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Electronics --- Computer. Automation --- FPGA (field programmable gate array) --- programmeerbare logica --- digitale schakelingen --- 621.38 --- 681.31 --- VHDL very high speed hardware description language --- booleaanse algebra --- logica --- Digitale techniek --- Programmatielogica --- VHDL --- digitale elektronica --- encoder --- decoder --- flipflop --- fpga (field-programmable gate array) --- Elektronica --- Computerarchitectuur. Informaticahardware
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Electronics --- Computer architecture. Operating systems --- PLD (Programmable Logic Device) --- FPGA (field programmable gate array) --- flipflop --- elektronica --- digitale technieken --- combinatorische logica --- 621.377.6 --- Digitale technieken --- digitale elektronica --- digitale systemen --- digitale geheugens --- Contains audio-visual material
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The skills and guidance needed to master RTL hardware design This book teaches readers how to systematically design efficient, portable, and scalable Register Transfer Level (RTL) digital circuits using the VHDL hardware description language and synthesis software. Focusing on the module-level design, which is composed of functional units, routing circuit, and storage, the book illustrates the relationship between the VHDL constructs and the underlying hardware components, and shows how to develop codes that faithfully reflect the module-level design and can be synthesized into efficient gate-level implementation. Several unique features distinguish the book: * Coding style that shows a clear relationship between VHDL constructs and hardware components * Conceptual diagrams that illustrate the realization of VHDL codes * Emphasis on the code reuse * Practical examples that demonstrate and reinforce design concepts, procedures, and techniques * Two chapters on realizing sequential algorithms in hardware * Two chapters on scalable and parameterized designs and coding * One chapter covering the synchronization and interface between multiple clock domains Although the focus of the book is RTL synthesis, it also examines the synthesis task from the perspective of the overall development process. Readers learn good design practices and guidelines to ensure that an RTL design can accommodate future simulation, verification, and testing needs, and can be easily incorporated into a larger system or reused. Discussion is independent of technology and can be applied to both ASIC and FPGA devices. With a balanced presentation of fundamentals and practical examples, this is an excellent textbook for upper-level undergraduate or graduate courses in advanced digital logic. Engineers who need to make effective use of today's synthesis software and FPGA devices should also refer to this book.
Digital electronics --- VHDL (Computer hardware description language) --- Data processing. --- Very High Speed Integrated Circuits Hardware Description Language (Computer hardware description language) --- VHSIC Hardware Description Language (Computer hardware description language) --- Digital circuits --- Digital techniques (Electronics) --- Computer hardware description languages --- Integrated circuits --- Electronic systems --- Electronics --- Computer simulation --- digitale elektronica --- FPGA (field programmable gate array) --- VHDL (very high speed integrated circuit hardware description language)
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Digital electronics --- Logic circuits --- Electronique numérique --- Circuits logiques --- 681.32 --- Digitale techniek --- Electronique numérique --- PLD (Programmable Logic Device) --- FPGA (field programmable gate array) --- Circuits, Logic --- Interface circuits --- 681.3 --- Computers --- Electronic circuits --- Switching circuits --- Switching theory --- Digital circuits --- Digital techniques (Electronics) --- Electronic systems --- Electronics --- Computerwetenschap --- Circuits --- Contains audio-visual material --- digitale technieken --- elektronica --- 681.3* / / / / / / / / / / / / / / / / / / / / / / / / / / / /
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This book provides the advanced issues of FPGA design as the underlying theme of the work. In practice, an engineer typically needs to be mentored for several years before these principles are appropriately utilized. The topics that will be discussed in this book are essential to designing FPGA's beyond moderate complexity. The goal of the book is to present practical design techniques that are otherwise only available through mentorship and real-world experience.
Field programmable gate arrays --- Design and construction. --- Design and construction --- Logische schakelingen. --- Réseaux logiques programmables par l'utilisateur --- Conception et construction --- fpga (field-programmable gate array) --- FPGA --- VHDL --- Field programmable logic arrays --- FPGAs --- Gate array circuits --- Programmable logic devices --- Field programmable gate arrays - Design and construction
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A new approach to the study of arithmetic circuits In Synthesis of Arithmetic Circuits: FPGA, ASIC and Embedded Systems, the authors take a novel approach of presenting methods and examples for the synthesis of arithmetic circuits that better reflects the needs of today's computer system designers and engineers. Unlike other publications that limit discussion to arithmetic units for general-purpose computers, this text features a practical focus on embedded systems. Following an introductory chapter, the publication is divided into two parts. The first part, Mathematical Aspects and Algorithms, includes mathematical background, number representation, addition and subtraction, multiplication, division, other arithmetic operations, and operations in finite fields. The second part, Synthesis of Arithmetic Circuits, includes hardware platforms, general principles of synthesis, adders and subtractors, multipliers, dividers, and other arithmetic primitives. In addition, the publication distinguishes itself with: * A separate treatment of algorithms and circuits-a more useful presentation for both software and hardware implementations * Complete executable and synthesizable VHDL models available on the book's companion Web site, allowing readers to generate synthesizable descriptions * Proposed FPGA implementation examples, namely synthesizable low-level VHDL models for the Spartan II and Virtex families * Two chapters dedicated to finite field operations This publication is a must-have resource for students in computer science and embedded system designers, engineers, and researchers in the field of hardware and software computer system design and development. An Instructor Support FTP site is available from the Wiley editorial department.
Digitale elektronica --- Logische schakelingen --- fpga (field-programmable gate array) --- asic --- embedded system --- pld (programmable logic devices) --- Digitale elektronica. --- Logische schakelingen. --- Computer arithmetic and logic units --- Digital electronics --- Embedded computer systems --- Embedded systems (Computer systems) --- Digital circuits --- Digital techniques (Electronics) --- Arithmetic and logic units, Computer --- Computer systems --- Architecture Analysis and Design Language --- Electronic systems --- Electronics --- Computer arithmetic --- Electronic digital computers --- Circuits
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VHDL (Computer hardware description language) --- fpga (field-programmable gate array) --- vhdl --- xilinx --- 681.3.066 --- Very High Speed Integrated Circuits Hardware Description Language (Computer hardware description language) --- VHSIC Hardware Description Language (Computer hardware description language) --- Computer hardware description languages --- Integrated circuits --- Computer science--?.066 --- Computer simulation --- Electronics --- Programming --- VHDL (very high speed integrated circuit hardware description language) --- simulaties --- programmeertalen
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