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Microwave Substrate Integrated Waveguide Power Amplifier using Complementary Split Ring Resonators

Tran, H.T.T. and Manh, L.D. (2023) Microwave Substrate Integrated Waveguide Power Amplifier using Complementary Split Ring Resonators. In: UNSPECIFIED.

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Abstract

This paper proposes a substrate integrated waveguide (SIW) power amplifier (PA). By using the SIW technology, the PA has advantages of low radiation loss and high capability of integration with other planar components on the same substrate. In this paper, a new configuration of resonator is used in input/output matching circuit, which is complementary split ring resonator (CSRR). The CSRR has benefits of high selectivity, compact size, and feasibility for etching on the SIW. The method of designing the SIW matching circuit is that the resonant frequency of the first/last resonator is detuned to transform a real impedance of 50 Ω to a complex impedance. The cosimulation results show that the SIW PA achieves a maximum power added efficiency (PAE) of 57.05, an output power Pmathrmout of 37.43 dBm, and a power gain G of 13.43 dB at 6 GHz. © 2023 IEEE.

Item Type: Conference or Workshop Item (UNSPECIFIED)
Divisions: Offices > Office of International Cooperation
Identification Number: 10.1109/ATC58710.2023.10318916
Uncontrolled Keywords: Etching; Microwave resonators; Natural frequencies; Optical resonators; Ring gages; Substrate integrated waveguides, Complementary split ring resonator; Complementary split-ring resonator; High capabilities; Low radiation; Microwave substrates; Power amplifier; Radiation loss; Substrate integrated waveguide; Substrate-integrated waveguide technologies; Substrate-integrated waveguides, Power amplifiers
Additional Information: cited By 0; Conference of 16th International Conference on Advanced Technologies for Communications, ATC 2023 ; Conference Date: 19 October 2023 Through 21 October 2023; Conference Code:194622
URI: http://eprints.lqdtu.edu.vn/id/eprint/11032

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