DocumentCode
1525124
Title
A 3.3-V, 15-bit, delta-sigma ADC with a signal bandwidth of 1.1 MHz for ADSL applications
Author
Geerts, Yves ; Marques, Augusto Manuel ; Steyaert, Michel S J ; Sansen, Willy
Author_Institution
ESAT-MICAS Lab., Katholieke Univ., Leuven, Heverlee, Belgium
Volume
34
Issue
7
fYear
1999
fDate
7/1/1999 12:00:00 AM
Firstpage
927
Lastpage
936
Abstract
The design of a high-resolution, high-speed, delta-sigma analog to-digital converter that operates from a single 3.3-V supply is presented. This supply voltage presents several design problems, such as reduced signal swing and nonzero switch resistance in the switched-capacitor circuits. These problems are tackled in this design by a careful optimization at the system level and by a detailed analysis of several circuit nonidealities. The converter uses a 2-1-1 cascade topology with optimized coefficients. For an oversampling-ratio of only 24, the converter achieves a signal-to-noise ratio of 87 dB, a signal-to-(noise+distortion) ratio of 82 dB, and an input dynamic range of 15 bits after comb filtering. The converter is sampled at 52.8 MHz, which results in the required signal bandwidth for asymmetrical digital subscriber line applications of 1.1 MHz. It is implemented in a 0.5-μm CMOS technology, in a 5-mm2 die area, and consumes 200 mW from a 3.3-V power supply
Keywords
CMOS integrated circuits; analogue-digital conversion; delta-sigma modulation; digital subscriber lines; high-speed integrated circuits; switched capacitor networks; 0.5 micron; 1.1 MHz; 15 bit; 200 mW; 3.3 V; 52.8 MHz; 87 dB; ADSL applications; CMOS technology; analog to-digital converter; asymmetrical digital subscriber line; cascade topology; circuit nonidealities; comb filtering; delta-sigma ADC; high-resolution ADC; high-speed ADC; optimized coefficients; oversampling-ratio; signal-to-noise ratio; switched-capacitor circuits; Bandwidth; CMOS technology; Circuit analysis; Circuit topology; Design optimization; Signal design; Switched capacitor circuits; Switches; Switching circuits; Voltage;
fLanguage
English
Journal_Title
Solid-State Circuits, IEEE Journal of
Publisher
ieee
ISSN
0018-9200
Type
jour
DOI
10.1109/4.772407
Filename
772407
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