Experimental validation of microstrip bend discontinuity models from 18 to 60 GHz
暂无分享,去创建一个
[1] T. C. Edwards,et al. Foundations for microstrip circuit design , 1981 .
[2] I. M. Stephenson,et al. Resonant techniques for establishing the equivalent circuits of small discontinuities in microstrip , 1971 .
[3] R. T. Webster,et al. 18-42 GHz experimental verification of microstrip coupler and open end capacitance models , 1992 .
[4] Ingo Wolff,et al. From static approximations to full‐wave analysis: The analysis of planar line discontinuities , 1991 .
[5] W. J. Getsinger,et al. Measurement and Modeling of the Apparent Characteristic Impedance of Microstrip , 1983 .
[6] Anand Gopinath,et al. Moment Method of Calculating Discontinuity Inductance of Microstrip Right-Angled Bends (Short Papers) , 1974 .
[7] Raj Mittra,et al. Equivalent circuits for multiconductor microstrip bend discontinuities , 1993 .
[8] P. B. Katehi,et al. Shielding effects in microstrip discontinuities , 1988 .
[9] Hao Ling,et al. Transmission properties of a right-angle microstrip bend with and without a miter , 1989 .
[10] Peter Silvester,et al. Microstrip Discontinuity Capacitances for Right-Angle Bends, T Junctions, and Crossings , 1973 .
[11] R.H. Jansen,et al. Measurement and Computer-Aided Modeling of Microstrip Discontinuities by an Improved Resonator Method , 1983, 1983 IEEE MTT-S International Microwave Symposium Digest.
[12] A. Lipparini,et al. A Resonance Method for the Broad-Band Characterization of General Two-Port Microstrip Discontinuities , 1981 .
[13] David C. Chang,et al. Electromagnetic modeling of passive circuit elements in MMIC , 1992 .
[14] T. Uwano,et al. Accurate characterization of microstrip resonator open end with new current expression in spectral-domain approach , 1989 .
[15] Anand Gopinath,et al. Calculation of Microstrip Discontinuity Inductances , 1975 .
[16] R. H. Jansen,et al. Full-wave theory based development of mm-wave circuit models for microstrip open end, gap, step, bend and tee , 1989, IEEE MTT-S International Microwave Symposium Digest.
[17] H. Ling,et al. Characterization of a 90 degrees microstrip bend with arbitrary miter via the time-domain finite difference method , 1990 .
[18] Zhang Xiaolei,et al. Time-domain finite difference approach to the calculation of the frequency-dependent characteristics of microstrip discontinuities , 1988 .
[19] Reinmut K. Hoffmann,et al. Handbook of microwave integrated circuits , 1987 .
[20] R. Douville,et al. Experimental Study of Symmetric Microstrip Bends and Their Compensation , 1978 .
[21] W.J.R. Hoefer,et al. Evaluation of the Equivalent Circuit Parameters of Microstrip Discontiuuities through Perturbation of a Resonant Ring (Short Papers) , 1975 .
[22] I. M. Stephenson,et al. Theoretical and experimental methods for evaluating discontinuities in microstrip , 1978 .
[23] P. Katehi,et al. A generalized method for analyzing shielded thin microstrip discontinuities , 1988 .
[24] R. Horton. The Electrical Characterization of a Right-Angled Bend in Microstrip Line (Short Papers) , 1972 .
[25] R. C. Compton,et al. Experimental evaluation of existing CAD models for microstrip dispersion , 1990 .
[26] K. Gupta,et al. Microstrip Lines and Slotlines , 1979 .
[27] James C. Rautio. Experimental validation of electromagnetic software , 1991 .
[28] W. Menzel. Frequency-dependent transmission properties of truncated microstrip right-angle bends , 1976 .