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ENERGY HARVESTING BY MEMS VIBRATIONAL DEVICES WITH ELECTRETS

机译:MEMS振动装置用电器收割

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This paper presents experimental proof of energy harvesting with MEMS-based vibrational devices. To clarify the effect of the coupling of vibration of MEMS devices and electrical field of electrets for current generation, a slit-and-slider structure was developed. This structure enables to combine the MEMS devices and electrets after their vibrational and electrical properties have been characterized separately. In the fabrication, the movable gold electrodes were released and then aligned by chip-on-chip mounting to face the fixed electrodes. A 1-mm-square electrode resonated around 1166 Hz with external vibration of a magnitude of acceleration of 1 m/s~2. The surface and rear potentials of the electret were around -150 and +100 V, respectively. The coupling of the mechanical and electrical properties produced an AC current of 170 pA. The results pave the way to designing and fabricating small-sized vibrational energy harvesters.
机译:本文介绍了基于MEMS的振动装置的能量收集实验证明。为了阐明MEMS装置的振动耦合和电流电影的耦合的效果,开发了狭缝滑板结构。该结构使得能够在其振动和电性能分别表征之后结合MEMS器件和电器。在制造中,可移动金电极被释放,然后通过芯片上安装对准以面对固定电极。 1毫米 - 方电极在1166赫兹中共振,外部振动为1m / s〜2的加速度。驻极体的表面和后电位分别为-150和+100V。机械和电性能的耦合产生了170Pa的AC电流。结果铺平了设计和制造小型振动能量收割机的方法。

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