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A Power-Efficient Wireless Capacitor Charging System Through an Inductive Link

机译:通过感应链路的高效无线电容器充电系统

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摘要

A power-efficient wireless capacitor charging system for inductively powered applications has been presented. A bank of capacitors can be directly charged from an ac source by generating a current through a series charge injection capacitor and a capacitor charger circuit. The fixed charging current reduces energy loss in switches, while maximizing the charging efficiency. An adaptive capacitor tuner compensates for the resonant capacitance variations during charging to keep the amplitude of the ac input voltage at its peak. We have fabricated the capacitor charging system prototype in a 0.35-μm 4-metal 2-poly standard CMOS process in 2.1 mm2 of chip area. It can charge four pairs of capacitors sequentially. While receiving 2.7-V peak ac input through a 2-MHz inductive link, the capacitor charging system can charge each pair of 1 μF capacitors up to ±2 V in 420 μs, achieving a high measured charging efficiency of 82%.
机译:已经提出了一种用于感应供电应用的高效率无线电容器充电系统。通过产生流经串联电荷注入电容器和电容器充电器电路的电流,可以从交流电源直接为电容器组充电。固定的充电电流减少了开关中的能量损耗,同时使充电效率最大化。自适应电容器调谐器可补偿充电期间的谐振电容变化,以将交流输入电压的幅度保持在峰值。我们以0.35μm的4金属2聚标准CMOS工艺制造了电容器充电系统原型,其芯片面积为2.1 mm 2 。它可以依次为四对电容器充电。在通过2 MHz电感链路接收2.7 V峰值交流输入的同时,该电容器充电系统可以在420μs内将每对1μF电容器充电至±2 V,最高可达到82%的实测充电效率。

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