-
希尔伯特--变换的MATLAB程序.rar
【实例简介】希尔伯特变换,用MATLAB程序实现希尔伯特变换,各种例程
- 2021-11-28 00:36:53下载
- 积分:1
-
QGroundControl代码分析
QGroundControl目前网上资料非常上,有机会接触了四个月,现把这几个月收货整理一下,供大家分享,欢迎下载。里面的内容有自己总结的有网上获取的,方便指导你入门
- 2020-12-09下载
- 积分:1
-
安川MP2000系列编程手册0606(内部资料)
安川MP2000系列编程手册0606(内部资料),不可多的,学习安川运动控制器的最佳资料,有详细样例和注解!涵盖安川全系列运动控制器!本手册的使用方法本手册的使用方法前言机器控制器MP900/WP2000系列是指,采用最新的电子信息技术,将迄今为止以机构为主体的机器实现杋电一休化,大幅度提高其性能、功能,冋时集成了机器的控制技术及使用技巧的控绱器以往的机器是使用通用的电机作为动力源,由电机驱动齿轮、连杆、凸轮等产生各种各样的运动来进行加工和装配等。安川电机凭借数百年的发展历史和技术积累,各种各样的机器正不断面世,并且其性能、功能显著提正因为如此,迎来了个日诸多机器的辉煌但是,由于这些杋器也是由称作机构的硬件构成的,因此缺乏高灵活性。另外,事实表明:由于受机器本身的限制,无法期待其性能、功能有更进一步的提高。另一方面,材料的革新性开发和提高,特是半导体领域的芧命性的性能提高和小型化,对电机以及电机控制技术带米的影响是无可估量的。其影响之一就是变频器、伺服电机及其驱动技术得到了惊人的发展。另外,即使是在驱动伺服电机的运动控制技术领域,基」微电脑的,融合了已普及的以数值控制(NC)为代表的运动控制器(MC)和可编程控制器(PC)的新型控制器正在不断面世采用这些伺服电机和新型控尙器,使以往的以机构为主休的机器实现机电一休化,进一步提高其性能、功能,以及在搭载前所未有的新功能等方面都在进行不断的积极尝试。然而,由于这些新技术采用的配套方法还没有得以充分普及,许多机槭技术人员对机电一体化还是很犹豫,有时甚至敬而远之,这是不可否认的亨实。因此,本手册作为用户指南,主要介绍采用安川电机的伺服驱动器∑系列和其机器控制器Ⅶ2000系列如何来实现机电一体化以及如何实现控制的方法。机器品种繁多,不可能一一介绍但是,由」作为基础的基本控制技术对哪个札器鄱是通用的,通过对其的介绍,无论将其应用」哪个机器上都能仗过去的机器实现机电一体化。木手册正是为此目的编写的参考手册,它与控制器和伺服驱动器的使用说明书不同,主要说明如何能实现各种搾制以及具体的编稈方法本手〗按以卜项目分门别类列出了苫丨梯形图或运动程序的编写示例。同步控制速度控制位置控制转矩控制位置控制以轨迹为主的运动控制各种机器的运动,如果从电机运转角度来看,都可以还原为上述控制。因此,在进行某种机器的控制时,就要弄清楚感应电机和伺服电机需要何种控制,如果知道其控制的具休控制内容(梯形图和运动程序),就可将该控制组合起来。有村一种控制并不够,必须同时使用个同的控制模式。木手册就是木着这样的观点列出了实际的栏序。如果以这些程序作为指导编程的方针,任何人都能编写出某种机器的基本控制程序。使用本手册时的推荐设定本手册示例的梯形图是使用安川电机的MP900/MP2000系列程序编辑软件MPE720Ver.5.22编写的。使用该梯形图时,请使用上述软件的Ver.5.22或史高的版木。另外,请在勾选“使用新的梯形图编辑器”后再使用梯形图编辑器。