DocumentCode
1704125
Title
A 13.56MHz fully integrated 1X/2X active rectifier with compensated bias current for inductively powered devices
Author
Yan Lu ; Xing Li ; Wing-Hung Ki ; Chi-Ying Tsui ; Yue, C. Patrick
Author_Institution
HKUST, Hong Kong, China
fYear
2013
Firstpage
66
Lastpage
67
Abstract
Wireless power transfer has a broad range of applications ranging from mobile phone chargers to biomedical implants. For cochlear implants [1] and retinal prostheses [2], having a miniaturized form factor and being battery-less are highly desirable. Such devices require real-time power transfer in the range of 10 to 100mW [3], and as human tissue specific absorption rate (SAR) increases with frequency, inductively-coupled power links that operate at 13.56MHz or lower in ISM bands are commonly used, as shown in Fig. 4.2.1. However, lower transmission frequency means larger matching and filtering capacitors that are bulky. In addition, the received AC input amplitude VAC,Peak would fluctuate due to changes in distance and orientation between the coupling coils. Hence, comparator- controlled power switches (active diodes) are used to replace diodes so that the rectifier could work at a lower VAC,Peak and still achieve a high voltage conversion ratio (VCR) and power conversion efficiency (PCE) [4]. In this research, we present the first fully integrated 1X/2X active rectifier in the 30mW range with all capacitors fabricated on-chip, also shown in Fig. 4.2.1. This is made possible by a switching arrangement that avoids connecting the output capacitors in series in the 2X mode. Reverse current is reduced for VAC,Peak that ranges from 1.25 to 4V by a bias current that is quasi-inversely proportional to the output DC voltage, as explained later; and efficiency is carefully measured by the insertion of a sensing resistor plus an additional capacitor to reduce distortion.
Keywords
capacitors; comparators (circuits); inductive power transmission; power semiconductor switches; rectifiers; ISM bands; PCE; SAR; VCR; biomedical implants; capacitor fabricated on-chip; cochlear implants; comparator-controlled power switches; compensated bias current; coupling coils; filtering capacitors; frequency 13.56 MHz; fully integrated 1X-2X active rectifier; high voltage conversion ratio; human tissue specific absorption rate; inductively powered devices; inductively-coupled power links; mobile phone chargers; power 10 mW to 100 mW; power conversion efficiency; received AC input amplitude; retinal prostheses; sensing resistor; voltage 1.25 V to 4 V; wireless power transfer; Biomedical measurement; Capacitors; Current measurement; Rectifiers; System-on-chip; Video recording; Voltage measurement;
fLanguage
English
Publisher
ieee
Conference_Titel
Solid-State Circuits Conference Digest of Technical Papers (ISSCC), 2013 IEEE International
Conference_Location
San Francisco, CA
ISSN
0193-6530
Print_ISBN
978-1-4673-4515-6
Type
conf
DOI
10.1109/ISSCC.2013.6487639
Filename
6487639
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