Changes for page 1 Communication
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... ... @@ -1,228 +1,71 @@ 1 -= (%style="color:inherit;font-family:inherit"%)**WECONPLC**(%%)=1 += **1 General communication with PLC** = 2 2 3 -== ** LX3V Serial Protocol** ==3 +== **Modbus RTU** == 4 4 5 - Supportedseries: WECON LX2V/LX2E/LX3V/LX3VP/LX3VE/LX3VM5 +=== **V-BOX as master** === 6 6 7 - **HMISettings**7 +Select the protocol “(% class="mark" %)Modbus RTU Slave(All Fuction)”, 8 8 9 -|**Item**|**Settings**|**Note** 10 -|Protocol|WECON LX2V/ LX2E/ LX3V/LX3VP/LX3VE/LX3VM| 11 -|Connection|RS422/RS485| 12 -|Baud rate|9600| 13 -|Data bit|7| 14 -|Parity|EVEN| 15 -|Stop bit|1| 16 -|PLC station No.|1| 9 +(% class="mark" %)then set BaudRate,Port,Stop Bit,Data Bit,Parity 17 17 18 -**Address List** 11 +(% style="text-align:center" %) 12 +[[image:1624342015914-382.png||height="486" width="800" class="img-thumbnail"]] 19 19 20 -|**Type**|**Device registers**|**HMI registers**|**Format**|**Range**|**Note** 21 -|(% rowspan="6" %)Bit|X|X|Xo|0~~303237| 22 -|Y|Y|Y o|0~~303237| 23 -|M|M|M d|0~~99999| 24 -|T|T|T d|0~~99999| 25 -|C|C|C d|0~~99999| 26 -|S|S|S d|0~~99999| 27 -|(% rowspan="8" %)Word|X|X|Xo|0~~303237| 28 -|Y|Y|Y o|0~~303237| 29 -|M|M|M d|0~~99999| 30 -|T|T|T d|0~~99999| 31 -|C|C|C d|0~~199| 32 -|D|D|D d|0~~7999| 33 -|S|S|S d|0~~99999| 34 -|SD|SD|SD d|8000~~9999| 14 +=== **V-BOX as slave** === 35 35 36 -** CableWiring**16 +Select the protocol “(% class="mark" %)**Modbus RTU Master”**, 37 37 38 - ***RS422**18 +(% class="mark" %)then set BaudRate,Port,Stop Bit,Data Bit,Parity 39 39 40 - [[image:image-20220824120614-5.png]] 20 +(% style="text-align:center" %) 21 +[[image:1624348709622-711.png||queryString="width=809&height=493" height="488" width="800" class="img-thumbnail"]] 41 41 42 -* **RS485** 43 - 44 - [[image:image-20220824120524-3.png]] 45 - 46 -== **LX5V Serial Protocol** == 47 - 48 -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. 49 - 50 -**Software configuration of PLC** 51 - 52 -**1)PLC programming software** 53 - 54 -[[image:image-20220824142722-1.png]] 55 - 56 -**2)New PLC project** 57 - 58 -Click New Project and select the PLC model. 59 - 60 -[[image:image-20220822172623-2.png]] 61 - 62 -**3)Set Serial port parameters** 63 - 64 -Follow the steps below to configure Serial port parameters 65 - 66 -Baud rate:115200 67 - 68 -Data bit:8 69 - 70 -Stop bit:1 71 - 72 -Parity:No verification 73 - 74 -[[image:image-20220822172657-3.png]] 75 - 76 -**4)Registers list** 77 - 78 -[[image:image-20220822172730-4.png]] 79 - 80 -**V-BOX software configuration** 81 - 82 -**1)V-BOX programming software** 83 - 84 - [[image:image-20220824104124-1.png]] 85 - 86 -**2)V-NET add device** 87 - 88 -Open V-NET client software → add device. As shown in the figure below, click "+" in the order of steps, and the Add Device window will pop up, enter the access key, password and remark, to add the device. 89 - 90 -[[image:image-20220824104909-2.png]] 91 - 92 - 93 -**3)Set communication port parameters** 94 - 95 -Click the communication configuration button on the left to find the communication protocol with LX5V. After selecting the protocol, configure the communication parameters of the COM port. 96 - 97 -Baud rate:115200 98 - 99 -Data bit:8 100 - 101 -Stop bit:1 102 - 103 -Parity:No verification 104 - 105 -[[image:image-20220824142130-1.png]] 106 - 107 -**hardware connection** 108 - 109 -**1)Hardware wiring diagram** 110 - 111 -[[image:image-20220824142546-2.png]] 112 - 113 -[[image:image-20220824142643-3.png]] 114 - 115 -The above are all the steps for establishing serial port communication between V-BOX with LX5V PLC. 116 - 117 -== **LX5V-N Ethernet protocol** == 118 - 119 -This example introduces the establishment of Ethernet communication between V-BOX and LX5V-N. It is introduced through three parts: PLC software configuration, HMI software configuration, and hardware wiring. 