Title :
A direct-conversion CMOS transceiver for the 802.11a/b/g WLAN standard utilizing a Cartesian feedback transmitter
Author :
Perraud, Laurent ; Recouly, Marc ; Pinatel, Christophe ; Sornin, Nicolas ; Bonnot, Jean-Louis ; Benoist, Frederic ; Massei, Myriam ; Gibrat, Olivier
Author_Institution :
NewLogic Technol., Sophia Antipolis, France
Abstract :
A fully integrated dual-band transceiver is implemented in 0.18-μm CMOS and is compliant with the IEEE 802.11a/b/g standards. The direct-conversion transceiver occupies 12 mm2 in a QFN-40 package. A fractional-N synthesizer operates at twice the channel frequency, covering continuously bands from 4.9 to 5.9 GHz, as well as the 2.4-GHz band. The 5- and 2.4-GHz receivers achieve a sensitivity level below -73 dBm in the 54-Mb/s mode and below -93 dBm in the 6-Mb/s mode, while consuming 230 mW. A fast RSSI-channel power-detection system allows to power-down signal processing in the listen mode. The 5- and 2.4-GHz transmitters implement a wideband Cartesian feedback loop for enhanced EVM performances and improved spectrum masks compliance. The transmitters deliver -2-dBm average power with an EVM of 3% in the 54-Mb/s mode while consuming 300 mW.
Keywords :
CMOS integrated circuits; IEEE standards; circuit feedback; radio transmitters; radiofrequency integrated circuits; wireless LAN; 0.18 micron; 2.4 GHz; 230 mW; 300 mW; 4.9 to 5.9 GHz; 5 GHz; 54 Mbit/s; 6 Mbit/s; 802.11a standard; 802.11b standard; 802.11g standard; Cartesian feedback transmitter; QFN-40 package; RSSI-channel power-detection system; channel frequency; class-AB amplifiers; direct-conversion CMOS transceiver; dual-band transceiver; fractional-N synthesizer; power-down signal processing; received signal strength indicator; spectrum masks compliance; wideband Cartesian feedback loop; wireless LAN; Dual band; Feedback; Frequency synthesizers; GSM; OFDM; Power supplies; Signal processing; Transceivers; Transmitters; Wireless LAN; 02.11a/b/g; 65; Cartesian feedback; IEEE; RSSI; WLAN; class-AB amplifiers; direct conversion; dual-band; fractional-; phase rotation; received signal strength indicator;
Journal_Title :
Solid-State Circuits, IEEE Journal of
DOI :
10.1109/JSSC.2004.836332