When I attended college we studied vacuum tubes in our junior year. At that time an average radio had ?ve vacuum tubes and better ones even seven. Then transistors appeared in 1960s. A good radio was judged to be one with more thententransistors. Latergoodradioshad1520transistors and after that everyone stopped counting transistors. Today modern processors runing personal computers have over 10milliontransistorsandmoremillionswillbeaddedevery year. The difference between 20 and 20M is in complexity, methodology and business models. Designs with 20 tr- sistors are easily generated by design engineers without any tools, whilst designs with 20M transistors can not be done by humans in reasonable time without the help of Prof. Dr. Gajski demonstrates the Y-chart automation. This difference in complexity introduced a paradigm shift which required sophisticated methods and tools, and introduced design automation into design practice. By the decomposition of the design process into many tasks and abstraction levels the methodology of designing chips or systems has also evolved. Similarly, the business model has changed from vertical integration, in which one company did all the tasks from product speci?cation to manufacturing, to globally distributed, client server production in which most of the design and manufacturing tasks are outsourced.
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From the reviews:
"In such a changing environment this Handbook on Electronic Design Automation represents a welcome help for the practitioners of the system design as well as for students taking courses in the same area. The Handbook surveys the main tasks of system design methodology, explains different methods and tools for design specification, synthesis, simulation, and verification, introduces hardware description languages and modeling practices, and introduces techniques for the design of circuits, modules and systems on different levels of abstraction. The main advantage of this Handbook is that readers quickly obtain a good overview of the design methodologies and of the design automation field as a whole, instead of only one aspect of it.
For this reason, I sincerely welcome this book and recommend it highly to all practitioners in the field of designing and building electronic systems."
(From the Foreword: Daniel D. Gajski)
"Since the environment is changing in the Electronic Design Automation (EDA) industry with amazing speed, this handbook on EDA represents an appreciated help for the practitioners in system design ... . covers (at least) the minimum knowledge one must know today to design modern electronics with computer programs effectively. ... The main advantage of this handbook is that readers may quickly obtain a good overview of the design automation field ... . This is why this book is highly recommended ... ." (Neculai Curteanu, Zentralblatt MATH, Vol. 1044 (19), 2004)
"The Electronic Design Automation Handbook by Dirk Jansen ... endeavors to create a compendium that integrates basic knowledge from a variety of areas in EDA, providing a ‘one-stop shop’ that overviews the field. ... the book has many aspects that provide good value to the reader. ... it must be said that this book covers a great deal of ground, and makes a sincere effort in doing so. It’s a very good source for design and EDA practitioners, and students ... ." (Sachin Sapatnekar, IEEE Design & Test of Computers, 2005)
Overview EDA. 1: Introduction. 2. The Concept of Electronic Design Automation. Symbolic Design. 3: Symbolic Design Entry. High Level Language Design. 4: Design Using Standard Description Languages. 5: Graphical Specification of System Behavior. 6:Synthesis. 7: Hardware/Software Design. 8: Tabular Design Formats. Modelling and Verifications. 9: Circuit Verification. 10: Analog Simulation. 11: Digital Simulation. 12: Mixed Signal Simulation. 13: System Simulation. 14: Formal Verification. 15: Design for Testability. Implementation. 16: Application Specific Integrated Circuits (ASICs). 17: Library Design. 18: Programmable Logic Devices. 19: Semiconductor Process Technologies. 20: Integrated Circuit Techniques. 21: Geometric Layout. 22: Geometric Verification. 23: Assembly- and Packaging Methods. 24: Printed Circuit Board Technologies. 25: Printed Circuit Board Design. Tutorial. 26: EDA Tutorial. Appendix. Appendix A: Symbols. A.1. IEC and National Standards. A.2. Symbols for Digital Designs. A.3. IEC Symbols for Printed Circuit Boards. A.4. References. Appendix B: VHDL Syntax. Appendix C: Packages. C.1. Package STD.STANDARD. C.2. Package STD.TEXTIO. C.3. Package IEEE.STD_LOGIC_1164. C.4. Package IEEE.NUMERIC_STD. Appendix D:Standardization in Electronic Design Automation. Appendix E: Symbols. Authors. Index.
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Gebunden. Condizione: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Details design tools and techniques for high performance ASIC-designShows the best practices for creating reusable designs in an SoC design methodology When I attended college we studied vacuum tubes in our junior year. At that time an. Codice articolo 4095122
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Buch. Condizione: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -When I attended college we studied vacuum tubes in our junior year. At that time an average radio had ve vacuum tubes and better ones even seven. Then transistors appeared in 1960s. A good radio was judged to be one with more thententransistors. Latergoodradioshad15-20transistors and after that everyone stopped counting transistors. Today modern processors runing personal computers have over 10milliontransistorsandmoremillionswillbeaddedevery year. The difference between 20 and 20M is in complexity, methodology and business models. Designs with 20 tr- sistors are easily generated by design engineers without any tools, whilst designs with 20M transistors can not be done by humans in reasonable time without the help of Prof. Dr. Gajski demonstrates the Y-chart automation. This difference in complexity introduced a paradigm shift which required sophisticated methods and tools, and introduced design automation into design practice. By the decomposition of the design process into many tasks and abstraction levels the methodology of designing chips or systems has also evolved. Similarly, the business model has changed from vertical integration, in which one company did all the tasks from product speci cation to manufacturing, to globally distributed, client server production in which most of the design and manufacturing tasks are outsourced. 680 pp. Englisch. Codice articolo 9781402075025
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Condizione: New. Details design tools and techniques for high performance ASIC-design. This work shows the best practices for creating reusable designs in an SoC design methodology. Editor(s): Jansen, Dirk (Director of ASIC Design Center, University of Applied Sciences, Offenburg, Germany). Num Pages: 655 pages, biography. BIC Classification: TJF; UGK. Category: (P) Professional & Vocational; (UP) Postgraduate, Research & Scholarly; (UU) Undergraduate. Dimension: 235 x 155 x 36. Weight in Grams: 1116. . 2003. Hardback. . . . . Codice articolo V9781402075025
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