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Electronic Design Automation for Integrated Circuits Handbook, Second Edition - Two Volume Set (Paperback, 2nd edition):... Electronic Design Automation for Integrated Circuits Handbook, Second Edition - Two Volume Set (Paperback, 2nd edition)
Luciano Lavagno, Igor L Markov, Grant E. Martin, Louis K. Scheffer
R3,948 Discovery Miles 39 480 Ships in 10 - 15 working days

Comprised of two volumes, Electronic Design Automation for Integrated Circuits Handbook, Second Edition addresses all major areas of EDA for integrated circuits (ICs). Chapters contributed by leading experts authoritatively discuss an array of topics ranging from system design to physical implementation. New to This Edition: Major updates appearing in the initial phases of the design flow, where the level of abstraction keeps rising to support more functionality with lower non-recurring engineering (NRE) costs Significant revisions reflected in the final phases of the design flow, where the complexity due to smaller and smaller geometries is compounded by the slow progress of shorter wavelength lithography New coverage of cutting-edge applications and approaches realized in the decade since publication of the previous edition-these are illustrated by new chapters on high-level synthesis, system-on-chip (SoC) block-based design, back-annotating system-level models, 3D circuit integration, and clock design Offering improved depth and modernity, Electronic Design Automation for Integrated Circuits Handbook, Second Edition - Two-Volume Set provides a valuable, state-of-the-art reference for EDA students, researchers, and professionals.

Multi-Objective Optimization in Physical Synthesis of Integrated Circuits (Hardcover, 2012 ed.): David A. Papa, Igor L Markov Multi-Objective Optimization in Physical Synthesis of Integrated Circuits (Hardcover, 2012 ed.)
David A. Papa, Igor L Markov
R2,647 Discovery Miles 26 470 Ships in 18 - 22 working days

This book introduces techniques that advance the capabilities and strength of modern software tools for physical synthesis, with the ultimate goal to improve the quality of leading-edge semiconductor products. It provides a comprehensive introduction to physical synthesis and takes the reader methodically from first principles through state-of-the-art optimizations used in cutting edge industrial tools. It explains how tointegrate chip optimizations in novel ways to create powerful circuit transformations that help satisfy performance requirements."

Design, Analysis and Test of Logic Circuits Under Uncertainty (Hardcover, 2012): Smita Krishnaswamy, Igor L Markov, John P.... Design, Analysis and Test of Logic Circuits Under Uncertainty (Hardcover, 2012)
Smita Krishnaswamy, Igor L Markov, John P. Hayes
R3,172 Discovery Miles 31 720 Ships in 18 - 22 working days

Logic circuits are becoming increasingly susceptible to probabilistic behavior caused by external radiation and process variation. In addition, inherently probabilistic quantum- and nano-technologies are on the horizon as we approach the limits of CMOS scaling. Ensuring the reliability of such circuits despite the probabilistic behavior is a key challenge in IC design---one that necessitates a fundamental, probabilistic reformulation of synthesis and testing techniques. This monograph will present techniques for analyzing, designing, and testing logic circuits with probabilistic behavior.

Electronic Design Automation for Integrated Circuits Handbook, Second Edition - Two Volume Set (Hardcover, 2nd edition):... Electronic Design Automation for Integrated Circuits Handbook, Second Edition - Two Volume Set (Hardcover, 2nd edition)
Luciano Lavagno, Igor L Markov, Grant E. Martin, Louis K. Scheffer
R9,614 Discovery Miles 96 140 Ships in 10 - 15 working days

Comprised of two volumes, Electronic Design Automation for Integrated Circuits Handbook, Second Edition addresses all major areas of EDA for integrated circuits (ICs). Chapters contributed by leading experts authoritatively discuss an array of topics ranging from system design to physical implementation. New to This Edition: Major updates appearing in the initial phases of the design flow, where the level of abstraction keeps rising to support more functionality with lower non-recurring engineering (NRE) costs Significant revisions reflected in the final phases of the design flow, where the complexity due to smaller and smaller geometries is compounded by the slow progress of shorter wavelength lithography New coverage of cutting-edge applications and approaches realized in the decade since publication of the previous edition-these are illustrated by new chapters on high-level synthesis, system-on-chip (SoC) block-based design, back-annotating system-level models, 3D circuit integration, and clock design Offering improved depth and modernity, Electronic Design Automation for Integrated Circuits Handbook, Second Edition - Two-Volume Set provides a valuable, state-of-the-art reference for EDA students, researchers, and professionals.

