate voltage, v; 3)
4) 100 v; 5) 75 v.
screen voltage, 125 v;
(Above material published April 1959, PKB, G-l)
-607-
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE 6KlZh
Average Characteristics
Plate-grid; ------- grid (for screen grid); - ?- ?- ?- trans-
conductance; heater voltage, 6.3 v; plate voltage, 25.0 v; screen
voltage, 100 v.
c=am - ... .......
= 2 :.
?
t 2 :mot= -
LEI
:
:..
1) Transconductance, ma/v; 2) first-grid voltage, v; 3) plate current,
screen current, ma.
(Above material published April 1959, PKB, G-3)
-608-
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE
6KlZh
Average Characteristics
Plate; ------- grid-plate (for screen grid); heater voltage]
6.3 v; screen voltage, 100 v.
lj?t
4 - *. 4T'_. 1. 01- 1 1. .. N n.i I Hi. -- i T
1~1 Knux..6
N
VV ~_.Jm
Va
TAK ait 7.fl'O Cemra tIT* u.1.2
Q
1 Plate current, screen current, ma; 2 plate voltage, v; 3) 0 v;
4 first-grid voltage -1 v; 5) -2 v; 6) -3 v; 7) 0 v; 8) -4 v;
9 -5 v; 10) -6 v; 115 - 8 v; 12) -10 v; 13) -15 v; 14) -20 v;
15) -3 v.
(Above material published April 1959, PKB, G-2)
-609-
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE 6KlZh
Average Plate-grid Curve
Heater voltage, 6.3 v; plate voltage, 250 v; first-grid voltage,
-3 v; screen voltage, 100 v.
~
a
.
....
.
_
:tom
??f:
2? "._
?-1~.::?'
Y H
Y _
?
.
om
: t
2
S:i
T:
t
3 _.
...~
Y t
-itz 1% :4
-gyp -50
Nur &~ue COW n 7wL6
1) Suppressor voltage, v; 2) plate current, ma.
(Above material published April 1959, PKB, G-4)
-610-
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE
6K1P
Basic Function radio-frequency voltage amplification.
Construction glass miniature.
General Data
Cathode - oxide-coated heater-type
Maximum height
Maximum diameter
Maximum weight
Number of pins
Dimension drawing - 1P
Connection Diagram for Electrodes and Pins
I a'f~A ncp. s S-aso1
`It
:'- -J~o.i ?~ 6- cell(. attopaa
.f - nworpc"T"b 7 - tca l u; u cena
46 mm
19 mm
12 grams
7
fl First grid; 2) cathode; 3) heater; 4+) heater; 5) plate; 6) screen;
cathode and suppressor.
Electrical Data
Heater=voltage (_ or
Heater_ current
Plate-' Voltage (_)
Screen voltage (=)
First-grid voltage
Plate current
Screen current
Transconductance
(_)
Transconductance for heater voltage of
5.7 v
Transconductance for first-grid voltage
of - 35 v .
Internal resistance
First-grid back current
Leakage current between cathode and heater
Cathode emission current
Cathode warm-up time
6.,3 v
150 ?'1110 ma
250 v
100k-t
-3 v
6.65 ? 2.25 ma
2.7 + 1.3 ma
1.85 ? 0.55 ma/v
no less than 1.1 ma/v
from 2 to 50 ?a/v
no less than 0.45 megohm
no more than 1 ?a
no more than 20 pa
no less than 20 ma
no more than 20 sec
(Above material published April 1959, PKB, Sheet 1)
-611-
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE 6K1P
First-grid insulation resistance no less than 20 megohm
Plate insulation resistance no less than 20 megohm
Insulation resistance between plate
and cathode* no less than 22 kohm
Service life 500 hours
Service-life criterion:
transconductance no less than 1.2 ma/v
*At frequency of 20 Mc, with cold cathode.
