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Mathematical Modeling of Switching Processes in Magnetically Controlled MEMS Switches

机译:磁控MEMS开关中开关过程的数学建模

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摘要

The operating principle of magnetically controlled microelectromechanical system (MEMS) switches is based on controlling the beam movement under the influence of a magnetic field. Currently, there is a MEMS switch design with a flexible ferromagnetic electrode in the form of a fixed-terminal beam, with an electrode fastened on a straight or cranked anchor. The basic performance characteristics of magnetically controlled MEMS switches (service life, sensitivity, contact resistance, fast response) are largely determined by the flexible electrode design. To ensure the stable and controlled motion of the flexible electrode, it is necessary to provide the optimal design of a flexible electrode.
机译:磁控微机电系统(MEMS)开关的工作原理是基于在磁场影响下控制电子束运动的。当前,存在一种MEMS开关设计,其具有以固定端子梁的形式的柔性铁磁电极,其中电极固定在直的或曲柄的锚上。磁控MEMS开关的基本性能特征(使用寿命,灵敏度,接触电阻,快速响应)在很大程度上取决于柔性电极设计。为了确保柔性电极的稳定和受控运动,有必要提供柔性电极的最佳设计。

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