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首页> 外文期刊>Circuits and Systems II: Express Briefs, IEEE Transactions on >A 7.5-mV-Input Boost Converter for Thermal Energy Harvesting With 11-mV Self-Startup
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A 7.5-mV-Input Boost Converter for Thermal Energy Harvesting With 11-mV Self-Startup

机译:7.5 mV输入升压转换器,用于热能收集11 MV自启动

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摘要

A DC-DC boost converter for ultra-low-voltage thermal energy harvesting is presented herein. The focus of this brief is to provide both self-startup and efficient conversion at ultra-low input voltages. The converter startup is achieved through the use of a cold starter based on an ultra-low-voltage oscillator and a charge pump. The inductive boost converter architecture uses two low-side switches in order to independently optimize the low-voltage startup and the steady-state conversion efficiency. The model of the developed converter allows optimization of the boost switches as a function of the TEG internal resistance and input voltage. A zero current switching circuit with accurate detection for low input voltages is designed and implemented. The prototype fabricated in 130 nm standard CMOS technology achieves startup for an input voltage of 11 mV and, once started, the system can perform the boost operation for input voltages as low as 7.3 mV, delivering 50% of end-to-end efficiency at 10.5 mV and peak end-to-end efficiency of 85% at 140 mV.
机译:本文提出了一种用于超低电压热能收割的DC-DC升压转换器。本简要的重点是在超低输入电压下提供自启动和高效转换。通过使用基于超低电压振荡器和电荷泵的冷启动器来实现转换器启动。电感升压转换器架构使用两个低侧开关,以便独立优化低压启动和稳态转换效率。开发转换器的模型允许优化升压开关作为TEG内阻和输入电压的函数。设计和实现了具有精确检测的零电流开关电路,并设计并实现了低输入电压。 130 nm标准CMOS技术中制造的原型实现了11 MV的输入电压的启动,并且一旦开始,系统就可以执行低至7.3 mV的输入电压的升压操作,从而提供50%的端到端效率10.5 MV和峰端到端效率为85%,在140 mV下。

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