Interelectrode Capacitances
Input 3.4 ? 0.7 ??f
Output 3.0 ? 0.9 ??f
Transfer no more than 0.01 -??f
Maximum Permissible Operating Data
Maximum heater voltage or 6.9 v
Minimum heater voltage _. or = 5.7 v
Maximum plate voltage (_) 275 v
Maximum screen voltage (_) 110 v
Maximum plate power dissipation 1.8 watts
Maximum screen power dissipation 0.33 watt
Maximum voltage between cathode and heater (_) 90 v
Note: Characteristics the same as for 6KlZh (G-1, G-2, G-3).
(Above material published April 1959, PKB, Sheet 1)
-612-
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE 6K3
Basic function radio-frequency voltage amplification.
Construction metal.
Cathode - oxide-coated heater-type
Maximum height 67 mm
Maximum diameter 33 mm
Maximum weight 45 grams
Base - octal, Tsl-1-8A
Dimension drawing - 1M
Connection Diagram for Electrodes and Pins
I - 6saaoM
2- noaorpceaTra-
3 - CeTtta TpeTbu
4 - ecl" nepus
S - uroa
6- ccTYa stopsa
7 - aoaorpeesaTcab
1 Envelope- 2) heater 3) suppressor; 4) first grid; 5) cathode;
6) screen 75 heater; 85 plate; A) Key.
Heater voltage (_ or
Heater current
Plate voltage (_)
Suppressor voltage (_)
Screen voltage.(=)
First-grid voltage (_)
Plate current
Screen current
Transconductance
Transconductance for heater. voltage of
5.7 v
Transconductance for first-grid voltage
of -35 v
First-grid back current
Cathode emission current*
*For plate and grid voltages of 30 v.
6.3 v
300 + 25 ma
250 v
O v
100 v
v
9.25 - 2.75 ma
2.5 + 0.9 ma
2.0 ? 0.4 ma/v
no less than 1.3 ma/v
from 1 to 30 p.a/v
no more than 1.0 pa
no less than 65 ma
(Above material published April 1959, PKB, Sheet 1)
-613-
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE 6K3
Leakage current between cathode and heater no more than 20 pa
Cathode warm-up time * no more than 20 sec
First-grid insulation resistance no less than 20 megohm
Plate insulation resistance no less than 20 megohm
Service life 500 hours
Service-life criterion:
transconductance no less than 1.3 ma/v
Interelectrode Capacitances
Input 6 1.2 ??f
Output 7 ? 1.8 ??f
Transfer no more than 0.003 ??f
Maximum Permissible Operating Data
Maximum heater voltage or 6.9 v
Minimum heater voltage (- or = 5.7 v
Maximum plate voltage (_) 330 v
Maximum screen voltage (_) 140 v
Maximum plate power dissipation 4.4 watts
Maximum screen power dissipation 0.44 watt
Maximum voltage between cathode and heater (_) 100 v
(Above material published April 1959, PKB, Sheet 1)
-614-
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE
6K3
Average Characteristics
Plate; ------- grid-plate (for screen grid); heater voltage,
6.3 v; screen. voltage, 100 v; suppressor voltage, 0 v.
c (a c,
1 o fro- :F,7ra 07
1) Plate current, screen current, ma; 2) plate voltage, v; 3) 0 v;
4~ first-grid voltage, -.3 v; 5) O V; 6) -6 v; 7) -3 v; 8) -9 v;
9 -15 v; 10) -9 v; 11) -12 v; 12) -6 v; 13) -12 v.
(Above material published April 1959, PKB, G-1)
-615-
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE 6K3
Average Plate-Current Curve
Heater voltage, 6.3 v; plate voltage, 250 v; screen voltage,
100 v; first-grid voltage, -3 v.
?
?
+
.
.
-
.
.
j?
~?
:?
~.
?~
::::
Vii.
~
::'
?^!~
y ~
??.
2::2
:L
~::t:
?'~
1:.
-W -4
0 -2
0 1
1) Suppressor voltage, v; 2) plate current, ma.
