Vliw Microprocessor Hardware Design Of Asic And Fpga Pdf

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vliw microprocessor hardware design of asic and fpga pdf

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This paper presents the design and implementation of configurable fault-tolerance techniques for a configurable VLIW processor.

VLIW Microprocessor Hardware Design: On ASIC and FPGA

Processor design is the design engineering task of creating a processor , a key component of computer hardware. It is a subfield of computer engineering design, development and implementation and electronics engineering fabrication. The design process involves choosing an instruction set and a certain execution paradigm e. VHDL or Verilog. For microprocessor design, this description is then manufactured employing some of the various semiconductor device fabrication processes, resulting in a die which is bonded onto a chip carrier. This chip carrier is then soldered onto, or inserted into a socket on, a printed circuit board PCB. The mode of operation of any processor is the execution of lists of instructions.

It seems that you're in Germany. We have a dedicated site for Germany. Processor Design addresses the design of different types of embedded, firmware-programmable computation engines. Because the design and customization of embedded processors has become a mainstream task in the development of complex SoCs Systems-on-Chip , ASIC and SoC designers must master the integration and development of processor hardware as an integral part of their job. Even contemporary FPGA devices can now accommodate several programmable processors.

Concept and Development of Modular VLIW Processor Based on FPGA

A digital signal processor DSP is a specialized microprocessor chip, with its architecture optimized for the operational needs of digital signal processing. The goal of a DSP is usually to measure, filter or compress continuous real-world analog signals. Most general-purpose microprocessors can also execute digital signal processing algorithms successfully, but may not be able to keep up with such processing continuously in real-time. Also, dedicated DSPs usually have better power efficiency, thus they are more suitable in portable devices such as mobile phones because of power consumption constraints. DSPs often also implement data compression technology, with the discrete cosine transform DCT in particular being a widely used compression technology in DSPs. Digital signal processing algorithms typically require a large number of mathematical operations to be performed quickly and repeatedly on a series of data samples.

A digital signal processor DSP is a specialized microprocessor chip, with its architecture optimized for the operational needs of digital signal processing. The goal of a DSP is usually to measure, filter or compress continuous real-world analog signals. Most general-purpose microprocessors can also execute digital signal processing algorithms successfully, but may not be able to keep up with such processing continuously in real-time. Also, dedicated DSPs usually have better power efficiency, thus they are more suitable in portable devices such as mobile phones because of power consumption constraints. DSPs often also implement data compression technology, with the discrete cosine transform DCT in particular being a widely used compression technology in DSPs. Digital signal processing algorithms typically require a large number of mathematical operations to be performed quickly and repeatedly on a series of data samples. Signals perhaps from audio or video sensors are constantly converted from analog to digital, manipulated digitally, and then converted back to analog form.

Modern field programmable gate array FPGA chips, with their larger memory capacity and reconfigurability potential, are opening new frontiers in rapid prototyping of embedded systems. With VLIW architecture, the processor effectiveness depends on the ability of compilers to provide sufficient ILP instruction-level parallelism from program code. Our goals are to keep the flexibility of processors to shorten the development cycle, and to use the powerful FPGA resources to increase real-time performance. We present a flexible VLIW VHDL processor model with a variable instruction set and a customizable architecture which allows exploiting intrinsic parallelism of a target application using advanced compiler technology and implementing it in an optimal manner on FPGA. Some common algorithms of image processing were tested and validated using the proposed development cycle.


Request PDF | VLIW Microprocessor Hardware Design: On ASIC and FPGA | VLIW Microprocessor Hardware Design offers you a complete guide to VLIW.


Digital signal processor

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Flexible VLIW processor based on FPGA for efficient embedded real-time image processing

The book also contains a wide range of skills-building examples, all worked using Verilog, that equip you with a practical, hands-on tutorial for understanding each step in the VLIW microprocessor design process. Written by Weng Fook Lee, an internationally renowned expert in the field of microprocessor design, this cutting-edge hardware design tool presents unsurpassed coverage of the latests in VLIW microprocessing.

System-On-Chip Computing for ASICs and FPGAs

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Du kanske gillar. Processor Design Jari Nurmi Inbunden. Ladda ned. Spara som favorit. The book also contains a wide range of skills-building examples, all worked using Verilog, that equip you with a practical, hands-on tutorial for understanding each step in the VLIW microprocessor design process.

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Processor design

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