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CVIC II - CVIL II - CVIR II - MULTICVIL II - Memory M apping -
Manual
N° 6159932730-06
©
© Copyright 2011 , St Herblain France All rights reserved. Any unauthorized use or copying of the contents or part thereof is prohibited. This applies in particular to trademarks, model denominations, part numbers and drawings. Use only authorized parts. Any damage or malfunction caused by the use of unauthorised parts is not covered by Warranty or Product Liability.
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TABLE OF CONTENTS
1. CONTROLLERS TYPE ....................................................................................................................................................... 5
2. CVIC II & CVIL II CONTROLLERS ................................................................................................................................ 6
2.1. CVIX II - MEMORY MAPPING TABLE............................................................................................................................... 6
2.2. CVIX II - INPUTS & OUTPUTS .......................................................................................................................................... 7
2.2.1. Inputs & Outputs assignment ................................................................................................................................. 7
2.2.2. Inputs Descriptions .................................................................................................................................................. 7
2.2.3. Outputs Descriptions ............................................................................................................................................... 8
2.3. CVIX II - CYCLE SELECTION ............................................................................................................................................ 9
2.3.1. Cycle number selection ............................................................................................................................................. 9
2.3.2. Selected Cycle (Cycle Echo) ...................................................................................................................................... 9
2.4. CVIX II - TIGHTENING RESULTS .................................................................................................................................... 10
2.5. CVIX II CONTROLLERS - PLC CONFIGURATION ........................................................................................................... 11
2.5.1. Standard Memory Mapping & PLC Configuration ............................................................................................... 11
2.5.2. Profibus DP ............................................................................................................................................................ 12
2.5.2.1. CVIxII Configuration .................................................................................................................................................................. 12
2.5.2.2. Simatic Step 7 Configuration ..................................................................................................................................................... 12
2.5.3. Profinet IO .............................................................................................................................................................. 13
2.5.3.1. CVIxII Configuration .................................................................................................................................................................. 13
2.5.3.2. Simatic Step 7 Configuration ..................................................................................................................................................... 13
2.5.4. Device Net .............................................................................................................................................................. 15
2.5.4.1. CVIxII Configuration .................................................................................................................................................................. 15
2.5.4.2. RSNetWorx Configuration......................................................................................................................................................... 15
2.5.5. Ethernet IP ............................................................................................................................................................. 16
2.5.5.1. CVIxII Configuration .................................................................................................................................................................. 16
2.5.5.2. RSLogix 5000 Configuration ...................................................................................................................................................... 16
2.5.5.3. RSNetWorx Configuration......................................................................................................................................................... 16
2.5.6. CC-Link .................................................................................................................................................................. 17
2.5.6.1. CVIxII Configuration .................................................................................................................................................................. 17
2.5.6.2. MELSOFT Configuration ........................................................................................................................................................... 17
3. MULTICVIL II CONTROLLERS .................................................................................................................................... 18
3.1. MULTICVIL II - MEMORY MAPPING TABLE ................................................................................................................. 18
3.2. MULTICVIL II - INPUTS & OUTPUTS ............................................................................................................................. 19
3.2.1. Inputs & Outputs definition .................................................................................................................................. 19
3.2.2. Inputs Descriptions ................................................................................................................................................ 19
3.2.3. Outputs Descriptions ............................................................................................................................................. 20
3.3. MULTICVIL II - CYCLE SELECTION ............................................................................................................................... 21
3.3.1. Cycle number selection ........................................................................................................................................... 21
