This application note covers the design considerations of a system using the performance features of the LogiCORE™ IP Advanced eXtensible Interface (AXI) Interconnect core. The design focuses on high system throughput through the AXI Interconnect core with F MAX and area optimizations in certain portions of the design. The design uses five AXI video direct memory access (VDMA) engines to simultaneously move 10 streams (five transmit video streams and five receive video streams), each in 1920 x 1080p format, 60 Hz refresh rate, and up to 32 data bits per pixel. Each VDMA is driven from a video test pattern generator (TPG) with a video timing controller (VTC) block to set up the necessary video timing signals. Data read by each AXI VDMA is sent to a common on-screen display (OSD) core capable of multiplexing or overlaying multiple video streams to a single output video stream. The output of the OSD core drives the DVI video display interface on the board. Performance monitor blocks are added to capture performance data. All 10 video streams moved by the AXI VDMA blocks are buffered through a shared DDR3 SDRAM memory and are controlled by a MicroBlaze™ processor. The reference system is targeted for the Virtex-6 XC6VLX240TFF1156-1 FPGA on the Xilinx® ML605 Rev D evaluation board
上传时间: 2013-11-23
上传用户:shen_dafa
The Xilinx Zynq-7000 Extensible Processing Platform (EPP) redefines the possibilities for embedded systems, giving system and software architects and developers a flexible platform to launch their new solutions and traditional ASIC and ASSP users an alternative that aligns with today’s programmable imperative. The new class of product elegantly combines an industrystandard ARMprocessor-based system with Xilinx 28nm programmable logic—in a single device. The processor boots first, prior to configuration of the programmable logic. This, along with a streamlined workflow, saves time and effort and lets software developers and hardware designers start development simultaneously.
上传时间: 2013-10-09
上传用户:evil
In this paper, we discuss efficient coding and design styles using verilog. This can beimmensely helpful for any digital designer initiating designs. Here, we address different problems rangingfrom RTL-Gate Level simulation mismatch to race conditions in writing behavioral models. All theseproblems are accompanied by an example to have a better idea, and these can be taken care off if thesecoding guidelines are followed. Discussion of all the techniques is beyond the scope of this paper, however,here we try to cover a few of them.
标签: Efficient Verilog Digital Coding
上传时间: 2013-11-23
上传用户:我干你啊
This document was developed under the Standard Hardware and Reliability Program (SHARP) TechnologyIndependent Representation of Electronic Products (TIREP) project. It is intended for use by VHSIC HardwareDescription Language (VHDL) design engineers and is offered as guidance for the development of VHDL modelswhich are compliant with the VHDL Data Item Description (DID DI-EGDS-80811) and which can be providedto manufacturing engineering personnel for the development of production data and the subsequent productionof hardware. Most VHDL modeling performed to date has been concentrated at either the component level orat the conceptual system level. The assembly and sub-assembly levels have been largely disregarded. Under theSHARP TIREP project, an attempt has been made to help close this gap. The TIREP models are based upon lowcomplexity Standard Electronic Modules (SEM) of the format A configuration. Although these modules are quitesimple, it is felt that the lessons learned offer guidance which can readily be applied to a wide range of assemblytypes and complexities.
上传时间: 2013-11-20
上传用户:pzw421125
本文论述了状态机的verilog编码风格,以及不同编码风格的优缺点,Steve Golson's 1994 paper, "State Machine Design Techniques for Verilog and VHDL" [1], is agreat paper on state machine design using Verilog, VHDL and Synopsys tools. Steve's paper alsooffers in-depth background concerning the origin of specific state machine types.This paper, "State Machine Coding Styles for Synthesis," details additional insights into statemachine design including coding style approaches and a few additional tricks.
标签: Synthesis Machine Coding Styles
上传时间: 2013-10-12
上传用户:sardinescn
本文简单讨论并总结了VHDL、Verilog,System verilog 这三中语言的各自特点和区别As the number of enhancements to variousHardware Description Languages (HDLs) hasincreased over the past year, so too has the complexityof determining which language is best fora particular design. Many designers and organizationsare contemplating whether they shouldswitch from one HDL to another.
