SCIENTIFIC ABSTRACT SITNIKOV, L.S. - SITNIKOV, S.N.

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CIA-RDP86-00513R001550910015-4
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S
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December 31, 1967
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SCIENTIFIC ABSTRACT
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ACCESSION NR: AP5008392 mode of operation and component characteristics, (2) Dynamic features of the stable states (such as frequency of harmonic oscillations, du.ration or phase of a periodic pulse train) do not depend on the multistable elemexi.t but-Father on the external master sources and, hence, are independent of circuit parameters inla fairly wide range, (3) The availability of the various dynamic stable-state 'features not only permits their use for presentation of numb3ra but also opens up the possibility for developing a special logic for every feature. Orig. art. has: IS figures and 8 formulas. ASSOCIATION: none SUBbUTTED: o9jun64 ENCL:_, 60 SUE, CODE:. EC NO REF SOY: 004 OTHER: LCard 2/2 "Y' 4'V L 51371-6 ZWP(k)/EM(h)/EWT (d)/EWT(l)/E~ ------ - GR (V) M ACCESSION HR: AT5011628 UR/0000/64/000/000/0549/0553 ~AMOR: Sitnikov, L. S.;,Utyakov,, L. L. g4l J0. TITLE: Nultifrec ency triggers with magnetizable cores [U SOURCE: Vsesoyu:snoye soveshchantye po magnitnym elementam wnomatlki~ tele-w -khanikf. imneritellnov i vvchLalitellnoy tekhniki. Lv MY. Ragnitnyye ele-, zmerit n menty avtomatiki, telemekhaniki, i Y i vychis y tekhniki (Magnetic elements of automatic controls remote control, measurement and computer ---Kiev aukova dumka, 1964, 549-553- engineering); trudy soveshchaniya. ncy triggerg magnetic core trigger, discontinuous TOPIC TAGS: multifreque automation -M ABSTRACT: Difforent stable states in systems with several atable states differ 'Ai from one another by the associated value of some physical parametero One such -~-A! parameter may be the frequency (each stable state being characterized by another frequen(-.-~r) and,'H. S. Neyman emphasized earlier (Radiotekhnika, 1960, no, 10) the -uture possible uses in discontinuous automation of the shifts from one possible i"'llf-excitatiort condition to another. In the presLnt work sponsored by Doctor' 0-1! rechnical Stiences V. P. Sigorskiy, the authors discuss several approaches to Card L 51371-65 CESSION HR AT5011628 AC the constructiOTt of multi-frequency triggers, One version. cixaprising a variable frequency generator of sinusoidal oscillations is shown in Ftg. 1 of the En- closure and has nf-1 stable states. They also investigated square-wave starting, Another, three-icransistor unit shown in Fig. 2 of the Enclooure haa*6 stable states with the following properties: I= 2 5. 8, 11, 15 and 19 m&.and f= 0.85, 1.2, 1.5, 1.75, 1.9 and 2.0 megacycles/sec., respectively, for states No, I through No. 6. A further increase in the number of stable itates may be attain-ad by utilizing high-quality delay lines with low frequencies snd low phase distor' tione, Orige exte has: :,6 formulas, 5-figures; and 3 tablen$~. ASSOCIATION: none Co. trcIGN~f ff ICLt fly RO Corti 3/4 L, 54551-65 EWT(d)/EED-2/FAP(-I-)------Fq-4/Pg-4/Pk-4- -1.JP - -R 1 - M- -n i 6 UR 02 k~J(M~/&665/0065 S i R C C O AP501552 / U AUTHORSt SigorakJy, V, P 8itn1kov ~)Mkoyjj Le L* TITLE: Pulse couriter modulo n., Class 42i No. 170205, SOURCE: Byulleten' izobreteniy i tovarnykh znakovs no. 8, 1965, 65 TOPIC TAGS: pulse, coun4r ABSTRACT: This Author Certificate presents a pulse counter modalo n containing a multistabla unit; and a shift circuit# To simplffy the device (using a phase- pulse multiatable unit with two inputs), the counter input of each multistable imit is connected to the output. of a coincidence circuit (see Fig. 1 on'the Enclo- sme). The clock pulse inputs of all the units are connected to a clock pulse generator. The tuiit outputs are connected to the first input cf the coincidence whose second inputs are connected to the inputs of a reference Multi- 1:ircuit , i;table unit. The coincidence circuit outputs are also connected to the input for resetting the unit to its initial statG. The first multistable unit has a scaling~ coefficient equal to n. and that of the following units is equal to n + 1. Orig* art. has: 1 diagram, ASSOCIATION.-. Ins-bitut, matematiki., So AN SSSR (Institute of Mathematics,SO AN SSSR) .''- :" Card I/Jrx L 54549-65 EWT(d)/EED_2 P(j). Pq_ -4/Pg--4/Pk-4- IMC). ACCESSION NRj AP5015527 TE/0286/65/CbO/008/0066/0066 AUTHORS: Piskunav, S. V.j Sigorskiy. V. P,j SitnikoV, L*,S#; Utyukovy Le L-0 TITLE: SIMMtntor with pulse width representation of numberse Class 1+2t 110. 170208 SOURCE: Byulletant izobretenly i toyarnykh znakov,, no. 8# 1965v 66 TOPIC TAGS. sunaator ABSTRACT: Thin Author Certificate presents a summator with pulse width repre- nentation of numloers, containing imiltistable time-pulise units. One unit is con- nected through an 110R11 eircuit#*which is connected to the transfer output of the, preceding summator digit, to the first inputs of a second "OR" circuit and an "AND" circuit whose second inputs are connected to the other unit (see Fig, 1 Oil the sum modulo ton the Enclosurei. There are also a third "OR" circuit forming and a transfer pulse shaper sections To utilize high stability chronotrons, a shaping circuit is connected between the second and third "OR" circuits. The supply inputs of the multistable time-pulse units are connected to sources of forward and additional reference voltages, Orig, art. hasi 1 diagram. SO I0 Institut matematiU, SO AH SSSR (Institute of Mathematics., SO AN SSRfAT S 7,\ L 54545-65 ;SVT(d)/EED-2/EWP(I) P971/pq. AcumsioN NRs AP5015531 I P(c) BR/GG UR/0286/65/000/008/W67/0067 iAUTHoRst Vishnevskly, A. P.; Koyfmanp A, Aoj Sigor kiyp Ve Poj Sitnikovy Le �,,I: ftjMkov, L* L. 2 TITLEt Decimal storage summator.1 we 42s, Moo 17021 SOUMB: Byu3-leteng izobreteniY i tovarnykh anakovs, no. 81 1965., 67 TOPIG TAGSI sumnator, storage device ABSrRAGT: This Author Certificate presents a decimal storage summator containing triggerss switches3 and "OR" circuits. To construct the summator of a phase-pulse- unit and to decrease its cost,, an "OR" circuit (connected to a source of zero reference pulses arid to a pulse number detector) is connected to the dynamic input of the phase-pulse unit. The zero trigger input of a phase-to-pulse number converter is connected to the second term pulse source and