DocumentCode
1765389
Title
Surface–Volume–Surface Electric Field Integral Equation for Magneto-Quasi-Static Analysis of Complex 3-D Interconnects
Author
Menshov, A. ; Okhmatovski, Vladimir I.
Author_Institution
Dept. of Electr. & Comput. Eng., Univ. of Texas at Austin, Austin, TX, USA
Volume
62
Issue
11
fYear
2014
fDate
Nov. 2014
Firstpage
2563
Lastpage
2573
Abstract
A novel single-source surface-volume-surface integral equation is proposed for accurate broadband resistance and inductance extraction in 3-D interconnects. The new equation originates in the volume integral equation (VIE) traditionally used for magneto-quasi-static modeling of current flow in 3-D wires. The latter is reduced to a surface integral equation by representing the electric field inside each conductor segment as a superposition of cylindrical waves emanating from the conductor´s boundary. As no approximation is utilized and all underlying boundary conditions and pertinent equations are satisfied in the reduction, the new integral equation is rigorously equivalent to the solution of the traditional volume electric field integral equation. The rigorous nature of the proposed single-source surface integral equation is corroborated numerically. In this paper, a detailed description of the method of moments discretization for the proposed surface integral equation is also presented. Numerical solution of the proposed surface integral equation for a 12-conductor bond-wire package is used to demonstrate the accuracy of the method and its computational benefits compared to the traditional solution based on the VIE.
Keywords
electric field integral equations; integrated circuit interconnections; integrated circuit modelling; integrated circuit packaging; lead bonding; method of moments; three-dimensional integrated circuits; 12-conductor bond-wire package; 3D wires; complex 3D interconnects; current flow; cylindrical waves; magneto-quasi-static analysis; magneto-quasi-static modeling; method of moments discretization; single-source surface integral equation; surface-volume-surface electric field integral equation; volume electric field integral equation; Conductors; Current density; Indexes; Integral equations; Method of moments; Surface waves; Vectors; Boundary-element method; integral equations; integrated-circuit interconnections; magneto-quasi-statics; parameter extraction;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2014.2360838
Filename
6918548
Link To Document