标签: Verilog verilog System VHDL
上传时间: 2014-03-03
上传用户:zhtzht
Field Programmable Gate Arrays (FPGAs) are becoming a critical part of every system design. Many vendors offer many different architectures and processes. Which one is right for your design? How do you design one of these so that it works correctly and functions as you expect in your entire system? These are the questions that this paper sets out to answer.
上传时间: 2013-10-22
上传用户:lmq0059
针对嵌入式机器视觉系统向独立化、智能化发展的要求,介绍了一种嵌入式视觉系统--智能相机。基于对智能相机体系结构、组成模块和图像采集、传输和处理技术的分析,对国内外的几款智能相机进行比较。综合技术发展现状,提出基于FPGA+DSP模式的硬件平台,并提出智能相机的发展方向。分析结果表明,该系统设计可以实现脱离PC运行,完成图像获取与分析,并作出相应输出。 Abstract: This paper introduced an embedded vision system-intelligent camera ,which was for embedded machine vision systems to an independent and intelligent development requirements. Intelligent camera architecture, component modules and image acquisition, transmission and processing technology were analyzed. After comparing integrated technology development of several intelligent cameras at home and abroad, the paper proposed the hardware platform based on FPGA+DSP models and made clear direction of development of intelligent cameras. On the analysis of the design, the results indicate that the system can run from the PC independently to complete the image acquisition and analysis and give a corresponding output.
上传时间: 2013-11-14
上传用户:无聊来刷下
Prakash Rashinkar has over 15 years experience in system design and verificationof embedded systems for communication satellites, launch vehicles and spacecraftground systems, high-performance computing, switching, multimedia, and wirelessapplications. Prakash graduated with an MSEE from Regional Engineering College,Warangal, in India. He lead the team that was responsible for delivering themethodologies for SOC verification at Cadence Design Systems. Prakash is anactive member of the VSIA Functional Verification DWG. He is currently Architectin the Vertical Markets and Design Environments Group at Cadence.
上传时间: 2013-11-19
上传用户:m62383408
这个软件需要你的本机操作的。其他机器是算不出来的! 就是说 一台电脑只有一个注册码对应! 这里有个办法: MULTISIM2001安装方法: 一:运行SETUP.EXE安装。在安装时,要重新启动计算机一次。 二:启动后在“开始>程序”中找到STARTUP项,运行后,继续进行安装,安装过程中,第一次要求输入“CODE"码时, 输入“PP-0411-48015-7464-32084"输入后,会提示"VALID SERIAL NUMBER FOR MULTISIM 2001 POWER-PRO." 按确定,又会出现一个“feature code”框,输入“FC-6424-04180-0044-13881”后, 在弹出的对话框中选择“取消”,一路确定即可完成安装。 三:1.运行VERILOG目录内的SETUP安装 2.运行FPGA目录内的SETUP安装 3.将CRACK目录内的LICMGR.DLL拷贝到WINDOWS系统的SYSTEM 目录内 4.并将VERILOG安装目录内的同名文件删除 5.将SILOS.LIC文件拷到VERILOG安装目录内覆盖原文件,并作如下编辑: 6.将“COMPUTER_NAME”替换为你的机器名 7.将“D:\MULTISIM\VERILOG\PATH_TO_SIMUCAD.EXE”替换为你的 实际安装路径。如此你便可以使用VERILOG了。 四:安装之后,运行MULTISIM2001,会要求输入“RELEASE CODE",不用着急, 记下“SERIAL NUMBER"和“SIGNATURE NUMBER", 使用CRACK目录内的注册器“MULTISIM KEYGEN.EXE" 将刚才记下的两个号码分别填入后, 即可得到"RELEASE CODE", 以后就可以正常使用了。 五:接下来运行 database update目录中的几个文件, 进行数据库合并即可。祝你成功!! 六:启动MULTISIM2001时候的注册码 1: PP-0411-48015-7464-32084 2: 37506-86380 3:的三个空格 1975 2711 4842 里面包含了:Multisim2001汉化破解版、Multisim.V10.0.1.汉化破解版图解 解压密码:www.pp51.com
上传时间: 2013-11-16
上传用户:天空说我在