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Installation and configuration manual

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1. 6 Revisionihistory ee 5 S Safety information ceceeeeeeeeeeeeeeeeeeeneteeeeees 9 Segment length dependent on the baud rate 48 U Users qualifications cccccccseecceceseeeeseeeeeeeees 10 49
2. 200 2 00 ppm 10 00 ppm 200 2 00 ppm 10 00 ppm 200 2 00 ppm 10 00 ppm 200 2 00 ppm 2 00 ppm 50 0 50 ppm Unit ppm ppm ppm ppm ppm ppm ppm numbered starting with number 4 and thus do not have 21 Description of the data objects Channel 5 measured value variables Pool 1 16 Measured value Sensor type DXCa identity PROFIBUS input Converted measured value Unit code value range Use Channel 5 measured value variables Pool 1 16 Channel 5 actual value Cl CLE 3 C 0 1000 Range 0 10 00 ppm ppm Example 200 2 00 ppm 0 20000 Range 0 200 ppm ppm Example 10000 100 ppm Total chlorine CTE D 0 1000 Range 0 10 00 ppm ppm Example 200 2 00 ppm Combined CTE S 0 1000 Range 0 10 00 ppm ppm chlorine Example 200 2 00 ppm ClO2 CLT S D 0 200 Range 0 2 00 ppm ppm Example 50 0 50 ppm 22 ProMinent Description of the data objects Channel 6 measured value variables Pool 1 16 Measured Sensor type DXCa identity PROFIBUS input Converted measured value Unit value code value range Use Channel 6 measured value variables Pool 1 16 Channel 6 actual value Total chlorine CTE S 0 1000 Range 0 10 00 ppm ppm Example 200 2 00 ppm Combined CTE D 0 1000 Range 0 10 00 ppm ppm chlorine Example 200 2 00 ppm Channel 7 measured value variables Pool 1 16 Measured value PROFIBUS input value range
3. Channel 5 setpoint Pool 1 16 Measured value Sensor type Channel 5 set point Pool 1 con WE Cl CLE 3 Total chlorine CTE Combined CTE chlorine ClO2 CLT ProMinent DXCa iden tity code S C D DXCa identity code Use PROFIBUS input value range 0 to 1000 0 20000 0 1000 0 to 1000 0 to 1000 0 to 1000 0 to 200 PROFIBUS input value range 0 1000 0 20000 0 1000 0 1000 0 200 Converted measured value Access Read write Range 0 10 00 ppm Example 200 2 00 ppm Range 0 Example 10000 100 ppm 10 00 ppm Example 200 2 00 ppm 10 00 ppm Example 200 2 00 ppm 10 00 ppm Example 200 2 00 ppm 10 00 ppm Example 200 2 00 ppm 200 ppm Range 0 Range 0 Range 0 Range 0 Range 0 2 00 ppm Example 50 0 50 ppm Converted measured value Access Read write Range 0 10 00 ppm Example 200 2 00 ppm Range 0 200 ppm Example 10000 100 ppm Range 0 10 00 ppm Example 200 2 00 ppm Range 0 10 00 ppm Example 200 2 00 ppm Range 0 2 00 ppm Example 50 0 50 ppm 31 PROFIBUS acyclic data traffic control values and Pause ECO Mode active Channel 6 setpoint Pool 1 16 Measured Sensor type DXCa identity PROFIBUS input Converted measured value Acces value code value range s Use Channel 6 set Read point Pool write 1 16 Ht above sea level Channel 7 setpoin
4. The DXCa gateway has two connection terminals for 24 V and 0 V jumpered on the circuit board CJJ 24V OV A1222 Fig 4 Front view of DXCa gateway power supply Commissioning 3 2 Commissioning example using Step 7 In the selection menu that appears navigate to the storage loca tion of the GSD file and select it see figure 6 Step 7 Installing a GSD file selection menu GSD file You can find the GSD file on the enclosed data 4 medium or in the download area under http www prominent de Service Downloaa Service aspx The commissioning example shown in this chapter takes place under Siemens Step 7 development environment The incorpora tion or planning of the DXCa gateway via the GSD file takes place under the development environments of other manufacturers anal ogously to the procedure described here A pre configured project including a PLC and fully functional PROFIBUS are prerequisites for this part of the document 14 ProMinent ProMinent Commissioning Katalog aktualisieren HW Updates installieren GSD Dateien installieren Suche in Service amp Support GSD Date f r I Device erstellen Fig 5 Step 7 Installing a GSD file 1 _ The properties as well as all of the necessary information of the DXCa gateway are described in the GSD file The GSD file must be installed in the engineering system for planning of the DXCa gateway
5. Variables pH measured value 0 1400 Range 0 14 00 Pool 1 16 Example 720 7 20 pH pH actual value Variables redox measured value Pool 1 16 Measured value PROFIBUS input value range Converted measured value Unit Variables redox measured 1200 1200 1200 1200 mV mV value Pool 1 16 Redox actual value Variables temperature measured value Pool 1 16 Measured value PROFIBUS input value range Converted measured Unit value Variables temperature meas 0 1200 Range 0 120 C AC ured value Pool 1 16 Example 130 13 0 C Temperature actual value 20 ProMinent The interpretation of the data changes dependent on Description of the data objects the identity code The following data are consecutively the actual names of their user data Channel 4 measured value variables Pool 1 16 Measured value Sensor type DXCa iden Channel 4 measured value variables Pool 1 16 Channel 4 actual value Chlorine Free chlorine Bromine CIO2 ProMinent tity code CLE 3 S C D CGE S D CIESH CDR S D PROFIBUS input value range 0 to 1000 0 20000 0 1000 0 to 1000 0 to 1000 0 to 1000 0 to 200 Converted measured value Range 0 Example Range 0 Example Range 0 Example Range 0 Example Range 0 Example Range 0 Example Range 0 Example 10 00 ppm 200 2 00 ppm 200 ppm 10000 100 ppm 10 00 ppm
6. 1 Byte 1 Byte 1 Byte 1 Byte 1 Byte 1 Byte 1 Byte 1 Byte 1 Byte 1 Byte Type INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 UINT8 UINT8 UINT8 UINT8 UINT8 UINT8 UINT8 UINT8 UINT8 UINT8 Access Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write ProMinent No Slot 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 SF E55 ES ES Bo Ei Bei El Ber ES BS Eo Ee Eau a Bau ES ES ES ES ES ES ProMinent PROFIBUS acyclic data traffic control values and Pause ECO Mode active Index 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 Data object ECO Mode active pool 11 ECO Mode active pool 12 ECO Mode active pool 13 ECO Mode active pool 14 ECO Mode active pool 15 ECO Mode active pool 16 Paus
