FPGA架构:调查与挑战

Ian Kuon, R. Tessier, Jonathan Rose
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引用次数: 557

摘要

近十年来,现场可编程门阵列(fpga)已成为关键的数字电路实现介质之一。创建它们的一个关键部分在于它们的体系结构,它控制着它们的可编程逻辑功能和可编程互连的性质。FPGA架构对最终器件的速度性能、面积效率和功耗的质量有着巨大的影响。本综述回顾了可编程逻辑器件的历史发展,可编程性所基于的基本编程技术,然后描述了从体系结构研究中收集到的基本理解。我们对现代商用FPGA架构的关键要素进行了调查,并展望了该领域的未来趋势。
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FPGA Architecture: Survey and Challenges
Field-Programmable Gate Arrays (FPGAs) have become one of the key digital circuit implementation media over the last decade. A crucial part of their creation lies in their architecture, which governs the nature of their programmable logic functionality and their programmable interconnect. FPGA architecture has a dramatic effect on the quality of the final device's speed performance, area efficiency, and power consumption. This survey reviews the historical development of programmable logic devices, the fundamental programming technologies that the programmability is built on, and then describes the basic understandings gleaned from research on architectures. We include a survey of the key elements of modern commercial FPGA architecture, and look toward future trends in the field.
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Foundations and Trends in Electronic Design Automation
Foundations and Trends in Electronic Design Automation ENGINEERING, ELECTRICAL & ELECTRONIC-
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期刊介绍: Foundations and Trends® in Electronic Design Automation publishes survey and tutorial articles in the following topics: - System Level Design - Behavioral Synthesis - Logic Design - Verification - Test - Physical Design - Circuit Level Design - Reconfigurable Systems - Analog Design Each issue of Foundations and Trends® in Electronic Design Automation comprises a 50-100 page monograph written by research leaders in the field.
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