Title :
Architectures for High Dynamic Range, High Speed Image Sensor Readout Circuits
Author :
Kavusi, Sam ; Ghosh, Kunal ; Abbas El Gamal
Author_Institution :
Dept. of Electr. Eng., Stanford Univ., CA
Abstract :
The stringent performance requirements of many infrared imaging applications warrant the development of precision high dynamic range, high speed focal plane arrays. In addition to achieving high dynamic range, the readout circuits for these image sensors must achieve high linearity and SNR at low power consumption. Two high dynamic range image sensor schemes that have been developed for visible range imaging were reviewed first and discuss why they cannot meet the stringent performance demands of infrared imaging. A new dynamic range extension scheme, folded multiple capture, was then described that can meet these performance requirements. Dynamic range is extended using synchronous self-reset while high SNR is maintained using few non-uniformly spaced captures and least-squares fit to estimate pixel photocurrent. The paper concludes with a description of a prototype of this architecture targeted for 3D-IC IR focal plane arrays
Keywords :
detector circuits; focal planes; readout electronics; 3D-IC IR focal plane arrays; dynamic range extension; folded multiple capture; high speed focal plane arrays; image sensor readout circuits; infrared imaging; least-squares fit; pixel photocurrent estimation; synchronous self-reset; visible range imaging; Circuits; Dynamic range; Energy consumption; Image sensors; Infrared image sensors; Infrared imaging; Linearity; Optical imaging; Photoconductivity; Prototypes;
Conference_Titel :
Very Large Scale Integration, 2006 IFIP International Conference on
Conference_Location :
Nice
Print_ISBN :
3-901882-19-7
DOI :
10.1109/VLSISOC.2006.313269