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A very low column FPN and row temporal noise 8.9 M-pixel, 60 fps CMOS image sensor with 14bit column parallel SA- ADC | IEEE Conference Publication | IEEE Xplore

A very low column FPN and row temporal noise 8.9 M-pixel, 60 fps CMOS image sensor with 14bit column parallel SA- ADC


Abstract:

A 1.25-inch optical format, 8.9 M-pixel CMOS image sensor that employs a 4T pinned photodiode (P-PD) pixel and 14 bit column ADCs is reported. A 14 bit or 12 bit digital ...Show More

Abstract:

A 1.25-inch optical format, 8.9 M-pixel CMOS image sensor that employs a 4T pinned photodiode (P-PD) pixel and 14 bit column ADCs is reported. A 14 bit or 12 bit digital video signal is streamed out via 16-lane low-voltage, low-power differential serial output ports in 50 fps and 60 fps operations, respectively. Temporal noise floor of 2.8- rms and linear full-well of 27.8ke- were obtained at 60 fps operation. Row temporal noise and column FPN are as small as 0.31 e- rmsrms and 0.36 e- rms, respectively.
Date of Conference: 18-20 June 2008
Date Added to IEEE Xplore: 01 August 2008
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Conference Location: Honolulu, HI, USA
Japan Imaging Design Center, Mita Twin Building East Wing 12F, Micron Japan Limited, Minato, Tokyo, Japan
Japan Imaging Design Center, Mita Twin Building East Wing 12F, Micron Japan Limited, Minato, Tokyo, Japan
Japan Imaging Design Center, Mita Twin Building East Wing 12F, Micron Japan Limited, Minato, Tokyo, Japan
Japan Imaging Design Center, Mita Twin Building East Wing 12F, Micron Japan Limited, Minato, Tokyo, Japan
Micron Europe, Bracknell, UK
Micron Technology, Pasadena, CA, USA
Micron Technology, Boise, ID, USA
Micron Technology, Boise, ID, USA
Japan Imaging Design Center, Mita Twin Building East Wing 12F, Micron Japan Limited, Minato, Tokyo, Japan

Introduction

An 8.3 M-pixel, 1.25-inch optical format CMOS image sensor having a 3T pixel was reported [1], [2]. Whilst good image quality has been demonstrated with this previous sensor with 10bit digital resolution, higher sensitivity and higher dynamic range are ultimately required for high-end video use, such as broadcasting cameras or digital cinema cameras. In addition, the reset noise of the 3T pixel limited its low light performance.

Japan Imaging Design Center, Mita Twin Building East Wing 12F, Micron Japan Limited, Minato, Tokyo, Japan
Japan Imaging Design Center, Mita Twin Building East Wing 12F, Micron Japan Limited, Minato, Tokyo, Japan
Japan Imaging Design Center, Mita Twin Building East Wing 12F, Micron Japan Limited, Minato, Tokyo, Japan
Japan Imaging Design Center, Mita Twin Building East Wing 12F, Micron Japan Limited, Minato, Tokyo, Japan
Micron Europe, Bracknell, UK
Micron Technology, Pasadena, CA, USA
Micron Technology, Boise, ID, USA
Micron Technology, Boise, ID, USA
Japan Imaging Design Center, Mita Twin Building East Wing 12F, Micron Japan Limited, Minato, Tokyo, Japan
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References

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