3.3.2. Selected Cycle (Cycle Echo) .................................................................................................................................... 21
3.4. MULTICVIL II - LIST OF OK & NOK SPINDLES REPORT .............................................................................................. 22
3.5. MULTICVIL II - SPINDLES VALIDATION ....................................................................................................................... 23
3.6. MULTICVIL II - PLC CONFIGURATION ......................................................................................................................... 24
3.6.1. Standard Memory Mapping & PLC Configuration ............................................................................................... 24
3.6.2. Profibus DP ............................................................................................................................................................ 25
3.6.2.1. MultiCVIL II Configuration ....................................................................................................................................................... 25
3.6.2.2. Simatic Step 7 Configuration ..................................................................................................................................................... 25
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3.6.3. Profinet IO .............................................................................................................................................................. 26
3.6.3.1. MultiCVIL II Configuration ....................................................................................................................................................... 26
3.6.3.2. Simatic Step 7 Configuration ..................................................................................................................................................... 26
3.6.4. Device Net .............................................................................................................................................................. 27
3.6.4.1. MultiCVIL II Configuration ....................................................................................................................................................... 27
3.6.4.2. RSNetWorx Configuration......................................................................................................................................................... 27
3.6.5. Ethernet IP ............................................................................................................................................................. 28
3.6.5.1. MultiCVIL II Configuration ....................................................................................................................................................... 28
3.6.5.2. RSLogix 5000 Configuration ...................................................................................................................................................... 28
3.6.5.3. RSNetWorx Configuration......................................................................................................................................................... 28
4. APPENDIX .......................................................................................................................................................................... 29
4.1. CVIX II - PLUGGED MODULE STATUS ............................................................................................................................ 29
4.2. MODULES DETAILS ........................................................................................................................................................ 30
4.2.1. Profibus DP Module ............................................................................................................................................... 30
4.2.2. Profinet IO Module ................................................................................................................................................ 31
4.2.3. Profinet IO 2 ports Module .................................................................................................................................... 32
4.2.4. Device Net Module ................................................................................................................................................. 33
4.2.5. Ethernet IP Module ................................................................................................................................................ 34
4.2.6. Ethernet IP 2 ports Module .................................................................................................................................... 35
4.2.7. CC-Link Module ..................................................................................................................................................... 36
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1. Controllers Type
CVIC II
One tool can be plugged to the controller ( ECx / MCx ). CVIR II
One tool can be plugged to the controller ( ERSx ). CVIL II
One tool can be plugged to the controller ( ERx / EMEx ). MULTICVIL II
The CPU (master) of the MULTICVIL controls the slaves CVIL II. From 2 to 32 spindles can be plugged to the system (EMEx). The spindles run in synchronous mode.
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2. CVIC II & CVIL II Controllers
2.1. CVIx II - Memory Mapping Table
CVIxII Memory Address Data
Description Access
(R/W)
Size
(bytes)
Value
Type In Bytes In Words
Hexa. Deci. Hexa. Deci.
CVIxII - Data Outputs => PLC Inputs
0x0000 0000 0x0000 0000 CVIx II Outputs R 1 Bool
0x0001 0001 0x0000 0000 Selected Cycle (Cycle Echo) R 1 Integer
0x0002 0002 0x0001 0001 Final Torque Result R 4 Float
0x0006 0006 0x0003 0003 Torque Trend R 2 Integer
0x0008 0008 0x0004 0004 Final Angle Result R 4 Float
0x000C 0012 0x0006 0006 Angle Trend R 2 Integer
CVIxII - Data Inputs <= PLC Outputs
0x0000 0000 0x0000 0000 CVIx II Inputs W 1 Bool
0x0001 0001 0x0000 0000 Cycle Number Selection W 1 Integer
CVIxII PLC
Fieldbus
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2.2. CVIx II - Inputs & Outputs
CVIxII Memory Address Data
Description Access
(R/W)
Size
(bytes)
Value
Type In Bytes In Words
Hexa. Deci. Hexa. Deci.
CVIx II - Data Outputs => PLC Inputs
0x0000 0000 0x0000 0000 CVIx II Outputs R 1 Bool
--- --- --- --- --- --- --- ---
CVIx II - Data Inputs <= PLC Outputs
0x0000 0000 0x0000 0000 CVIx II Inputs W 1 Bool
--- --- --- --- --- --- --- ---
2.2.1. Inputs & Outputs assignment
The inputs & outputs mapping depends on Station I/O configuration. You can configure Inputs and Outputs to match your requirements. NOTE: For CVIL II controllers, the input 5 is always linked to Quick stop 2.
2.2.2. Inputs Descriptions Cycle 1/2/4/8: Binary coded 1-2-4-8 cycle selection.
The Cycle number selection 00 to 15 is only taken into consideration by the CVIx II if the “Source of cycle number” is set to “I/O” in the station parameters.