(Above material published April 1959, PKB, G-3)
-616-
tf-ue OlNi-"
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
REMOTE-CUTOFF RADIO-FREQUENCY PENTODE
6K3
Average Characteristics
Plate-grid; ------- grid (for screen grid); heater voltage,
6.3 v; plate voltage, 250 v; suppressor voltage, 0 v.
48 4; -30 -chi -18 -q
I +"w cerrv e4.5
1) First-grid voltage, v; 2) plate current, screen current, ma;
3 screen voltage, 150 v;.4) 100 v; 5) 150 v; 6) 50 v; 7) 100 v;
8) 50 v.
(Above material published April 1959, PKB, G-2)
-617-
-
is :.::
P_trr:'~
.... ::? ?..;
"
. 91
. :_~.
I F.
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
REMOTE-CUTOFF RADIO-FREQUENCY PENTODE
Average Plate Curves
(triode connection: suppressor connected to plate)
Heater voltage, 6.3 v.
1bR aMoOn. ra
1
6K3
1) Plate current, ma; 2) plate voltage, v; 3) first-grid voltage, 12 v;
~+) 6 v; 5) 0 v; 6) -6 v; 7) -12 v; 8) -18 v; 9) -214 v; 10) -30 v;
11) -36 v; 12) -142 v.
(Above material published April 1959, PKB, G-k)
-618-
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE 6K1+
Basic function radio-frequency voltage amplification.
Construction metal
General Data
Cathode - oxide-coated heater-type
Maximum height 67 mm
Maximum diameter 33 mm
Maximum weight 45 grams
Base - octal, Tsl-1-8A
Dimension drawing - 1M
Connection Diagram for Electrodes and Pins
nou0rpewreat.
3 - K rn x CCTKa
TPCThI
1 - cerKa aepssn
1 Envelope; 2) heater; 3) cathode and suppressor; 4) first grid;
5 cathode; 6) screen; 7) heater; 8) plate; A) Key.
Heater voltage (_ or -)
Heater current
Plate voltage (_)
Screen voltage (_)
First-grid voltage
Plate current
Screen current
Transconductance
(_ )
Transconductance for heater voltage of
5.7 v
Transconductance for first-grid voltage
of -14 v
First-grid back current*
*For first-grid voltage of -1.5 v.
6.3 v
300 ? 25 ma
250 v
125 v
-1 v
11.8 + 2.8 ma
4.4 + 1.5 ma
4.7 ? 0.9 ma/v
no less than 3 ma/v
from 10 to 100 p.a/v
no more than 1.0 pa
(Above material published April 1959, PKB, Sheet 1)
-619-
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE 6KL
Leakage current between cathode and heater no more than 20 ?a
Cathode warm-up time no more than 20 sec
First-grid insulation resistance no less than 20 megohm
Plate insulation resistance no less than 20 megohm
Service life no less than 500 hours
Service-life criterion:
transconductance no less than 3.1 ma/v
Interelectrode Capacitances
Input 8.5 ? 1.7 ??f
Output 7 ? 2.1 ??f
Transfer no more than 0.005 ??f
Maximum Permissible Operating Data
Maximum heater voltage or 6.9 v
Minimum heater voltage or = 5.7 v
Maximum plate voltage (_) 330 v
Maximum screen voltage (_) 220 v
Maximum plate power dissipation 3.3 watts
Maximum screen power dissipation 0.7 watt
Maximum voltage between cathode and heater (_) 100 v
Standard Operating Conditions
as Class A Amplifier
No. 1 No. 2
Plate voltage (_), v 100 250
First-grid voltage (_), v -1 -1
First-grid. voltage for. transconductance
of 0.04 ma/v, v -11.5 -14
Screen voltage, (_) v 100 125
Plate current, ma 8.2 11.8
Screen current, ma 3.2 4.4
Transconductance, ma/v 4.1 4.7
Internal resistance, megohm 0.25 0.9
(Above material published April 1959, PKB, Sheet 1)
-620-
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE 6K4
Average Plate Curves
Heater voltage, 6.3 v; first-grid voltage, -1 v.