the one input is con- nected to the zero reference pulse source. The trigger output is connected to one of the inputs of a' coincidence circuit.. vhose other two irqnIts are connected to the sum;mtion solution output and to a source of clock pulses shifted by half of the high cycles The coincidence cirouit output is connected to one of the inputs of an nOR" circuits whose other two inputs are connected to the clock pulse source Card 1/2 L 54545-65 ACCESSION NRs AP5015531 and to the output of the transfer circuit of the preceding digit. The output of the "OR" circuit is connected to the counter input of the phase-pulse unit, whose first output is 00nnected to the zero input of the transfer circuit trigger, The one input of the trigger is connected to a source of pulses shifted by hau the period of the clock pulses relative to the zero reference pulses. The trigger output is connected to the first input of an "AND".circuit, whose second input i's connected to the second output of the phase-pulse unit. ASSOCIATIONt Inactitut matematWj SO AN SSSR (Institute of Hathamticag So AN !ILSM suBmTED: iomwr64 EUCLt~ 00 BUD GODSt DPO EC NO REF SOVs 000 OTHERs OW Card L 51508-65 ._jWT(d)/F JJP(a iACCESSION MR: AP5015339 UR/0286/65/000/009/0092/0092 681.142 65 iAUTHOR: Vishnevskiy, A. P.; Sigorskiy, V. P.;,Sitn--*kov, L. S.; Utyakov, L. L. !TITLE: A method for' recording and retrieval of information in an N-valued memory. jClass 42, No. 170755 ISOURCE: Byulletent izobreteniy i tovarnykhznakov, no. 9, 1965, 9? !TOPIC TAGS: information stor.age, computer memory, frequency spectrum, line '.spectrum 1ABSTRACT: This Author's Certificate introduces a method for recording and retrievai makes usei iof information in an N-valued matrix type spectrotron memor)r. Themethod lof selected spectrotrons only. In the initial state, the first phase supply voltagd !Is fedto all vertical busses. This voltage has a frequency line spectrum with 1harmonic phases wbich are shifted by 1200 with respect to the cormsponding bar- Imonics of the second phase supply spectrum. The second phase voltage is fed to all! horizontal busses. During information recording, a supply spectrum with harmonic t Card 1/2 L 51508-65 ACCESSION NR: APS015339 phases shifted by 1200 with respect to the supply spectra fed to all busses in the initial state is first fed to the horizontal and vertical busses which intersect at the chosen memol-y E!lement. The horizontal bus is then disconnected from the supply voltage, and the first or third phase of the i-harmonic with frequency which corresponds to the voltage information being recorded is fed to the vertical bus. After the spectrotron circuit is tuned to this frequence, there -is a transition to the initial state. The spectrotron then remains tuned to the i-harmonic frequency. In reading out the'information from the spectrotron, a voltage with an am frequency spectrum is first fed to the horizontal bus which is connected to the chosen spec- trotron, and the vertical bus is connected to the readout amplifier. The output circuits of the readout amplifier are tuned to the upper side frequencies' of the am .4 spectrum. The device is then returned to the initial state. ASSOCIATION: none SUBMITTED: 14Jan63 ENCL: 00 SUB CODE. DP, NO REF SOV: 000 OTHER: 000 Ca;d 2/2 L 51-414-65 -------- Z4T,(d)/EM-2/_V4P_(1)__.__Pq 4/P~,_-4/Pk,-,4.. IJP(c) B13/GG ' - - 6 4/0064 ACCESSION NR: AP5015523 UR/0286/65/000/008/0 0 681.14 .V. P.; Utyakov, L. Lv i AIJTHOR: Boyko, A. N.; Sitnikov, L. S.; Sigorsk~ZL ~ i THLE: An adder. Class 42, No. 170202 SOURCE: Byulleten' izobreteniy I tovarnykh znakov, no. 8, 1965, 64 dd l i A S i i rcu T : er, computer G c, c t, a og ABSTRACT: This Author's Certificate introduces an adder which contains a chrono- pulse shift logic circuits, flip-flops "AND" or "OR" logical elements. The, .device is designee.. for improving the reliability of adders with pulse-time number ,representation. The first logical shift circuit is connected to the chronotron ,where the first addend is stored and to the first input of the second logical shift ;Circuit, The first input of the first logical shift circuit is connected to a _~7 ;source which supplies a sequence of short.trigger pulses. The second input of the ~first logical shilt circuit Is connected to 'the carry output for the preceding !digit. The necond input of the second logical shift circuit is connected to the chre-notron where the first addend is stored, while the outpit of this circuit is 1/4 Card 51414,45 ';ACCESSION NR: AP5015523 connected to the first input of the third logical shift circuit. The second input I of .-he third logical. shift circuit is connected to the chro-notron where the second addend is stornd, the output of the third circuit is connected to the unit input of~, the first flit)-flop for storage of the sum, and the neutral input of thie circuit is connected to the source of short trigger pulses. The chronotrons for storage of the. first and second addends are connected to the first and second inputs of the "OR" gate respectively. The output of the "OR" gate is connected to the first input of the first "AND" gate. The second input of the IIAND" gate is connected to a source of short pulses which are shifted with respect to the pedestal pulse se- quence by an interval which corresponds to some number greater than the base of the number system minus 1 and less than the base of the number system. The output of the first "AND" irate is connected to the unit input of the first flip-flop. The. ' neutral input of this flip-flop is connected to a source of pulses which are shift by half a period. The flip-flop output is connected to the first inp-...t of the "AND" gate which forms the carry. The second input of this gate is connected to a~ source of unit duration pulses.. Thephase of these pulses coincides witk,the phase of the pedestal pulse sequence, ASSOCIATION: Institut matematiki SO AN SSSR (Institute ff Mathematics S0 AN SSSR) , , Card 2/4 L 51414-65 ;ACCESSION M AP5015523 I SUBMITTED: 23Dec63 ENCL. ~01 SUB CODE: DP i NO REF SOV., '000 OTHER: 000':, P- .4 Card 3/4 . . . . . . . . . . . . . . . . . . . .- - - - - iACCESSIO1,11 NR: APS015523 ERCCOSURE: -01 Fig. I . 