Advanced Field Solver Techniques for RC Extraction of Integrated Circuits

Advanced Field Solver Techniques for RC Extraction of Integrated Circuits
Author: Wenjian Yu,Xiren Wang
Publsiher: Springer Science & Business
Total Pages: 258
Release: 2014-04-21
Genre: Technology & Engineering
ISBN: 9783642542985

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Resistance and capacitance (RC) extraction is an essential step in modeling the interconnection wires and substrate coupling effect in nanometer-technology integrated circuits (IC). The field-solver techniques for RC extraction guarantee the accuracy of modeling, and are becoming increasingly important in meeting the demand for accurate modeling and simulation of VLSI designs. Advanced Field-Solver Techniques for RC Extraction of Integrated Circuits presents a systematic introduction to, and treatment of, the key field-solver methods for RC extraction of VLSI interconnects and substrate coupling in mixed-signal ICs. Various field-solver techniques are explained in detail, with real-world examples to illustrate the advantages and disadvantages of each algorithm. This book will benefit graduate students and researchers in the field of electrical and computer engineering as well as engineers working in the IC design and design automation industries. Dr. Wenjian Yu is an Associate Professor at the Department of Computer Science and Technology at Tsinghua University in China; Dr. Xiren Wang is a R&D Engineer at Cadence Design Systems in the USA.

Handbook of Integrated Circuit Industry

Handbook of Integrated Circuit Industry
Author: Yangyuan Wang,Min-Hwa Chi,Jesse Jen-Chung Lou,Chun-Zhang Chen
Publsiher: Springer Nature
Total Pages: 2006
Release: 2023-12-29
Genre: Technology & Engineering
ISBN: 9789819928361

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Written by hundreds experts who have made contributions to both enterprise and academics research, these excellent reference books provide all necessary knowledge of the whole industrial chain of integrated circuits, and cover topics related to the technology evolution trends, fabrication, applications, new materials, equipment, economy, investment, and industrial developments of integrated circuits. Especially, the coverage is broad in scope and deep enough for all kind of readers being interested in integrated circuit industry. Remarkable data collection, update marketing evaluation, enough working knowledge of integrated circuit fabrication, clear and accessible category of integrated circuit products, and good equipment insight explanation, etc. can make general readers build up a clear overview about the whole integrated circuit industry. This encyclopedia is designed as a reference book for scientists and engineers actively involved in integrated circuit research and development field. In addition, this book provides enough guide lines and knowledges to benefit enterprisers being interested in integrated circuit industry.

Monte Carlo Methods for Partial Differential Equations With Applications to Electronic Design Automation

Monte Carlo Methods for Partial Differential Equations With Applications to Electronic Design Automation
Author: Wenjian Yu,Michael Mascagni
Publsiher: Springer Nature
Total Pages: 262
Release: 2022-09-02
Genre: Technology & Engineering
ISBN: 9789811932502

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The Monte Carlo method is one of the top 10 algorithms in the 20th century. This book is focusing on the Monte Carlo method for solving deterministic partial differential equations (PDEs), especially its application to electronic design automation (EDA) problems. Compared with the traditional method, the Monte Carlo method is more efficient when point values or linear functional of the solution are needed, and has the advantages on scalability, parallelism, and stability of accuracy. This book presents a systematic introduction to the Monte Carlo method for solving major kinds of PDEs, and the detailed explanation of relevant techniques for EDA problems especially the cutting-edge algorithms of random walk based capacitance extraction. It includes about 100 figures and 50 tables, and brings the reader a close look to the newest research results and the sophisticated algorithmic skills in Monte Carlo simulation software.

International Conference on Simulation of Semiconductor Processes and Devices

International Conference on Simulation of Semiconductor Processes and Devices
Author: Anonim
Publsiher: Unknown
Total Pages: 308
Release: 2000
Genre: Semiconductors
ISBN: UOM:39015048214996

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Microwave Circuit Modeling Using Electromagnetic Field Simulation

Microwave Circuit Modeling Using Electromagnetic Field Simulation
Author: Daniel G. Swanson,Wolfgang J. R. Hoefer
Publsiher: Artech House
Total Pages: 508
Release: 2003
Genre: Science
ISBN: 1580536883

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Annotation This practical "how to" book is an ideal introduction to electromagnetic field-solvers. Where most books in this area are strictly theoretical, this unique resource provides engineers with helpful advice on selecting the right tools for their RF (radio frequency) and high-speed digital circuit design work

Science Abstracts

Science Abstracts
Author: Anonim
Publsiher: Unknown
Total Pages: 980
Release: 1993
Genre: Electrical engineering
ISBN: OSU:32435060206075

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Nano CMOS Circuit and Physical Design

Nano CMOS Circuit and Physical Design
Author: Ban Wong,Anurag Mittal,Yu Cao,Greg W. Starr
Publsiher: John Wiley & Sons
Total Pages: 413
Release: 2005-04-08
Genre: Technology & Engineering
ISBN: 9780471678861

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Based on the authors' expansive collection of notes taken over the years, Nano-CMOS Circuit and Physical Design bridges the gap between physical and circuit design and fabrication processing, manufacturability, and yield. This innovative book covers: process technology, including sub-wavelength optical lithography; impact of process scaling on circuit and physical implementation and low power with leaky transistors; and DFM, yield, and the impact of physical implementation.

VLSI Physical Design From Graph Partitioning to Timing Closure

VLSI Physical Design  From Graph Partitioning to Timing Closure
Author: Andrew B. Kahng,Jens Lienig,Igor L. Markov,Jin Hu
Publsiher: Springer Nature
Total Pages: 329
Release: 2022-06-14
Genre: Technology & Engineering
ISBN: 9783030964153

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The complexity of modern chip design requires extensive use of specialized software throughout the process. To achieve the best results, a user of this software needs a high-level understanding of the underlying mathematical models and algorithms. In addition, a developer of such software must have a keen understanding of relevant computer science aspects, including algorithmic performance bottlenecks and how various algorithms operate and interact. This book introduces and compares the fundamental algorithms that are used during the IC physical design phase, wherein a geometric chip layout is produced starting from an abstract circuit design. This updated second edition includes recent advancements in the state-of-the-art of physical design, and builds upon foundational coverage of essential and fundamental techniques. Numerous examples and tasks with solutions increase the clarity of presentation and facilitate deeper understanding. A comprehensive set of slides is available on the Internet for each chapter, simplifying use of the book in instructional settings. “This improved, second edition of the book will continue to serve the EDA and design community well. It is a foundational text and reference for the next generation of professionals who will be called on to continue the advancement of our chip design tools and design the most advanced micro-electronics.” Dr. Leon Stok, Vice President, Electronic Design Automation, IBM Systems Group “This is the book I wish I had when I taught EDA in the past, and the one I’m using from now on.” Dr. Louis K. Scheffer, Howard Hughes Medical Institute “I would happily use this book when teaching Physical Design. I know of no other work that’s as comprehensive and up-to-date, with algorithmic focus and clear pseudocode for the key algorithms. The book is beautifully designed!” Prof. John P. Hayes, University of Michigan “The entire field of electronic design automation owes the authors a great debt for providing a single coherent source on physical design that is clear and tutorial in nature, while providing details on key state-of-the-art topics such as timing closure.” Prof. Kurt Keutzer, University of California, Berkeley “An excellent balance of the basics and more advanced concepts, presented by top experts in the field.” Prof. Sachin Sapatnekar, University of Minnesota