Q 00
1 Plate current, ma; 2) plate voltage, v; 3) screen voltage, 125 v;
4 100 v; 5) 75 v; 6) 50 v.
(Above material published April 1959, PKB, G-1)
-621-
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE
6K1
Average Characteristics
Plate-grid; ------- grid (for screen grid); heater voltage,
6.3 v; plate voltage, 250 v; suppressor voltage, 0 v.
:te:{mss::
~
~i.~~ =_ I. ~:i_.._2~?:}:::c~--fit:
~
~
.1
.#-
_
:
~
M
-5 -4 -3 -2'
? 1 First-grid voltage, v; 2 plate current, screen current, ma;
3 screen voltage, 125 v; k 100 v; 5) 75 v; 6) 125 v; 7) 50 v;
8 100 v; 9) 75 v; 10) 50 v.
(Above material published April 1959, PKB, G-3)
-622-
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
REMOTE-CUTOFF RADIO-FREQUENCY PENTODE
6Kk
Average Characteristics
Plate; ------- grid-plate (for screen grid); heater voltage,
6.3 v; screen voltage, 100 v; suppressor voltage, 0 v.
...2
FT-
:
}:
t J
.
-It _
:f
. a
:
t::
:~;:
i
.t?:i
"
i
_?
`
i
C:j 0940. ?ar
TOP 'GM A:r;r i fi7IYW.A7
1) Plate current, screen current, ma; 2) plate voltage, v; 3 first-
grid voltage, 0 v; 4+) -0.5 v; 5 -1 v; 6) -1.5 v; 7) -2 v; 83 0 v;
9) -1 v; 10) -3 v; 11) -2 v; 123 -5 v; 13) -7 v.
? (Above material published April 1959, PKB, G-2)
-623-
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
REMOTE-C UI'OFF RADIO-FREQUENCY PENTODE 6K4
Average Curves for Mutual Conductance as a Function of First-Grid
Voltage
Heater voltage, 6.3 v; plate voltage 250 v.
- -
----
----
----
7:-
t 77:
M
t
#
/
{
- :4
t
:
;,~ ~f mar=
1) First-grid voltage, v; 2) mutual conductance, ma/v; 3) screen
voltage, 125 v; 4) 100 v; 5) 75 v; 6) 50 v.
(Above material published April 1959, PKB, G-4)
-624-
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
REMOTE-CUTOFF RADIO-FREQUENCY PENTODE. 6K4P
*****
Basic function radio-frequency voltage amplification.
Construction glass miniature.
General Data
Cathode - oxide-coated heater-type
Maximum height 62 mm
Maximum diameter 19 mm
Maximum weight 13 grams
Number of pins 7
Dimension drawing - 7P
Connection'Diagram for Electrodes and Pins
6.3 v
300 ? 25 ma
250 v
100 v
68 ohms
10 + 3.3 ma
/ - crT-a ntp1?331
:' - cCTKa TFh"t?t.
9KPAN M KaTOA
3 - HOaorpcIaTtAA
? - NOinrpeRaTC.11.
S - aHO2
6 - cCTKa PTOPa1
7 - KaTol. 9KPaN M
CCTK1 TPCT-I
1) First grid; 2) suppressor, shield, and cathode; 3) heater;
4) heater; 5) plate; 6) screen; 7) cathode, shield, and suppressor.
Heater voltage (.. or =)
Heater current
Plate voltage (_)
Screen voltage (_)
Resistance in cathode circuit, self biasing
Plate current
Screen current
Transconductance
Transconductance for heater voltage of
5.7 v
Transconductance for first-grid voltage
of -20 v
Internal resistance
Input resistance*
First-grid back current
I
3.7 ? 1.3 ma
4.4 ? 0.9 ma/v no less than 3 ma/v
40 p.a/v
no less than 0.45 megohm
19 kohm
no more than 0.5 ?a
*For first-grid voltage of -1 v and frequency of 60 Mc.
+- Change introduced.
