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Wiki source code of 11 PLC Protocol

Version 159.1 by Ben on 2022/08/31 10:04

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1 (((
2 (% class="wikigeneratedid" id="HPLCprotocols" %)
3 **Introduction**
4 )))
5
6 This chapter contains information on configuring the communication between device and HMI.
7
8 **General Procedure**
9
10 During configuring communication in PIStudio. The following components and conditions is indeed at least.
11
12 * One PI HMI
13 * One connected controller (for example PLC)
14 * One Cable Wiring
15
16 (% style="text-align:center" %)
17 [[image:12.PLC Protocol_html_4d84fc52012aaad6.png||data-xwiki-image-style-alignment="center" height="461" width="521" class="img-thumbnail"]]
18
19 User need to select controller protocol and set communication parameters in HMI project. Please note to set same communication parameter between controller and HMI project. After finishing project, user could download HMI project into HMI and connect HMI with controller by Cable Wiring. Thena simple automation system would be established.
20
21 = **Communication Settings** =
22
23 For example, controller is WECON LX3V series PLC and HMI is PI8070. Please set communication protocol, and set communication parameters in the [Communication].
24
25 **Timeout**
26
27 The follwoing are description for the timeout settings from [Communication].
28
29 (% style="text-align:center" %)
30 [[image:Communication Timout settings.png||data-xwiki-image-style-alignment="center" class="img-thumbnail"]]
31
32 * Wait Timeout(ms): The time HMI waits for a response from the PLC.
33 * Receive Timeout(ms): The longest waiting interval between the HMI receiving two characters.
34 * Retry Count: The number of retries when there is no response in the communication between HMI and PLC.
35 * Retry Timeout(s): The PLC will not be accessed during the Retry Timeout period when there is no response in the communication between HMI and PLC.
36 * Delay Time(ms): The speed at which the HMI communicates with the device.
37 * Continuous Length: Default value 0 means the maximum length specified by each protocol. Addresses dealt by Maximum Span settings, its read length for single time, if the Continouous Length is 1, which means it will read/write the every register one by one. If the length of Maximum Span is greater than or equal to the Continuous Length, the continuous read/write will be performed in groups according to Continuous Length.
38 * Maximum Span:  Set the interval for reading PLC addresses. If there exists two same register type addresses, their interval is less than the set value of Maximum Span, then they will be integrated into a continuous address, otherwise it will be divide into two independent addresses.
39
40 **Operating Procedure**
41
42 After creating the [Quick_Start] project,select the [Project]->[Communication].
43
44 (% style="text-align:center" %)
45 [[image:12.PLC Protocol_html_39c0d342e4b1dd27.png||data-xwiki-image-style-alignment="center" height="128" width="294" class="img-thumbnail"]]
46
47 Click “Setting” to open protocol setting windows.
48
49 (% id="cke_bm_5533S" style="display:none" %) [[image:12.PLC Protocol_html_7b55815442c5544a.png||height="450" width="537"]]
50
51 Select communication protocol, users could select serial port, Ethernet port, CAN port or USB.
52
53 * Serial port:
54
55 (% style="text-align:center" %)
56 [[image:12.PLC Protocol_html_bc7e88067e699a2b.png||data-xwiki-image-style-alignment="center" height="291" width="600" class="img-thumbnail"]]
57
58 * Ethernet port:
59
60 (% style="text-align:center" %)
61 [[image:12.PLC Protocol_html_c3865bcb998b6ded.png||data-xwiki-image-style-alignment="center" height="291" width="600" class="img-thumbnail"]]
62
63 * CAN port (In COM1):
64
65 (% style="text-align:center" %)
66 [[image:12.PLC Protocol_html_61c3c5fa99a24463.png||data-xwiki-image-style-alignment="center" height="291" width="600" class="img-thumbnail"]]
67
68 * USB port:
69
70 (% id="cke_bm_5554S" style="display:none" %) [[image:12.PLC Protocol_html_a3105a98b48fb9b7.png||height="242" width="500"]]
71
72 About parameters for communication, PLC default communication parameters have been written to PIStudio, the user can adjust them according to the actual situation.
73
74 * Serial port:
75
76 (% style="text-align:center" %)
77 [[image:12.PLC Protocol_html_36a660d5c1a17a95.png||data-xwiki-image-style-alignment="center" height="228" width="600" class="img-thumbnail"]]
78
79 * Ethernet port
80
81 Please note, during using Ethernet port, please set HMI IP in [Project Setting], the detailed, please refer to [Project Setting] chapter.
