Changes for page 1 Communication
Last modified by Hunter on 2024/07/01 10:54
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... ... @@ -1,33 +1,53 @@ 1 -= = 1 += **Modbus RTU** = 2 2 3 +=== **V-BOX as master** === 4 + 5 +Select the protocol “(% class="mark" %)Modbus RTU Slave(All Fuction)”, 6 + 7 +(% class="mark" %)then set BaudRate,Port,Stop Bit,Data Bit,Parity 8 + 9 +(% style="text-align:center" %) 10 +[[image:1624342015914-382.png||height="486" width="800" class="img-thumbnail"]] 11 + 12 +=== **V-BOX as slave** === 13 + 14 +Select the protocol “(% class="mark" %)**Modbus RTU Master”**, 15 + 16 +(% class="mark" %)then set BaudRate,Port,Stop Bit,Data Bit,Parity 17 + 18 +(% style="text-align:center" %) 19 +[[image:1624348709622-711.png||queryString="width=809&height=493" height="488" width="800" class="img-thumbnail"]] 20 + 21 +**Address List** 22 + 3 3 (% class="table-bordered" %) 4 -| 5 -|(% rowspan="11" %) 6 -| 7 -| 8 -|(% rowspan="3" %) 9 -| 10 -| 11 -|(% rowspan="3" %) 12 -| 13 -| 14 -|(% rowspan="2" %) 15 -| 16 -|(% rowspan="11" %) 17 -| 18 -| 19 -|(% rowspan="3" %) 20 -| 21 -| 22 -|(% rowspan="3" %) 23 -| 24 -| 25 -|(% rowspan="2" %) 26 -| 24 +|**Type**|**Register**|**Function code & Description** 25 +|(% rowspan="11" %)Word|(% rowspan="3" %)3|04 (read input register: read current binary value in one or more input registers) 26 +|06 (write single register: write a binary value to a holding register) 27 +|10 (write values to multiple addresses ) 28 +|(% rowspan="3" %)4|03 (read holding register: read current binary value in one or more holding registers) 29 +|06 (write single register: write a binary value to a holding register) 30 +|10 (write values to multiple addresses ) 31 +|(% rowspan="3" %)W6|03 (read holding register: read current binary value in one or more holding registers) 32 +|06 (write single register: write a binary value to a holding register) 33 +|10 (write values to multiple addresses ) 34 +|(% rowspan="2" %)W16|03 (read holding register: read current binary value in one or more holding registers) 35 +|10 (write values to multiple addresses ) 36 +|(% rowspan="11" %)Bit|(% rowspan="3" %)0|01 (Read coil state) 37 +|05 (Force a single coil to force the on/off state of a logic coil) 38 +|0F (Write multiple bits, ie write continuously) 39 +|(% rowspan="3" %)1|02 (Read the input state) 40 +|05 (Force a single coil to force the on/off state of a logic coil) 41 +|0F (Write multiple bits) 42 +|(% rowspan="3" %)W5|01 (Read coil state to obtain the current state of a set of logic coils) 43 +|05 (Force a single coil to force the on/off state of a logic coil) 44 +|0F (Write multiple bits) 45 +|(% rowspan="2" %)W15|01 (Read coil state to obtain the current state of a set of logic coils) 46 +|0F (Write multiple bits) 27 27 28 28 = **WECON PLC** = 29 29 30 -== **LX3V 串行通信** == 50 +== **V-BOX 和维控 LX3V 串行通信** == 31 31 32 32 Supported series: WECON LX2V/ LX2E/ LX3V/LX3VP/LX3VE/LX3VM 33 33 ... ... @@ -78,8 +78,9 @@ 78 78 79 79 [[https:~~/~~/drive.google.com/drive/folders/13rgso7oUlatZQN_SNEcJCcN4toEdDPoP?usp=sharing>>url:https://drive.google.com/drive/folders/13rgso7oUlatZQN_SNEcJCcN4toEdDPoP?usp=sharing]] 80 80 81 -== **LX5V serial communication** == 82 82 102 +== **V-BOX and Wecon LX5V serial communication** == 103 + 83 83 This example introduces the establishment of serial port communication between Wecon V-BOX and LX5V. It is introduced through three parts: PLC software configuration, HMI software configuration, and hardware wiring. 