DocumentCode
962706
Title
A CMOS 3-D Imager Based on Single Photon Avalanche Diode
Author
Stoppa, David ; Pancheri, Lucio ; Scandiuzzo, Mauro ; Gonzo, Lorenzo ; Betta, Gian-Franco Dalla ; Simoni, Andrea
Author_Institution
Center for Sci. & Technol. Res. (ITC-irst), Trento
Volume
54
Issue
1
fYear
2007
Firstpage
4
Lastpage
12
Abstract
A 64-pixel linear array aimed at 3-D vision applications is implemented in a high-voltage 0.8 mum CMOS technology. The detection of the incident light signals is performed using photodiodes biased above breakdown voltage so that an extremely high sensitivity can be achieved exploiting the intrinsic multiplication effect of the avalanche phenomenon. Each 38times180-mum2 pixel includes, besides the single photon avalanche diode, a dedicated read-out circuit for the arrival-time estimation of incident light pulses. To increase the distance measurement resolution a multiple pulse measurement is used, extracting the mean value of the light pulse arrival-time directly in each pixel; this innovative approach dramatically reduces the dead-time of the pixel read-out, allowing a high frame rate imaging to be achieved. The sensor array provides a range map from 2 m to 5 m with a precision better than plusmn0.75% without any external averaging operation. Moreover, with the same chip, we have explored for the first time the implementation of an indirect time-of-flight measurement by operating the proposed active pixel in the photon counting mode
Keywords
CMOS image sensors; avalanche photodiodes; digital readout; sensor arrays; time-of-arrival estimation; 0.8 micron; 2 to 5 m; 3D vision; CMOS 3D imager; indirect time-of-flight measurement; laser radar; linear array; photon counting mode; range camera; sensor array; single photon avalanche diode; CMOS image sensors; CMOS technology; Diodes; Distance measurement; Image resolution; Photodiodes; Pixel; Pulse circuits; Pulse measurements; Sensor arrays; Avalanche photodiode; laser radar; photon counting; range camera; three-dimensional (3-D) image sensor; time of flight (TOF);
fLanguage
English
Journal_Title
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher
ieee
ISSN
1549-8328
Type
jour
DOI
10.1109/TCSI.2006.888679
Filename
4061031
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