Learn more

GNI ENERGETICHESKY INST

Overview
  • Total Patents
    630
About

GNI ENERGETICHESKY INST has a total of 630 patent applications. Its first patent ever was published in 1966. It filed its patents most often in USSR (Union of Socialist Soviet Republics), Germany and Russian Federation. Its main competitors in its focus markets environmental technology, electrical machinery and energy and machines are LIUZHOU DONGHOU BIOLOGY ENERGY TECHNOLOGY CO LTD, KLAUDY PETER DIPL ING DR TECHN and MIYAKI ELECTRIC MFG.

Patent filings per year

Chart showing GNI ENERGETICHESKY INSTs patent filings per year from 1900 to 2020

Top inventors

# Name Total Patents
#1 Ermakov Vasilij V 67
#2 Popov Vladimir A 46
#3 Chukhanov Zinovij F 26
#4 Akhmedov Rustam B 23
#5 Saparov Mikhail I 21
#6 Akhobadze Guram N 18
#7 Rybin Igor V 18
#8 Mikhajlov Valentin N 17
#9 Natalkin Aleksandr V 16
#10 Fadeev Sergej A 16

Latest patents

Publication Filing date Title
RU2043582C1 Reflecting element and method of its manufacture
RU1824653C Method for raising insulation electric strength of high-voltage devices with liquid dielectric
RU2019898C1 Mhd power plant of open type
RU2010228C1 Optoelectronic meter of speed of object movement
RU1815525C Solar collector
RU1776439C Control device for boiler plant precipitators
RU1773928C Method of and device for processing of solid fuel
RU1768304C Device for checking efficiency of electric filter operation
RU1789910C Device for discrete measurement of mass of effluents of solid particles with stack gases
RU1807094C Method for manufacturing selective coating for solar energy absorption
SU1749972A1 Power direction relay
RU2020617C1 Boiling shell-type water-moderated reactor
RU1821694C Device for measuring concentration of solid particles in flue gases
SU1759851A1 Method of producing bitumens
RU1793145C Boiler unit
RU2046314C1 Device for calibrating devices measuring concentration of solid particles in gases
SU1746258A1 Device for discrete measurement of solid particles concentration in gases
SU1754760A1 Method for thermal processing of high-ash fuel
RU1795534C Photoelectric system
SU1766940A1 Method for thermal processing of high-ash fuel