Contents Review EtherNet/IP Communication ..........Configuration ....... 1.1 Manual structure ......3 1.2 Typography habits ...... 3 6.1 LED display and setting .... 12 1.3 Symbol ........3 6.2 Integrated ........ 14 1.4 Acronym ........3 PROFINET Communication 1.5 Viewing angle deviation ..... 3 Configuration .......
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Warning Mindman assumes no liability for damages resulting from the use of this product. Mindman reserves the right to change this manual at any time without notice. The information published by Mindman is believed to be accurate and reliable.
Review 1. Review This manual is organized by organization, so the chapters are connected to each other. 1.1 Manual structure 1. Overview section 2. Basic safety information 1.2 Typography habits List: Enumeration is displayed as a list with bullets. • Vocabulary 1 •...
Technical Data 3. Technical Data 3.1 Operating conditions Item Parameter Working temperature -10~+50°C Working humidity 35~85%RH (No condensation) Working atmosphere No corrosive gas Storage temperature -20~+60°C Withstand voltage 500 VAC (1 minute) Insulation resistance 500 VDC, ≥10MΩ Waterproof level IP54 3.2 Electric data Item Parameter...
Dial Code Settings 4. Dial Code Settings 4.1 IP setting The default gateway under different protocols as shown in the table below. Set the last digit of the IPaddress by dialing. Letter of agreement Default gateway EtherNet/IP 192.168.1.1 PROFINET Invalid EtherCAT Invalid CIEFB...
Dial Code Settings 4.2 Protocal switch setting The color of LED_V9 above the DIP switch X100 indicates the current protocol LED_V9 X100 X100 Letter of agreement LED_V9 EtherNet/IP Green PROFINET Orange EtherCAT blue CIEFB white Steps: 1. The equipment is powered off, dial 900; 2.
Communication Module Data 5. Communication Module Data 5.1 Coil definition As shown in the figure, define the upper coil as A1~A16 from left to right; thelower coil as B0…B16 from left to right; ........
Communication Module Data 5.2 Enter diagnostic data EtherNet/IP, PROFINET, EtherCAT protocol Byte Remark US over- UA over- Operating US under- UA under- − − − − voltage voltage temp. voltage voltage Short circuit diagnosis 0 normal 1 short circuit Open circuit diagnosis 0 normal 1 short circuit...
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Communication Module Data CIEFB protocol, RWR area Byte Remark Short circuit diagnosis 0 normal 1 short circuit Open circuit diagnosis 0 normal 1 short circuit CIEFB protocol, RX area Byte Remark US over- UA over- Operating US under- UA under- −...
Communication Module Data 5.3 Output data EtherNet/IP, PROFINET, EtherCAT protocol Byte Remark Coil state 0 disconnected 1 output The reset coil is short-circuited or open. When the fault needs to be restored, first change to 0x5A, and then change to 0xA5 within 500ms −...
EtherNet/IP Communication Configuration 6. EtherNet/IP Communication Configuration EtherNet/IP 6.1 LED display and setting Status Indicator E/IP PN MS/SF NS/BF ACT1 ACT1 L/A IN ACT2 ACT2 L/A OUT ECT CIE Code Display Function Always on Working status: the equipment is operating normally Green Flashing 1HZ Standby: the device is not configured...
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EtherNet/IP Communication Configuration 6.1 LED display and setting EtherNet/IP communication configuration Code Display Function Always on Device (IN) connected to Ethernet Green Shut down The device (IN) is not connected to the Ethernet Always on Device (OUT) connected to Ethernet Green Shut down The device (OUT) is not connected to the Ethernet...
EtherNet/IP Communication Configuration 6.2 Integrated in AB Studio 5000 Here, you will see an example of how to integrate this moduleinto Studio 5000, taking L16CR PLC as an example: 6.2.1. New Construction: Open Studio 5000 > NEW Project > choose 1769-L16ER-BB1B > input filename >...
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EtherNet/IP Communication Configuration 6.2.2. Import EDS configuration file Configuration file CTEU-EIP.eds Pull down TOOLS > select EDS Hardware Installation Tool Continue to the next step to the figure below > click Browser > find the configuration file > next to completion...
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EtherNet/IP Communication Configuration 6.2.3. Add device Right click EtherNet > New Module Search 007F11 > select the search result > Create...
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EtherNet/IP Communication Configuration 6.2.3. Add device Name the new device > set the IP address (same as the dial code) > OK Close the interface...
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EtherNet/IP Communication Configuration 6.2.4. Connect to Ethernet Search for equipment > select PLC-GO Online (note: first confirm the correct valve island IP and protocol type) Download the PLC program (customers can write by themselves according to their needs, this example is empty)
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EtherNet/IP Communication Configuration 6.2.4. View input and output parameters After the device is correctly connected, click Controller Tagsto view the input and output data of the module. There is noabnormality in the input monitoring in the figure below. After 007F11:O.Data[0:5] is set to 16#FF, all the 48 coils willoperate. Data content reference: Chapter 5 Communication Module Data...