Start Cycle: The tool runs as long as the signal is on “1”. When the signal drops, the cycle stops. Direction: Activates the untightening direction mode of the spindle at the “Start cycle”. Reset: Reset station tightening reports, all cycles’ counters, saved barcode. Error Acknowledge: When the error acknowledgement option is activated in the station parameters, the start of
the spindle is not authorized after a reject report. The “error acknowledgement” input must be validated (pulse) to let the spindle start again. By activating the error acknowledge input, the reject report output is reseted.
Spindle Validation: Allows, or not, the start cycle of the spindle(s).
The spindle validation input is only taken into consideration by the CVIxII if the spindle validation source is set in the station parameters.
Spindle Val Rev: Untightening validation is only controlled when “Spindle validation on reverse” option is activated in the station parameters.
Synchro IN: Used in conjunction with Synchro OUT output to synchronise the tightening cycle phases of
several controllers (synchro waiting phase).
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External Stop: When the external stop option is set in a cycle rundown speed, final speed or run reverse
phase, the controller will stops the current phase and shifts to the next one as soon as the signal shifts to “1”.
2.2.3. Outputs Descriptions Cycle Echo 1/2/4/8: Binary coded 1-2-4-8 selected cycle echo. The cycle echo is sent back only if it corresponds
to a programmed cycle in the station. Otherwise it is at “0”. Accept Report: Active when the cycle is over and the tightening cycle report is OK. Reject Report: Active when the cycle is over and the tightening cycle report is NOK. Number of cycles OK: This signal switches to “1” when the number of cycles run with an Accept Report is equal to
the programmed number of cycles OK in the selected cycle parameters. In Cycle: Response to the Start Cycle request. Drops to “0” at the end of a tightening or untightening. Ready: This signal is at “1” when the controller is in working order. Run reverse enabled: A spindle Reverse validation has been activated. Synchro OUT: Used in conjunction with Synchro IN input to synchronise the tightening cycle phases of
several controllers (synchro waiting phase).
For detailed information, please read the CVIC II / CVIL II / CVIR II controller manual.
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2.3. CVIx II - Cycle Selection
CVIxII Memory Address Data
Description Access
(R/W)
Size
(bytes)
Value
Type In Bytes In Words
Hexa. Deci. Hexa. Deci.
CVIx II - Data Outputs => PLC Inputs
--- --- --- --- --- --- --- ---
0x0001 0001 0x0000 0000 Selected Cycle (Cycle Echo) R 1 Integer
--- --- --- --- --- --- --- ---
CVIx II - Data Inputs <= PLC Outputs
--- --- --- --- --- --- --- ---
0x0001 0001 0x0000 0000 Cycle Number Selection W 1 Integer
--- --- --- --- --- --- --- ---
2.3.1. Cycle number selection
The Cycle number selection is only taken into consideration by the CVIx II if the “Source of cycle number” is set to “PLC” in the controller station parameters. (0 = no cycle selection).
2.3.2. Selected Cycle (Cycle Echo) This byte indicates the number of the selected cycle in the CVIx II controller (0 = no cycle selected).
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2.4. CVIx II - Tightening Results
CVIxII Memory Address Data
Description Access
(R/W)
Size
(bytes)
Value
Type In Bytes In Words
Hexa. Deci. Hexa. Deci.
