DocumentCode :
1080492
Title :
A 144 × 144 Current-Mode Image Sensor With Self-Adapting Mismatch Reduction
Author :
Wong, Yanyi L. ; Abshire, Pamela A.
Author_Institution :
Impinj Inc., Seattle
Volume :
54
Issue :
8
fYear :
2007
Firstpage :
1687
Lastpage :
1697
Abstract :
We present a novel CMOS continuous-current imager that uses nonvolatile floating-gate charge storage in each pixel for automatic cancellation of fixed-pattern noise (FPN) and vignetting artifacts. We demonstrate the ability to reduce image artifacts over a wide range of incident light intensities. Adaptation occurs for each pixel in parallel, using a unique pixel circuit that employs hot-electron injection in stable feedback to accurately match a reference value. The adaptation mechanism stores a reference image, which may be uniform for FPN cancellation or nonuniform for various imaging applications. The design has been fabricated in a commercially available 3-metal, 2-poly 0.5-mum standard CMOS technology. Experimental results confirm the ability to reduce the FPN variance by a factor of 178x at the intensity at which adaptation was performed, and by a factor of 34x over five orders of magnitude of intensity. Adaptation takes as little as 4 s and the 144 times 144 image can be acquired at 0.9 frames/s. During normal operation, the chip consumes 140 muW under standard office lighting conditions at room temperature.
Keywords :
CMOS image sensors; CMOS continuous-current imager; current-mode image sensor; fixed-pattern noise; hot-electron injection; nonvolatile floating-gate charge storage; self-adapting mismatch reduction; size 0.5 micron; CMOS image sensors; CMOS technology; Circuit noise; Feedback circuits; Image sensors; Image storage; Noise cancellation; Pixel; Secondary generated hot electron injection; Storage automation; Analog memories; automatic programming; calibration; error compensation; hot carriers; image sensors; insulated gate field-effect transistors (FETs);
fLanguage :
English
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher :
ieee
ISSN :
1549-8328
Type :
jour
DOI :
10.1109/TCSI.2007.902505
Filename :
4282090
Link To Document :
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