PROFINET Communication Configuration 7. PROFINET Communication Configuration PROFINET Status Indicator 7.1 LED display and setting E/IP PN MS/SF NS/BF ACT1 ACT1 L/A IN ACT2 ACT2 L/A OUT ECT CIE Code Display Function Shut down Working fine Flashing 3s 1HZ System error Always on Working fine Shut down...
PROFINET Communication Configuration 7.2 Integrated in SiemensTIA Portal V15 Here, you will see an example of how to integrate this moduleinto TIA Portal V15, taking S7-1200 as an example: 7.2.1. New Construction Create a new project > enter the project name > create Equipment and network >...
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PROFINET Communication Configuration 7.2.2. Import GDS configuration file Configuration file: GSDML-V2.34-FAS-CTEU-PNT-20200808 Option drop-down > manage general station description Option Manage general station description files (GSD(D)) 1 browse GSD file path > complete...
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PROFINET Communication Configuration 7.2.3. Add device Device and network > search for 007F11 under the hardware catalog > drag CTEU-PNT into 4 places Click Unassigned > select PLC.PROFINET interface 1...
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PROFINET Communication Configuration Double-click CTEU-PNT to enter the device overview, configure the output data size in slot 1 according to the number of coils; firstright click to delete the slot 1 configuration, and then drag theparameters to slot 1 Number of coils Preferences 1...8 Output 1 Byte...
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PROFINET Communication Configuration 7.2.4. Connect PROFINET Click to go online > start search > select PLC > go online (note: make sure the protocol type is correct) 7.2.5. View input and output parameters After the device is correctly connected, click the monitoring table to view the input and output data of the module.
EtherCAT Communication Configuration 8. EtherCAT Communication Configuration EtherCAT Status Indicator 8.1 LED display and setting E/IP PN MS/SF NS/BF ACT1 L/A IN L/A IN ACT2 L/A OUT L/A OUT ECT CIE Code Display Function Shut down Device is in INIT state Flashing 2.5HZ Pre-operation: The equipment is in pre-operationstate Green...
EtherCAT Communication Configuration 8.2 Integrated in BECKHOFF TwinCATXAE Here, you will see an example of how to integrate this module into TwinCAT XAE, taking CX5050 PLC as an example: 8.2.1. Add PLC path Open Edit Routes Click Add… ; Add Route Dialog...
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EtherCAT Communication Configuration Broadcast Search > Select PLC(CX-3D0A4) > Add Route Enter the default password "1" > click OK to complete the PLC path addition...
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EtherCAT Communication Configuration 8.2.2. Add configuration file Configuration file: CTEU-ECT V4.6.0 Copy the file to the following path to complete the configuration file addition: C:\TwinCAT\3.1\Config\IO\EtherCAT...
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EtherCAT Communication Configuration 8.2.3. New Construction Open TwinCAT XAE software File > New > Project Select TwinCAT XAE Project > enter name > Confirm Confirm...
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EtherCAT Communication Configuration 8.2.4. Select the target system SYSTEM-Choose Target System > Select PLC(CX-3DB0A4) > OK 8.2.5. Add valve terminal Pull down the IO option > DEVICES-SCAN; for the valve island Select valve terminal Device 3 (EtherCAT) > OK...
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EtherCAT Communication Configuration 8.2.6. Link the PLC program to the valve terminal IO PLC > add new item > Standard PLC Project > input name > add Add new item (W) Define 6 BYTE variables in the PLC program and assign them a value of 255. 255 means that the 8 IO values of the variable connection are all 1.
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EtherCAT Communication Configuration Right click the PCL program project (TEST Project) > Generate Pull down TEST Instance > select the parameter to be associated, right click > Change Link...
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EtherCAT Communication Configuration Select the valve terminal parameters that need to be associated and complete the association The following icon shows that the association has be successful. After downloading the program, the output of the 48 coils is all 1.
CC-Link IEBS Communication Configuration 9. CC-Link IEFB Communication Configuration 9.1 LED display and setting CIEFB Status Indicator E/IP PN MS/SF NS/BF ACT1 L/A IN L/A IN ACT2 L/A OUT ECT CIE Code Display Function Shut down The module is not connected Flashing 2.5HZ The module is not connected Green...
CC-Link IEBS Communication Configuration 9.2 Integrated in mitsubishi FX5U Here, you will see an example of how to integrate this module into GX Works3, taking FX5U PLC as an example: 9.2.1. Adding configuration files Open software (without creating a new project) > Tool > Configuration file management >...
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CC-Link IEBS Communication Configuration 9.2.2. New project file Project > New > Select series and model > Confirm 9.2.3. Basic configuration Parameters > Module parameters > EtherNet port > Set IP according to project requirements...
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CC-Link IEBS Communication Configuration Setup using CC-Link IEF Basic Network configuration settings > Double click for detailed settings > Automatic detection of connected devices The connection shown in the figure below is successful...
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CC-Link IEBS Communication Configuration 9.2.4. Configure the starting address Refresh Settings > Double-click Detailed Settings Specify the software component name and starting address Soft component/buffer storage batch monitoring - Setting D0, D1, D2 (corresponding to RY output data) to 1, all 48 coils can be seen as output...
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