CVIxII - Data Outputs => PLC Inputs
--- --- --- --- --- --- --- ---
0x0002 0002 0x0001 0001 Final Torque Result R 4 Float
0x0006 0006 0x0003 0003 Torque Trend R 2 Integer
0x0008 0008 0x0004 0004 Final Angle Result R 4 Float
0x000C 0012 0x0006 0006 Angle Trend R 2 Integer
--- --- --- --- --- --- --- ---
Final Torque Result : this is the IEEE float value of the torque displayed on the controller. Torque Trend : indicates wether the torque is :
0x00 No report 0x01 Torque is below the lower limit 0x02 Torque is over the upper limit 0x03 Torque is in the limits
Final Angle Results : this is the IEEE float value of the angle displayed on the controller. Angle trend : indicates wether the angle is :
0x00 No report 0x01 Angle is below the lower limit 0x02 Angle is over the upper limit 0x03 Angle is in the limits
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2.5. CVIx II Controllers - PLC configuration
2.5.1. Standard Memory Mapping & PLC Configuration
The configuration the PLC has to implement is as below (for Profibus DP & Profinet IO):
Data type Byte s Bits PLC <= CVIxII
BYTE 1 8 BYTE 1 8 DOUBLE WORD 4 32 WORD 2 16 DOUBLE WORD 4 32 WORD 2 16
PLC Input Size = 14 bytes PLC => CVIxII
BYTE 1 8 BYTE 1 8
PLC Output Size = 02 bytes
From CVIxII PLC main screen, press the printer ( ) button and down/up arrows to visualize the CVIxII standard memory mapping:
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2.5.2. Profibus DP
2.5.2.1. CVIxII Configuration
� the Profibus Slave Address Ref: 6159275950 AB6422
2.5.2.2. Simatic Step 7 Configuration
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2.5.3. Profinet IO
2.5.3.1. CVIxII Configuration
� the IP address � the Subnet Mask � the Gateway address
Ref: 6159275960 Ref: 6159275970 AB6425 AB6431
With firmware versions >= 3.0A, there is the possibility to set the Profinet parameters from the PLC (check the option “Set by PLC”)
2.5.3.2. Simatic Step 7 Configuration
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In order to set the parameters of the Profinet module from the PLC, you must use the tool “Edit Ethernet Node” included in Siemens Step7 software.(Menu PLC => Edit Ethernet Node …)
You have to set the IP address and Subnet Mask then click on Assign IP Configuration button. You have also to set the Device Name (which is stored in the station comment) then click on the Assign Name button. The Device name must the same as the one parametered in HW Config (see picture above).
N.B: The “Device Name” defined in Simatic Manager HW Config must be identical to the “Station Comment” defined in CVIx2 Station parameters.
If you use the option “Set by PLC”, the comment is automatically set with the value sent from the “Edit
Ethernet Node” tool.
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2.5.4. Device Net
2.5.4.1. CVIxII Configuration
� the Device Net Slave Address Ref: 6159275990 AB6424
2.5.4.2. RSNetWorx Configuration
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2.5.5. Ethernet IP
2.5.5.1. CVIxII Configuration
� the IP address � the Subnet Mask � the Gateway address
Ref: 6159275940 AB6423 AB6430
2.5.5.2. RSLogix 5000 Configuration
2.5.5.3. RSNetWorx Configuration
OR
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2.5.6. CC-Link
2.5.6.1. CVIxII Configuration
� the CC-Link Slave Address � the CC-Link version � the number of occupied stations � the number of extension cycles (version 2 only) � the communication speed (baud rate)
Ref: 6159275980 AB6432
With firmware versions >= 4.8Ax and CVIPC2000 >= 4.2.7.x A specific mapping must be created using CVIPC2000. Do not use the standard mapping
2.5.6.2. MELSOFT Configuration
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3. MULTICVIL II Controllers
3.1. MultiCVIL II - Memory Mapping Table
MultiCVIL II Memor y Address Data
Description Access (R/W)
Size (bytes)
Value Type
In Bytes In Words
Hexa. Deci. Hexa. Deci.
MultiCVIL II - Data Outputs => PLC Inputs
0x0000 0000 0x0000 0000 MultiCVIL II Outputs R 1 Bool
0x0001 0001 0x0000 0000 Selected Cycle (Cycle Echo) R 1 Integer
0x0002 0002 0x0001 0001 List of OK Spindles (Report) R 4 Bool
0x0006 0006 0x0003 0003 List of NOK Spindles (Report) R 4 Bool
MultiCVIL II - Data Inputs <= PLC Outputs
0x0000 0000 0x0000 0000 MultiCVIL II Inputs W 1 Bool
0x0001 0001 0x0000 0000 Cycle Number Selection W 1 Integer
0x0002 0002 0x0001 0001 Spindles Validation W 4 Bool
MULTICVIL II
PLC
Fieldbus
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3.2. MultiCVIL II - Inputs & Outputs
MultiCVIL II Memory Address Data
Description Access
(R/W)
Size
(bytes)
Value
Type In Bytes In Words
Hexa. Deci. Hexa. Deci.
