Changes for page 1 Communication
Last modified by Hunter on 2024/07/01 10:54
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... ... @@ -1,1 +1,1 @@ 1 -XWiki. Hunter1 +XWiki.Bob - Content
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... ... @@ -176,116 +176,16 @@ 176 176 177 177 The above are all the steps for establishing ethernet communication between V-BOX with LX5V PLC. 178 178 179 -= Create communication with Allen-Bradley(**Rockwell**)**PLC** =179 += Create communication with **Rockwell PLC** = 180 180 181 -== **DF1AdvancedProtocol** ==181 +== (% id="cke_bm_5621S" style="display:none" %)** **(%%)**MicroLogix Protocol** == 182 182 183 -MicroLogix 1000/1100/1200/1400/1500; SLC 5/03 5/04 5/05; PLC-5 184 - 185 -**1) V-Box Settings** 186 - 187 -|=Item|=Recommended |=Note 188 -|=Protocol|Allen Bradley DF1 Advanced| 189 -|=Connection|RS232| 190 -|=Baud rate|19200| 191 -|=Stop bits|1| 192 -|=Data bits|8| 193 -|=Parity|None| 194 -|=PLC Station No.|1| 195 -|=HMI Station No.|0| 196 - 197 -**2) Address List** 198 - 199 -|=**Type**|=**Device registers**|=**Format**|=**Range**|=Note 200 -|(% colspan="1" rowspan="7" %)Bit|I1|I1ddd.dd|0.0~~255.15|Only able to communicate with file number I1 201 -|O0|O0ddd.dd|0.0~~255.15|Only able to communicate with file number O0 202 -|S2|S2ddd.dd|0.0~~255.15|Only able to communicate with file number S2 203 -|B3|B3ddd.dd|0.0~~255.15|Only able to communicate with file number B3 204 -|BN|BNddddd.dd|0.0~~99255.15|((( 205 -Bit data file B0~~B99 206 - 207 -First two digits is for file number 208 - 209 -For example, BN13001.00 represents file number B13, address 001, the 0th bit. 210 -))) 211 -|N7|N7ddd.dd|0.0~~255.15|Only able to communicate with file number N7 212 -|NN|NNddddd.dd|0.0~~99255.15|((( 213 -Integer data file bit format N0~~N99 214 - 215 -First two digits is for file number 216 - 217 -For example, NN13001.00 represents file number N13, address 001, the 0th bit. 218 -))) 219 -|(% rowspan="11" %)Word|S2|S2ddd|0~~255|Only able to communicate with file number S2 220 -|T4S|T4Sddd|0~~255|Only able to communicate with file number T4 (Timer Preset Value) 221 -|T4P|T4Pddd|0~~255|Only able to communicate with file number T4 (Timer Accumulator Value) 222 -|TNS|TNSddddd|0~~99255|((( 223 -Timer Preset Value 224 - 225 -First two digits is for file number 226 - 227 -For example, TNS99255 represents file number T99, address 255. 228 -))) 229 -|TNP|TNPddddd|0~~99255|((( 230 -Timer Accumulator Value 231 - 232 -First two digits is for file number 233 - 234 -For example, TNP99255 represents file number T99, address 255. 235 -))) 236 -|C5S|C5Sddd|0~~255|Only able to communicate with file number C5 (Counter Preset Value) 237 -|C5P|C5Pddd|0~~255|Only able to communicate with file number C5 (Counter Accumulator Value) 238 -|CNS|CNSddddd|0~~99255|((( 239 -Counter Preset Value 240 - 241 -First two digits is for file number 242 - 243 -For example, CNS99255 represents file number C99, address 255. 244 -))) 245 -|CNP|CNPddddd|0~~99255|((( 246 -Counter Accumulator Value 247 - 248 -First two digits is for file number 249 - 250 -For example, CNP99255 represents file number C99, address 255. 251 -))) 252 -|N7|N7ddd|0~~255|Only able to communicate with file number N7 253 -|NN|NNddd|0~~99255|((( 254 -Integer data file 255 - 256 -First two digits is for file number 257 - 258 -For example, NN99255 represents file number N99, address 255. 259 -))) 260 -|(% colspan="1" rowspan="3" %)Double Word|F8|F8ddd|0~~255|((( 261 -Only able to communicate with file number N7 262 -))) 263 -|FN|FNddddd|0~~99255|((( 264 -Floating point data file 265 - 266 -First two digits is for file number 267 - 268 -For example, FN99255 represents file number F99, address 255. 