制冷型探测器杜瓦组件静态热设计软件的实现

Implementation of Steady Thermal Design Software for Refrigerated Detector Dewar Component

  • 摘要: 制冷型红外探测器在工业、医疗和监测等领域中具有广泛的应用,其中杜瓦组件由芯片组和杜瓦组成,杜瓦为芯片提供必需、可靠的工作环境及光机电接口。杜瓦热设计过程中,芯片组热功耗、杜瓦热负载、被冷却物体的热质量、不同接触界面热阻和传热温差等需要准确计算以便于选配制冷机,保证器件在全温区下降温时间和功耗等指标的实现。目前,相关计算通过人为实现,易出错且效率低。对此,本文通过分析相关理论,提出了利用软件辅助快速计算相关热功耗的方案,完成了杜瓦组件静态热设计软件的开发,对于提升热设计的准确度和效率提供了支持,对于制冷机选配和组件整体性能保证等提供了参考依据。

     

    Abstract: Refrigerated infrared detectors have a wide range of applications in military, industry, medicine, and other fields. Dewar components are composed of chipsets and dewars. A dewar can provide the necessary and reliable working environment and optical, electronic, and mechanical interfaces for the chip. When designing dewar components, the thermal power consumption of the chipset, static heat load of the dewar, thermal mass of the dewar, and heat transfer temperature difference must all be calculated to facilitate the selection of refrigerators and ensure the realization of indicators such as refrigeration time and power consumption under the working conditions of the full temperature zone. Currently, the calculation of indicators is manual; however, these processes are prone to errors and have low efficiency. Therefore, this paper proposes a method that utilizes software to calculate thermal power consumption according to relevant theories and uses the C# language to develop software. This software provides support for improving the accuracy and efficiency of thermal design. It also provides key indicators for the selection of refrigerators and the overall performance guarantee of the components. With further refinement, this method is expected to become more accurate.

     

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