MultiCVIL II - Data Outputs => PLC Inputs
0x0000 0000 0x0000 0000 MultiCVIL II Outputs R 1 Bool
--- --- --- --- --- --- --- ---
MultiCVIL II - Data Inputs <= PLC Outputs
0x0000 0000 0x0000 0000 MultiCVIL II Inputs W 1 Bool
--- --- --- --- --- --- --- ---
3.2.1. Inputs & Outputs definition
The MultiCVIL II inputs & outputs mapping is defined as below:
3.2.2. Inputs Descriptions Cycle 1/2/4: Binary coded 1-2-4 cycle selection.
The Cycle number selection 00 to 07 is only taken into consideration by the MultiCVIL II if the “Source of cycle number” is set to “I/O” in the station parameters.
Spindle Validation: Allows, or not, the start cycle of the spindle(s).
The spindle validation input is only taken into consideration by the multiCVIL II if the spindle validation source is set to I/O in the station parameters.
Error Acknowledge: When the error acknowledgement option is activated in the station parameters, the start of
the spindle is not authorized after a reject report. The “error acknowledgement” input must be validated (pulse) to let the spindle start again. By activating the error acknowledge input, the reject report output is reseted.
Start Cycle: The tool runs as long as the signal is on “1”. When the signal drops, the cycle stops. Direction: Activates the untightening direction mode of the spindle at the “Start cycle”. Reset: Reset station tightening reports, all cycles’ counters, saved barcode.
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3.2.3. Outputs Descriptions
Cycle Echo 1/2/4: Binary coded 1-2-4 selected cycle echo. The cycle echo is sent back only if it corresponds to
a programmed cycle in the station. Otherwise it is at “0”. Ready: This signal is at “1” when the controller is in working order. In Cycle: Response to the Start Cycle request. Drops to “0” at the end of a tightening or untightening. Accept Report: Active when the cycle is over and the tightening cycle report is OK. Reject Report: Active when the cycle is over and the tightening cycle report is NOK. Number of cycles OK: This signal switches to “1” when the number of cycles run with an Accept Report is equal to
the programmed number of cycles OK in the selected cycle parameters.
For detailed information, please read the MultiCVIL II controller manual.
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3.3. MultiCVIL II - Cycle Selection
Multi CVIL Memory Address Data
Description Access
(R/W)
Size
(bytes)
Value
Type In Bytes In Words
Hexa. Deci. Hexa. Deci.
MultiCVIL II - Data Outputs => PLC Inputs
--- --- --- --- --- --- --- ---
0x0001 0001 0x0000 0000 Selected Cycle (Cycle Echo) R 1 Integer
--- --- --- --- --- --- --- ---
MultiCVIL II - Data Inputs <= PLC Outputs
--- --- --- --- --- --- --- ---
0x0001 0001 0x0000 0000 Cycle Number Selection W 1 Integer
--- --- --- --- --- --- --- ---
3.3.1. Cycle number selection
The Cycle number selection is only taken into consideration by the MultiCVIL II if the “Source of cycle number” is set to “PLC” in the controller station parameters. The cycle number selection range is between 1 & 31 (0 = no cycle selection).
3.3.2. Selected Cycle (Cycle Echo) This byte indicates the number of the selected cycle in the MultiCVIL II controller. The selected cycle echo range is between 0 & 31 (0 = no cycle selected).
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3.4. MultiCVIL II - List of OK & NOK Spindles Repor t
MultiCVIL II Memory Address Data
Description Access
(R/W)
Size
(bytes)
Value
Type In Bytes In Words
Hexa. Deci. Hexa. Deci.
MultiCVIL II - Data Outputs => PLC Inputs
--- --- --- --- --- --- --- ---
0x0002 0002 0x0001 0001 List of OK Spindles (Report) R 4 Bool
0x0006 0006 0x0003 0003 List of NOK Spindles (Report) R 4 Bool
The OK & NOK Spindles lists are 32 bits long each (double words). Each bit corresponds to one spindle.
