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oxide semiconductor ( CMOS ) detectors may be on the verge ..... 4096 x 4096-pixel CMOS detector chip capable of matching ..... scientists were proposing CMOS detectors , then called active ..... dynamic range of CMOS detectors , a German research
temperature to which the device is cooled. Cooling of a CMOS detector generally requires lowering of the temperature across the ..... important consideration, as for instance in a battery-powered CMOS - detector -based instrument, then a trade-off analysis should be
Subwavelength antennas in the metal interconnection layer of an inexpensive CMOS chip couple terahertz radiation to the chip's electronics, enabling the creation of inexpensive, compact imagers.
Subwavelength antennas in the metal interconnection layer of an inexpensive CMOS chip couple terahertz radiation to the chip's electronics, enabling the creation of inexpensive, compact imagers.
As CMOS pixel sizes are aggressively scaled down to increase resolution, high-dynamic-range (HDR) techniques are required to maintain or even enhance imager performance
As CMOS pixel sizes are aggressively scaled down to increase resolution, high-dynamic-range (HDR) techniques are required to maintain or even enhance imager performance
A novel CMOS-based photodetector uses concentric octagonal structures to detect and demultiplex spatially separated communications signals emitted from an optical fiber.
Imagers based on monolithic complementary metal-oxide semiconductors (CMOS) were first introduced as a competitor to charge-coupled-device (CCD) detectors more than a dozen years ago.
Fueled by increasing market demands, CMOS image-sensor technology has been pushed to its limits by advances in semiconductor technology and pixel architecture. 1 Manufacturers have recently developed image sensors with pixel pitch below 2.5 µm.
Lateral PIN photodiode structures could enable dense, highly parallel, monolithic optical receivers.