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Timing Optimization Through Clock Skew Scheduling (Paperback, Softcover reprint of the original 1st ed. 2000): Ivan S. Kourtev,... Timing Optimization Through Clock Skew Scheduling (Paperback, Softcover reprint of the original 1st ed. 2000)
Ivan S. Kourtev, Eby G. Friedman, Baris Taskin
R2,934 Discovery Miles 29 340 Ships in 10 - 15 working days

History of the Book The last three decades have witnessed an explosive development in integrated circuit fabrication technologies. The complexities of cur rent CMOS circuits are reaching beyond the 100 nanometer feature size and multi-hundred million transistors per integrated circuit. To fully exploit this technological potential, circuit designers use sophisticated Computer-Aided Design (CAD) tools. While supporting the talents of innumerable microelectronics engineers, these CAD tools have become the enabling factor responsible for the successful design and implemen tation of thousands of high performance, large scale integrated circuits. This research monograph originated from a body of doctoral disserta tion research completed by the first author at the University of Rochester from 1994 to 1999 while under the supervision of Prof. Eby G. Friedman. This research focuses on issues in the design of the clock distribution net work in large scale, high performance digital synchronous circuits and particularly, on algorithms for non-zero clock skew scheduling. During the development of this research, it has become clear that incorporating timing issues into the successful integrated circuit design process is of fundamental importance, particularly in that advanced theoretical de velopments in this area have been slow to reach the designers' desktops."

Timing Optimization Through Clock Skew Scheduling (Paperback, Softcover reprint of hardcover 1st ed. 2009): Ivan S. Kourtev,... Timing Optimization Through Clock Skew Scheduling (Paperback, Softcover reprint of hardcover 1st ed. 2009)
Ivan S. Kourtev, Baris Taskin, Eby G. Friedman
R2,957 Discovery Miles 29 570 Ships in 10 - 15 working days

This book details timing analysis and optimization techniques for circuits with level-sensitive memory elements. It contains a linear programming formulation applicable to the timing analysis of large scale circuits and includes a delay insertion methodology that improves the efficiency of clock skew scheduling. Coverage also provides a framework for and results from implementing timing optimization algorithms in a parallel computing environment.

Timing Optimization Through Clock Skew Scheduling (Hardcover, 2009 ed.): Ivan S. Kourtev, Baris Taskin, Eby G. Friedman Timing Optimization Through Clock Skew Scheduling (Hardcover, 2009 ed.)
Ivan S. Kourtev, Baris Taskin, Eby G. Friedman
R3,130 Discovery Miles 31 300 Ships in 10 - 15 working days

This book details timing analysis and optimization techniques for circuits with level-sensitive memory elements. It contains a linear programming formulation applicable to the timing analysis of large scale circuits and includes a delay insertion methodology that improves the efficiency of clock skew scheduling. Coverage also provides a framework for and results from implementing timing optimization algorithms in a parallel computing environment.

Timing Optimization Through Clock Skew Scheduling (Hardcover, 2000 ed.): Ivan S. Kourtev, Eby G. Friedman, Baris Taskin Timing Optimization Through Clock Skew Scheduling (Hardcover, 2000 ed.)
Ivan S. Kourtev, Eby G. Friedman, Baris Taskin
R3,090 Discovery Miles 30 900 Ships in 10 - 15 working days

History of the Book The last three decades have witnessed an explosive development in integrated circuit fabrication technologies. The complexities of cur rent CMOS circuits are reaching beyond the 100 nanometer feature size and multi-hundred million transistors per integrated circuit. To fully exploit this technological potential, circuit designers use sophisticated Computer-Aided Design (CAD) tools. While supporting the talents of innumerable microelectronics engineers, these CAD tools have become the enabling factor responsible for the successful design and implemen tation of thousands of high performance, large scale integrated circuits. This research monograph originated from a body of doctoral disserta tion research completed by the first author at the University of Rochester from 1994 to 1999 while under the supervision of Prof. Eby G. Friedman. This research focuses on issues in the design of the clock distribution net work in large scale, high performance digital synchronous circuits and particularly, on algorithms for non-zero clock skew scheduling. During the development of this research, it has become clear that incorporating timing issues into the successful integrated circuit design process is of fundamental importance, particularly in that advanced theoretical de velopments in this area have been slow to reach the designers' desktops."

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