A Compact Wideband Millimeter-Wave Quadrature Hybrid Coupler Using Artificial Transmission Lines on a Glass Substrate

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Citations

SCOPUS

34

초록

In this letter, a compact branch-line-based quadrature hybrid coupler using a line miniaturization technique for a 28-GHz application is presented. Coplanar waveguide-based artificial transmission lines are used in the miniaturization, and T-equivalent circuit models are exploited to elaborate on the optimization method. A multistage T-model is utilized to eliminate the need for lumped elements, improve bandwidth performance, and simplify the fabrication process. To validate the proposed approach, the designed quadrature hybrid coupler was fabricated on a glass substrate. The measured insertion loss and phase difference at 28 GHz were 3.86 dB, 3.94 dB, and 90.4°, respectively. The output amplitude imbalance was within a 1-dB range from 25.3 to 31.0 GHz, and the total device area, excluding the measurement pad, was 1.15\times0.98 mm2. © 2001-2012 IEEE.

키워드

Artificial transmission linecompact couplerglass substratemillimeter-wave (mm-wave)quadrature hybrid couplerCoplanar waveguidesElectric linesEquivalent circuitsGlassMillimeter wavesMiniature instrumentsSubstratesTransmissionsAmplitude imbalanceArtificial transmission lineBandwidth performanceFabrication processMiniaturization techniquesOptimization methodPhase differenceQuadrature hybrid couplersElectric connectors
제목
A Compact Wideband Millimeter-Wave Quadrature Hybrid Coupler Using Artificial Transmission Lines on a Glass Substrate
저자
Chi, Jung-GeunKim, Young-Joon
DOI
10.1109/LMWC.2020.3027921
발행일
2020-11
유형
Article
저널명
IEEE Microwave and Wireless Components Letters
30
11
페이지
1037 ~ 1040