›› 2012, Vol. 42 ›› Issue (05): 1309-1314.

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Miniaturized dual-band Wilkinson power divider with physical port separation

WANG Xiao-long, SAKAGAMI Iwa-ta, TAKAHASHI Ken-saku, OKAMURA Shin-go   

  1. Department of Electric and Electronic Engineering, University of Toyama, 3190 Gofuku, Toyama, Japan
  • Received:2011-08-06 Online:2012-09-01 Published:2012-09-01

Abstract: A miniaturized dual-band Wilkinson power divider with a coupled-line section is presented. The output ports are isolated physically to reduce parasitic effects and to make an interconnection with other passive-active devices easy. Closed-form design equations based on an even-and odd-mode method are obtained. The design methods are discussed in details. The measured results of a microstrip power divider operation at 1 GHz and 2 GHz verified the theoretical feasibility of the proposed power divider.

Key words: communication, dual-band, Wilkinson power divider, physical port separation, coupled-line

CLC Number: 

  • TN626
[1] Wilkinson E J. An N-way hybrid power divider[J]. IRE Trans Microw Theory Tech, 1960, 8(1): 116-118.
[2] Cohn S B. A class of broadband three-port TEM-mode hybrids[J]. IEEE Trans Microw Theory Tech, 1968,19(2):110-116.
[3] Ahn H R, Wolff I. General design equations, small-sized impedance transformers, and their application to small-sized three-port 3-dB power dividers[J]. IEEE Trans Microw Theory Tech, 2001,49(7):1277-1288.
[4] Cheng K K M, Wong F L. A new Wilkinson power divider design for dual band application[J]. IEEE Microw Wireless Compon Lett, 2007,17(9):664-666.
[5] Park M J, Lee B. A dual-band Wilkinson power diver[J]. IEEE Microw Wireless Compon Lett, 2008,18(2):85-87.
[6] Wu Y, Liu Y, Zhang Y,et al. A dual band unequal Wilkinson power dvider without reactive components[J]. IEEE Trans Microw Theory Tech, 2009,57(1):216-222.
[7] Wu L, Sun Z, Yilmaz H, et al. A dual-band Wilkinson power divider[J]. IEEE Trans Microw Theory Tech, 2006,54(1):278-284.
[8] Kawai T, Nakashima Y, Kokubo Y, et al. Dual-band Wilkinson power dividers using a series RCL circuit[J]. IEICE Trans Electron, 2008,91(11):1793-1797.
[9] Wu Y, Liu Y, Xue Q, et al. Analytical design method of multiway dual-band planar power dividers with arbitrary power division[J]. IEEE Trans Microw Theory Tech, 2010,58(12):3832-3841.
[10] Wang X, Sakagami I. Generalized dual-frequency Wilkinson power dividers with a series/parallel RLC circuit//IEEE MTT-S Int Microwave Symp Dig, Baltimore, MD, USA, 2011.
[11] Wang X, Takahashi K, Okamura S, et al. Generalized port separation dual-band Wilkinson power divider with serial RLC components//In European Microw Conf, Manchester, United Kingdom,2011.
[12] Park M J, Lee B. Wilkinson power divider with extended ports for dual-band operation[J]. Electronics Lett, 2008, 44(15): 916-917.
[13] Park M J. Two-segment cascaded coupled line Wilkinson power diver for dual-band applications[J]. IEEE Microw Wireless Compon Lett, 2009,19(4):188-190.
[14] Park M. Dual-band Wilkinson power diver with coupled output port extensions[J]. IEEE Trans Microw Theory Tech, 2009,57(9):2232-2237.
[15] Wu Y, Liu Y, Xue Q. An analytical approach for a novel coupled-line dual-band Wilkinson power divider[J]. IEEE Trans Microw Theory Tech, 2011, 59(2):286-294.
[16] Monzon C. A small dual-band transformer in two-segments[J]. IEEE Trans Microw Theory Tech, 2003, 51(4):1157-1161.
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