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HOTEYE: A Novel Thermal Camera using Higher Operating Temperature Infrared Detectors

机译:HOTEYE:使用更高工作温度红外探测器的新型热像仪

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Conventional high performance infrared (IR) sensors need to be cooled to around 80K in order to achieve a high level of thermal sensitivity. Cooling to this temperature requires the use of Joule-Thomson coolers (with bottled gas supply) or Stirling cycle cooling engines, both of which are bulky, expensive and can have low reliability. In contrast to this, higher operating temperature (HOT) detectors are designed to give high thermal performance at an operating temperature in the range 200K to 240K. These detectors are fabricated from multi-layer mercury cadmium telluride (MCT) structures that have been designed for this application. At higher temperatures, lower cost, smaller, lighter and more reliable thermoelectric (or Peltier) devices can be used to cool the detectors. The HOTEYE thermal imaging camera, which is based on a 320x256 pixel HOT focal plane array, is described in this paper and performance measurements reported.
机译:常规的高性能红外(IR)传感器需要冷却到80K左右,以实现高水平的热敏性。冷却至该温度需要使用焦耳-汤姆森冷却器(带有瓶装气)或斯特林循环冷却发动机,这两种发动机都体积大,价格昂贵并且可靠性低。与此相反,较高的工作温度(HOT)检测器设计为在200K至240K的工作温度范围内具有较高的热性能。这些探测器由为该应用设计的多层汞碲化镉(MCT)结构制成。在较高的温度下,可以使用成本更低,更小,更轻和更可靠的热电(或Peltier)设备来冷却探测器。本文介绍了基于320x256像素HOT焦平面阵列的HOTEYE热成像相机,并报告了性能测量结果。

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