Kirjojen hintavertailu. Mukana 12 594 648 kirjaa ja 12 kauppaa.

Kirjailija

Luciano Lavagno

Kirjat ja teokset yhdessä paikassa: 8 kirjaa, julkaisuja vuosilta 1993-2022, suosituimpien joukossa Design Automation of Real-Life Asynchronous Devices and Systems. Vertaile teosten hintoja ja tarkista saatavuus suomalaisista kirjakaupoista.

8 kirjaa

Kirjojen julkaisuhaarukka 1993-2022.

Electronic Design Automation for Integrated Circuits Handbook, Second Edition - Two Volume Set
This two-volume handbook addresses all major areas of electronic design automation (EDA) for integrated circuits (ICs). Chapters contributed by leading experts authoritatively discuss an array of topics ranging from system design to physical implementation. Offering improved depth and modernity, the second edition contains new coverage, major up
Logic Synthesis for Asynchronous Controllers and Interfaces

Logic Synthesis for Asynchronous Controllers and Interfaces

J. Cortadella; M. Kishinevsky; A. Kondratyev; Luciano Lavagno; Alex Yakovlev

Springer-Verlag Berlin and Heidelberg GmbH Co. K
2013
nidottu
This book is the result of a long friendship, of a broad international co­ operation, and of a bold dream. It is the summary of work carried out by the authors, and several other wonderful people, during more than 15 years, across 3 continents, in the course of countless meetings, workshops and discus­ sions. It shows that neither language nor distance can be an obstacle to close scientific cooperation, when there is unity of goals and true collaboration. When we started, we had very different approaches to handling the mys­ terious, almost magical world of asynchronous circuits. Some were more theo­ retical, some were closer to physical reality, some were driven mostly by design needs. In the end, we all shared the same belief that true Electronic Design Automation research must be solidly grounded in formal models, practically minded to avoid excessive complexity, and tested "in the field" in the form of experimental tools. The results are this book, and the CAD tool petrify. The latter can be downloaded and tried by anybody bold (or desperate) enough to tread into the clockless (but not lawless) domain of small-scale asynchronicity. The URL is http://www.lsi. upc. esr j ordic/petrify. We believe that asynchronous circuits are a wonderful object, that aban­ dons some of the almost militaristic law and order that governs synchronous circuits, to improve in terms of simplicity, energy efficiency and performance.
Hardware-Software Co-Design of Embedded Systems

Hardware-Software Co-Design of Embedded Systems

F. Balarin; Paolo Giusto; Attila Jurecska; Claudio Passerone; Ellen Sentovich; Bassam Tabbara; M. Chiodo; Harry Hsieh; Luciano Lavagno; Alberto Sangiovanni-Vincentelli; Kei Suzuki

Springer-Verlag New York Inc.
2013
nidottu
Embedded systems are informally defined as a collection of programmable parts surrounded by ASICs and other standard components, that interact continuously with an environment through sensors and actuators. The programmable parts include micro-controllers and Digital Signal Processors (DSPs). Embedded systems are often used in life-critical situations, where reliability and safety are more important criteria than performance. Today, embedded systems are designed with an ad hoc approach that is heavily based on earlier experience with similar products and on manual design. Use of higher-level languages such as C helps structure the design somewhat, but with increasing complexity it is not sufficient. Formal verification and automatic synthesis of implementations are the surest ways to guarantee safety. Thus, the POLIS system which is a co-design environment for embedded systems is based on a formal model of computation. POLIS was initiated in 1988 as a research project at the University of California at Berkeley and, over the years, grew into a full design methodology with a software system supporting it. Hardware-Software Co-Design of Embedded Systems: The POLIS Approach is intended to give a complete overview of the POLIS system including its formal and algorithmic aspects. Hardware-Software Co-Design of Embedded Systems: The POLIS Approach will be of interest to embedded system designers (automotive electronics, consumer electronics and telecommunications), micro-controller designers, CAD developers and students.
Algorithms for Synthesis and Testing of Asynchronous Circuits

Algorithms for Synthesis and Testing of Asynchronous Circuits

Luciano Lavagno; Alberto L. Sangiovanni-Vincentelli

Springer-Verlag New York Inc.
2012
nidottu
Since the second half of the 1980s asynchronous circuits have been the subject of a great deal of research following a period of relative oblivion. The lack of interest in asynchronous techniques was motivated by the progressive shift towards synchronous design techniques that had much more structure and were much easier to verify and synthesize. System design requirements made it impossible to eliminate totally the use of asynchronous circuits. Given the objective difficulty encountered by designers, the asynchronous components of electronic systems such as interfaces became a serious bottleneck in the design process. The use of new models and some theoretical breakthroughs made it possible to develop asynchronous design techniques that were reliable and effective. This book describes a variety of mathematical models and of algorithms that form the backbone and the body of a new design methodology for asyn­ chronous design. The book is intended for asynchronous hardware designers, for computer-aided tool experts, and for digital designers interested in ex­ ploring the possibility of designing asynchronous circuits. It requires a solid mathematical background in discrete event systems and algorithms. While the book has not been written as a textbook, nevertheless it could be used as a reference book in an advanced course in logic synthesis or asynchronous design.
Design Automation of Real-Life Asynchronous Devices and Systems