269 -))) 270 -|LN|LNddddd|0~~99255|Long 271 - 272 -**3) Cable Wiring** 273 - 274 -(% style="text-align:center" %) 275 -[[image:ABRS232.gif]] 276 - 277 -(% class="wikigeneratedid" id="HMicroLogixA0Protocol" %) 278 -(% id="cke_bm_5621S" style="display:none" %)** ** 279 - 280 -== **MicroLogix Protocol** == 281 - 282 -(% class="wikigeneratedid" %) 283 283 MicroLogix 1000/1100/1200/1400/1500; SLC 5/03 5/04 5/05 PLC-5 284 284 285 285 **1)V-BOX setting** 286 286 287 287 |**Item**|**Settings**|**Note** 288 -|Protocol|Allen-Bradley DF1 Advanced| 188 +|Protocol|Allen-Bradlley DF1 Advanced| 289 289 |Connection|RS232| 290 290 |Baud rate|19200| 291 291 |Data bit|8| ... ... @@ -520,152 +520,11 @@ 520 520 The above are all the steps for establishing Ethernet communication between Wecon V-box with CompactLogix L1769 PLC. 521 521 522 522 523 -== ** Micro850_FreeTagProtocol(new)** ==423 +== **Allen-Bradley Ethernet DF1** == 524 524 525 -This example introduces the establishment of Ethernet communication between Wecon V-box and 2080-LC50-48QWB,Micro850. It is introduced through three parts: PLC software configuration, V-box software configuration. 526 - 527 -(% class="wikigeneratedid" id="HSoftwareconfigurationofPLC" %) 528 -((( 529 -**Software configuration of PLC** 530 -))) 531 - 532 -(% class="wikigeneratedid" id="HPLCprogrammingsoftware" %) 533 -((( 534 -**1)PLC programming software:Connected Components Workbench™** 535 - 536 -(% style="text-align:center" %) 537 -[[image:software.png]] 538 - 539 -**2)New PLC project** 540 - 541 -Click New Project and select the PLC model. 542 - 543 -(% style="text-align:center" %) 544 -[[image:project create.png]] 545 - 546 -**3)Set Ethernet parameters** 547 - 548 -Follow the steps below to configure Ethernet parameters 549 - 550 -PLC IP address:192.168.39.56 551 - 552 -default gateway:192.168.39.1 553 - 554 -subnet mask:255.255.255.0 555 - 556 -(% style="text-align:center" %) 557 -[[image:Ethernet.png]] 558 - 559 -**4)connect PLC** 560 - 561 -**When downloading the setting, need to change the status of the PLC to PRG** 562 - 563 -(% style="text-align:center" %) 564 -[[image:conne ab plc.png]] 565 - 566 -**V-box software configuration** 567 - 568 -**1)V-box programming software** 569 - 570 -(% style="text-align:center" %) 571 -[[image:v-net client vers.png]] 572 - 573 -**2)Set communication port parameters** 574 - 575 -In the device list on the left, find the Vbox that communicates with the L1769, click it and select configuration,communication port configuration in the main interface to add a communication protocol. 576 - 577 -(% style="text-align:center" %) 578 -[[image:V-NET_Client_t2Rg2wpSoY.png]] 579 - 580 -The communication port is selected as Ethernet, the device type is selected as Allen-Bradley, the protocol is Allen-BradleyMicro850_FreeTag EthemetIP, and the IP is the internal IP address of the L1769 PLC. The port number is 44818. 581 - 582 -(% style="text-align:center" %) 583 -[[image:V-NET_Client_communication.png]] 584 - 585 -Export variables from PLC, select CSV file, comma delimited.(% id="cke_bm_1950S" style="display:none" %) 586 - 587 -(% style="text-align:center" %) 588 -[[image:export1.png]] 589 - 590 -(% style="text-align:center" %) 591 -[[image:CCW.Shell_E5Cwj4tUL3.png]] 592 - 593 -After adding the protocol Allen-BradleyMicro850_FreeTag, click[[image:https://docs.we-con.com.cn/bin/download/V-BOX/V-Net/Training/1%20Communication/WebHome/image-20220714143838-2.png?rev=1.1||alt="image-20220714143838-2.png"]]icon add label. 594 - 595 -(% style="text-align:center" %) 596 -[[image:V-NET_Client_TNBuqy7T5r.png]] 597 - 598 -**3)Engineering production** 599 - 600 -According to your own needs, use the V-NET client software to edit the required data monitoring points. 601 - 602 -(% style="text-align:center" %) 603 -[[image:V-NET_Client_KOR0AHEA4M.png]] 604 - 605 - 606 -))) 607 - 608 -== **Ethernet DF1 Protocol** == 609 - 610 610 [[download link>>https://ftp.we-con.com.cn/Download/WIKI/V-BOX/Demo/%E9%80%9A%E8%AE%AF%E6%A1%88%E4%BE%8B/Allen-Bradley%20Ethernet%20DF1.zip]] 611 611 612 -= Create communication with **Crouzet PLC** = 613 613 614 -== **CROUZET M3 (FBD)** == 615 - 616 -Support Series: Crouzet Millenium 3 CD12/CB12 617 - 618 -**1)V-BOX setting** 619 - 620 -|=Item|=Recommended |=Note 621 -|=Protocol|CROUZET M3 (FBD)| 622 -|=Connection|RS232| 623 -|=Baud rate|115200| 624 -|=Stop bits|1| 625 -|=Data bits|7| 626 -|=Parity|EVEN| 627 - 628 -**2)Address List** 629 - 630 -|=**Type**|=**Device registers**|=**Format**|=**Range**|=Note 