|
[1]D. M. Pozar, Microwave Engineering, 2nd ed. New York: Wiley,1998. [2]M.-L. Chuang, “Miniaturized ring coupler of arbitrary reduced size,” IEEE Microw. Wireless Compon. Lett., vol. 15, no. 1, pp. 16–18, Jan.2005. [3]J. Gu and X. Sun, “Miniaturization and harmonic suppression rat-race coupler using C-SCMRC resonators with distributive equivalent circuit,” IEEE Microw. Wireless Compon. Lett., vol. 15, no. 12, pp. 880–882, Dec. 2005. [4]K. W. Eccleston and S. H. M. Ong, “Compact planar microstripline branch-line and rat-race coupler,” IEEE Trans. Microw. Theory Tech., vol. 51, no. 10, pp. 2119–2125, Oct. 2003. [5]C.-C. Chen and C.-K. C. Tzuang, “Synthetic quasi-TEM meandered transmission lines for compacted microwave integrated circuits,” IEEE Trans. Microw. Theory Tech., vol. 52, no. 6, pp. 1637–1647, Jun. 2004. [6]G. Monti and L. Tarricone, “Reduced-size broadband CRLH¬ATL rat-race coupler,” in Proc. 36th Eur. Microw. Conf., 2006, pp. 125–128. [7]C.-W.Wang, T.-G. Ma, and C.-F. Yang, “A new planar artificial transmission line and its applications to a miniaturized Butler matrix,” IEEE Trans. Microw. Theory Tech., vol. 55, no. 12, pp. 2792–2801, Dec.2007. [8]R. K. Settaluri, G. S. A. Weisshaar, and V. K. Tripathi, “Compact folded line rat-race hybrid couplers,” IEEE Microw. Guided Wave Lett., vol. 10, no. 2, pp. 61–63, Feb. 2000. [9]H. Ghali and T. A. Moselhy, “Miniaturized fractal rat-race, branch-line,and coupler-line hybrids,” IEEE Trans. Microw. Theory Tech., vol. 52, no. 11, pp. 2513–2520, Nov. 2004. [10]H. Okabe, C. Caloz, and T. Itoh, “A compact enhanced-bandwidth hybrid ring using an artificial lumped-element left-handed transmission-line section,” IEEE Trans. Microw. Theory Tech., vol. 52, no. 3,pp. 798–804, Mar. 2004. [11]C.-W. Tang, M.-G. Chen, and C.-H. Tsai,“Miniaturization of microstrip brand-line coupler with dual transmission lines,” IEEE Microw. and Wireless Compon. Lett.,vol.18. no.3, Mar. 2008. [12]M. K. Mandal and S. Sanyal, “Reduced-length rat-race couplers,” IEEE Trans. Microw. Theory Tech., vol. 55, no. 12, pp. 2593–2598, Dec. 2007. [13]C.-C. Wang, C.-H. Lai, and T.-G. Ma, “Novel uniplanar synthesized coplanar waveguide and the application to miniaturized rat-race coupler,” in IEEE MTT-S Int. Microwave Symp. Dig., May 2010, pp. 23-28. [14]S.-H. Kim, K.-H. Son, E.-K. Kim, Y.-S. Lee, Y. Kim, and Y.-C. Yoon, “Size reduction and wide bandwidth rat-race coupler with shunt capacitors and composite right/left-handed transmission line,” in Proc. 21st Asia Pacific Microwave Conf., Dec. 2009, pp. 1376-1379. [15]Y.-G. Kim, S.-Y. Song; and K. W. Kim, “A compact wideband ring coupler utilizing a pair of transitions for phase inversion,” IEEE Microw. Wireless Compon. Lett., vol.21, no.1, pp. 25-27, Jan. 2011. [16]C.-H. Tseng and H.-J. Chen, “Compact rat-race coupler using shunt-stub-based artificial transmission lines,” IEEE Microw. Wireless Compon. Lett., vol.18, no.11, pp. 734-736, Nov. 2008. [17]D.-Z. Chen, X.-W. Shi, Y.-Y. Yang, and F. Wei, “Compact microstrip parallel coupler with high isolation,” Electron. Lett., vol.44, no.12, pp. 740-741, Jun. 2008. [18]Y. Wu, Y. Liu, S. Li, and C. Yu, “Extremely unequal Wilkinson power divider with dual transmission lines,” Electron. Lett., vol.46, no.1, pp. 90-91, Jan. 2010. [19]P.-H. Tu and C.-H. Tseng, “Design of a compact rat-race coupler using dual transmission lines,” in Proc. Asia-Pacific Microwave Conf., Dec. 2010, pp. 1224-1227. [20]M.-J. Park and B. Lee, “Design of ring couplers for arbitrary power division with 50 Ω lines,” IEEE Microw. Wireless Compon. Lett., vol.21, no.4, pp. 185-187, Apr. 2011. [21]J.-T. Kuo, J.-S. Wu, and Y.-C. Chiou, “Miniaturized rat race coupler with suppression of spurious passband,” IEEE Microw. Wireless Compon. Lett., vol.17, no.1, pp. 46-48, Jan. 2007. [22]C.-L. Chang and C.-H. Tseng, “Compact planar branch-Line couplers with single- and multi-section asymmetrical t-structures,” preparing for submission to IEEE Trans. Microw. Theory Tech. [23]W.R. Eisenstadt and Y. Eo, "S-parameter-based IC interconnect transmission line characterization," IEEE Trans. Compon., Hybrids, Manufact. Technol., vol. 15, no.4, pp. 483-490, Aug. 1992. [24]R. Mongia, I. Bahl, and P. Bhartia, RF and Microwave Coupled-Line Circuits. Norwood, MA: Artech House, 1999. [25]S.-S. Liao, P.-T. Sun, N.-C. Chin, and J.-T. Peng, “A novel compact-size branch-line coupler,” IEEE Microw. Wireless Compon. Lett., vol.15, no.9, pp. 588- 590, Sep. 2005. [26]S.-S. Liao and J.-T. Peng, “Compact planar microstrip branch-line couplers using the quasi-lumped elements approach with nonsymmetrical and aymmetrical T-shaped structure,” IEEE Trans. Microw. Theory Tech., vol.54, no.9, pp. 3508-3514, Sep. 2006. [27]C.-W. Tang and M.-G. Chen, “Synthesizing microstrip branch-Line couplers with predetermined compact size and bandwidth,” IEEE Trans. Microw. Theory Tech., vol.55, no.9, pp. 1926-1934, Sep. 2007.
|