DocumentCode :
801798
Title :
Optimum operation of asymmetrical-cells-based linear Doherty power Amplifiers-uneven power drive and power matching
Author :
Kim, Jangheon ; Cha, Jeonghyeon ; Kim, Ildu ; Kim, Bumman
Author_Institution :
Dept. of Electron. & Electr. Eng., Pohang Univ. of Sci. & Technol., Gyungbuk, South Korea
Volume :
53
Issue :
5
fYear :
2005
fDate :
5/1/2005 12:00:00 AM
Firstpage :
1802
Lastpage :
1809
Abstract :
We developed a Doherty amplifier with uneven input drive and optimized individual matching for the carrier and peaking cells. In the proposed amplifier, higher input power is delivered to the peaking cell rather than the carrier cell for optimized linear power operation, especially for appropriate load modulation. Both cells are matched differently to further optimize the performance. We analyzed the efficiency of the proposed amplifier as a function of the input drive ratio for the two cells. To interpret the linearity related to the load modulation and harmonic cancellation mechanisms, we simulated the third-order intermodulation amplitude and phase of each cell of the proposed amplifier. For verification, we implemented the asymmetric power amplifier with uneven drive and optimized power matching using Motorola´s MRF281SR1 LDMOSFET with a 4-W peak envelope power. For a 2.14-GHz forward-link wireless code-division multiple-access signal, the measured drain efficiency of the amplifier is 40%, and the measured average output power is 33 dBm at an adjacent channel leakage ratio (ACLR) of -35 dBc, while those of the comparable class-AB amplifier are 21% and 30.6 dBm at the same ACLR level, respectively.
Keywords :
circuit optimisation; code division multiple access; intermodulation; power MOSFET; power amplifiers; 2.14 GHz; 4 W; Motorola LDMOSFET; adjacent channel leakage ratio; asymmetric power amplifier; asymmetrical cells; carrier cell; class-AB amplifier; code-division multiple-access signal; drain efficiency measurement; harmonic cancellation mechanism; input drive ratio; linear Doherty power amplifier; linear power optimization; load modulation; peak envelope power; peaking cell; power matching optimization; third-order intermodulation amplitude; uneven power drive; Amplitude modulation; Circuits; High power amplifiers; Impedance; Linearity; Operational amplifiers; Phase modulation; Power amplifiers; Power generation; Power measurement; Adjacent channel leakage ratio (ACLR); Doherty amplifier; asymmetric power amplifier; efficiency; linear power amplifier (LPA); linearity;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2005.847073
Filename :
1427985
Link To Document :
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