A General Design Method for the Broadband Multi-Section Power Divider

광대역 다단 전력 분배기의 일반화된 설계 방법

  • Published : 2002.02.01

Abstract

A novel multi-section power divider configuration is Proposed to obtain wide-band frequency performance up to microwave frequency region. Design procedures for the proposed microwave broadband power divider are composed of a Planar multi-section three-Ports hybrid and a waveguide transformer design procedures. The multi∼section power divider is based on design theory of the optimum quarter- wave transformer Furthermore, in order to obtain the broadband isolation performance between the two adjacent output ports, the odd mode equivalent circuit should be matched by using the lossy element such as resistor. The derived design formula for calculating these odd mode∼matching elements is based on the singly terminated filter design theory. The waveguide transformer section is designed to suppress the propagation of the higher order modes such as waveguide modes due to employing the metallic electric wall. Simulation and experiment show excellent performance of multi section power divider.

Keywords

References

  1. E. J. Wilkinson, An N-way hybrid power divider, IRE Trans. on Microwave Theory and Techniques, Vol.MTT-8, January. 1960, pp.116-118
  2. J. R. Dent, Strip-line technique produces a simple 3-dB directional coupler, Electronic Design, August 31, 1960, pp. 52-53
  3. L. I. Parad and R. L. Moynihan, Split-Tee Power divider, IEEE Trans. on Microwave Theory and Techniques, Vol.MTT-13, No.2, Feb 1965, pp.91-95
  4. A. A. M. Saleh, Planar electrically symmetric n-way hybrid power dividers/combiners, IEEE Trans. on Microwave Theory and Techniques, Vol.MTT-28, No.6, June 1980, pp.555-563
  5. S. B. Cohn, A class of broadband three-port TEM-mode hybrids, IEEE Trans. on Microwave Theory and Techniques, Vol. MTT-16, No.2, February 1968, pp.110-116
  6. S. B. Cohn, Optimum design of stepped transmission-line transformers, IRE Trans. on Microwave Theory and Techniques, Vol.MTT-3, April 1955, pp.16-21
  7. G. L. Matthaei, Leo Young, E. M. T. John 'Microwave Filters, Impedance Matching Networks and Coupling Structures', Artech House, pp.104-108, 1980