DocumentCode
915954
Title
A high-efficiency fully digital synchronous buck converter power delivery system based on a finite-state machine
Author
Kang, Dae Woon ; Kim, Yong-Bin ; Doyle, James T.
Author_Institution
Nat. Semicond. Corp., Longmont, CO, USA
Volume
14
Issue
3
fYear
2006
fDate
3/1/2006 12:00:00 AM
Firstpage
229
Lastpage
240
Abstract
A fully digital, self-adjusting, and high-efficiency power supply system has been developed based on a finite-state machine (FSM) control scheme. The system dynamically monitors circuit performance with a delay line and provides a substantially constant minimum supply voltage for digital processors to properly operate at a given frequency. In addition, the system adjusts the supply voltage to the required minimum under different process, voltage, and temperature and load conditions. The design issues of the fully digital power delivery system are discussed and addressed. This digital FSM scheme significantly reduces the complexity of control-loop implementation (<1800 gates) and power consumption (< 100 /spl mu/W at 1.2 V) compared to other approaches based on proportional-integral-differential control. The power delivery control system is fabricated in a 0.13-/spl mu/m CMOS process and its core die size is 160 /spl times/ 110 /spl mu/m/sup 2/.
Keywords
CMOS digital integrated circuits; delay lines; finite state machines; power convertors; power system control; three-term control; 0.13 micron; 1.2 V; adaptive voltage scaling; delay line; digital processors; digital switcher; finite-state machine; fully digital buck converter; fully digital power delivery system; power delivery control system; proportional-integral-differential control; self-adjusting power supply; synchronous buck converter; Buck converters; Circuit optimization; Control systems; Delay lines; Frequency; Pi control; Power supplies; Proportional control; Temperature; Voltage; Adaptive voltage scaling; digital switcher; high yield; low-power dissipation;
fLanguage
English
Journal_Title
Very Large Scale Integration (VLSI) Systems, IEEE Transactions on
Publisher
ieee
ISSN
1063-8210
Type
jour
DOI
10.1109/TVLSI.2006.871764
Filename
1624373
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