1--logical shift e- irci tit; 2--short trigger ce; 3--carry for pivvious pulse sequen -digital place; 4--chronotron where the first 4ddend is stored; 5_~. input for the first addend; 6-,,-logical shift circuit-, 7--chronotron where the second:addend.is stored; 8--input for the second addenda; 9--logical shift ciri- cuit; 10--sum flip-flop; 11--logicai "OR" gate; 12-- V e of pulses which are logical "AND" gate; 13--sequeni. . ifted with respect-to the pedestal pulses by an in- terial greater,than R-1 and le3s than R. where R is the bise of the number system; 14--flip-flop,, 15-- -n t -al sta pulses for retux o the initi te which are . shifted-by half a period with ~vespect to the pedestal. pulses; 16-11ANDII gate; 17--pulse of unit duration 'N C1 'rC ard 4/4 I., 'o -65 L 60367 ---- --- ACCESSION DR; AP501C)OP74 UR/d!86/65 661142.642.9 AUTHORS., Sitnikov. L. S. L. L. TITLE: Scaligg circuits Class No. 172130 42 SOSM Byulleten' izobreteniy i tovarnykh znakov no. 12p 19651 102 5~ :TOPIC TAGS.- scaling circuit ABSTRACT: This Author Certificate presents a scaling c4:rcuit containing iriggei's coincidence circuits "OR" cJxcuits phase-pulse multi&:able units,, a cadence pulse source., and a trigger pulse source. To simpliily -the device.and to increase'. t thro a delay:circui t its reliability,, the cadence pulse source is connected ugh the first in-put of a coincidence circuit whose second input is comectad -to a -trigger (see Fig. I on the Enclosure). The one input of the trigger is cbnnected~, to the trigger pulse source,, and its zero input is convected1o the counter input. of the scaling.eircuit which-is connected through a shiper to the coincidmice The cadence pulse generator is connectcd to all-th6 first inputs-, circuit input. of the "OR" circuits which are connected to the inputs of the phase-pulse unitSd!.-,, The second input of the first "OR"'circuit of any following unit In connected to -scaling coeffic se~mpulse unit'dr the inputs of the preceding., The ient i)f the pha Crdj& L_~-66 EWT(d)JEE9_2 1ACCESSION NR: APS022018 i UR/1)286/65/000/014/0087/0088 Zakirzyanov, Z. Sh.; Sitnikov, L. S.; Utyakov, L. L. TITLE: A pulse repetition frequency divider. Class 42, No. 4-14 30- 173032 ~,SOURCE: Byulleten' izobreteniy i tovarnykh znakov, no. 14, 1965, 87-88 TOPIC TAGS: pulse recurrence, pulse position modulation, fre uency divider Vi'' ABSTRACT: This Author's Certificate introduces a pulse repetition frequency divider which contains multistable pulse-position elements. The device is designed for giv;, ing frequency division coefficients as high as desired and output pulse repetition frequencies as low as desired with a rather simple circuit and unified division Istages. The input to each pulse-position element is connected through a two-input OR gate to the input of the preceding pulse-position element and to the input of the ;external pulse source. The input to the first pulse-position element is connected ito the external pulse source. The outputs from the first and second elements are *nnected to the inputs of the first coincidence gate. The output fTom the first 'coincidence gate and that from the third pulse-position element are connected to the 'inputs of the second coincidence gate. The output from the k-th coincidence gate and Card 1/3 L 2775-1661, ACCESSION NR: AP5022010 from the (k-2)-th pulse-position element are connected to the (k-l)-th coincidence gate. ASSOCIATION: Institut matematiki SO AN SSSR.(Institute of Mathematici, SO AN SSSR) SUBMITTED:' 21Jul64 ENCL: 01 SUB CODE: EC NO REF SOV: 000 OTHER: 000 1-r4 EMM t4fl_i Nz ~i X; Z7 22 log iy, w4I AIL. 4L sat 44"%LstablA 'PUISC-POISItica --Amom T 4!41. ., ~ 3, ~ , -,-- - ..firequency I ~74 AV v 34. -A rJ, I I A vy wo ACC NR. MbUibUiU 5VURCE CODE: AUTHOR: Sigorskiy, V. P.; Sitnikov, L. S.; Utyako , L. L. ORG- none TITLE: A parallel cumulative decimal summation unit. Class 42, No. 174439 [an- nounced by Institute of Mathematics, Siberian De artment. AN SSSR (Institut matema- tiki Sibirskogo otdeleniya AN SSSR)j VIP ,7 SOURCE: Byulleten' izobreteniy i tovarnykh znakov, no. 17, 1965, 92 TOPIC TAGS: arithmetic unit computer component, flip flop circuit, coincidence cir4. cuit, adder ABSTRACT: This Author's Certificate introduces a parallel cumulative decimal summa-' tion unit which contains multistable pulse-position elements, 11OR1t gates, flip-flops and coincidence circuits. The circuitry of the device is simplified by connecting " the input of the multistable pulse-position cell"for each digit through an i#OR't gate to the output of the coincidence circuit for the preceding digit, and to the output4 of the dynamic flip-flop for the given digit. The set terminal of this flip-flop il is connected to the addend pulse source, the reset terminal is connected to the pedRs tal pulse train source, and the cadence pulse input is connected to the cadence page source.. 1/2 UDC: 681.142.07 L 7039-66 ACC NRi AP5026810 Fig. 1. 1--multistable Pulse-positiop cell; 2--dynamic flip-flop; 3-110R" gate; 4--nonsimultaneous coincidence circuit; 5--addend pulse input; 6--cadence pulse in- put;,7--pedestal pulse train input SUB CODE: DP,ECj SUBM DATE: d3Aug64/ ORIG REF: 000/ OTH REF.. OOL 2/2 L 2o66s-66 arW/EwA(h) ACC NR: AP6004556 SOURCE CODE: UR/0103/66/000,1001/0133/0138 AUTHOR: Sigorski-y. V. P. (Kiev); Sitnikov, L. S. (Kiev); Utyakov, L. L. (Kiev) ORG: none TITLE: . Chronotrons; time-pulsed multistable elements SOURCE: Avtomattka I telemekhanika, no. 1, 1966, 133-1.38 TOPIC TAGS: pulse generator, pulse modulation, pulse rate, chronotron ABSTRACT: It wis shown earlier by the authors that a ebronotron may be designed by incorporating a four-terminal network in a feedback loop. One of the common versions of such a four-terminal network Is shown in Fig. 1. U, Fig. 1. An all-purpoob four-terminal network. 