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OHNISHI; Masaya Patent Filings

OHNISHI; Masaya

Patent Applications and Registrations

Patent applications and USPTO patent grants for OHNISHI; Masaya.The latest application filed is for "proximity sensor and electronic device".

Company Profile
1.5.7
  • OHNISHI; Masaya - Fukuyama City JP
  • OHNISHI; MASAYA - Sakai City JP
  • Ohnishi; Masaya - Kitakatsuragi-gun JP
  • Ohnishi; Masaya - Tokyo JP
  • Ohnishi; Masaya - Nara JP
  • Ohnishi; Masaya - Ibaraki-ken JP
  • Ohnishi, Masaya - Himeji-shi JP
  • Ohnishi; Masaya - Kitakatsuragi JP
*profile and listings may contain filings by different individuals or companies with the same name. Review application materials to confirm ownership/assignment.
Patent Activity
PatentDate
Proximity Sensor And Electronic Device
App 20210398486 - HAMAGUCHI; KOHJI ;   et al.
2021-12-23
Optical Proximity Sensor And Portable Terminal Apparatus
App 20200191920 - OHNISHI; MASAYA ;   et al.
2020-06-18
Photoreceiver/amplifier circuit, optical pickup device, and optical disk device
Grant 7,868,702 - Ohnishi January 11, 2
2011-01-11
Photoreceiver/amplifier Circuit, Optical Pickup Device, And Optical Disk Device
App 20080074198 - OHNISHI; Masaya
2008-03-27
P-type GaAs single crystal and its production method
Grant 7,175,707 - Itani , et al. February 13, 2
2007-02-13
Light receiving amplification element
Grant 7,002,881 - Okuda , et al. February 21, 2
2006-02-21
Method for growing single crystal of compound semiconductor and substrate cut out therefrom
Grant 6,878,202 - Ohnishi , et al. April 12, 2
2005-04-12
P-type GaAs single crystal and its production method
App 20040187768 - Itani, Kenya ;   et al.
2004-09-30
Light receiving amplification element
App 20030231574 - Okuda, Takanori ;   et al.
2003-12-18
Method for growing single crystal of compound semiconductor and substrate cut out therefrom
App 20020139296 - Ohnishi, Masaya ;   et al.
2002-10-03
Laminated films
App 20020027626 - Hiraishi, Masanori ;   et al.
2002-03-07
Light-receiving and amplifying device capable of switching between gain levels at high speed and obtaining a sufficient signal-to-noise ratio over a wide range in quantity of incident light
Grant 5,483,200 - Okabayashi , et al. January 9, 1
1996-01-09

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