Residential College | false |
Status | 已發表Published |
All Rivers Flow to the Sea: A High-Density Wireless Power Receiver With Split-Dual-Path and Hybrid-Quad-Path Step-Down Rectifying Conversion | |
Lin,Zixiao; Lu,Yan; Mao,Fangyu; Wang,Chuang; Martins,Rui P. | |
2023-06-28 | |
Source Publication | IEEE Journal of Solid-State Circuits |
ISSN | 0018-9200 |
Volume | 58Issue:11Pages:3127 - 3137 |
Abstract | This article presented a wireless power receiver (RX) with a split-dual-path and merged switched-capacitor-inductor hybrid-quad-path (S2H4) step-down rectifying conversion for high output current. It can obtain the $V_{\mathrm{ac}}$ amplitude as high as 3 $V_{\mathrm{OUT}}$ , which increases the output power of the resonant tank. With multiple paths conducting currents to the load, the current stress on the power inductor has been significantly reduced, resulting in lower inductor power loss. The S2H4 wireless power RX is also compatible with a cable charging function, with the conversion part hardware being reused. Fabricated in a 0.18- $\mu$ m high-voltage (HV) SOI process, this proposed RX obtains 8.8-W maximum output power, and peak efficiencies of 85.2% and 91% for wireless and cable charging, respectively. |
Keyword | 6.78 Mhz Hybrid Converter Receiver (Rx) Split Path Wired Cable Charging Wireless Fast Charging Wireless Power Transfer (Wpt) |
DOI | 10.1109/JSSC.2023.3287212 |
URL | View the original |
Indexed By | SCIE |
Language | 英語English |
WOS Research Area | Engineering |
WOS Subject | Engineering, Electrical & Electronic |
WOS ID | WOS:001025574300001 |
Publisher | IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC, 445 HOES LANE, PISCATAWAY, NJ 08855-4141 |
Scopus ID | 2-s2.0-85163499090 |
Fulltext Access | |
Citation statistics | |
Document Type | Journal article |
Collection | THE STATE KEY LABORATORY OF ANALOG AND MIXED-SIGNAL VLSI (UNIVERSITY OF MACAU) INSTITUTE OF MICROELECTRONICS DEPARTMENT OF ELECTRICAL AND COMPUTER ENGINEERING |
Corresponding Author | Lu,Yan |
Affiliation | State Key Laboratory of Analog and Mixed-Signal VLSI, Institute of Microelectronics, and the Department of Electrical and Computer Engineering (DECE), Faculty of Science and Technology (FST), University of Macau, Macau, China |
First Author Affilication | Faculty of Science and Technology |
Corresponding Author Affilication | Faculty of Science and Technology |
Recommended Citation GB/T 7714 | Lin,Zixiao,Lu,Yan,Mao,Fangyu,et al. All Rivers Flow to the Sea: A High-Density Wireless Power Receiver With Split-Dual-Path and Hybrid-Quad-Path Step-Down Rectifying Conversion[J]. IEEE Journal of Solid-State Circuits, 2023, 58(11), 3127 - 3137. |
APA | Lin,Zixiao., Lu,Yan., Mao,Fangyu., Wang,Chuang., & Martins,Rui P. (2023). All Rivers Flow to the Sea: A High-Density Wireless Power Receiver With Split-Dual-Path and Hybrid-Quad-Path Step-Down Rectifying Conversion. IEEE Journal of Solid-State Circuits, 58(11), 3127 - 3137. |
MLA | Lin,Zixiao,et al."All Rivers Flow to the Sea: A High-Density Wireless Power Receiver With Split-Dual-Path and Hybrid-Quad-Path Step-Down Rectifying Conversion".IEEE Journal of Solid-State Circuits 58.11(2023):3127 - 3137. |
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