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July 25, 2013
Integrated Architecture Builder -
Ethernet Device Level Ring and Linear
Topologies
For support or to comment, send e-mail to [email protected]
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Integrated Architecture Builder,
Ethernet Device Level Ring and Linear Topologies
Contents
Before you begin ......................................................................................................................................... 3
About This Hands-On Lab ........................................................................................................................ 3
Lab Materials ............................................................................................................................................ 3
Document Conventions ............................................................................................................................ 3
1: Add Ethernet Topologies ....................................................................................................................... 4
2: Set Cabling Defaults and Channel Properties .................................................................................. 14
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Before you begin
About This Hands-On Lab
This lab exercise shows you how to create Ethernet/IP device level ring and linear topologies in
Integrated Architecture Builder. In this lab you will:
Add ring and linear topologies to an EtherNet/IP switch
Create device level ring and linear topologies without a switch
Launch the RAISE Product Configurator Assistant for the PanelView Plus terminals
Use dual-port devices and the ETAP module in the ring and linear topologies you create
Lab Materials
To complete this lab you need only this document and Integrated Architecture Builder v 8.8 or later.
Document Conventions
Throughout this lab manual, we have used the following conventions to help guide you through the lab
materials.
This style or symbol: Indicates:
Words shown in bold italics (e.g.,RSLogix 5000 or OK )
An item or button that you must click on, or a menu name fromwhich you must choose an option or command. This will be an
actual name of an item that you see on your screen or in anexample.
Words shown in italics, enclosedin single quotes (e.g.,'Controller1' )
An item that you must type in the specified field. This is informationthat you must supply based on your application (e.g., a variable).
Note: When you type the text in the field, remember that you donot need to type the quotes; simply type the words that arecontained within them (e.g., Controller1).
Text in a gray
box.
Text that appears in a gray box is supplemental information. Although it is not required in order to complete the lab exercises, itmay help you understand better how IAB works or how to use IABmore efficiently.
Note: If the mouse button is not specified in the text, you should click on the left mouse button.
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1: Add Ethernet Topologies
1. Start a new Workspace in IAB. In the Create New Works pace dialog, selectGener ic Worksp aces > With Network and type in the name ‘ENet_Topologies_Lab’
IAB launches the Add New Network dialog.
2. Create a New Standalone Device Level Ring. In the Add New Network dialog, select EtherNet/IP . In the right window, choose Standalone
EtherNet/IP network and Device Level Ring . Click OK .
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IAB asks you to choose copper or fiber media. Select Copper and click OK .
IAB creates the EtherNet/IP network and adds a tab for Ring001. The infrastructure view shows the
ring icon.
Notice that the Ring001 view is empty and no Ethernet switch has been added.
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3. From the EtherNet/IP device list, go to Network Devices > Distr ibuted I/O > On-Machine
Distr ibut ed I/O > Arm orB lock I/O > Arm orB lock I/O > Ethernet I/O > Digi tal I/O > Inputs and
drag a 1732E-16CFGM12R module to the Ring. IAB adds the module and shows the ring cabling.
Ring closure is represented by the letter indicators labeled ‘a’.
4. Notice the error displayed in the Properties window. (If the message does not appear, click the
Infrastructure View tab, then click the Ring001 tab.)
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Mouse over the error message to see the complete text.
Devices that can serve as the ring supervisor include the 1783-ETAP module and the 1756-EN2TR
adapter.
5. Using the same procedure, drag the following items from the EtherNet/IP device list to the ring:
Network Devices > Programmable Controllers and Communication Modules > ControlLogix >
Communication Modules > 1756-EN2TR
Network Devices > Computers and Operator Interface > Graphic Terminals > 2711P PanelView
Plus 6 > PanelView Plus 6 1500 > 2711PB15C4D8 (first item in the list)
Network Infrastructure > Network Switches > Stratix 8000 > 1783-MS06T
IAB clears the error message. (If the error message still appears, click the Infrastructure View tab,
then click the Ring001 tab.) An ETAP is automatically added for the PanelView terminal and the
Stratix switch because it is needed to connect these items to the ring. A new tab for the switch
appears in the network view.
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6. Click on the Switch001 tab to show the switch view with the ring connected. Right click on the
switch and select Switch Properties .
7. Add an SFP fiber port to the switch -- In the SFP Ports area of the switch properties dialog, select a
1783-SFP100FX (100MBit, multimode fiber) from the First Port dropdown and click OK .
IAB adds the fiber port to the switch.
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8. In the EtherNet/IP device list, go to Network Infrastructure and drag a new linear topology to the
switch.
9. IAB asks you to choose the default media – copper or fiber. Select Fiber and click OK .
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IAB adds the linear topology to the switch and connects it to the fiber port, and adds a tab for the
new topology.
The Linear001 view shows only the switch. This is because no other devices are yet connected in
the topology.
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10. In the EtherNet device list, go to Network Devices > Distr ibu ted I/O > In-Cabinet Distr ibu ted I/O >
Point I /O > Commun icat ion A dapter and drag three 1734-AENT adapters, one at a time, to the
Linear001 topology.
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11. Notice how IAB automatically configures the cables to maintain a fiber topology as much as possible:
The first adapter is added with a 1783-ETAP1F and a copper connection to the device (required).
The second adapter is connected with copper cable at the end of the linear topology.