7. Ammonia NH3 0 1000 Hydrogen per 0 1000 oxide H202 Peracetic acid 0 1000 PES Conductive con 0 1000 ductivity CIO2 0 1000 02 0 1000 Channel 11 control output Pool 1 16 Measured value PROFIBUS input value range Converted measured Unit value Channel 11 control output Pool 1 16 Ht above sea level 4 3 Status slave Status slave No Description Address byte offset 1 Status CAN bus connection 0 0 OK 1 no CAN connection error 2 SW revision controller 1 Example 123 V1 23 ProMinent 27 Description of the data objects No Description 3 HW revision DXCa Gateway Example 100 V1 00 4 Source of the CAN ID 1 front rotary encoding switch 2 specification by DULCOMARIN II 5 CAN bus ID identification number Error code 0 OK 1 internal error 7 Ht above sea level 8 Ht above sea level 4 4 Error messages Error messages No 1 16 Address byte offset 2 Description Error in Pool 1 32 Bit Error in Pool 16 32 Bit Decoding of the error messages pH actual value channel 1 bit O pH actual value channel 1 bit 1 pH actual value channel 1 bit 2 Channel 2 bit Channel 2 bit Channel 2 bit Channel 3 bit Channel 3 bit Channel 3 bit Channel 4 bit Channel 4 bit Channel 4 bit 28 0x00000001 pH measured value invalid 0x00000002 pH measured value min 0x00000004 pH measured value max 0x00
8. Converted measured Unit value Channel 7 measured value var iables Pool 1 16 Channel 7 actual value Ht above sea level Channel 8 measured value variables Pool 1 16 Measured value PROFIBUS input value range Converted measured Unit value Channel 8 measured value var iables Pool 1 16 Channel 8 actual value CANopen turbidity sensor Channel 9 measured value variables Pool 1 16 Measured value PROFIBUS input value range Converted measured Unit value Channel 9 measured value var iables Pool 1 16 Channel 9 actual value 11 edit mode 0 9999 Dependent on the edited value in the module Q 0 9999 see device formatting m h I h ProMinent 23 Description of the data objects Channel 10 measured value variables Pool 1 16 Measured value Channel 10 measured value variables Pool 1 16 Channel 10 actual value 12 edit mode Ammonia NH3 Hydrogen peroxide H202 Peracetic acid PES Conductive conductivity CIO2 02 Channel 11 measured value variables Pool 1 16 Measured value Channel 11 measured value variables Pool 1 16 Channel 11 actual value I3 edit mode PES Temperature CIO2 UV intensity UV Turbidity 4 2 Control values 24 PROFIBUS input value range Converted measured Unit value 0 9999 mA 0 9999 ppm mg l 0 9999 ppm mg l 0 9999 ppm mg l 0 9999 uS cm mS cm S cm 0 9999 ppm mg l 0 9999 ppm
9. Firmware Firmware version PROFIBUS protocol 2 3 X X Gateway firmware 1 Firmware DULCOMARIN II From 3022 GSD file Firmware Firmware version GSD file 2 0 0 1 1 Technical data Properties PROFIBUS DP interface Description Maximum input data Maximum output data Baud rate Revision 1 001 Version 1 For the hardware DXCa PROFIBUS Gateway DXCa PROFIBUS Gateway DULCOMARIN II For the hardware DXCa PROFIBUS Gateway Parameter 244 Byte 244 Byte 9 6 kBit s 19 2 kBit s 31 25 kBit s 45 45 kBit s 93 75 kBit s 187 5 kBit s 500 kBit s 1 5 MBit s 3 MBit s 6 MBit s 12 MBit s ProMinent Description Interface type Connector Auto detection Characteristic data DXCa Gateway Description Power supply Typical power consumption Max number of measured values Weight Dimensions L x W x H ROHS CE mark IP rating ProMinent Introduction Parameter Potential free RS 485 interface D sub port 9 pin yes Parameter 24V DC approx 500mA 116 250g 117 2 x 45 x 113 5 mm yes yes IP20 Security 2 Security Intended use Incorrect use This document plus all accompanying texts were written for use by briefed and trained specialist per sonnel When using this product all safety instructions plus the applicable regulations must be observed The user must ensure adherence to the legal conditions The DXCa Gateway described in this document represents a PRO FIBUS based interface t
10. Pool 1 16 Measured value PROFIBUS input value range Channel 4 control output Pool 1 16 Chlorine 0 1000 Bromine ClO2 Channel 5 control output Pool 1 16 Measured value PROFIBUS input value range Channel 5 control output Pool 1 16 Combined chlorine 1000 0 ClO2 1000 O Channel 6 control output Pool 1 16 Measured value PROFIBUS input value range Channel 6 control output Pool 1 16 Ht above sea level 0 1000 Channel 7 control output Pool 1 16 Measured value PROFIBUS input value range Channel 7 control output Pool 1 16 Flocculation 0 1000 Channel 8 control output Pool 1 16 Measured value PROFIBUS input value range Channel 8 control output Pool 1 16 Ht above sea level 0 1000 26 Converted measured value Converted measured value Converted measured value Converted measured value Converted measured value Unit Unit Unit Unit Unit ProMinent Description of the data objects Channel 9 control output Pool 1 16 Measured value PROFIBUS input value range Converted measured Unit value Channel 9 control output Pool 1 16 Ht above sea level Channel 10 control output Pool 1 16 Measured value PROFIBUS input Converted Unit value range measured value Channel 10 con trol output Pool 1 16 Channel 10 control value I2 edit mode 0 1000
11. Red ON General error Error of the primary or secondary communications system The DXCa gateway was not planned OFF No error 6 4 BF2 LED Communication LED bus error 2 This LED describes the condi tion of the secondary CAN communication protocol BF2 LED LED Colour Status Meaning BF2 LED red Red Cyclical flashing Error CAN bus No DULCOMARIN II connected or connection faulty OFF No error 44 ProMinent 6 5 RUN LED RUN LED LED Colour Status BF2 LED green green ON OFF ProMinent LEDs and addressing The RUN LED informs about the error free state of the DXCa gateway Meaning No error DXCa gateway communicates successfully Error See error LEDs SF BF1 or BF2 45 Troubleshooting 7 Troubleshooting Fault description None of the LEDs illuminates or flashes BF1 illuminates PROFIBUS error BF2 does not illu minate or flashes CAN bus error SF illuminates One or more meas ured values indi cate the value Ox7FFF Or 32767 46 Cause No 24V power supply device defective No or faulty physical connec tion to the PLC Incorrect transmission rate Incorrect planning e g incorrect address set by Step 7 No or faulty physical connec tion to the DULCOMARIN II No PROFIBUS or CAN bus connection Internal error This value means that the measured value does not exist Remedy Ensure that the DXCa gateway is supplied with 24V Check the polarity of the in