84 84 85 85 **Software configuration of PLC** ... ... @@ -154,7 +154,7 @@ 154 154 155 155 The above are all the steps for establishing serial port communication between Wecon HMI with LX5V PLC. 156 156 157 -== **LX5V-N Ethernet communication** == 178 +== **V-BOX and Wecon LX5V-N Ethernet communication** == 158 158 159 159 This example introduces the establishment of Ethernet communication between Wecon HMI and LX5V. It is introduced through three parts: PLC software configuration, HMI software configuration, and hardware wiring. 160 160 ... ... @@ -229,51 +229,14 @@ 229 229 230 230 = **Rockwell PLC** = 231 231 232 -== (%id="cke_bm_5621S" style="display:none"%)** **(%%)**MicroLogix** ==253 +== **Communication with AB CompactLogix L1769** == 233 233 234 -MicroLogix 1000/1100/1200/1400/1500; SLC 5/03 5/04 5/05 PLC-5 235 - 236 -**HMI Settings** 237 - 238 -|**Item**|**Settings**|**Note** 239 -|Protocol|Allen-Bradlley MicroLogix| 240 -|Connection|RS232| 241 -|Baud rate|19200| 242 -|Data bit|8| 243 -|Parity|None| 244 -|Stop bit|1| 245 -|PLC station No.|1| 246 - 247 -**Address List** 248 - 249 -|**Type**|**Device registers**|**Format**|**Range**|**Note** 250 -|(% rowspan="5" %)Bit|I|I d.d|0.0~~255.15| 251 -|O|O d.d|0.0~~255.15| 252 -|B|B nnhh.dd|0.0~~ffff.15|nn: block number (hex) 253 -|S|S d.d|0.0~~255.15| 254 -|N|N nnhh.dd|0.0~~ffff.15|nn: block number (hex) 255 -|(% rowspan="9" %)Word|S|S d|0~~255| 256 -|TS|TS nnhh|0~~ffff|(% rowspan="8" %)nn: block number (hex) 257 -|TP|TP nnhh|0~~ffff 258 -|CS|CS nnhh|0~~ffff 259 -|CP|CP nnhh|0~~ffff 260 -|N|N nnhh|0~~ffff 261 -|C|C nnhh|0~~ffff 262 -|T|T nnhh|0~~ffff 263 -|R|R nnhh|0~~ffff 264 - 265 -**Cable Wiring** 266 - 267 -[[image:image-20220824110724-1.png]] 268 - 269 - 270 - 271 -== **CompactLogix** == 272 - 273 273 ((( 274 274 ((( 275 -This example introduces the establishment of Ethernet communication between Wecon V-box and CompactLogixL1769. It is introduced through three parts: PLC software configuration, V-box software configuration, and hardware wiring.257 +This example introduces the establishment of Ethernet communication between Wecon V-box and Allen-Bradley L1769. It is introduced through three parts: PLC software configuration, V-box software configuration, and hardware wiring. 276 276 ))) 259 + 260 + 277 277 ))) 278 278 279 279 ((( ... ... @@ -468,9 +468,46 @@ 468 468 [[image:image-20220714162856-13.png]] 469 469 470 470 ((( 471 -The above are all the steps for establishing Ethernet communication between Wecon V-box with CompactLogixL1769 PLC.455 +The above are all the steps for establishing Ethernet communication between Wecon V-box with Allen-Bradley L1769 PLC. 472 472 457 +== **MicroLogix** == 473 473 459 +MicroLogix 1000/1100/1200/1400/1500; SLC 5/03 5/04 5/05 PLC-5 460 + 461 +**HMI Settings** 462 + 463 +|**Item**|**Settings**|**Note** 464 +|Protocol|Allen-Bradlley MicroLogix| 465 +|Connection|RS232| 466 +|Baud rate|19200| 467 +|Data bit|8| 468 +|Parity|None| 469 +|Stop bit|1| 470 +|PLC station No.|1| 471 + 472 +**Address List** 473 + 474 +|**Type**|**Device registers**|**Format**|**Range**|**Note** 475 +|(% rowspan="5" %)Bit|I|I d.d|0.0~~255.15| 476 +|O|O d.d|0.0~~255.15| 477 +|B|B nnhh.dd|0.0~~ffff.15|nn: block number (hex) 478 +|S|S d.d|0.0~~255.15| 479 +|N|N nnhh.dd|0.0~~ffff.15|nn: block number (hex) 480 +|(% rowspan="9" %)Word|S|S d|0~~255| 481 +|TS|TS nnhh|0~~ffff|(% rowspan="8" %)nn: block number (hex) 482 +|TP|TP nnhh|0~~ffff 483 +|CS|CS nnhh|0~~ffff 484 +|CP|CP nnhh|0~~ffff 485 +|N|N nnhh|0~~ffff 486 +|C|C nnhh|0~~ffff 487 +|T|T nnhh|0~~ffff 488 +|R|R nnhh|0~~ffff 489 + 490 +**Cable Wiring** 491 + 492 + 493 + 494 + 474 474 == **Allen-Bradley Ethernet DF1** == 475 475 476 476 [[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]] ... ... @@ -498,8 +498,6 @@ 498 498 499 499 [[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/Delta%20DVP%20Ethernet.zip]] 500 500 501 -= **Mitsubishi