A Wireless Hysteretic Controlled Wireless Power Transfer System With Enhanced Efficiency and Dynamic Response for Bioimplants
Author:
Affiliation:
1. Department of Electrical and Computer Engineering, Iowa State University, Ames, IA, USA
Publisher
Institute of Electrical and Electronics Engineers (IEEE)
Subject
Electrical and Electronic Engineering
Link
http://xplorestaging.ieee.org/ielx7/4/10082904/09861386.pdf?arnumber=9861386
Reference21 articles.
1. Power Transfer Capability and Bifurcation Phenomena of Loosely Coupled Inductive Power Transfer Systems
2. Power Management Analysis of Inductively-Powered Implants with 1X/2X Reconfigurable Rectifier
3. A Near-Optimum 13.56 MHz CMOS Active Rectifier With Circuit-Delay Real-Time Calibrations for High-Current Biomedical Implants
4. 33.6 A Wireless Power Transfer System with Up-to-20% Light- Load Efficiency Enhancement and Instant Dynamic Response by Fully Integrated Wireless Hysteretic Control for Bioimplants
5. A 13.56 MHz fully integrated 1X/2X active rectifier with compensated bias current for inductively powered devices;lu;IEEE Int Solid-State Circuits Conf (ISSCC) Dig Tech Papers,2013
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2. A 13.56-MHz Single-Input Dual-Output Wireless Power and Data Transfer System for Bio-Implants;IEEE Journal of Solid-State Circuits;2024-08
3. A High-Efficiency 40.68-MHz Single-Stage Dual-Output Regulating Rectifier With ZVS and Synchronous PFM Control for Wireless Powering;IEEE Journal of Solid-State Circuits;2024-08
4. Adaptive Digitally-Controlled Active Rectifier-Based Receiver for Bioimplants;2024 IEEE International Symposium on Circuits and Systems (ISCAS);2024-05-19
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