Title :
A monolithic current-mode CMOS DC-DC converter with on-chip current-sensing technique
Author :
Lee, Cheung Fai ; Mok, Philip K T
Author_Institution :
Dept. of Electr. & Electron. Eng., Hong Kong Univ. of Sci. & Technol., China
Abstract :
A monolithic current-mode CMOS DC-DC converter with integrated power switches and a novel on-chip current sensor for feedback control is presented in this paper. With the proposed accurate on-chip current sensor, the sensed inductor current, combined with the internal ramp signal, can be used for current-mode DC-DC converter feedback control. In addition, no external components and no extra I/O pins are needed for the current-mode controller. The DC-DC converter has been fabricated with a standard 0.6-μm CMOS process. The measured absolute error between the sensed signal and the inductor current is less than 4%. Experimental results show that this converter with on-chip current sensor can operate from 300 kHz to 1 MHz with supply voltage from 3 to 5.2 V, which is suitable for single-cell lithium-ion battery supply applications. The output ripple voltage is about 20 mV with a 10-μF off-chip capacitor and 4.7-μH off-chip inductor. The power efficiency is over 80% for load current from 50 to 450 mA.
Keywords :
CMOS analogue integrated circuits; DC-DC power convertors; circuit feedback; current-mode circuits; power semiconductor switches; 0.6 micron; 10 muF; 20 mV; 3 to 5.2 V; 300 to 1000 kHz; 50 to 450 mA; 80 percent; CMOS process; absolute error; feedback control; integrated power switches; internal ramp signal; monolithic current-mode CMOS DC-DC converter; off-chip capacitor; off-chip inductor; on-chip current sensor; on-chip current-sensing technique; output ripple voltage; power efficiency; sensed inductor current; single-cell lithium-ion battery; Battery charge measurement; CMOS process; Capacitors; Current measurement; DC-DC power converters; Feedback control; Inductors; Pins; Switching converters; Voltage;
Journal_Title :
Solid-State Circuits, IEEE Journal of
DOI :
10.1109/JSSC.2003.820870