DocumentCode :
1785
Title :
Low-Power, Low-Cost CMOS Direct-Conversion Receiver Front-End for Multistandard Applications
Author :
Jusung Kim ; Silva-Martinez, Jose
Author_Institution :
Analog & Mixed Signal Center, Texas A&M Univ., College Station, TX, USA
Volume :
48
Issue :
9
fYear :
2013
fDate :
Sept. 2013
Firstpage :
2090
Lastpage :
2103
Abstract :
A broadband CMOS direct-conversion receiver with on-chip frequency divider has been integrated in a 0.13- μm CMOS process. The key feature of the proposed receiver front-end is a single low-noise transconductance amplifier (LNTA) driving a current-mode passive mixer terminated by a low-input-impedance transimpedance amplifier (TIA). The receiver chain has improved robustness to out-of-band interference and outstanding linearity. We employ a broadband common-gate (CG) LNTA with dual feedback to improve both gain and noise figure (NF) without breaking the fixed relationship between input impedance, transconductance gain, and load impedance. A LNTA load impedance boosting technique suppresses noise-amplification due to TIA, commonly found in passive mixers. The core circuit (RF and baseband signal path) consumes only 13 mW, and the prototype receiver achieves >22.4-dB conversion gain, dB NF, and ≥ -1.5 dBm IIP3 from 1.4 to 5.2 GHz. Maximum conversion gain of 24.3 dB and minimum NF of 6.5 dB are achieved at 1.4 and 2 GHz, respectively. The chip active area is 1.1 mm 2 with the entire RF signal path operated from a 1.2-V supply. The LO portion is biased from a 1.5-V supply.
Keywords :
CMOS analogue integrated circuits; feedback; frequency dividers; impedance matching; interference suppression; low noise amplifiers; receivers; CG LNTA; CMOS direct-conversion receiver front-end; CMOS process; LNTA load impedance boosting technique; RF path; RF signal path; TIA; baseband signal path; broadband CMOS direct-conversion receiver; broadband common-gate; conversion gain; core circuit; current-mode passive mixer; dual feedback; frequency 1.4 GHz to 5.2 GHz; gain 24.3 dB; input impedance; low-input-impedance transimpedance amplifier; multistandard applications; noise figure; noise-amplification suppression; on-chip frequency divider; out-of-band interference; outstanding linearity; passive mixers; power 13 mW; receiver chain; robustness; single low-noise transconductance amplifier; transconductance gain; voltage 1.2 V; Impedance; Mixers; Noise; Noise measurement; Receivers; Switches; Transconductance; Broadband receiver; CMOS; common-gate amplifier; direct-conversion; feedback amplifier; low-noise amplifier (LNA); low-nose transconductance amplifier (LNTA); operational transconductance amplifier (OTA); passive mixer; transimpedance amplifier (TIA); wideband receiver;
fLanguage :
English
Journal_Title :
Solid-State Circuits, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9200
Type :
jour
DOI :
10.1109/JSSC.2013.2265781
Filename :
6544307
Link To Document :
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