12. 40 IISFC 70 PROFIBUS Address Master PROFIBUS Address Slave Dip switch Slot indication always ZERO Slot indication not evaluated always ZERO Conversion Write data record trigger Auxiliary flag Flank indicator IISFB 53 ndex indicator Length of the data Data record ProMinent PROFIBUS acyclic data traffic control values and Pause ECO Mode active Acyclic reading CALL GEO_LOG MASTER 1 STATION 4 SLOT 0 SUBSLOT 0 RET_VAL DB70 DBWO LADDR DB70 DBW2 L DB70 DBW 2 ITD T MD 20 UE 17 1 UN M 31 1 M 31 2 UE 17 1 M 31 1 CALL RDREC Instanz_DB_SFB52 REQ M31 2 ID MD20 INDEX 1 MLEN 2 VALID M16 0 BUSY M8 1 ERROR M14 2 STATUS MD18 LEN MW22 RECORD P DB1 DBX0 0 BYTE 2 ProMinent IISFC 70 Address Master Address Slave Dip switch Slot indication always ZERO Slot indication not evaluated Conversion Read data record trigger Auxiliary flag Flank indicator IISFB 52 Index indicator Length of the data Data record 41 PROFIBUS acyclic data traffic control values and Pause ECO Mode active Example Siemens Step 7 Example DB Address Name Type 0 0 pH setpoint high BYTE 1 0 pH_setpoint low BYTE 2 0 Redox_set BYTE point high 3 0 Redox set BYTE point low 42 Starting value B 16 16 16 16 2 DA Actual value B 16
13. In the Step 7 hardware manager this takes place under the menu option Extras gt Install GSD file GSD Dateien installieren aus dem Verzeichnis z E lsers Administrator Desktop Durchsuchen PT Installieren Protokoll anzeigen Alle ausw hlen Alle abwahlen Schlie en Hilfe A1224 Fig 6 Step 7 Installing a GSD file selection menu 2 Inthe selection menu that appears navigate to the storage location of the GSD file and select this GSD file Commissioning ean Gite Some Q rem eee iage ears ze Sroka se fo tw es eee 7 pS amp Bes SS M 2 Sy te MT me Te i wa cnaed AE v geje EEE ET isian Le Drachen ba VL om He zn at A1225 Fig 7 Step 7 overview of the hardware manager 3 _ gt After successful installation of the GSD file start the hard ware manager from your project The DXCa gateway is located in the hardware catalogue on the right hand side k ox Sucher nt ail Profil Standard PROFIBUS DP 4 H bereits projektierte Stationen Cy R bjekt 5 DPVOSlave EG PAs A DP PA Link A ENCODER Hg ET 2008 Gy ET 200C Hg ET 200eco H E ET 200 5 ET 2005P iy ET 200L yj ET 200M H ET 200pi0 yj ET 200A 9 ET 2005 9 ET 200U 9 SIMOREG Hg SIMOVERT Hg SINAMICS HE SIPOS Ly Weitere FELDGERATE H E Allgemein 9 Schaltger te 3 1 0 B Gateway GQ AM Module BE as GQ ProMinent Ta OXCa PROFIBUS DP Gateway D
14. and the ground potential and ensure that there is no potential difference between these points A1231 You can connect up to 32 PROFIBUS devices together in a BUS segment If you join several BUS segments together with a repeater you can connect up to a maximum 127 devices The maximum length of a BUS segment is dependent on the baud rate used Please use only cable specially approved for PRO FIBUS preferably of type A 47 Appendix Segment length dependent on the baud rate Baud rate in kBit s 9 6 19 2 93 75 187 5 500 1500 3000 6000 12000 Properties for cabling approved for PROFIBUS DP Parameter Characteristic impedance Capacity per unit length Loop resistance Conductor wire diameter 48 Max length 1200m 1200m 1200m 1000m 400m 200m 100m 100m 100m Value 135 165 ohm lt 30 pF m 110 ohm km 0 64 mm ProMinent 9 Index C Characteristic data DXCa Gateway G General non discriminatory approach GSDiflle u 282 4442 Incorrect use Intended use N Non discriminatory approach P Plausibility checking of the setpoints PROFIBUS DP network ProMinent Index Properties for cabling approved for PRO EIBUS DP l na ra a had 48 Properties PROFIBUS DP interface 6 R Reference to hardware software and firmware
15. setpoint pool 1 Channel 7 setpoint pool 2 Channel 7 setpoint pool 3 Channel 7 setpoint pool 4 Channel 7 setpoint pool 5 Channel 7 setpoint pool 6 Channel 7 setpoint pool 7 Channel 7 setpoint pool 8 Channel 7 setpoint pool 9 Channel 7 setpoint pool 10 Channel 7 setpoint pool 11 Channel 7 setpoint pool 12 Channel 7 setpoint pool 13 Channel 7 setpoint pool 14 Length 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte Type INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 Access Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read
16. write ProMinent PROFIBUS acyclic data traffic control values and Pause ECO Mode active No Slot Index Data object Length Type Access 111 0 111 Channel 7 setpoint pool 15 2 Byte INT16 Read write 112 0 112 Channel 7 setpoint pool 16 2 Byte INT16 Read write 113 0 113 Channel 8 setpoint pool 1 2 Byte INT16 Read write 114 0 114 Channel 8 setpoint pool 2 2 Byte INT16 Read write 115 0 115 Channel 8 setpoint pool 3 2 Byte INT16 Read write 116 0 116 Channel 8 setpoint pool 4 2 Byte INT16 Read write 117 0 117 Channel 8 setpoint pool 5 2 Byte INT16 Read write 118 0 118 Channel 8 setpoint pool 6 2 Byte INT16 Read write 119 0 119 Channel 8 setpoint pool 7 2 Byte INT16 Read write 120 0 120 Channel 8 setpoint pool 8 2 Byte INT16 Read write 121 0 121 Channel 8 setpoint pool 9 2 Byte INT16 Read write 122 0 122 Channel 8 setpoint pool 10 2 Byte INT16 Read write 123 0 123 Channel 8 setpoint pool 11 2 Byte INT16 Read write 124 0 124 Channel 8 setpoint pool 12 2 Byte INT16 Read write 125 0 125 Channel 8 setpoint pool 13 2 Byte INT16 Read write 126 0 126 Channel 8 setpoint pool 14 2 Byte INT16 Read write 127 0 127 Channel 8 setpoint pool 15 2 Byte INT16 Read write 128 0 128 Channel 8 setpoint pool 16 2 Byte INT16 Read write 129 0 129 Channel 9 setpoint pool 1 2 Byte INT16 Read write 130 0 130 Channel 9 setpoint pool 2 2 Byte INT16 Read write 131 0 131 Channel 9 setpoint pool 3 2 Byte INT16 Read write 132 0 132 Channel