List of Spindles OK / NOK
Bit Nb Description
Dou
ble
Wor
d
LSB
00 Spindle 01 01 Spindle 02 02 Spindle 03 03 Spindle 04 04 Spindle 05 05 Spindle 06 06 Spindle 07 07 Spindle 08
MS
B
08 Spindle 09 09 Spindle 10 10 Spindle 11 11 Spindle 12 12 Spindle 13 13 Spindle 14 14 Spindle 15 15 Spindle 16
LSB
00 Spindle 17 01 Spindle 18 02 Spindle 19 03 Spindle 20 04 Spindle 21 05 Spindle 22 06 Spindle 23 07 Spindle 24
MS
B
08 Spindle 25 09 Spindle 26 10 Spindle 27 11 Spindle 28 12 Spindle 29 13 Spindle 30 14 Spindle 31 15 Spindle 32
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3.5. MultiCVIL II - Spindles Validation
MultiCVIL II Memory Address Data
Description Access
(R/W)
Size
(bytes)
Value
Type In Bytes In Words
Hexa. Deci. Hexa. Deci.
MultiCVIL II - Data Inputs <= PLC Outputs
--- --- --- --- --- --- --- ---
0x0002 0002 0x0001 0001 Spindles Validation W 4 Bool
The spindles validation is only taken into consideration by the MultiCVIL II if the “Spindle validation source” is set to “PLC” in the controller station parameters. This spindles validation list is a 32 bits long word (double word). Each bit corresponds to one spindle.
Spindles Validation - Double Word
Bit Nb Description Status
ON (1) OFF (0)
Dou
ble
Wor
d
LSB
00 Spindle 01 Enable Disable
01 Spindle 02 Enable Disable
02 Spindle 03 Enable Disable
03 Spindle 04 Enable Disable
04 Spindle 05 Enable Disable
05 Spindle 06 Enable Disable
06 Spindle 07 Enable Disable
07 Spindle 08 Enable Disable
MS
B
08 Spindle 09 Enable Disable
09 Spindle 10 Enable Disable
10 Spindle 11 Enable Disable
11 Spindle 12 Enable Disable
12 Spindle 13 Enable Disable
13 Spindle 14 Enable Disable
14 Spindle 15 Enable Disable
15 Spindle 16 Enable Disable
LSB
00 Spindle 17 Enable Disable
01 Spindle 18 Enable Disable
02 Spindle 19 Enable Disable
03 Spindle 20 Enable Disable
04 Spindle 21 Enable Disable
05 Spindle 22 Enable Disable
06 Spindle 23 Enable Disable
07 Spindle 24 Enable Disable
MS
B
08 Spindle 25 Enable Disable
09 Spindle 26 Enable Disable
10 Spindle 27 Enable Disable
11 Spindle 28 Enable Disable
12 Spindle 29 Enable Disable
13 Spindle 30 Enable Disable
14 Spindle 31 Enable Disable
15 Spindle 32 Enable Disable
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3.6. MultiCVIL II - PLC configuration
3.6.1. Standard Memory Mapping & PLC Configuration The configuration the PLC has to implement is as below (for Profibus DP & Profinet IO):
Data type Bytes Bits PLC <= Multi CVIL II
BYTE 1 8 BYTE 1 8 DOUBLE WORD 4 32 DOUBLE WORD 4 32
PLC Input Size = 10 bytes PLC => MultiCVIL II
BYTE 1 8 BYTE 1 8 DOUBLE WORD 4 32
PLC Output Size = 06 bytes
From MultiCVIL II PLC main screen, press the printer ( ) button and down/up arrows to visualize the MultiCVIL II standard memory mapping:
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3.6.2. Profibus DP
3.6.2.1. MultiCVIL II Configuration
� the Profibus Slave Address Ref: 6159275950 AB6422
3.6.2.2. Simatic Step 7 Configuration
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3.6.3. Profinet IO
3.6.3.1. MultiCVIL II Configuration
� the IP address � the Subnet Mask � the Gateway address
Ref: 6159275960 Ref: 6159275970 AB6425 AB6431
3.6.3.2. Simatic Step 7 Configuration
N.B: The “Device Name” defined in Simatic Manager HW Config must be identical to the “Station Comment” defined in CVI Station parameters.
