1076 2019 Ieee Standard For Vhdl Language Reference Manual
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Languages and Compilers for Parallel Computing
Author | : Charith Mendis |
Publisher | : Springer Nature |
Total Pages | : 185 |
Release | : 2023-05-09 |
Genre | : Computers |
ISBN | : 303131445X |
This book constitutes the thoroughly refereed post-conference proceedings of the 35th International Workshop on Languages and Compilers for Parallel Computing, LCPC 2022, held in Chicago, IL, USA, in October 2022. The 9 revised full papers were carefully reviewed and selected from 12 submissions. The conference covers all aspects of languages, compiler techniques, run-time environments, and compiler-related performance evaluation for parallel and high-performance computing. The scope of the workshop encompasses foundational results, as well as practical experience reports and bold new ideas for future systems.
Introduction to VLSI Design Flow
Author | : Sneh Saurabh |
Publisher | : Cambridge University Press |
Total Pages | : 715 |
Release | : 2023-06-15 |
Genre | : Technology & Engineering |
ISBN | : 100920081X |
A textbook on the fundamentals of VLSI design flow, covering the various stages of design implementation, verification, and testing.
Accelerating Network Functions Using Reconfigurable Hardware
Author | : Ralf Kundel |
Publisher | : Springer Nature |
Total Pages | : 188 |
Release | : |
Genre | : |
ISBN | : 3031528727 |
Hardware Acceleration of Computational Holography
Author | : Tomoyoshi Shimobaba |
Publisher | : Springer Nature |
Total Pages | : 365 |
Release | : 2023-07-17 |
Genre | : Technology & Engineering |
ISBN | : 981991938X |
This book explains the hardware implementation of computational holography and hardware acceleration techniques, along with a number ofconcrete example source codes that enable fast computation. Computational holography includes computer-based holographictechnologies such as computer-generated hologram and digital holography, for which acceleration of wave-optics computation is highly desirable.This book describes hardware implementations on CPUs (Central Processing Units), GPUs (Graphics Processing Units) and FPGAs (Field ProgrammableGate Arrays). This book is intended for readers involved in holography as well as anyone interested in hardware acceleration.
IEEE Standards Interpretations
Author | : Institute of Electrical and Electronics Engineers |
Publisher | : Institute of Electrical & Electronics Engineers(IEEE) |
Total Pages | : 0 |
Release | : 1992 |
Genre | : Standards, Engineering |
ISBN | : 9781559371810 |
Design for Embedded Image Processing on FPGAs
Author | : Donald G. Bailey |
Publisher | : John Wiley & Sons |
Total Pages | : 501 |
Release | : 2023-08-08 |
Genre | : Technology & Engineering |
ISBN | : 1119819814 |
Design for Embedded Image Processing on FPGAs Bridge the gap between software and hardware with this foundational design reference Field-programmable gate arrays (FPGAs) are integrated circuits designed so that configuration can take place. Circuits of this kind play an integral role in processing images, with FPGAs increasingly embedded in digital cameras and other devices that produce visual data outputs for subsequent realization and compression. These uses of FPGAs require specific design processes designed to mediate smoothly between hardware and processing algorithm. Design for Embedded Image Processing on FPGAs provides a comprehensive overview of these processes and their applications in embedded image processing. Beginning with an overview of image processing and its core principles, this book discusses specific design and computation techniques, with a smooth progression from the foundations of the field to its advanced principles. Readers of the second edition of Design for Embedded Image Processing on FPGAs will also find: Detailed discussion of image processing techniques including point operations, histogram operations, linear transformations, and more New chapters covering Deep Learning algorithms and Image and Video Coding Example applications throughout to ground principles and demonstrate techniques Design for Embedded Image Processing on FPGAs is ideal for engineers and academics working in the field of Image Processing, as well as graduate students studying Embedded Systems Engineering, Image Processing, Digital Design, and related fields.
IEEE Standards Interpretations: IEEE Std 1076-1987, IEEE Standard VHDL Language Reference Manual
Author | : |
Publisher | : |
Total Pages | : |
Release | : |
Genre | : VHDL (Computer hardware description language) |
ISBN | : |
Radiation Tolerant Electronics
Author | : Paul Leroux |
Publisher | : MDPI |
Total Pages | : 210 |
Release | : 2019-08-26 |
Genre | : Technology & Engineering |
ISBN | : 3039212796 |
Research on radiation-tolerant electronics has increased rapidly over the past few years, resulting in many interesting approaches to modeling radiation effects and designing radiation-hardened integrated circuits and embedded systems. This research is strongly driven by the growing need for radiation-hardened electronics for space applications, high-energy physics experiments such as those on the Large Hadron Collider at CERN, and many terrestrial nuclear applications including nuclear energy and nuclear safety. With the progressive scaling of integrated circuit technologies and the growing complexity of electronic systems, their susceptibility to ionizing radiation has raised many exciting challenges, which are expected to drive research in the coming decade. In this book we highlight recent breakthroughs in the study of radiation effects in advanced semiconductor devices, as well as in high-performance analog, mixed signal, RF, and digital integrated circuits. We also focus on advances in embedded radiation hardening in both FPGA and microcontroller systems and apply radiation-hardened embedded systems for cryptography and image processing, targeting space applications.
Advanced VLSI Design and Testability Issues
Author | : Suman Lata Tripathi |
Publisher | : CRC Press |
Total Pages | : 379 |
Release | : 2020-08-18 |
Genre | : Technology & Engineering |
ISBN | : 1000168158 |
This book facilitates the VLSI-interested individuals with not only in-depth knowledge, but also the broad aspects of it by explaining its applications in different fields, including image processing and biomedical. The deep understanding of basic concepts gives you the power to develop a new application aspect, which is very well taken care of in this book by using simple language in explaining the concepts. In the VLSI world, the importance of hardware description languages cannot be ignored, as the designing of such dense and complex circuits is not possible without them. Both Verilog and VHDL languages are used here for designing. The current needs of high-performance integrated circuits (ICs) including low power devices and new emerging materials, which can play a very important role in achieving new functionalities, are the most interesting part of the book. The testing of VLSI circuits becomes more crucial than the designing of the circuits in this nanometer technology era. The role of fault simulation algorithms is very well explained, and its implementation using Verilog is the key aspect of this book. This book is well organized into 20 chapters. Chapter 1 emphasizes on uses of FPGA on various image processing and biomedical applications. Then, the descriptions enlighten the basic understanding of digital design from the perspective of HDL in Chapters 2β5. The performance enhancement with alternate material or geometry for silicon-based FET designs is focused in Chapters 6 and 7. Chapters 8 and 9 describe the study of bimolecular interactions with biosensing FETs. Chapters 10β13 deal with advanced FET structures available in various shapes, materials such as nanowire, HFET, and their comparison in terms of device performance metrics calculation. Chapters 14β18 describe different application-specific VLSI design techniques and challenges for analog and digital circuit designs. Chapter 19 explains the VLSI testability issues with the description of simulation and its categorization into logic and fault simulation for test pattern generation using Verilog HDL. Chapter 20 deals with a secured VLSI design with hardware obfuscation by hiding the ICβs structure and function, which makes it much more difficult to reverse engineer.