17. 000008 measured value invalid 0x00000010 measured value min 0x00000020 measured value max 0x00000040 measured value invalid 0x00000080 measured value min 0x00000100 measured value max 0x00000200 measured value invalid 0x00000400 measured value min 0x00000800 measured value max ProMinent ProMinent Channel 5 bit 12 Channel 5 bit 1 3 Channel 5 bit 14 Channel 10 bit Channel 10 bit Channel 10 bit Channel 11 bit Channel 11 bit Channel 11 bit Bit 21 Free bit 22 Free bit 23 Free bit 24 Free bit 25 DXMaA bit 26 DXMak bit 27 DP1 bit 28 DP2 bit 29 DP3 bit 30 DPA bit 31 No fault or error 15 16 17 18 19 20 Description of the data objects 0x00001000 measured value invalid 0x00002000 measured value min 0x00004000 measured value max 0x00008000 measured value invalid 0x00010000 measured value min 0x00020000 measured value max 0x00040000 measured value invalid 0x00080000 measured value min 0x00100000 measured value max 0x00200000 sample water error 0x00400000 0x00800000 0x01000000 0x02000000 0x04000000 error 0x08000000 control valve not ready 0x10000000 metering pump error active 0x20000000 metering pump error active 0x40000000 metering pump error active 0x80000000 metering pump error active 0x00000000 29 PROFIBUS acyclic data traffic control valu
18. 16 16 16 2 DA Comment High part of the set point Low part of the set point ProMinent LEDs and addressing 6 LEDs and addressing A1230 Fig 12 Front view of the DXCa gateway 1 SF collective fault LED red 6 Address PROFIBUS bus possible addresses 2 BF bus error LED red 99 3 RUN LED green T Address PROFIBUS bus possible addresses 4 CAN bus connector M12 99 l 5 Address CAN bus possible addresses 5 6 7 8 PROFIBUS bus connector D sub 9 pin and 8 9 SYS LED green 10 BF1 LED red 6 1 SYS LED System LED This LED describes the condition of the system LED Colour Status Meaning SYS Duo LED yellow green Green ON system is OK Green yellow Flashing Bootloader mode Green yellow Wait for firmware Yellow ON Bootloader mode Wait for software OFF Error No voltage or device defective ProMinent 43 LEDs and addressing 6 2 BF1 LED Communication LED bus error 1 This LED describes the condi tion of the primary communication protocol BF1 LED LED Colour Status Meaning BF1 Duo LED red green Green ON Protocol OK cyclic communication Red Cyclical flashing STOP no communication connection to the control interrupted Red Acyclic flashing DXCa gateway is not configured OFF Error No voltage or device defective 6 3 SFLED Collective error LED This LED describes errors of the DXCa gateway SF LED LED Colour Status Meaning SF LED red
19. 9 setpoint pool 4 2 Byte INT16 Read write 133 0 133 Channel 9 setpoint pool 5 2 Byte INT16 Read write 134 0 134 Channel 9 setpoint pool 6 2 Byte INT16 Read write 135 0 135 Channel 9 setpoint pool 7 2 Byte INT16 Read write 136 0 136 Channel 9 setpoint pool 8 2 Byte INT16 Read write 137 0 137 Channel 9 setpoint pool 9 2 Byte INT16 Read write 138 0 138 Channel 9 setpoint pool 10 2 Byte INT16 Read write 139 0 139 Channel 9 setpoint pool 11 2 Byte INT16 Read write 140 0 140 Channel 9 setpoint pool 12 2 Byte INT16 Read write 141 0 141 Channel 9 setpoint pool 13 2 Byte INT16 Read write 142 0 142 Channel 9 setpoint pool 14 2 Byte INT16 Read write 143 0 143 Channel 9 setpoint pool 15 2 Byte INT16 Read write 144 0 144 Channel 9 setpoint pool 16 2 Byte INT16 Read write 145 0 145 Channel 10 setpoint pool 1 2 Byte INT16 Read write 146 0 146 Channel 10 setpoint pool 2 2 Byte INT16 Read write 147 0 147 Channel 10 setpoint pool 3 2 Byte INT16 Read write 148 0 148 Channel 10 setpoint pool 4 2 Byte INT16 Read write ProMinent 37 PROFIBUS acyclic data traffic control values and Pause ECO Mode active No 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 38 Slot oJ Bol Bo ES Ber BO BS EO Bo Eo Bo Eo BS Bar ES BS ES BS ES BS Bar ES BCS BS ua EC ES EO BS ES BS EC ES ES E
20. ECO Mode active 1 ECO Mode inactive 0 Under ECO Mode inactive the corresponding field contains a O 5 2 Addressing of acyclic values read write Converted measured value Converted measured value Converted measured value Converted measured value Access ppm mg l ppm mg l Access Read write Access Read write Access Read write The values listed in chapter amp Chapter 5 1 Setpoints on page 30 can only be achieved by acyclic data transfer All acylic setpoints are addressed via slot and index Each setpoint must be trans ferred in an independent telegram The DXCa gateway does not check the setpoints to be written for plausibility However the addressing slot index and data length are checked If the addressing does not agree with the addressing in the following table the DXCa gateway reacts and sends a configuration error in the standard diagnosis ProMinent 33 PROFIBUS acyclic data traffic control values and Pause ECO Mode active Due to the high number of measured values all setpoints can be addressed via slot O and the respective index Slot and indexes of the acylic data objects No oO ON Oo aA FR WwW DN U OO O OO OO N NNNNNNNNN a a a ee a a ee yaa y ya Po N O OA WAN Oa FW NYDN DO O WAN DO A FW NY O 34 Slot Sl E53 ES Bo ES EO BS EO Bo EO BCs Bo BCs BS Eos ES EO Bo Eo BCs BS BCs ES BO BS ES ES BS BCs ES ECS ES ES ES Ind
21. P DP Coupler DP RS232C Link DP DP Koppler Ausgabestand 2 aan Fig 8 Step 7 hardware catalogue 4 You can find the gateway in the hardware catalogue under the following directory path PROFIBUS DP gt Other DEVICES gt Gateway gt ProMinent gt DXCA PROFIBUS DP Gateway ProMinent Commissioning 5 With the mouse key pressed you can now drag the DXCa gateway to the PROFIBUS in the left window gt Once you have successfully positioned the DXCa gateway the dialogue shown in Fig 9 appears The number set in the field Address MUST correspond to the Address of the rotary 4 encoding switch on the front of the DXCa gateway f lt Eigenschaften PROFIBUS Schnittstelle DXCa PROFIBUS DP Gateway a Allgemein Parameter Adresse 0 bertragungsgeschwindigkeit 1 5 Mbit s Subnetz OK Abbrechen Hilfe Fig 9 Step 7 properties of the DXCa gateway PROFIBUS inter face 6 Under the point Subnetwork you must select the PRO FIBUS network to be used using the speed set in the PLC 7 After successful selection quit the dialogue by pressing the OK key ProMinent Commissioning Ry HOW Kong AA TIC IION Kanigara DKCa Maneqmetpvceets DELERS Be aa ma arm permeate Findugen maglich _ A1228 Fig 10 The Step 7 DXCa gateway on the PROFIBUS 8 The Step 7 DXCa gateway is successfully connected to the PROFIBUS Henceforth y
