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KANO HAJIME

Overview
  • Total Patents
    28
About

KANO HAJIME has a total of 28 patent applications. Its first patent ever was published in 1974. It filed its patents most often in Japan. Its main competitors in its focus markets measurement and optics are DELSING JERKER, PANAMETRICS and PCME LTD.

Patent filings in countries

World map showing KANO HAJIMEs patent filings in countries
# Country Total Patents
#1 Japan 28

Patent filings per year

Chart showing KANO HAJIMEs patent filings per year from 1900 to 2020

Focus industries

# Industry
#1 Measurement
#2 Optics

Top inventors

# Name Total Patents
#1 Kano Hajime 12
#2 Tsurubayashi Kazuo 10
#3 Hironaga Katsuji 4
#4 Takahei Tetsuo 1
#5 Nishiura Masakame 1
#6 Sugimoto Kazuyoshi 1
#7 Ooba Kenkichi 1
#8 Araishi Kyoshi 1
#9 Sekoguchi Kotohiko 1
#10 Horii Hisashi 1

Latest patents

Publication Filing date Title
JPS6123943A Particle measuring device
JPS60194333A Apparatus for measuring concentration of dust
JPS6076645A Dust-concentration measuring apparatus
JPS5910374A Nondirectional multistage parallel plate type sizing instrument
JPS58153107A Device for measuring diameter and speed of particle simultaneously
JPS57110951A Humidity measuring method
JPS57153219A Signal treatment in void rate measuring device of two phase flow of gas and liquid
JPS5735719A Thermal type flowmeter
JPS57135914A Light flux rotating device
JPS5767841A Sizing device used for calibrating device for measuring device of mass and concentration of dust
JPS5745464A Measuring method for flow speed and humidity
JPS5740640A Temperature compensating method in humidity measuring device
JPS5730937A Humidity measuring method
JPS5726739A Method for measuring humidity
JPS5720666A Laser doppler flow speed meter using optical fiber
JPS5681421A Thermal type flowmeter
JPS5673317A Thermal-type flow meter
JPS5383678A Measuremetnt of grain size distribution of dust
JPS52117687A Collecting method for device for measuring concentration of dust mass
JPS52107899A Measuring method of dust diameter distribution by piezoelectric vibration method