具有超低功耗可重构电源-复位式电压检测器的室内太阳能采集器

Xiaodong Meng, Xing Li, Y. Yao, C. Tsui, W. Ki
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引用次数: 7

摘要

提出了一种用于室内太阳能采集器的超低功耗可重构电压检测器。电压探测器监测太阳能电池电压,当太阳能电池电压超过探测器的触发阈值时发出标志信号。与传统的动态比较器不同,该设计基于电源复位(POR)电路。POR电路具有超低的静态损耗和固定的触发阈值,这是由其拓扑结构和工艺决定的。我们的改进是使用一个反馈回路,允许触发阈值可重新配置。该POR电压检测电路的平均静态损耗为2.774nW。过程和温度变化也可以通过反馈回路进行补偿。能量收集系统采用0.18 p,m CMOS工艺设计。在200μW的输入功率下,整个系统的峰值效率达到了93.21%。
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An Indoor Solar Energy Harvester with Ultra-Low-Power Reconfigurable Power-On-Reset-Styled Voltage Detector
An ultra-lower-power reconfigurable voltage detector for indoor solar energy harvester is presented. The voltage detector monitors the solar cell voltage and sends out a flag signal if the solar cell voltage surpasses the triggering threshold of the detector. Instead of using a traditional dynamic comparator, this design is based on a power-on-reset (POR) circuit. A POR circuit has ultra-low quiescent loss and a fixed triggering threshold, which is determined by its topology and process. Our improvement is to use a feedback loop that allows the triggering threshold to be reconfigurable. The average quiescent loss of this POR voltage detector circuit is 2.774nW. Process and temperature variations can also be compensated by the feedback loop. The energy harvesting system is designed with a 0.18 p,m CMOS process. Equipped with the proposed voltage detector, the whole system achieves a 93.21% peak efficiency at 200μW input power.
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