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POWER SWITCH SYSTEM BASED ON MICROELECTROMECHANICAL SWITCH

机译:基于微机电开关的电源开关系统

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A power switching system combining a MEMS (Microelectromechanical systems) switch and an arc suppression circuit has been developed. The system, using a single 3mm × 3mm MEMS switch die coupled with protection electronics, has been demonstrated to switch both resistive loads and inductive loads to a peak power of around 800W. The entire opening and closing operations are completed in a few microseconds, orders of magnitude faster than mechanical relays and nearly as fast as solid state devices. The MEMS switch is an array of microscale cantilevered relays that are electrostatically opened and closed in microseconds. A pulsed diode bridge protection circuitry is used in conjunction with the MEMS switch to open and close the energized contacts without damaging the contacting surface and without generating an arc. This MEMS based power switching system is scaled in both series and parallel to increase the switched voltage and current capability respectively. MEMS switch based power switching has the capability to enable both current limiting and arc free switching, characteristics that can significantly reduce dangerous downstream fault energy for AC and DC protection and distribution applications.
机译:已经开发了组合MEMS(微机电系统)开关和电弧抑制电路的电力开关系统。使用单个3mm×3mm MEMS开关芯片与保护电子器件的系统进行了说明,将两个电阻载荷和电感负载切换到大约800W的峰值功率。整个开放和关闭操作以几微秒完成,幅度比机械继电器快,并且几乎快速为固态设备。 MEMS开关是静电打开和关闭微秒的微观悬臂继电器阵列。脉冲二极管桥保护电路与MEMS开关结合使用以打开和关闭通电触点,而不会损坏接触表面并且不产生电弧。基于MEMS的功率开关系统在串联中缩放并并联,以分别增加开关电压和电流能力。基于MEMS基于开关的电源开关具有能够实现电流限制和弧自由切换,可显着降低AC和DC保护和分配应用的危险下游故障能量的特性。

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