1 - controlled d6lay; 2 - switching block; Card 1/2 2 - averaging filter. L 20665-66 ACC NR: AP6004556 The authors investigate this and other versions of multistable elements which are charac- terized by their d-c output voltage and the duration of the square wave pulses. The paper contains a brief outline of the theory, block diagrams of the elements, graphs of the voltages, and a circuit diagram. The control of such an element, i.e., the shift of its operation frombne steady state to another is carried out by switching the circuit briefly from the univibrator output to -an external source of pulses having the required duration. Orig. art. has: , 6 formulas, 8 figures, and.1 table. (081 SUB CODE: 09 SUBM DATE: 19May65 OIUG REF: 00%";/ ATD PIMS: 41 Card 2/2. L 30400-0'6 EV.'T(d)/FSS-2_ A C C M: AP60078G4 SOURCE CODE: UR/0103/66/000/002/0076/0081 AUTUOR: Sigorsidy, V. P. (Kiev); Sitni16-jv, L. S. (Kiev); U !Kikov, L.L. (Kiev) ORG: none TITLE: Pulse-frequency multistable components SOURCE: Avtomatika i telemekhanika, no. 2, 1966, 76-81 TOPIC TAGS: electronic component, stabilizer, RF pulse, frequency stability ABSTRACT: The present article investigates the means of development and the basic char- acteristics of multistable coinponenis of a group the states of which are distinguished according to the value of the output voltage of the frequency siEnuence of the pulses generated. For the development of such components use may be made of 1.he nonlinear four-pole com- ponent, which includes the converters of voltages into frequency sequences of pulses and frequencies into voltage. It is concluded that when a synchronized controlled relaxation ,generator is included in a feedback loop with an inertia link there is the possibility of creating sufficiently simple components with many unstable states, disringuished by an oscillation period of the relaxation generator and the magnitude of the cor-trol voltage at the output of the discriminator. The magnitude of the state is controlled by altering the frequency of the sequence of synchronization pulses. The advantage of the proposed device is that even with the utilization of the generator with the nonlinear control characteristic its period of oscillatic in the transition of the component from any state to a neighbordng state changes by a rigidly Card 1/2 UDQ 621. 37 2. 161. 4 L 30400-66 ACC NR, AP60078-64--- fixed constant equal to the synchronization voltage period. The utilization of the relaxation generator with linear control makes it possible to considerably Increase the number of stable states and to assure a constant increment of the control voltage in the transition of one state to another. Orig. art. has: 6 figures, 7 formulas, and 3 tables. SUB CODE: 09 / SUBM DATE: 0ISep64 / ORIG REF: 002. ard 2/2 C ~"-2c" 52~tb- iff6 6 11 ~18 Monograph Sigorskiy, Vitaliy Petrovich; Sitnikov,, Leonid Se,,T~j~jvph# Utyakov, Lev Lazarevich Circuits with many stable states. (Skhemy s mnogimi ustoychivymi sostoyaniyami) Novosibirsk, Redizdat Sib. otil. AN SSSR, 1965, 140 P. Illus., biblio (At head of title: Akademiya nauk SSSR. Sibirskoye otdeleniyej 1000 copies printed. TOPIC TAGSi compubor applioation, compuber dealksno computer research; computer technology PURPOSE AND CGVERAGE: This book is intended fo;? scientific and techni cal personnel concerned with computers, automation, simulation of processes iti the nervous systems of living organisms, and other fiel in which circuits with many stable states may find applicati,on. The book contains the main results of theoretical and experimental inves tigations concerned with finding new principlos for developing such f: circuits. The possibility of developing elements with many stable states, whose quantity is determined by the operating conditions and the parameters of the circuit (independent of its complexity), is demonstrated. A method for developing such elements, based on the conversion of static and time characteristics into comb- or step- Card 1/3 L 25652-66 RK w ACC R. type amplitude characteristics, is proposed. Stability is investi- gated, and Wie transients of the general b1ol,,11c-diagram of an element with mainy otable states are analyzed, making it, Possible to evalua-16-e various contpol i.,iethods from the s'kandp0,.n'1'Z'.)-L faat response and criticality with regard to the controlling-efrect parameters. A number oC specifl. c circultv, checked under laboratory condit-lons, is (spectrotron), time-pulse (ebronotron), ;.;ind pulse-frequericy (aynch~otron) circuits pvoved to be the moot proalising. In laboratory specimens ten or more stateo of stable equilibrium were easily obtained, In addition to the authors, A. N. Boyko, A. P. Vishnevskly, A. A. Molchanov, Yu, S, Ooyagin,, E. Ye. Bartlemanov, V. A, Yelkin, Yap Sh. Zak-Irzyanov and A. R. Turult participated in the research, TABLE OF CONTENTS: Introduction -- 3 Ch. 1. General Principles for Developing Elements With Many Stable States -- 5 1. Survey of elements with many states of equilibrium 5 Ca,d 2/3 L 25~52-66 ACC NRs AM 2. Principles of the development of elementE. with many stable states -- 18 3. Dynamiro of elements with many stable states -- -37 - Lt. Wayo of bandling elemento with many stable states 50 Ch. 11, Harmonic-Frequency Elements -- 59 1. Bas1c types of harmonic-frequency elements 59 2. Spectrotrons _- 76 3. Methods of controlling spectrotrons -- 90 Ch. III. Pulse Elements 101 1. Basic types of pulse elements -- 101 2. Pulse-frequency elements -- 103 3, Chronotrons -- 113 4, Some ways of improving chronotrons -- 124 BIBLIOGU~HY -- 139 SUB CODE: 091 SUBM DATE: 14Jan65/ ORIG REF:.022/ OTH REF: 009. Card 3/3 ACC NRAI,16015099 TABLE OF CONTENTS Foreword -- 3 Ch.I. General Principles for the Development of High-Stability Elements 1. Review and classification of elements with numerous states of equilibrium -- 9 2. High-stability elements using nonlinear two-terminal networks -,r 16 3. High-stability elements using nonlinear four-terminal networks -- 21 4. Four-terminal networks with a nonlinear amplitude characteristic -- 32 5. Dynamics of high-stability elements 43 6. Control of high-stability elements 53 Ch.II. Frequency-Harmonic Elements 1. Controlled reactances and oscillators -- 63 2. Basic types of frequency-harmonic elements -- 82 3. The coordinates and quantity of stable states of a spectrotron __ 90 ACC NRsAM6015099 Bibliogra:phy -- 351 SUB CODE: 09/ SUBM DATE: 21Jan66/ ORIG REP: 1281 OTH REP: 041 w I Alb N ACC NR, AP7005660 A A A)U put 1 1 3 j 3 UtV utp~p, 0.1 4 2 49 Fig. 1. Logic element 1. 2 - Ferrite cores; 3, 4 input windings; 5, 6 - output windings; 7, 8 - read windings; 9 - restoration winding; x, i - Input signals. .lf.x~l -where x and 1 0, 1, 2... k 1, the input windings are connected in parallel and the output windings in series. Both types of winding are :connected through a diode to the output terminals of the device. In order to process the characteristic function ji(x) at I. - 0, the input winding is located on a single core. Orig. art. has:_1 figure. 1091 150ct65/ 5116 091 ATD PRESS:: SUB CODE: SUBM DATE: i Card 21g SITNIKOT, M.A., inzhener; MITROFANOV, S.A. - wsww--"~~ ~- Automatic stop for the "Pionerl crane. Rata. i izebr. predl.v stroi. no.119:7-8 '55. (KWA 9:7) (Cranes, -derricks, etc.) SIMNO-T.,X.k., inzhener. Casting precast cornices in packet forms. Rate. i izebr.predl. v stroi. n0-123:26-27 155. (Cornices) (MLRA 9:7) SITHIKOV.