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A MEMS THRESHOLD ACCELERATION SWITCH POWERED BY A TRIBOELECTRIC GENERATOR

机译:由三角发电机驱动的MEMS阈值加速开关

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摘要

In this paper a novel electrostatic MEMS combined shock sensor and normally-closed switch is presented. The switch uses combined attractive and repulsive forcing to toggle a cantilever beam to and from the pulled-in position. The attractive force is generated through a parallel plate electrode configuration and induces pull-in. The repulsive force is generated through electrostatic levitation from a third electrode and serves to pull the beam out of its pulled-in position. A triboelectric transducer converts impact energy to electrical energy to provide voltage for the third electrode, which temporarily opens the switch if enough impact energy is supplied. Triboelectricity addresses the high voltage requirement for electrostatic levitation. The multi-electrode sensor also addresses the low current output from the generator because it acts as an open circuit between the parallel plate and levitation electrodes. A theoretical model of the switch is derived to analyze stability and the dynamic response of the cantilever. Threshold voltages to pull-in and release the beam through repulsive forcing is calculated. Output voltage plots from a prototype generator under a single impact are applied to the sensor-switch model to demonstrate the working principle of the sensor-switch is feasible.
机译:在本文中,提出了一种新颖的静电MEMS冲击传感器和常闭开关的组合。该开关使用吸引力和排斥力相结合,使悬臂梁往返于拉入位置。吸引力是通过平行板电极配置产生的,并会引起吸合。排斥力是通过静电悬浮从第三电极产生的,用于将电子束从其拉入位置拉出。摩擦电传感器将冲击能转换为电能,以为第三电极提供电压,如果提供了足够的冲击能,该电极将暂时断开开关。摩擦电解决了静电悬浮的高压要求。多电极传感器还解决了发电机产生的低电流问题,因为它充当了平行板和悬浮电极之间的开路。推导了开关的理论模型,以分析悬臂的稳定性和动态响应。计算通过排斥力引入和释放电子束的阈值电压。将原型发电机在一次冲击下的输出电压图应用于传感器开关模型,以证明传感器开关的工作原理是可行的。

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