DocumentCode :
1343702
Title :
A Fully Integrated Dual-Mode Highly Linear 2.4 GHz CMOS Power Amplifier for 4G WiMax Applications
Author :
Chowdhury, Debopriyo ; Hull, Christopher D. ; Degani, Ofir B. ; Wang, Yanjie ; Niknejad, Ali M.
Author_Institution :
Berkeley Wireless Res. Center, Univ. of California, Berkeley, CA, USA
Volume :
44
Issue :
12
fYear :
2009
Firstpage :
3393
Lastpage :
3402
Abstract :
In recent years, there has been tremendous interest in trying to implement the power amplifier in CMOS, due to its cost and integration benefits. Most of the high power (watt-level) CMOS PAs reported to date have not exhibited sufficient linearity required for next generation wireless standards. In this paper, we report a single-chip linear CMOS PA with sufficient power and linearity for emerging OFDM-based 4G WiMAX applications. This 90 nm 2.4 GHz CMOS linear power amplifier uses a two-stage transformer-based power combiner and produces a saturated output power of 30.1 dBm with 33% PAE and 28 dB small-signal gain. A novel bypass network is introduced to ensure stability without sacrificing gain. The choice of optimal biasing and capacitive compensation produces very flat AM-AM and AM-PM response up to high power. The PA has been tested with OFDM modulated signal and produces EVM better than -25 dB at 22.7 dBm average power. Graceful power back-off is demonstrated through turning off one of the stages, allowing low-power operation with enhanced efficiency.
Keywords :
4G mobile communication; CMOS analogue integrated circuits; OFDM modulation; UHF integrated circuits; UHF power amplifiers; WiMax; power combiners; 4G WiMax; AM-AM response; AM-PM response; OFDM; bypass network; capacitive compensation; frequency 2.4 GHz; fully integrated dual-mode highly linear CMOS power amplifier; next generation wireless standards; optimal biasing; size 90 nm; two-stage transformer-based power combiner; Circuit faults; Gain; High power amplifiers; Linearity; Power amplifiers; Power combiners; Power generation; Stability; Testing; WiMAX; CMOS power amplifier; WiMAX; power back-off; transformer; transformer power combiner;
fLanguage :
English
Journal_Title :
Solid-State Circuits, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9200
Type :
jour
DOI :
10.1109/JSSC.2009.2032277
Filename :
5342364
Link To Document :
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