Energy harvesting by MEMS vibrational devices with electrets

N. Sato, K. Ono, T. Shimamura, K. Kuwabara1, M. Ugajin, S. Mutoh, H. Morimura, H. Ishii, J. Kodate, Y. Sato
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引用次数: 9

Abstract

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/s2. 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.
具有驻极体的MEMS振动装置的能量收集
本文给出了基于mems的振动器件能量收集的实验证明。为了明确MEMS器件振动与驻极体电场耦合对电流产生的影响,提出了一种狭缝滑块结构。这种结构使MEMS器件和驻极体在分别表征其振动和电学特性后能够结合在一起。在制造过程中,可移动的金电极被释放,然后通过芯片上的安装与固定电极对齐。1毫米见方的电极谐振频率约为1166 Hz,外部振动加速度为1m /s2。驻极体的表面电位约为- 150 V,后电位约为+100 V。机械和电气特性的耦合产生了170 pA的交流电流。研究结果为设计和制造小型振动能量采集器铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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