Title :
Nonisolation Soft-Switching Buck Converter With Tapped-Inductor for Wide-Input Extreme Step-Down Applications
Author :
Park, Joung-Hu ; Cho, Bo-Hyung
Author_Institution :
Seoul Nat. Univ., Seoul
Abstract :
In this paper, a new zero-voltage switching (ZVS) buck converter with a tapped inductor (TI) is proposed. This converter improves the conventional tapped inductor critical conduction mode buck converters that have the ZVS operation range determined by the TI turn ratios. It includes another soft switching range extension method, the current injection method, which gives an additional design freedom for the selection of the turn-ratios and enables the optimal design of the winding ratio of the TI so that the efficiency may be maximized. This soft-switching buck converter is suitable for wide input range step-down applications. The principle of the proposed scheme, analysis of the operation, and design guidelines are included. Experimental results of the 100-W prototype dc-dc converter are given for hardware verification also. Finally, based on the proposed soft-switching technique, a new soft-switching topology family is derived.
Keywords :
DC-DC power convertors; power inductors; switching convertors; zero voltage switching; ZVS buck converter; current injection method; dc-dc converter; hardware verification; nonisolation soft-switching buck converter; power 100 W; soft switching range extension method; soft-switching topology; tapped-inductor; wide-input extreme step-down applications; zero-voltage switching buck converter; Buck converters; Employment; Guidelines; Hardware; Inductors; Power system transients; Prototypes; Switches; Switching loss; Zero voltage switching; DC–DC power conversion; hysteretic control; soft switching; tapped inductor (TI);
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
DOI :
10.1109/TCSI.2007.902482