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首页> 外文期刊>Journal of Micromechanics and Microengineering >Cantilever beam electrostatic MEMS actuators beyond pull-in
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Cantilever beam electrostatic MEMS actuators beyond pull-in

机译:悬臂梁静电MEMS执行器超越了引入

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The operational range of electrostatic MEMS parallel plate actuators can be extended beyond pull-in in the presence of an intermediate dielectric layer, which has a significant effect on the behavior of such actuators. Here, we study the behavior of cantilever beam electrostatic actuators beyond pull-in using a beam model along with a dielectric layer. The results from the simple beam model are validated with 3D simulations performed in CoventorWare (TM). Three possible static configurations of the beam are identified over the operational voltage range. We call them floating, pinned and flat; the latter two are also called arc-type and S-type in the literature. We compute the voltage ranges over which the three configurations can exist and the points where transitions occur between these configurations. Voltage ranges are identified where bi-stable and tri-stable states exist. A classification of all possible transitions (pull-in and pull-out as well as transitions we term pull-down and pull-up) is presented based on the dielectric layer parameters. Dynamic stability analyses are presented for the floating and pinned configurations. For high dielectric layer thickness, discontinuous transitions between configurations disappear and the actuator has smooth predictable behavior, but at the expense of lower overall tunability.
机译:在存在中间介电层的情况下,静电MEMS平行板致动器的工作范围可以扩展到引入以外,这对此类致动器的性能具有重大影响。在这里,我们使用梁模型和介电层研究悬臂梁静电致动器的行为,而不是引入。简单光束模型的结果通过CoventorWare(TM)中执行的3D仿真进行了验证。在工作电压范围内,确定了光束的三种可能的静态配置。我们称它们为浮动,固定和平坦;后两者在文献中也称为弧型和S型。我们计算三种配置可以存在的电压范围以及这些配置之间发生过渡的点。确定存在双稳态和三稳态状态的电压范围。根据介电层参数,给出了所有可能的过渡(上拉和下拉以及我们称为下拉和上拉的过渡)的分类。提出了针对浮动和固定配置的动态稳定性分析。对于高介电层厚度,配置之间的不连续过渡消失了,致动器具有平滑的可预测行为,但以降低整体可调性为代价。

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