DocumentCode :
1615138
Title :
An integrated closed-loop polar transmitter with saturation prevention and low-IF receiver for quad-band GPRS/EDGE
Author :
Pullela, Raja ; Tadjpour, Shahrzad ; Rozenblit, Dmitriy ; Domino, William ; Obkircher, Thomas ; El Said, Mohamed ; Ramachandran, Bala ; Sowlati, Tirdad ; Agahi, Darioush ; Chen, WeiHong ; Badillo, Dean A. ; Kahrizi, Masoud ; Komaili, Jaleh ; Wloczysiak, S
Author_Institution :
Skyworks Solutions, Irvine, CA, USA
fYear :
2009
Firstpage :
112
Abstract :
This paper describes a 2.5G cellular transceiver with standard DigRF interface, implemented in a low-cost 0.13mum CMOS process. This is the first CMOS single-chip, polar closed-loop transmitter, excluding the power amplifier (PA). This transmitter achieves an efficiency of 26% in EDGE mode by linearizing a saturated PA in a closed-loop feedback system. This is much higher than the typical 15-to-18% efficiency of systems using a linear PA. Typical high-band/low-band performance of -62/-64Bc in 30 kHz for 400 kHz offset spectral mask and 1.4/1.7% EVM in EDGE mode are significantly better than those reported earlier. Using a low-noise quadrature mixer topology, the receiver, including T/R switch and SAW filters, achieves a sensitivity of -110 dBm. The RF solution, consisting of PAs in a multi-chip integrated antenna switch module, SAW filters with integrated matching components and the transceiver is the smallest form factor available in the market today.
Keywords :
3G mobile communication; CMOS integrated circuits; cellular radio; closed loop systems; packet radio networks; power amplifiers; transceivers; 2.5G cellular transceiver; CMOS process; SAW filters; T/R switch; closed-loop feedback system; efficiency 26 percent; integrated closed-loop polar transmitter; low-IF receiver; low-noise quadrature mixer topology; multichip integrated antenna; power amplifier; quad-band GPRS/EDGE; saturation prevention; size 0.13 mum; CMOS process; Feedback; Ground penetrating radar; Power amplifiers; Radio frequency; SAW filters; Switches; Topology; Transceivers; Transmitters;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Solid-State Circuits Conference - Digest of Technical Papers, 2009. ISSCC 2009. IEEE International
Conference_Location :
San Francisco, CA
Print_ISBN :
978-1-4244-3458-9
Type :
conf
DOI :
10.1109/ISSCC.2009.4977333
Filename :
4977333
Link To Document :
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