631 -|(% rowspan="4" %)Bit|I|I DD|1~~99|Input 632 -|SLIBit|SLIBit DD.dd|1.0~~24.15|Serial Link Input 633 -|SLOBit|SLOBit DD.dd|25.0~~48.15|Serial Link Output(Read only) 634 -|State|State D|1~~1|PLC state(Read only) 635 -|(% rowspan="5" %)Word|AI|AI DD|1~~99|Analog Input 636 -|SLIn|SLIn DD|1~~24|Serial Link Input 637 -|SLOut|SLOut DD|25~~48|Serial Link Output(Read only) 638 -|Time|Time D|1~~6|((( 639 -Time1: Second 640 - 641 -Time2: Minute 642 - 643 -Time3: Hour 644 - 645 -Time4: Day 646 - 647 -Time5: Month 648 - 649 -Time6: Year 650 -))) 651 -|Order|Order D|1~~1|((( 652 -Running command(Write only) 653 - 654 -~=2: Run mode; =1: Stop mode; 655 -))) 656 - 657 -**3)Cable Wiring** 658 - 659 -(% style="text-align:center" %) 660 -[[image:CrouzetRS232 VBox.png]] 661 - 662 -{{info}} 663 -**✎Note: **As the wiring diagram indicated, this protocol requires the DB9 serial port pin 4. But pin 4 is undefined for all V-Box, so it need the user to solder a Pull-up resistor to make the pin 4 working. As for how to solder the resistor on the motherboard, please contact with Wecon technical support for the details. 664 -{{/info}} 665 - 666 -= Create communication with **EMERSON PLC** = 667 - 668 - 669 669 = Create communication with **Siemens PLC** = 670 670 671 671 == **S7-200 Smart Ethernet Protocol** == ... ... @@ -849,97 +849,6 @@ 849 849 850 850 [[image:image-20220824162342-2.png]] 851 851 852 -== **LOGO Ethernet Protocol** == 853 - 854 -Supported Series: Siemens Logo 0BA0, 0BA1 series 855 - 856 -**V-BOX Settings** 857 - 858 - 859 -|**Items**|**Settings**|**Note** 860 -|Protocol|Siemens LOGO| 861 -|Connection|Ethernet| 862 -|Port No.|102| 863 -|PLC station No.|2| 864 - 865 -**Address List** 866 - 867 - 868 -|**Number**|**Address Type**|**Data Type**|**Range**|**DB Address**|**PLC Address** 869 -|1|RTC|Word|1-7|DB1.DBX984.0|0x001ec0 870 -|2|VB|Byte|0-1469|DB1.DBX0.0|0x000000 871 -|3|VD|Double Word|0-1466|DB1.DBX0.0|0x000000 872 -|4|VW|Word|0-1468|DB1.DBX0.0|0x000000 873 -|5|NAQ|Word|1-32|DB1.DBX1406.0|0x002bf0 874 -|6|NAI|Word|1-64|DB1.DBX1262.0|0x002770 875 -|7|AM|Word|1-64|DB1.DBX1118.0|0x0022f0 876 -|8|AQ|Word|1-16|DB1.DBX1072.0|0x002180 877 -|9|AI|Word|1-16|DB1.DBX1032.0|0x002040 878 -|10|I|Bit|1-64|DB1.DBX1024.0|0x002000 879 -|11|Q|Bit|1-64|DB1.DBX1064.0|0x002140 880 -|12|M|Bit|1-112|DB1.DBX1104.0|0x002280 881 -|13|NI|Bit|1-128|DB1.DBX1246.0|0x0026f0 882 -|14|NQ|Bit|1-128|DB1.DBX1390.0|0x002b70 883 -|15|V|Bit|0-14697|DB1.DBX0.0|0x000000 884 - 885 -**PLC Settings in LOGO Software:** 886 - 887 -Click [Tools]~-~-[Ethernet Connections],shown as below. 888 - 889 -(% style="text-align:center" %) 890 -[[image:PIStudio.12\.PLC protocols.WebHome@12.PLC Protocol_html_8b9d2322edf89519.png]] 891 - 892 -Set Ethernet connection parameter. IP, Subnet Mask, shown as below. 893 - 894 -(% style="text-align:center" %) 895 -[[image:PIStudio.12\.PLC protocols.WebHome@image-20221228142937-4.png]] 896 - 897 -**TSAP set**:The value set by local TSAP is the remote TSAP set in HMI. PLC's remote TSAP is the opposite,shown as below. 898 - 899 -(% style="text-align:center" %) 900 -[[image:PIStudio.12\.PLC protocols.WebHome@image-20221228143047-5.png]] 901 - 902 - **Download Project**: Click "Address book" to add the IP address to be downloaded (fi."Detect" to check whether the IP address can be detected. Then click “ok”, and the system will prompt that PLC will be "STOP" mode. Click “YES” to start download. 903 - 904 -(% style="text-align:center" %) 905 -[[image:PIStudio.12\.PLC protocols.WebHome@image-20221228143246-6.png]] 906 - 907 -**V-BOX Communication Settings** 908 - 909 -Set PLC IP in [IP Address] settings; 910 - 911 -(% style="text-align:center" %) 912 -[[image:LldwDGntf4.png]] 913 - 914 -Enable V-BOX Ethernet in [Network]; 915 - 916 -(% style="text-align:center" %) 917 -[[image:WgvjfWbQif.png]] 918 - 919 -TSAP setting 920 - 921 -* The initialization script needs to set the source TSAP address and the target TSAP address, otherwise the communication will not be successful. 