Title :
Single-Capacitor Active-Feedback Compensation for Small-Capacitive-Load Three-Stage Amplifiers
Author :
Guo, Song ; Lee, Hoi
Author_Institution :
Dept. of Electr. Eng., Univ. of Texas at Dallas, Richardson, TX, USA
Abstract :
This brief presents a single-capacitor active-feedback compensation (SCAFC) scheme for three-stage internal amplifiers driving small capacitive loads. The proposed SCAFC scheme can stabilize the three-stage amplifier by using only a single small-value compensation capacitor, thereby significantly reducing the amplifier implementation area. With the small-value compensation capacitor, the wide gain-bandwidth product (GBW) of the SCAFC amplifier can also be achieved under low-power conditions. Implemented in a standard 0.35-mum CMOS process, the proposed three-stage SCAFC amplifier achieves over 100-dB dc gain, 9.6-MHz GBW, and 6.1-V/mus average slew rate, by only dissipating 90 muW at 1.5 V and using a 1-pF compensation capacitor, when driving a 500-kOmega // 20-pF load. The proposed SCAFC amplifier experimentally improves both bandwidth-to-power and slew-rate-to-power efficiencies by more than 14 times and 9 times, respectively, as compared to a conventional three-stage nested-Miller-compensated amplifier.
Keywords :
CMOS integrated circuits; amplifiers; capacitors; feedback; average slew rate; capacitance 1 pF; capacitance 20 pF; gain-bandwidth product; power 90 muW; resistance 500 kohm; single-capacitor active-feedback compensation; size 0.35 mum; slew-rate-to-power efficiencies; small-capacitive-load three-stage amplifiers; three-stage nested-Miller-compensated amplifier; voltage 1.5 V; Amplifiers; frequency compensation; single-capacitor active-feedback compensation (SCAFC); three-stage amplifier;
Journal_Title :
Circuits and Systems II: Express Briefs, IEEE Transactions on
DOI :
10.1109/TCSII.2009.2027954