Computer‐aided engineering for microwave and millimeter‐wave circuits using the FD‐TD technique of field simulations (invited article)
暂无分享,去创建一个
[1] T. Kimura,et al. Analysis of microstrip circuits using three-dimensional full-wave electromagnetic field analysis in the time domain , 1988 .
[2] T. Shibata,et al. Fullwave analysis of picosecond photoconductive switches , 1990 .
[3] Allen Taflove,et al. Finite-difference time-domain (FD-TD) modeling of electromagnetic wave scattering and interaction problems , 1988, IEEE Antennas and Propagation Society Newsletter.
[4] E. Sano,et al. Characterization of MIS structure coplanar transmission lines for investigation of signal propagation in integrated circuits , 1990 .
[5] Xiang Zhang,et al. Dispersion characteristics of microstrip lines in the vicinity of a coplanar ground , 1987 .
[6] M. Rodwell,et al. Generation of 3.5-ps fall-time shock waves on a monolithic GaAs nonlinear transmission line , 1988, IEEE Electron Device Letters.
[7] K. Yee. Numerical solution of initial boundary value problems involving maxwell's equations in isotropic media , 1966 .
[8] T. Shibata. Circuit simulations combined with the electromagnetic field analysis , 1991 .
[9] R. J. Lomax,et al. A finite-difference transmission line matrix method incorporating a nonlinear device model , 1990 .
[10] Zhang Xiaolei,et al. Time-domain finite difference approach to the calculation of the frequency-dependent characteristics of microstrip discontinuities , 1988 .
[11] H. Kikuchi,et al. A design technique for a high-gain, 10-GHz class-bandwidth GaAs MESFET amplifier IC module , 1992 .
[12] G. Mur. Absorbing Boundary Conditions for the Finite-Difference Approximation of the Time-Domain Electromagnetic-Field Equations , 1981, IEEE Transactions on Electromagnetic Compatibility.