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Hybrid Forward and Backward Threshold-Compensated RF-DC Power Converter for RF Energy Harvesting

机译:混合正向和反向阈值补偿RF-DC电源转换器,用于RF能量收集

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This paper presents a hybrid forward and backward threshold voltage compensated radio-frequency to direct current (RF-to-DC) power conversion circuit for RF energy harvesting applications. The proposed circuit uses standard p-channel metal–oxide semiconductor transistors in all the stages except for the first few stages to allow individual body biasing eliminating the need for triple-well technology in the previously reported forward compensation schemes. Two different RF-DC power conversion circuits, one optimized to provide high power conversion efficiency (PCE) and the other to produce a large output DC voltage harvested from extremely low input power levels, are designed and fabricated in IBM's 0.13 $mu{rm m}$ complementary metal–oxide–semiconductor technology. The first circuit exhibits a measured maximum PCE of 22.6% at $-$16.8 dBm (20.9 $mu{rm W}$) and produces 1 V across a 1 ${rm M}Omega$ load from a remarkably low input power level of $-$21.6 dBm (6.9 $mu{rm W}$) while the latter circuit produces 2.8 V across a 1 ${rm M}Omega$ load from a peak-to-peak input voltage of 170 mV achieving a voltage multiplication ratio of 17. Also, design strategies are developed to enhance the output DC voltage and to optimize the PCE of threshold voltage compensated voltage multiplier.
机译:本文提出了一种用于RF能量收集应用的混合正向和反向阈值电压补偿射频到直流(RF-DC)功率转换电路。提议的电路在除前几个阶段外的所有阶段中均使用标准的p沟道金属氧化物半导体晶体管,以允许单独的本体偏置,从而消除了先前报道的前向补偿方案中对三阱技术的需求。两种不同的RF-DC电源转换电路,其中一种经过优化以提供高功率转换效率(PCE),另一种经过优化以从极低的输入功率水平获得大输出DC电压,并以IBM的0.13 $ mu {rm m} $ 互补金属-氧化物-半导体技术。第一个电路在 $-$ 16.8 dBm(20.9 $ mu {rm W} $ ),并在1个 $ { rm M} Omega $ 负载来自 $-$ 21.6的极低输入功率水平的负载dBm(6.9 $ mu {rm W} $ ),而后者电路在1个 $ {rm M} Omega $ 负载从170 mV的峰峰值输入电压实现的电压倍增比为17。此外,设计提出了提高输出直流电压并优化阈值电压补偿电压倍增器PCE的策略。

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