2008IEEE Transactions on Computer-Aided Design of Integrated Circuits and SystemsRequires access

Extraction of Parasitics in Inhomogeneous Substrates With a New Green Function-Based Method

Chenggang Xü, Ranjit Gharpurey, T.S. Fiez, Kartikeya Mayaram

Open publisher page 3 citations

Abstract

A new green function-based method for extracting parasitics in inhomogeneous substrates is presented. This approach overcomes the limitation of prior green function-based methods and allows extraction of substrate parasitics in the presence of sinkers, trenches, and wells. A careful use of volume and boundary-element meshing, as well as discrete transforms, yields a technique that is computationally efficient. The accuracy of the method is comparable to that of 3-D semiconductor device simulators with significantly smaller computational costs.

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What this paper is about

A new green function-based method for extracting parasitics in inhomogeneous substrates is presented. This approach overcomes the limitation of prior green function-based methods and allows extraction of substrate parasitics in the presence of sinkers, trenches, and wells. A careful use of volume and boundary-element meshing, as well as discrete transforms, yields a technique that is computationally efficient. The accuracy of the method is comparable to that of 3-D semiconductor device simulators with significantly smaller computational costs.

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Available abstract

A new green function-based method for extracting parasitics in inhomogeneous substrates is presented. This approach overcomes the limitation of prior green function-based methods and allows extraction of substrate parasitics in the presence of sinkers, trenches, and wells. A careful use of volume and boundary-element meshing, as well as discrete transforms, yields a technique that is computationally efficient. The accuracy of the method is comparable to that of 3-D semiconductor device simulators with significantly smaller computational costs.

Key concepts: Parasitic extraction, Function (biology), Extraction (chemistry), Green's function, Substrate (aquarium), Boundary element method, Computer science, Biological system

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