22. S ES EO EOS Index 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 Data object Channel 10 setpoint pool 5 Channel 10 setpoint pool 6 Channel 10 setpoint pool 7 Channel 10 setpoint pool 8 Channel 10 setpoint pool 9 Channel 10 setpoint pool 10 Channel 10 setpoint pool 11 Channel 10 setpoint pool 12 Channel 10 setpoint pool 13 Channel 10 setpoint pool 14 Channel 10 setpoint pool 15 Channel 10 setpoint pool 16 Channel 11 setpoint pool 1 Channel 11 setpoint pool 2 Channel 11 setpoint pool 3 Channel 11 setpoint pool 4 Channel 11 setpoint pool 5 Channel 11 setpoint pool 6 Channel 11 setpoint pool 7 Channel 11 setpoint pool 8 Channel 11 setpoint pool 9 Channel 11 setpoint pool 10 Channel 11 setpoint pool 11 Channel 11 setpoint pool 12 Channel 11 setpoint pool 13 Channel 11 setpoint pool 14 Channel 11 setpoint pool 15 Channel 11 setpoint pool 16 ECO Mode active pool 1 ECO Mode active pool 2 ECO Mode active pool 3 ECO Mode active pool 4 ECO Mode active pool 5 ECO Mode active pool 6 ECO Mode active pool 7 ECO Mode active pool 8 ECO Mode active pool 9 ECO Mode active pool 10 Length 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte
23. TION A Nature and source of the danger Possible consequence Slight or minor injuries mate rial damage Measure to be taken to avoid this danger Caution Denotes a possibly hazardous situation If this is disregarded it could result in slight or minor inju ries May also be used as a warning about material damage NOTICE Nature and source of the danger Damage to the product or its surroundings Measure to be taken to avoid this danger Note Denotes a possibly damaging situation If this is disregarded the product or an object in its vicinity could be damaged ProMinent 9 Security 2 4 Users Qualifications Type of information Hints on use and additional information Source of the information additional measures Information Denotes hints on use and other useful information It does not indicate a hazardous or damaging sit uation WARNING Danger of injury with inadequately qualified personnel If inadequately qualified personnel work on the unit or loiter in the hazard zone of the unit this could result in dangers that could cause serious injuries and material damage All work on the unit should therefore only be con ducted by qualified personnel Unqualified personnel should be kept away from the hazard zone Training instructed personnel Trained user Technical experts Definition An instructed person is deemed to be a person who has been instructed and if requi
24. ally not provided for In systems in which incorrect operation or incorrect setpoint specifications may under certain circumstances cause damage the responsibility is that of the operator this applies particularly where there is a risk of impair ment to health The user operator must therefore ensure that they personally are adhering to critical parameters by carrying out regular manual con trol measurements ProMinent Security 2 3 Explanation of the safety information Introduction These operating instructions provide information on the technical data and functions of the product These operating instructions pro vide detailed safety information and are provided as clear step by step instructions The safety information and notes are categorised according to the following scheme A number of different symbols are used to denote different situations The symbols shown here serve only as examples DANGER Nature and source of the danger Consequence Fatal or very serious injuries Measure to be taken to avoid this danger Danger Denotes an immediate threatening danger If this is disregarded it will result in fatal or very serious injuries WARNING Nature and source of the danger Possible consequence Fatal or very serious injuries Measure to be taken to avoid this danger Warning Denotes a possibly hazardous situation If this is disregarded it could result in fatal or very serious injuries CAU
25. and know the relevant standards and regulations Electricians must comply with the provi sions of the applicable statutory directives on accident prevention Customer service Customer Service department refers to department service technicians who have received proven training and have been authorised by ProMinent to work on the system Note for the system operator The pertinent accident prevention regulations as well 4 as all other generally acknowledged safety regulations must be adhered to Commissioning 3 Commissioning During commissioning of the DXCa gateway please proceed as follows 3 1 Connectors fitting Fit the DXCa gateway on a standard top hat rail Provide the 24V DC power supply Connect the DXCa gateway to the DULCOMARIN II using a CAN M12 connection cable 4 Connect the DXCa gateway to the PLC using a PROFIBUS cable and corresponding D sub 9 pin plug Set the desired addresses for the CAN bus and PROFIBUS 6 Create a configuration and load the program in the PLC memory 2 SA AL lay a J 90 To J V gt A1219 Fig 1 The DXCa gateway is designed for assembly on standard top hat rail configurations e g DIN EN 60715 steel 2000 mm galvanized ProMinent Commissioning A Fig 2 Fitting removal of the con nector plug detailed view A1221 Power supply ProMinent A1220 Fig 3 Fitting removal of the connector plug
