中文版详情浏览:http://www.elecfans.com/emb/fpga/20130715324029.html Xilinx UltraScale:The Next-Generation Architecture for Your Next-Generation Architecture The Xilinx® UltraScale™ architecture delivers unprecedented levels of integration and capability with ASIC-class system- level performance for the most demanding applications. The UltraScale architecture is the industr y's f irst application of leading-edge ASIC architectural enhancements in an All Programmable architecture that scales from 20 nm planar through 16 nm FinFET technologies and beyond, in addition to scaling from monolithic through 3D ICs. Through analytical co-optimization with the X ilinx V ivado® Design Suite, the UltraScale architecture provides massive routing capacity while intelligently resolving typical bottlenecks in ways never before possible. This design synergy achieves greater than 90% utilization with no performance degradation. Some of the UltraScale architecture breakthroughs include: • Strategic placement (virtually anywhere on the die) of ASIC-like system clocks, reducing clock skew by up to 50% • Latency-producing pipelining is virtually unnecessary in systems with massively parallel bus architecture, increasing system speed and capability • Potential timing-closure problems and interconnect bottlenecks are eliminated, even in systems requiring 90% or more resource utilization • 3D IC integration makes it possible to build larger devices one process generation ahead of the current industr y standard • Greatly increased system performance, including multi-gigabit serial transceivers, I/O, and memor y bandwidth is available within even smaller system power budgets • Greatly enhanced DSP and packet handling The Xilinx UltraScale architecture opens up whole new dimensions for designers of ultra-high-capacity solutions.
标签: UltraScale Xilinx 架构
上传时间: 2013-11-21
上传用户:wxqman
面向Eclips的Nios II软件构建工具手册 The Nios® II Software Build Tools (SBT) for Eclipse™ is a set of plugins based on the Eclipse™ framework and the Eclipse C/C++ development toolkit (CDT) plugins. The Nios II SBT for Eclipse provides a consistent development platform that works for all Nios II embedded processor systems. You can accomplish all Nios II software development tasks within Eclipse, including creating, editing, building, running, debugging, and profiling programs.
上传时间: 2013-11-02
上传用户:瓦力瓦力hong
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
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
One of the strengths of Synplify is the Finite State Machine compiler. This is a powerfulfeature that not only has the ability to automatically detect state machines in the sourcecode, and implement them with either sequential, gray, or one-hot encoding. But alsoperform a reachability analysis to determine all the states that could possibly bereached, and optimize away all states and transition logic that can not be reached.Thus, producing a highly optimal final implementation of the state machine.
标签: Synplicity Machine Verilog Design
上传时间: 2013-10-20
上传用户:苍山观海
Finite state machines are widely used in digital circuit designs. Generally, when designing a state machine using an HDL, the synthesis tools will optimize away all states that cannot be reached and generate a highly optimized circuit. Sometimes, however, the optimization is not acceptable. For example, if the circuit powers up in an invalid state, or the circuit is in an extreme working environment and a glitch sends it into an undesired state, the circuit may never get back to its normal operating condition.
标签: Creating Machines Mentor State
上传时间: 2013-11-02
上传用户:xauthu
ZBT SRAM控制器参考设计,xilinx提供VHDL代码 Description: Contains the following files readme.txt appnote_zbtp.vhd appnote_zbtf.vhd appnote_zbt.ucf Platform: All Installation/Use: Use 'unzip' on the .zip file and 'gunzip' followed by 'tar -xvf' on the .tar.gz file.
上传时间: 2013-10-25
上传用户:peterli123456
ref-sdr-sdram-vhdl代码 SDR SDRAM Controller v1.1 readme.txt This readme file for the SDR SDRAM Controller includes information that was not incorporated into the SDR SDRAM Controller White Paper v1.1. The PLL is targeted at APEX(TM) devices. Please regenerate for your chosen architecture. Last updated September, 2002 Copyright ?2002 Altera Corporation. All rights reserved.
