Title :
An extended bandwidth Doherty power amplifier using a novel output combiner
Author :
Abadi, Mehdi Naseri Ali ; Golestaneh, Hamed ; Sarbishaei, Hassan ; Boumaiza, Slim
Abstract :
This paper proposes a novel output combiner for Doherty power amplifiers with extended bandwidth. The proposed output combiner employs a resonance LC tank at the output of the peaking transistor to maintain the back-off impedance seen by the main transistor over a wide frequency band. In addition, the output combiner provides low low-frequency impedance for both the main and peaking transistors which results in improved linearizability when the amplifier is concurrently driven with dual-band modulated signals. A 20W, 30% bandwidth gallium nitride Doherty power amplifier based on the proposed topology was implemented to demonstrate the effectiveness of the output combiner. The Doherty amplifier was successfully linearized under single- and dual-band modulated excitations and achieved 42% power added efficiency when amplifying a concurrent dual-band 15 MHz WCDMA and 15MHz LTE signals with 9:4dB peak-to-average power ratio.
Keywords :
III-V semiconductors; LC circuits; gallium compounds; microwave power amplifiers; microwave power transistors; modulation; power combiners; wide band gap semiconductors; GaN; LTE signal; back-off impedance; concurrent dual-band WCDMA; dual-band modulated signal; efficiency 42 percent; extended bandwidth Doherty power amplifier; frequency 15 MHz; gain 9.4 dB; output combiner; peaking transistor; power 20 W; power added efficiency; resonance LC tank; single-dual-band modulated excitation; HEMTs; Multiaccess communication; Optimized production technology; Radio frequency; Spread spectrum communication; Doherty amplifier; GaN HEMT; RF power amplifier;
Conference_Titel :
Microwave Symposium (IMS), 2014 IEEE MTT-S International
Conference_Location :
Tampa, FL
DOI :
10.1109/MWSYM.2014.6848510