Distance - Automation Integration and Validation (1.2 CEU's)
ARE YOU:
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Looking for professional development but do not have the time to take off from work?
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Looking for refresher course on specific engineering topics and cannot find an intensive course to serve your needs?
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This may be your ideal Professional Development course!
Find out more on how the Professional Development Distance Program may work for you - Click here
Duration:
This course is approximately 3 weeks in duration.
Learning Method:
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The PDDP program is more of a self-guided learning style.
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You are required to read the notes and materials given, complete the follow-up assignments on your own, send in your questions prior to your 1 hour webinar meeting (if required) and be involved in live discussion via the internet.
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Once you have completed the course, you will receive a certificate of completion
The PDDP Distance Education program works as follows:
Once you register for this course, you will be sent a login username and password for our online distance website.
You will receive the course notes in hard copy through the online website, you will receive a set of notes each week covering the course material.
A one hour video-conference session will be conducted by your instructor each week (if required). The objective of this session is to assist in solving the assignments, as well as answer student questions that should be sent to instructor early enough prior to the meeting time. In addition with being able to communicate with the instructor, you will also be able to communicate with other students in the same class and watch their questions being answered as well. (A high speed internet connection is strongly recommended for this feature).
Each set of exercises can be completed and submitted by the indicated date and your completed exercise will be marked online and and returned by your instructor.
To gain the most from your course, it is highly recommended that you participate fully in all discussions and exercises. Please remember that each course has a form of quiz or exercise at the end to test your understanding of the material. You will be informed of these dates when you receive the course schedule.
*Course commencement date is subject to instructor availability.
Dr. Eduard Loiczli
- Overview of the Application Integration Process
- Technical documentation required for integration process
- Application Specific Documentation
- Primary Field data Collection
- Servo Motor Control Sizing, Motion Analyzer
- Servo Control and Robotics requirements
- Servo Motor ; Amplifier; Dynamic Breaking and Power Supply Selection
- Gear Box Optimization
- Examples of different transmission and coupling systems for horizontal and vertical load
- Integrated Architecture Builder
- CLX 5000 Rack and cards selection: I/O Cards; Servo cards; Network cards
- Multi Rack System Integration using IAB
- RS-Logix Architect
- Building Control Net System
- Testing the Control net System Tags and communication performance
- Din Rail; e-Cad RFQ
- Building rail mounted components inside the automation panel using Din Rail
- Generating e-CAD drawing from Rockwell site
- Control Diagram
- Tag Selection for the Control System
- Logic Diagram for the control System
- Equipment Phase Programming-ISO 88 Standard
- Software Planning
- Multitasking Application definition
- Multi program Application with multiple subroutines
- Execution of a Multitasking application with multiple programs and subroutines
- HMI Structure
- Human Interface Logic diagram
- Implementation of HMI Application using different strategy of navigation
- SCADA System Animation
- Zoom; Visibility and Motion definition
- Adjusting Animation resolution when using OPC Server
- Multiple alarm setup
- Local message display
- Remote messaging
- Trending on the HMI Application
- Using Recipe to preset multiple parameters for the control system
- FTAP VIEW Setup
- Basics of the FTAP View setup
- Local and Network Directory setup
- FTAP Console Login
- Setup of a Client server HMI Application
- FTAP-VIEW Programming
- FTAP VIEW connection via OPC server and RS Linx Enterprise
- Face Place Integration
- Using the 3D Library
- Active- X Application
- Using Data Collection in FTAP-VIEW
- Building Run Time Application
- Downloading Run Time Application
- Saving a project using Backup Manager Application
- Building an Alarm Server
- Panel View Plus Structure and programming and data storage
- Panel View Plus Structure
- Data Storage with Panel View Plus
- System Parameters and communications
- Error Handler in CLX 5000
- Power Down Handler
- CPU Error Handler
- Communication Handler
- Program Execution Handler
- Watch Dog
- Mathematical Instruction Error Handler
- Installing Electronic Description Files in RS-LINX and RS-NETWORKS using RS-Linx tools
- Finding the proper EDS File is missing
- Loading the EDS File to the system
- Verification and confirmation of the EDS File on the system
- External CPU memory for Application Backup
- Types of External Memory installation
- Installation procedure for External memory and application backup
- Safety PLC and application, redundancy of the control system
- Typical configuration of a safety PLC
- Setting up a redundancy application
- RS-TEST Stand
- Example of a 3D application simulation
- Automatic Conversion of S7 Siemens Application to Rockwell 5000
- Distributed Control Systems
- Structure of DCS Systems, typical configuration
- Advantage and disadvantage of different configurations
- SCADA and Applications
- Example of a SCADA Application for a Oil Extraction Metering Station
- View Anywhere concept
- Typical structure required to implement View Anywhere concept
- Horizontal Integration
- Setting up FTAP VIEW SE Distributed Edition
- Setting up the HMI server
- Setting up the Client Application
- Creating a Backup Sever for the Distributed Application
- Setting up Security levels for different users
- Client Server Application development example
- Horizontal Integration, Real Time Networking
- Example of network systems: linear; star; duplex,
- Control net parameters and example of implementation, RS-NETWORKS for Control Net
- Example of a Control net Application, physical and setup requirements
- CIP Connection verification using FTC-15
- Scheduling the Control Net Using RS-Networks for Control Net
- Device Net and Applications, RS-NETWORKS for Device Net
- Physical Structure of a Device Net Network
- Programming and validating a Device Net Network
- Generating Device Net Tags
- Scheduling Device Net using RS-NETWORKS for Device Net
- Industrial Ethernet and Applications
- Industrial ETH Concept and implementation
- ETAP Module to adapt conventional ETH to industrial ETH
- STRATIX 8000, implementation and performance
- SERCOS and Applications
- Typical SERCOS Application
- Setting up a SERCOS Application
- Error Handler for SERCOS Communication
- HART communication and applications
- Parameters of HART Network
- Scheduling a HART Network
- Allen Bradley networks: RS-485; DH+; RIO parameters
- Parameters of Allen Bradley Networks and Applications
- Bridge Convertor Example
- Network Software and Hardware Convertors
- Example of a Keep Server Convertor setup
- RS_LOGIX Architect
- Setting up the RS-LOGIX Architect
- Validation of Real Time Communication using RS-LOGIX Architect
- Asset Manager;
- Setting up the Asset manager
- Monitoring the PLC Network changes via Asset manager
- Vertical integration
- RS-SQL Connector
- Connecting PLC systems to the management computer network
- Using OPC to ODBC connection
- Sequel Server
- Setting up the sequel server for data Collection
- Using data Collection in FTAP View
- Sending Parameters to FTAP VIEW
- RS-BIZWARE Historian
- Using Performance History for Complex System
- RS-BIZWARE Performance Monitoring
- Example of BIZWARE Application
- RS-MACC
- RS-MACC Setup and application
- Predictive maintenance using RS-MACC
- RS-Batch and equipment phase editor
- Using 1756-EWB Card; 1756- XCOUPLER; 1756 SEVER for monitoring and data collection
- Integration of Building automation; Fire protection and Security Systems using Rockwell technology
TLNT reserves the right to cancel or change the date or location of its events. TLNT's responsibility will, under no circumstances, exceed the amount of the fee collected. TLNT is not responsible for the purchase of non-refundable travel arrangements or accommodations or the cancellation/change fees associated with cancelling them. Please call to confirm that the course is running before confirming travel arrangements and accommodations. Please click here for complete policies.
We could offer any of our courses at a location of your choice and customized contents according to your needs, please contact us at: [email protected] or click here to submit an online request.
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