首页> 外文期刊>Journal of Micromechanics and Microengineering >Improvement of energy conversion effectiveness and maximum output power of electrostatic induction-type MEMS energy harvesters by using symmetric comb-electrode structures
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Improvement of energy conversion effectiveness and maximum output power of electrostatic induction-type MEMS energy harvesters by using symmetric comb-electrode structures

机译:通过使用对称梳电极结构改善能量转换效果和静电感应型MEMS能量收割机的最大输出功率

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We introduce symmetric comb-electrode structures for the electrostatic vibrational MEMS energy harvester to lower the electrostatic constraint force attributed to the built-in electret potential, thereby allowing the harvester device to operate in a small acceleration range of 0.05 g or lower (1 g = 9.8 m s(-2)). Given the same device structure, two different potentials for the electret are tested to experimentally confirm that the output induction current is enhanced 4.2 times by increasing the electret potential from -60 V to -250 V. At the same time, the harvester effectiveness has been improved to as high as 93%. The device is used to swiftly charge a 470 mu F storage capacitor to 3.3 V in 120 s from small sinusoidal vibrations of 0.6 g at 124 Hz.
机译:我们引入静电振动MEMS能量收割机的对称梳状电极结构,以降低归因于内置驻极电位的静电约束力,从而允许收割机装置在0.05g或更低的小加速度范围内操作(1 g = 9.8 ms(-2))。 考虑到相同的装置结构,测试两个不同的驻极电位以通过将电动电位从-60 V至-250V增加,通过增加-60 V至-250V来进行实验证实,以实验证实输出感应电流增强4.2次。同时,收割机有效性 改善到高达93%。 该装置用于在124Hz的小正弦振动中将470μF存储电容器迅速充电至120秒的3.3V。

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