Title :
Design and Performance of a Resonant LLC 48V Voltage Regulator Module with a Self-sustained Oscillation Controller
Author :
Youssef, Mohamed Z. ; Jain, Praveen K.
Author_Institution :
Member IEEE, Power Electronics Applied Research Laboratory (PEARL), Walter Light Hall, Union Street, Department of Electrical and Computer Engineering, Queen´´s University, Kingston, Ontario, CANADA K7L3N6. E-mail: mohamed.youssef@ece.queensu.ca
fDate :
Feb. 25 2007-March 1 2007
Abstract :
This paper presents the performance and design of a new 48V/1.5V Voltage Regulator Module (VRM) for the stand-alone high-end servers, and notebook computer applications. The proposed VRM is based on the LLC-type resonant converter as it possesses much lower component stresses compared with the conventional series and series-parallel resonant topologies. Self-sustained oscillation control (SSOC) operation is used to achieve voltage regulation and high efficiency for a wide range of load currents. It is a new current mode controller for resonant converter, hence offers lower power component ratings than with the conventional variable frequency (VF) controller and a very fast transient response. It allows a minimum power factor angle and consequently a smaller primary current to reduce conduction losses, leading to a better working efficiency. Analytical, simulation and experimental results of a 48V/1.5V 30W prototype are presented to offer the proof of concept.
Keywords :
Analytical models; Computer applications; Frequency conversion; Reactive power; Regulators; Resonance; Stress; Topology; Transient response; Voltage control;
Conference_Titel :
Applied Power Electronics Conference, APEC 2007 - Twenty Second Annual IEEE
Conference_Location :
Anaheim, CA, USA
Print_ISBN :
1-4244-0713-3
DOI :
10.1109/APEX.2007.357507