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Bien, Franklin
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A 13.56 MHz Wireless Power Transfer System With Fully Integrated PLL-Based Frequency-Regulated Reconfigurable Duty Control for Implantable Medical Devices

Author(s)
Namgoong, GyeonghoPark, WoojinBien, Franklin
Issued Date
2022-12
DOI
10.1109/TBCAS.2022.3213817
URI
https://scholarworks.unist.ac.kr/handle/201301/64377
Citation
IEEE TRANSACTIONS ON BIOMEDICAL CIRCUITS AND SYSTEMS, v.16, no.6, pp.1116 - 1128
Abstract
In this paper, a 13.56 MHz wireless power transfer system with transmitter (TX) and receiver (RX) chips is presented. Both TX and RX chips were designed with fully integrated reconfigurable single power stage to realize adaptive power delivery and output voltage regulation. The reconfigurable operation of TX and RX is synchronized and the reconfiguration frequency which could vary with coupling or loading condition is locked by the proposed phase-locked-loop-based on-time duty controller to mitigate the electromagnetic interference. In addition, calibrations for circuit delay and power switch size were implemented in the RX chip to enhance system efficiency further. The system complexity is reduced considerably by removing the successive power stages and off-chip controllers used in previous studies. The TX and RX chips were fabricated in TSMC 0.18 mu m CMOS process. The measurement results demonstrated seamless output voltage regulation under an output power range from 4.2 mW to 162 mW and a peak end-to-end efficiency of 70.1%.
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
ISSN
1932-4545
Keyword (Author)
InActive rectifieradaptive power controlclass-D power amplifierimplantable medical devicesoutput voltage regulationreconfigurable structurewireless power transfer (WPT)
Keyword
ACTIVE RECTIFIERTIME CONTROLEFFICIENCYTRANSMISSIONVOLTAGE

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