DocumentCode
2025368
Title
A two-stage sixth-order sigma-delta ADC with 16-bit resolution designed for an oversampling ratio of 16
Author
Davis, Alan J. ; Fischer, Godi
Author_Institution
Dept. of Weapon Syst., Naval Undersea Warfare Center, Newport, RI, USA
Volume
1
fYear
1996
fDate
18-21 Aug 1996
Firstpage
230
Abstract
This paper presents a sixth-order sigma-delta modulator capable of 16 bit resolution with an oversampling ratio (OSR) of only 16. The circuit´s sensitivity to non-idealities such as amplifier finite open-loop gain, bandwidth, slew rate and capacitor mismatches is minimized through the use of a novel topology. Efficient noise shaping is realized by cascading two nearly identical third-order modulators. The dynamic range is maximized by placing a finite zero in the noise shaping function of each modulator loop. The resolution is further enhanced through the use of ternary quantizers which halve the quantization noise while avoiding the linearity problems associated with higher resolution DACs required in the modulator feedback paths. The presented modulator has been fabricated as a fully-differential switched-capacitor circuit by a 1.2 μm double-poly CMOS process and operates from a ±2.5 volt power supply
Keywords
CMOS integrated circuits; analogue-digital conversion; cascade networks; circuit optimisation; integrated circuit design; integrated circuit noise; sigma-delta modulation; signal resolution; signal sampling; switched capacitor networks; 1.2 mum; 16-bit resolution; 2.5 V; amplifier finite open-loop gain; bandwidth; capacitor mismatches; cascading; circuit sensitivity; double-poly CMOS process; dynamic range maximization; fully-differential switched-capacitor circuit; noise shaping; nonideality sensitivity; oversampling ratio; power supply; quantization noise; sensitivity minimization; slew rate; ternary quantizers; third-order modulators; two-stage sixth-order sigma-delta ADC; Bandwidth; Capacitors; Circuit noise; Circuit topology; Delta-sigma modulation; Dynamic range; Feedback; Linearity; Noise shaping; Quantization;
fLanguage
English
Publisher
ieee
Conference_Titel
Circuits and Systems, 1996., IEEE 39th Midwest symposium on
Conference_Location
Ames, IA
Print_ISBN
0-7803-3636-4
Type
conf
DOI
10.1109/MWSCAS.1996.594106
Filename
594106
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