922 - 923 -{{code language="LUA"}} 924 -function init.main() 925 -addr_setword("@W_0#HSW1200",8192) -- Set the source TSAP address 926 -addr_setword("@W_0#HSW1201",4096) -- Set the destination TSAP address 927 -end 928 -{{/code}} 929 - 930 -Note: The name of the test script is init, 8192 and 4096 are the data used for the test, there is no HSW address in the register option, but you can directly set the value of the corresponding address through the code. 931 - 932 -**✎Note:** 933 - 934 -* **Communication port configuration: ** 935 -** Continuous length needs to be set to 0. 936 -** Integration interval needs to be set to 1. (no change may result in data errors) 937 -** Set Port and Device Station NO. 938 -** Other set as defaulted. 939 -* **Notes on the use of registers:** 940 -** Register VD: Use only registers that are multiples of 4, such as 0, 4, 8, etc. 941 -** Register VW: Use only registers thay are multiples of 2, such as 0, 2, 4 etc. (Using an odd-length register may result in data errors, such as 2 3 4 ) 942 - 943 943 = Create communication with **Mitsubishi PLC** = 944 944 945 945 == **FX1S,1N,2N Serial Protocol** == ... ... @@ -1038,9 +1038,9 @@ 1038 1038 1039 1039 == **FX3U Ethernet Protocol** == 1040 1040 1041 - SupportedModules: FX3U-ENET-ADP,FX3U-ENET-L709 + Mitsubishi FX3U series PLC 1042 1042 1043 -** 1)V-BOXSettings**711 +**HMI Settings** 1044 1044 1045 1045 |Items|Settings|Note 1046 1046 |Protocol|Mitsubishi FX3U| ... ... @@ -1048,7 +1048,7 @@ 1048 1048 |Port No.|5009|Must be the same as the PLC setting 1049 1049 |PLC station No.|0| 1050 1050 1051 -** 2)Address List**719 +**Address List** 1052 1052 1053 1053 |**Type**|**Device registers**|**HMI registers**|**Format**|**Range**|**Note** 1054 1054 |(% colspan="1" rowspan="7" %)Bit|X|X|X OOO|0~~377| ... ... @@ -1064,20 +1064,22 @@ 1064 1064 |SD|SD|SD DDDD|8000~~8511| 1065 1065 |R|R|R DDDDD|0~~32767| 1066 1066 1067 -** 3)Ethernet Module Settings**735 +**Ethernet Module Settings** 1068 1068 1069 1069 FX3U-ENET-L module configuration 1070 1070 Set up the FX3U-ENET-L Ethernet module settings as follows. 1071 1071 Select the module location, which in this document is Module 0. 1072 1072 1073 -[[image:image-20221116 105850-1.png]]741 +[[image:image-20221116094003-1.png]] 1074 1074 743 + 1075 1075 Select "Operational setting" to enter the following screen. 1076 1076 1077 1077 The Ethernet module IP is set to 192.168.39.254 in this document, and other options are default. 1078 1078 1079 -[[image:image-20221116 105947-1.png]]748 +[[image:image-20221116094019-2.png]] 1080 1080 750 + 1081 1081 Select "Open setting" to enter the setting interface, the settings are as follows. 1082 1082 1083 1083 The third item "Protocol" selects TCP, and "Open system" selects MELSOFT connection, which allows the ... ... @@ -1084,8 +1084,9 @@ 1084 1084 1085 1085 Mitsubishi programming software GX works2 to communicate with the FX3U via the Ethernet module. 1086 1086 1087 -[[image:image-20221116 110802-1.png]]757 +[[image:image-20221116094038-3.png]] 1088 1088 759 + 1089 1089 Click on "transter setup" - "PC side I/F setting", see the following figure. 1090 1090 1091 1091 After setting, the first download must use the programming cable, as shown in the figure; after that, can ... ... @@ -1092,45 +1092,53 @@ 1092 1092 1093 1093 use the IP set in the "Ethernet board" to communicate directly with the network cable. 1094 1094 1095 -[[image:image-20221116 110832-2.png||height="423" width="708"]]766 +[[image:image-20221116094122-4.png||height="422" width="707"]] 1096 1096 768 + 1097 1097 Read and write data from the Ethernet module 1098 1098 1099 -[[image:image-20221116 110907-3.png]]771 +[[image:image-20221116094131-5.png||height="551" width="708"]] 1100 1100 773 + 1101 1101 Set "Transter setup" to COM communication, and read or write operation as shown below 1102 1102 1103 -[[image:image-20221116 110917-4.png]]776 +[[image:image-20221116094150-6.png]] 1104 1104 1105 -**4)PLC Settings (GX Works 2)** 1106 1106 779 +**PLC Settings (GX Works 2)** 780 + 1107 1107 Create a blank FX5U project 1108 1108 1109 1109 Find Current Connection in the navigation 1110 1110 1111 -[[image:image-20221116 111427-1.png||height="421" width="705"]]785 +[[image:image-20221116094206-7.png||height="425" width="711"]] 1112 1112 787 + 1113 1113 Select Connection Channel List 1114 1114 1115 1115 Select Ethernet board communication 1116 1116 1117 -[[image:image-20221116 111451-2.png||height="421" width="705"]]792 +[[image:image-20221116094709-9.png||height="427" width="715"]] 1118 1118 794 + 1119 1119 Select Ethernet Module 1120 1120 Set the IP address of the PLC 1121 1121 1122 -[[image:image-20221116 111509-3.png||height="666" width="699"]]798 +[[image:image-20221116094736-11.png||height="682" width="716"]] 1123 1123 800 + 1124 1124 Read or write PLC data, in this document is read 1125 1125 1126 -[[image:image-20221116 111651-4.png||height="416" width="697"]]803 +[[image:image-20221116094755-12.png||height="426" width="715"]] 1127 1127 1128 -[[image:image-20221116 111727-5.png||height="416" width="697"]]805 +[[image:image-20221116094803-13.png||height="427" width="715"]] 1129 1129 1130 -** 4)Configure the communicationprotocol**807 +**V-BOX Communication Setting** 1131 1131 1132 -[[image:image-20221119101946-2.png||height="395" width="695"]] 1133 1133 810 + 811 + 812 + 1134 1134 == **FX5U Serial Protocol** == 1135 1135 1136 1136 Mitsubishi FX5U series PLC ... ... @@ -1422,12 +1422,6 @@ 1422 1422 1423 1423 [[image:https://docs.we-con.com.cn/bin/download/PIStudio/12.PLC%20protocols/WebHome/12.PLC%20Protocol_html_2297240b57346b2a.png?width=401&height=170&rev=1.1||alt="12.PLC Protocol_html_2297240b57346b2a.png" height="170" width="401"]] 1424 1424 1425 -== **Q12H Serial Protocol** == 1426 - 1427 -This Demo shows V-BOX communicate with Q12H PLC by Q02H serial Protocol 1428 - 1429 -[[**Download link**>>https://ftp.we-con.com.cn/Download/WIKI/PI%20HMI/Demo/Communication/V-Box%20connect%20PLC%20Q12H.rar]] 1430 - 1431 1431 == **QJ71E71 Ethernet Protocol** == 1432 1432 1433 1433 Mitsubishi QJ71E71 Ethernet communication module; ... ... @@ -1476,13 +1476,10 @@ 1476 1476 1477 1477 * Click [Ethernet/CC IE/MELSECNET]; 1478 1478 * Please select [Ethernet] as network type; 1479 -* Set station I/O number according to situation (For example, 00 20 means that the module is connected to PLC CPU in first order);1152 +* Set station I/O number according to situation (For example, 0000 means that the module is connected to PLC CPU in first order); 1480 1480 * Select [Online] as Mode; 1481 -* [[image:image-20221119171343-2.png||height="341" width="587"]] 1482 1482 * Click [Operation setting] to set IP; 1483 1483 * Select [Binary Code] as [Communication Data Code]; 1484 -* [[image:image-20221119171436-3.png||height="354" width="588"]] 1485 -* Click [Open setting] 1486 1486 * Set protocol: TCP; 1487 1487 * Set [unpassive] in [Open system]; 1488 1488 * Set [receive] in [Fixed buffer]; ... ... @@ -1489,16 +1489,14 @@ 1489 1489 * Set [procedure Exist] in [Fixed buffer communication]; 1490 1490 * Disable [Pairing open]; 1491 1491 * Set [No confirm] in [Existence confirmation]; 1492 -* Host station port number: 5009;1162 +* Host station port number: 1025; 1493 1493 * Save settings; 1494 -* [[image:image-20221119171611-4.png||height="354" width="588"]] 1495 1495 * Download project into PLC and restart it 1496 1496 1497 1497 **4)Configure the communication protocol** 1498 1498 1499 -[[image:image-2022 1119171832-5.png||height="354" width="625"]]1168 +[[image:image-20220825143728-1.png]] 1500 1500 1501 - 1502 1502 **5)Cable Wiring** 1503 1503 1504 1504 [[image:https://docs.we-con.com.cn/bin/download/PIStudio/12.PLC%20protocols/WebHome/12.PLC%20Protocol_html_2297240b57346b2a.png?width=401&height=170&rev=1.1||alt="12.PLC Protocol_html_2297240b57346b2a.png"]] ... ... @@ -1507,105 +1507,12 @@ 1507 1507 1508 1508 == **DVP Ethernet Protocol** == 1509 1509 1510 - SupoortSeries:ELTA DVP20/32/40/60ES200RE/200TE or anyDVPmodels with built-inEthernetort, DELTA DVPEN01-SL module1178 +[[下载链接>>https://ftp.we-con.com.cn/Download/WIKI/V-BOX/Demo/%E9%80%9A%E8%AE%AF%E6%A1%88%E4%BE%8B/Delta%20DVP%20Ethernet.zip]] 1511 1511 1512 -**1)V-BOX Settings** 1513 - 1514 -|=**Items**|=**Settings**|=**Note** 1515 -|Protocol|DELTA DVP MODBUS TCP| 1516 -|Connection|Ethernet| 1517 -|Port No.