6小时学会labview, labview Six Hour Course – Instructor Notes This zip file contains material designed to give students a working knowledge of labview in a 6 hour timeframe. The contents are: Instructor Notes.doc – this document. labviewIntroduction-SixHour.ppt – a PowerPoint presentation containing screenshots and notes on the topics covered by the course. Convert C to F (Ex1).vi – Exercise 1 solution VI. Convert C to F (Ex2).vi – Exercise 2 solution subVI. Thermometer-DAQ (Ex2).vi – Exercise 2 solution VI. Temperature Monitor (Ex3).vi – Exercise 3 solution VI. Thermometer (Ex4).vi – Exercise 4 solution subVI. Convert C to F (Ex4).vi – Exercise 4 solution subVI. Temperature Logger (Ex4).vi – Exercise 4 solution VI. Multiplot Graph (Ex5).vi – Exercise 5 solution VI. Square Root (Ex6).vi – Exercise 6 solution VI. State machIne 1 (Ex7).vi – Exercise 7 solution VI. The slides can be presented in two three hour labs, or six one hour lectures. Depending on the time and resources available in class, you can choose whether to assign the exercises as homework or to be done in class. If you decide to assign the exercises in class, it is best to assign them in order with the presentation. This way the students can create VI’s while the relevant information is still fresh. The notes associated with the exercise slide should be sufficient to guide the students to a solution. The solution files included are one possible solution, but by no means the only solution.
标签: labview
上传时间: 2013-10-13
上传用户:zjwangyichao
The information in this specification is subject to change without notice.Use of this specification for product design requires an executed license agreement from the CompactFlashAssociation.The CompactFlash Association shall not be liable for technical or editorial errors or omissions contained herein; norfor incidental or consequential damages resulting from the furnishing, performance, or use of this material.All parts of the CompactFlash Specification are protected by copyright law and all rights are reserved. Thisdocumentation may not, in whole or in part, be copied, photocopied, reproduced, translated, or reduced to anyelectronic medium or machIne readable form without prior consent, in writing, from the CompactFlash Association.The CFA logo is a trademark of the CompactFlash Association.Product names mentioned herein are for identification purposes only and may be trademarks and/or registeredtrademarks of their respective companies.© 1998-99, CompactFlash Association. All rights reserved.
标签: 技术资料
上传时间: 2013-10-08
上传用户:stewart·
附件是一款PCB阻抗匹配计算工具,点击CITS25.exe直接打开使用,无需安装。附件还带有PCB连板的一些计算方法,连板的排法和PCB联板的设计验验。 PCB设计的經驗建議: 1.一般連板長寬比率為1:1~2.5:1,同時注意For FuJi machIne:a.最大進板尺寸為:450*350mm, 2.針對有金手指的部分,板邊處需作掏空處理,建議不作為連板的部位. 3.連板方向以同一方向為優先,考量對稱防呆,特殊情況另作處理. 4.連板掏空長度超過板長度的1/2時,需加補強邊. 5.陰陽板的設計需作特殊考量. 6.工藝邊需根據實際需要作設計調整,軌道邊一般不少於6mm,實際中需考量板邊零件的排布,軌道設備正常卡壓距離為不少於3mm,及符合實際要求下的連板經濟性. 7.FIDUCIAL MARK或稱光學定位點,一般設計在對角處,為2個或4個,同時MARK點面需平整,無氧化,脫落現象;定位孔設計在板邊,為對稱設計,一般為4個,直徑為3mm,公差為±0.01inch. 8.V-cut深度需根據連板大小及基板板厚考量,角度建議為不少於45°. 9.連板設計的同時,需基於基板的分板方式考量<人工(治具)還是使用分板設備>. 10.使用針孔(郵票孔)聯接:需請考慮斷裂后的毛刺,及是否影響COB工序的Bonding机上的夾具穩定工作,還應考慮是否有無影響插件過軌道,及是否影響裝配組裝.
