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Demonstration of Low DV/DT Class-Ф2 DC-DC Converter With 50% Duty Cycle
Journal article   Peer reviewed

Demonstration of Low DV/DT Class-Ф2 DC-DC Converter With 50% Duty Cycle

Ziheng Liu, Zenglong Zhao, Yan Kai, Yunhong Lao, Jinyan Wang and Fanyi Meng
IEEE transactions on power electronics, Vol.38(12), pp.15759-15767
12/2023

Abstract

DC power conversion DC power transmission frequency domain analysis Harmonic analysis Impedance impedance tuning analysis (ITA) Stress Switches Tuning Voltage wide load operation Zero voltage switching
This article presents the frequency-domain-based modified impedance tuning analysis (ITA) method and its demonstration in designing a class-Ф 2 dc-dc converter with load-independent zero voltage switching (ZVS) characteristics . By adjusting the second-order harmonic voltage, a near trapezial drain-to-source voltage ( V DS ) is achieved with beneficially reduced voltage stresses across the main power devices. A complete non-iteration design procedure is established. Comparing to traditional ITA design theory, this modified ITA method leads to low dv/dt and low V DS stress, even at 50% switching duty cycles. In addition, thanks to the finite input resistance of the rectifier, the output resonant network and rectifier designed following this frequency-domain method feature the extensive load-independent ZVS characteristic. The 5 MHz prototype aiming for a true short-circuit to open-circuit load-independent ZVS is designed using modified ITA method, assembled, and measured. Under 16 V input, the measured conversion efficiency maintains 76.8%-89.5% in the testable load range from 7.4 to 16.8 W.

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