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International Journal of Microwave and Millimeter-Wave Computer-Aided Engineering 1994: Vol 4 Index PDF

3 Pages·1994·0.66 MB·English
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Preview International Journal of Microwave and Millimeter-Wave Computer-Aided Engineering 1994: Vol 4 Index

International Journal of Microwave and Millimeter-Wave Computer-Aided Engineering Subject Index to Volume 4 Active antennas, 100 Finite difference method, 111 NICs, 130 Active filter, 175 Finite element method, 327 Nonlinear simulation, 100 Active MMICs, 130 Full-wave, 31, 140 Anisotropic, 363 Full-wave SDA, 297 Optimization, 396 Anisotropic dielectrics, 184 Optimization routine, 327 Anisotropic substrate, 374 GaAsFET, 175 Orthogonal array, 396 Antennas, 31, 230 GaAs MESFET, 396 Oscillator with slot line resonator, 349 ARGUS, SOS, 125 GaAs microstrip, 140 Arrays, 31, 58 Guided wavelength, 43 Automatic non-uniform discretization, Pass-band filter, 327 384 Patch, 31 Harmonic balance (HB), 349 Pattern synthesis, 88 High-efficiency, 198 Phased array microstip antennas, 6 Built-in test (BIT), 259 Power amplifier, 198 Printed antenna, 50, 88 Image theory, 67 CAD, 50, 163, 248, 336 Impedance transformers, 307 Probe feed, 18 Characteristic current modes, 18 Interaction impedance, 125 Circularly polarized wave, 43 Iterative technique, 43 Quasi-analytical solution, 163 Class-AB, 198 Quasi-static analysis of MICs, 111 Computer-aided design, 374 Quasi-static characteristics, 336 Conformal mapping, 336 Leaky-wave, 88 Quasi-TEM, 363 Convergence, 140 Linear array, 50 Quasi-TEM analysis, 163 Coplanar waveguides, 111, 163 Low-noise FET, 396 Crank-type antenna, 43 Lumped element models, 148 Lumped element models for MMICs, 148 Return-loss, 31 Design-for-test (DFT), 259 Series-fed, 50 Design method, 198 Metallic losses, 327 Shielded coplanar waveguides, 336 Dielectric antennas, 230 MMeetthhoodd offo r moosmceinlltast,o r 7d6e velopment, 349 Simulation, 248 Dielectric resonator antennas, 230 Small antennas, 230 Dielectric substrate, 43 Microstrip, 31, 248 Sommerfeld-type integral, 43, 67 Microstrip antenna, 58, 67 Dielectric waveguides, 184 Microstrip circuit elements, 219 Sonnet’s EM, 140 Discrete complex image theory, 67 Microstrip discontinuities, 297, 384 Space domain, 18 Disk-loaded waveguide, 125 Microstrip filters, 272 Spectral domain, 363 Dispersion characteristics, 125, 184 Microstrip patches, 18, 100 Spectral domain method, 163 Microstrip tranmission line, 374 Statistical design, 282 Edge-fed, 31 Microwave active filters, 130 Statistical model, 282 Stepped transmission-lines, 307 Electromagnetic simulation, 219 Microwave CAD compatible models, 148 Stratified media, 67 E-plane, 31 Microwave fault simulation, 259 Equivalent circuit, 50 Microwave and millimeter-wave inte- Surface wave, 43 Equivalent circuit of metal-semiconduc- grated circuits, 219 tor field-effect transistors (MESFET), MMIC SPICE Model, 175 Tapered slot antennas, 76 349 Microwave techniques, 307 Thick conductors, 363 Equivalent circuits of the oscillators, 349 Millimeter-wave length, 327 Three-dimensional electromagnetic simu- Expansion functions, 297 Modeling, 248 lation, 384 Mode-matching, 88 Tolerance analysis, 31 Moments method, 18 Transmission-line, 31 Fault modeling, 259 Multilayer, 363 