120 - 121 -**Software configuration of PLC** 122 - 123 -**1)PLC programming software** 124 - 125 -[[image:image-20220824142722-1.png]] 126 - 127 -**2)New PLC project** 128 - 129 -Click New Project and select the PLC model. 130 - 131 -[[image:image-20220824143613-1.png]] 132 - 133 -**3)Set Ethernet port parameters** 134 - 135 -Follow the steps below to configure Ethernet parameters 136 - 137 -PLC IP address:192.168.39.200 138 - 139 -default gateway:192.168.39.1 140 - 141 -subnet mask:255.255.255.0 142 - 143 -[[image:image-20220824143744-2.png]] 144 - 145 - 146 -**4)Registers list** 147 - 148 -[[image:image-20220822172730-4.png]] 149 - 150 -(% id="cke_bm_22473S" style="display:none" %)** **(%%)**V-BOX software configuration** 151 - 152 -**1)V-BOX programming software** 153 - 154 - [[image:image-20220824104124-1.png]] 155 - 156 -**2)V-NET add device** 157 - 158 -Open V-NET client software → add device. As shown in the figure below, click "+" in the order of steps, and the Add Device window will pop up, enter the access key, password and remark, to add the device. 159 - 160 -[[image:image-20220824104909-2.png]] 161 - 162 -**3)Set communication port parameters** 163 - 164 - 165 -Click Communication to configure the LX5V plc protocol and IP address. 166 - 167 -[[image:image-20220824144619-1.png]] 168 - 169 -**hardware connection** 170 - 171 -**1)Hardware wiring diagram** 172 - 173 -This example introduces V-BOX with LX5V-N PLC to establish communication through ethernet. The connection diagram is as follows: 174 - 175 -[[image:image-20220824151127-2.png]] 176 - 177 -The above are all the steps for establishing ethernet communication between V-BOX with LX5V PLC. 178 - 179 -= **Rockwell PLC** = 180 - 181 -== (% id="cke_bm_5621S" style="display:none" %)** **(%%)**MicroLogix Protocol** == 182 - 183 -MicroLogix 1000/1100/1200/1400/1500; SLC 5/03 5/04 5/05 PLC-5 184 - 185 -**HMI Settings** 186 - 187 -|**Item**|**Settings**|**Note** 188 -|Protocol|Allen-Bradlley MicroLogix| 189 -|Connection|RS232| 190 -|Baud rate|19200| 191 -|Data bit|8| 192 -|Parity|None| 193 -|Stop bit|1| 194 -|PLC station No.|1| 195 - 196 196 **Address List** 197 197 198 -|**Type**|**Device registers**|**Format**|**Range**|**Note** 199 -|(% rowspan="5" %)Bit|I|I d.d|0.0~~255.15| 200 -|O|O d.d|0.0~~255.15| 201 -|B|B nnhh.dd|0.0~~ffff.15|nn: block number (hex) 202 -|S|S d.d|0.0~~255.15| 203 -|N|N nnhh.dd|0.0~~ffff.15|nn: block number (hex) 204 -|(% rowspan="9" %)Word|S|S d|0~~255| 205 -|TS|TS nnhh|0~~ffff|(% rowspan="8" %)nn: block number (hex) 206 -|TP|TP nnhh|0~~ffff 207 -|CS|CS nnhh|0~~ffff 208 -|CP|CP nnhh|0~~ffff 209 -|N|N nnhh|0~~ffff 210 -|C|C nnhh|0~~ffff 211 -|T|T nnhh|0~~ffff 212 -|R|R nnhh|0~~ffff 25 +(% class="table-bordered" %) 26 +|**Type**|**Register**|**Function code & Description** 27 +|(% rowspan="11" %)Word|(% rowspan="3" %)3|04 (read input register: read current binary value in one or more input registers) 28 +|06 (write single register: write a binary value to a holding register) 29 +|10 (write values to multiple addresses ) 30 +|(% rowspan="3" %)4|03 (read holding register: read current binary value in one or more holding registers) 31 +|06 (write single register: write a binary value to a holding register) 32 +|10 (write values to multiple addresses ) 33 +|(% rowspan="3" %)W6|03 (read holding register: read current binary value in one or more holding registers) 34 +|06 (write single register: write a binary value to a holding register) 35 +|10 (write values to multiple addresses ) 36 +|(% rowspan="2" %)W16|03 (read holding register: read current binary value in one or more holding registers) 37 +|10 (write values to multiple addresses ) 38 +|(% rowspan="11" %)Bit|(% rowspan="3" %)0|01 (Read coil state) 39 +|05 (Force a single coil to force the on/off state of a logic coil) 40 +|0F (Write multiple bits, ie write continuously) 41 +|(% rowspan="3" %)1|02 (Read the input state) 42 +|05 (Force a single coil to force the on/off state of a logic coil) 43 +|0F (Write multiple bits) 44 +|(% rowspan="3" %)W5|01 (Read coil state to obtain the current state of a set of logic coils) 45 +|05 (Force a single coil to force the on/off state of a logic coil) 46 +|0F (Write multiple bits) 47 +|(% rowspan="2" %)W15|01 (Read coil state to obtain the current state of a set of logic coils) 48 +|0F (Write multiple bits) 213 213 214 -**C ableWiring**50 +== **WECON LX3V PLC** == 215 215 216 - [[image:image-20220824110724-1.png]]52 +Select the protocol (% class="mark" %)"WECON LX3V" 217 217 54 +(% class="mark" %)then set BaudRate,Port,Stop Bit,Data Bit,Parity same with PLC. 218 218 56 +(% class="mark" %)WECON PLC RS422 port,default communication parameters is 9600,1,7,ZEVEN 219 219 220 -== **CompactLogix Protocol** == 58 +(% style="text-align:center" %) 59 +[[image:1624348978863-771.png||queryString="width=812&height=494" height="487" width="800" class="img-thumbnail"]] 221 221 61 +== **2 Communication with Allen-Bradley CompactLogix L1769** == 62 + 222 222 ((( 223 223 ((( 224 -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.65 +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. 225 225 ))) 67 + 68 + 226 226 ))) 227 227 228 228 ((( ... ... @@ -356,7 +356,7 @@ 356 356 357 357 ((( 358 358 ((( 359 -Open VNET client software → add device. As shown in the figure below, click "+" in the order of steps, and the Add Device window will pop up, enter the device machine code/product code, device password, and device alias to add the device. [[image:image-20220714162752-8.png]] 202 +Open VNET client software → add device. As shown in the figure below, click "+" in the order of steps, and the Add Device window will pop up, enter the device machine code/product code, device password, and device alias to add the device. [[image:image-20220714162752-8.png]] 360 360 ))) 361 361 362 362 ... ... @@ -383,7 +383,7 @@ 383 383 384 384 385 385 ((( 386 -After adding the protocol Allen-BradleyMicro850_FreeTag, click[[image:image-20220714143838-2.png]]icon add label.[[image:image-20220714162827-11.png]] 229 +After adding the protocol Allen-BradleyMicro850_FreeTag, click[[image:image-20220714143838-2.png]]icon add label.[[image:image-20220714162827-11.png]] 387 387 ))) 388 388 389 389 (% class="wikigeneratedid" id="HEngineeringproduction" %) ... ... @@ -417,105 +417,48 @@ 417 417 [[image:image-20220714162856-13.png]] 418 418 419 419 ((( 420 -The above are all the steps for establishing Ethernet communication between Wecon V-box with CompactLogix L1769 PLC. 421 - 422 - 423 -== **Allen-Bradley Ethernet DF1** == 424 - 425 -[[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]] 426 - 427 - 428 -= **Siemens PLC** = 429 - 430 -== **S7-200 Smart Ethernet Protocol** == 431 - 432 -[[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%20S7-200%20Smart.zip]] 263 +The above are all the steps for establishing Ethernet communication between Wecon V-box with Allen-Bradley L1769 PLC. 433 433 ))) 434 434 ))) 435 435 436 -== **S7-1200 Ethernet Protocol** ==267 +== **Siemens S7-1200** == 437 437 438 438 [[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/Communicate%20with%20S7-1200%20via%20Ehernet.zip]] 439 439 440 -= ** MitsubishiPLC** =271 +== **Allen-Bradley Ethernet DF1** == 441 441 442 - ==**Mitsubishi FX Series Protocol** ==273 +[[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]] 443 443 444 - [[downloadlink>>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]]275 +== **Communication with S7-200 Smart** == 445 445 446 - =**DeltaPLC** =277 +[[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%20S7-200%20Smart.zip]] 447 447 448 -== **DVP Ethernet Protocol** ==279 +== **Delta DVP Ethernet** == 449 449 450 450 [[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]] 451 451 452 -== **DVP Serial Protocol** == 283 +== **Delta DVP Serial Protocol** == 453 453 454 454 [[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]] 455 455 456 -= ** OmronPLC** =287 +== **Communicate with Mitsubishi FX Series** == 457 457 458 - ==**CP1 Series Protocol** ==289 +[[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]] 459 459 460 - [[downloadlink>>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]]291 +== **Communicate with VB inverter** == 461 461 462 - ==**CJ2M Series Protocol** ==293 +[[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]] 463 463 464 - [[downloadlink>>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]]295 +== **Omron CP1 Series** == 465 465 466 - =**ModbusRTU** =297 +[[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]] 467 467 468 -== ** V-BOX asmaster** ==299 +== **Omron CJ2M** == 469 469 470 - Selecttheprotocol “(%class="mark" %)Modbus RTU Slave(AllFuction)”,301 +[[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]] 471 471 472 - (% class="mark"%)thensetBaudRate,Port,Stop Bit,DataBit,Parity303 += **2 User define protocol** = 473 473 474 -(% style="text-align:center" %) 475 -[[image:1624342015914-382.png||height="486" width="800" class="img-thumbnail"]] 476 - 477 -== **V-BOX as slave** == 478 - 479 -Select the protocol “(% class="mark" %)**Modbus RTU Master”**, 480 - 481 -(% class="mark" %)then set BaudRate,Port,Stop Bit,Data Bit,Parity 482 - 483 -(% style="text-align:center" %) 484 -[[image:1624348709622-711.png||queryString="width=809&height=493" height="488" width="800" class="img-thumbnail"]] 485 - 486 -**Address List** 487 - 488 -(% class="table-bordered" %) 489 -|**Type**|**Register**|**Function code & Description** 490 -|(% rowspan="11" %)Word|(% rowspan="3" %)3|04 (read input register: read current binary value in one or more input registers) 491 -|06 (write single register: write a binary value to a holding register) 492 -|10 (write values to multiple addresses ) 493 -|(% rowspan="3" %)4|03 (read holding register: read current binary value in one or more holding registers) 494 -|06 (write single register: write a binary value to a holding register) 495 -|10 (write values to multiple addresses ) 496 -|(% rowspan="3" %)W6|03 (read holding register: read current binary value in one or more holding registers) 497 -|06 (write single register: write a binary value to a holding register) 498 -|10 (write values to multiple addresses ) 499 -|(% rowspan="2" %)W16|03 (read holding register: read current binary value in one or more holding registers) 500 -|10 (write values to multiple addresses ) 501 -|(% rowspan="11" %)Bit|(% rowspan="3" %)0|01 (Read coil state) 502 -|05 (Force a single coil to force the on/off state of a logic coil) 503 -|0F (Write multiple bits, ie write continuously) 504 -|(% rowspan="3" %)1|02 (Read the input state) 505 -|05 (Force a single coil to force the on/off state of a logic coil) 506 -|0F (Write multiple bits) 507 -|(% rowspan="3" %)W5|01 (Read coil state to obtain the current state of a set of logic coils) 508 -|05 (Force a single coil to force the on/off state of a logic coil) 509 -|0F (Write multiple bits) 510 -|(% rowspan="2" %)W15|01 (Read coil state to obtain the current state of a set of logic coils) 511 -|0F (Write multiple bits) 512 - 513 -== **communicate with VB inverter** == 514 - 515 -[[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]] 516 - 517 -= **User define protocol** = 518 - 519 519 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]] 520 520 521 521 == **Read the temperature sensor.** ==
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