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A new technique for the analysis of the dispersion characteristics of microstrip lines
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Mittra, R.1
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Analysis of microstrip-like transmission lines by nonuniform discretization of integral equations
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Yamashita, E.1
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Spectral domain immitance approach for dispersion characteristics of generalized printed transmission lines
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July
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T. Itoh, “Spectral domain immitance approach for dispersion characteristics of generalized printed transmission lines,” IEEE Trans. Microwave Theory Tech., vol. MTT-28, pp. 733–736, July 1980.
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A rigorous solution for dispersive microstrip
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Hashimoto, M.1
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Toward a generalized algorithm for the modeling of the dispersive properties of integrated circuit structures on anisotropic substrates
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Dec.
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A. Nakatani and N. G. Alexopoulos, “Toward a generalized algorithm for the modeling of the dispersive properties of integrated circuit structures on anisotropic substrates,” IEEE Trans. Microwave Theory Tech., vol. MTT-33, pp. 1436–1441, Dec. 1985.
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Nakatani, A.1
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Propagation characteristics of striplines with multilayered anisotropic media
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T. Kitazawa and Y. Hayashi, “Propagation characteristics of striplines with multilayered anisotropic media,” IEEE Trans. Microwave Theory Tech., vol. MTT-31, pp. 429–433, June 1983.
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Kitazawa, T.1
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Design of an overlay directional coupler by a full-wave analysis
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L. Su, T. Itoh, and J. Rivera, “Design of an overlay directional coupler by a full-wave analysis,” IEEE Trans. Microwave Theory Tech., vol. MTT-31, pp. 1017–1022, Dec. 1983.
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Su, L.1
Itoh, T.2
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Dispersion characteristics of unsymmetrical broadside-coupled striplines with anisotropic substrate
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Dyadic Green’s function for integrated electronic and optical circuits
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Bagby, J.S.1
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Rigorous full-wave space-domain solution for dispersive microstrip lines
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N. Fache and D. De Zutter, “Rigorous full-wave space-domain solution for dispersive microstrip lines,” IEEE Trans. Microwave Theory Tech., vol. 36, pp. 731–737, Apr. 1988.
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Deduction of EM phenomena in microstrip circuits from an integral-operator description of the system
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(Stockholm, Sweden), Aug.
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D. P. Nyquist, “Deduction of EM phenomena in microstrip circuits from an integral-operator description of the system,” in Proc. URSI Triennial EM Theory Symp. (Stockholm, Sweden), Aug. 1989, pp. 533–535.
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Nyquist, D.P.1
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Entire-domain basis MoM analysis of coupled microstrip transmission lines
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to be published.
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C. H. Lee, J. S. Bagby, Y. Yuan, and D. P. Nyquist, “Entire-domain basis MoM analysis of coupled microstrip transmission lines,” IEEE Trans. Microwave Theory Tech., to be published.
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IEEE Trans. Microwave Theory Tech
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Lee, C.H.1
Bagby, J.S.2
Yuan, Y.3
Nyquist, D.P.4
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Full-wave integral-operator analysis of propagation spectrum and leaky modes on microstrip line
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to be published.
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Y. Yuan and D. P. Nyquist, “Full-wave integral-operator analysis of propagation spectrum and leaky modes on microstrip line,” Radio Sci., to be published.
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Radio Sci
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Yuan, Y.1
Nyquist, D.P.2
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