26. ction 1 Introduction Revision history Revision 1 1 1 1 2 ProMinent Date 12 01 2012 09 05 2012 25 05 2012 Name FR FR FR The document is aimed at programmers and personnel who are involved with planning and commissioning This document contains a description of the DXCa PROFIBUS CAN gateway for communication with the DULCOMARIN II The document should also assist in commissioning the DXCa PRO FIBUS gateway Alongside the description of the hardware and software components this document also contains a typical project created using the development environment Step 7 from Sie mens The document is aimed at programmers and personnel who are involved with planning and commissioning This software manual is only valid in combination with the DXCa gateway described in this document The DXCa Gateway may only be used with DULCOMARIN II The content of this document has been checked for agreement with the described hardware and soft ware Nevertheless deviations cannot be excluded Complete agreement cannot therefore be guaranteed Chapter Revision All 7 6 Document created ECO Mode and Pause active were extended Actual and control values matched to GSD revision 2 Table Addressing of acyclic values has been expanded Introduction Reference to hardware software and firmware Hardware Device DXCa PROFIBUS CAN Gateway DULCOMARIN II Software Software HERMES flasher Firmware
27. e active pool 1 Pause active pool 2 Pause active pool 3 Pause active pool 4 Pause active pool 5 Pause active pool 6 Pause active pool 7 Pause active pool 8 Pause active pool 9 Pause active pool 10 Pause active pool 11 Pause active pool 12 Pause active pool 13 Pause active pool 14 Pause active pool 15 Pause active pool 16 Length 1 Byte 1 Byte 1 Byte 1 Byte 1 Byte 1 Byte 1 Byte 1 Byte 1 Byte 1 Byte 1 Byte 1 Byte 1 Byte 1 Byte 1 Byte 1 Byte 1 Byte 1 Byte 1 Byte 1 Byte 1 Byte 1 Byte Type UINT8 UINT8 UINT8 UINT8 UINT8 UINT8 UINT8 UINT8 UINT8 UINT8 UINT8 UINT8 UINT8 UINT8 UINT8 UINT8 UINT8 UINT8 UINT8 UINT8 UINT8 UINT8 Access Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write 39 PROFIBUS acyclic data traffic control values and Pause ECO Mode active Example Siemens Step 7 acylic writing CALL GEO_LOG MASTER 1 STATION 4 SLOT 0 SUBSLOT 0 RET_VAL DB70 DBWO LADDR DB70 DBW2 L DB70 DBW 2 ITD T MD 20 UE 17 1 UN M 31 1 M 31 2 UE 17 1 M 31 1 CALL WRREC Instanz_DB_SFB53 REQ M31 2 ID MD20 INDEX 1 LEN 2 DONE M14 0 BUSY M8 1 ERROR M14 2 STATUS MD10 RECORD P DB1 DBX0 0 BYTE 2
28. es and Pause ECO Mode active 5 PROFIBUS acyclic data traffic control values and Pause ECO Mode active 5 1 Setpoints pH setpoint pool 1 to 16 Measured PROFIBUS input value value range pH setpoint 0 1400 Pool 1 to 16 Redox setpoint pool 1 to 16 PROFIBUS input value range 1200 1200 Measured value Redox setpoint Pool 1 to 16 30 The following control values are only available to you via acyclic PROFIBUS traffic DPV1 The interpretation of the data changes dependent on the identity code The following data are consecutively numbered starting with number 4 and thus do not have the actual names of their user data Remarks After starting DULCOMARIN all control values are Converted measured Unit value Range 0 14 00 Example 720 7 20 pH Converted meas Unit ured value 1200 1200mV mV Temperature setpoint pool 1 to 16 Measured PROFIBUS Converted value input value measured range value Tempera 0 1200 Range 0 ture set 120 C point Pool 1 to Example 16 130 13 0 C only available on the PROFIBUS after 130 seconds Access Read write Access Read write Unit Access Read write ProMinent PROFIBUS acyclic data traffic control values and Pause ECO Mode active Channel 4 setpoint Pool 1 16 Measured value Sensor type Channel 4 set point Pool 1 16 Chlorine CLE 3 CGE CLE 3 1 Free chlorine Bromine ClO2 CDR
29. ex 1 oO ON 9 oa FW N U O OU OO OO N NNNNNNNNN a a a a a a yoa PO A DO OA WAN Oa FWY DO O WON DO A O WN O Data object pH setpoint pool 1 pH setpoint pool 2 pH setpoint pool 3 pH setpoint pool 4 pH setpoint pool 5 pH setpoint pool 6 pH setpoint pool 7 pH setpoint pool 8 pH setpoint pool 9 pH setpoint pool 10 pH setpoint pool 11 pH setpoint pool 12 pH setpoint pool 13 pH setpoint pool 14 pH setpoint pool 15 pH setpoint pool 16 Redox setpoint pool 1 Redox setpoint pool 2 Redox setpoint pool 3 Redox setpoint pool 4 Redox setpoint pool 5 Redox setpoint pool 6 Redox setpoint pool 7 Redox setpoint pool 8 Redox setpoint pool 9 Redox setpoint pool 10 Redox setpoint pool 11 Redox setpoint pool 12 Redox setpoint pool 13 Redox setpoint pool 14 Redox setpoint pool 15 Redox setpoint pool 16 Temperature setpoint pool 1 Temperature setpoint pool 2 Length 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte Type INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 Access Read write Read write Read wr
30. inent Installation and configuration manual DXCa CANopen PROFIBUS DP Gateway V1 2 gt ProM M o Ss A1241 Target group Programmers and trained users Please carefully read these operating instructions before use Do not discard The operator shall be liable for any damage caused by installation or operating errors Technical changes reserved 985473 These instructions are only valid in conjunction with the instructions DULCOMARIN II BA DC 081 07 12 EN ProMinent Dosiertechnik GmbH Im Schuhmachergewann 5 11 69123 Heidelberg Telephone 49 6221 842 0 Fax 49 6221 842 419 email info prominent de Internet www prominent com 985473 1 en_GB 2012 General non discriminatory approach Supplementary information ProMinent Supplemental instructions In order to make it easier to read this document uses the male form in grammatical structures but with an implied neutral sense It is aimed equally at both men and women We kindly ask female readers for their understanding in this simplification of the text Please read the supplementary information in its entirety The following are highlighted separately in the document Enumerated lists Instructions gt Outcome of the instructions Information This provides important information relating to the cor rect operation of the device or is intended to make your work easier Safety information The safety informati
