首页> 外文会议>Proceedings of the ASME/JSME joint international conference on information storage and processing systems and micromechatronics for information and precision equipment 2018 >DEVELOPMENT OF A METAL-CANTILEVER ELECTROSTATIC VIBRATION POWER GENERATOR COMBINED WITH POTASSIUM ION ELECTRET TECHNIQUE
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DEVELOPMENT OF A METAL-CANTILEVER ELECTROSTATIC VIBRATION POWER GENERATOR COMBINED WITH POTASSIUM ION ELECTRET TECHNIQUE

机译:结合钾离子电极技术的金属悬臂式静电振动发电机的研制

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We have developed a metal-cantilever electrostatic vibration power generator that has comb-drive electrodes made of a SOI wafer at the tip of the cantilever. The comb-drive electrodes in which built-in electric field is given by potassium ion electret technique acts as an energy transducer from mechanical vibration power to electrical one. The metal cantilever part is formed separately, and assembled with the comb-electrodes on a bakelite plastic. This device showed strong nonlinear frequency responses, in which spring hardening was observed when applied acceleration was small while spring softening when high acceleration. About 30μW output power was observed at 0.03G_(RMS) acceleration, and the maximum 90% conversion efficiency achieved at 0.01G_(RMS) acceleration.
机译:我们开发了一种金属悬臂式静电振动发电机,该悬臂的尖端具有由SOI晶片制成的梳状驱动电极。通过钾离子驻极体技术产生内置电场的梳齿驱动电极,可以作为从机械振动功率到电子振动的能量转换器。金属悬臂部分单独形成,并与梳状电极组装在胶木塑料上。该装置表现出强烈的非线性频率响应,其中在施加加速度时观察到弹簧硬化,而在高加速度时观察到弹簧软化。在0.03G_(RMS)加速下观察到约30μW的输出功率,而在0.01G_(RMS)加速下达到90%的最大转换效率。

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