上传时间: 2014-12-31
上传用户:sunshine1402
附件是一款PCB阻抗匹配计算工具,点击CITS25.exe直接打开使用,无需安装。附件还带有PCB连板的一些计算方法,连板的排法和PCB联板的设计验验。 PCB设计的經驗建議: 1.一般連板長寬比率為1:1~2.5:1,同時注意For FuJi machIne:a.最大進板尺寸為:450*350mm, 2.針對有金手指的部分,板邊處需作掏空處理,建議不作為連板的部位. 3.連板方向以同一方向為優先,考量對稱防呆,特殊情況另作處理. 4.連板掏空長度超過板長度的1/2時,需加補強邊. 5.陰陽板的設計需作特殊考量. 6.工藝邊需根據實際需要作設計調整,軌道邊一般不少於6mm,實際中需考量板邊零件的排布,軌道設備正常卡壓距離為不少於3mm,及符合實際要求下的連板經濟性. 7.FIDUCIAL MARK或稱光學定位點,一般設計在對角處,為2個或4個,同時MARK點面需平整,無氧化,脫落現象;定位孔設計在板邊,為對稱設計,一般為4個,直徑為3mm,公差為±0.01inch. 8.V-cut深度需根據連板大小及基板板厚考量,角度建議為不少於45°. 9.連板設計的同時,需基於基板的分板方式考量<人工(治具)還是使用分板設備>. 10.使用針孔(郵票孔)聯接:需請考慮斷裂后的毛刺,及是否影響COB工序的Bonding机上的夾具穩定工作,還應考慮是否有無影響插件過軌道,及是否影響裝配組裝.
上传时间: 2013-10-15
上传用户:3294322651
This white paper discusses how market trends, the need for increased productivity, and new legislation have accelerated the use of safety systems in industrial machInery. This TÜV-qualified FPGA design methodology is changing the paradigms of safety designs and will greatly reduce development effort, system complexity, and time to market. This allows FPGA users to design their own customized safety controllers and provides a significant competitive advantage over traditional microcontroller or ASIC-based designs. Introduction The basic motivation of deploying functional safety systems is to ensure safe operation as well as safe behavior in cases of failure. Examples of functional safety systems include train brakes, proximity sensors for hazardous areas around machInes such as fast-moving robots, and distributed control systems in process automation equipment such as those used in petrochemical plants. The International Electrotechnical Commission’s standard, IEC 61508: “Functional safety of electrical/electronic/programmable electronic safety-related systems,” is understood as the standard for designing safety systems for electrical, electronic, and programmable electronic (E/E/PE) equipment. This standard was developed in the mid-1980s and has been revised several times to cover the technical advances in various industries. In addition, derivative standards have been developed for specific markets and applications that prescribe the particular requirements on functional safety systems in these industry applications. Example applications include process automation (IEC 61511), machIne automation (IEC 62061), transportation (railway EN 50128), medical (IEC 62304), automotive (ISO 26262), power generation, distribution, and transportation. 图Figure 1. Local Safety System
上传时间: 2013-11-14
上传用户:zoudejile
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
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
RemoteWAP is a Remote Administration Tool for any Operating System that can support the Java Virtual machIne. It has been designed for anyone who wishes to have complete control of there OS anywhere by using a WAP enabled Mobile Phone. RemoteWAP is developed using Java and WML for the client mobile phone front-end pages. RemoteWAP has a Java Swing-GUI to allow for easy control. Future releases will have a Command Line Interface for quick use
标签: Administration RemoteWAP Operating Virtual
上传时间: 2015-02-01
上传用户:exxxds
This project provides a proxy that allows telnet/tcp connections to be made to serial ports on a machIne.
标签: connections provides project allows
上传时间: 2013-11-25
上传用户:jjj0202
编译原理的词法,语法,分析等,还有劳顿的tiny machIne (tm.c)的代码实现,前面还有相应的汇编程序
标签: 编译原理
上传时间: 2013-12-24
上传用户:xz85592677