Quantum Circuit Simulation (Hardcover, 2009 ed.): George F. Viamontes, Igor L Markov, John P. Hayes Quantum Circuit Simulation (Hardcover, 2009 ed.)
George F. Viamontes, Igor L Markov, John P. Hayes
R2,755 Discovery Miles 27 550 Ships in 18 - 22 working days

Quantum Circuit Simulation covers the fundamentals of linear algebra and introduces basic concepts of quantum physics needed to understand quantum circuits and algorithms. It requires only basic familiarity with algebra, graph algorithms and computer engineering. After introducing necessary background, the authors describe key simulation techniques that have so far been scattered throughout the research literature in physics, computer science, and computer engineering. Quantum Circuit Simulation also illustrates the development of software for quantum simulation by example of the QuIDDPro package, which is freely available and can be used by students of quantum information as a "quantum calculator."

VLSI Physical Design: From Graph Partitioning to Timing Closure (Hardcover, 2nd ed. 2022): Andrew B. Kahng, Jens Lienig, Igor L... VLSI Physical Design: From Graph Partitioning to Timing Closure (Hardcover, 2nd ed. 2022)
Andrew B. Kahng, Jens Lienig, Igor L Markov, Jin Hu
R2,387 Discovery Miles 23 870 Ships in 10 - 15 working days

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

Electronic Design Automation for IC Implementation, Circuit Design, and Process Technology (Paperback, 2nd edition): Luciano... Electronic Design Automation for IC Implementation, Circuit Design, and Process Technology (Paperback, 2nd edition)
Luciano Lavagno, Igor L Markov, Grant Martin, Louis K. Scheffer
R2,644 Discovery Miles 26 440 Ships in 10 - 15 working days

The second of two volumes in the Electronic Design Automation for Integrated Circuits Handbook, Second Edition, Electronic Design Automation for IC Implementation, Circuit Design, and Process Technology thoroughly examines real-time logic (RTL) to GDSII (a file format used to transfer data of semiconductor physical layout) design flow, analog/mixed signal design, physical verification, and technology computer-aided design (TCAD). Chapters contributed by leading experts authoritatively discuss design for manufacturability (DFM) at the nanoscale, power supply network design and analysis, design modeling, and much more. New to This Edition: Major updates appearing in the initial phases of the design flow, where the level of abstraction keeps rising to support more functionality with lower non-recurring engineering (NRE) costs Significant revisions reflected in the final phases of the design flow, where the complexity due to smaller and smaller geometries is compounded by the slow progress of shorter wavelength lithography New coverage of cutting-edge applications and approaches realized in the decade since publication of the previous edition-these are illustrated by new chapters on 3D circuit integration and clock design Offering improved depth and modernity, Electronic Design Automation for IC Implementation, Circuit Design, and Process Technology provides a valuable, state-of-the-art reference for electronic design automation (EDA) students, researchers, and professionals.

Electronic Design Automation for IC System Design, Verification, and Testing (Paperback, 2nd edition): Luciano Lavagno, Igor L... Electronic Design Automation for IC System Design, Verification, and Testing (Paperback, 2nd edition)
Luciano Lavagno, Igor L Markov, Grant Martin, Louis K. Scheffer
R2,626 Discovery Miles 26 260 Ships in 10 - 15 working days

The first of two volumes in the Electronic Design Automation for Integrated Circuits Handbook, Second Edition, Electronic Design Automation for IC System Design, Verification, and Testing thoroughly examines system-level design, microarchitectural design, logic verification, and testing. Chapters contributed by leading experts authoritatively discuss processor modeling and design tools, using performance metrics to select microprocessor cores for integrated circuit (IC) designs, design and verification languages, digital simulation, hardware acceleration and emulation, and much more. New to This Edition: Major updates appearing in the initial phases of the design flow, where the level of abstraction keeps rising to support more functionality with lower non-recurring engineering (NRE) costs Significant revisions reflected in the final phases of the design flow, where the complexity due to smaller and smaller geometries is compounded by the slow progress of shorter wavelength lithography New coverage of cutting-edge applications and approaches realized in the decade since publication of the previous edition-these are illustrated by new chapters on high-level synthesis, system-on-chip (SoC) block-based design, and back-annotating system-level models Offering improved depth and modernity, Electronic Design Automation for IC System Design, Verification, and Testing provides a valuable, state-of-the-art reference for electronic design automation (EDA) students, researchers, and professionals.