(Above material published April 1959, PKB, Sheet 1)
-625-
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE 6K4P
Leakage current between cathode and heater no more than 20 pa
Service life 1000 hours
Service-life criterion:
transconductance no less than 2.8 ma/v
Interelectrode Capacitances
Input 6.4 ??f
Output 6.7 ??f
Transfer no more than 0.0045 ??f
Maximum Permissible Operating Data
Maximum heater voltage or
Minimum heater voltage (... or =
Maximum plate voltage (_)
Maximum screen voltage (_)
Maximum voltage between cathode and heater
Maximum cathode current
Maximum plate power dissipation
Maximum screen power dissipation
Maximum resistance in first-grid circuit
+- Change introduced.
(Above material published April 1959, PKB, Sheet i)
-626-
7 v
5.7 v
300 v
125 v
90 v
20 ma
3 watts
0.6 watt
0.5 megohm
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Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
REMOTE-CUTOFF RADIO-FREQUENCY PENTODE 6KkP
Average Plate Curves
Heater voltage, 6.3 v; first-grid voltage, -1 v.
1c &j*.jV
1 Plate current, ma; 2) plate voltage, v; 3) screen voltage, 125 v;
4) 100 v; 5) 75 v; 6) 50 v.
(Above material published April 1959, PKB, G-1)
-627-
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REMOTE-CONTROL RADIO-FREQUENCY PENTODE 6KkP
Average Plate-Grid Curves
Heater voltage, 6.3 v; plate voltage, 250 v.
I _,,...-- ....7- -w-- -
1) First-grid voltage, v; 2 plate current, ma; 3) second-grid voltage,
125 v; 4) 100 v; 5) 75 v; 6) 50 v.
(Above material published April 1959, PKB,' G-3)
-628-
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE 6K4P
Average Plate Curves
(triode connection: screen connected to plate)
Heater voltage, 6.3 v.
sQ _Z7
TAt ow b. un
1) Plate current, ma; 2) [illegible in original]; 3) first-grid
voltage, 0 v; 4) -0.5 v; 5) -1 v; 6) -1.5 v; 7) -2.5 v; 8) -5 v.
(Above material published April 1959, PKB; G-5)
-629-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE 6KkP
Average Characteristics
Plate; ------- grid-plate (for- screen grid); heater voltage,
6.3 v; screen voltage, 100 v.
s Qr R Cc
'brc oatb,nr oemw drnppq~.
via-
1) First-grid voltage, -0.5 v; 2) -1 v; 3) -1.5 v; -2.5 v; 5) -0.5 v;
6) -1 v; 7) -1.5 v; 8) -5 v; 9) -2.5 v; 10) -5 v; 11) plate current,
screen current, ma; 12) plate voltage, v.
(Above material published April 1959, PKB, G-2)
-630-
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE 6K4P
Average Curves Showing Dependence of Mutual Conductance Upon First-
Grid Voltage
Heater voltage, 6.3 v; plate voltage, 250 v.
EFM
Mr
.~O
M
?
'yam
?~
?
~:t?
?y~y
~'H 'A
'
-..
-
}
bpVtMe MW ag-4 D
1) First-grid voltage, v; 2 mutual conductance,
voltage, 125 v; 4) 100 v; 5 75 v; 6) 50 v.
(Above material published April 1959, PKB, G-l)
-631-
ma/v; 3) screen
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INCREASED-RELIABILITY REMOTE-CUTOFF
RADIO-FREQUENCY PENTODE
6K4P-v
Basic function radio-frequency voltage amplification.
Construction glass miniature.
General Data
Cathode - oxide-coated heater-type
Maximum height 62 mm
Maximum diameter 19 mm
Maximum weight 13 grams
Number of pins 7
Dimension drawing - 7P
Connection Diagram for Electrodes and Pins
I - ceTrs sspssu
? - cerxa TpeT14L
"rpm K&T03
3- .o rpess
s-a o
6-cetss ROpu
7 - ntaui. sagpa.
arra TP""
1) Control arid; 2) suppressor, shield, cathode; 3) heater;
5 plate; 6 screen; 7) cathode, screen, suppressor.
