DocumentCode :
3510545
Title :
Analysis of multi-phase hybrid ripple-based adaptive on-time control for voltage regulator modules
Author :
Cheng, Kuang-Yao ; Yu, Feng ; Yan, Yingyi ; Lee, Fred C. ; Mattavelli, Paolo ; Wu, Wenkai
Author_Institution :
Comput. Power Manage., Texas Instrum., Warwick, RI, USA
fYear :
2012
fDate :
5-9 Feb. 2012
Firstpage :
1088
Lastpage :
1095
Abstract :
This paper presents the multi-phase hybrid ripple-based adaptive on-time control architecture for VRMs. Due to the ripple cancellation effects with multi-phase operations, ripple-based control may suffer from large jitter issues and instability issues when applying to VRMs with ceramic output capacitors. By utilizing the hybrid ripple concept, both inductor current ripple and compensated external ramp are fed back to the modulator to reduce jitter and improve stability. However, the system becomes more complicated with two different ramp compensations. A small-signal model is derived based on the describing function approach to analyze the proposed control architecture and to provide the design guideline for determining the external ramp compensations based on different load-line requirements. Moreover, a feedforward controller is presented to improve the reference tracking performance of the conventional ripple-based control. Both simulation and experimental results are given to show the effectiveness of the proposed control architecture for VRMs, and to show the fast load transient and fast reference tracking characteristic of the hybrid ripple-based control scheme.
Keywords :
adaptive control; ceramic capacitors; feedforward; jitter; power inductors; reference circuits; voltage regulators; ceramic output capacitor; compensated external ramp; describing function approach; design guideline; external ramp compensation; fast load transient characteristic; fast reference tracking characteristic; feedforward controller; inductor current ripple; instability issues; jitter issues; jitter reduction; load-line requirement; multiphase hybrid ripple-based adaptive on-time control architecture; reference tracking performance; ripple cancellation effects; small-signal model; stability improvement; voltage regulator module; Adaptation models; Capacitors; Control systems; Inductors; Jitter; Sensors; Voltage control; Ripple-based control; adaptive on-time control; adaptive voltage positioning (AVP); multi-phase buck converter; voltage regulator module (VRM);
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Applied Power Electronics Conference and Exposition (APEC), 2012 Twenty-Seventh Annual IEEE
Conference_Location :
Orlando, FL
Print_ISBN :
978-1-4577-1215-9
Electronic_ISBN :
978-1-4577-1214-2
Type :
conf
DOI :
10.1109/APEC.2012.6165954
Filename :
6165954
Link To Document :
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