今天,集成电路设计技术高速发展,在各个领域得到广泛应用,已经成为一种横跨多学科的技术。本书从架构与算法讲起,介绍了功能验证、VHDL建模、同步电路设计、异步数据获取、能耗与散热、信号完整性、物理设计、设计验证等必备技术,还讲解了VLSI经济与项目管理,并简单阐释了CMOS技术的基础知识,全面覆盖了数字集成电路的整个设计开发过程。
作为一本教科书,本书向工程专业学生展示了数字VLSI设计之美,揭示了各种技术难点,使他们避免重复前人的错误;作为一本技术参考书,本书内容全面,丰富的表格、清单、电路图和个案研究能够帮助正在开发硬件电路的在职工程师更好地完成自己的设计。
本书从架构与算法讲起,介绍了功能验证、VHDL建模、同步电路设计、异步数据获取、能耗与散热、信号完整性、物理设计、设计验证等必备技术,还讲解了VLSI经济运作与项目管理,并简单阐释了CMOS技术的基础知识,全面覆盖了数字集成电路的整个设计开发过程。
本书既可作为高等院校微电子、电子技术等相关专业高年级师生和研究生的参考教材,也可供半导体行业工程师参考。
Chapter 1 Introduction to Microelectronics
1.1 Economic impact
1.2 Concepts and terminology
1.2.1 The Guinness book of records point of view
1.2.2 The marketing point of view
1.2.3 The fabrication point of view
1.2.4 The design engineer's point of view
1.2.5 The business point of view
1.3 Design flow in digital VLSI
1.3.1 The Y-chart, a map of digital electronic systems
1.3.2 Major stages in VLSI design
1.3.3 Cell libraries
1.3.4 Electronic design automation software
1.4 Field-programmable logic
1.4.1 Configuration technologies
1.4.2 Organization of hardware resources
1.4.3 Commercial products
1.5 Problems
1.6 Appendix I: A brief glossary of logic families
1.7 Appendix II: An illustrated glossary of circuit-related terms
Chapter 2 From Algorithms to Architectures
Chapter 3 Functional Verification
Chapter 4 Modelling Hardware with VHDL
Chapter 5 The Case for Synchronous Design
Chapter 6 Clocking of Synchronous Circuits
Chapter 7 Acquisition of Asynchronous Data
Chapter 8 Gate- and Transistor-Level Design
Chapter 9 Energy Efficiency and Heat Removal
Chapter 10 Signal Integrity
Chapter 11 Physical Design
Chapter 12 Design Verification
Chapter 13 VLSI Economics and Project Management
Chapter 14 A Primer on CMOS Technology
Chapter 15 Outlook
Appendix A Elementary Digital Electronics
Appendix B Finite State Machines
Appendix C VLSI Designer's Checklist
Appendix D Symbols and constants
References
Index