DocumentCode :
1225206
Title :
On the Design of Undersampling Continuous-Time Bandpass Delta–Sigma Modulators for Gigahertz Frequency A/D Conversion
Author :
Naderi, Ali ; Sawan, Mohamad ; Savaria, Yvon
Author_Institution :
Electr. Eng. Dept., Polystim Neurotechnologies Lab., Montreal, QC
Volume :
55
Issue :
11
fYear :
2008
Firstpage :
3488
Lastpage :
3499
Abstract :
This paper describes issues and tradeoffs related to the design of undersampling delta-sigma modulators (DeltaSigmaMs) for wireless receivers. It proposes a new bandpass undersampling DeltaSigmaM architecture dedicated to multigigahertz frequencies. This paper is based on up-sampling in the feedback path to remove the analog mixer usually found in the modulator. Design equations are discussed for an optimum operating point when the input signal is at 1.8 GHz. The related design model can be applied to many communication standards. The underlying proposed architecture can receive high-frequency carriers modulated with signals of bandwidth as large as 5 MHz. In the proposed design, it converts the signal into digital data with a spurious-free dynamic range of 46 dB at a sampling frequency of 810.1 MHz. Design simulation, characterization, and implementation of the proposed modulator are done using a 0.13- mum CMOS technology.
Keywords :
analogue-digital conversion; delta-sigma modulation; radio receivers; signal sampling; analog mixer; bandpass undersampling DeltaSigmaM architecture; frequency 1.8 GHz; gigahertz frequency A-D conversion; undersampling continuous-time bandpass delta-sigma modulators; wireless receivers; $Q$-enhanced LC filter; Band-pass Delta Sigma Modulator; Bandpass delta–sigma modulator; Continuous time circuits; Q-enhanced LC filter; Undersampling; Wireless receiver; continuous- time (CT) circuits; undersampling; wireless receiver;
fLanguage :
English
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher :
ieee
ISSN :
1549-8328
Type :
jour
DOI :
10.1109/TCSI.2008.925364
Filename :
4526192
Link To Document :
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