/7yPLc欄重動作環境棵能指定工P礻一?2一212-步管理7配送他1辛么[列=于F-工使用了新一老使用主寸1作成大几2工使用主OK也卟另外,作为OS,可选择 Windows95/98/T4.0/2000/XP中的任何一个。以MP2000系列控制器为主体的程序实例已发行的本手册2004年8月版本中,针对MP00系列给出了程序的基本框架巾最近面世的MP2000系列可构成新的机器控制虽然两机型的基本使用方法都相同,但在地址和运动命令的使用方法上存在一些差别。MP2000系列全面地强化并改善了MP900系列的功能。籍此札会,决定发行以M2000系列控制器为主体的编程手册另外,对于MP900系列,已发行版(2004年8月版)仍然可以使用,请加以利用。目录本手册的使用方法第1章计算机与机器控制器的连接1.1利用机器控制器进行设计1.2计算机和MP2000系列的通信参数的设定1.3设定MPE720的使用环境---1.4新建文件夹1-91.5进行M2200构成设定1-23第2章设定参数2.1设定伺服驱动器或变频器的规格2-42.2设定编码器的规格2-62.3设定机器的相关参数2-102.4设定控制结构202.5设定设定参数2-222.6设定伺服参数2-23第3章连接硬件3.1连接伺服驱动器(∑-Ⅱ、∑-I系列)3.2连接带 MECHATROL INK-Ⅱ的伺服单元的输入输出(∑-Ⅲ系列)第4章运动控制设计4.1各种控制的基本构成-4-34.2将伺服设定为0N4-64.3自由切换动作模式4.4设计主干梯形图4.5J0G(点动)运行4-134.6STEP(步进)运行4-154.7给出平滑的运行指令4-17第5章速度控制5.1速度控制(基本一直线加减速—)5-25.2设定直线加减速5-95.3速度控制(S形加减速)第6章转矩控制6.1转矩控制(基本:无反馈)6.2转矩控制(有反馈)6-66.3由运动程序改变转矩限制值6-14第7章位置控制7.1位置控制(基础)7-27.2基于运动程序的位置控制7-107.3通过运动命令、用外部信号定位7-217.4用手动脉冲发生器移动--7-257.5滚珠丝杠节距误差的补偿7-327.6用直线伺服驱动器定位7-337.7使用绝对值编码器7-38第8章编写运动程序8.1进行定位8.2通过外部信号进行定位(运动程序)8-583使其直线移动(直线加工)-84使其以圆弧的方式移动(圆弧加工)8-88.5平滑地加工自由曲线(直线移动命令)86坐标变更8-1087施加额定速度比88进行无限长定位-8-1289剪裁加工中保证刀具角度垂直8-138.10由运动程序控制外部设备-8-148.11从外部赋予运动程序中的设定值8-158.12暂时从工件坐标移到机器坐标-8-168.13使数个运动程序同时动作-8-178.14单方向定位回转工作台8-198.15以最小移动量进行回转工作台定位-8-20第9章相位控制9.1相位控制的基本内容9.2控制薄膜生产线(相位控制实例)9-10第10章使用电子凸轮控制机器10.1使用双向型电子凸轮控制机器10-410.2使用单向型电子凸轮控制机器10-1910.3电子凸轮加超前角控制10-3610.4编写凸轮曲线10-40第11章进行原点复归11.1进行原点复归(基本)-11-211.2使用运动程序进行原点复归11-9第12章掌握了梯形图将会带来很大便利12.1设定图中使用的D寄存器的数量-12-212.2全部清除继电器和作业寄存器----12-312.3检测各轴的警报,显示警报12-512.4防止失控(位置控制、相位控制)一12-812.5掌握运动程序的警报内容12912.6通过运动程序进行顺序控制12-11第13章进行调试13.1故障检修的流程13-213.2数据示踪13-613.3更加便利地示踪数据13-1413.4调试运动程序-13-27第14章便利的功能14.1对程序加注释14-214.2打印程序14-414.3检查程序存储器的剩余量14-5V11附录附录1MPE720简明手册附录-2附录2指令一览附录-23附录3梯形图转换作业步骤附录-30附录4 