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An 83.4% Peak Efficiency Single-Inductor Multiple-Output Based Adaptive Gate Biasing DC-DC Converter for Thermoelectric Energy Harvesting

机译:基于83.4%峰值效率的基于单电感器多输出的自适应栅极偏置DC-DC转换器,用于热电能量收集

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This paper presents a 100 mV input, 500 mV output single-inductor multiple-output (SIMO) based step-up dc-dc converter with adaptive gate biasing (AGB) technique implemented in 0.18 CMOS technology for thermoelectric energy harvesting. The proposed AGB technique and near-threshold voltage (near-) energy redistribution control (ERC) ensure high conversion efficiency over a wide range of load currents. The proposed method automatically reduces conduction and switching losses of power MOSFETs without the need for auxiliary power converters or additional off-chip inductors. The AGB technique reduces conduction and switching losses under heavy-load and light-load conditions, respectively. The experimental results show that the efficiency of the proposed converter is enhanced by 25.5% and 18% at output load currents of 1500 and 50 , respectively. The proposed step-up dc-dc converter achieves the lowest output voltage and provides the highest conversion efficiency of 83.4% to date in standard CMOS process for thermoelectric energy harvesting.
机译:本文介绍了一种基于100 mV输入,500 mV输出的单电感器多输出(SIMO)的升压DC-DC转换器,该转换器具有在0.18 CMOS技术中实现的自适应栅极偏置(AGB)技术,用于热电能量收集。拟议的AGB技术和近阈值电压(近)能量重新分配控制(ERC)可确保在很大的负载电流范围内实现高转换效率。所提出的方法自动降低了功率MOSFET的导通和开关损耗,而无需辅助功率转换器或额外的片外电感器。 AGB技术分别降低了重载和轻载条件下的传导和开关损耗。实验结果表明,在输出负载电流分别为1500和50时,该转换器的效率分别提高了25.5%和18%。迄今为止,在用于热电能量收集的标准CMOS工艺中,拟议的升压型DC-DC转换器实现了最低的输出电压,并提供了83.4%的最高转换效率。

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