Title :
Multilayer antennas with harmonic filtering for differentially fed power amplifier integration
Author :
Zubir, F. ; Gardner, Peter
Author_Institution :
Sch. of Electron., Electr. & Comput. Eng., Univ. of Birmingham, Birmingham, UK
Abstract :
In this study, a push-pull Class B configuration is used to demonstrate the fruitful use of a new proposed power combiner adopted from the previous aperture-coupled differential antenna structure. This structure differs from the previous aperture-coupled technique in that it comprises identical harmonic traps on either side of the aperture, using resonant stubs to form bandstop filters (BSF) whose residual susceptance at fundamental frequency is absorbed into the antenna matching network. The proposed design suppresses harmonic voltages at 2fo and 3fo, whilst also optimising the load line impedance seen by the two amplifiers at the fundamental frequency in odd mode at fo (2.062 GHz). This technique offers advantages of tight integration of a Class B push-pull transmitting amplifier with an aperture fed antenna. It can produce well-shaped output waveform, enhance immunity from common mode interference and reduce the total loss as well as improve the overall efficiency for a wide range of system configurations.
Keywords :
aperture antennas; band-stop filters; differential amplifiers; power amplifiers; antenna matching network; aperture fed antenna; aperture-coupled differential antenna structure; bandstop filters; differentially fed power amplifier integration; harmonic filtering; harmonic voltages; identical harmonic traps; load line impedance; multilayer antennas; power combiner; push-pull class B configuration; resonant stubs; Aperture antennas; Aperture coupled antennas; Harmonic analysis; Power amplifiers; Power harmonic filters; aperture coupling; bandstop filter; differentially fed antenna; power amplifier; push-pull;
Conference_Titel :
Antennas and Propagation in Wireless Communications (APWC), 2013 IEEE-APS Topical Conference on
Conference_Location :
Torino
DOI :
10.1109/APWC.2013.6624933