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20 mV input, 4.2 V output SIDO boost converter with low-power controller and adaptive switch size selector for thermoelectric energy harvesting

机译:具有低功率控制器和自适应开关尺寸选择器的20 mV输入,4.2 V输出SIDO升压转换器,用于热电能量收集

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A low-input-voltage, highly efficient single-inductor-dual-output (SIDO) boost converter fabricated in 0.18 μm CMOS process is presented for thermoelectric energy harvesting. Two key technologies are implemented to accept input voltage down to 20 mV and to achieve 69 % conversion efficiency at 100 mV, which is the highest conversion efficiency reported to date for such a device. The first key is a low-voltage controller based on SIDO architecture with Priority Decision. An input-voltage-referred, novel adaptive switch size selection scheme is also demonstrated as the second key technology. The converter is designed to harvest human body heat using TEG with 20-120 mV open voltage range and to charge a 4.2 V Li-ion battery.
机译:提出了一种采用0.18μmCMOS工艺制造的低输入电压,高效单电感双输出(SIDO)升压转换器,用于热电能量收集。实施了两项关键技术以接受低至20 mV的输入电压,并在100 mV时达到69%的转换效率,这是迄今为止该器件报道的最高转换效率。第一个关键是基于带有优先级决策的SIDO架构的低压控制器。作为第二项关键技术,还展示了一种以输入电压为参考的新型自适应开关尺寸选择方案。该转换器设计为使用20-120 mV开路电压范围的TEG收集人体热量,并为4.2 V锂离子电池充电。

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