Title :
Broadband Doherty Power Amplifier Based on Asymmetric Load Matching Networks
Author :
Jin-hee Kwon ; Min-cheol Seo ; Hwi-seob Lee ; Je-hyun Gu ; Jung-hyun Ham ; Keum Cheol Hwang ; Kang-Yoon Lee ; Cheon-seok Park ; Youngoo Yang
Author_Institution :
Sch. of Electron. & Electr. Eng., Sungkyunkwan Univ., Suwon, South Korea
Abstract :
This brief presents asymmetric load matching networks for broadband Doherty power amplifiers (DPAs). The output combiner consists of two λ/4 impedance transformers with optimized characteristic impedance values in order to provide a load modulation at a high output power level; the bandwidth limitation for efficiency at the back-off power level can be then mitigated. For a proper load modulation with the proposed output combiner, asymmetric load matching networks between the carrier and peaking amplifiers are proposed. The input and output matching networks were designed using balanced open stubs, which are more insensitive to frequency than unbalanced open stubs. For the load matching networks, two-section matching networks were adopted. The designed and implemented broadband DPA showed a fractional bandwidth of 23.5% (from 750 to 950 MHz). It also showed measured efficiency values of higher than 55.4% at the peak power level and 51.5% at the 6-dB back-off power level, respectively. For the operational frequency range, a peak output power value of higher than 48 dBm and a gain of 14-15.8 dB were achieved.
Keywords :
UHF power amplifiers; impedance convertors; wideband amplifiers; asymmetric load matching networks; back-off power level; balanced open stubs; broadband DPA; broadband Doherty power amplifier; carrier amplifier; fractional bandwidth; frequency 750 MHz to 950 MHz; gain 14 dB to 15.8 dB; high-output power level; impedance transformers; input matching network; load modulation; measured efficiency value; operational frequency range; optimized characteristic impedance values; output combiner; output matching network; peak output power value; peak power level; peaking amplifier; two-section matching networks; unbalanced open stubs; Bandwidth; Broadband communication; Frequency measurement; Gain; Impedance; Impedance matching; Power generation; Asymmetric load matching networks; Broadband Doherty power amplifier; Doherty amplifier; asymmetric load matching networks; broadband Doherty power amplifier (DPA); power amplifier; power amplifier (PA);
Journal_Title :
Circuits and Systems II: Express Briefs, IEEE Transactions on
DOI :
10.1109/TCSII.2015.2407197