DocumentCode :
1304722
Title :
A Hysteretic Control Method for Multiphase Voltage Regulator
Author :
Lee, Kisun ; Lee, Fred C. ; Xu, Ming
Author_Institution :
ON Semicond., Comput. & Consumer Products Group, Phoenix, AZ, USA
Volume :
24
Issue :
12
fYear :
2009
Firstpage :
2726
Lastpage :
2734
Abstract :
Obtaining a faster dynamic response is a challenge for future microprocessor voltage regulators (VR). The hysteretic control method is one of the fastest control methods, but it is difficult to use in multiphase VRs because of the difficulty in achieving a constant switching frequency and interleaving operation among the phases. To resolve this, a hysteretic control method with a bandwidth-changing loop is proposed. By slowly adjusting the hysteretic bandwidth through the phase-locked loop, the duty cycle is synchronized with an external fixed-frequency clock reference. By phase-shifting this external clock reference for each phase, the interleaving among the paralleled phases can be easily implemented. On the other hand, slow hysteretic bandwidth changing will make this controller perform as though it has conventional hysteretic control during the transient for the fast dynamic response. After the transient, each phase will be pulled back to interleaving status through its bandwidth adjustment. Analysis and design guidelines for the proposed control are provided, and they are verified with hardware.
Keywords :
phase locked loops; voltage regulators; bandwidth-changing loop; constant switching frequency; duty cycle; dynamic response; fixed-frequency clock reference; hysteretic control method; microprocessor voltage regulators; multiphase voltage regulator; phase-locked loop; phase-shifting; DC–DC power conversion; power electronics; transient response;
fLanguage :
English
Journal_Title :
Power Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8993
Type :
jour
DOI :
10.1109/TPEL.2009.2030804
Filename :
5210183
Link To Document :
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