Multi-objective optimization in physical synthesis of integrated circuits

<p>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 rea...

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1. Verfasser: Papa, David A. (VerfasserIn)
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Veröffentlicht: New York, NY [u.a.] Springer 2013
Schriftenreihe:Lecture notes in electrical engineering 166
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Datensatz im Suchindex

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adam_text MULTI-OBJECTIVE OPTIMIZATION IN PHYSICAL SYNTHESIS OF INTEGRATED CIRCUITS / A. PAPA, DAVID : 2013 TABLE OF CONTENTS / INHALTSVERZEICHNIS PART I: INTRODUCTION AND PRIOR ART TIMING CLOSURE FOR MULTI-MILLION-GATE INTEGRATED CIRCUITS STATE OF THE ART IN PHYSICAL SYNTHESIS PART II: LOCAL PHYSICAL SYNTHESIS AND NECESSARY ANALYSIS TECHNIQUES BUFFER INSERTION DURING TIMING-DRIVEN PLACEMENT BOUNDED TRANSACTIONAL TIMING ANALYSIS GATE SIZING DURING TIMING-DRIVEN PLACEMENT PART III: BROADENING THE SCOPE OF CIRCUIT TRANSFORMATIONS PHYSICALLY-DRIVEN LOGIC RESTRUCTURING LOGIC RESTRUCTURING AS AN AID TO PHYSICAL RETIMING BROADENING THE SCOPE OF OPTIMIZATION USING PARTITIONING CO-OPTIMIZATION OF LATCHES AND CLOCK NETWORKS CONCLUSIONS AND FUTURE WORK DIESES SCHRIFTSTUECK WURDE MASCHINELL ERZEUGT. MULTI-OBJECTIVE OPTIMIZATION IN PHYSICAL SYNTHESIS OF INTEGRATED CIRCUITS / A. PAPA, DAVID : 2013 ABSTRACT / INHALTSTEXT 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 TOINTEGRATE CHIP OPTIMIZATIONS IN NOVEL WAYS TO CREATE POWERFUL CIRCUIT TRANSFORMATIONS THAT HELP SATISFY PERFORMANCE REQUIREMENTS. BROADENS THE SCOPE OFPHYSICAL SYNTHESIS OPTIMIZATION TO INCLUDE ACCURATE TRANSFORMATIONS OPERATING BETWEEN THE GLOBAL AND LOCAL SCALES; INTEGRATES GROUPS OF RELATED TRANSFORMATIONS TO BREAK CIRCULAR DEPENDENCIES AND INCREASE THE NUMBER OF CIRCUIT ELEMENTS THAT CAN BE JOINTLY OPTIMIZED TO ESCAPE LOCAL MINIMA; DERIVES SEVERAL MULTI-OBJECTIVE OPTIMIZATIONS FROM FIRST OBSERVATIONS THROUGH COMPLETE ALGORITHMS AND EXPERIMENTS; DESCRIBES INTEGRATED OPTIMIZATION TECHNIQUES THAT ENSURE A GRACEFUL TIMING CLOSURE PROCESS AND IMPACT NEARLY EVERY ASPECT OF A TYPICAL PHYSICAL SYNTHESIS FLOW DIESES SCHRIFTSTUECK WURDE MASCHINELL ERZEUGT.
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spellingShingle Papa, David A.
Multi-objective optimization in physical synthesis of integrated circuits
Lecture notes in electrical engineering
Ingenieurwissenschaften
Engineering
Electronics
Systems engineering
title Multi-objective optimization in physical synthesis of integrated circuits
title_auth Multi-objective optimization in physical synthesis of integrated circuits
title_exact_search Multi-objective optimization in physical synthesis of integrated circuits
title_full Multi-objective optimization in physical synthesis of integrated circuits David A. Papa ; Igor L. Markov
title_fullStr Multi-objective optimization in physical synthesis of integrated circuits David A. Papa ; Igor L. Markov
title_full_unstemmed Multi-objective optimization in physical synthesis of integrated circuits David A. Papa ; Igor L. Markov
title_short Multi-objective optimization in physical synthesis of integrated circuits
title_sort multi objective optimization in physical synthesis of integrated circuits
topic Ingenieurwissenschaften
Engineering
Electronics
Systems engineering
topic_facet Ingenieurwissenschaften
Engineering
Electronics
Systems engineering
url https://doi.org/10.1007/978-1-4614-1356-1
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