Application of 24V/20A LLC resonant converter for OLED TVs
Abstract
This
study aims to come out with a double transformer resonant converter design that
is serially connected in the primary part and parallel connected in the
secondary part while using LLC topology. With the help of serial resonance
characteristics, the power MOSFETs are conducted at zero voltage switching,
therefore the switching power losses on the semiconductor devices are
minimized. In the recommended converter, the primary part of two transformers
are connected in series in order to transmit the load currents to output in a
balanced manner. In the secondary part, the transformers are parallel connected
in order to provide equal distribution of load currents. This, in return,
decreased the current stresses on the secondary part of the transformers and on
the output rectifying diodes. This study provides the working principle of the
series resonant LLC converter topologies by designing the PSIM simulation model
and laboratory prototype with 24V/20A output for OLED TV power source.
Keywords
References
- Rosetto L. “A simple control technique for series resonant converters”. IEEE Transactions on Power Electronics, 11(5), 554-560, 1996.
- Johnson S, Erickson R. “Steady-state analysis and design of the parallel resonant converter”. IEEE Transactions on Power Electronics, 3(2), 93-104, 1988.
- Steigerwald R. “A comparison of half bridge resonant converter topologies”. IEEE Transactions on Power Electronics, 3(2), 174-182, 1988.
- Lin B R, Chen JJ, Yang CL. "Analysis and implementation of dual-output LLC resonant converter". IEEE International Conference Industrial Technology, Chengdu, China, 21-24 April 2008.
- Fang X, Hu H, Chen F, Somani U, Auadisian E, Shen J, Batarseh J. “Efficiency-oriented optimal design of the LLC resonant converter based on peak gain placement”. IEEE Transactions on Power Electronics, 28(5), 2285-2296, 2013.
- Kim JW, Moon GW. “A New LLC Series Resonant Converter with a Narrow Switching Frequency Variation and Reduced Conduction Losses”. IEEE Transactions on Power Electronics, 29(8), 4278-4287, 2014.
- Wu X, Hua G, Zhang J, Qian Z. “A new current driven synchronous rectifier for series-parallel resonant (LLC) DC-DC Converter”. IEEE Transactions on Industrial Electronics, 58(1), 289-297, 2011.
- Fu D, Liu Y, Lee FC, Xu M. “A novel driving scheme for synchronous rectifiers in LLC resonant converters”. IEEE Transactions on Power Electronics, 24(5), 1321-1329, 2009.
Details
Primary Language
English
Subjects
Engineering
Journal Section
Research Article
Publication Date
October 12, 2018
Submission Date
May 9, 2017
Acceptance Date
-
Published in Issue
Year 2018 Volume: 24 Number: 5