DocumentCode :
739428
Title :
Broadband Sequential Power Amplifier With Doherty-Type Active Load Modulation
Author :
Xuan Anh Nghiem ; Junqing Guan ; Negra, Renato
Author_Institution :
Dept. of High Freq. Electron., RWTH Aachen Univ., Aachen, Germany
Volume :
63
Issue :
9
fYear :
2015
Firstpage :
2821
Lastpage :
2832
Abstract :
This paper presents the concept and the detailed analysis of a sequential power amplifier with Doherty-type active load modulation (SPA-D). By introducing a Doherty-type output combiner into the conventional sequential power amplifier (PA), highly efficient amplification over broadband and wide dynamic range for the reconfigurable output power back-off can be achieved. The proposed amplifier mimics both the sequential and the Doherty PAs by exploiting the active load modulation region that has not been considered in the design of Doherty amplifiers. A broadband SPA-D prototype having 8-dB output back-off power (OBO) is designed and implemented. The experimental results exhibit drain efficiencies of 50%-75% at 7-10-dB OBO and 57%-70% at peak power with Doherty-like behavior over 700-MHz bandwidth centered at 2.35 GHz. The ability to easily reconfigure the breakpoint is experimentally verified, providing a convenient means for optimizing the amplifier efficiency according to various wireless standards. In addition, by using a memoryless digital predistortion, the spectrum emission mask required for long-term evolution down link can be fulfilled, making it well suited for applications in modern wireless transmitters.
Keywords :
amplification; power amplifiers; wideband amplifiers; Doherty-type active load modulation; Doherty-type output combiner; bandwidth 700 MHz; broadband sequential power amplifier; efficiency 50 percent to 75 percent; frequency 2.35 GHz; highly efficient amplification; long-term evolution down link; memoryless digital predistortion; reconfigurable output power back-off; spectrum emission mask; wide dynamic range; Broadband communication; Impedance; Microwave theory and techniques; Modulation; Power generation; Resistance; Wireless communication; Active load–pull; Doherty power amplifier (DPA); GaN; broadband; efficiency enhancement; sequential power amplifier (PA);
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2015.2456901
Filename :
7174556
Link To Document :
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