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Failure and failure characterization of QFP package interconnect structure under random vibration condition

机译:随机振动条件下QFP封装互连结构的失效和失效表征

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Electronics installed in modern complex systems, like automotive and aircraft systems, are mainly subjected to mechanical vibrations in applications. The interconnection structure, as the mechanical fixing and electrical interconnection between the electrical device and the printed circuit board, is a key part in electronics. Presently, there are few researching articles on reliability of QFP interconnect structure under random vibration. In this paper, eight specimens of QFP100 with the self-testing real-time circuit have been tested to failure by subjecting to a narrow-band random vibration at its first natural frequency. The charging time of external capacitor in the self-test circuit has been extracted as the monitoring signal. Failure modes of interconnect structure have been analyzed in statistics. Then, the relationship between the monitoring signal and interconnect failure has been investigated. Finally, failure data, conforms to a two-parameter Weibull distribution, has been used to establish the life distribution of interconnect structure. Results show that there are four failure modes and three failure places in interconnect structure under random vibration, which is consistent with simulation results by FEM, and the charging time can characterize the failure and failure process of interconnect structure well.
机译:安装在现代复杂系统(如汽车和飞机系统)中的电子设备在应用中主要受到机械振动的影响。互连结构,作为电气设备和印刷电路板之间的机械固定和电气互连,是电子学中的关键部分。目前,关于随机振动下的QFP互连结构可靠性的研究文章很少。在本文中,八个带有自动测试实时电路的QFP100标本已经通过在其第一固有频率处经受窄带随机振动的方式进行了故障测试。自检电路中外部电容器的充电时间已被提取为监视信号。统计分析了互连结构的失效模式。然后,研究了监视信号和互连故障之间的关系。最后,使用符合两参数威布尔分布的失效数据来建立互连结构的寿命分布。结果表明,在随机振动条件下,互连结构存在四种失效模式和三个失效部位,这与有限元模拟结果吻合,充电时间可以很好地表征互连结构的失效和失效过程。

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