Multi-Objective Optimization in Physical Synthesis of Integrated Circuits

Multi-Objective Optimization in Physical Synthesis of Integrated Circuits by David A. Papa, published by Springer New York on September 19, 2014, is a detailed exploration of techniques that enhance modern software tools for physical synthesis. This edition, comprising 158 pages, offers a comprehensive introduction to the subject, guiding readers from foundational principles to advanced optimizations utilized in contemporary industrial applications.
Readers will discover methods for integrating chip optimizations to achieve significant circuit transformations that meet performance requirements. The book focuses on the intersection of technology and engineering, particularly in the realms of electronics and semiconductor manufacturing. By presenting state-of-the-art techniques, it aims to improve the quality of leading-edge semiconductor products, making it a valuable resource for those interested in the fields of nanotechnology and MEMS.
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This book introduces techniques that advance the capabilities and strength of modern software tools for physical synthesis, with the ultimate goal to improve the quality of leading-edge semiconductor products. It provides a comprehensive introduction to physical synthesis and takes the reader methodically from first principles through state-of-the-art optimizations used in cutting edge industrial tools. It explains how to integrate chip optimizations in novel ways to create powerful circuit transformations that help satisfy performance requirements.
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