Design of a Miniature Power Divider Based on the CRLH Zeroth Order Resonator with the Bandpass Filtering for the Military Satellite 


Vol. 37,  No. 8, pp. 637-644, Aug.  2012


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  Abstract

In this paper, a new compact power divider is suggested. Instead of the quarter wavelength transmission line(TX-line)s for the branches of the conventional Wilkinson’s power divider design method, we use our composite right- and left-handed(CRLH) TX-line zeroth order resonator(ZOR) bandpass filters of one twelfth wavelength and reduce the physical length of the power divider. Besides, the filters in the branches can secure the passband for power-division. To validate the proposed power divider, we take an L-band for millitary satellaite transponder as the test case and the performances of the circuit and full-wave simulation results with the CRLH properties of the structure are shown with the dispersion curve and E-field at the ZOR. The measurement is compared with the simulation results. Also, the size reduction effect by the proposed scheme is addressed

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  Cite this article

[IEEE Style]

D. Eom, S. Kahng, C. Song, C. Woo, D. Park, "Design of a Miniature Power Divider Based on the CRLH Zeroth Order Resonator with the Bandpass Filtering for the Military Satellite," The Journal of Korean Institute of Communications and Information Sciences, vol. 37, no. 8, pp. 637-644, 2012. DOI: .

[ACM Style]

Da-jeong Eom, Sungtek Kahng, Choongho Song, Chunsik Woo, and Dohyun Park. 2012. Design of a Miniature Power Divider Based on the CRLH Zeroth Order Resonator with the Bandpass Filtering for the Military Satellite. The Journal of Korean Institute of Communications and Information Sciences, 37, 8, (2012), 637-644. DOI: .

[KICS Style]

Da-jeong Eom, Sungtek Kahng, Choongho Song, Chunsik Woo, Dohyun Park, "Design of a Miniature Power Divider Based on the CRLH Zeroth Order Resonator with the Bandpass Filtering for the Military Satellite," The Journal of Korean Institute of Communications and Information Sciences, vol. 37, no. 8, pp. 637-644, 8. 2012.