-L4., inzh. (g. Minsk) Large-pansl foundations of a new type. Ila atroi.Mosk. I no.12:27 D '58. (WRA 11:12) (Foundations) (Concrete slaba) -e, SITNIKOV, K., inzh. Using lightweight glass-concrete in laying floor foundations. Stroitell no-5:23 MY '58. (MIRA 11:6) (Minsk--Floors, Goncrete) SIT:IIKOV, M. A. Cand Tech Spi -- (diss) "Certain problems of the industriali- zation of construction of foundations a* buildings." Minsk, 1959. 24 pp with illustrations (Min of Higher and Secondary Specialized Education BSSR. Belorussian Polytechnic Inst im I. V. Stalin. Chair of Bases and Foundations), 150 copies (KL, 44-59, 127) _26- SITNIKOV, ill2h. New industrial foundations for buildings. Tranap.stroi. 9 no-1:33-34 JEL '59- (MILU! 12:2) (Foimdationlu) SITNIKOV, M. Precast roinforced ligbtweigbt concrete staircases. Zbil.-kom. kboz. 9 no.2:22-23 '59. (MIRA 12:5) 1. Nachal'nlk takhnicheakogo otdola tresta "Beltranestroy," Minsk. (Lightweight concrete) (Staircasne) SITNIKOV, N.A., inzh. Some problems in constructing foundations in White Russia. Sbor. nauch. rab. Bel. politekh. inst. no.77:67-89 '59. (MIRA 13-3) (White Ruasia--Poundations) SHIRNITSKIY, Yevgeniy Konstantinovich; (JOLLMNA, K.A., inzh., retsen- zent; MASLIY. K.Ta., zuborez, retsenzent; ZIMOV. P.A.. kend. ekon.nauk, red.; qkTNIKOTK.A., red. vypueka; 33LYAKOY, M.N., red.; ROZMMRRG, I.A., kand.ekon.nauk, red..;..3MMITSKIY. To. K., kand.okon.nauk, red.; SUSTATOT, M.L. inzh., red; DUGINA. N.A.. takhn.red. CMachinery-industry worker and technological innovations] Ra- boahiiTmashinostroltell I tekhnicheskii progress. Moskva. mashgiz, ig6o. 49 p. (Bibliotaka rabachago mashinostroitelia. Seriia: "Oenovy konkretnoi okonomiki,* no.1) (MIRA 14-5) (Machinery industry-Technological innovations) SITNIKOV, K.A. (Minsk) Making and assembling large-panol foun&-tions of buildings. Oan., fund.i mekh.grun. 2 no.4:22-24 '60. (MIRA 1337) (foundations) SITNIYCV, M.ii., kand,tekhn.nauk Water-resistant gypsum-cement cinerpte products. Transp. stroi. 11 no.7-32-34 JI 16h (KIRA 14:7) (Yinsk--Precast concrete) MAKAROCHKIN, Mikhail Fellorovich, doktor tekhn.nauk; SITNIKOV, Mikhail Aleksandrovich, kand. takhn. nauk; POLISKIY, S., red. -,-MEER 9019-1. , tekhn. red. [Prefabicated foundations for buildings]Industria4 nye fundamenty zdanii. Minsk, Gos.izd-vo ISSR, 1962. 300 P. (MIRA 16:7) (Foundations) SITNIKOV, M.A., kand.tekhn.nauk Mastering the production of gypsum-cement-.pozzolan articles for precast construction. Stroi.mat. 8 no.31l6-17 Mr 162. OaRA 15:8) (Building materials industry) SITNIKOV M.A etoekbnowuk Construction of reinforced concrete stre3sed contoiners for patrol*= products. TranoD stroi 12 nc*201-33 F 162. (MIRA 15:7) (") (Pre;tressed concrete construction) MAKAROCHKIN, Mikhail Fedorovich, doktor tekhn. atiuk; SITNIKOVp Mikhail Aleksandrovich, kand. tekhn. nauk; POL'ffTT,--S7--, red.; BELENIKAYA, L, tekhn. red. (Prefabricated foundations or buildings]Industriallnyo fundamenty zdanii. Minsk, Gps.izd-va ESSR. Red.nauchno- tekhn.lit-ry, 1962. 303 P. (MIRA 16:3) (Foundations) SITNIKOVP Mikhail Aleksandrovich,kazd.takimnaukj.VWLAINCHIKpM.M., inzh.,red. [Precast reinforced concrete reservoirs with poststressed walls; practices of the Experimental Construction Office of the All-Union Research Institute for Water Maine (VNIIST), of the "Stroidetall" Plant and the White Russian Transporta- tion Construction Administration of the Ministry of Trans- portation Construction of the U.S.S.R.] Sbornye zhelezobeton- nye rezervuary s posleduiushchim napriazheniem stenok; iz opyta Eksperimentallno-konstruktorskogo bturo Vsesoiuznogo nauchno-issledovatell skogo instituta po stroitel I stvu magis- trallrqkh truboprovodov (VNIIST), zavoda "Straidetal'" i Beltransstroia Ministerstva transportnogo stroiteltstva SSSR. Moskva, Gosstroiizdat, 1962. 23 p. (MIRA 17:2) 1. Nachallnik tekhnicheskogo otdela tresta "Beltransstroy" Ministerstva transportnogo stroitel'stva SSSR (for Sitnikov). SITUIKOV, M.A. (Minsk) Several problems concerning the erection of pile foundations. Osn., fund. i mekh. gran. 5 no.5:15-16 t63. (MIRA 16.-10) ,,--SITNIKN, M.A. Nomogram for determining the dimensions of the base of a foundation. Osn.J. fund. i mekh.grun. 8 no.l.- 27 166. (MIRA 19 - 1) 3IT','INCII, Y. N. Sitnikov, Z. H. "Gormon pine ox, the artificial plantations on cherno7.ed soils of Trans-Volg~j Kuybyshev Cblast.11 Hin Higher Education USSR. Saratov Agricultural Inst. 3aratov, 10,50'. (Dissertation for the Decree of Candidate in Agri, cultimal Science) So: K-n'-zhnu-y,,i leto-ds', 1b. 27, 1956. Mosco-.:. Pa;rr-s '14-109; 111. j USSR / Foroat Science. Foroat Cultures. K-4 Abs Jour : Rof. Zhur - Biologiya, No 17, 19513, No- 77522 Author : Sitnikov.. LL N. Inst AS USSR Titio Test of Conmon Pine Cultivations on Chornozom, Soils of Kuybyshovskaya Oblast Orig Pub Botanl ab. rabot Kuybyahevsk. otd. Vaos. botan. o-va.. M.-L... AN SS,9R, 1956, 27-35 Abstract Co=n pine on chernozem soils in the forest-Stoppe and stoppo zones of KuybyshovsIoD4n Ob3nat is a stable and long-lived species and forms higlay-productivo stands. The boat corx1ition of pino pliantations and thoir most sucoossful grovth am oboorvod in the forost-stoppe zone. In the KLWtyahovsknya Oblast, pimo cm be cultivated in puro and "Imod plantations on charnozome soils. Norvay mplo., groan and comon ash, lindon, birch and oak are Card 1/2 28 T n J. i. -3, '11-17. c 11, IAPI-3. JOult. RZhBir~lj,, .&, !~,~Iq) AUTHOR 1NST. T-j TLE HI G , ruB. A K-- U. 1, C T u e a r k d w o o d r s o u r e s it thab tsie coiuaon i~i.ne be U-ned I'n forc-~st 012 'U~~.,~ chernozem soil r f -)f t~---- -1,-f,ft blrtflk o' ',J-te VoIp,a. CA RD ?"'.2 .7 -- ".. . I . a ~i- I Coal-Mining Yachinjry Equati; ns of the mot-icns of a cut,,Ang machine. Nauch. truly 1~,Osk. gor. inst. No. 8 1950 Fonthly Li-t of -tussi2n Acce~-sjrmlq Library of Congress Cc"ober 1952 Unclass. ,))T-N0,\bv (~,I.P IlkNCHNV, V.I.; KORNILOV, A.M.; NEYWSIINV, M.V.; OLIKM. V.V.; PROSHLYAKOV, B.K.; STRILTANOT, N.P._: 4'MIKOV. M.P. Uranium minerali2Ation In carbonate sedimentary rocks. Geol.rud.mestorosh. no.6:27-38 H-D '59. (MI" 13:7) (Uranluxt ores) SITNIK-W, N.A., kand.tekhn.nauk Using industrial methods bukdin a. Transp.stroi (yougndations) in constructing the foundations of 10 no.4:34-35 Ap 160. O(IU 13 - 9) (Precast concrete construction) Pb-TROV, I.P., kar-d. teklm. nauk; SDMTSOV, G-N., inzh.: SITNIKOV, N.B., inzh. . --1- T Automatic control of cutting machines and mining cutter-loaders. Izv. vys. ucheb. zav.; gor. zhur. no.