Transmission line parameters, 140 FDTD, 58 Mutual coupling, 31 Tuning, 175 FD-FD method, 184 Field theory for the calculation of slot resonators, 349 Negative resistance, 130 Validation, 248 Finite array, 18 Network, 31 Verification, 248 International Journal of Microwave and Millimeter-Wave Computer-Aided Engineering Author Index to Volume 4 Aubourg, M. See Courivaud, N., 327 Faraone, A. See Chicchetti, R., 297 Mongia, R. K. Furlow, R. J. See Wu, D. I., 248 —+; Bhartia, P.: Dielectric Resonator An- Bahl, I. J. Fusco, V. F. tennas—A Review and General De- Editorial, 1, 123, 217, 325 —; Drew, S., McDowall, D. S.: Synthesis sign Relations for Resonant Frequency MIC Simulation Column, 120, 203, 315, and Performance of an Active Mi- and Bandwidth, 230 crostrip Antenna, 100 411 See Miller, D. C., 396 Naishadham K. See Sadhir, V. K., 148 Giannini, F. —; Nuteson, T. W.: Efficient Analysis of Beker, B. —; Leuzzi, G., Limiti, E., Scucchia, L.: Passive Microstrip Elements in —; Cokkinides, G. J.: Computer-Aided Iterative Design-Oriented Analysis MMICs, 219 Quasi-Static Analysis of Coplanar Method for Class-AB High-Efficiency Naito, M. Transmission Lines for Microwave In- Microwave Power Amplifiers, 198 —; Ito, K., Matsuzawa, S.-I., Takada, J.-L: tegrated Circuits Using the Finite Dif- Gairola, A. J. See Sobrinho, C. L. da S. A Practical Design Procedure for Cir- ference Method, 111 S., 184 cularly Polarized Printed Arrays Using Beyer, A. See Roth, B., 349 Gevorgian, S. S. See Vendik, I. B., 374 High Frequency CAE, 50 Bhartia, P. See Mongia, R. K., 230 Gregory, R. O. See Richard, W. D., 175 Nakano, H. Guillon, P. See Courivaud, N., 327 —; Hirose, K.: Numerical Analysis of a Crank-Type Antenna on a Dielectric Campbell, L. L. —; Purviance, J. E.: Interpolation Mod- Hall, P. S. Substrate, 43 eling of S-Parameter Data Bases for —; Jackson, D. R.: Guest Editorial, 4 Notter, M. J. Use in Monte Carlo Simulations, 282 Hirose, K. See Nakano, H., 43 —; Parini, C. G.: Moments-Method Carroll, J. M. Heitbrink, A. See Roth, B., 349 Analysis of a Finite Array of Arbitrary —; Chang, K.: Full-Wave Convergence Horno, H. See Drake, E., 163 Shaped Microstrip Patch Radiating El- Analysis of Microstrip Transmission Horno, M. See Plaza, G., 363 ements, 18 Parameters, 140 Nuteson, T. W. See Naishadham K., 229 Castaneda, J. A. See Yang, H.-Y. D., 31 Ito, K. See Naito, M., 50 Chang, K. See Carroll, J. M., 140 Olsson, E. See Vendik, I. B., 374 Chan, C. H. See Yang, H.-Y. D., 31 Jackson, D. R. See Hall, P. S., 4 Cicchetti, R. Parini, C. G. See Notter, M. J., 18 —,; Faraone, A.: An Expansion Function Kauffman, J. F. See K6ksal, A., 76 Plaza, G. Suited for Fast Full-Wave Spectral Do- Kishk, A. A. —; Mesa, F., Horno, M.: Quasi-TEM main Analysis of Microstrip Disconti- —; Ramaraju, S. L.: Design of Different Analysis of Reciprocal /Nonreciprocal nuities, 297 Configurations of Finite Microstrip Ar- Planar Lines with Polygonal Cross-Sec- Cokkinides, G. J. See Beker, B., 111 rays of Circular Patches, 6 tion Conductors, 363 Ciurivaud, N. Koksal, A. Pramanick, P. —; Verdeyme, S., Aubourg, M., Guillon, —; Kauffman, J. F.: Moment Method Compact 900-MHz Hairpin-Line Filters P.: A Rigorous Design of Millimeter- Analysis of Linearly Tapered Slot An- Using High Dielectric Constant Mi- Waveguide Devices Using the 3D Fi- tennas, 76 crostrip Line, 272 nite Element Method, 327 Purviance, J. E. See Campbell, L. L., 282 Cummings, M. T. See Rhodes, D. L., 259 Lee, R. Q. See Zimmerman, M. L., 58 Leuzzi, G. See Giannini, F., 198 Qureshi, A. H. See Wallett, T. M., 125 Drake, E. Limiti, E. See Giannini, F., 198 —; Medina, F., Horno, M.: Quasi-Ana- Lin, W. See Wan, C., 336 Ramaraju, S. L. See Kishk, A. A., 6 lytical Static Solution for the General- Rhodes, D. L. ized Boxed Coplanar Waveguide, 163 Matsuzawa, S.