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A Resonant Current-Mode Wireless Power Receiver and Battery Charger With −32 dBm Sensitivity for Implantable Systems

机译:具有−32 dBm灵敏度的谐振电流模式无线功率接收器和电池充电器,用于可植入系统

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摘要

Wireless power transfer for implantable systems must harvest very low power levels due to low incident power on human tissues and a small receiver coil size. This work proposes resonant current-mode charging to reduce minimum harvestable input power and increase power efficiency at low input power levels. Avoiding rectification and voltage regulation from conventional voltage-mode methods, this work resonates an LC tank for multiple cycles to build up energy, then directly charges a battery with inductor current. A prototype is fabricated in 0.18 μm CMOS technology. Minimum harvestable input power is 600 nW and maximum power efficiency is 67.6% at 4.2 μW input power. Power transmission through bovine tissue is measured to have negligible efficiency loss, making this technique amenable to implantable applications.
机译:植入式系统的无线电力传输必须吸收非常低的功率,这是因为人体组织上的入射功率低,接收器线圈尺寸也很小。这项工作提出了谐振电流模式充电,以降低最小的可收获输入功率并在低输入功率水平下提高功率效率。这项工作避免了传统电压模式方法中的整流和电压调节,使LC储能谐振多个周期以积累能量,然后用电感器电流直接为电池充电。原型采用0.18μmCMOS技术制造。在4.2μW输入功率下,最小可收获输入功率为600 nW,最大功率效率为67.6%。经测量,通过牛组织的功率传输效率损失可忽略不计,因此该技术适用于植入式应用。

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