DocumentCode
1477916
Title
A 30.8-dBm Wideband CMOS Power Amplifier With Minimized Supply Fluctuation
Author
Jin, Boshi ; Moon, Junghwan ; Zhao, Chenxi ; Kim, Bumman
Author_Institution
RDA Microelectron. Inc., Beijing, China
Volume
60
Issue
6
fYear
2012
fDate
6/1/2012 12:00:00 AM
Firstpage
1658
Lastpage
1666
Abstract
A wideband design method for a twisted eight-shape transformer is introduced with the design guidelines. The supply modulation effect caused by the fluctuation of virtual ground is analyzed. To minimize the effect, the different matching capacitors are adopted at each port and an accurate virtual ground is positioned. For verification, a fully integrated linear CMOS power amplifier (PA) is implemented in a 0.18-μm standard 1P6M RF CMOS process for 2.3- and 2.6-GHz m-WiMAX (IEEE 802.16e standard) system. In continuous-wave measurements, the two-stage Class-AB PA delivers 30.8-dBm saturated power with a 30.6% power-added efficiency (PAE) and 22-dB gain across 900-MHz bandwidth (defined as 1-dB gain bandwidth). In 16 quadrature amplitude modulation m-WiMAX modulation signal measurements, the PA generates 26.2-dBm average power with a 20.5% PAE. The PA complies with the spectrum mask at a 21-dBm average power level and satisfies 3% error vector magnitude at 17-dBm average power.
Keywords
CMOS integrated circuits; UHF power amplifiers; WiMax; quadrature amplitude modulation; transformers; wideband amplifiers; 1P6M RF CMOS process; IEEE 802.16e standard; bandwidth 900 MHz; class-AB power amplifier; efficiency 30.6 percent; error vector magnitude; frequency 2.3 GHz; frequency 2.6 GHz; m-WiMAX; matching capacitors; minimized supply fluctuation; quadrature amplitude modulation; size 0.18 mum; supply modulation; twisted eight-shape transformer; virtual ground; wideband CMOS power amplifier; CMOS integrated circuits; Circuit faults; Impedance; Modulation; Radio frequency; Wideband; CMOS; linear; m-WiMAX; power amplifier (PA); supply modulation; transformer; wideband;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2012.2189142
Filename
6174428
Link To Document