Input Nonlinear Adaptive Voltage Position Technique in the Switched-capacitor Converter with Feedforward Compensation for 87.8% Peak Efficiency under 8X Input Interference
Author:
Affiliation:
1. National Yang Ming Chiao Tung University
2. Chip-GaN Power Semiconductor Corporation,Hsinchu,Taiwan
3. Realtek Semiconductor Corp,Hsinchu,Taiwan
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/9911257/9911222/09911306.pdf?arnumber=9911306
Reference5 articles.
1. 11.2 A Fully Integrated Resonant Switched-Capacitor Converter with 85.5% Efficiency at 0.47W Using On-Chip Dual-Phase Merged-LC Resonator
2. 12.4 A 10mW fully integrated 2-to-13V-input buck-boost SC converter with 81.5% peak efficiency
3. 12.2 A 94.6%-efficiency fully integrated switched-capacitor DC-DC converter in baseline 40nm CMOS using scalable parasitic charge redistribution
4. A 0.22-to-2.4V-Input Fine-Grained Fully Integrated Rational Buck-Boost SC DC-DC Converter Using Algorithmic Voltage-Feed-In (AVFI) Topology Achieving 84.1% Peak Efficiency at 13.2mW/mm2;jiang;ISSCC Dig Tech Papers,2018
5. 10.1 A 1.1W/mm2-power-density 82%-efficiency fully integrated 3∶1 Switched-Capacitor DC-DC converter in baseline 28nm CMOS using Stage Outphasing and Multiphase Soft-Charging
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