4)
heater;
Heater voltage (p.. or =)
6.3 v
Heater current
300 ? 25 ma
Plate voltage (_)
250 v
Screen voltage (=)
100 v
Resistance in cathode circuit, self biasing
68 ohms
Plate current
10 + 3 ma
Screen current
no more than .5 ma
Transconductance
Transconductance for heater voltage of
4.4 0.9 ma/v
5.7 v
Transconductance for first-grid voltage
of -20 v
Internal resistance
Input resistance at frequency of 60 Mc
Equivalent internal noise resistance
no less than 3 ma/v
40 pa/v
0.85 megohm
5.0 kohm
3.5 kohm
+-Change introduced.
(Above material published April 1959, PKB, Sheet 1)
-632--
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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INCREASED-RELIABILITY REMOTE-CUTOFF
RADIO-FREQUENCY PENTODE
6K4P-V
First-grid back current no more than 0.5 ?a
Leakage current between cathode and heater . 20 ?a
Service life 500 hours
Service-life criteria:
transconductance no less than 2.8 ma/v
first-grid back current no more than 2 ?a
Interelectrode Capacitances
Input
Output
Transfer
Maximum Permissible Operating Data
Maximum heater voltage
Minimum heater voltage . oor r
=
Maximum plate voltage (_)
Maximum screen voltage (_)
Maximum plate voltage with tube cut off (plate
current not exceeding 5 ?a)
Maximum screen voltage with tube cut off (plate
current no exceeding 5 ?a)
Maximum plate power dissipation
Maximum screen power dissipation
Maximum cathode current
Maximum voltage between cathode and heater
Minimum resistance in cathode circuit, self biasing
Maximum resistance in first-grid circuit
Maximum envelope temperature
Minimum atmospheric pressure
Maximum centrifugal acceleration
Maximum acceleration:*
6 ??f
6.3 ??f
0.0035 ??f
7 v
5.7 v
300 v
125 v
340 v
310 v
3 watts
0.6 watt
20 ma
90 v
68 ohms
0.5 megohm
120?C
20 mm Hg
100 g
for brief period of vibration ? 10 g
for extended period of vibration (up to 100 hours) 6 g
Maximum acceleration, single shocks (up to 10 shocks) 500 g
*At frequency of 50 cps.
Note: Characteristics of tube the same as for the 6K4P.
(Above material published April 1959, PKB, Sheet 1)
-633-
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LONG-LIFE REMOTE-CUTOFF RADIO-FREQUENCY PENTODE 6K4P-Ye
Basic function radio-frequency voltage amplification.
Construction glass miniature.
General Data
Cathode - oxide-coated
Maximum height
heater-type
62 mm
Maximum diameter
19 mm
Number of pins
7
Dimension drawing - 7P
Connection Diagram for Electrodes and Pins
t - cents sepses
2 ssros. cern
rpens ^ WPM
3 - sosorpesareab
f - aaaorpeareas
5- asoa
6 - cersa sropas
7- swat cents
1 First grid; 2) cathode, suppressor, and shield; 3) heater;
4) heater; 5) plate; 6) screen; 7) cathode, suppressor, and shield.