|502| 1518 -|Device No.|1| 1519 -|VBox Device No.|0| 1520 - 1521 -**2)Address List ** 1522 - 1523 -|=**Type**|=(% style="width: 191px;" %)**Device registers**|=(% style="width: 217px;" %)**VBox registers**|=(% style="width: 168px;" %)**Format**|=(% style="width: 225px;" %)**Range**|=**Note** 1524 -|Bit|(% style="width:191px" %)X|(% style="width:217px" %)X|(% style="width:168px" %)X OOO|(% style="width:225px" %)0~~377| 1525 -|Bit|(% style="width:191px" %)Y|(% style="width:217px" %)Y|(% style="width:168px" %)Y OOO|(% style="width:225px" %)0~~377| 1526 -|Bit|(% style="width:191px" %)M0|(% style="width:217px" %)M0|(% style="width:168px" %)M0DDDD|(% style="width:225px" %)0~~1535| 1527 -|Bit|(% style="width:191px" %)M1|(% style="width:217px" %)M1|(% style="width:168px" %)M1DDDD|(% style="width:225px" %)1536~~4096| 1528 -|Bit|(% style="width:191px" %)T|(% style="width:217px" %)T|(% style="width:168px" %)TDDD|(% style="width:225px" %)0~~255| 1529 -|Bit|(% style="width:191px" %)C|(% style="width:217px" %)C|(% style="width:168px" %)CDDD|(% style="width:225px" %)0~~255| 1530 -|Bit|(% style="width:191px" %)S|(% style="width:217px" %)S|(% style="width:168px" %)SDDDD|(% style="width:225px" %)0~~1023| 1531 -|Word|(% style="width:191px" %)D0|(% style="width:217px" %)D0|(% style="width:168px" %)D0DDDD|(% style="width:225px" %)0~~4095| 1532 -|Word|(% style="width:191px" %)D1|(% style="width:217px" %)D1|(% style="width:168px" %)D1DDDD|(% style="width:225px" %)4096~~11999| 1533 -|Word|(% style="width:191px" %)T|(% style="width:217px" %)T|(% style="width:168px" %)TDDD|(% style="width:225px" %)0~~255| 1534 -|Word|(% style="width:191px" %)C|(% style="width:217px" %)C|(% style="width:168px" %)CDDD|(% style="width:225px" %)0~~199| 1535 -|Double Word|(% style="width:191px" %)HC|(% style="width:217px" %)HC|(% style="width:168px" %)HCDDD|(% style="width:225px" %)200~~255| 1536 - 1537 -**3) PLC Setting:** 1538 - 1539 -~1. Create new project in Delta WPL Soft, and click Setting to open the communication settings: 1540 - 1541 -(% style="text-align:center" %) 1542 -[[image:DVPEthernetWPLSoft2.png]] 1543 - 1544 -2. Set up the communication type and PLC IP: 1545 - 1546 -(% style="text-align:center" %) 1547 -[[image:DVPEthernetSetup.png]] 1548 - 1549 -(% class="wikigeneratedid" %) 1550 -3. Click OK and save the settings. Then click Communication on toolbar, then click Transfer Setup to open new window: 1551 - 1552 -(% style="text-align:center" %) 1553 -[[image:DVPEthernetTransfer.png]] 1554 - 1555 -(% class="wikigeneratedid" %) 1556 -4. Select Communication Mode as PC => PLC to download or select PC <=PLC to upload: 1557 - 1558 -(% style="text-align:center" %) 1559 -[[image:DVPEthernetPLCtoPC.png]] 1560 - 1561 -5. Click Auto-Search Ethernet Module to find the PLC on the same LAN network: 1562 - 1563 -(% style="text-align:center" %) 1564 -[[image:DVPEthernetAutoSearch.png]] 1565 - 1566 -**4) V-BOX Setting:** 1567 - 1568 -Set the same IP address according to the setting from WPL Soft: 1569 - 1570 -(% style="text-align:center" %) 1571 -[[image:DVPEthernetVNETPortocol.png]] 1572 - 1573 1573 == **DVP serial protocol** == 1574 1574 1575 - SupoortSeries:DELTA DVP EH/ES/SS/EX/EH2/SV/SA/SC/SX1182 +[[下载链接>>https://ftp.we-con.com.cn/Download/WIKI/V-BOX/Demo/%E9%80%9A%E8%AE%AF%E6%A1%88%E4%BE%8B/Delta%20DVP%20Ethernet.zip]] 1576 1576 1577 -**1)V-BOX Settings** 1578 - 1579 -|=**Items**|=**Settings**|=**Note** 1580 -|Protocol|DELTA DVP PROTOCOL| 1581 -|Connection|RS232| 1582 -|Baud Rate|9600| 1583 -|Stop Bit|1| 1584 -|Data Bit|7| 1585 -|Parity|EVEN| 1586 -|Device No.