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Titlebook: Regular Fabrics in Deep Sub-Micron Integrated-Circuit Design; Fan Mo,Robert K. Brayton Book 2004 Springer Science+Business Media New York

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书目名称Regular Fabrics in Deep Sub-Micron Integrated-Circuit Design
编辑Fan Mo,Robert K. Brayton
视频video
图书封面Titlebook: Regular Fabrics in Deep Sub-Micron Integrated-Circuit Design;  Fan Mo,Robert K. Brayton Book 2004 Springer Science+Business Media New York
描述.Regular Fabrics in Deep Sub-Micron Integrated-Circuit Design. discusses new approaches to better timing-closure and manufacturability of DSM Integrated Circuits. The key idea presented is the use of regular circuit and interconnect structures such that area/delay can be predicted with high accuracy. The co-design of structures and algorithms allows great opportunities for achieving better final results, thus closing the gap between IC and CAD designers. The regularities also provide simpler and possibly better manufacturability. .In this book we present not only algorithms for solving particular sub-problems but also systematic ways of organizing different algorithms in a flow to solve the design problem as a whole. A timing-driven chip design flow is developed based on the new structures and their design algorithms, which produces faster chips in a shorter time.
出版日期Book 2004
关键词CMOS; Computer-Aided Design (CAD); Standard; Transistor; algorithms; automation; circuit design; integrated
版次1
doihttps://doi.org/10.1007/b117043
isbn_softcover978-1-4757-7934-9
isbn_ebook978-1-4020-8041-8
copyrightSpringer Science+Business Media New York 2004
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Block-Level Placement and Routing,pology, which offers good predictability. The idea of base-virtual pin pairs and the introduction of cyclic grid allow easy and fast construction of the routing of the whole layout. This also enables the integration of the placement and routing in a single simulated-annealing framework. Wire delay m
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Book 2004lar sub-problems but also systematic ways of organizing different algorithms in a flow to solve the design problem as a whole. A timing-driven chip design flow is developed based on the new structures and their design algorithms, which produces faster chips in a shorter time.
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ng particular sub-problems but also systematic ways of organizing different algorithms in a flow to solve the design problem as a whole. A timing-driven chip design flow is developed based on the new structures and their design algorithms, which produces faster chips in a shorter time.978-1-4757-7934-9978-1-4020-8041-8
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The Module-Based Design Flow,ion stage. The Fishbone scheme with buffer insertion is adopted in the physical design stage, modified by including version selection. Experimental results show that the Module-Based design flow achieves shorter clock periods than the Physical Synthesis approach and uses less time.
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innovative process model. This chapter highlights the various attributes of the FDA for IoT applications and discusses the FDA classification like fog data collection, storage, and analytics on it. The proposed FDA process model addresses numerous research challenges, such as scalability, accessibil
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