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Table of contents(7 chapters)
About this book
- Using more structured design methodologies for extensive reuse of existing components and subsystems. It seems that 70% of new designs correspond to existing components that cannot be reused because of a lack of methodologies and tools.
- Providing higher level design tools allowing to start from a higher level of abstraction. After the success and the widespread acceptance of logic and RTL synthesis, the next step is behavioral synthesis, commonly called architectural or high-level synthesis.
Behavioral Synthesis and Component Reuse with VHDL provides methods and techniques for VHDL based behavioral synthesis and component reuse. The goal is to develop VHDL modeling strategies for emerging behavioral synthesis tools. Special attention is given to structured and modular design methods allowing hierarchical behavioral specification and design reuse. The goal of this book is not to discuss behavioral synthesis in general or to discuss a specific tool but to describe the specific issues related to behavioral synthesis of VHDL description.
This book targets designers who have to use behavioral synthesis tools or who wish to discover the real possibilities of this emerging technology. The book will also be of interest to teachers and students interested to learn or to teach VHDL based behavioral synthesis.
Authors and Affiliations
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TIMA/INPG, Grenoble, France
Ahmed A. Jerraya, Hong Ding, Polen Kission, Maher Rahmouni
Bibliographic Information
Book Title: Behavioral Synthesis and Component Reuse with VHDL
Authors: Ahmed A. Jerraya, Hong Ding, Polen Kission, Maher Rahmouni
DOI: https://doi.org/10.1007/978-1-4615-6315-0
Publisher: Springer New York, NY
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eBook Packages: Springer Book Archive
Copyright Information: Springer Science+Business Media New York 1997
Hardcover ISBN: 978-0-7923-9827-1Published: 30 November 1996
Softcover ISBN: 978-1-4613-7899-0Published: 10 October 2012
eBook ISBN: 978-1-4615-6315-0Published: 06 December 2012
Edition Number: 1
Number of Pages: XXI, 263
Topics: Circuits and Systems, Computer-Aided Engineering (CAD, CAE) and Design, Computer Hardware, Electrical Engineering