When the third adapter is added, IAB changes the first ETAP1F to an ETAP2F, changes the
connection to the second adapter to a copper cable connected to an ETAP1F, and adds the third
adapter to the end of the topology with a copper cable.
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12. Next, add two 1756-EN2F modules to the linear topology. In the device list, go to Network Devices
> Programmable Contro l lers and Commu nicat ion Modules > Contro lLogix > Communicat ion
Modules. Hold down the ‘Contro l ’ Key and drag a 1756-EN2F module to the linear topology.
13. Type in 2 for the quantity of units to add and click OK .
IAB adds a pair of ETAP2F modules to handle the required fiber connections.
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2: Set Cabling Defaults and Channel Properties
14. Click the Ring001 tab. Then click the QuickBOM button to display the bill of materials for the ring.Select Consolidated BOM and sort on Catalog #. Notice the cables included are all teal colored, and
2 meters in length. Close the BOM.
15. Notice the toolbar at the top of the ring view
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Through the network view toolbar, you can:
Run the cable wizard to set cabling defaults for each ring or linear topology you create
display the trunk lengths, drop lengths and node numbers of each node on the topology
check connections and packets per second for the network (This function is not covered in thislab. Please refer to the EtherNet/IP lab or the IAB Basics lab.)
Click on Trunk Length, Drop Length , and Node Number in the toolbar. The network view now
shows the selected values.
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16. Click the Run Cable Wizard button in the network toolbar. IAB opens the Cabling Defaults dialog for
Ring001.
17. Notice the three tabs at the top of the dialog.
You can set defaults for:
Trunk Cable – For the ring and linear topologies, the term Trunk Cable means the segment of
cable that connects a device to the device that precedes it on the network (that is, the device on
its left).
Drop Cable – This is the cable that connects the ETAP module to the device, if needed. Devices
that have dual ports and do not need an ETAP module will not use Drop Cable settings.
Trunk Return Cable – For the ring topology, this is the cable that connects the last device in the
ring to the first device. Linear topologies do not have this tab.
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18. In the Default Trunk Cable tab, select Copper in the Port Type dropdown and Cords et > FIC in the
Cable Configu ration dropdown.
19. The Cable Start Connecto r and Cable End Connector dropdowns specify the type of connector to
use at each end of the trunk cable. Set both of these dropdowns to MICRO and notice how the lists
at the bottom of the dialog and for the Field Installable Connector change.
Return both Cable Start Connector and Cable End Connector to RJ45.
20. In the Cable Fil ters for Cord set section, set Jacket Color to Red and Predefined Length to 5 .
Notice how the list at the bottom of the dialog changes.
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21. In the cable list and the FIC list, IAB automatically selects the first item in the list. In the list for Field
Instal led Conn ector Selection , go to the bottom section and under Select RJ45 connecto r for
node end click RJ45 Crimp Conn ector w/Boot to select it.
22. Click on the Default Drop Cable tab. This dialog has the same layout and selections as the Trunk
Cable tab. Again set Jacket Color to Red and Predefined length to 5 . Leave all other selections at
their defaults.
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23. Click the Trunk Return Cable tab. This tab also has similar layout and selections as the other two
tabs. Since there is only one trunk return cable to be selected, the button to apply defaults to all
cables is not included. Set the Predefined length to 25 . Check the box for Lock Select ions for
th is cable . Leave all other selections at their defaults.
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24. Click OK .
The following dialog appears.
Clicking Yes here means that all the trunk cables in the ring will be changed to meet the new default
selections you made, unless the Lock Selection for this cable box is checked. (You can change
even the locked cables by checking the Override Locked Selections box.) Clicking No means that
none of the existing cables in the ring will be changed, but future additions to the ring will have the
newly selected defaults.
25. Click Yes . Now a similar dialog appears for Drop Cables. Again, click Yes .
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The trunk and drop lengths displayed in the ring view have changed to 5m. The return cable length
has changed to 25m.
26. Click the Quick BOM button. In the BOM display, notice that all trunk cables except the trunk returncable are 5m long and that some cables have been changed to red.
Notice also that there are some cables in the BOM that are not red and do not have RJ45 connectors
at both ends.
How did this happen? The cables connected to the ArmorBlock I/O module must have Micro
connectors to match the I/O module, so the default selection is not appropriate. IAB has used a
selection that matches as closely as possible (5 m), the default, but with the required M12 connector.
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27. Close the BOM. In the Ring001 view, right click the PanelView Plus 6 terminal and select Channel
‘.’ properties …
IAB displays the Properties and Cabling dialog. This dialog lets you make specific selections that
apply only to the associated device – in this case the PanelView Plus 6 terminal. Notice the three
tabs for Properties, Trunk Cable, and Drop Cable.
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Make the following selections:
In the Properties tab, change Posi t ion or Port Numb er to 2 .
In the Drop Cable tab, change Jacket Material to Plenum , Jacket Color to Any , and
Predefined Length to 2 .
Click OK to apply the changes.
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IAB moves the PanelView terminal to position 2 in the ring and changes the drop cable length to 2 m,
adjusting the positions of all other devices accordingly.
28. Click the Quick BOM button and notice the newly selected drop cable in the BOM.
This concludes the Ring and Linear Ethernet Topologies lab. You have learned how to add ring and
linear Ethernet topologies to an Ethernet switch or without a switch, and how to set defaults for cable
selections and how to change selections for individual devices.