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Mechanical design and optimization of capacitive micromachined switch

机译:电容式微机械开关的机械设计与优化

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Design and optimization of a shunt capacitive micromachined switch is presented. The micromachined switch consists of a thin metal membrane called the "bridge" suspended over a center conductor, and fixed at both ends to the ground conductors of a coplanar waveguide (CPW) line. A static electromechanical model considering the residual stress effects is developed to predict the effective stiffness constant and the critical collapse voltage of the bridge for several typical bridge geometries. The deformation of the bridge and its contact behavior with the dielectric layer are analyzed using the finite element method (FEM) in order to explore a good contact field with different bridge geometries. Furthermore, a nonlinear dynamic model that captures the effects of electrostatic forces, elastic deformation, residual stress, inertia, and squeeze film damping is developed, and is used for predicting the switching speed (including the switching-down and the switching-up time) and the Q-factor. The effects of variation of important parameters on the mechanical performance have been studied in detail, and the results are expected to be useful in the design of optimum shunt capacitive micromachined switch. The results may also be useful in the design of actuators with membranes or bridges. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 14]
机译:提出了并联电容微机械开关的设计与优化。微机械开关由悬浮在中心导体上的金属薄膜(称为“桥”)组成,并两端固定在共面波导(CPW)线的接地导体上。建立了考虑残余应力影响的静态机电模型,以预测几种典型桥梁几何形状的桥梁有效刚度常数和临界坍塌电压。使用有限元方法(FEM)分析了电桥的变形及其与电介质层的接触行为,以探索不同电桥几何形状的良好接触场。此外,开发了一种非线性动态模型,该模型捕获静电力,弹性变形,残余应力,惯性和挤压膜阻尼的影响,并用于预测开关速度(包括断开和接通时间)和Q因子。详细研究了重要参数的变化对机械性能的影响,并且预期该结果将对最佳并联电容微机械开关的设计有用。该结果在设计带有膜片或桥的执行器时也可能有用。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:14]

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