Title :
Ultra Fast Fixed-Frequency Hysteretic Buck Converter With Maximum Charging Current Control and Adaptive Delay Compensation for DVS Applications
Author :
Su, Feng ; Ki, Wing-Hung ; Tsui, Chi-ying
Author_Institution :
Hong Kong Univ. of Sci. & Technol., Hong Kong
fDate :
4/1/2008 12:00:00 AM
Abstract :
An integrated DC-DC hysteretic buck converter with ultrafast adaptive output transient response for reference tracking is presented. To achieve the fastest up-tracking speed, the maximum charging current control is introduced to charge up the output voltage with the maximum designed current. For down-tracking, the output is discharged by the load only to save energy. Although the converter works with hysteretic voltage mode control, an adaptive delay compensation scheme is employed to keep the switching frequency constant at 850 kHz to within plusmn2.5% across the whole operation range. The integrated buck converter was fabricated using a 0.35 mum CMOS process. With an input voltage of 3 V, the output voltage can be regulated between 0.5 and 2.5 V. With a load resistor of 10 Omega, the up-tracking speed of the maximum reference step (0.5 to 2.5 V) is 12.5 mus/V. All design features are verified by extensive measurements.
Keywords :
adaptive control; compensation; power convertors; reference circuits; transient response; voltage control; DC-DC hysteretic buck converter; adaptive delay compensation; dynamic voltage scheduling; fixed-frequency hysteretic buck converter; hysteretic voltage mode control; maximum charging current control; reference tracking; ultrafast adaptive output transient response; Adaptive control; Buck converters; Current control; Delay; Hysteresis; Programmable control; Switching converters; Switching frequency; Transient response; Voltage control; Adaptive delay compensation; adaptive output; current sensor; dynamic voltage scheduling (DVS); maximum charging current control; pseudocontinuous conduction mode (PCCM); rail-to-rail comparator; reference tracking;
Journal_Title :
Solid-State Circuits, IEEE Journal of
DOI :
10.1109/JSSC.2008.917533