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Packaging of thin film thermoelectric generators for autonomous sensor nodes

机译:用于自主传感器节点的薄膜热电发生器的包装

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This paper focuses on packaging of thin film thermoelectric generators (TEG) for energy harvesting applications in sensor nodes for the internet of things (IoT). The TEGs have to be robust against mechanical stress caused by the assembly and packaging process steps and the mismatch of the coefficients of thermal expansion of the used materials. In this work, the mechanical stability of TEGs was evaluated by using a shear force test apparatus and a four line bending test. Furthermore the influence of underfill and stress decoupling thermal adhesives on the mechanical performance was investigated. It could be shown that underfill between the two substrates improves the shear force stability of the investigated thermoelectric generators. During mechanical tests the internal electrical resistance of the modules was monitored. It was observed, that the electrical shutdown coincides with the mechanical shutdown of the generator. By using selected thermal adhesives with and without underfill a sufficient robustness of the thermoelectric generator against typical warpage as known from a standard molded land grid array (LGA) sensor package was achieved.
机译:本文重点介绍用于物联网(IoT)传感器节点中能量收集应用的薄膜热电发电机(TEG)的包装。 TEG必须坚固,以抵抗由组装和包装过程步骤以及所用材料的热膨胀系数不匹配引起的机械应力。在这项工作中,通过使用剪切力测试设备和四线弯曲测试评估了TEG的机械稳定性。此外,还研究了底部填充和应力去耦热粘合剂对机械性能的影响。可以表明,两个基板之间的底部填充提高了所研究热电发电机的剪切力稳定性。在机械测试过程中,将监视模块的内部电阻。观察到,电气停机与发电机的机械停机同时发生。通过使用带有或不带有底部填充剂的选定热敏粘合剂,热电发生器具有足够的鲁棒性,可抵抗标准模压焊盘栅格阵列(LGA)传感器封装中已知的典型翘曲。

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