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An Adaptable Interface Circuit With Multistage Energy Extraction for Low-Power Piezoelectric Energy Harvesting MEMS

机译:具有多级能量提取功能的自适应接口电路,用于低功耗压电能量收集MEMS

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摘要

This paper presents a self-powered interface circuit to extract energy from ambient vibrations for powering up microelectronic devices. The circuit interfaces a piezoelectric energy harvesting micro electro-mechanical systems (MEMS) device to scavenge acoustic energy. Synchronous electric charge extraction (SECE) technique is deployed through the implementation of a novel multistage energy extraction (MSEE) circuit in 180 nm HV CMOS technology to harvest and store energy. The circuit is optimized to operate with minimum power losses when input power is limited, and adapts well to operating conditions with higher input power. The highly accurate peak detector was validated for a wide piezo-electric frequency range from 20 Hz to 4 kHz. A charging efficiency of about 84% has been achieved for 4.75 V open-circuit piezoelectric voltage excited at 390 Hz input vibration under nominal input power range of 30-80 mu W. Power optimizations enable the circuit to maintain a conversion efficiency of 47% at input power level as low as 3.12 mu W. MSEE provides up to 15% efficiency improvement compared to traditional SECE, and maintains power efficiency as high as possible for a wide input power range.
机译:本文提出了一种自供电接口电路,可从环境振动中提取能量,从而为微电子设备供电。该电路与压电能量收集微机电系统(MEMS)设备连接,以扫除声能。通过在180 nm HV CMOS技术中实施新颖的多级能量提取(MSEE)电路来部署同步电荷提取(SECE)技术,以收集和存储能量。该电路经过优化,可在输入功率受到限制的情况下以最小的功率损耗工作,并且可以很好地适应具有更高输入功率的工作条件。经过验证的高精度峰值检测器可在20 Hz至4 kHz的宽压电频率范围内使用。在30-80μW的标称输入功率范围内,以390 Hz输入振动激发的4.75 V开路压电电压已实现约84%的充电效率。功率优化使该电路在200Hz时可保持47%的转换效率。输入功率低至3.12μW。与传统的SECE相比,MSEE的效率提高了15%,并在较宽的输入功率范围内保持了尽可能高的功率效率。

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