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An RF energy harvester with 44.1% PCE at input available power of -12 dBm
Journal article   Peer reviewed

An RF energy harvester with 44.1% PCE at input available power of -12 dBm

Ping-Hsuan Hsieh, Chih-Hsien Chou and Tao Chiang
IEEE Transactions on Circuits and Systems I: Regular Papers, Vol.62(6), pp.1528-1537
01/06/2015

Abstract

DC-DC boost converter energy harvesting full-bridge differential rectifier passively powered device power conversion efficiency radio-frequency energy harvesting remotely powered device wireless sensor network wireless sensor node
A 900-MHz radio-frequency energy harvester is designed and implemented for remotely powered devices. An efficient power path structure with adaptive control is proposed to maintain close-to-optimal power conversion efficiency. The control circuit consumes low power by adopting a novel open-loop asynchronous implementation and duty-cycled operation. A startup circuit is also presented. Measurement results show minimum input available power for startup of -17 dBm. With input available power of -12 dBm and load resistance of 144 kΩ, the measured output power is 27.8 μW, giving an output voltage of 2 V. This corresponds to an end-to-end power conversion efficiency of 44.1%. The harvester consumes quiescent current of 1.56 μA at output voltage of 2 V. © 2004-2012 IEEE.

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