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[资料] 论坛首发Springer2014新书:Flip-Flop Design in Nanometer CMOS

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发表于 2014-11-15 16:09:25 | 显示全部楼层 |阅读模式

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本帖最后由 haoyun 于 2014-11-17 17:10 编辑

Flip-Flop Design in Nanometer CMOS From High Speed to Low Energy

                               
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Flip-Flop Design in Nanometer CMOS: From High Speed to Low Energy Hardcover – October 15, 2014
This book provides a unified treatment of Flip-Flop design and selection in nanometer CMOS VLSI systems. The design aspects related to the energy-delay tradeoff in Flip-Flops are discussed, including their energy-optimal selection according to the targeted application, and the detailed circuit design in nanometer CMOS VLSI systems. Design strategies are derived in a coherent framework that includes explicitly nanometer effects, including leakage, layout parasitics and process/voltage/temperature variations, as main advances over the existing body of work in the field. The related design tradeoffs are explored in a wide range of applications and the related energy-performance targets. A wide range of existing and recently proposed Flip-Flop topologies are discussed. Theoretical foundations are provided to set the stage for the derivation of design guidelines, and emphasis is given on practical aspects and consequences of the presented results. Analytical models and derivations are introduced when needed to gain an insight into the inter-dependence of design parameters under practical constraints. This book serves as a valuable reference for practicing engineers working in the VLSI design area, and as text book for senior undergraduate, graduate  and postgraduate students (already familiar with digital circuits and timing).

Product Details
  • Hardcover: 260 pages
  • Publisher: Springer; 2015 edition (October 15, 2014)
  • Language: English
  • ISBN-10: 3319019961
  • ISBN-13: 978-3319019963



Editorial ReviewsFrom the Back Cover
This book provides a unified treatment of Flip-Flop design and selection in nanometer CMOS VLSI systems. The design aspects related to the energy-delay tradeoff in Flip-Flops are discussed, including their energy-optimal selection according to the targeted application, and the detailed circuit design in nanometer CMOS VLSI systems. Design strategies are derived in a coherent framework that includes explicitly nanometer effects, including leakage, layout parasitics and process/voltage/temperature variations, as main advances over the existing body of work in the field. The related design tradeoffs are explored in a wide range of applications and the related energy-performance targets. A wide range of existing and recently proposed Flip-Flop topologies are discussed. Theoretical foundations are provided to set the stage for the derivation of design guidelines, and emphasis is given on practical aspects and consequences of the presented results. Analytical models and derivations are introduced when needed to gain an insight into the inter-dependence of design parameters under practical constraints. This book serves as a valuable reference for practicing engineers working in the VLSI design area, and as text book for senior undergraduate, graduate  and postgraduate students (already familiar with digital circuits and timing).
• Provides a unified treatment of Flip-Flop design and energy/variation-aware selection in nanometer CMOS VLSI systems
• Offers in-depth analysis of the impact of nanometer effects on  design tradeoffs
• Presents a comprehensive analysis, by considering more than 20 topologies covering all relevant classes of circuits
• Uses a rigorous framework based on novel methodologies to include layout parasitics within the circuit design loop



Flip-Flop Design in Nanometer CMOS From High Speed to Low Energy.pdf (10.4 MB, 下载次数: 1767 )



发表于 2014-11-15 22:27:21 | 显示全部楼层
谢谢lz收集分享好书!
发表于 2014-11-15 23:15:13 | 显示全部楼层

                               
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发表于 2014-11-16 01:01:59 | 显示全部楼层
顶,,
发表于 2014-11-16 06:54:43 | 显示全部楼层
感謝分享
发表于 2014-11-16 07:01:19 | 显示全部楼层
感謝分享
发表于 2014-11-16 08:34:50 | 显示全部楼层
good, very good
发表于 2014-11-16 19:44:44 | 显示全部楼层
下来看看
发表于 2014-11-16 23:11:18 | 显示全部楼层
good,thx
发表于 2014-11-17 09:00:44 | 显示全部楼层
感謝大大的分享
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