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2012-12-21

A Compact Ka-Band Broadband Waveguide-Based Traveling-Wave Spatial Power Combiner with Low Loss Symmetric Coupling Structure

By Zhi-Yong Kang, Qing-Xin Chu, and Qiong Sen Wu
Progress In Electromagnetics Research Letters, Vol. 36, 181-190, 2013
doi:10.2528/PIERL12111311

Abstract

A compact Ka-band broadband waveguide-based traveling-wave spatial power combiner is presented. The low loss micro-strip probes are symmetrically inserted into both broadwalls of waveguide, quadrupling the coupling ways but the insertion loss increases little. The measured 16 dB return-loss bandwidth of the eight-way back-to-back structure is from 30 GHz to 39.4 GHz (more than 25%) and the insertion loss is less than 1 dB, which predicts the power-combining efficiency is higher than 90%. Ka

Citation


Zhi-Yong Kang, Qing-Xin Chu, and Qiong Sen Wu, "A Compact Ka-Band Broadband Waveguide-Based Traveling-Wave Spatial Power Combiner with Low Loss Symmetric Coupling Structure," Progress In Electromagnetics Research Letters, Vol. 36, 181-190, 2013.
doi:10.2528/PIERL12111311
http://test.jpier.org/PIERL/pier.php?paper=12111311

References


    1. Chang , K. and C. Sun, "Millimeter-wave power-combining techniques," IEEE Trans. Microwave Theory & Tech., Vol. 31, No. 2, 91-107, Feb. 1983.
    doi:10.1109/TMTT.1983.1131443

    2. Jiang, X., S. C. Oritiz, and A. Mortazawi, "A Ka-band power amplifier based on the traveling-wave power-dividing/combining slotted-waveguide circuit," IEEE Trans. Microwave Theory & Tech., Vol. 52, No. 2, 633-639, Feb. 2004.
    doi:10.1109/TMTT.2003.822026

    3. Shapiro, E. S., J. Xu, A. S. Nagra, F. Williams, Jr., U. K. Mishra, and R. A. York, "A high-efficiency traveling-wave power amplifier topology using improved power-combining techniques," IEEE Microwave Guide Wave Lett., Vol. 8, No. 3, 133-135, Mar. 1998.
    doi:10.1109/75.661139

    4. Sanada, A., K. Fukui, S. Nogi, and M. Sanagi, "Traveling-wave microwave power divider composed of reflectionless dividing units," IEEE Trans. Microwave Theory & Tech., Vol. 43, No. 1, 14-20, Jan. 1995.
    doi:10.1109/22.363014

    5. Jiang, X., L. Liu, S. C. Ortiz, R. Bashirullah, A. Mortazawi, and , "A Ka-band power amplifier based on a low-profile slotted-waveguide power-combining/dividing circuit," IEEE Trans. Microwave Theory & Tech., Vol. 51, No. 1, 144-147, Jan. 2003.
    doi:10.1109/TMTT.2002.806927

    6. Li, L. A., B. J. Hilliard, J. R. Shafer, J. Daggett, E. J. Dickman, and J. P. Becker, "A planar compatible traveling-wave waveguide-based power divider/combiner," IEEE Trans. Microwave Theory & Tech., Vol. 56, No. 8, 1889-1898, Aug. 2008.
    doi:10.1109/TMTT.2008.926555

    7. Kang, Y. Z., Q. X. Chu, and Q. S. Wu, "A Ka-band waveguide-based traveling-wave spatial power divider/combiner," IEEE International Conference on Microwave and Millimeter Wave Technology (ICMMT), Vol. 5, 1-4, 2012.

    8. Li, X.-Q., Q.-X. Liu, and J.-Q. Zhang, "loss multiport radial waveguide power divider," Progress In Electromagnetics Research Letters, Vol. 31, 189-198, 2012.
    doi:10.2528/PIERL12011006

    9. Huang, S., X. Xie, and B. Yan, "K band Wilkinson power divider based on a taper equation," Progress In Electromagnetics Research Letters,, Vol. 27, 75-83, 2011.
    doi:10.2528/PIERL11080809

    10. Olvera Cervantes, J. L., A. Corona-Chavez, R. Chavez-Perez, H. Lobato-Morales, J.-R. Ortega-Solis, and J.-L. Medina-Monroy, "A wideband quadrature power divider/combiner and its application to an improved balanced amplifier," Progress In Electromagnetics Research C, Vol. 34, 29-39, 2013.

    11. Shih, Y. C., T. N. Ton, and L. Q. Bui, "Waveguide-to-microstrip transitions for millimeter-wave applications," IEEE MTT-S Int. Microwave Symp. Dig., Vol. 1, 473-475, May 2002.