By Wenjian Yu, Xiren Wang (auth.)
Resistance and capacitance (RC) extraction is an important step in modeling the interconnection wires and substrate coupling impact in nanometer-technology built-in circuits (IC). The field-solver strategies for RC extraction warrantly the accuracy of modeling, and have gotten more and more very important in assembly the call for for exact modeling and simulation of VLSI designs. Advanced Field-Solver recommendations for RC Extraction of built-in Circuits offers a scientific creation to, and therapy of, the most important field-solver equipment for RC extraction of VLSI interconnects and substrate coupling in mixed-signal ICs. a variety of field-solver options are defined intimately, with real-world examples to demonstrate the benefits and downsides of every algorithm.
This ebook will profit graduate scholars and researchers within the box of electric and laptop engineering in addition to engineers operating within the IC layout and layout automation industries.
Dr. Wenjian Yu is an affiliate Professor on the division of desktop technology and know-how at Tsinghua collage in China; Dr. Xiren Wang is a R&D Engineer at Cadence layout structures within the USA.
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Extra info for Advanced Field-Solver Techniques for RC Extraction of Integrated Circuits
On the other hand, the benefit is that matrix-vector product will be faster with the reduced rank, which makes more sense for more iterations in the iterative solver. 5 Summary In this chapter, two kinds of fast field solvers are discussed, mainly for the capacitance extraction purposes. Nowadays, the multi-core CPUs, even many-core CPUs, are more and more popular, then it makes sense to talk about the parallel computing of the two methods. 3. Chapter 4 Fast Boundary Element Methods for Capacitance Extraction (II) In the capacitance extraction of VLSI interconnects, a finite region governed by the Laplace equation with mixed boundary conditions is often considered .
11) with preconditioned GMRES and output the capacitance results. The QMM approach has been applied in the extraction of actual 3-D multilayered interconnect capacitance. It produces the overall coefficient matrix with much sparsity.
It should be pointed out that the QMM technique is mainly used in the capacitance model with finite region, not the infinite-domain (open-space) model W. Yu and X. 1007/978-3-642-54298-5__4, © Tsinghua University Press, Beijing and Springer-Verlag Berlin Heidelberg 2014 39 40 4 Fast Boundary Element Methods for Capacitance Extraction (II) considered by other BEMs [100, 133, 165]. And, in some methods for capacitance extraction (including ours) and commercial softwares (such as Raphael and SpiceLink1), the finite-domain model is considered as the default setting.