31. ite Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write ProMinent No Slot 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 E E55 Bos Ei Bez BO BS ES na Es E55 Ba Bo Ba Eau ES ES ES Eo Eau Eau ES Bos nal BO BS ESCs Ba a ES ES ES ES ES ES EC EO EO ProMinent PROFIBUS acyclic data traffic control values and Pause ECO Mode active Index 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 Data object Temperature setpoint pool 3 Temperature setpoint pool 4 Temperature setpoint pool 5 Temperature setpoint pool 6 Temperature setpoint pool 7 Temperature setpoint pool 8 Temperature setpoint pool 9 Temperature setpoint pool 10 Temperature setpoint pool 11 Temperature setpoint pool 12 Temperature setpoint pool 13 Temperature setpoint pool 14 Temperature setpoint pool 15 Temperature setpoint pool 16 Channel 4 setpoint pool 1 Channel 4 setpoint pool 2 Chan
32. mg l PROFIBUS input value range Converted measured Unit value mA 0 9999 ppm mg l 0 9999 C 0 9999 ppm mg l 0 9999 W m mW cm 0 9999 FNU NTU FTU FAU EBC Remarks After starting DULCOMARIN II all control values are only available on the PROFIBUS after 130 seconds Non available or incorrect measured values are shown as Ox7FFF 32767 ProMinent pH control output Pool 1 16 Measured value pH control output Pool 1 16 pH control value Redox control output Pool 1 Measured value Redox control output Pool 1 16 redox control value Description of the data objects The interpretation of the data changes dependent on the identity code The following data are consecutively the actual names of their user data PROFIBUS input value range 1000 0 1000 16 PROFIBUS input value range 1000 0 1000 Temperature control output Pool 1 16 Measured value Temperature control output Pool 1 16 Temperature control value ProMinent PROFIBUS input value range 0 1000 Converted measured value Range 0 14 00 Example 720 7 20 pH Converted measured value 1200 to 1200 mV Converted measured value Range 0 120 C Example 130 13 0 numbered starting with number 4 and thus do not have Unit Unit Unit C 25 Description of the data objects Channel 4 control output
33. nel 4 setpoint pool 3 Channel 4 setpoint pool 4 Channel 4 setpoint pool 5 Channel 4 setpoint pool 6 Channel 4 setpoint pool 7 Channel 4 setpoint pool 8 Channel 4 setpoint pool 9 Channel 4 setpoint pool 10 Channel 4 setpoint pool 11 Channel 4 setpoint pool 12 Channel 4 setpoint pool 13 Channel 4 setpoint pool 14 Channel 4 setpoint pool 15 Channel 4 setpoint pool 16 Channel 5 setpoint pool 1 Channel 5 setpoint pool 2 Channel 5 setpoint pool 3 Channel 5 setpoint pool 4 Channel 5 setpoint pool 5 Channel 5 setpoint pool 6 Channel 5 setpoint pool 7 Channel 5 setpoint pool 8 Length 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte 2 Byte Type INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 INT16 Access Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read
34. o the DULCOMARIN II made by ProMi nent The DXCa Gateway may only be operated in conjunction with the named device and as described in this document The DXCa gateway was designed solely to create a connection between the PROFIBUS master and the DULCOMARIN II It is strictly forbidden to use the DXCa gateway in the following areas for military purposes or in weapons systems for the design construction maintenance or operation of nuclear plants in flight safety systems air traffic or flight communications sys tems inlife support systems in systems in which incorrect functioning of the gateway could result in physical injuries or fatal injuries You are advised that the DXCa gateway was not created for use in dangerous environments that require fail safe control mecha nisms The use of the DXCa gateway in such an environment is at your own risk any liability for damage or losses arising from imper missible use is excluded 2 1 Duty to read the user manual Before the installation and use of the DXCa gateway described in this document you must read and understand all instructions to avoid damage 2 2 Exclusion of plausibility checking of the setpoints At this point it is expressly pointed out that the DXCa PROFIBUS CAN gateway does not carry out any plausibility testing of the fed through parameters and setpoints Checking alarming or correction of these setpoints does not take place and is also technic
35. on includes detailed descriptions of the haz ardous situation Table of contents Table of contents Introduction tee ee 5 1 1 Technical datas oci i iiia i a 6 SECUNly ese vest a aa aa da aad aiad galaa a tna 8 2 1 Duty to read the user manual 8 2 2 Exclusion of plausibility checking of the setpoints 8 2 3 Explanation of the safety information 9 2 4 Users Qualifications 4neeen nennen 10 Commissioning Heigl 12 3 1 Connectorsffitting aene TN 12 3 2 Commissioning example using Step 7 14 Description of the data objects esenee eee 20 4 1 Actual vales 22s edice 0 Em 20 4 2 Control values nem 24 4 35 Status slavennn ei na ated eats 27 4 4 Error messages eeeeensssnnnnnennnnnnnnnnnnnnnnnnnnnnnnnnn nn 28 PROFIBUS acyclic data traffic control values and Pause ECO Mode active 444404 nennen 30 HT Setp lnls 2 22 east br iisihhalir ine 30 5 2 Addressing of acyclic values read write 33 LEDs and addressing 44444444444 40a 43 6 17 SYS LED sive dietitian ett ieee He 43 6 2 4B EL ED ian edel 44 6 3 SE EED nn sale Bike 44 6 4 BF2 EED an an aid 44 6 5 RUN LEB 122 0 45 Troubleshooting i irosen annaia 46 Append enana Beaded eesti ee eee eee 47 8 1 PROFIBUS DP interface enenne 47 Index E elek 49 ProMinent Introdu
