DocumentCode :
817852
Title :
On the generation of large passive macromodels for complex interconnect structures
Author :
Grivet-Talocia, Stefano ; Ubolli, Andrea
Author_Institution :
Dept. of Electron., Polytechnic of Turin, Italy
Volume :
29
Issue :
1
fYear :
2006
Firstpage :
39
Lastpage :
54
Abstract :
This paper addresses some issues related to the passivity of interconnect macromodels computed from measured or simulated port responses. The generation of such macromodels is usually performed via suitable least squares fitting algorithms. When the number of ports and the dynamic order of the macromodel is large, the inclusion of passivity constraints in the fitting process is cumbersome and results in excessive computational and storage requirements. Therefore, we consider in this work a post-processing approach for passivity enforcement, aimed at the detection and compensation of passivity violations without compromising the model accuracy. Two complementary issues are addressed. First, we consider the enforcement of asymptotic passivity at high frequencies based on the perturbation of the direct coupling term in the transfer matrix. We show how potential problems may arise when off-band poles are present in the model. Second, the enforcement of uniform passivity throughout the entire frequency axis is performed via an iterative perturbation scheme on the purely imaginary eigenvalues of associated Hamiltonian matrices. A special formulation of this spectral perturbation using possibly large but sparse matrices allows the passivity compensation to be performed at a cost which scales only linearly with the order of the system. This formulation involves a restarted Arnoldi iteration combined with a complex frequency hopping algorithm for the selective computation of the imaginary eigenvalues to be perturbed. Some examples of interconnect models are used to illustrate the performance of the proposed techniques.
Keywords :
eigenvalues and eigenfunctions; equivalent circuits; integrated circuit interconnections; integrated circuit modelling; least squares approximations; perturbation theory; transfer function matrices; Arnoldi iteration; Hamiltonian matrices; frequency hopping algorithm; imaginary eigenvalues; interconnect macromodels; iterative perturbation scheme; large passive macromodels; least squares fitting algorithms; linear macromodeling; perturbation theory; spectral perturbation; transfer matrix; Computational modeling; Costs; Eigenvalues and eigenfunctions; Electromagnetic scattering; Frequency; Helium; Impedance; Least squares methods; Packaging; Sparse matrices; Admittance; Arnoldi algorithm; Hamiltonian matrices; complex frequency hopping; eigenvalues; hybrid; impedance; linear macromodeling; passivity; perturbation theory; scattering; singular values; sparse matrices;
fLanguage :
English
Journal_Title :
Advanced Packaging, IEEE Transactions on
Publisher :
ieee
ISSN :
1521-3323
Type :
jour
DOI :
10.1109/TADVP.2005.862659
Filename :
1589131
Link To Document :
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