DocumentCode
1457126
Title
Global modeling of millimeter-wave circuits: electromagnetic simulation of amplifiers
Author
Imtiaz, S.M.S. ; El-Ghazaly, Samir M.
Author_Institution
Micro Linear Corp., San Jose, CA, USA
Volume
45
Issue
12
fYear
1997
fDate
12/1/1997 12:00:00 AM
Firstpage
2208
Lastpage
2216
Abstract
Global modeling of microwave and millimeter-wave circuits is important to simulate the electromagnetic (EM) coupling, device-EM wave interaction, and the EM radiation effects of the closely spaced active and passive components of monolithic microwave integrated circuits (MMIC´s). In this paper, a global-modeling technique is presented to characterize the millimeter-wave integrated-circuit amplifiers. The characterization of amplifier circuits, including the input and output matching networks, are performed using a full-wave analysis coupled with physical modeling of the semiconductor devices. The entire amplifier is simulated with the finite-difference time-domain (FDTD) algorithm, which also solves for the EM fields inside the transistor. The intensive computer-memory requirement and the large simulation time are reduced by applying a hybridization approach. The small signal as well as the large signal propagation through the amplifier circuit are demonstrated. The scattering parameters are extracted for the amplifier circuit at small and large signals for different frequencies. The global technique is able to model the nonlinearity and the harmonic distortion of the amplifier circuit. The third and fifth harmonic components in the output spectrum at large signal are predicted for different frequencies
Keywords
MESFET integrated circuits; MMIC amplifiers; S-parameters; circuit analysis computing; digital simulation; field effect MIMIC; finite difference time-domain analysis; millimetre wave amplifiers; EM coupling; EM radiation effects; device-EM wave interaction; electromagnetic simulation; finite-difference time-domain algorithm; full-wave analysis; global modeling; hybridization approach; large signal propagation; matching networks; millimeter-wave circuits; millimeter-wave integrated-circuit amplifiers; monolithic microwave integrated circuits; nonlinearity; scattering parameters; simulation time; Circuit simulation; Computational modeling; Coupling circuits; Electromagnetic coupling; Electromagnetic modeling; Electromagnetic radiation; Finite difference methods; Integrated circuit modeling; Microwave devices; Millimeter wave circuits;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/22.643818
Filename
643818
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