&132-136 264 (MM 18~1) 1. Sverdlovskiy gornyy institut imeni 7.7. WLkhrusheva. Rekomen- dovana kafedroy gornoy elektrotekbniki. PETROVP I.P., dotsent; 013HIENTSOV, G.N.p inzh.; 4.LTN~ln , inzh. Regulatlnf, %he power consistency of the rotary mechanism motor on the SBUR-1-150-71V boring inichine. Izv. rys. ucheb. zav.; gor. zh,ur. '," no.10:146-151 164. (14IRA 18: -- ) 1. Sverdlovskiy gornyy institut imeni V.V, Vakhrusheva. Rekomen- dovana kafedroy gornoy elektrotekhniki. 30(l) SOV/99-59-8-7/10 AUTHORS: Sjtnikov,- N.K. and Shpillberg, Yu.I., Engineers TITLE: Grounds of Canal High Embankments in Operation PERIODICkLs Gidrotekhnika i melioratsiya, 1959, Nr 8, pp 41-45 (USSR) ABSTRACT- Upon decision of the Expert-Technical Department, the branch of the Yuzhuiprovodkhoz at Pyatigorsk conducted bottom research work at the large dams of the Kuban'-Yegorlyk irrigation system in 1957-58. The barrages were built in 1952-53 and the water was flowing there from 1955 till 1959, idien it was interrupted be- cause of repair works. Several diagrams (Figs.1-2) explain the nature of the bottom. The experiments which were made with samples taken from the bottom (July 1957-August 1958) are described. A table shows the results of the laboratory tests. A drainage sys- tem underneath the dams proved to be superfluous. By condensa- tion of the ground layers of the barrages new physical-techni- cal properties of the soil were constituted. There are 5 diagrams Card 1/1 and 4 tables. ASSOCIATIONi Pyatigorskiy filial Yuzhgiprovodkhoza (Pyatigorslic branch of Yuzh- rroprovo4khoz ) IT t 1 3 KLII*;NKO, K. (Minsk); SITNIKOV, 0. (Minsk) Tasks for improving the economic efficiency of production mechanization. Vop. ekon. no.8:18-27 Ag 162. (MIRA 15:8) (Machinery industry) "Automation) SITNIKCV, C. I - "Some Problems in the r1heory of Are -Quenching reVj C as T. ith Autcblast" (NekotoriTye N voDrosy teorii duLfflogasyashchikh ustroysty s avtodut'yem), Elektrichestvo, -No 7, 1950. Ural Folytechnic Institute Dissertation for Candidate Dej~ee USSR/Electricity - High-VoltMe Iquipwnt Apr 52 Literature "Review of M. A. Babikov's Book, 'Modern Electrical High-Voltage Equipment, " Docent M. M. Akodis, Cand Tech Sci, 0. P. Sitnikov, Cand Tech Sci, Ural Poly- tech Inst %o P_ 11 Elektrichestvo" No 4, p 95 CO C-1 CIJ -4 Favorable review of subject book, which, the arti- c6cle states, is basica-Ily a survey of new accompliab- ments in the theory and practice of high-voltage elec equipment building, with particular attention 228T66 to Soviet developments. Sep chapters deal with circuit breakers, disconnecting switches, fuses and lightning arrestors, capacitors, instrument traas- formers, and combined equipments. Published by Gosenergoizdat, 1950, 271 pp, R 14.8o. 228T66 1. 317"E".0W, 0. P. 2. u5-':i-'. (6oo) 4. ',E'lectric GircuiL 6reiiker3 7. Operation of arc extinguishers ivith automatic gas blowing, Zlektrich3stvo no. 1~, 1953. 9. Monthl List of Russian Accessions, Library of Congress, APPIL -1953, Uncl. A 111T If") WI; TITLE- PERIODTCAL: ABSTRACTz ASSOCIATTONt 3-5F-7-'1/36 :;I tnil'-.Ov, G.P. , Cnndidrito of Technirr,l ;ciences , and Chaptsov, P The D.C. Electronic Analyzer (Elektronnaye moiell postoyannogo toka) Vestnik vysshey shkoly, 195,9, fir 7, P 83 (USSP) The d.c. electronic analyzer was built by students of the Kafedra apparatury avtomaticheskogo upravleniya radiotekhni- cheskogo fakullteta Urallskogo politekhnicheskogo instituta (The Chair for Automatic Operation of Eauipment of the Radio- technical Faculty of the Ural Polytechnical Institute). It wao built in 1956-57 and all parts 7ere constructed by students. There is 1 photo. Ural'skiy politekhnicheskiy institut imeni S.M. Kirova (The Ural Polytechnicol Institute imeni Kirov) Card 1/1 8(6), 9(2) SOV/143-58-10-6/24 AUTHOR: Sitnikov, O.P., Candidate of Technical Sciences, TITLE: The Extinction of an Alternating Current Arc PERIODICAL: Izvestiya vysshikh uchebnykh zavedeniy, Energetika, 1958, Nr 10, pp 40-48 (USSR) ABSTRACT: When developing and testing arc extinction devices of high-voltage switching gea--, especially when using indirect methods, it is necessary to know the optimum conditions for arc extinction. The experience of in- vestigating arc extinction devices of high-voltage switches showed that the two theories of extinction existing at the present time - the theory of dielectric strength recovery and the theory of power, considered separately - are inadequate for describing completely the arc extinction process. However, these two theo- ries supplement each other, describing different pha- ses, changing within the time of the alternating cur- rent are extinction. Actually, the power theory deter- Card 1/5 mines the conditions required for the transition of a The Extinction of the Alternating Current Arc SOV/143-58-10-.6/24 theory of the dielectric strength recovery is justified after the termination of the self-contain6d discharge. The at.ithor then investigates the stability of an arc and the overvoltage when switching-off low currents. A number of papers deals with this subject. The au- thor cites Kaufman, who took the arc impedance magni- tude equal to the dynamic re'sistance, which is to be determined from the static volt-ampere characteristic. This calculation produces the necessary, but inade- quate conditions, since only the problem of the static stability is solved thereby. G.S. Borchaninov assumes in his paper on the stability of the arc discharge that' in case of minor disturbances, the voltage at the arc will be a function of the current and the rate of current changes. This is equivalent to replacing the arc by a substitution circuit consisting of series- connected inductances and resistances. However, the character of the actual frequency characteristic of the are in case of minor di-Iturbances does not corre- spond to this equivalent circuit, which is confirmed Card 3/5 by considering the dynamic characteristic obtained by The Extinction of an Alternating Current Are SOV/143-58-10-6/24 applying to a dc arc sinusoidal oscillations of a low frequency. The author then investigates the arc stability mathematically. He recommends a parallel- connected, noninductive shunt -for increasing the arc stability, damping the recovery voltage and reducing the current at which the