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3.6.4. Device Net
3.6.4.1. MultiCVIL II Configuration
� the Device Net Slave Address Ref: 6159275990 AB6424
3.6.4.2. RSNetWorx Configuration
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3.6.5. Ethernet IP
3.6.5.1. MultiCVIL II Configuration
� the IP address � the Subnet Mask . � the Gateway address
Ref: 6159275940 AB6423 AB6430
3.6.5.2. RSLogix 5000 Configuration
3.6.5.3. RSNetWorx Configuration
OR
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4. Appendix
4.1. CVIx II - plugged Module Status
From the CVIx II PLC parameters screen, press the printer ( ) button and left / right arrows to visualize the controller module Status Info Page:
ST = Module Status: - ST:0000, Module initialisation. - ST:0001, Network / Fieldbus initialisation. - ST:0002, Module is waiting for communication process with PLC. - ST:0003, PLC is in Stop mode or PLC requests module to go in IDLE mode. - ST:0004, PLC & Module communication is ok. - ST:0005, Network / Fieldbus fault. - ST:0007, Fatal Error.
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4.2. Modules Details 4.2.1. Profibus DP Module
# Item
5 1
1 2
3
9 6
1 Operation Mode 2 Status 3 PROFIBUS Connector
Operation Mode
State Indication Comments Off Not online / No power - Green On-line, data exchange - Flashing Green On-line, clear - Flashing Red (1 flash) Parametrization error - Flashing Red (2 flashes) PROFIBUS Configuration error -
Status
State Indication Comments Off No power or not initialized State = ‘SETUP¨’ or ‘INIT’ Green Initialized Module has left the ‘INIT’ state Flashing Green Initialized, diagnostic event(s) present Extended diagnostic bit is set Red Exception error State = ‘EXCEPTION’
PROFIBUS Connector (DB9F)
Pin Signal Description 1 - - 2 - - 3 B Line Positive RxD/TxD, RS485 level 4 RTS Request to send 5 GND Bus ground (isolated) 6 +5V Bus Outputa +5V termination power (isolated, short-circuit protected) 7 - - 8 A Line Negative RxD/TxD, RS485 level 9 - - Housing Cable Shield Internally connected to the module protective earth via cable shield
filters according to the PROFIBUS standard.
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41 2
3
4.2.2. Profinet IO Module
# Item
1 Network Status LED
2 Module Status LED
3 Link/Activity LED
4 Ethernet Interface
Network Status LED
Note: A test sequence is performed on this LED during startup.
LED State Description Comments Off Offline - No power
- No connection with PLC Green Online (RUN) - Connection with PLC established
- PLC in RUN state Green, flashing Online (STOP) - Connection with PLC established
- PLC in STOP state
Module Status LED
Note: A test sequence is performed on this LED during startup.
LED State Description Comments Off Not Initialized No power - or - Module in ‘SETUP’ or ‘INIT’ state Green Normal Operation Module has shifted from the ‘INIT’ state Green, 1 flash Diagnostic Event(s) Diagnostic event(s) present Green, 2 flashes Blink Used by engineering tools to identify the node on the network Red Exception Error Module in state ‘EXCEPTION’ Red, 1 flash Configuration Error Expected Identification differs from Real Identification Red, 2 flashes IP Address Error IP address not set Red, 3 flashes Station Name Error Station Name not set Red, 4 flashes Internal Error Module has encountered a major internal error
LINK/Activity LED
LED State Description Comments Off No Link No link, no communication present Green Link Ethernet link established, no communication present Green, flickering Activity Ethernet link established, communication present
Ethernet Interface
The ethernet interface operates at 100Mbit, full duplex, with auto-negotiation enabled as default.
1 8
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5 6
1 2
3 4
4.2.3. Profinet IO 2 ports Module
# Item
5 6
1 2
3 4
1 Network Status LED 2 Module Status LED 3 Ethernet (port 1) 4 Ethernet (port 2) 5 Link/Activity LED
(port 1) 6 Link/Activity LED
(port 2)
Network Status LED
Note: A test sequence is performed on this LED during startup.
LED State Description Comments Off Offline - No power
- No connection with PLC Green Online (RUN) - Connection with PLC established
- PLC in RUN state Green, flashing Online (STOP) - Connection with PLC established
- PLC in STOP state
Module Status LED
Note: A test sequence is performed on this LED during startup.
