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A 20 mV Input Boost Converter With Efficient Digital Control for Thermoelectric Energy Harvesting

机译:具有有效数字控制的20 mV输入升压转换器,用于热电能量收集

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This paper presents a low power boost converter for thermoelectric energy harvesting that demonstrates an efficiency that is 15% higher than the state-of-the-art for voltage conversion ratios above 20. This is achieved by utilizing a technique allowing synchronous rectification in the discontinuous conduction mode. A low-power method for input voltage monitoring is presented. The low input voltage requirements allow operation from a thermoelectric generator powered by body heat. The converter, fabricated in a 0.13 $mu{hbox {m}}$ CMOS process, operates from input voltages ranging from 20 mV to 250 mV while supplying a regulated 1 V output. The converter consumes 1.6 (1.1) $mu{hbox {W}}$ of quiescent power, delivers up to 25 (175) $mu{hbox {W}}$ of output power, and is 46 (75)% efficient for a 20 mV and 100 mV input, respectively.
机译:本文介绍了一种用于热电能量收集的低功率升压转换器,其效率比最新的20以上的电压转换比高15%。这是通过利用允许不连续的同步整流技术实现的。传导模式。提出了一种用于输入电压监视的低功耗方法。低输入电压要求允许由人体热量驱动的热电发电机运行。该转换器采用0.13μmCMOS工艺制造,可在20 mV至250 mV的输入电压范围内工作,同时提供稳定的1 V输出。转换器消耗的静态功率为1.6(1.1)$ mu {hbox {W}} $,提供高达25(175)$ mu {hbox {W}} $的输出功率,并且在转换时的效率为46(75)%。输入分别为20 mV和100 mV。

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