Expression的表示方法附录-31第章第1章计算机与机器控制器的连接1.1利用机器控制器进行设计1-21.2计算机和MP2000系列的通信参数的设定1.3设定MPE720的使用环境1.4新建文件夹1.5进行MP2200构成设定1-23第1章计算机与机器控制器的连接1.1利用机器控制器进行设计本节介绍利用机器控制器MP2000系列设计运动控制系统的步骤。设计分硬件设计和软件设计,这里主要介绍以软件设计为中心的设计流程。设计流程软件设计流程如下所示选择、订购所使用的机器。绘制主电路·控制电路展开连接图。通过MPE720新建文件夹。①模块构成② MECHATR0L|NK构成③输入、输出分配(伺服单元和1/0单元的设定)脱机操作④组定义编写梯形图编写运动程序至CPU的统一传送和伺服单元的设定调试联机操作结束
- 2020-12-05下载
- 积分:1
-
excel背单词-TOEFL-GRE
1.使用说明:使用EXCEL背单词,不是简单的设置方格大小,而是加入按钮和VB代码,支持快捷键、发音、自动播放单词,实现单词背诵结果的统计。2.文档说明:buttonword-Encrypted.xlsm,office2010,版本较低的朋友请忽略次分享。点击按钮-背单词-加密;excel中已经做好了模板,直接可以用,唯一加密的是VB代码,不影响使用。3.加密说明:和研究VB开发没关系的请忽略,采用md5加密方式,密文...很好猜,欢迎破解~可以通过kevinkitty7@163.com与本人讨论。4.单词库:资源中已经包括了两套托福单词和两套GRE单词,支持语音库路径载入,至于语音库,
- 2020-12-12下载
- 积分:1
-
cesium中文文档CHM
【实例简介】Cesium API 文档 中文CHM
- 2021-08-07 00:31:01下载
- 积分:1
-
基于PID及单片机控制的智能恒温箱设计
本温度控制系统为以单片机为核心,实现了对温度实时监测和控制,实现了控制的智能化。本系统采用了PID控制技术,可以使温度保持在要求的一个恒定范围内。制冷方面介绍了半导体热电制冷,半导体制冷独具有诸多特点,应用开发几乎涉及所有制冷领域,尤其在制冷量不大,又要求装置小型化的场合,都具有优越性。它在国防、科研、工农业、气象、医疗卫生等领域得到了广泛应用,可用于仪器仪表、电子元件、药品、疫苗等的冷却、加热和恒温,一些应用型制冷器如石油凝固点测定器,无线电元件恒温器,微机制冷器,红外探测器制冷器,显影液恒温槽,便携式冰箱,旅游汽车冷热两用箱,半导体空调器等。半导体制冷器未来将向大功率与微小型发展,目前,半
- 2020-11-27下载
- 积分:1
-
matlab的mpt工具箱(含voronoi函数)
matlab的最新mpt工具箱里面含有各种关于画voronoi图等的函数)
- 2020-12-11下载
- 积分:1
-
Codejock.Xtreme.Toolkit.Pro.v15.3.1+VS2013补丁
这个是15.3.1 完全破解版 。 目前只支持到VS2010 。 感谢网友share 的VS2013 补丁 。 补丁实际就是一个VS2013 的工程文件 。 具体如何使用,请参照我的CSDN blog.
