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Publication


Featured researches published by Hiroshige Goto.


asian solid state circuits conference | 2006

A 1/2.5 inch 5.2Mpixel, 96dB Dynamic Range CMOS Image Sensor with Fixed Pattern Noise Free, Double Exposure Time Read-Out Operation

Yoshitaka Egawa; Hidetoshi Koike; Ryuta Okamoto; Hirofumi Yamashita; Nagataka Tanaka; Junichi Hosokawa; Kenichi Arakawa; Hiroaki Ishida; Hideaki Harakawa; Takayuki Sakai; Hiroshige Goto

A 1/2.5 inch, 5.2 Mpeixel CMOS image sensor with wide dynamic range operation mode is developed and its effectiveness for high contrast scene pictures is verified. The adopted algorithm for this operation is inherently free from fixed pattern noise generation which often resists the realization of mass production level wide dynamic range image sensors. The attained dynamic range is 96 dB with 12 bit output scheme.


Archive | 2001

Amplification type solid-state imaging device having a potential detecting circuit for each unit cell and high-speed readout method thereof

Hiroshige Goto


Archive | 1988

Manufacturing method of semiconductor device having CCD and peripheral circuit

Hiroshige Goto


Archive | 2006

Amplification-type CMOS image sensor of wide dynamic range

Yoshitaka Egawa; Ryuta Okamoto; Shinji Ohsawa; Hiroshige Goto


Archive | 2007

Solid-state image sensor using junction gate type field-effect transistor as pixel

Hiroshige Goto


Archive | 2006

Cmos (complementary metal oxide semiconductor) type solid-state image pickup device using n/p+ substrate in which n-type semiconductor layer is laminated on p+ type substrate main body

Ikuko Inoue; Hiroshige Goto; Hirofumi Yamashita; Hisanori Ihara; Nagataka Tanaka; Tetsuya Yamaguchi


Archive | 1991

Solid-state image pickup device having shared output line for photoelectric conversion voltage

Hiroshige Goto


Archive | 2007

Amplification-type solid-state image sensing device

Tetsuya Yamaguchi; Hiroshige Goto


Archive | 2001

Solid-state imaging system

Hiroshige Goto


Archive | 2005

Solid-state imaging device, digital camera, and digital video camera

Yoshitaka Egawa; Hiroshige Goto

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