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Pulse Tube Cryocoolers for Cooling Infrared Sensors

机译:用于冷却红外传感器的脉冲管低温冷却器

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This paper reviews recent advances in pulse tube cryocoolers and their application for cooling infrared sensors. There are many advantages of pulse tube cryocoolers over Stirling cryocoolers associated with the absence of moving parts in the cold head. Efficiencies have been improved considerably in the last few years to where they equal or even exceed the efficiencies of Stirling cryocoolers. The use of inertance effects and double inlets to improve the efficiencies will be discussed. Pulse tube cryocoolers are now being used or considered for use in cooling infrared detectors for many space applications. One disadvantage of pulse tube coolers is the difficulty in scaling them down to sizes as small as 0.15 W at 80 K while maintaining high efficiency. A second disadvantage is the larger diameter cold finger required for the same refrigeration power because of the presence of the pulse tube. These two disadvantages have limited their use so far in cooling infrared sensors for many military tactical applications. Progress in overcoming these disadvantages is discussed.
机译:本文回顾了脉冲管低温冷却器的最新进展及其在冷却红外传感器中的应用。与斯特林低温冷却器相比,脉冲管低温冷却器具有许多优势,这与冷头中没有活动部件有关。在过去几年中,效率已经得到了相当大的提高,达到或什至超过了斯特林冷冻机的效率。将讨论惯性效应和双入口的使用,以提高效率。脉冲管低温冷却器现已用于或考虑用于许多空间应用的红外探测器的冷却。脉冲管冷却器的一个缺点是在保持高效率的同时,难以将其缩小到80 W时小至0.15 W的尺寸。第二个缺点是,由于存在脉冲管,所以对于相同的制冷功率,需要更大直径的冷指。迄今为止,这两个缺点限制了它们在用于许多军事战术应用的红外冷却传感器中的使用。讨论了克服这些缺点的进展。

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