Mansour Bacha and Lahcène Hadjabderrahmane
[1] M.W. Medley, Jr., Microwave and RF circuits: Analysis, synthesis and design (Boston: Artech House, 1993). [2] G. Besser, Practical RF circuit design for modern wireless system, volume 2: Active circuit and system (Norwood, Massachusetts: Artech House, 2003). [3] T.H. Tri, Solid state microwave amplifier design (New York: Wiley-Interscience, 1981). [4] K.B. Nicolas, W.T. Wilser, T.R. Kritzer, and R.R. Pereira, On theory and performance of solid-state microwave distributed amplifiers, IEEE Transactions on Microwave Theory and Techniques, 6(MTT-31), 1983, 447–456. [5] G. Matthaei, L. Young, and E.M.T. Jones, Microwave filters, impedance matching networks, and coupling structures (Norwood, Massachusetts: Artech House, 1980). [6] W.K. Chen, Theory and design of broadband matching networks (New York: Pergamon Press, 1976). [7] G.L. Matthaei, L. Young, and E.M.T. Jones, Microwave filters, impedance matching networks and coupling structures (New York: McGraw-Hill, 1964). [8] W.W. Choi, K.W. Tam, and R. Martins, Design of microwave lumped and transversal bandpass filter with noise reduction, Microwave and Optical Technology Letters, 48(6), 2006, 1161–1164. [9] M.R. Keshavarzi, G. Moradi, A. Abdipour, and A. Mohammadi, Study influence of transmission line loss on the performance of the matrix amplifier, IEICE Electronics Express, 6(17), 2009, 1291–1296. [10] E. Green, Synthesis of ladder networks to give Butterworth or Chebyshev response in the passband, Proceedings of IEE (London), 4(Pt 101), 1954, 192–203. [11] H.J. Carlin, Distributed circuit design with transmission line elements, IEEE Proceeding, 59(7), 1971, 1059–1081. [12] B.M. Lee, S.K. Chu, K.J. Webb, and L.F. Eastman, High efficiency monolithic gallium nitride distributed amplifier, IEEE Microwave and Guided Wave Letters, 10(7), 2000, 270–272. [13] M. Bacha and L. Hadjabderrahmane, Design of broadband microwave amplifier for telecommunication applications, The 14th IASTED International Conference on Applied Simulation and Modelling, Benalmad`ena, Spain, 2005, 309–313. [14] H. Howe, Jr., Stripline circuit design (Dedham, Massachusetts: Artech House, 1974). [15] K.C. Gupta, R. Garg, and I.J. Bahl, Microstrip lines and slotlines (Dedham, Massachusetts: Artech House, 1979). [16] A.S. Rashid and S. Khatun, Design of microstrip antenna for WLAN, Journal of Applied Sciences, 5(1), 2005, 47–51. [17] Y.K. Ho, L.K. Chun, T.C. Yoong, Y.K. Choon, and L.E. Hock, Electromagnetic wave propagation in microstrip transmission lines, Journal of Applied Sciences, 11(8), 2011, 1376–1380. [18] Y. Fa-Xin, L. Jia-Rui, H. Zheng-Liang, L. Hao, and L. Zhe-Ming, Overview of radiation hardening techniques for IC design, Information Technology Journal, 9(6), 2010, 1068–1080. [19] F. Touati, S. Douss, Z. Nadir, M.B. Suwailam, and M. Loulou, A 3 to 5 GHz UWB SiGE HBT low noise amplifier for WPANS, IEEE standard, Information Technology Journal, 6(4), 2007, 579–583. [20] M.F. Ain, S.I.S. Hassan, J.S. Mandeep, K. Igarashi, K. Tanaka, and M. Iida, Design of 11 GHz Ku band amplifier, Engineering Letters, 2007, http://www.engineeringletters.com/issues_v15/issue_1/EL1515.pdf
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