DocumentCode :
1333076
Title :
A Low Phase-Noise Multi-Phase LO Generator for Wideband Demodulators Based on Reconfigurable Sub-Harmonic Mixers
Author :
Mazzanti, Andrea ; Vahidfar, Mohammad B. ; Sosio, Marco ; Svelto, Francesco
Author_Institution :
Univ. degli Studi di Pavia, Pavia, Italy
Volume :
45
Issue :
10
fYear :
2010
Firstpage :
2104
Lastpage :
2115
Abstract :
The advent of wideband systems, e.g., software defined radios, cognitive radios and UWB technology, motivates research for new transceiver architectures and circuit topologies to arrive at compact and low power solutions. Reference frequency generation in wideband CMOS receivers is usually power and area hungry. In this paper a wide band quadrature demodulator, based on mixers reconfigurable between fundamental and sub-harmonic operation modes is presented. The technique allows covering an RF bandwidth three times larger than the frequency covered by the synthesizer. Multiple local oscillator phases are required for the proposed architecture. For low phase noise and fast settling time, they are generated by means of a multi-stage injection locked ring oscillator. This solution proves very accurate and power efficient and may find applications in other communication systems requiring multiple phase references. A demodulator test chip tailored to WiMedia UWB groups 1, 3, 4 (3.1-9.5 GHz), and comprising mixers and frequency synthesizer, has been realized in a 65 nm CMOS technology. Experimental results show 10 dB of conversion gain with 2.3 nV/sqrt(Hz) equivalent input noise voltage spectral density. IIP2 and IIP3, with interferers in the GSM and WLAN bands, are 40 dBm and 11 dBm respectively. The synthesizer displays maximum spurs level of -43 dBc, a state of the art phase noise of -128 dBc/Hz@10 MHz offset and a settling time of less than 6 ns with 43 m W only.
Keywords :
CMOS integrated circuits; cellular radio; demodulators; frequency synthesizers; mixers (circuits); network topology; oscillators; ultra wideband communication; wireless LAN; UWB technology; WiMedia UWB groups; circuit topologies; cognitive radios; frequency 10 MHz; frequency 3.1 GHz to 9.5 GHz; frequency synthesizer; harmonic operation modes; low phase-noise multiphase LO generator; multistage injection locked ring oscillator; reconfigurable subharmonic mixers; software defined radios; transceiver architectures; wideband CMOS receivers; wideband demodulators; Demodulation; Mixers; Phase locked loops; Phase noise; Ring oscillators; Tuning; Wideband; Fast hopping synthesizer; UWB; injection locking; multi phase local oscillator; phase noise; ring oscillator; sub-harmonic mixers; ultra wide band;
fLanguage :
English
Journal_Title :
Solid-State Circuits, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9200
Type :
jour
DOI :
10.1109/JSSC.2010.2060258
Filename :
5584960
Link To Document :
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