This book gives a top-down approach of designing latest digital integrated circuits by covering all topics of integrated digital circuit design within over 800 pages. I can recommend this book for people who already have basic knowledge of IC design and want to get a closer look over the whole topi
Top-Down Digital VLSI Design: From Architectures to Gate-Level Circuits and FPGAs
β Scribed by Hubert Kaeslin
- Publisher
- Morgan Kaufmann
- Year
- 2014
- Tongue
- English
- Leaves
- 578
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
Top-Down VLSI Design: From Architectures to Gate-Level Circuits and FPGAs represents a unique approach to learning digital design. Developed from more than 20 years teaching circuit design, Doctor Kaeslinβs approach follows the natural VLSI design flow and makes circuit design accessible for professionals with a background in systems engineering or digital signal processing. It begins with hardware architecture and promotes a system-level view, first considering the type of intended application and letting that guide your design choices.
Doctor Kaeslin presents modern considerations for handling circuit complexity, throughput, and energy efficiency while preserving functionality. The book focuses on application-specific integrated circuits (ASICs), which along with FPGAs are increasingly used to develop products with applications in telecommunications, IT security, biomedical, automotive, and computer vision industries. Topics include field-programmable logic, algorithms, verification, modeling hardware, synchronous clocking, and more.
- Demonstrates a top-down approach to digital VLSI design.
- Provides a systematic overview of architecture optimization techniques.
- Features a chapter on field-programmable logic devices, their technologies and architectures.
- Includes checklists, hints, and warnings for various design situations.
- Emphasizes design flows that do not overlook important action items and which include alternative options when planning the development of microelectronic circuits.
β¦ Table of Contents
Content:
Front Matter, Pages i-ii
Copyright, Page iv
Preface, Pages xv-xviii
Acknowledgments, Page xix
Chapter 1 - Introduction to Microelectronics, Pages 1-40
Chapter 2 - Field-Programmable Logic, Pages 41-61
Chapter 3 - From Algorithms to Architectures, Pages 63-177
Chapter 4 - Circuit Modeling with Hardware Description Languages, Pages 179-300
Chapter 5 - Functional Verification, Pages 301-355
Chapter 6 - The Case For Synchronous Design, Pages 357-389
Chapter 7 - Clocking of Synchronous Circuits, Pages 391-443
Chapter 8 - Acquisition of Asynchronous Data, Pages 445-472
Appendix A - Elementary Digital Electronics, Pages 473-521
Appendix B - Finite State Machines, Pages 523-542
Symbols and Constants C, Pages 543-551
Bibliography, Pages 553-563
Index, Pages 565-578
β¦ Subjects
Computer Science AI Machine Learning Bioinformatics Simulation Cybernetics Human Interaction Information Theory Robotics Systems Analysis Design Computers Technology Architecture Hardware DIY Logic Software Testing Engineering Programming Reference Test Preparation Almanacs Yearbooks Atlases Maps Careers Catalogs Directories Consumer Guides Dictionaries Thesauruses Encyclopedias Subject English as a Second Language Etiquette Foreign Study Genealogy Quotations Survival Emergency Preparedness Word
π SIMILAR VOLUMES
VLSI circuits are ubiquitous in the modern world, and designing them efficiently is becoming increasingly challenging with the development of ever smaller chips. This practically oriented textbook covers the important aspects of VLSI design using a top-down approach, reflecting the way digital circu
Using a modern, pedagogical approach, this textbook gives students and engineers a comprehensive and rigorous knowledge of CMOS phase-locked loop (PLL) design for a wide range of applications. It features intuitive presentation of theoretical concepts, built up gradually from their simplest form to
Using a modern, pedagogical approach, this textbook gives students and engineers a comprehensive and rigorous knowledge of CMOS phase-locked loop (PLL) design for a wide range of applications. It features intuitive presentation of theoretical concepts, built up gradually from their simplest form to