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In-situ service load monitoring of automotive electronic systems using silicon-based piezoresistive stress sensor

机译:使用硅基压阻应力传感器的汽车电子系统的原位服务负荷监控

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摘要

It is expected that more and more complex (integrated) automotive electronics will be adopted in systems. These advanced electronics are critical for passenger safety. Documenting the in-situ loading is, thus, very important for accurate reliability prognostics. In this study, we propose a piezoresistive stress sensor to detect the in-situ loading of an automotive electronic control unit (ECU). A load metric directly related to the in-situ loading is defined by considering the in-situ stress values of twelve measurement cells in each sensor. The sensor and the proposed load metric are implemented to document the in-situ loading that results from the local coefficient of thermal expansion mismatch between the electrical components and printed circuit board (PCB) in advanced ECUs. The validity of the proposed metric is corroborated by failure analysis of solder joints of multilayer ceramic capacitors (MLCCs).
机译:预计系统将采用越来越复杂的(集成的)汽车电子产品。这些先进的电子设备对于乘客安全至关重要。因此,记录原位加载,对准确的可靠性预测非常重要。在这项研究中,我们提出了一种压阻式应力传感器,以检测汽车电子控制单元(ECU)的原位加载。通过考虑每个传感器中的12个测量单元的原位应力值,定义与原位加载直​​接相关的负载度量。该传感器和所提出的负载度量被实施为记录原位加载,从而通过先进的ECU中的电气部件和印刷电路板(PCB)之间的局部热膨胀不匹配产生的原位加载。通过多层陶瓷电容器(MLCCs)的焊点的故障分析,所提出的度量的有效性得到证实。

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