Design Automation of Real-Life Asynchronous Devices and Systems

Alexander Taubin; Jordi Cortadella; Luciano Lavagno; Alex Kondratyev; Ad Peeters

now publishers Inc
2007
nidottu
The number of gates on a chip is quickly growing toward and beyond the one billion mark. Keeping all the gates running at the beat of a single or a few rationally related clocks is becoming impossible. However, the electronics industry for the most part is still reluctant to adopt asynchronous design due to a common belief that there is a lack of commercial-quality Electronic Design Automation tools for asynchronous circuits.Design Automation of Real-Life Asynchronous Devices and Systems presents design flows that can tackle large designs without significant changes with respect to synchronous design flow. Limiting it self to the four design flows that come closest to this goal it starts by overviewing the most commercially and technically proven, Tangram. The other three flows, Null Convention Logic, de-synchronization and gate-level pipelining, can be considered as asynchronous re-implementations of synchronous specifications.The book demonstrates the possibility of implementing large legacy synchronous designs in an almost ""push button"" manner negating the need to re-educate synchronous RTL designers. It is essential reading for designers and researchers in large scale integrated circuit design.
Logic Synthesis for Asynchronous Controllers and Interfaces

Logic Synthesis for Asynchronous Controllers and Interfaces

J. Cortadella; M. Kishinevsky; A. Kondratyev; Luciano Lavagno; Alex Yakovlev

Springer-Verlag Berlin and Heidelberg GmbH Co. K
2002
sidottu
This book is the result of a long friendship, of a broad international co­ operation, and of a bold dream. It is the summary of work carried out by the authors, and several other wonderful people, during more than 15 years, across 3 continents, in the course of countless meetings, workshops and discus­ sions. It shows that neither language nor distance can be an obstacle to close scientific cooperation, when there is unity of goals and true collaboration. When we started, we had very different approaches to handling the mys­ terious, almost magical world of asynchronous circuits. Some were more theo­ retical, some were closer to physical reality, some were driven mostly by design needs. In the end, we all shared the same belief that true Electronic Design Automation research must be solidly grounded in formal models, practically minded to avoid excessive complexity, and tested "in the field" in the form of experimental tools. The results are this book, and the CAD tool petrify. The latter can be downloaded and tried by anybody bold (or desperate) enough to tread into the clockless (but not lawless) domain of small-scale asynchronicity. The URL is http://www.lsi. upc. esr j ordic/petrify. We believe that asynchronous circuits are a wonderful object, that aban­ dons some of the almost militaristic law and order that governs synchronous circuits, to improve in terms of simplicity, energy efficiency and performance.
Hardware-Software Co-Design of Embedded Systems

Hardware-Software Co-Design of Embedded Systems

F. Balarin; Paolo Giusto; Attila Jurecska; Claudio Passerone; Ellen Sentovich; Bassam Tabbara; M. Chiodo; Harry Hsieh; Luciano Lavagno; Alberto Sangiovanni-Vincentelli; Kei Suzuki

Springer
1997
sidottu
Embedded systems are informally defined as a collection of programmable parts surrounded by ASICs and other standard components, that interact continuously with an environment through sensors and actuators. The programmable parts include micro-controllers and Digital Signal Processors (DSPs). Embedded systems are often used in life-critical situations, where reliability and safety are more important criteria than performance. Today, embedded systems are designed with an ad hoc approach that is heavily based on earlier experience with similar products and on manual design. Use of higher-level languages such as C helps structure the design somewhat, but with increasing complexity it is not sufficient. Formal verification and automatic synthesis of implementations are the surest ways to guarantee safety. Thus, the POLIS system which is a co-design environment for embedded systems is based on a formal model of computation. POLIS was initiated in 1988 as a research project at the University of California at Berkeley and, over the years, grew into a full design methodology with a software system supporting it. Hardware-Software Co-Design of Embedded Systems: The POLIS Approach is intended to give a complete overview of the POLIS system including its formal and algorithmic aspects. Hardware-Software Co-Design of Embedded Systems: The POLIS Approach will be of interest to embedded system designers (automotive electronics, consumer electronics and telecommunications), micro-controller designers, CAD developers and students.
Algorithms for Synthesis and Testing of Asynchronous Circuits

Algorithms for Synthesis and Testing of Asynchronous Circuits

Luciano Lavagno; Alberto L. Sangiovanni-Vincentelli

Springer
1993
sidottu
Since the second half of the 1980s asynchronous circuits have been the subject of a great deal of research following a period of relative oblivion. The lack of interest in asynchronous techniques was motivated by the progressive shift towards synchronous design techniques that had much more structure and were much easier to verify and synthesize. System design requirements made it impossible to eliminate totally the use of asynchronous circuits. Given the objective difficulty encountered by designers, the asynchronous components of electronic systems such as interfaces became a serious bottleneck in the design process. The use of new models and some theoretical breakthroughs made it possible to develop asynchronous design techniques that were reliable and effective. This book describes a variety of mathematical models and of algorithms that form the backbone and the body of a new design methodology for asyn­ chronous design. The book is intended for asynchronous hardware designers, for computer-aided tool experts, and for digital designers interested in ex­ ploring the possibility of designing asynchronous circuits. It requires a solid mathematical background in discrete event systems and algorithms. While the book has not been written as a textbook, nevertheless it could be used as a reference book in an advanced course in logic synthesis or asynchronous design.