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Titlebook: Algorithms for VLSI Physical Design Automation; Naveed A. Sherwani Textbook 1999Latest edition Springer Science+Business Media New York 19

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Geschichte von verschiedenen Seiten,steps. Good solutions at each step are required, since a poor solution at an earlier stage prevents a good solution at a later stage. Despite significant research efforts in this field, CAD tools still lag behind the technological advances in fabrication. This calls for the development of efficient algorithms for physical design automation.
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VLSI Physical Design Automation,steps. Good solutions at each step are required, since a poor solution at an earlier stage prevents a good solution at a later stage. Despite significant research efforts in this field, CAD tools still lag behind the technological advances in fabrication. This calls for the development of efficient algorithms for physical design automation.
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VLSI Physical Design Automation,hip dictate that CAD tools should be developed for all the phases. Also, the design process must be divided into different stages because of the complexity of entire process. Physical design is one of the steps in the VLSI design cycle. In this step, each component of a circuit is converted into a s
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Design and Fabrication of VLSI Devices,d polysilicon film deposition, oxidation, lithography, and dry etching. During the fabrication process, the devices are created on the chip. When some fixed size material crosses another material, devices are formed. While designing the devices, a set of design rules has to be followed to ensure pro
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Placement,o most successful placement algorithm. Although these algorithms are computationally intensive, they do produce good placements. Integer programming based algorithms for floorplanning have been also been successful. Several algorithms have been presented for pin assignment, including optimal pin ass
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Physical Design Automation of MCMs,p between the existing PCB packaging approach and the progressing VLSI IC technology. The physical design of MCMs is an important ingredient of the overall MCM design cycle. The density and complexity of contemporary VLSI/ULSI chips require automation of the physical design of MCMs. Further developm
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