DocumentCode
1291338
Title
Performance analysis of a color CMOS photogate image sensor
Author
Blanksby, Andrew J. ; Loinaz, Marc J.
Author_Institution
Lucent Technol., Bell Labs., Holmdel, NJ, USA
Volume
47
Issue
1
fYear
2000
fDate
1/1/2000 12:00:00 AM
Firstpage
55
Lastpage
64
Abstract
The performance of a color CMOS photogate image sensor is reported. It is shown that by using two levels of correlated-double sampling it is possible to effectively cancel all fixed-pattern noise due to read-out circuit mismatch. Instead the fixed-pattern noise performance of the sensor is limited by dark current nonuniformity at low signal levels, and conversion gain nonuniformity at high signal levels. It is further shown that the imaging performance of the sensor is comparable to low-end CCD sensors but inferior to that reported for high-end CCD sensors due to low quantum efficiency, high dark current, and pixel cross-talk. As such the performance of CMOS sensors is limited at the device level rather than at the architectural level. If the imaging performance issues can be addressed at the fabrication process level without increasing cost or degrading transistor performance, CMOS has the potential to seriously challenge CCD as the solid-state imaging technology of choice due to low power dissipation and compatibility with camera system integration
Keywords
CMOS image sensors; dark conductivity; image colour analysis; semiconductor device noise; camera system integration; color CMOS photogate image sensor; conversion gain nonuniformity; correlated-double sampling; dark current nonuniformity; fixed-pattern noise; pixel cross-talk; power dissipation; quantum efficiency; read-out circuit mismatch; signal levels; solid-state imaging technology; CMOS image sensors; Charge coupled devices; Charge-coupled image sensors; Circuit noise; Colored noise; Crosstalk; Image color analysis; Image sensors; Noise cancellation; Performance analysis;
fLanguage
English
Journal_Title
Electron Devices, IEEE Transactions on
Publisher
ieee
ISSN
0018-9383
Type
jour
DOI
10.1109/16.817567
Filename
817567
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