上传时间: 2013-10-23
上传用户:半熟1994
Silicon Motion, Inc. has made best efforts to ensure that the information contained in this document is accurate andreliable. However, the information is subject to change without notice. No responsibility is assumed by SiliconMotion, Inc. for the use of this information, nor for infringements of patents or other rights of third parties.Copyright NoticeCopyright 2002, Silicon Motion, Inc. All rights reserved. No part of this publication may be reproduced, photocopied,or transmitted in any form, without the prior written consent of Silicon Motion, Inc. Silicon Motion, Inc. reserves theright to make changes to the product specification without reservation and without notice to our users
标签: GUIDELINES LAYOUT 320 PCB
上传时间: 2013-10-10
上传用户:manga135
PCB设计问题集锦 问:PCB图中各种字符往往容易叠加在一起,或者相距很近,当板子布得很密时,情况更加严重。当我用Verify Design进行检查时,会产生错误,但这种错误可以忽略。往往这种错误很多,有几百个,将其他更重要的错误淹没了,如何使Verify Design会略掉这种错误,或者在众多的错误中快速找到重要的错误。 答:可以在颜色显示中将文字去掉,不显示后再检查;并记录错误数目。但一定要检查是否真正属于不需要的文字。 问: What’s mean of below warning:(6230,8330 L1) Latium Rule not checked: COMPONENT U26 component rule.答:这是有关制造方面的一个检查,您没有相关设定,所以可以不检查。 问: 怎样导出jop文件?答:应该是JOB文件吧?低版本的powerPCB与PADS使用JOB文件。现在只能输出ASC文件,方法如下STEP:FILE/EXPORT/选择一个asc名称/选择Select ALL/在Format下选择合适的版本/在Unit下选Current比较好/点击OK/完成然后在低版本的powerPCB与PADS产品中Import保存的ASC文件,再保存为JOB文件。 问: 怎样导入reu文件?答:在ECO与Design 工具盒中都可以进行,分别打开ECO与Design 工具盒,点击右边第2个图标就可以。 问: 为什么我在pad stacks中再设一个via:1(如附件)和默认的standardvi(如附件)在布线时V选择1,怎么布线时按add via不能添加进去这是怎么回事,因为有时要使用两种不同的过孔。答:PowerPCB中有多个VIA时需要在Design Rule下根据信号分别设置VIA的使用条件,如电源类只能用Standard VIA等等,这样操作时就比较方便。详细设置方法在PowerPCB软件通中有介绍。 问:为什么我把On-line DRC设置为prevent..移动元时就会弹出(图2),而你们教程中也是这样设置怎么不会呢?答:首先这不是错误,出现的原因是在数据中没有BOARD OUTLINE.您可以设置一个,但是不使用它作为CAM输出数据. 问:我用ctrl+c复制线时怎设置原点进行复制,ctrl+v粘帖时总是以最下面一点和最左边那一点为原点 答: 复制布线时与上面的MOVE MODE设置没有任何关系,需要在右键菜单中选择,这在PowerPCB软件通教程中有专门介绍. 问:用(图4)进行修改线时拉起时怎总是往左边拉起(图5),不知有什么办法可以轻易想拉起左就左,右就右。答: 具体条件不明,请检查一下您的DESIGN GRID,是否太大了. 问: 好不容易拉起右边但是用(图6)修改线怎么改怎么下面都会有一条不能和在一起,而你教程里都会好好的(图8)答:这可能还是与您的GRID 设置有关,不过没有问题,您可以将不需要的那段线删除.最重要的是需要找到布线的感觉,每个软件都不相同,所以需要多练习。 问: 尊敬的老师:您好!这个图已经画好了,但我只对(如图1)一种的完全间距进行检查,怎么错误就那么多,不知怎么改进。请老师指点。这个图在附件中请老师帮看一下,如果还有什么问题请指出来,本人在改进。谢!!!!!答:请注意您的DRC SETUP窗口下的设置是错误的,现在选中的SAME NET是对相同NET进行检查,应该选择NET TO ALL.而不是SAME NET有关各项参数的含义请仔细阅读第5部教程. 问: U101元件已建好,但元件框的拐角处不知是否正确,请帮忙CHECK 答:元件框等可以通过修改编辑来完成。问: U102和U103元件没建完全,在自动建元件参数中有几个不明白:如:SOIC--》silk screen栏下spacing from pin与outdent from first pin对应U102和U103元件应写什么数值,还有这两个元件SILK怎么自动设置,以及SILK内有个圆圈怎么才能画得与该元件参数一致。 答:Spacing from pin指从PIN到SILK的Y方向的距离,outdent from first pin是第一PIN与SILK端点间的距离.请根据元件资料自己计算。
上传时间: 2014-01-03
上传用户:Divine