Design of High-Performance Microprocessor Circuits

Design of High-Performance Microprocessor Circuits
Title Design of High-Performance Microprocessor Circuits PDF eBook
Author Anantha Chandrakasan
Publisher Wiley-IEEE Press
Total Pages 592
Release 2001
Genre Technology & Engineering
ISBN

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The authors present readers with a compelling, one-stop, advanced system perspective on the intrinsic issues of digital system design. This invaluable reference prepares readers to meet the emerging challenges of the device and circuit issues associated with deep submicron technology. It incorporates future trends with practical, contemporary methodologies.

The Anatomy of a High-Performance Microprocessor

The Anatomy of a High-Performance Microprocessor
Title The Anatomy of a High-Performance Microprocessor PDF eBook
Author Bruce Shriver
Publisher Wiley-IEEE Computer Society Press
Total Pages 592
Release 1998-06-18
Genre Computers
ISBN

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This work describes in detail the microarchitecture of a high-performance microprocessor, giving an integrated treatment of platform and systems issues relating to the design and implementation of microprocessor-based systems. This book is a reference for individuals building systems using microprocessors and readers looking for significant insights into fundamental design guidelines that transcend the design, implementation, and use of a specific microprocessor. Practitioners, academics, and technical and product managers alike will benefit from this detailed overview of microprocessors, platforms, and systems for years in the future.

High-Performance Energy-Efficient Microprocessor Design

High-Performance Energy-Efficient Microprocessor Design
Title High-Performance Energy-Efficient Microprocessor Design PDF eBook
Author Vojin G. Oklobdzija
Publisher Springer Science & Business Media
Total Pages 342
Release 2007-04-27
Genre Technology & Engineering
ISBN 0387340475

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Written by the world’s most prominent microprocessor design leaders from industry and academia, this book provides complete coverage of all aspects of complex microprocessor design: technology, power management, clocking, high-performance architecture, design methodologies, memory and I/O design, computer aided design, testing and design for testability. The chapters provide state-of-the-art knowledge while including sufficient tutorial material to bring non-experts up to speed. A useful companion to design engineers working in related areas.

High Performance Integrated Circuit Design

High Performance Integrated Circuit Design
Title High Performance Integrated Circuit Design PDF eBook
Author Emre Salman
Publisher McGraw Hill Professional
Total Pages 738
Release 2012-08-21
Genre Technology & Engineering
ISBN 0071635769

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The latest techniques for designing robust, high performance integrated circuits in nanoscale technologies Focusing on a new technological paradigm, this practical guide describes the interconnect-centric design methodologies that are now the major focus of nanoscale integrated circuits (ICs). High Performance Integrated Circuit Design begins by discussing the dominant role of on-chip interconnects and provides an overview of technology scaling. The book goes on to cover data signaling, power management, synchronization, and substrate-aware design. Specific design constraints and methodologies unique to each type of interconnect are addressed. This comprehensive volume also explains the design of specialized circuits such as tapered buffers and repeaters for data signaling, voltage regulators for power management, and phase-locked loops for synchronization. This is an invaluable resource for students, researchers, and engineers working in the area of high performance ICs. Coverage includes: Technology scaling Interconnect modeling and extraction Signal propagation and delay analysis Interconnect coupling noise Global signaling Power generation Power distribution networks CAD of power networks Techniques to reduce power supply noise Power dissipation Synchronization theory and tradeoffs Synchronous system characteristics On-chip clock generation and distribution Substrate noise in mixed-signal ICs Techniques to reduce substrate noise

Design of High-Performance CMOS Voltage-Controlled Oscillators

Design of High-Performance CMOS Voltage-Controlled Oscillators
Title Design of High-Performance CMOS Voltage-Controlled Oscillators PDF eBook
Author Liang Dai
Publisher Springer Science & Business Media
Total Pages 186
Release 2003
Genre Computers
ISBN 9781402072383

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Design of High-Performance CMOS Voltage-Controlled Oscillators presents a phase noise modeling framework for CMOS ring oscillators. The analysis considers both linear and nonlinear operation. It indicates that fast rail-to-rail switching has to be achieved to minimize phase noise. Additionally, in conventional design the flicker noise in the bias circuit can potentially dominate the phase noise at low offset frequencies. Therefore, for narrow bandwidth PLLs, noise up conversion for the bias circuits should be minimized. We define the effective Q factor (Qeff) for ring oscillators and predict its increase for CMOS processes with smaller feature sizes. Our phase noise analysis is validated via simulation and measurement results. The digital switching noise coupled through the power supply and substrate is usually the dominant source of clock jitter. Improving the supply and substrate noise immunity of a PLL is a challenging job in hostile environments such as a microprocessor chip where millions of digital gates are present.

High Speed CMOS Design Styles

High Speed CMOS Design Styles
Title High Speed CMOS Design Styles PDF eBook
Author Kerry Bernstein
Publisher Springer Science & Business Media
Total Pages 368
Release 2012-12-06
Genre Technology & Engineering
ISBN 1461555736

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High Speed CMOS Design Styles is written for the graduate-level student or practicing engineer who is primarily interested in circuit design. It is intended to provide practical reference, or `horse-sense', to mechanisms typically described with a more academic slant. This book is organized so that it can be used as a textbook or as a reference book. High Speed CMOS Design Styles provides a survey of design styles in use in industry, specifically in the high speed microprocessor design community. Logic circuit structures, I/O and interface, clocking, and timing schemes are reviewed and described. Characteristics, sensitivities and idiosyncrasies of each are highlighted. High Speed CMOS Design Styles also pulls together and explains contributors to performance variability that are associated with process, applications conditions and design. Rules of thumb and practical references are offered. Each of the general circuit families is then analyzed for its sensitivity and response to this variability. High Speed CMOS Design Styles is an excellent source of ideas and a compilation of observations that highlight how different approaches trade off critical parameters in design and process space.

Design for High Performance, Low Power, and Reliable 3D Integrated Circuits

Design for High Performance, Low Power, and Reliable 3D Integrated Circuits
Title Design for High Performance, Low Power, and Reliable 3D Integrated Circuits PDF eBook
Author Sung Kyu Lim
Publisher Springer Science & Business Media
Total Pages 573
Release 2012-11-27
Genre Technology & Engineering
ISBN 1441995420

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This book provides readers with a variety of algorithms and software tools, dedicated to the physical design of through-silicon-via (TSV) based, three-dimensional integrated circuits. It describes numerous “manufacturing-ready” GDSII-level layouts of TSV-based 3D ICs developed with the tools covered in the book. This book will also feature sign-off level analysis of timing, power, signal integrity, and thermal analysis for 3D IC designs. Full details of the related algorithms will be provided so that the readers will be able not only to grasp the core mechanics of the physical design tools, but also to be able to reproduce and improve upon the results themselves. This book will also offer various design-for-manufacturability (DFM), design-for-reliability (DFR), and design-for-testability (DFT) techniques that are considered critical to the physical design process.