Title :
A time-interleaved chopper-stabilized delta-sigma analog to digital converter
Author :
Van Tam Nguyen ; Loumeau, Patrick ; Naviner, Jean-François
Author_Institution :
Departement COMELEC, CNRS, Paris, France
Abstract :
Although ΔΣ modulators are widely used for low to moderate rate analog-to-digital conversion, the time oversampling requirement has limited their application to higher rate converters. This paper presents a new architecture of time-interleaved ΔΣ ADC using chopper-stabilized techniques in order to eliminate the low frequency noise. The new architecture has identical performances to the regular time-interleaved ΔΣ ADC but is immune to low frequency noise and DC offsets. Such an architecture can be obtained without adding hardware complexities. In consequence, the architecture offers the potential of integrating high-precision, high-speed ADCs together with digital signal processing functions using VLSI processes optimized for digital circuitry. The paper presents the general architecture and provides a performance analysis closely supported by computer simulations.
Keywords :
VLSI; analogue-digital conversion; choppers (circuits); circuit CAD; circuit simulation; circuit stability; integrated circuit design; integrated circuit modelling; integrated circuit noise; sigma-delta modulation; ΔΣ modulators; DC offset immunity; analog-to-digital conversion; converter sampling rate; delta-sigma analog to digital converters; digital circuitry optimized VLSI; digital signal processing functions; high-precision high-speed ADC integration; low frequency noise elimination; time oversampling requirements; time-interleaved chopper-stabilized ΔΣ ADC architecture; Analog-digital conversion; Circuits; Computer architecture; Computer simulation; Delta modulation; Digital signal processing; Hardware; Low-frequency noise; Performance analysis; Very large scale integration;
Conference_Titel :
Electronics, Circuits and Systems, 2002. 9th International Conference on
Print_ISBN :
0-7803-7596-3
DOI :
10.1109/ICECS.2002.1045393