- 2020-05-29下载
- 积分:1
-
MIPI Alliance Specification for D-PHY
MIPI Alliance Specification for D-PHY Version 1.00.00 – 14 May 2009配合“MIPI Alliance Specification for Camera Serial Interface 2 (CSI-2)“ 一起看。http://download.csdn.net/detail/micro_st/4242724Version1.00.0014-May-2009MIPI Alliance Specification for D-PHY2 The material contained herein is not a license, either expressly or impliedly, to any IPR owned or3 controlled by any of the authors or developers of this material or MIPl. The material contained herein is4 provided on an"as iS basis and to the maximum extent permitted by applicable law, this material is5 provided AS IS AND WITH ALL FAULTS, and the authors and developers of this material and MIP6 hereby disclaim all other warranties and conditions, either express, implied or statutory, including, but not7 limited to, any (ifany)inplied warranties, duties or conditions of merchantability, of fitness for a8 particular purpose, of accuracy or completeness of responses, of results, of workmanlike effort, of lack of9 viruses, and of lack of negligence10 All materials contained herein are protected by copyright laws, and may not be reproduced, republisheddistributed, transmitted, displayed, broadcast or otherwise exploited in any manner without the express12 prior written permission of MIPI Alliance. MIPl, MIPI Alliance and the dotted rainbow arch and all related3 trademarks, tradenames, and other intellectual property are the exclusive property of MIPI Alliance and14 cannot be used without its express prior written permission15 ALSO, THERE IS NO WARRANTY OF CONDITION OF TITLE, QUIET ENJOYMENT, QUIET16 POSSESSION. CORRESPONDENCE TO DESCRIPTION OR NON-INFRINGEMENT WITH17 REGARD TO THIS MATERIAL OR THE CONTENTS OF THIS DOCUMENT.IN NO EVENT WILLI8 ANY AUTHOR OR DEVELOPER OF THIS MATERIAL OR THE CONTENTS OF THIS DOCUMENT9 OR MIPI BE LIABLE TO ANY OTHER PARTY FOR THE COST OF PROCURING SUBSTITUTE20 GOODS OR SERVICES. LOST PROFITS. LOSS OF USE. LOSS OF DATA OR ANY INCIDENTAL.21 CONSEQUENTIAL, DIRECT, INDIRECT, OR SPECIAL DAMAGES WHETHER UNDER22 CONTRACT TORT WARRANTY OR OTHERWISE ARISING IN ANY WAY OUT OF THIS OR23 ANY OTHER AGREEMENT SPECIFICATION OR DOCUMENT RELATING TO THIS MATERIAL24 WHETHER OR NOT SUCH PARTY HAD ADVANCE NOTICE OF THE POSSIBILITY OF SUCH25 DAMAGES26 Without limiting the generality of this Disclaimer stated above, the user of the contents of this Document is27 further notified that MIPI: (a)does not evaluate, test or verify the accuracy, soundness or credibility of the28 contents of this Document;(b)does not monitor or enforce compliance with the contents of this Document29 and (c)does not certify, test, or in any manner investigate products or services or any claims of compliance30 with the contents of this Document. The use or implementation of the contents of this Document may31 involve or require the use of intellectual property rights ("IPR")including(but not limited to) patents32 patent applications, or copyrights owned by one or more parties, whether or not Members of MIPIMIPI33 does not make any search or investigation for IPR, nor does miPi require or request the disclosure of any34 IPR or claims of IPR as respects the contents of this document or otherwise35 Questions pertaining to this document, or the terms or conditions of its provision, should be addressed36 MIPI Alliance. Inc37 c/o IEEE-ISTO38 445 Hoes lane39 Piscataway, NJ0885440 Alin: Board SecretaryCopyright C 2007-2009 MIPl Alliance, Inc. All rights reservedMIPI Alliance Member ConfidentialVersion1.00.0014-May-2009MIPI Alliance Specification for D-PHY42 Contents43 Draft Version 1.00.00-14 May 2009441 Overview1451.2 Purpose.