
Proposed and experimentally demonstrated is the CAOS-CMOS camera design that combines the coded access optical sensor (CAOS) imager platform with the CMOS multi-pixel optical sensor. The unique CAOS-CMOS camera engages the classic CMOS sensor light staring mode with the time-frequency-space agile pixel CAOS imager mode within one programmable optical unit to realize a high dynamic range imager for extreme light contrast conditions. The experimentally demonstrated CAOS-CMOS camera is built using a digital micromirror device, a silicon point-photo-detector with a variable gain amplifier, and a silicon CMOS sensor with a maximum rated 51.3 dB dynamic range. White light imaging of three different brightness simultaneously viewed targets, that is not possible by the CMOS sensor, is achieved by the CAOS-CMOS camera demonstrating an 82.06 dB dynamic range. Applications for the camera include industrial machine vision, welding, laser analysis, automotive, night vision, surveillance and multispectral military systems.
Dynamic range, Multi-spectral, Military applications, Industrial machine vision, CMOS integrated circuits, Cameras, Pixels, Variable gain amplifiers, Time-frequency space, Optical units, Security systems, Military systems, Optical sensors, High dynamic range, Computer vision, Voltage regulators, Digital micro-mirror device
Dynamic range, Multi-spectral, Military applications, Industrial machine vision, CMOS integrated circuits, Cameras, Pixels, Variable gain amplifiers, Time-frequency space, Optical units, Security systems, Military systems, Optical sensors, High dynamic range, Computer vision, Voltage regulators, Digital micro-mirror device
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