Electrical Data
Heater voltage (_ or =)
Heater current
Plate voltage (_)
Screen voltage (_)
Resistance in plate circuit, automatic bias [sic]
Plate current
Screen current
Transconductance
Transconductance for heater voltage of
5.7 v
Transconductance for first-grid voltage
of -20 v
Internal resistance
Input resistance at frequency of 60 Mc
Equivalent internal noise resistance
6.3 v
300 ? 15 ma
250 v
100 v
68 ohms
10 ? 3 ma
no more than 5.5 ma
4.4 ? 0.9 ma/v
no less than 3 ma/v
40 ?a/v
no less than 0.45 megohm
5 kohm
3.5 kohm
(Above material published April 1959, PKB, Sheet 1)
-634-
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LONG-LIFE REMOTE-CUTOFF RADIO-FREQUENCY PENTODE 6K4P-Ye
Negative first-grid voltage with electrode current
in the grid circuit of 0.5 ?a no more than 1.5 v
First-grid back current* no more than 0.3 ?a
Cathode-heater insulation resistance no less than 10 megohm
First-grid- (cathode + heater) insulation
resistance** no less than 500 megohm
First-grid- (screen + plate) insulation
resistance*** no less than 500 megohm
Service life no less than 5000 hours
Service-life criteria:
transconductance no less than 2.8 ma/v
first-grid back current no more than 1 ?a
variation in transconductance from +35%
initial value no more than -30%
*At frequency of 60 Mc.
**For first-grid voltage of 100 v. Plate and screen not connected.
***For first-grid voltage of 200 v. Cathode and heater not connected.
Interelectrode Capacitances
Input 6.4 ? 0.8 ??f
Output 6.7 ? 1.1 ??f
Transfer no more than 0.0035 ??f
Between cathode and heater 5.5 ??f
Maximum Permissible Operating Data
Maximum heater voltage or = * 6.6 v
Minimum heater voltage ... or = * 6 v
Maximum plate voltage (_) 300 v
Maximum screen voltage 125 v
Maximum plate power dissipation 3 watts
Maximum screen power dissipation 0.6 watt
Maximum cathode current 20 ma
Maximum voltage between cathode and heater 90 v
Maximum resistance in first-grid circuit 0.5 megohm
Maximum cathode warm-up time 30 sec
Maximum envelope temperature 1kO?C
*With tube in service for 500-hour period, the maximum permissible
values for these constants are the same for the 6KkP.
(Above material published April 1959, PKB, Sheet 1)
-635-
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LONG-LIFE REMOTE-CUTOFF RADIO-FREQUENCY PENTODE 6K4P-Ye
*****
Maximum envelope temperature with tube in service
for 500-hour period 1600C
Resistance to External Effects
Minimum atmospheric pressure 20 mm Hg
Maximum centrifugal acceleration 100 g
Maximum acceleration:
for brief-duration vibration 10 g
for extended vibration (up to 100 hours) 6 g
Maximum acceleration, single shocks (up to 10 shocks) 500 g
Note: Characteristics of tube the same as for the 6KkP..
(Above material published April 1959, PKB, Sheet 1)
-636-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
REMOTE-CUTOFF RADIO-FREQUENCY PENTODE .617
Basic function radio-frequency voltage amplification.
Construction metal.
General Data
Cathode - oxide-coated heater-type
Maximum height 80 mm
Maximum diameter 33 mm
Maximum weight 44 grams
Base - octal, Type Tsl-1-7A
Working position - any
Connection Diagram for Electrodes and Pins
J - 6aaaor
2- ooiorpeaarc I
S - cei=a Tpes-s
7 - iwaol paarea-
8 - Knox
Cs- scps=i w-
904 - C Ttci
WP"s
1 Envelope; 2) heater; 3) plate; 4) screen; 5) suppressor;
7 heater; 8) cathode; Cl) top lead - control grid; A) Key.
Heater voltage (... or =)
Heater current
Plate voltage (_)
Suppressor voltage (_)
Screen voltage (_)
First-grid voltage (_)
Plate current
Screen current
Transconductance
Transconductance for heater voltage of
6.3 v
300 ? 25 ma
250 v
0 v
100 v
- v
7 2.1 ma
1.65 ? 0.75 ma
1.45 ? 0.25 ma/v
5.7 v no less than 1 ma/v
Transconductance for first-grid voltage of
- 35 v
Internal resistance
15.5 ? 14.5 pa/v
1 megohm
(Above material published April 1959, PKB, Sheet 1)
-637-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE .6K7
First-grid back current* no more than 1 ?a
Cathode emission current** no less than 45 ma
Leakage current between cathode and heater no more than 20 ?a
Cathode warm-up time 15 sec
First-grid insulation resistance no less than 20 megohm
Plate insulation resistance no less than 20 megohm
Service life 500 hours
Service-life criteria:
transconductance no less than 0.95 ma/v
first-grid back current* no more than 2 pa
*For resistance in first-grid circuit of no more than 0.1 megohm.
