设计参数的变化对梳子驱动执行器位移和驱动电压的影响

A. Priyadarshini, R. Mahapatra
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引用次数: 1

摘要

梳子驱动驱动器由两个交错梳状结构组成,其中一个梳状结构固定,另一个梳状结构与弹簧结构连接。提出了一种采用固定-固定梁、蟹腿弯曲梁和折叠弯曲梁三种不同弹簧结构的静电梳状驱动作动器的设计方案。这里考虑的设计参数是光束长度、梳指数目和梳指之间的间隙。研究了它们的变化对动梳位移和驱动电压的影响。这种致动器广泛用于微定位应用,如微镊子。在相同的驱动电压下,通过增加梁长、增加梳指数量和减小梳指之间的间隙,实现了梳状驱动驱动器的位移增加。光束长度从280μm变化到320μm,移动梳指数从8个变化到32个,梳指间隙从7μm减小到1.6μm。为了降低更大位移对驱动电压的要求,对结构进行了进一步的修改,包括使用三折弯曲和锯齿状梳状指,从而将驱动电压要求降低到17V,将位移增加到11.102μm,将电容增加到7819.728pF。多晶硅是用于设计的结构材料。本研究使用的仿真软件是COMSOL Multiphysics,该软件提供了用于计算活动手指位移的有限元分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of variation of design parameters on displacement and driving voltage of comb-drive actuators
A comb-drive actuator consists of two interdigitated comb structures, where one comb is fixed and the other comb is connected to a spring structure. A design of electrostatic comb-drive actuator is presented in this paper with different spring configurations i.e. fixed-fixed beam, crab-leg flexure beam and folded-flexure beam. The design parameters considered here are beam length, number of comb fingers and gap between the comb fingers. The effect of their variation on displacement and driving voltage of movable comb has been studied. Such actuators find extensive use in micro-positioning applications such as micro-tweezers. An increased displacement of comb drive actuator is subsequently accomplished for the same driving voltage, for folded-flexure beam configuration with increased beam length, higher number of comb-fingers and reduced gap between the comb-fingers. The beam length has been varied from 280μm to 320μm, number of moving comb fingers from 8 to 32 and gap between fingers has been reduced from 7μm to 1.6μm. The structures are further modified to decrease the requirement of driving voltage for even larger displacement, which include use of three-folded flexure and usage of jagged-shaped comb fingers and thus reducing requirement of driving voltage to 17V, increasing displacement to 11.102μm and increasing capacitance to 7819.728pF. Polysilicon is the structural material used for the designs. The simulation software used in this study is COMSOL Multiphysics, which offers Finite Element Analysis for calculation of displacement of movable fingers.
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