Title :
A New ZVS Non-Isolated Full-Bridge Voltage Regulator Module with Gate Energy Recovery
Author :
Zhang, Zhiliang ; Meyer, Eric ; Liu, Yan-Fei ; Sen, P.C.
Author_Institution :
Aero-Power Sci-tech Center, Nanjing Univ. of Aeronaut. & Astronaut., Nanjing
Abstract :
In this paper, a novel self-driven zero-voltage-switching (ZVS) non-isolated full bridge (FB) converter is presented for 12 V input VRM application. Existing multiphase buck controller and buck driver can be directly used in the proposed converter. The advantages of the proposed converter are: (1) duty cycle extension; (2) significant switching losses reduction due to ZVS of all the control MOSFETs; (3) reduced reverse recovery loss and lower voltage rating synchronous rectifier (SR) MOSFET with lower RDS(on); (4) high drive voltage to reduce RDS(on) and the conduction losses of SRs due to gate energy recovery capability; (5) reduced body diode conduction and no external drive IC chips with dead time control needed for SRs due to the inherent current source gate drive circuit structure. The experimental results verify the principle of operation and significant efficiency improvement. At 12 V input, 1.3 V output and 1 MHz switching frequency, the proposed VRM improves the efficiency from 80.7% using the buck converter to 83.6% at 50 A, and from 77.9% using the buck converter to 80.5% at 60 A.
Keywords :
MOSFET; rectifying circuits; switching convertors; voltage regulators; zero voltage switching; MOSFET; ZVS nonisolated full-bridge voltage regulator module; body diode conduction; buck converter; buck driver; dead time control; gate energy recovery; lower voltage rating synchronous rectifier; multiphase buck controller; recovery capability; reverse recovery loss; voltage 1.3 V; voltage 12 V; zero-voltage- switching; Bridge circuits; Buck converters; MOSFETs; Rectifiers; Regulators; Strontium; Switching converters; Switching loss; Voltage control; Zero voltage switching; full-bridge (FB); self-driven; synchronous rectifier (SR); voltage regulator module (VRM); zero-voltage-switching (ZVS);
Conference_Titel :
Applied Power Electronics Conference and Exposition, 2009. APEC 2009. Twenty-Fourth Annual IEEE
Conference_Location :
Washington, DC
Print_ISBN :
978-1-4244-2811-3
Electronic_ISBN :
1048-2334
DOI :
10.1109/APEC.2009.4802860