-I. See Naito, M., 50 —; Cummings, M. T.: Application of Drew, S. See Fusco, V. F., 100 McDowall, D. S. See Fusco, V. F., 100 Fault Modeling to Continuous Built-IN Medina, F. See Drake, E., 163 Test (c-BIT) for Microwave and MMIC Encinar, J. A. Mesa, F. See Plaza, G., 363 Circuits, 259 Analysis and CAD Techniques for Peri- Miller, D. C. Richard, W. D. odic Leaky-Wave Printed Antennas: —; Sadler, R. A., Bahl, I. J.: Low-Noise —; Gregory, R. O.: A GaAsFET SPICE Numerical and Experimental Results, GaAs MESFET Optimization Using an Model for Active Filter Tuning Pur- 88 Orthogonal Array Approach, 396 poses, 175 446 Author Index 447 Rosloniec, S. Takada, J.-I. See Naito, M., 50 Wong, W. C. See Yang, H.-Y. D., 31 Algorithms for the Computer-Aided De- Tempel, G. F. See Rhodes, D. L., 259 Wu, D. I. sign of Nonsynchronous, Noncommen- —; Furlow, R. J.: Software Verification surate Transmission-Line Impedance Effort at the MIMICAD Center for Transformers, 307 Vendik, I. B. Microstrip Passive Components, 248 Roth, B. —; Vendik, O. G.; Gevorgian, S. S.; Sit- —; Heitbrink, A., Beyer, A.: A CAD nikova, M. F.; Olsson, E.: A CAD Xiaowen, W. Method Applied to the Development Model for Microstrips on r-Cut Sap- —; Shizhi, L.: An Efficient Method to of Microwave Oscillators, 349 phire Substrates, 374 Calculate the Sommerfeld Integrals Vendik, O. G. See Vendik, I. B., 374 Concerning a Microstrip Antenna in Verdeyme, S. See Courivaud, N., 327 Stratified Media: Extension of Discrete Sadhir, V. K. Complex Image Theory without the —; Bahl, I. J., Willems, D. A.: CAD Optimization Process, 67 Campatible Accurate Models of Mi- Wallett, T. M. crowave Passive Lumped Elements for —; Qureshi, A. H.: Characteristics of a Yang, H.-Y. D. MMIC Applications, 148 Cylindrical Disk-Loaded Slow-Wave —; Chen, C. H., Castaneda, J. A., Wong, Sadler, R. A. See Miller, D. C., 396 Structure Found by Theoretical, Exper- W. C.: Design of Microstrip Line-Fed Scucchia, L. See Giannini, F., 198 imental, and Computational Tech- Patch Arrays Including Mutual Cou- Shizhi, L. See Xiaowen, X., 67 niques, 125 pling, 31 Sitnikova, M. F. See Vendik, I. B., 374 Wan, C. Sobrinho, C. L. da S. S. —; Lin, W.: CAD-Oriented Formulas for Zheng, J.-X. —; Giarola, A. J.: Analysis of Coupled the Quasi-TEM Parameters of Shielded Three-Dimensional Electromagnetic Anisotropic Dielectric Waveguides Us- and Semi-Enclosed (Coupled) Copla- Simulation of Electronic Circuits of ing the Frequency Domain Finite-Dif- nar Waveguides, 336 General Shape, 384 ference Method, 184 Willems, D. A. See Sadhir, V. K., 148 Zimmerman, M. L. Sussman-Fort, S. E. Wolff, I. —; Lee, R. Q.: Use of the FDTD Method An NIC-Based Negative Resistance Cir- Book Review Column, 213, 432 in the Design of Microstrip Antenna cuit for Microwave Active Filters, 130 Software Review Column, 434 Arrays, 58

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