On-chip communication architectures : system on chip interconnect

著者

書誌事項

On-chip communication architectures : system on chip interconnect

Sudeep Pasricha, Nikil Dutt

(The Morgan Kaufmann series in systems on silicon / Peter J. Ashenden, Wayne Wolf, series editors)

Elsevier/Morgan Kaufmann Publishers, c2008

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注記

Includes bibliographical references and index

内容説明・目次

内容説明

Over the past decade, system-on-chip (SoC) designs have evolved to address the ever increasing complexity of applications, fueled by the era of digital convergence. Improvements in process technology have effectively shrunk board-level components so they can be integrated on a single chip. New on-chip communication architectures have been designed to support all inter-component communication in a SoC design. These communication architecture fabrics have a critical impact on the power consumption, performance, cost and design cycle time of modern SoC designs. As application complexity strains the communication backbone of SoC designs, academic and industrial R&D efforts and dollars are increasingly focused on communication architecture design. On-Chip Communication Architecures is a comprehensive reference on concepts, research and trends in on-chip communication architecture design. It will provide readers with a comprehensive survey, not available elsewhere, of all current standards for on-chip communication architectures.

目次

  • An Overview of System-on-Chips
  • Need for Communication-centric Design Flow
  • Basic Concepts of Bus-based Communication Architectures
  • Bus-based Communication Architecture Specification Standards
  • Limitations of Current Design Approaches
  • Physical and Electrical Analysis
  • Models for Performance Exploration
  • Power/Energy Exploration
  • Design and Synthesis of Communication Architectures
  • Innovative Aspects
  • Dynamic Bus Reconfiguration
  • Bus Encoding Techniques
  • Interface Synthesis and Optimization
  • Secure On-chip Communication Infrastructure
  • Verification
  • Custom Bus Design
  • Open Problems
  • Network-on-Chips
  • Optical Interconnects
  • Wireless Interconnects
  • Physical Design Trends

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