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A simple 90° hybrid branchline coupler with wideband phase balance for 5G applications

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M. Muraguchi, T. Yukitake, and Y. Naito, “Optimum design of 3-DB branch-line couplers using microstrip lines,” IEEE Transactions on Microwave Theory and Techniques, vol. 31, no. 8, pp. 674-678, 1983. [Online]. Available: doi:10.1109/tmtt.1983.1131568.Open DOISearch in Google Scholar

D. A. Letavin and D. P. Alaev, “A compact 3-DB coupler with microstrip cells,” Journal of Physics: Conference Series, vol. 1730, no. 1, pp. 012103, 2021. [Online]. Available: doi:10.1088/1742-6596/1730/1/012103.Open DOISearch in Google Scholar

M. Moubadir, I. Badaoui, N. A. Touhami, M. Aghoutane, and M. El Ouahabi, “A new circular polarization dual feed microstrip square patch antenna using branch coupler feeds for WLAN/Hiperlan Applications,” Procedia Manufacturing, vol. 32, pp. 702-709, 2019. [Online]. Available: doi:10.1016/j.promfg.2019.02.274.Open DOISearch in Google Scholar

F. T. Celik, S. Joof, and K. Karaçuha, “A Dual-Polarized Bandwidth Enhanced Filtering Dipole Antenna Design for 5G,” IEEE Access, vol. 11, 2023.Search in Google Scholar

M. Moubadir, H. Aziz, N. A. Touhami, and A. Mohamed, “A miniaturized branch-line hybrid coupler microstrip for Long Term Evolution Applications,” Procedia Manufacturing, vol. 22, pp. 491-497, 2018. [Online]. Available: doi:10.1016/j.promfg.2018.03.075.Open DOISearch in Google Scholar

W. Wang, X. Shui, and X. Wang, “Research of terahertz narrow-wall 3DB coupler on silicon-substrate,” 2013 22nd Wireless and Optical Communication Conference, 2013.Search in Google Scholar

Y. Chen, J. Zhou, Z. Yu, Y. Yin, and G. Peng, “Design of an ultra-wideband Compact 90-degree 3DB coupler for image-rejection up-converter,” 2017 Sixth Asia-Pacific Conference on Antennas and Propagation (APCAP), 2017.Search in Google Scholar

S. Wen, Q. Wang, and Y. Tan, “Design of a compact 3DB ka-band Directional Coupler,” The 2012 International Workshop on Microwave and Millimeter Wave Circuits and System Technology, 2012. [Online]. Available: doi:10.1109/mmwcst.2012.6238197.Open DOISearch in Google Scholar

Y. Fang and X. Yan, “Design of waveguide narrow-wall 3DB coupler for 3MM-wave frequency band,” Proceedings of 2012 5th Global Symposium on Millimeter-Waves, 2012. [Online]. Available: doi:10.1109/gsmm.2012.6314027.Open DOISearch in Google Scholar

W. Kong, P. Li, M. Chang, and G. Yang, “Miniaturization design of 3DB directional coupler applied to balanced power amplifier in WLAN system,” 2016 IEEE International Conference on Electronic Information and Communication Technology (ICEICT), 2016. [Online]. Available: doi:10.1109/iceict.2016.7879770.Open DOISearch in Google Scholar

M. Zhou, J. Shao, B. Arigong, H. Ren, J. Ding, and H. Zhang, A novel 3DB Directional Coupler with reconfigurable performance,” Texas Symposium on Wireless and Microwave Circuits and Systems, 2014. [Online]. Available: doi:10.1109/wmcas.2014.7015867.Open DOISearch in Google Scholar

B. Rejaei, K. Ng, C. Floerkemeier, N. Pham, L. Nanver, and J. Burghartz, “Integrated Transmission Lines on High-Resistivity Silicon: Coplanar Waveguides or Microstrips,” 30th European Solid-State Device Research Conference, 2000.Search in Google Scholar

L. Wang, G. Wang, and J. Sidén, “Design of High-Directivity Wideband Microstrip Directional Coupler with Fragment-Type Structure,” IEEE Transactions on Microwave Theory and Techniques, vol 63, no. 12, pp. 3962-3970, 2015.Search in Google Scholar

D. Letavin and R. Abdullin, “Development of Compact Coupler Devices on Electrodynamic Structures with Different Thickness Substrates,” 2018 IEEE Radio and Antenna Days of the Indian Ocean (RADIO), 2018”.Search in Google Scholar

H. Frey, B. Peters, H. Hunsinger, and J. Vehlow, “Characterization of municipal solid waste combustion in a grate furnace,” Waste Management, vol. 23, no. 8, pp. 689-701, 2003.Search in Google Scholar

A. S. Khan, Microwave Engineering Concepts and Fundamentals. CRC Press LLC, 2017.Search in Google Scholar

Sonnet Suites, www.sonnetsoftware.com, Ver. 18.56, Syracuse, New York.Search in Google Scholar

M. Ali, S. K. A. Rahim, M. Z. M. Nor, and M. F. Jamlos, “Branch Line Coupler Using Hybrid T-Model Structure,” Microwave and Optical Technology Letters, vol. 54, no. 1, pp. 237-240, 2012.Search in Google Scholar

P. Bhowmik and T. Moyra, “A Low-Cost Compact Planar Dual-Band 3 dB Branch Line Coupler Using an Unbalanced CRLH,” Iranian Journal of Science and Technology, Transactions of Electrical Engineering, vol. 43, pp. 397-404, 2019.Search in Google Scholar

L. Nouri, S. I. Yahya, and A. Rezaei, “Design and Fabrication of a Compact Branch-Line Hybrid Coupler with a Balanced Phase Using a New Microstrip Structure for GSM Applications,” AEU-International Journal of Electronics and Communications, vol. 161, pp. 154529, 2023.Search in Google Scholar

S. Velan and M. Kanagasabai, “Compact Microstrip Branch-Line Coupler with Wideband Quadrature Phase Balance,” Microwave and Optical Technology Letters, vol. 58, pp. 1369-1374, 2016.Search in Google Scholar

M. Salehi and L. Noori, “Novel 2.4 GHz Branch-Line Coupler Using Microstrip Cells,” Microwave and Optical Technology Letters, vol. 56, no. 9, pp. 2110-2113, 2014.Search in Google Scholar

M. R. Salehi, L. Noori, and E. Abiri, “Novel tunable branch-line coupler for WLAN applications,” Microwave and Optical Technology Letters, vol. 57, no. 5, pp. 1081-1084, 2015.Search in Google Scholar

S. Roshani, S. I. Yahya, S. Roshani, and M. Rostami, “Design and fabrication of a compact branch-line coupler using resonators with wide harmonics suppression band,” Electronics, vol. 11, no. 5, 2022.Search in Google Scholar

eISSN:
1339-309X
Lingua:
Inglese
Frequenza di pubblicazione:
6 volte all'anno
Argomenti della rivista:
Engineering, Introductions and Overviews, other