DocumentCode :
1449045
Title :
An All-Digital RF Signal Generator Using High-Speed \\Delta \\Sigma Modulators
Author :
Frappé, Antoine ; Flament, Axel ; Stefanelli, Bruno ; Kaiser, Andreas ; Cathelin, Andreia
Author_Institution :
Berkeley Wireless Res. Center, Univ. of California at Berkeley, Berkeley, CA, USA
Volume :
44
Issue :
10
fYear :
2009
Firstpage :
2722
Lastpage :
2732
Abstract :
An all-digital RF signal generator using DeltaSigma modulation and targeted at transmitters for mobile communication terminals has been implemented in 90 nm CMOS. Techniques such as redundant logic and non-exact quantization allow operation at up to 4 GHz sample rate, providing a 50 MHz bandwidth at a 1 GHz center frequency. The peak output power into a 100 Omega diff. load is 3.1 dBm with 53.6 dB SNDR. By adjusting the sample rate, carriers from 50 MHz to 1 GHz can be synthesized. RF signals up to 3 GHz can be synthesized when using the first image band. As an example, UMTS standard can be addressed by using a 2.6 GHz clock frequency. The measured ACPR is then 44 dB for a 5 MHz WCDMA channel at 1.95 GHz with output power of -16 dBm and 3.4% EVM. At 4 GHz clock frequency the total power consumption is 120 mW (49 mW for DeltaSigma modulator core) on a 1 V supply voltage, total die area is 3.2 mm2 (0.15 mm2 for the active area).
Keywords :
3G mobile communication; CMOS integrated circuits; code division multiple access; delta-sigma modulation; signal generators; wireless channels; CMOS process; UMTS standard; WCDMA channel; all-digital RF signal generator; bandwidth 50 MHz; frequency 1 GHz; frequency 1.95 GHz; frequency 2.6 GHz; frequency 5 MHz; high-speed DeltaSigma modulators; mobile communication terminals; power 120 mW; sample rate; size 90 nm; voltage 1 V; CMOS logic circuits; Clocks; Delta modulation; Frequency; Mobile communication; Power generation; Quantization; Signal generators; Signal synthesis; Transmitters; CMOS; RF signal generator; RF transmitters; delay-locked loop (DLL); delta-sigma modulator; digital quadrature upconverter; digital transmitter; non-exact quantization; redundant arithmetic;
fLanguage :
English
Journal_Title :
Solid-State Circuits, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9200
Type :
jour
DOI :
10.1109/JSSC.2009.2028406
Filename :
5256992
Link To Document :
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