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Converter Circuit Design, Semiconductor Device Selection and Analysis of Parasitics for Micropower Electrostatic Generators

机译:微功率静电发生器的转换器电路设计,半导体器件选择和寄生分析

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摘要

For various medical monitoring and sensing applications it is desirable to power the electronics by scavenging energy from any locally available source. An electrostatic motion-driven generator for low-frequency (human body) motion has been developed by the authors using microelecromechanical system technology. The prototype generates pulses of 250 V on a 10-pF capacitor. This paper examines the design of a circuit and semiconductor devices to convert this energy to a low voltage. Because of the very small charge involved, the effects of leakage and parasitic stored charge are important. Converters for this application using silicon-on-insulator metal-oxide-semiconductor field-effect transistors and insulated gate bipolar transistors are compared using physics-based finite-element simulation. The overall effectiveness of the generation process is shown to be composed of several terms which are functions of system parameters such as generator flight time, semiconductor device area, and circuit inductance. It is shown that device area is a compromise between leakage current, charge storage, and on-state voltage. It can, for a given generator and inductance, be optimized to provide the maximum energy yield. Parasitic series inductance is shown to be of little importance to the circuit efficiency; however, parasitic capacitance has a significant influence.
机译:对于各种医学监测和传感应用,期望通过从任何本地可用源中清除能量来为电子设备供电。作者已经使用微机电系统技术开发了一种用于低频(人体)运动的静电运动驱动发电机。该原型在一个10 pF的电容器上产生250 V的脉冲。本文研究了将能量转换为低电压的电路和半导体器件的设计。由于所涉及的电荷很小,因此泄漏和寄生存储电荷的影响很重要。使用基于物理的有限元仿真比较了使用绝缘体上硅金属氧化物半导体场效应晶体管和绝缘栅双极型晶体管的该应用转换器。生成过程的整体效率显示为由几个术语组成,这些术语是系统参数的函数,例如发电机飞行时间,半导体器件面积和电路电感。结果表明,器件面积是泄漏电流,电荷存储和导通电压之间的折衷方案。对于给定的发电机和电感,可以对其进行优化以提供最大的能量产量。寄生串联电感对电路效率影响不大。然而,寄生电容有很大的影响。

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