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首页> 外文期刊>IEEE Electron Device Letters >Design and Characterization of a 2-DOF MEMS Ultrasonic Energy Harvester With Triangular Electrostatic Electrodes
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Design and Characterization of a 2-DOF MEMS Ultrasonic Energy Harvester With Triangular Electrostatic Electrodes

机译:具有三角形静电电极的2自由度MEMS超声能量采集器的设计与表征

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This letter presents a microelectromechanical systems (MEMS) based energy harvester designed for applications such as the powering of implanted biomedical devices. The harvester is mechanically excited by an external source of ultrasonic waves with triangular electrostatic electrodes being used to produce electrical power from the vibrations of the system's proof mass. Comparisons are made with a previous MEMS harvester that uses conventional comb-finger electrostatic electrodes to demonstrate that the triangular electrodes result in a more effective conversion process. Experimental characterization shows that the device produces an average power output of 27.6 nW, which corresponds to a 29% increase in power output over the conventional comb-finger device.
机译:这封信提出了一种基于微机电系统(MEMS)的能量收集器,其设计用于诸如为植入式生物医学设备供电的应用。收割机由外部超声波源机械激励,并使用三角形静电电极从系统检测质量的振动中产生电能。与以前的MEMS收割机进行了比较,该收割机使用了传统的梳指静电电极,以证明三角形电极可产生更有效的转换过程。实验特性表明,该设备产生的平均功率输出为27.6 nW,与传统的梳指设备相比,功率输出增加了29%。

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