DocumentCode :
3605920
Title :
An Integrated Continuous Class- {\\rm F} ^{-1} Mode Power Amplifier Design Approach for Microwave Enhanced Portable Diagnostic Applications
Author :
Imtiaz, Azeem ; Lees, Jonathan ; Heungjae Choi ; Joshi, Lovleen Tina
Author_Institution :
Sch. of Eng., Cardiff Univ., Cardiff, UK
Volume :
63
Issue :
10
fYear :
2015
Firstpage :
3007
Lastpage :
3015
Abstract :
This paper presents a novel technique for designing a microwave power delivery system targeted at compact and portable microwave-assisted diagnostic healthcare applications to help tackle the growing problem of anti-microbial resistance. The arrangement comprises a purpose-built cylindrical cavity resonator within which, the bacterial samples are exposed, driven by a high-efficiency 10-W GaN amplifier, critically coupled via a simple, adjustable internal loop antenna. The experimental work considers the exposure of different sample volumes of water and the change in the natural impedance environment of the cavity that results. For the first time, it is shown that impedance variation cannot only be accommodated, but can actually be exploited, allowing “continuous,” high-efficiency performance to be achieved while processing a wide range of sample volumes. Specifically, using only transistor package parasitics, the impedance of the cavity itself together with a single-series transmission line allows a continuous class- F -1 mode loading condition to be realized. Measured results show more than 70% average drain efficiency, above 40-dBm average output power, and more than 10-dB gain over the cavity´s operational bandwidth.
Keywords :
III-V semiconductors; cavity resonators; gallium compounds; health care; loop antennas; microwave power amplifiers; wide band gap semiconductors; GaN; antimicrobial resistance; cavity resonator; integrated continuous class F-1 mode power amplifier design approach; internal loop antenna; microwave enhanced portable diagnostic application; microwave power delivery system; microwave-assisted diagnostic healthcare application; power 10 W; transistor package parasitic; Cavity resonators; Electromagnetic heating; Impedance; Microwave ovens; Microwave transistors; Transistors; Anti-microbial resistance (AMR); C-difficile; DNA detection; GaN; bacterial spore; class-${rm F} ^{-1}$; continuous modes; healthcare; microwave heating; 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.2015.2472417
Filename :
7270347
Link To Document :
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