Title
Analysis of full-wave conductor system impedance over substrate using novel integration techniques
Abstract
An efficient approach to full-wave impedance extraction is developed that accounts for substrate effects through the use of two-layer media Green's functions in a mixed-potential-integral-equation (MPIE) solver. Particularly, the choice of implementation for the layered media Green's functions motivates the development of accelerated techniques for both volume and surface integrations in the solver. Solver accuracy is validated against measurements taken on fabricated devices; solver efficiency is demonstrated by its 9.8X reduction in cost in comparison to the traditional integration approach.
Year
DOI
Venue
2005
10.1145/1065579.1065620
DAC
Keywords
Field
DocType
efficient approach,two-layer media,solver accuracy,novel integration technique,substrate effect,impedance extraction,traditional integration approach,solver efficiency,accelerated technique,full-wave conductor system impedance,surface integration,layered media,integrated circuit design,acceleration,integral equation,radio frequency,conductors,system on chip,integral equations,kernel
Kernel (linear algebra),System on a chip,Computer science,Electrical conductor,Integral equation,Electrical impedance,Electronic engineering,Integrated circuit design,Solver,Conductor
Conference
ISSN
ISBN
Citations 
0738-100X
1-59593-058-2
10
PageRank 
References 
Authors
0.98
6
4
Name
Order
Citations
PageRank
Xin Hu1100.98
Jung Hoon Lee226329.59
Jacob White328539.12
Luca Daniel449750.96