DocumentCode
3436866
Title
Second-order multi-bit ΣΔ ADC using a Pulse-Width Modulated DAC and an integrating quantizer
Author
Prefasi, Enrique ; Pun, Ernesto ; Hernández, Luis ; Paton, Susan
Author_Institution
Electron. Technol. Dept., Carlos III Univ., Madrid, Spain
fYear
2009
fDate
13-16 Dec. 2009
Firstpage
37
Lastpage
40
Abstract
This paper presents the system level design of a novel multi-bit Sigma-Delta (ΣΔ) ADC architecture that replaces the flash quantizer and mismatch corrected multi-bit DAC of a ΣΔ modulator by an integrating quantizer and a Pulse-Width Modulated DAC. This converter achieves the resolution of a multi-bit design using single-bit circuitry. The quantizer of this modulator is similar to a classical Dual-Slope integrating converter, but the charge residue in the integrator at the end of each conversion cycle is stored for the next conversion, providing first order noise shaping. As an example, the system level performance of a second-order multi-bit ???? ADC using this new architecture has been evaluated. Also, circuit level specifications have been established, considering the most critical circuit non-idealities. The behavioral simulation results show that the ADC could achieve an ENOB = 13 bits in a signal bandwidth of 2 MHz using conventional CMOS technology, which could be suitable for wireless communication standards.
Keywords
CMOS integrated circuits; digital-analogue conversion; pulse width modulation; quantisation (signal); sigma-delta modulation; conventional CMOS technology; conversion cycle; first order noise shaping; flash quantizer; frequency 2 MHz; integrating quantizer; mismatch corrected multi-bit DAC; multi-bit design; pulse width modulated DAC; second-order multi-bit ΣΔ ADC; signal bandwidth; single-bit circuitry; wireless communication standards; Bandwidth; CMOS technology; Circuit simulation; Communication standards; Delta-sigma modulation; Noise shaping; Pulse modulation; Space vector pulse width modulation; System-level design; Wireless communication;
fLanguage
English
Publisher
ieee
Conference_Titel
Electronics, Circuits, and Systems, 2009. ICECS 2009. 16th IEEE International Conference on
Conference_Location
Yasmine Hammamet
Print_ISBN
978-1-4244-5090-9
Electronic_ISBN
978-1-4244-5091-6
Type
conf
DOI
10.1109/ICECS.2009.5410951
Filename
5410951
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