Advances in second generation ultra-low power CMOS active pixel sensor imagers for remote sensing, star tracking, optical comm and low cost solar array/antenna boom deployment metrology
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Engineering topics
Publications and source records attributed to Stirbl, R..
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This presentation gives the status of theoretical and experimental efforts at JPL, in the development of environmentally robust (rad hard and rad tolerant), ultra-low power, high performance cmos active pixel sensor (aps) imagers for star tracker/imager applications.
This paper gives the status of theoretical and experimental efforts at JPL in the development of environmentally robust (radiation hard and radiation tolerant), ultra-low power, high performance CMOS active pixel sensor (APS) imagers for star tracker/imager applications.
The goal of many applications that using hyperspectral images is to describe the constituent components of each pixel in a scene.
Radiation hardened/tolerant Active Pixel Sensor CMOS imagers that can be adaptively windowed with low power, on-chip control, timing, digital output and provide data-channel efficient on-chip compression, high bandwidth optical communications links are being designed and investigated to reduce size, weight and cost for common optics/hybrid architectures.