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A MEMS energy harvesting device for vibration with low acceleration

机译:具有低加速度的振动的MEMS能量收集装置

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We propose a polymer electret based energy harvesting device in order to extract energy from vibration sources with low acceleration. With MEMS technology, a silicon structure is fabricated which can resonate in 2D directions. Thanks to the excellent mechanical properties of the silicon material, the proof mass could be successfully driven by an external vibrations with acceleration as low as 0.014 g (~0.14 m/s~2). A root mean square (RMS) power output of 1.17 μW under 0.014 g RMS acceleration at 75 Hz is measured when an optimal load of 20.3 MΩ is applied. The frequency response of the device is also studied and a high Q factor of 250 is achieved.
机译:我们提出基于聚合物驻极体的能量收集装置,以便从具有低加速度的振动源提取能量。利用MEMS技术,制造硅结构,其可以在2D方向上谐振。由于硅材料的优异机械性能,可通过低至0.014g(〜0.14m / s〜2)的加速度成功地驱动了防尘。当应用20.3MΩ的最佳负载时,测量在75Hz的0.014g RMS加速度下为1.17μW的1.17μW的均方方(RMS)功率输出。还研究了器件的频率响应,实现了高Q系数250。

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