Electronic Design Automation for IC System Design, Verification, and Testing (Hardcover, 2nd edition): Luciano Lavagno, Igor L... Electronic Design Automation for IC System Design, Verification, and Testing (Hardcover, 2nd edition)
Luciano Lavagno, Igor L Markov, Grant Martin, Louis K. Scheffer
R6,391 Discovery Miles 63 910 Ships in 10 - 15 working days

The first of two volumes in the Electronic Design Automation for Integrated Circuits Handbook, Second Edition, Electronic Design Automation for IC System Design, Verification, and Testing thoroughly examines system-level design, microarchitectural design, logic verification, and testing. Chapters contributed by leading experts authoritatively discuss processor modeling and design tools, using performance metrics to select microprocessor cores for integrated circuit (IC) designs, design and verification languages, digital simulation, hardware acceleration and emulation, and much more. New to This Edition: Major updates appearing in the initial phases of the design flow, where the level of abstraction keeps rising to support more functionality with lower non-recurring engineering (NRE) costs Significant revisions reflected in the final phases of the design flow, where the complexity due to smaller and smaller geometries is compounded by the slow progress of shorter wavelength lithography New coverage of cutting-edge applications and approaches realized in the decade since publication of the previous edition-these are illustrated by new chapters on high-level synthesis, system-on-chip (SoC) block-based design, and back-annotating system-level models Offering improved depth and modernity, Electronic Design Automation for IC System Design, Verification, and Testing provides a valuable, state-of-the-art reference for electronic design automation (EDA) students, researchers, and professionals.

Functional Design Errors in Digital Circuits - Diagnosis Correction and Repair (Hardcover, 2009 ed.): Kai-Hui Chang, Igor L... Functional Design Errors in Digital Circuits - Diagnosis Correction and Repair (Hardcover, 2009 ed.)
Kai-Hui Chang, Igor L Markov, Valeria Bertacco
R4,128 Discovery Miles 41 280 Ships in 18 - 22 working days

Functional Design Errors in Digital Circuits Diagnosis covers a wide spectrum of innovative methods to automate the debugging process throughout the design flow: from Register-Transfer Level (RTL) all the way to the silicon die. In particular, this book describes: (1) techniques for bug trace minimization that simplify debugging; (2) an RTL error diagnosis method that identifies the root cause of errors directly; (3) a counterexample-guided error-repair framework to automatically fix errors in gate-level and RTL designs; (4) a symmetry-based rewiring technology for fixing electrical errors; (5) an incremental verification system for physical synthesis; and (6) an integrated framework for post-silicon debugging and layout repair. The solutions provided in this book can greatly reduce debugging effort, enhance design quality, and ultimately enable the design and manufacture of more reliable electronic devices.

Quantum Circuit Simulation (Paperback, 2009 ed.): George F. Viamontes, Igor L Markov, John P. Hayes Quantum Circuit Simulation (Paperback, 2009 ed.)
George F. Viamontes, Igor L Markov, John P. Hayes
R2,653 Discovery Miles 26 530 Ships in 18 - 22 working days

Quantum Circuit Simulation covers the fundamentals of linear algebra and introduces basic concepts of quantum physics needed to understand quantum circuits and algorithms. It requires only basic familiarity with algebra, graph algorithms and computer engineering. After introducing necessary background, the authors describe key simulation techniques that have so far been scattered throughout the research literature in physics, computer science, and computer engineering. Quantum Circuit Simulation also illustrates the development of software for quantum simulation by example of the QuIDDPro package, which is freely available and can be used by students of quantum information as a "quantum calculator."

Multi-Objective Optimization in Physical Synthesis of Integrated Circuits (Paperback, 2013 ed.): David A. Papa, Igor L Markov Multi-Objective Optimization in Physical Synthesis of Integrated Circuits (Paperback, 2013 ed.)
David A. Papa, Igor L Markov
R3,049 Discovery Miles 30 490 Ships in 18 - 22 working days

This book introduces techniques that advance the capabilities and strength of modern software tools for physical synthesis, with the ultimate goal to improve the quality of leading-edge semiconductor products. It provides a comprehensive introduction to physical synthesis and takes the reader methodically from first principles through state-of-the-art optimizations used in cutting edge industrial tools. It explains how to integrate chip optimizations in novel ways to create powerful circuit transformations that help satisfy performance requirements.

Design, Analysis and Test of Logic Circuits Under Uncertainty (Paperback, 2013 ed.): Smita Krishnaswamy, Igor L Markov, John P.... Design, Analysis and Test of Logic Circuits Under Uncertainty (Paperback, 2013 ed.)
Smita Krishnaswamy, Igor L Markov, John P. Hayes
R2,965 Discovery Miles 29 650 Ships in 18 - 22 working days

Logic circuits are becoming increasingly susceptible to probabilistic behavior caused by external radiation and process variation. In addition, inherently probabilistic quantum- and nano-technologies are on the horizon as we approach the limits of CMOS scaling. Ensuring the reliability of such circuits despite the probabilistic behavior is a key challenge in IC design---one that necessitates a fundamental, probabilistic reformulation of synthesis and testing techniques. This monograph will present techniques for analyzing, designing, and testing logic circuits with probabilistic behavior.

