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
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