36. ou can now configure the Step 7 DXCa gateway using measured values The configuring of the Step 7 DXCa gateway using measured values is illus trated in the following figure BAW Kan BAATIC KOT Kawtqestion DICH Beripeipreett gt ES BR ann ham tigen Deyasa Arade btm fencer hte OE A ii E amp unmun Fig 11 Step 7 DXCa gateway configuring measured values 9 Under the already described hardware catalogue you can now select the desired measured values To do this you must simply drag the desired measured value to the slots of the DXCa gateway You can change or adapt the addressing input addresses and the sequence of the measured values according to your own needs You must however ensure that at least one measured value is present at the slots of the DXCa gateway as otherwise the PLC program cannot be compiled 18 ProMinent ProMinent Commissioning 10 After you have populated the DXCa gateway with the desired measured values you can compile the program and load it in the PLC memory Description of the data objects 4 Description of the data objects 4 1 Actual values Remarks After starting DULCOMARIN II all actual values are only available on the PROFIBUS after 130 seconds Non available or incorrect measured values are shown as Ox7FFF 32767 Variables pH measured value Pool 1 16 Measured value PROFIBUS input value Converted measured value Unit range
37. put voltage Check the bus cable for short circuits or breaks Check whether the terminating resistances are in place at the first and last PROFIBUS members Check and change the transmission rate e g in the Step 7 Change the address using the rotary coding switch or via your development environment Check the CAN bus cable for short circuits and breaks Check whether the terminating resistances are in place at the first and last CAN members Check the CAN bus cable for short circuits and breaks Check whether the terminating resistances are in place at the first and last CAN members You have selected a measured value that is not avail able in the DULCOMARIN II Adjust your configura tion e g in the Step 7 ProMinent 8 Appendix 8 1 PROFIBUS DP interface Fig 13 PROFIBUS DP network ProMinent Appendix The PROFIBUS DP DXCa gateway is implemented as a potential free RS485 interface Ensure that terminating resistances are fitted at each end of the cable If you use special PROFIBUS connectors these resistances are often inside the connection and must be switched on For baud rates above 1 5 MBaud use only special PROFIBUS connectors which contain additional inductances At these high PROFIBUS baud rates no branch connection lines must be used Please only use a cable specifically approved for PROFIBUS DP For each device ensure there is a large surface area connection between the cable shielding
38. red trained in the tasks assigned to him her and possible dangers that could result from improper behaviour as well as having been instructed in the required pro tective equipment and protective meas ures A trained user is a person who fulfills the requirements made of an instructed person and who has also received additional training specific to the system from ProMi nent or another authorised distribution partner A technical expert is deemed to be a person who is able to assess the tasks assigned to him and recognize possible hazards based on his her technical training and experience as well as knowledge of pertinent regulations ProMinent ProMinent Security Training Definition Trained qualified A qualified employee is deemed to be a personnel person who is able to assess the tasks assigned to him and recognize possible hazards based on his her training knowl edge and experience as well as knowl edge of pertinent regulations The assess ment of a person s technical training can also be based on several years of work in the relevant field Electrician Electricians are deemed to be people who are able to complete work on electrical systems and recognize and avoid possible hazards independently based on their technical training and experience as well as knowledge of pertinent standards and regulations Electricians should be specifically trained for the working environment in which they are employed
39. t Pool 1 16 Measured value PROFIBUS input value range Converted measured Access value Channel 7 setpoint Pool Read write 1 16 Ht above sea level Channel 8 setpoint Pool 1 16 Measured value PROFIBUS input value range Converted measured Access value Channel 8 setpoint Pool Read write 1 16 Ht above sea level Channel 9 setpoint Pool 1 16 Measured value PROFIBUS input value range Converted measured Access value Channel 9 setpoint Pool Read write 1 16 Ht above sea level Channel 10 setpoint Pool 1 16 Measured value PROFIBUS input value range Converted measured Access value Channel 10 setpoint Pool 1 Read 16 write 12 edit mode 0 9999 mA Ammonia NH3 0 9999 ppm mg l Hydrogen peroxide H202 0 9999 ppm mg l Peracetic acid PES 0 9999 ppm mg l Conductive conductivity 0 9999 uS cm mS cm S 32 cm ProMinent PROFIBUS acyclic data traffic control values and Pause ECO Mode active Measured value PROFIBUS input value range CIO2 0 9999 02 0 9999 Channel 11 setpoint Pool 1 16 Measured value PROFIBUS input value range Channel 11 setpoint Pool 1 16 Ht above sea level Pause active Measured value PROFIBUS input value range Pause Pool 1 16 Pause active 1 Pause inactive 0 Under pause inactive the corresponding field contains a 0 ECO Mode active Measured value PROFIBUS input value range ECO Mode Pool 1 16
40. write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write Read write 35 PROFIBUS acyclic data traffic control values and Pause ECO Mode active No 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 36 Slot 5 Bol 5 ES Bos BO BS EO Bos Bo E55 Eo BS BS ES BS ES BS ES BS ES ES ES BS BSCS BC BS BO Bo ECs BS ECS ES ES EO ES EO EOS Index 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 Data object Channel 5 setpoint pool 9 Channel 5 setpoint pool 10 Channel 5 setpoint pool 11 Channel 5 setpoint pool 12 Channel 5 setpoint pool 13 Channel 5 setpoint pool 14 Channel 5 setpoint pool 15 Channel 5 setpoint pool 16 Channel 6 setpoint pool 1 Channel 6 setpoint pool 2 Channel 6 setpoint pool 3 Channel 6 setpoint pool 4 Channel 6 setpoint pool 5 Channel 6 setpoint pool 6 Channel 6 setpoint pool 7 Channel 6 setpoint pool 8 Channel 6 setpoint pool 9 Channel 6 setpoint pool 10 Channel 6 setpoint pool 11 Channel 6 setpoint pool 12 Channel 6 setpoint pool 13 Channel 6 setpoint pool 14 Channel 6 setpoint pool 15 Channel 6 setpoint pool 16 Channel 7

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