Design method of triaxial vibration fixture for complex integrated circuits

Xiaoqiang Wang, Bin Li, Chuanjin Deng, Rui Deng, Ruolei Wang, Kun Jiang
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Abstract

In view of the harsh conditions of vibration test of complex integrated circuits in aerospace and the complex characteristics of chip packaging, the vibration fixture optimization design method based on topology optimization and multi-objective genetic algorithm is adopted to optimize the fixture structure design for a complex integrated circuit in PGA273 for aerospace. The sweep frequency vibration and random vibration response of the fixture structure are simulated and analyzed. Finally, the validity and rationality of the fixture design was proved by experiments, which effectively solve the problems of test resonance, poor dynamic response and excessive fixture mass.
复杂集成电路三轴振动夹具的设计方法
针对航空航天复杂集成电路振动试验的苛刻条件和芯片封装的复杂性特点,采用基于拓扑优化和多目标遗传算法的振动夹具优化设计方法,对航空航天PGA273复杂集成电路的夹具结构进行优化设计。对夹具结构的扫频振动和随机振动响应进行了仿真分析。最后,通过实验验证了夹具设计的有效性和合理性,有效地解决了测试共振、动态响应差和夹具质量过大等问题。
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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