英语翻译Field-Programmable Gate Arrays (FPGAs) have become a viable method to implement digital circuits due to their increasing gate densities and performance.FPGAs allow for a faster time to market than other circuit implementations because the

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英语翻译Field-Programmable Gate Arrays (FPGAs) have become a viable method to implement digital circuits due to their increasing gate densities and performance.FPGAs allow for a faster time to market than other circuit implementations because the
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英语翻译Field-Programmable Gate Arrays (FPGAs) have become a viable method to implement digital circuits due to their increasing gate densities and performance.FPGAs allow for a faster time to market than other circuit implementations because the
英语翻译
Field-Programmable Gate Arrays (FPGAs) have become a viable method to implement digital circuits due to their increasing gate densities and performance.FPGAs allow for a faster time to market than other circuit implementations because they can easily be configured to implement any circuit.This fast time to market has led to the use of FPGAs in multiple phases of a product design cycle including production use,pre-production use,prototyping,and emulation.The performance of an FPGA is dependent on its architecture including the design of its logic block and its interconnection fabric.Also,the ability to effectively configure the FPGA is highly dependent on computer aided design (CAD) tools that are used to implement the circuit.For this reason FPGA CAD tools are usually developed in synchronization with FPGA architectures.The ability of these CAD tools to meet the designer’s speed and area requirements is critical to the continued success of FPGAs.
Historically,academic FPGA CAD tools have been developed and used to study FPGA design in many research projects.In order to fairly judge the results of new FPGA architectural features and CAD tool algorithms,a tool that is able to model a wide variety of architectures,and achieve a high quality is required.FPGA CAD tools that have been developed in the academic field have previously provided a good foundation to determine the usefulness of various FPGA design architectures.However,the FPGA architecture that is modeled by these tools is not sufficiently complex enough to capture the features of a modern FPGA.

英语翻译Field-Programmable Gate Arrays (FPGAs) have become a viable method to implement digital circuits due to their increasing gate densities and performance.FPGAs allow for a faster time to market than other circuit implementations because the
现场可编程门阵列( FPGA )已成为一个可行的方法来执行数字电路由于其增加门密度和性能. FPGA的允许更快的上市时间比其他电路实现,因为他们可以很容易地进行配置,以执行任何电路.这个快速的上市时间,导致了使用FPGA的多个阶段的产品设计周期包括生产使用,生产前使用,原型和仿真.性能的FPGA实现取决于其结构的设计,包括其逻辑块和互连结构.此外,能够有效配置的FPGA是高度依赖于计算机辅助设计( CAD )工具,被用来执行电路.出于这个原因FPGA的CAD工具通常与发达国家同步的FPGA架构.的能力,这些CAD工具,以满足设计师的速度和面积要求是至关重要的持续成功的FPGA产品.
问题补充:
从历史上看,学术的FPGA设计工具已被开发和利用研究的FPGA设计中的许多研究projects.In以法官公正的结果,新的FPGA的建筑特色和CAD工具的算法,一种工具,能够模拟各种不同的架构,并实现高品质的需要. FPGA的设计工具,已在学界先前已经提供了一个良好的基础,以确定是否有用的各种FPGA设计架构.然而,在FPGA架构,这些工具的模型是不够足以捕捉复杂的特点,一个现代化的FPGA .