…..,.,.,,.,..472 Terminology…2.1 Definitions162.2 Abbreviations…172.3 Acronyms51 3 D-PHY Introduction523.1 Summary of Phy functionality533.2 Mandatory Functionality················2054 4 Architecture21554.1 Lane modules…564.2 Master and slave2254.3 High Frequency Clock Generation22584.4 Clock lane data lanes and the phy-Protocol interface.224.5 Selectable Lane Options·;····················234.6 Lane Module Types4.6.1 Unidirectional Data Lane…264.6.2 Bi-directional data lanes26634.6.3 Clock lane.274.7 Configurations….7654.7.1 Unidirectional Configurations............664.7.2Bi-Dal Half-Duplex Configurations674.7.3 Mixed Data Lane configurations32Copyright C 2007-2009 MIPl Alliance, Inc. All rights reservedMIPI Alliance Member Confidential111Ⅴ ersion1.00.0014-May-2009MIPI Alliance Specification for D-PHY695.1Transmission Data Structure,………………………∴335.1.1Data unitsa勹5.1.2 Bit order Serialization and De-Serialization33725.1.3 Encoding and decoding735.1.4 Data Buffering,33745.2 Lane States and Line levels755.3 Operating Modes: Control, High-Speed, and Escape5. 4 High-Speed Data Transmission··········;·5. 41 Burst payload data785.4.2 Start-of-Transmission795.4.3End-of-transmission805.4.4 HS Data Transmission burst.365.5 Bi-directional data Lane turnaround5.6 Escape Mode41835.6.1Remote triggers42845.6.2 Low-Power data Transmission43855.6.3 Ultra-Low Power State865.6.4 Escape Mode State Machine43875.7 High-Speed Clock Transmission885. 8 Clock lane Ultra-Low Power State50959 Global Operation Timing Parameters.……5.10 System Power States56915.11 Initialization56925.12 Calibration5.13 Global Operation Flow Diagram57945.14 Data Rate Dependent Parameters(informative)955. 14.1 Parameters Containing Only UI values965. 14.2 Parameters Containing Time and Ul values59Copyright C 2007-2009 MIPl Alliance, Inc. All rights reservedMIPI Alliance Member ConfidentialVersion1.00.0014-May-2009MIPI Alliance Specification for D-PHY5.14.3 Parameters Containing Only Time Values…………5.14.4 Parameters Containing Only Time Values That Are Not Data Rate Dependent6 Fault detection611006.1 Contention detection1016.2 Sequence Error Detection.……611026.2.1 SoT Error621036.2.2 SOT Sync Error1046.2.3 EoT Sync Error1056.2. 4 Escape Mode Entry Command error.1066.2.5 LP Transmission Sync error621076.2.6 False Control error1086.3 Protocol Watchdog Timers(informative)62l096.3.1 HS RX Timeout6.3.2HS TX Timeout………………·················+···:··:·················∴62l116.3.3Escape mode timeout62l126.3. 4 Escape Mode Silence Timeout6.3.5 Turnaround errors114 7 Interconnect and Lane Configuration.641157.1 Lane configuration1167.2 Boundary Conditions.....…647.3 Definitions………64l187.4S- parameter Specifications………….651197.5 Characterization Conditions207.6 nterconnect Specifications………1217.6.1 Differential characteristics1227. 6.2 Common-mode characteristics671237.6.3 Intra-Lane Cross-Coupling1247. 6. 4 Mode-Conversion limitsCopyright C 2007-2009 MIPl Alliance, Inc. All rights reservedMIPI Alliance Member ConfidentialVersion1.00.0014-May-2009MIPI Alliance Specification for D-PHY1257.6.5 Inter-Lane Cross-Coupling671267. 6.6 Inter-Lane static skew1277.7 Driver and receiver Characteristics1287.7.1 Differential Characteristics1297. 7.2 Common-Mode characteristics1307.7.3 Mode-Conversion Limits1317.7.4 Inter-Lane Matching132 8 Electrical Characterislics701338.1 Driver characteristics1348.1.1 High-Speed Transmitter1358.1.2 Low-Power Transmitter1368.2 Receiver Characteristic·…············…·······…8301378.2.1 High-Speed Receiver801388.2.2Low- Power receiver.................….