首页> 外文会议>2011 Symposium on Design, Test, Integration and Packaging of MEMS/MOEMS >Reliable system-level models for electrostatically actuated devices under varying ambient conditions: Modeling and validation
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Reliable system-level models for electrostatically actuated devices under varying ambient conditions: Modeling and validation

机译:在变化的环境条件下用于静电驱动设备的可靠的系统级模型:建模和验证

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摘要

We present a physics-based multi-energy domain macromodel that allows - in general - for the efficient simulation of any electrostatic actuator within standard IC frameworks and apply it exemplarily to an RF-MEMS switch. The predictive power of this macromodel, which depends crucially on the quality of the applied damping and contact models, has been evaluated by white light interferometer and laser vibrometer measurements. It turned out that the models for viscous damping as well as for the electromechanical energy domain are in very good agreement with the experiments while the applied standard contact model fails in reproducing the measured contact phenomena. Based on these findings suggestions for improved system-level contact models are discussed.
机译:我们提出了一种基于物理学的多能量域宏模型,该模型通常可以对标准IC框架内的任何静电致动器进行有效仿真,并将其示例性地应用于RF-MEMS开关。宏模型的预测能力主要取决于所应用的阻尼模型和接触模型的质量,已通过白光干涉仪和激光振动仪的测量对其进行了评估。事实证明,粘滞阻尼模型和机电能域模型与实验非常吻合,而所应用的标准接触模型无法重现所测得的接触现象。基于这些发现,讨论了改进系统级联系模型的建议。

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