|1| 1587 - 1588 -(% class="wikigeneratedid" %) 1589 -**2)Address List** 1590 - 1591 -|=**Type**|=(% style="width: 191px;" %)**Device registers**|=(% style="width: 217px;" %)**VBox registers**|=(% style="width: 168px;" %)**Format**|=(% style="width: 225px;" %)**Range**|=**Note** 1592 -|Bit|(% style="width:191px" %)X|(% style="width:217px" %)X|(% style="width:168px" %)X OOOOOO|(% style="width:225px" %)0~~303237| 1593 -|Bit|(% style="width:191px" %)Y|(% style="width:217px" %)Y|(% style="width:168px" %)Y OOOOOO|(% style="width:225px" %)0~~303237| 1594 -|Bit|(% style="width:191px" %)M|(% style="width:217px" %)M|(% style="width:168px" %)MDDDDD|(% style="width:225px" %)0~~99999| 1595 -|Bit|(% style="width:191px" %)T|(% style="width:217px" %)T|(% style="width:168px" %)TDDDDD|(% style="width:225px" %)0~~99999| 1596 -|Bit|(% style="width:191px" %)C|(% style="width:217px" %)C|(% style="width:168px" %)CDDDDD|(% style="width:225px" %)0~~99999| 1597 -|Bit|(% style="width:191px" %)S|(% style="width:217px" %)S|(% style="width:168px" %)SDDDDD|(% style="width:225px" %)0~~99999| 1598 -|Word|(% style="width:191px" %)D|(% style="width:217px" %)D|(% style="width:168px" %)D DDDDD|(% style="width:225px" %)0~~99999| 1599 -|Word|(% style="width:191px" %)T|(% style="width:217px" %)T|(% style="width:168px" %)TDDDDD|(% style="width:225px" %)0~~99999| 1600 -|Word|(% style="width:191px" %)C|(% style="width:217px" %)C|(% style="width:168px" %)CDDD|(% style="width:225px" %)0~~199| 1601 -|Double Word|(% style="width:191px" %)C|(% style="width:217px" %)C|(% style="width:168px" %)CDDDDD|(% style="width:225px" %)200~~99999| 1602 - 1603 -(% class="wikigeneratedid" %) 1604 -**3)Wiring Diagram** 1605 - 1606 -(% style="text-align:center" %) 1607 -[[image:Delta DVP PROTOCOLSerial232.png]] 1608 - 1609 1609 == **AS Ethernet Protocol** == 1610 1610 1611 1611 **1)V-BOX Settings** ... ... @@ -1639,6 +1639,7 @@ 1639 1639 1640 1640 **3)Configure the communication protocol** 1641 1641 1217 + 1642 1642 [[image:image-20220831160010-4.png]] 1643 1643 1644 1644 **4)Cable Wiring** ... ... @@ -1771,7 +1771,7 @@ 1771 1771 1772 1772 **1)V-BOX Settings** 1773 1773 1774 -Supported Series: Xinjie XD/XE Series PLC 1350 +Supported Series: Delta Xinjie XD/XE Series PLC 1775 1775 1776 1776 |**Item**|**Settings**|**Note** 1777 1777 |Protocol|XINJE XD/XC MODBUS| ... ... @@ -1841,6 +1841,7 @@ 1841 1841 1842 1842 [[image:https://docs.we-con.com.cn/bin/download/PIStudio/12.PLC%20protocols/WebHome/image-20220830160232-3.png?rev=1.1||alt="image-20220830160232-3.png"]] 1843 1843 1420 + 1844 1844 = Create communication with **Schneider PLC** = 1845 1845 1846 1846 == **Schneider MODBUS RTU** == ... ... @@ -2085,86 +2085,6 @@ 2085 2085 (% style="text-align:center" %) 2086 2086 [[image:1624342015914-382.png||height="486" width="800" class="img-thumbnail"]] 2087 2087 2088 -== **Communicate with Modbus Meter** == 2089 - 2090 -The following example is using the Linfee meter LNF96EY to demonstrate how to set up the Modbus communication. 2091 - 2092 -~1. Wiring the RS485 cable first. Because the pin 58 is A, the pin 59 is B for meter. Here we use the COM1 to connect. So the diagram like follows: 2093 - 2094 -(% style="text-align:center" %) 2095 -[[image:LinfeeTerminalDiagram.png]] 2096 - 2097 -2. Check the specific Modbus parameter in the communication menu from LED display. 2098 - 2099 -So from the following pictures, we can know the Meter Address is 85, Baud rate is 9600, CRC None. 2100 - 2101 -{{info}} 2102 -**✎Note: **Meter address usually corresponding to the Modbus Slave Station No. on the Modbus communication. 2103 -{{/info}} 2104 - 2105 -(% style="text-align:center" %) 2106 -[[image:MeterModbusAllView.png]] 2107 - 2108 -(% class="wikigeneratedid" %) 2109 -3. Set up the communication in the Configuration tab. 2110 - 2111 -(% class="wikigeneratedid" %) 2112 -Select the protocol as **ModBus RTU Slave (All Function)**. And set the communication parameters like below. 2113 - 2114 -(% style="text-align:center" %) 2115 -[[image:VNETCommunicationtabmeter.png]] 2116 - 2117 -(% class="wikigeneratedid" %) 2118 -4. Create new real-time monitoring tag accroding to Modbus manual 2119 - 2120 -(% class="wikigeneratedid" %) 2121 -Enter the address we want to read from the meter. The following table is intercept part of the manual for Linfee Modbus manual. 