….821398.3 Line contention detection1408.4 Input Characteristics8441 9 High-Speed Data-Clock Timing1429.1 High-Speed Clock Timing861439.2 Forward High-Speed Data Transmission Timing871449.2.1 Data-Clock Timing Specifications1459.3 Reverse High-Speed Data Transmission Timing89146 10 Regulatory Requirements91147 Annex A Logical PHY-Protocol Inter face Description(informative)92148A 1 Signal Description149A 2 High-Speed Transmit from the Master Side150A3 High-Speed receive at the slave Sidel00151A 4 High-Speed Transmit from the Slave side152A.5 High-Speed Receive at the Master SideIOICopyright C 2007-2009 MIPl Alliance, Inc. All rights reservedMIPI Alliance Member ConfidentialVersion1.00.0014-May-2009MIPI Alliance Specification for D-PHY153A6 Low-Power Data Transmission102154A7 Low-Power Data Reception.103155A 8 Turn-around156 Annex B Interconnect Design Guidelines (informative)105157B. 1 Practical distances105158B 2 RF Frequency Bands: Interference.105B3 Transmission Line design160B4 Reference Layer.106161B 5 Printed-Circuit board106162B6 Flex-foils106163B 7 Series resistance106164B 8 Connectors106165 Annex C 8b9b Line Coding for D-PHY(normative)107166C 1 Line Coding Features...·············108167C.1.1Enabled Features for the Protocol108l68C 1. 2 Enabled Features for the Phy108169C2 Coding scheme170C 2.1 8b9b Coding Properties.....108171C 2.2 Data Codes: Basic Code Set……….109C.2.3 Comma Codes: Unique Exception Codes110173C 2.4 Control Codes: Regular Exception Codes…10174C.2.5 Complete Coding Scheme………175C 3 Operation with the D-PhY…11117yload: Data and Control177C.3.2 Details for Hs transmission………112178C.3.3 Details for LP Transmissionl12179C 4 Error Signal180C5 Extended PplCopyright C 2007-2009 MIPl Alliance, Inc. All rights reservedMIPI Alliance Member ConfidentialⅤ ersion1.00.0014-May-2009MIPI Alliance Specification for D-PHYl81C.6 Complete Code Set.….….l15182Copyright C 2007-2009 MIPl Alliance, Inc. All rights reservedMIPI Alliance Member Confidentialv111Version1.00.0014-May-2009MIPI Alliance Specification for D-PHYl83Figures184 Figure 1 Universal Lane Module functions21185 Figure2 Two Data Lane PHY Configuration.…………23186 Figure 3 Option Selection Flow Graph4187 Figure 4 Universal Lane Module Architecture25188 Figure 5 Lane Symbol Macros and Symbols Legend189 Figure 6 All Possible Data Lane Types and a basic Unidirectional Clock lane190 Figure 7 Unidirectional Single Data Lane Configuration30191 Figure 8 Unidirectional Multiple Data Lane Configuration without LPDT∴.30192 Figure 9 Two Directions Using Two Independent Unidirectional PHYs without LPDT.........31193 Figure 10 Bidirectional Single Data Lane Configuration31194 Figure 1l Bi-directional Multiple Data Lane Configuration......32195 Figure 12 Mixed Type multiple data Lane Configuration32196 Figure 13 Line level34197 Figure 14 High-Speed Data Transmission in Bursts36198 Figure 15 TX and rX State Machines for High-Speed Data Transmission37Figure16 Turnaround Procedure.……39200 Figure 17 Turnaround State Machine40201 Figure 18 Trigger-Reset Command in Escape Mode202 Figure 19 Two Data Byte Low-Power Data Transmission Example203 Figure 20 Escape Mode State Machine204 Figure2 I Switching the Clock Lane between Clock Transmission and low- Power mode………….47205 Figure 22 High-Speed Clock Transmission State Machine49206 Figure 23 Clock Lane Ultra-Low Power State State Machine········+·+···+·4···207 Figure 24 Data Lane Module State Diagram57208 Figure 25 Clock Lane Module state diagram58209 Figure 26 Point-to-point InterconnectCopyright C 2007-2009 MIPl Alliance, Inc. All rights reservedMIPI Alliance Member Confidential
- 2020-12-08下载
- 积分:1
-
cab全套打包工具系列
包含ActvxDoc.exe cabarc.Exe cert2spc.Exe certmgr.Exe chktrust.Exe makecat.Exe makecert.exe makectl.Exe signcode.exe
- 2021-05-06下载
- 积分:1