Direct Transistor-Level Layout for Digital Blocks
Autor Prakash Gopalakrishnan, Rob A. Rutenbaren Limba Engleză Hardback – 17 iun 2004
Direct Transistor-Level Layout For Digital Blocks proposes a direct transistor-level layout approach for small blocks of custom digital logic as an alternative that better accommodates demands for device-level flexibility. This approach captures essential shape-level optimizations, yet scales easily to netlists with thousands of devices, and incorporates timing optimization during layout. The key idea is early identification of essential diffusion-merged MOS device groups, and their preservation in an uncommitted geometric form until the very end of detailed placement. Roughly speaking, essential groups are extracted early from the transistor-level netlist, placed globally, optimized locally, and then finally committed each to a specific shape-level form while concurrently optimizing for both density and routability.
The essential flaw in prior efforts is an over-reliance on geometric assumptions from large-scale cell-based layout algorithms. Individual transistors may seem simple, but they do not pack as gates do. Algorithms that ignore these shape-level issues suffer the consequences when thousands of devices are poorly packed. The approach described in this book can pack devices much more densely than a typical cell-based layout.
Direct Transistor-Level Layout For Digital Blocks is a comprehensive reference work on device-level layout optimization, which will be valuable to CAD tool and circuit designers.
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Specificații
ISBN-13: 9781402076657
ISBN-10: 1402076657
Pagini: 140
Ilustrații: IX, 125 p.
Dimensiuni: 156 x 232 x 13 mm
Greutate: 0.37 kg
Ediția:2004
Editura: Springer Us
Colecția Springer
Locul publicării:New York, NY, United States
ISBN-10: 1402076657
Pagini: 140
Ilustrații: IX, 125 p.
Dimensiuni: 156 x 232 x 13 mm
Greutate: 0.37 kg
Ediția:2004
Editura: Springer Us
Colecția Springer
Locul publicării:New York, NY, United States
Public țintă
ResearchCuprins
Circuit Structure and Clustering.- Global Placement.- Detailed Placement and Layout Results.- Timing-Driven Placement.- Conclusion.