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Novel integrated shock protection for MEMS

机译:MEMS的新型集成防震保护

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This paper reports the design and analysis of two novel concepts for shock protection of MEMS devices using nonlinear springs and soft coatings. Hard shock stops have conventionally been used for shock protection for MEMS devices, but their operation generates secondary impacts and unwanted device oscillations. The two concepts described herein aim to improve shock protection by reducing secondary impacts and dissipating energy. We analyze the merits and demerits of each concept using simulation methods and also suggest ranges of shock stop design parameters to enhance performance. Doing so reveals that the nonlinear spring shock stops are capable of reducing impulses by over 90% while soft coatings may reduce impulses by 40%.
机译:本文报告了使用非线性弹簧和软涂层对MEMS器件进行防震保护的两个新颖概念的设计和分析。硬冲击止动件通常已被用于MEMS器件的冲击保护,但是它们的操作会产生二次冲击和不必要的器件振荡。本文所述的两个概念旨在通过减少二次冲击和耗散能量来改善防震性能。我们使用仿真方法分析了每个概念的优缺点,并提出了防震器设计参数范围以提高性能。这样做表明,非线性弹簧减震器能够将脉冲减少90%以上,而软涂层可以将脉冲减少40%。

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