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A 76 efficiency boost converter with 220mV self-startup and 2nW quiescent power for high resistance thermo-electric energy harvesting

机译:具有220mV自启动和2nW静态功率的效率为76%的升压转换器,用于高电阻热电能量收集

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With the emergence of thin-film thermo-electric generators (TEG), power density and sustainability of energy harvesting sources have improved. These novel power sources however exhibit high internal electrical resistances. Conventional state-of-the-art boost converters encounter low efficiency and potential startup failures when harvesting energy from such sources. This paper presents a highly efficient boost converter for thermo-electric energy harvesting systems based on a novel Power-on-Reset (PoR) driven startup circuit. It utilizes the feedback between TEG, the boost converter, and the PoR circuit, converting a reset signal edge into a train of pulses. The proposed startup circuit is automatically disabled once startup operation is completed, and consumes the quiescent power of 2nW in steady-state. The proposed boost converter has a self-startup TEG voltage of 220mV and a peak power conversion efficiency of 76% with a minimum input for operation being 85mV.
机译:随着薄膜热电发电机(TEG)的出现,功率密度和能量收集源的可持续性得到了改善。然而,这些新颖的电源表现出高的内部电阻。当从此类源中收集能量时,传统的最新升压转换器会遇到低效率和潜在的启动故障。本文提出了一种基于新型复位上电(PoR)驱动的启动电路的,用于热电能量收集系统的高效升压转换器。它利用TEG,升压转换器和PoR电路之间的反馈,将复位信号边沿转换为一系列脉冲。一旦启动操作完成,建议的启动电路将自动禁用,并在稳态下消耗2nW的静态功率。所提出的升压转换器具有220mV的自启动TEG电压和76%的峰值功率转换效率,且最小输入操作为85mV。

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