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27.1 A Differential Hybrid Class-ED Power Amplifier with 27W Maximum Power and 82% Peak E2E Efficiency for Wireless Fast Charging To-Go
Mao, Fangyu; Martins, Rui; Lu, Yan
2024-03-13
Conference Name2024 IEEE International Solid-State Circuits Conference (ISSCC)
Source PublicationDigest of Technical Papers - IEEE International Solid-State Circuits Conference
Volume67
Pages444-446
Conference Date18-22 February 2024
Conference PlaceSan Francisco
CountryUSA
PublisherIEEE
Abstract

Portable power banks with wireless charging are popular on the market, targeting a wireless charging to-go experience. However, the low input voltage from the battery and the large equivalent series resistance (ESR) of the coupling coils limit the charging power and efficiency of device-to-device (D2D) wireless charging, making it difficult to achieve high power and high efficiency simultaneously [1]. The winding loss of the coupling coils is one major power loss due to the large ESR of hundreds of mΩ [1-4]. Moreover, thicker winding wire or multi-strand Litz wire at 6.78MHz cannot effectively reduce the ESR due to the skin and proximity effects. Therefore, we should limit the AC current through the coupling coils for thermal performance. Consequently, the current wireless charging to-go suffers from thermal issues, slow charging speed, and discounted energy-sharing percentage.

DOI10.1109/ISSCC49657.2024.10454369
URLView the original
Language英語English
Scopus ID2-s2.0-85188064758
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Document TypeConference paper
CollectionDEPARTMENT OF ELECTRICAL AND COMPUTER ENGINEERING
INSTITUTE OF MICROELECTRONICS
AffiliationUniversity of Macau, Macao
First Author AffilicationUniversity of Macau
Recommended Citation
GB/T 7714
Mao, Fangyu,Martins, Rui,Lu, Yan. 27.1 A Differential Hybrid Class-ED Power Amplifier with 27W Maximum Power and 82% Peak E2E Efficiency for Wireless Fast Charging To-Go[C]:IEEE, 2024, 444-446.
APA Mao, Fangyu., Martins, Rui., & Lu, Yan (2024). 27.1 A Differential Hybrid Class-ED Power Amplifier with 27W Maximum Power and 82% Peak E2E Efficiency for Wireless Fast Charging To-Go. Digest of Technical Papers - IEEE International Solid-State Circuits Conference, 67, 444-446.
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