LED State Description Comments Off Not Initialized No power - or - Module in ‘SETUP’ or ‘INIT’ state Green Normal Operation Module has shifted from the ‘INIT’ state Green, 1 flash Diagnostic Event(s) Diagnostic event(s) present Green, 2 flashes Blink Used by engineering tools to identify the node on the network Red Exception Error Module in state ‘EXCEPTION’ Red, 1 flash Configuration Error Expected Identification differs from Real Identification Red, 2 flashes IP Address Error IP address not set Red, 3 flashes Station Name Error Station Name not set Red, 4 flashes Internal Error Module has encountered a major internal error
LINK/Activity LED
LED State Description Comments Off No Link No link, no communication present Green Link Ethernet link established, no communication present Green, flickering Activity Ethernet link established, communication present
Ethernet Interface
The ethernet interface operates at 100Mbit, full duplex, as required by PROFINET.
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4.2.4. Device Net Module
# Item
1 2
3
1 5
1 Network Status LED 2 Module Status LED 3 DeviceNet Connector
Network Status
State Indication Off Not online / No power Green On-line, one or more connections are established Flashing Green (1 Hz) On-line, no connections established Red Critical link failure Flashing Red (1 Hz) One or more connections timed-out Alternating Red/Green Self test
Module Status
State Indication Off No power Green Operating in normal condition Flashing Green (1 Hz) Missing or incomplete configuration, device needs commissioning Red Unrecoverable Fault(s) Flashing Red (1 Hz) Recoverable Fault(s) Alternating Red/Green Self test
DeviceNet Connector
This connector provides DeviceNet connectivity.
Pin Signal Description 1 V- Negative bus supply voltage 2 CAN_L CAN low bus line 3 SHIELD Cable shield 4 CAN_H CAN high bus line 5 V+ Positive bus supply voltage
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4.2.5. Ethernet IP Module
# Item
1 8
1 2
4 3
1 Network Status LED
2 Module Status LED
3 Link/Activity
4 Ethernet Interface
Network Status LED
Note: A test sequence is performed on this LED during startup.
LED State Description Off No power or no IP address Green On-line, one or more connections established (CIP Class 1 or 3) Green, flashing On-line, no connections established Red Duplicate IP address, FATAL error Red, flashing One or more connections timed out (CIP Class 1 or 3)
Module Status LED
Note: A test sequence is performed on this LED during startup.
LED State Description Off No power Green Controlled by a Scanner in Run state Green, flashing Not configured, or Scanner in Idle state Red Major fault (EXCEPTION-state, FATAL error etc.) Red, flashing Recoverable fault(s)
LINK/Activity LED
LED State Description
Off No link, no activity
Green Link established
Green, flickering Activity
Ethernet Interface
The ethernet interface supports 10/100Mbit, full or half duplex operation.
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4.2.6. Ethernet IP 2 ports Module
# Item
5 6
1 2
3 4
1 Network Status LED
2 Module Status LED
3 Ethernet Interface, Port 1
4 Ethernet Interface, Port 2
5 Link/Activity Port 1
6 Link/Activity Port 2
Network Status LED
Note: A test sequence is performed on this LED during startup.
LED State Description
Off No power or no IP address
Green On-line, one or more connections established (CIP Class 1 or 3)
Green, flashing On-line, no connections established
Red Duplicate IP address, FATAL error
Red, flashing One or more connections timed out (CIP Class 1 or 3)
Module Status LED
Note: A test sequence is performed on this LED during startup.
LED State Description
Off No power
Green Controlled by a Scanner in Run state
Green, flashing Not configured, or Scanner in Idle state
Red Major fault (EXCEPTION-state, FATAL error etc.)
Red, flashing Recoverable fault(s)
LINK/Activity LED 3/4
LED State Description
Off No link, no activity
Green Link (100 Mbit/s) established
Green, flickering Activity (100 Mbit/s)
Yellow Link (10 Mbit/s) established
Yellow, flickering Activity (10 Mbit/s)
Ethernet Interface
The ethernet interface supports 10/100Mbit, full or half duplex operation.
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4.2.7. CC-Link Module
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