Functional Design Errors in Digital Circuits - Diagnosis Correction and Repair (Paperback, Softcover reprint of hardcover 1st... Functional Design Errors in Digital Circuits - Diagnosis Correction and Repair (Paperback, Softcover reprint of hardcover 1st ed. 2009)
Kai-Hui Chang, Igor L Markov, Valeria Bertacco
R3,992 Discovery Miles 39 920 Ships in 18 - 22 working days

Functional Design Errors in Digital Circuits Diagnosis covers a wide spectrum of innovative methods to automate the debugging process throughout the design flow: from Register-Transfer Level (RTL) all the way to the silicon die. In particular, this book describes: (1) techniques for bug trace minimization that simplify debugging; (2) an RTL error diagnosis method that identifies the root cause of errors directly; (3) a counterexample-guided error-repair framework to automatically fix errors in gate-level and RTL designs; (4) a symmetry-based rewiring technology for fixing electrical errors; (5) an incremental verification system for physical synthesis; and (6) an integrated framework for post-silicon debugging and layout repair. The solutions provided in this book can greatly reduce debugging effort, enhance design quality, and ultimately enable the design and manufacture of more reliable electronic devices.

Electronic Design Automation for IC Implementation, Circuit Design, and Process Technology (Hardcover, 2nd edition): Luciano... Electronic Design Automation for IC Implementation, Circuit Design, and Process Technology (Hardcover, 2nd edition)
Luciano Lavagno, Igor L Markov, Grant Martin, Louis K. Scheffer
R6,410 Discovery Miles 64 100 Ships in 10 - 15 working days

The second of two volumes in the Electronic Design Automation for Integrated Circuits Handbook, Second Edition, Electronic Design Automation for IC Implementation, Circuit Design, and Process Technology thoroughly examines real-time logic (RTL) to GDSII (a file format used to transfer data of semiconductor physical layout) design flow, analog/mixed signal design, physical verification, and technology computer-aided design (TCAD). Chapters contributed by leading experts authoritatively discuss design for manufacturability (DFM) at the nanoscale, power supply network design and analysis, design modeling, and much more. New to This Edition: Major updates appearing in the initial phases of the design flow, where the level of abstraction keeps rising to support more functionality with lower non-recurring engineering (NRE) costs Significant revisions reflected in the final phases of the design flow, where the complexity due to smaller and smaller geometries is compounded by the slow progress of shorter wavelength lithography New coverage of cutting-edge applications and approaches realized in the decade since publication of the previous edition-these are illustrated by new chapters on 3D circuit integration and clock design Offering improved depth and modernity, Electronic Design Automation for IC Implementation, Circuit Design, and Process Technology provides a valuable, state-of-the-art reference for electronic design automation (EDA) students, researchers, and professionals.

VLSI Physical Design: From Graph Partitioning to Timing Closure (2nd ed. 2022): Andrew B. Kahng, Jens Lienig, Igor L Markov,... VLSI Physical Design: From Graph Partitioning to Timing Closure (2nd ed. 2022)
Andrew B. Kahng, Jens Lienig, Igor L Markov, Jin Hu
R1,645 Discovery Miles 16 450 Ships in 18 - 22 working days

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

VLSI Physical Design: From Graph Partitioning to Timing Closure (Paperback, 2011 ed.): Andrew B. Kahng, Jens Lienig, Igor L... VLSI Physical Design: From Graph Partitioning to Timing Closure (Paperback, 2011 ed.)
Andrew B. Kahng, Jens Lienig, Igor L Markov, Jin Hu
R2,208 Discovery Miles 22 080 Ships in 18 - 22 working days

Design and optimization of integrated circuits are essential to the creation of new semiconductor chips, and physical optimizations are becoming more prominent as a result of semiconductor scaling. Modern chip design has become so complex that it is largely performed by specialized software, which is frequently updated to address advances in semiconductor technologies and increased problem complexities. A user of such software needs a high-level understanding of the underlying mathematical models and algorithms. On the other hand, a developer of such software must have a keen understanding of computer science aspects, including algorithmic performance bottlenecks and how various algorithms operate and interact. "VLSI Physical Design: From Graph Partitioning to Timing Closure" introduces and compares algorithms that are used during the physical design phase of integrated-circuit design, wherein a geometric chip layout is produced starting from an abstract circuit design. The emphasis is on essential and fundamental techniques, ranging from hypergraph partitioning and circuit placement to timing closure.

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