Low Energy Fpgas Architecture And Design

Author: Varghese George
Editor: Springer Science & Business Media
ISBN: 1461514215
File Size: 41,59 MB
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Low-Energy FPGAs: Architecture and Design is a primary resource for both researchers and practicing engineers in the field of digital circuit design. The book addresses the energy consumption of Field-Programmable Gate Arrays (FPGAs). FPGAs are becoming popular as embedded components in computing platforms. The programmability of the FPGA can be used to customize implementations of functions on an application basis. This leads to performance gains, and enables reuse of expensive silicon. Chapter 1 provides an overview of digital circuit design and FPGAs. Chapter 2 looks at the implication of deep-submicron technology onFPGA power dissipation. Chapter 3 describes the exploration environment to guide and evaluate design decisions. Chapter 4 discusses the architectural optimization process to evaluate the trade-offs between the flexibility of the architecture, and the effect on the performance metrics. Chapter 5 reviews different circuit techniques to reduce the performance overhead of some of the dominant components. Chapter 6 shows methods to configure FPGAs to minimize the programming overhead. Chapter 7 addresses the physical realization of some of the critical components and the final implementation of a specific low-energy FPGA. Chapter 8 compares the prototype array to an equivalent commercial architecture.

Low Energy Field Programmable Gate Array

Author: Varghese George
Editor:
ISBN:
File Size: 58,77 MB
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Low Power Variation Tolerant Design In Nanometer Silicon

Author: Swarup Bhunia
Editor: Springer Science & Business Media
ISBN: 9781441974181
File Size: 58,87 MB
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Design considerations for low-power operations and robustness with respect to variations typically impose contradictory requirements. Low-power design techniques such as voltage scaling, dual-threshold assignment and gate sizing can have large negative impact on parametric yield under process variations. This book focuses on circuit/architectural design techniques for achieving low power operation under parameter variations. We consider both logic and memory design aspects and cover modeling and analysis, as well as design methodology to achieve simultaneously low power and variation tolerance, while minimizing design overhead. This book will discuss current industrial practices and emerging challenges at future technology nodes.

Algorithms And Architectures For Parallel Processing

Author: Meikang Qiu
Editor:
ISBN: 3030602397
File Size: 40,86 MB
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This three-volume set LNCS 12452, 12453, and 12454 constitutes the proceedings of the 20th International Conference on Algorithms and Architectures for Parallel Processing, ICA3PP 2020, in New York City, NY, USA, in October 2020. The total of 142 full papers and 5 short papers included in this proceedings volumes was carefully reviewed and selected from 495 submissions. ICA3PP is covering the many dimensions of parallel algorithms and architectures, encompassing fundamental theoretical approaches, practical experimental projects, and commercial components and systems. As applications of computing systems have permeated in every aspects of daily life, the power of computing system has become increasingly critical. This conference provides a forum for academics and practitioners from countries around the world to exchange ideas for improving the efficiency, performance, reliability, security and interoperability of computing systems and applications. ICA3PP 2020 focus on two broad areas of parallel and distributed computing, i.e. architectures, algorithms and networks, and systems and applications.--

Fpga

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Low Power Design Of Nanometer Fpgas

Author: Hassan Hassan
Editor: Morgan Kaufmann
ISBN: 0080922341
File Size: 10,85 MB
Format: PDF, Mobi
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Low-Power Design of Nanometer FPGAs Architecture and EDA is an invaluable reference for researchers and practicing engineers concerned with power-efficient, FPGA design. State-of-the-art power reduction techniques for FPGAs will be described and compared. These techniques can be applied at the circuit, architecture, and electronic design automation levels to describe both the dynamic and leakage power sources and enable strategies for codesign. Low-power techniques presented at key FPGA design levels for circuits, architectures, and electronic design automation, form critical, "bridge" guidelines for codesign Comprehensive review of leakage-tolerant techniques empowers designers to minimize power dissipation Provides valuable tools for estimating power efficiency/savings of current, low-power FPGA design techniques

Integrated Circuit And System Design

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File Size: 10,10 MB
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Field Programmable Logic And Applications

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File Size: 45,66 MB
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Glsvlsi 05

Author: ACM Special Interest Group on Design Automation
Editor:
ISBN:
File Size: 50,36 MB
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Proceedings Of The Acm Great Lakes Symposium On Vlsi

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File Size: 15,47 MB
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Proceedings

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File Size: 56,27 MB
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Low Power Heterogeneous Reconfigurable Digital Signal Processors With Energy Efficient Interconnect Network

Author: Hui Zhang (Ph.D.)
Editor:
ISBN:
File Size: 56,97 MB
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Asynchronous Fpga

Author: Kevin C. L. Wang
Editor:
ISBN:
File Size: 59,21 MB
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Cases

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File Size: 42,37 MB
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Dissertation Abstracts International

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File Size: 54,91 MB
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Handheld And Ubiquitous Computing

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File Size: 55,57 MB
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Real Time Image Processing Of Magneto Optic Images For The Magneto Optic Eddy Current Imager Moi

Author: Jason Stashonsky Slade
Editor:
ISBN:
File Size: 80,43 MB
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Research And Development

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File Size: 29,15 MB
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Ieee Vlsi Test Symposium

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File Size: 74,96 MB
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Physics And Technology Of Crystalline Oxide Semiconductor Caac Igzo

Author: Shunpei Yamazaki
Editor: John Wiley & Sons
ISBN: 1119247349
File Size: 44,81 MB
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This book describes the application of c-axis aligned crystalline In-Ga-Zn oxide (CAAC-IGZO) technology in large-scale integration (LSI) circuits. The applications include Non-volatile Oxide Semiconductor Random Access Memory (NOSRAM), Dynamic Oxide Semiconductor Random Access Memory (DOSRAM), central processing unit (CPU), field-programmable gate array (FPGA), image sensors, and etc. The book also covers the device physics (e.g., off-state characteristics) of the CAAC-IGZO field effect transistors (FETs) and process technology for a hybrid structure of CAAC-IGZO and Si FETs. It explains an extremely low off-state current technology utilized in the LSI circuits, demonstrating reduced power consumption in LSI prototypes fabricated by the hybrid process. A further two books in the series will describe the fundamentals; and the specific application of CAAC-IGZO to LCD and OLED displays. Key features: • Outlines the physics and characteristics of CAAC-IGZO FETs that contribute to favorable operations of LSI devices. • Explains the application of CAAC-IGZO to LSI devices, highlighting attributes including low off-state current, low power consumption, and excellent charge retention. • Describes the NOSRAM, DOSRAM, CPU, FPGA, image sensors, and etc., referring to prototype chips fabricated by a hybrid process of CAAC-IGZO and Si FETs.