2122 - 2123 -(% class="wikigeneratedid" %) 2124 -**0x03/0x04 command data register address**: 2125 - 2126 -(% style="width:1142.22px" %) 2127 -|(% style="display:none" %) |=(% colspan="2" rowspan="1" style="width: 165px;" %)Address(% style="display:none" %) |=Description|=Data Format|=(% style="width: 254px;" %)Data Length(Word)|=(% style="width: 282px;" %)Remark 2128 -|(%%)(% style="display:none" %) (%%) HEX|(% style="width:107px" %)DEC|(%%)(% style="display:none" %) (%%) |(% style="width:100px" %) |(%%)(% style="display:none" %) (%%) |(% style="width:318px" %) 2129 -|(% style="width:107px" %)0x00|(% style="width:100px" %)0|Reserved| | |(% style="width:318px" %) 2130 -|(% style="width:107px" %)0x02|(% style="width:100px" %)2|Reserved| | |(% style="width:318px" %) 2131 -|(% style="width:107px" %)0x04|(% style="width:100px" %)4|Reserved| | |(% style="width:318px" %) 2132 -|(% style="width:107px" %)0x06|(% style="width:100px" %)6|Ua|float|2|(% style="width:318px" %)Phase Voltage data, Unit V 2133 -|(% style="width:107px" %)0x08|(% style="width:100px" %)8|Ub|float|2|(% style="width:318px" %)Phase Voltage data, Unit V 2134 -|(% style="width:107px" %)0x0A|(% style="width:100px" %)10|Uc|float|2|(% style="width:318px" %)Phase Voltage data, Unit V 2135 -|(% style="width:107px" %)0x0C|(% style="width:100px" %)12|Uab|float|2|(% style="width:318px" %)Line Voltage data, Unit V 2136 -|(% style="width:107px" %)0x0E|(% style="width:100px" %)14|Ubc|float|2|(% style="width:318px" %)Line Voltage data, Unit V 2137 -|(% style="width:107px" %)0x10|(% style="width:100px" %)16|Uca|float|2|(% style="width:318px" %)Line Voltage data, Unit V 2138 -|(% style="width:107px" %)0x12|(% style="width:100px" %)18|Ia|float|2|(% style="width:318px" %)Phase Current data, Unit A 2139 -|(% style="width:107px" %)0x14|(% style="width:100px" %)20|Ib|float|2|(% style="width:318px" %)Phase Current data, Unit A 2140 -|(% style="width:107px" %)0x16|(% style="width:100px" %)22|Ic|float|2|(% style="width:318px" %)Phase Current data, Unit A 2141 - 2142 -{{info}} 2143 -**✎Note: **We usually use the Data Type 4 for read the Modbus registers(Function Code 03) 2144 -{{/info}} 2145 - 2146 -For example, here we want to read the Phase Voltage Ua (Modbus offset 0006), the Modbus register main No. requires input decimal number, and check whether the actual address has one address offset, so the tag configured like the following screenshot: 2147 - 2148 -(% style="text-align:center" %) 2149 -[[image:VNETModbusTagSettings.png]] 2150 - 2151 -(% style="text-align:center" %) 2152 -[[image:VNETModbusTagByteSettings.png]] 2153 - 2154 -{{info}} 2155 -**✎Note: **If the read value is incorrect, please check whether need to change the Byte order. 2156 -{{/info}} 2157 - 2158 -Set the Modbus Slave Station No. 2159 - 2160 -(% style="text-align:center" %) 2161 -[[image:ModbusStationSettings.png]] 2162 - 2163 -If the communication is setup successfully, the tag will show green light. 2164 - 2165 -(% style="text-align:center" %) 2166 -[[image:Monitoringtaggreenlight.png]] 2167 - 2168 2168 == **MODBUS RTU Master** == 2169 2169 2170 2170 Select the protocol "Modbus RTU Master", ... ... @@ -2177,8 +2177,8 @@ 2177 2177 **address list** 2178 2178 2179 2179 (% class="table-bordered" %) 2180 -| =(% scope="row" %)**Type**|=**Data Type**|=**Function code and description**2181 -|(% rowspan="11" %) Word|(% rowspan="3" %)3|04 (Read Input Registers: Read the current binary value in one or more input registers)1677 +|**type**|**register**|**Function code and description** 1678 +|(% rowspan="11" %)词|(% rowspan="3" %)3|04 (Read Input Registers: Read the current binary value in one or more input registers) 2182 2182 |06 (write single register: write a binary value to a holding register) 2183 2183 |10 (write values to multiple addresses ) 2184 2184 |(% rowspan="3" %)4|03 (read holding register: read current binary value in one or more holding registers) ... ... @@ -2217,7 +2217,7 @@ 2217 2217 2218 2218 **2)Address List** 2219 2219 2220 -| =**Type**|=**Data Type**|=**Function code & Description**1717 +|**Type**|**Register**|**Function code & Description** 2221 2221 |(% rowspan="11" %)Word|(% rowspan="3" %)3|04 (read input register: read current binary value in one or more input registers) 2222 2222 |06 (write single register: write a binary value to a holding register) 2223 2223 |10 (write values to multiple addresses )
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