Leaf Cell and Hierarchical Compaction Techniques, Hardcover by Bamji, Cyrus; ...

$ 65.1

Format: Hardcover Item Weight: 33.5 Oz Publication Name: Leaf Cell and Hierarchical Compaction Techniques Type: Textbook Book Title: Leaf Cell and Hierarchical Compaction Techniques Number of Pages: Xiv, 161 Pages Language: English Series: The Springer International Series in Engineering and Computer Science Ser. Publisher: Springer width: 6.1 in Item Width: 6.1 in Subject Area: Computers, Technology & Engineering Author: Ravi Varadarajan, Cyrus Bamji Item Length: 9.3 in Subject: Cad-Cam, Electronics / Circuits / Integrated, Electronics / Circuits / General, Electrical, Computer Vision & Pattern Recognition ISBN: 9780792399469 Publication Year: 1997

Description

Leaf Cell and Hierarchical Compaction Techniques, Hardcover by Bamji, Cyrus; .... Leaf Cell and Hierarchical Compaction Techniques, Hardcover by Bamji, Cyrus; Varadarajan, Ravi, ISBN 0792399463, ISBN-13 9780792399469, Like New Used, Free shipping in the US Presents novel algorithms developed for the compaction of large layouts. First, new ideas for compaction of leaf cells are presented, followed by descriptions of new approaches for hierarchical pitch- matching compaction and an introduction to the concept of a minimum design. Finally, a new representation for designs called virtual interface, which allows for efficient topological specification and representation of hierarchical layouts, is outlined. This representation binds all of the algorithms and their implementations into an intuitive, easy-to-use system. Annotation c. by Book News, Inc., Portland, Or. Leaf Cell and Hierarchical Compaction Techniques, Hardcover by Bamji, Cyrus; Varadarajan, Ravi, ISBN 0792399463, ISBN-13 9780792399469, Like New Used, Free shipping in the US Presents novel algorithms developed for the compaction of large layouts. First, new ideas for compaction of leaf cells are presented, followed by descriptions of new approaches for hierarchical pitch- matching compaction and an introduction to the concept of a minimum design. Finally, a new representation for designs called virtual interface, which allows for efficient topological specification and representation of hierarchical layouts, is outlined. This representation binds all of the algorithms and their implementations into an intuitive, easy-to-use system. Annotation c. by Book News, Inc., Portland, Or.