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Evaluation and modeling of adhesion layer in shock-protection structure for MEMS accelerometer

机译:MEMS加速度计防震结构中粘附层的评估与建模

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This paper presents evaluation and modeling of adhesion layer in shock-protection structure for a MEMS accelerometer fabricated by the multi-layer metal technology. The shock-protection structure is used to limit the proof-mass displacement at the input of excess acceleration. To clarify the mechanical characteristics of the shock-protection structure, we investigate the relationship between the input acceleration and the adhesion force on the adhesion layer in the multi-layer metal structure. For the multi-physics simulation, we propose an equivalent circuit model for a shock-protection module combined with the acceleration module. The adhesion force on the adhesion layer is examined by tensile tests in order to obtain the simulation parameters. The multi-physics simulation results are consistent with the measured capacitance-acceleration characteristics. The transient and capacitance-acceleration simulations at the input of high acceleration are also demonstrated to show the non-linear behavior of the shock-protection structure. Therefore, it is confirmed that the proposed module is useful for the multi-physics simulation to analyze the shock tolerance. (C) 2016 The Authors. Published by Elsevier Ltd.
机译:本文介绍了多层金属技术制造的MEMS加速度计的防震结构中粘附层的评估和建模。防震结构用于限制过大加速度输入时的质量位移。为了阐明防震结构的机械特性,我们研究了输入加速度与多层金属结构中粘附层上的粘附力之间的关系。对于多物理场仿真,我们提出了与加速模块结合使用的防震模块的等效电路模型。通过拉伸试验检查在粘合层上的粘合力,以获得模拟参数。多物理场仿真结果与测得的电容加速特性一致。高加速度输入时的瞬态和电容加速度仿真也被证明可以显示冲击防护结构的非线性行为。因此,证实了所提出的模块对于多物理场仿真以分析冲击耐受性是有用的。 (C)2016作者。由Elsevier Ltd.发布

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