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SANKT PETERBURGSKIJ INST TEKST

Overview
  • Total Patents
    36
About

SANKT PETERBURGSKIJ INST TEKST has a total of 36 patent applications. Its first patent ever was published in 1990. It filed its patents most often in Russian Federation. Its main competitors in its focus markets machines are UCHAMA KOGYO KK, TECHNI MODUL ENGINEERING and COPE ALLMAN INTERNAT LTD.

Patent filings in countries

World map showing SANKT PETERBURGSKIJ INST TEKSTs patent filings in countries
# Country Total Patents
#1 Russian Federation 36

Patent filings per year

Chart showing SANKT PETERBURGSKIJ INST TEKSTs patent filings per year from 1900 to 2020

Focus industries

# Industry
#1 Machines

Focus technologies

Top inventors

# Name Total Patents
#1 Tarakanov Boris M 3
#2 Bogomolov Konstantin L 3
#3 Motsepuro Nikolaj M 3
#4 Dubska Zhanna V 3
#5 Romanov Viktor E 3
#6 Razdomakhin Nikolaj N 2
#7 Akhmatov Valerij L 2
#8 Plugin Aleksandr I 2
#9 Tikhonov Gennadij V 2
#10 Surzhenko Evgenij Ya 2

Latest patents

Publication Filing date Title
RU2058451C1 Method of forming fabric in loom
RU2057827C1 Device for cloth weaving
RU2046629C1 Filter for removal of resinous substances and mechanical impurities from monoethanolamine solutions
RU2049177C1 Device for wool cleaning
RU2011530C1 Method for laser welding of thermoplastic materials
RU2056048C1 Method for detection of strength of connection between braid and warp in armored thread
RU2027992C1 Method of evaluation of straightening of fibres
RU2009974C1 Device for thread reeling up
RU2034654C1 Method of entrapping waste reagents
RU2009465C1 Method for voltamperometric detection of inhibitors of radical polymerization of phenolic type
RU2009650C1 Means for protecting from low temperature
RU2001981C1 Compound for neutralization of documents and books based on paper
RU2005828C1 Method of fibrous material making
RU2026905C1 Fiber material molding device
RU2003267C1 Shock-absorbing spacer
RU2005392C1 Protective trousers
RU2004165C1 Shock-absorbing gasket
RU2002402C1 Method and device for row-cotton characteristics determining
RU2036443C1 Method of measurement of temperature of object
RU2008378C1 Spinning mechanism