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Performance analysis of low-cost uncooled microbolometer infrared detectors

机译:低成本未加工微泡器红外探测器的性能分析

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Uncooled microbolometer infrared detectors are being developed for a wide range of thermal imaging applications. To design and manufacture high-performance microbolometer infrared detectors, numerical calculation and simulation is necessary. In this work, finite element methods are performed to simulate the transient temperature field of thermistor films of microbolometer infrared detectors. The varisized supporting legs' impacts on the performance of detectors are discussed. At the same time, variation of the bias voltage and the substrate temperature's impacts on total noise, noise equivalent to temperature difference (NETD) and detectivity (D~*) are also discussed in details. These performance analyses are helpful for optimum design of microbolometer infrared detectors' structure and rational choice of working temperature of infrared focal plane arrays.
机译:正在开发加工的微泡计红外探测器,用于各种热成像应用。设计和制造高性能微泡器红外探测器,需要数值计算和仿真。在这项工作中,执行有限元方法以模拟微电压仪红外探测器热敏电阻膜的瞬态温度场。讨论了变化的支撑腿对探测器性能的影响。同时,详细讨论了偏置电压的变化和基板温度对总噪声,相当于温度差(NetD)和探测(D〜*)的噪声。这些性能分析有助于为红外焦平面阵列的微电位器红外探测器结构的优化设计和理性选择。

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