Cooling for CMOS Sensors

Improvements in CMOS sensor technology have resulted in increased readout speed and better image quality. CMOS sensors are less sensitive to temperature than CCDs, but image quality can deteriorate as temperatures exceed 50ºC. Peak image resolution can be maintained at elevated temperatures by using thermoelectric coolers to keep temperatures below its maximum operating condition.

CMOS Sensor

The ability to rapidly provide high quality images makes CMOS Sensors useful in machine vision & learning applications as well as object detection & recognition. Examples of these applications are machine vision for robots & drones, optical character recognition, barcode readers, scanners, astronomical and satellite photography and the enhancement of radar images for weather forecasting. CMOS Sensors also enable capturing of high-resolution images in light spectrums that are not visible to the human eye, which is particularly useful in high-end scientific cameras. Nevertheless, CMOS sensor technology can be used for applications other than imaging, such as humidity and temperature sensors, X-ray detectors, micro-hotplates and sensors for fluid flow.

Since higher temperatures affect image resolution, thermal protection is critical for CMOS Sensors. To prevent image quality from deteriorating, high temperature Peltier coolers (thermoelectric coolers) help reduce the sensor’s temperature while maintaining an acceptable noise level. Active cooling systems that feature thermoelectric coolers provide a thermal management solution to operate these critical devices within their ideal temperature range to ensure maximum performance. 
 

Tark Thermal Solutions Thermoelectric Coolers

HiTemp ETX Series thermoelectric coolers are designed to meet increased thermal demands of CMOS sensor applications. 

OptoTEC™ OTX/HTX Series is a miniature thermoelectric cooler designed for applications with tight geometric space constraints. 

OptoTEC™ MSX Series are ultra-small coolers used to deliver deep cooling to well below ambient in high-performance imaging sensing applications.

 

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