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INST YADERNYKH I

Overview
  • Total Patents
    43
About

INST YADERNYKH I has a total of 43 patent applications. Its first patent ever was published in 1973. It filed its patents most often in USSR (Union of Socialist Soviet Republics), Russian Federation and France. Its main competitors in its focus markets measurement and materials and metallurgy are NANJING SPECIAL GAS FACTORY CO LTD, SUZHOU HONRI AIRCLEAN TECH CO LTD and KNTECH INC.

Patent filings in countries

World map showing INST YADERNYKH Is patent filings in countries

Patent filings per year

Chart showing INST YADERNYKH Is patent filings per year from 1900 to 2020

Focus industries

Focus technologies

Top inventors

# Name Total Patents
#1 Ofengenden Rafail G 8
#2 Berezin Fridrikh N 4
#3 Kisurin Vladimir A 4
#4 Svetlichnyj Petr N 4
#5 Kirishchuk Vladimir I 4
#6 Gavrilyuk Viktor I 3
#7 Vinogradov Vyacheslav I 3
#8 Grudev Kim L 3
#9 Golik Viktor V 3
#10 Ovchinnikov Boris M 3

Latest patents

Publication Filing date Title
RU1790007C Method of obtaining negative polarized ions hydrogen
SU1751224A1 Vacuum coating device
SU1670703A1 Radiation protection for targets of a heavy-current proton accelerator of a mesonic generator
SU1689963A1 Communication device of annular fiber-optics net
SU1569860A1 Device for signalling condition of dispersed objects
SU1552166A1 Device for interfacing analog-digital converters with digital computing machine
SU1707652A1 Integrated electrostatic method of measuring @@@ energy spectrum
SU1616800A1 Automatic operator
SU1506441A1 Device for producing clock signals
SU1575195A1 Multiprocessor system interfacing device
SU1591068A1 Device for shaping color and timing signals
SU1552201A1 Device for registration of pulses
SU1442869A1 Torsion pendulum for determining mechanical properties of materials
SU1405041A1 Device for generating clock signals
SU1401511A1 Information displaying device
SU1403068A1 Trunk line interface
SU1310793A1 Device for generating synchronization signals
SU1566233A1 Method of determining radiation heat release
SU1311006A1 Time pulse conditioner
RU1292469C Method of determining density distribution of charged particleb at flow cross-section