A Fully Integrated and Battery-Free Interface for Low-Voltage Electromagnetic Energy Harvesters

This paper presents a fully integrated and battery-free 90 nm interface circuit for ac/dc conversion and step up of low-voltage ac signals generated by electromagnetic (EM) energy harvesters. The circuit is composed of two stages: The rectifier in the first stage utilizes an improved ac/dc doubler s...

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Veröffentlicht in:IEEE transactions on power electronics 2015-07, Vol.30 (7), p.3712-3719
Hauptverfasser: Ulusan, Hasan, Gharehbaghi, Kaveh, Zorlu, Ozge, Muhtaroglu, Ali, Kulah, Haluk
Format: Artikel
Sprache:eng
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Zusammenfassung:This paper presents a fully integrated and battery-free 90 nm interface circuit for ac/dc conversion and step up of low-voltage ac signals generated by electromagnetic (EM) energy harvesters. The circuit is composed of two stages: The rectifier in the first stage utilizes an improved ac/dc doubler structure with active diodes internally powered by a passive ac/dc doubler and custom-designed comparators to minimize the voltage drops. With this, the efficiency is enhanced to 67% while providing 0.61 V to 40 μA load. The second stage is a dc/dc converter utilizing a low-voltage charge pump with an on-chip ring oscillator for further voltage step up. The rectifier stage is functional down to 125 mV input peak voltage, and the full interface circuit can maintain more than 1 V dc at 1 MΩ load for input peak voltages higher than 0.4 V. The circuit delivers 2.48 V to a 4.4 MΩ load, when interfaced to an in-house EM harvester, operating under 10 Hz, 0.5 g vibration.
ISSN:0885-8993
1941-0107
DOI:10.1109/TPEL.2014.2344915