DocumentCode :
1370566
Title :
A 200-Ms/s 10-mW switched-capacitor filter in 0.5-/spl mu/m CMOS technology
Author :
Baschirotto, Andrea ; Severi, F. ; Castello, R.
Author_Institution :
Dipt. di Ingegneria dell´´Inf., Lecce Univ., Italy
Volume :
35
Issue :
8
fYear :
2000
Firstpage :
1215
Lastpage :
1219
Abstract :
Wideband amplifiers with low but precisely known dc gain allow the achievement of accurate infinite impulse response switched-capacitor (SC) filters operating at very high sampling frequencies. The low and precise opamp gain value is taken into account while sizing the capacitors (precise opamp gain (FOG) approach), so that no idle phase is required for amplitude error compensation and double-sampling technique can be implemented. In a 0.5-/spl mu/m standard CMOS technology with 3.3-V power supply, an opamp is designed which exhibits a settling time of about 3 ns (for 0.1% settling accuracy) in a closed-loop configuration with input, feedback, and load capacitors of 0.5 pF, white the slew rate is 1 V/ns. The open-loop dc gain of the amplifier is set to the value of 80 (38 dB) by a gain-control closed loop, which guarantees an accuracy of /spl plusmn/2%. The proposed solution is validated by experimental results from a 200-Ms/s SC filter. From a single 3.3-V supply the filter consumes 10 mW (excluding clock generation) and exhibits a -40 dB total harmonic distortion for a 2-V/sub pp/ signal amplitude at 4 MHz, achieving a 62-dB dynamic range.
Keywords :
CMOS analogue integrated circuits; IIR filters; circuit feedback; error compensation; harmonic distortion; switched capacitor filters; wideband amplifiers; 0.5 micron; 0.5 pF; 10 mW; 3 ns; 3.3 V; 38 dB; 4 MHz; CMOS technology; amplitude error compensation; closed-loop configuration; double-sampling technique; dynamic range; feedback capacitors; gain-control closed loop; infinite impulse response; input capacitors; load capacitors; opamp gain value; open-loop dc gain; sampling frequencies; settling time; sizing; switched-capacitor filter; total harmonic distortion; wideband amplifiers; Broadband amplifiers; CMOS technology; Capacitors; Clocks; Error compensation; Feedback; Frequency; IIR filters; Power supplies; Sampling methods;
fLanguage :
English
Journal_Title :
Solid-State Circuits, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9200
Type :
jour
DOI :
10.1109/4.859513
Filename :
859513
Link To Document :
بازگشت