arc is interrupted. The analysis method explained by t'-ae author provides new aspects for the process and the conditions for the transition of an impulse discharge into an arc dis- charge. The probability of such a transition depends essentially on the circuit parameters in the immedi- ate vicinity of the impulse puncturing area. In cir- cuits where the degree of arc stability is greater, the transition of the impulse discharge to a power arc is more probable, if the other conditions are equal. There are 5 Soviet references. Card 4/5 The Extinction of an Alternating Current Are SOV/143-58-10-6/24 ASSOCIATION: Urallskiy politekhnicheskiy im;titut imeni S.M. Kirova (Ural Polytechnic Institute imEni S.M. Kirov) Kafedra apparatury avtomaticheskogo regulirovariiya (Chair of Automatic Control Equipment) SUBMITTED: June 5, 1958 Card 5/5 9(6) S/146/59/002/06/004/016 D002/DO06 AUTHORS: Sitnikov, O.P.9 Perminov? Yu.A., Gubin, V.A. TITLE: A Device for Irielusuring the Errors of A control S~r,~t_ems ~ PERIODICAL: Izvestiya vysshikh uchebnykh zavedeniy. PriborostroX- eniye, 1959, Nr 6, pp 23-28 (USSR) ABSTRACT: Detailed information is given on a device (Figure 1 azd2) for measuring the errors of automatic control systems. It is a decoupling lowfrequency amplifier with a relatively wide dynamic reuage and has a double triode whose grid receives the voltage from the integration chains serving as the error signal input. The signal causes a disbalance of the triode currents, which is recorded by an indicating instru- ment. The device measuring the mean square error value consits of a preamplifier, a detector, a squaring de- ~Iard 112 44286-65 EWT(1)/EEC(b)-2/EWA(h) Peb/Pl-4 GS ACCESSION NR-. AT6011616 UA/0000/W000/G0Q/044?,/GU6 AUTHOR: Sitnikov, 0. P., VinogradoVa, N., B. -'TrrLE-. New parametron-based logical units SOURCE: VTs2e~s!o~~w soveshchaniye jLq nym, elermaentam aytoniattki, tole Ye _.S1 hislit tzmeriteLl' Wyye elementy lVtDM Enn_Y ivy ellnov tekhnild. Lv0v..J1q?. Magnj telemekbaniki, izmeritellnoy I vychislitellnoy tekhniki (Magretic elements of automatal control, remote control, measurement and computer engine3ring); trady soveshchanty Naukova dumka, 196-4- 442-446 trod' logic TOPIC TAGS: Larame al circuit, slimplifted pararnetzon, parametron unit operation, constant power parametron, computer design 1P ABSTRACT: The road to still faster and more reliable computers does not lie along the of the vacuum-bibe and transistorized circuits known so far. in manyIcases, se It seems: u advisable to use logical elements based on parametric autogenerators with variable in- 7W ductances or capacitances. These so-called parametrons are extremely reliable and their ca even. operating lifetime Is infinite. They do not change their operating characteristi, under mechanical loads reaching hundreds of go can operate within the -70 to +80dr,099 L 44286-65 ACCESSION NR: a ATS011616 (iiee A. 1. Vishnevetakiy, 1. S. Sergiyenko, Parametron, lz(l-vo MO BOB, 1961), and "e- small in size. However, they require 1) a complex power.supply, 2) a significant operating power, and 3) they are comparatively slow. The present paper offers circuit designs which eliminate or alleviate all three idefictencies. The circuit shown in Fig. . 0 -the Enclosure Is proven to be most economical. The power oonsumedby the loaded cell. differs little from the power consumed during idling, and this, in turn, simplifies the tuning of the logical circuits and further improves their reliability. One para=etron can . control a large number of utdts, bringing about a significant decrease in size of the entiro.l computer. Orig. art. his: 1 formula aW 6 figures. ASSOW.TrOX-. 'No"M ... ...- SUB-CODE: DP SUMMEM. 298epG4 01 001 110 REP SOV: OOV. 7z )/I,;FC (b)-2/L,'JA (h) Fo b/ F, I - 4M 442, LW ACCESSION NR: AT50116617 tJR/0000/64/000/000/0447/6t5l 1AUTHOR': Sitnikov, O.P., 1~!22aradova.,N.'Y., qVrnov, I J.Lj~ TITLE: Parametron dynamics sespyuzno)resoves 9~~yqpomagni ymeem amavWxn -7 zm ent 0-IL, 4Q7Y_ T17j7 $4,f6khidg, 2. Lvov.- - 19 6 . bT&grdtnyye ekinbfity -77-1 telemekhapikil izmeritellnoy f4yehislitellnoy tekhnild- (Magnetic elements of automatic- c' ontrol, remote control, measurement and computer engineering); trudy soveshchanlya. Kiev, Naukova dumka, 1964, 447-451 TOPIC TAGS: parametron dynamics, parametron transient process, monotone para- oscillation, computer design inetron transient, nonlinear nts requires the ABSTRACT: A successful design of computers based on parametric eleme elucidation of parametron dynamics. The time intervals needed for the growth and decay, I of parametric oscillations fixes the limiting frequency of the cycling pulse and, conse- S Clue _ntly, the operating sived of the logical units. Transient processes caused by small o changes in loop paxameters can be described by, linear equations. However, it is f much greater interest to stu&j the growth of parametric oscillations up to the establishment of n1ine Nuations, -the stationary operating conditions which are described by essentially no ar 1/2 LSard T L -19493 ACC NR, AT6o0Z993 SOURCE CODE: UR/;)000/65/000/000/0279/0287 AUTHOR: Sitnlkov, 0. P.; Vinogradova, N. B., Zhuykov, Yu. N. ORG: none TITLE: Constructing computing devices with paramerons SOURCE; -Vse-Boyuznoye soveshchanlye po magni-tnyrri elernentarn avtomatik! i f vychis~iLlel'nov tekhniki, 9th, Yerevan, 1963. h4agnftnyye tsifrov- .rle elemen y (Magnetic doldady soveshchaniva. Moscow, Izd-vo Nauka, 1965, 279-297 TOPIC TAGS: parametron, parametric amplifier, computer ABSTRACT: The article'establishes tolerances for deviatigns from nominal parameters of a parametroti arid recommends methods forLP-qazadlity control of ferrite jjqres~~" Experimf!ntal invegtigation of the effect of capacitance on the parametron out-. put amplitude brought about these conclusions: (a) .10%-tolerance capacitors are undesirable; (b) mica or styroffi!x capacitors can I),! replaced with paper-Insulated; (c) automodulation happens in the lower range of the parametron resonance co'd 1/Z ACC NRs AT6002993 characteristic. The effect of r:ircuit inductance on the amplitude of parametron oscillations was also experirnentally investigated and brought aLout these conclusions: (a) maximum pumping current should be used consistent with the desirable power consumption; (b) no error in the number of turns of w~.ndings or magnetic cores can be tolerated; (c) large spread in magnetic characteristics of cores to inadmissible. Parametrons with 40ONN-1 ferrite show poor performance at low temperatures; the 1000NM ferrite ensures good operation of parametrom; at -50+ 50C. It is recom-, mended that the parametron operating point be selected in the upper range of its resonance characteristic where the negative det-uning ~ Is maximum, also, that capacitors with a tolerance of � 2016 be used. A very tjimple arrangement for testing magnetic cores is suggested. Orig. art. has: 10 figures and I formula, SUB CODE: 09 SUBM DATE- 23Apr65 Card 2 2 ,SITNIKOV, Oleg Stepanovich; POLISKIY, S.9 red.; STEFAVOVAp tekhn. red. [Multioirpose attachments with interchangeable parts used in i0c p :~- and small-10 manufacture of machinery] Universallno-sbornye pri sobleniia v edinichnom i malkoBeriinom mash.