U.S. patent application Ser. No. 09/426,452, filed Oct. 25, 1999, Stark. |
U.S. patent application Ser. No. 09/516,168, filed Feb. 29, 2000, Stark. |
U.S. patent application Ser. No. 09/629,703, filed July 31, 2000, Stark. |
U.S. patent application Ser. No. 09/993,917, filed Nov. 27, 2001, Stark. |
U.S. patent application Ser. No. 10/332,151, filed Jan. 6, 2003, Stark. |
Roger Paniacci et al., “Programmable multiresolution CMOS active pixel sensor”, 72/SPIE, vol. 2654, 1996, pp. 72-79. |
Zhimin Zhou et al., “Frame Transfer CMOS Active Pixel Sensor with Pixel Binning”, IEEE Transactions on Electron Devices, vol. 44, No. 10, Oct. 1997, pp. 1764-1768. |
Lisa G. McIlarth et al., “Design and Analysis of 512×768 Current-Mediated Active Pixel Array Image Sensor”, IEEETransactions on Electron Devices, vol. 44, No. 10, Oct. 1997, pp. 1706-1715. |
R. Daniel McGrath et al., “Current Mediated, Current-Reset 768×512 Active Pixel Sensory Array”, ISC97/Session 11/Imaging Circuits and Systems/Paper FA 11.2, p. 182-183. |
Chih-Cheng Hseih et al., “A new Cryogenic CMOS Readout Structure for Infrared Focal Plane Array”, IEEE Journal of Solid-State Circuits, vol. 32, No. 8, Aug. 1997, pp. 1192-1199. |
Nanyoung Yoon et al., “A New Unit Cell of Current Mirroring Direct Injection Circuit for Focal Plane Arrays”, SPIE, vol. 3061, pp. 93-101. |
J. R. Willison, “Signal Detection and Analysis”, Handbook of optics, vol. 1, Part 6, Chapter 18, McGraw Hill, 1995. |
T. J. Tredwell, “Visible Array Detectors”, Handbook of Optics, vol. 1, Part 6, Chapter 22, McGraw Hill, 1995. |
L. J. Kozlowsky and W. F. Kosonocky, “Infrared Detector Arrays”, Handbook of Optics, vol. 1, Part 6, Chapter 2, McGraw Hill, 1995. |
Eric R. Fossum and Bedabrata Pain, “Infrared Readout Electronics for Space Science Sensors: State of the Art and Future Directions”, SPIE, vol. 2020, Infrared Technology XIX (1993), pp. 262-285. |
Orly Yadid Pecht et al.: “Optimization of Noise and Responsivity in CMOS Active Sensors for Detection of Ultra Low Light Levels”, SPIE vol. 3019, 0277-786X/97, pp. 125-136. |
Eric R. Fossum—“Ultra Low Power Imagingj Systems Using CMOS ImageSensor Technology”, SPIE vol. 2267, 0-8194-1591-X/94, pp. 107-111. |
Eric R. Fossum: “Active Pixel Sensors: Are CCD's Dinosaurs?”, SPIE vol. 1990, 0-8194-1133-7/93, pp. 2-14. |
Wolfgang Wittenstein et al: “Simulation Study on Fixed Pattern Noise and MRTD”, SPIE vol. 2252. 0-8194-1911-7/95, pp. 489-601. |
E. Mottin et al.: “An Improved Architecture of IRFPA Readout Circuits”, SPIE vol. 3061, 0277-786/97, pp. 117-126. |
B. Pain et al.: “Low-Power, Low-Noise Analog Circuits for on Focal-Plane Signal Processing of Infrared Sensors”, In infrared Detectors and Instrumentation, Pro. SPIE, vol. 1946, pp. 365-374, 1993. |
Steven Decker et al.: “A 256×256 CMOS Imaging Array with Wide Dynamic Range Pixels and a Column-Parallel Digital Output”, IEEE Journal of Solid-State Circuits, vol. 33, No. 12, Dec. 1998, pp. 2081-2091. |
Chih-Cheng et al.: “A new CMOS Readout Circuit Design for IRFPA with Adaptive Gain Control and Current-Mode Background Suppression”, 0703-3073-0/96, 1996 IEEE, pp. 137-140. |
Hon-Sum Wong: “Technology and Device Scalling Considerations for CMOS Imagers”, IEEE Transactions on Electron Devices, vol. 43, No. 12, Dec. 1996, pp. 2131-2142. |
