Advanced Thermopile IR Dual Line Sensor for Smart Home

C. Escriba, J. Roux, G. Soto-Romero, P. Acco, D. Bourrier, E. Campo, J. Fourniols
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Abstract

This article presents all steps between the advanced design and the production of CMOS compatible thermoelectric effect infrared sensors dedicated to smart home applications. It will start by making a comparison between thermopile, bolometer and pyroelectric technologies. Although sensitivity performances available with bolometers appear to be better at first sight, it is found that thermopiles have non-negligible advantages that make them more suitable for this application field. Then the different steps necessary for the design will be described, starting from the thermoelectric model of the sensor (temperature gradient, electrical sensitivity, etc.) and considering all steps up to technological manufacturing in a clean room. The results obtained on the structures produced on a specific computer-controlled measurement bench (temperature regulation with an onboard preamplification card) will be presented. Finally, the results prove that the square structures have better performances (S = 82 V/W and NETD = 208 mK).
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用于智能家居的先进热电堆红外双线传感器
本文介绍了专用于智能家居应用的CMOS兼容热电效应红外传感器的高级设计和生产之间的所有步骤。它将首先对热电堆、测辐射热计和热电技术进行比较。尽管测辐射热计的灵敏度性能乍一看似乎更好,但发现热电堆具有不可忽视的优势,使其更适合该应用领域。然后将描述设计所需的不同步骤,从传感器的热电模型(温度梯度、电灵敏度等)开始,并考虑到洁净室技术制造的所有步骤。将介绍在特定计算机控制的测量台(使用板载前置放大器卡进行温度调节)上生产的结构上获得的结果。最后,结果证明了方形结构具有更好的性能(S=82V/W,NETD=208mK)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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