--Lnostroenii. Minakv Goo. izd-vo BSSR Red. naucbno--tekbn llt-ry, 1961, 91 p. (MIRA 14:8) (Interchangeable mechemisms) Sitnikov, Oleg Stepanovich Mekhanizatsiya i avtonatizatsiya v mashinostroyenii; ekonomicheskWa effektivnost', Minsk, Tzd-vo Akademij Nauk BSSR, 1963, 289 po tables. /; /w p c , tj / /V ::7 R Y - C 0. /VS ~, '?- T~ c /'/ SITNI _jp-g-S-t-ep~!p _jKOV 0 _qy~ch,,._~rinimal uchastiye VOISEYENKO, I.G., inzh.; GOLIBBI, Ya.A., kand. ekonam.nauk, red.; STRIZHONOK, M., red.izd- va; SIDERKO, N., tekhn. red. (Economic efficiency of the mechanization and automation of auxiliary operations in the machinery industry] Ekonomicheskaia affektivnost' mekhanizatsii i avtomatizataii vspomogatelInykh protsessov v mashino- atroenii. Minsk, Izd-vo Akad,nauk BSSR, 1961. 146 p. (MIRA .14:13.) (Machinery industry) (A-Utopition) SITNIKOV, Oleg Stepanovich& TREYYER, V.N., red.; LEONENKO, 1.9 red. izd-va; ATLAS, A., tekhn. red. (Economic efficiency of mechanization and automation in maciiinery manufacturing] Mekhanizatsiia i avtomatizatelia v mashinostroenii; ekonomicheskaia effektivnostl. Minako Izd- Vo Akad. nauk BSSR, 1963. 230 p. (MIRA 16:5) 1. Chlen-korrespondent Akademil nauk Belorusakoy 35R (for Treyyer). (Machinery industry--Technological innovations) (Automation) SjTNjjrOV._-?-,-(C;%ykop) Trainer of sharpshooters. Voen. znan. 37 no- 1:26 ja 61. (miRA l4a) (Gladkikh, Anatolil) SITIJIKOV, P. A. "The Role of Succulent Foods in the Development of the Organism of Fowl -- Chickens." Cand Agr Sci, (No iDst given) Kazan, 1954. (RZhBiol, 11b 2, Jan 55) Survey of Scientific and Technical Dissertations Defended at USSR Higher Educational Institutions (13) SO: Sum. No. 598, 29 Jul 55 lc~ ~ " i*'.' 1" " -75 -- . i, . elat SCRs IS 4 n L-,-CV. 1-1 . I " , 1950- gild- VA~33, 10 (1', 1951. of 9. Monthl List of Russian Accessions, Library of Ccngress, Mlav 1-952 -/Wyl Uncl. SITNIKOV, P.F. Intensity of the Perseid meteor shower in 1952. TSir.Astron.obser. Llviv.un. no.27:44-48 '53. (MIRA 13:10) (Heteors-August) SITNIKOV. P.F. , *f'the trajectorr of a meteor in the earthts atmosphere Determining from base observationff of its position in space. Nauk.zap. Llviv un. 39:133-139 156. (Kim 11:1) (Meteors) leacratc-4 gas blast. Elekirkhewpo, IM No. 4,3&42 Pressure variations in arc-quomching devices have a diffarat cbmuter according to whether the efflux 0 from The quenching chamber omsists of ps or liquid aim* or of a takture of the two, TIds Ww alum .1 do method to be used in a thooretiW consideration of these processes which may be6ome mom difficuft In the last cam, The auth* -onsiden; only a pbre ps blast, thus the case of expulaWn tube, gsdo' Pnerating circuit breakers or power Awe. It Is lom that h.f. pulsations of the arc voltap may be ra~kts& In such calculationi withbut prejudicing the ussfutness, of ftresults for practical purposes, thus simplifying *a calculation of tM presswe curve. TM calculations also show the- impossibility of obtalaing linal arc-qucnching with a stored quantity. M a continuous gas blast Wng required for this Of ~urpow The Principle .0'L& self-gcherated blast Is do obvkm solution .6f thiMblem. The optimum preautre conditions are qiiai vely best charac- terizea by the ratio between' g2 lent of the chamber ans! rioss-section of the gas *,-.Within the limits of 40 saw 150 cm. L F. KRANLI.. SITNIKOV. - ~ .. I' ~i I Disinfection of yeasts during the processing of molasses to alcohol. Spirt. prom. 25 no-5:40 '59- (MIU 12:10) (Toast) (Alcohol) SITNIKOV, S. Planning our work for the year. NTO 2 no-3:51-52 Mr '60. (MIRA 13:6) 1. Predsedatell eoveta pervichnoy organ'.zateil Nauchno-tekhni- cheskogo 9oveta gruzovoy Bluzhby Sverdlovskoy zheleznoy dorogi. (Railroad rasearch) YUBASOV, N.I. (Sverdlovsk); 51,TNIKOV-,--S.I-.i7doroz~!ny.,.i inspektor po marshrutizatsii (~v-erdlovsk) Efficient types of the organization of car flows from the loading points. Zhel.dor.transp. 44 no.4:56-60 Ap '62. (MIRA 1.5:4) 1. Glavnrj inzh. gruzovoy aluzbby Sverdlovskoy doropi (for hubazov). (Railroads--Freight) (Railroads--Makirg up trains) SITNIKUV, S.N.. inzherer. - Against antiquated methods of determinirg the efficiency of express train shipment. Zhol.dor.transy., 37 no.7:44-46 Jl 156. (NLBA 9:8) (Railroads--gaking up trains) '.:'Ir_'NIXOV, inzhener (Sverdlovsk). Making-up heav7-wslght trains on sidings. Zhel.dor.transp. 39 no.E.-65-68 4 1157. ..(NERA 10:9) (Rnilroads-MakiM up trains) SITYIKOV, S.N.. inzh. Efficiency of using special deatination trains. Zhel.dor.tranaV. 40 no.10:45-48 0 158. (MIRA ll.-12) (Railroads--Management) SITNIEOV.- S.N., inzh. Handbook on froight routing ("Dispatch routing in railroad transportation" by V.T.Osipov. 11oviewed by S.N.Sitnikov.) Zhol.dor.tranap. 41 no.11:93-94 X 139. (MIID, 13:2) 1. Dorozhny7 inspektor po marglirutizatsii peravozok, g.3vardlovske (Bailroade-Fraight) (Osipov, V.T.) "JIVIUKOV7 S.11.p irizIl. make more extensive use of the possibili-Aes of routing at the departure point. Zhel.dor.transP. 43 110-4:51-54 ~.p 161" (MIFU 14:3) (Railroads-Freight) .:_') 1"r47 K I , I _ 11 ~ , A -OV ;,;, ~rzh, (Sverdlovsk) 'I ~ for in Cre as in g the trans '-t f relght car, f low. Aor. -r&nsp, 4' no.5.,21~24 ?-',Y 164~~ (Ml.U 18~2) -- - 0 - ST7'~I-j:OV~ S. e. - I USSII,'/Geolof;,v Jan 1947 PA 291'12 "New Data ReF-rarding tho Growth and Stratigraphy of 'Lena Limestone' (Lena River Between Ust'-Kut and Nokhtuyskoye),11 N. A. Gribova, S. P. Sitn-;kov, h pp "Dok Ak Nauk SSSRII Vol LV, No 2 Sub-mitted by V. A. Obruchev 19 Sep 1946. Te6inical data arisLng out of expedition in 1940 by A. A. Arsenlyev, in 1941 by A. A. PredtechQnskiy and otherg, Gives depths of various layers of clay and limestone.