Hon-Sum Wong et al.: “CMOS Active Pixel Image Sensors Fabricated Using a 1.8V, 0.25 gm CMOS Technology”, 0-7803-3393-4, 1996 IEEE, IEDM 96-915, pp. 35.5.1-35.5.4. |
Orly Yadid-Pecht et al. “Wide Intrascene Dynamic Range CMOS APS Using Dual Sampling, ” IEEE Trans. On Electron Devices, vol. 44, No. 10, Oct. 1997, pp. 1721-1723. |
Orly Yadid-Pecht et al., “CMOS Active Pixel Sensor Star Tracker with Regional Electronic Shutter,” IEEE Journal of Solid State Circuits, vol. 32, No. 2, Feb. 1997, pp. 285-288. |
Orly Yadid-Pecht et al., “Wide Dynamic Range APS Star Tracker,” SPIE, vol. 2654, 1996, pp. 82-92. |
Christopher Clark et al., “Application of APS Arrays to Star and Feature Tracking Systems,” SPIE, vol. 2810, 1996, pp. 116-120. |
Orly Yadid-Pecht et al., “A Random Access Photodiode Array for intelligent Image Capture,” IEEE Transactions on Electron Devices, vol. 28, No. 8, Aug. 1991, pp. 1772-1780. |
Sarit Chen et al., “Adaptive Sensitivity CCD Image Sensor,” SPIE, vol. 2415, 1995, pp. 303-309. |
G.P. Weckler, “Operation of p-n junction photodetectors in photon flux integration mode,” IEEE JSSC, vol. SC-2, No. 3, Sept. 1967. |
R. Dyck and G. Weckler, “Integrated arrays of silicon photodetectors for image sensing,” IEEE Trans. Electron Devices, vol ED-15, No. 4, Apr. 1968, 196-201. |
J.I. Nakamura et al., “CMOS active pixel image sensor with simple floatng gate pixels,” IEEE Trans. Electron Devices,. vol. 42, No. 9, Sept, 1995, pp. 1693-1694. |
E-S Eid et al., “A 256×256 CMOS active pixel image sensor,” SPIE, vol. 2415, Sept. 1995. |
H. Yamashita et al., “A 2/3-in 2 million pixel STACK-CCD HDTV Imager,” IEEE JSSC, vol. 30, No. 8, Aug. 1995, pp. 881-889. |
R.H. Nixon et al., “256 ×256 CMOS active pixel sensor camera-on-a-chip,” IEEE JSSC, vol. 31, No. 12, Dec. 1996. |
B. Dierickx et al., “Random addressable active pixel image sensors,” SPIE, vol. 2950, Aug. 1996, pp. 2-7. |
D. Scheffer et al., “Random addressable 2048 ×2048 active pixel sensor,” IEEE Trans. Elec. Devices, vol. 44, No. 10, Oct. 1997, pp. 1716-1720. |
T. Nomoto et al., “A 4M-pixel CMD image sensor with block and skip access capablitiy,” IEEE Trans. Electron. Devices, vol. 44, No. 10, Oct. 1997, 1738-1746. |
Y. Iida et al., “A ¼-inch 330k square pixel progressive scan CMOS active image sensor,” IEEE JSSC, vol. 32, No. 11, Nov. 1997, pp. 2042-2047. |
S. Ohsawa et al., “Analysis of low fixed pattern noise cell structures for photconversion layer overlaid CCD or CMOS image sensors,” IEEE Trans. electron. Devices, vol. 44, No. 10, Oct. 1997. |
S. Kemeny et al., “CMOS active pixel sensor array with programmable multiresolution readout,” JPL, California Institute of Technology, 1994. |
Chamberlain S.G. and Lee J.P., “A Novel Wide Dynamic Range Silicon Photodetector and Linear Imaging Array”, IEEE Transactions on Electron Device, vol. Ed. 31, No. 2, Feb. 1984, pp. 175-182. |
Delbruck T. and C. Mead, “Analog VLSI Phototransduction by Continuous-Time, Adaptive, Logarithmic Phtoreceptor Circuits”, Tech. Rep. California Institute of Technology, Pasadena California 91125, 1994. URL:http:/www.pcmp.caltech.edu/anaprose/tobi.recep/. |
Fossum et al., “Application of the Active Pixel Sensor Concept to Guidance and Navigation”, SPIE, vol. 1949, paper 30, 1993. |