**With 30 volts on plate, first-grid, screen, suppressor.
Interelectrode Capacitances
Input 7 ? 1.2 ??f
Output 12 ? 3 ??f
Transfer no more than 0.005 ??f
Maximum Permissible Operating Data
Maximum heater voltage or 7 v
Minimum heater voltage S l: or = 5.7 v
Maximum plate voltage (_) 330 v
Maximum screen voltage (_) 140 v
Maximum plate power dissipation 3 watts
Maximum screen power dissipation 0.4 watt
Maximum voltage between cathode and heater (_) 100 v
F- Change introduced.
(Above material published April 1959, PKB, Sheet 1)
-638-
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE
6K7
Average Plate Curves
Heater voltage, 6.3 v; screen voltage, 100 v; suppressor voltage,,
0 v.
243
1) Plate current, ma; 2) plate voltage, v; 3) -1 v; k) - 2 v; 5) -3 v;
6 -4 v; 7) -5 v; 8) -6 v; 9) -7 v; 10) -9 v; 11) -12 v; 12) -15 v;
13) -18 v; 1k) -21 v.
? (Above material published April 1959, PKB, G-1)
_639
1 3
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REMOTE-CUTOFF RADIO-FREQUENCY PENTODE
6K7
Average Characteristics
Plate-grid; ------- grid (for screen grid); heater voltage,
6.3 v; plate voltage, 250 v; suppressor voltage, 0 v.
ff .::THE
'Y? ~1. y ~N.N 1A
1) First-grid voltage, v; 2) plate current, screen current, ma;
3 screen voltage, 125 v;.4) 100 v; 5) 75 v; 6) 125 v; 7) 100 v;
8) 75 v.
(Above material published April 1959, PKB, G-3)
-640-
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246A063400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
REMOTE-CUTOFF RADIO-FREQUENCY PENTODE 6K7
Average Plate Curves
(triode connection: screen and suppressor connected to plate)
Heater voltage, 6.3 v.
1) Plate current, ma; 2) plate voltage, v; 3) first-grid voltage, 0.6 v;
4) -6 v; 5) -12 v4 6) -18 v; 7) -24 v; 8) -30 v; 9) -36 v; 10) -42 v;
11) -48 v; 12) -54 v; 13) -60 v.
(Above material published April 1959, PKB, G-5)
-641- 50X1-HUM
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
REMOTE- CUTOFF RADIO-FREQUENCY PENTODE
Average Grid-Plate Curves
r Ce WW a-ngoatf. w
10 )
6K7 50X1-HUM
1) Screen current, ma; 2 plate voltage, v; 3) first-grid voltage,
0 v; 4+) -1 v? 5) -2 v; 6) -3 v; 74) -4v; v; 8) -5 v; 9) -6 v; 10) -7 v;
11) -9 v; 12~ -12 v; 13) -15 v; 14) -18 v.
(Above material published April 1959, PKB, G-2)
-642- 50X1-HUM
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
0 LUFiI_ I I
REMOTE-CUTOFF RADIO-FREQUENCY PENTODE 6K7
Average Curves for Mutual Conductance as a Function of First-Grid
o 17 age
Heater voltage, 6.3 v; plate voltage, 250 v; suppressor volgage,
0 v.
W
W
A
IJ
d
?
-20
1) First-grid voltage, v; 2) mutual conductance, ma/v;3) screen
voltage, 125 v; 4) 100 v; 5) 75 v.
(Above material published April 1959, PKB, G-L)
-643- 50X1-HUM
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1
Declassified in Part - Sanitized Copy Approved for Release 2011/12/08: CIA-RDP80T00246AO63400150001-1