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Design of a 5.8 GHz Rectifier Circuit for Wireless Power Transfer Applications

Published: 18 August 2021 Publication History

Abstract

This paper focuses on a design, fabrication and measurements of a 5.8 GHz rectifier circuit for wireless power transfer (WPT) applications. The proposed circuit consists of a two-parallel-branches impedance matching circuit, a voltage doubler rectifier (VDR) with Schottky diodes HSMS-285c and a simple RC filter circuit connected by a 1700-ohm resistive load. It occupies a compact size of 80*25 mm2 and is printed on an FR4 substrate with the height of 1 mm. Simulation characterization shows that it is possible to reach an output DC voltage of 3.5 V at 20 dBm input RF power and the best efficiency can approach about 65%.

References

[1]
S. A. Morabeti and J. Zbitou, “High Efficiency Rectifier Circuit for Ambient RF Energy Harvesting Applications at 5.8 Hz,” 7th Mediterranean Congress of Telecommunications, CMT 2019.
[2]
W C. Brown, “The History of Power Transmission by Radio Waves,” IEEE Trans.microw.theory Tech, 1984, 32(9):1230-1242.
[3]
K. Dang, J. Zhang, H. Zhou, "A 5.8-GHz High-Power and High-Efficiency Rectifier Circuit with Lateral GaN Schottky Diode for Wireless Power Transfer," 2020, IEEE Transactions on Power Electronics 35(3): 2247-2252.
[4]
J. Bae, S. H. Yi, W. Choi, "5.8 GHz High-Efficiency RF-DC Converter Based on Common-Ground Multiple-Stack Structure," 2019, Sensors 19(15): 13.
[5]
J. Hansen and K. Chang, “Diode modeling for rectenna design,”. IEEE International Symposium on Antennas and Propagation, 2011.
[6]
C. R. Valenta, G. D. Durgin, “Harvesting Wireless Power-Survey of Energy Harvester Conversion Efficiency in Far Field Wireless Power Transfer Systems,” IEEE Microwave Magazine, 2014, 15(4): 108-120.
[7]
A. Rajawat, and P. K. Singhal, “Design and Analysis of Inset Fed Wide-Band Rectenna with Defected Ground Structure,” Journal of Circuits, Systems, and Computers, vol. 29, No. 3 (2020) 2050047 (15 pages).

Cited By

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  • (2024)Quad-Band Rectifier Circuit Design for IoT ApplicationsTechnologies10.3390/technologies1210018812:10(188)Online publication date: 2-Oct-2024
  • (2024)Energy Harvesting & Autonomous Energy Systems: A Proposal for RF Energy Harvesting2024 13th International Conference on Modern Circuits and Systems Technologies (MOCAST)10.1109/MOCAST61810.2024.10615601(1-5)Online publication date: 26-Jun-2024

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cover image ACM Other conferences
ICAIIS 2021: 2021 2nd International Conference on Artificial Intelligence and Information Systems
May 2021
2053 pages
ISBN:9781450390200
DOI:10.1145/3469213
Permission to make digital or hard copies of all or part of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for components of this work owned by others than ACM must be honored. Abstracting with credit is permitted. To copy otherwise, or republish, to post on servers or to redistribute to lists, requires prior specific permission and/or a fee. Request permissions from [email protected]

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Association for Computing Machinery

New York, NY, United States

Publication History

Published: 18 August 2021

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Author Tags

  1. Schottky diodes
  2. Wireless power transfer (WPT)
  3. rectification efficiency
  4. voltage doubler rectifier (VDR)

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Cited By

View all
  • (2024)Quad-Band Rectifier Circuit Design for IoT ApplicationsTechnologies10.3390/technologies1210018812:10(188)Online publication date: 2-Oct-2024
  • (2024)Energy Harvesting & Autonomous Energy Systems: A Proposal for RF Energy Harvesting2024 13th International Conference on Modern Circuits and Systems Technologies (MOCAST)10.1109/MOCAST61810.2024.10615601(1-5)Online publication date: 26-Jun-2024

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