PLC** = 502 - 503 503 == **Communicate with Mitsubishi FX Series** == 504 504 505 505 [[download link>>url:https://ftp.we-con.com.cn/Download/WIKI/V-BOX/Demo/%E9%80%9A%E8%AE%AF%E6%A1%88%E4%BE%8B/Communicate%20with%20Mitsubishi%20FX%20Series.zip]] ... ... @@ -508,8 +508,6 @@ 508 508 509 509 [[download link>>url:https://ftp.we-con.com.cn/Download/WIKI/V-BOX/Demo/%E9%80%9A%E8%AE%AF%E6%A1%88%E4%BE%8B/Communicate%20with%20VB%20inverter.zip]] 510 510 511 -= **Omron PLC** = 512 - 513 513 == **Omron CP1 Series** == 514 514 515 515 [[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/Communication%20with%20ORMON%20CP1%20Series.zip]] ... ... @@ -518,56 +518,8 @@ 518 518 519 519 [[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/Communication%20with%20ORMON%20CJ2M.zip]] 520 520 538 += **2 User define protocol** = 521 521 522 -= **Modbus RTU** = 523 - 524 -=== **V-BOX as master** === 525 - 526 -Select the protocol “(% class="mark" %)Modbus RTU Slave(All Fuction)”, 527 - 528 -(% class="mark" %)then set BaudRate,Port,Stop Bit,Data Bit,Parity 529 - 530 -(% style="text-align:center" %) 531 -[[image:1624342015914-382.png||height="486" width="800" class="img-thumbnail"]] 532 - 533 -=== **V-BOX as slave** === 534 - 535 -Select the protocol “(% class="mark" %)**Modbus RTU Master”**, 536 - 537 -(% class="mark" %)then set BaudRate,Port,Stop Bit,Data Bit,Parity 538 - 539 -(% style="text-align:center" %) 540 -[[image:1624348709622-711.png||queryString="width=809&height=493" height="488" width="800" class="img-thumbnail"]] 541 - 542 -**Address List** 543 - 544 -(% class="table-bordered" %) 545 -|**Type**|**Register**|**Function code & Description** 546 -|(% rowspan="11" %)Word|(% rowspan="3" %)3|04 (read input register: read current binary value in one or more input registers) 547 -|06 (write single register: write a binary value to a holding register) 548 -|10 (write values to multiple addresses ) 549 -|(% rowspan="3" %)4|03 (read holding register: read current binary value in one or more holding registers) 550 -|06 (write single register: write a binary value to a holding register) 551 -|10 (write values to multiple addresses ) 552 -|(% rowspan="3" %)W6|03 (read holding register: read current binary value in one or more holding registers) 553 -|06 (write single register: write a binary value to a holding register) 554 -|10 (write values to multiple addresses ) 555 -|(% rowspan="2" %)W16|03 (read holding register: read current binary value in one or more holding registers) 556 -|10 (write values to multiple addresses ) 557 -|(% rowspan="11" %)Bit|(% rowspan="3" %)0|01 (Read coil state) 558 -|05 (Force a single coil to force the on/off state of a logic coil) 559 -|0F (Write multiple bits, ie write continuously) 560 -|(% rowspan="3" %)1|02 (Read the input state) 561 -|05 (Force a single coil to force the on/off state of a logic coil) 562 -|0F (Write multiple bits) 563 -|(% rowspan="3" %)W5|01 (Read coil state to obtain the current state of a set of logic coils) 564 -|05 (Force a single coil to force the on/off state of a logic coil) 565 -|0F (Write multiple bits) 566 -|(% rowspan="2" %)W15|01 (Read coil state to obtain the current state of a set of logic coils) 567 -|0F (Write multiple bits) 568 - 569 -= **User define protocol** = 570 - 571 571 More serial port script instruction,please refer manual:[[Lua script function>>doc:V-BOX.V-Net.Manual.04 Lua Script.01 Lua Functions.WebHome]]~-~-->[[3.Serial port operation>>url:http://docs.we-con.com.cn/wiki/vbox/view/HMI/04.Lua%20script%20%20function%20and%20operation/01.Lua%20script%20function/#H3.Serialportoperation]] 572 572 573 573 == **Read the temperature sensor.** ==
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