82
83 (% style="text-align:center" %)
84 [[image:12.PLC Protocol_html_eebfc6b1337ea860.png||data-xwiki-image-style-alignment="center" height="207" width="600" class="img-thumbnail"]]
85
86 Click [OK] button to save settings and close the dialog;
87
88 = Create communication with WECON PLC =
89
90 == **LX3V Serial Protocol** ==
91
92 Supported series: WECON LX2V/ LX2E/ LX3V/LX3VP/LX3VE/LX3VM
93
94 **HMI Settings**
95
96 (% class="table-bordered" %)
97 |**Item**|**Settings**|**Note**
98 |Protocol|WECON LX2V/ LX2E/ LX3V/LX3VP/LX3VE/LX3VM|
99 |Connection|RS422/RS485|
100 |Baud rate|9600|
101 |Data bit|7|
102 |Parity|EVEN|
103 |Stop bit|1|
104 |PLC station No.|1|
105
106 **Address List**
107
108 (% class="table-bordered" %)
109 |**Type**|**Device registers**|**HMI registers**|**Format**|**Range**|**Note**
110 |(% rowspan="6" %)Bit|X|X|Xo|0~~303237|
111 |Y|Y|Y o|0~~303237|
112 |M|M|M d|0~~99999|
113 |T|T|T d|0~~99999|
114 |C|C|C d|0~~99999|
115 |S|S|S d|0~~99999|
116 |(% rowspan="8" %)Word|X|X|Xo|0~~303237|
117 |Y|Y|Y o|0~~303237|
118 |M|M|M d|0~~99999|
119 |T|T|T d|0~~99999|
120 |C|C|C d|0~~199|
121 |D|D|D d|0~~7999|
122 |S|S|S d|0~~99999|
123 |SD|SD|SD d|8000~~9999|
124
125 **Cable Wiring**
126
127 * **RS485**
128
129 (% style="text-align:center" %)
130 [[image:12.PLC Protocol_html_1897d92be6948d58.png||data-xwiki-image-style-alignment="center" height="223" width="393" class="img-thumbnail"]]
131
132 * **RS422**
133
134 (% style="text-align:center" %)
135 [[image:12.PLC Protocol_html_5c7fca9a70da2ee8.png||data-xwiki-image-style-alignment="center" height="247" width="389" class="img-thumbnail"]]
136
137 **✎Note:**
138
139 * HMI COM3 is available in PI8000 series and COM3 is in COM2(hardware PIN 7 and PIN 8) .
140 * If PLC <= 20 points,such as LX3V-1208/LX3V-0806 PLC,PLC RS485A and RS485B mean PLC COM2 RS485+ and RS485- .PLC COM2 can support modbus. Please refer to PLC COM2 setting manual.
141
142 [[https:~~/~~/drive.google.com/drive/folders/13rgso7oUlatZQN_SNEcJCcN4toEdDPoP?usp=sharing>>url:https://drive.google.com/drive/folders/13rgso7oUlatZQN_SNEcJCcN4toEdDPoP?usp=sharing]]
143
144 (% class="wikigeneratedid" id="HHMIsettings" %)
145 **HMI settings**
146
147 **Download PIStudio Software**
148
149 Please visit the link below to get the latest version PIstudio for HMI programming:
150
151 * [[Download link>>doc:PIStudio.Download.3 Software.WebHome]]
152
153 **Create a new HMI project connect with PLC**
154
155 Check the link below for the video to show you how to get started with a new project
156
157 * [[Video>>https://youtu.be/0FpmDZe_8U8]]
158
159 For more videos, please visit our Youtube channel: [[http:~~/~~/www.youtube.com/user/Wecon2004/videos>>url:http://www.youtube.com/user/Wecon2004/videos]]
160
161 **General**
162
163 HMI could communicate with PLC and support many PLC protocols.  It is easy to operate and set communication parameters. This demo shows how to make a communication with PLC device, use WECON LX3V Series PLC as an example.
164
165 **Protocol settings**
166
167 The communication between two devices requires a protocol. The following contents show the steps of protocol settings.
168
169 Please select the protocol, when creating a new project.
170
171 1. Select the COM port for communication;
172 1. PLC type: It means PLC brand, like WECON;
173 1. PLC model: It shows the model of PLC, such as LX3V;
174
175 (% style="text-align:center" %)
176 [[image:image-20220819093729-1.png]]
177
178 If you want to change the protocol for existing project, please click [Program] → [Communication] to open the [Communication] windows, shown as the following figure.
179
180 (% style="text-align:center" %)
181 [[image:image-20220819093729-2.png]]
182
183
184 The steps to change the protocol for project are as follows.
185
186 1. Click [Setting] to open the [Communication device] window;
187 1. Select communication port, such as COM1;
188 1. Select Serial port for communication, such as RS422;
189 1. Select device type (device brand), such as WECON;
190 1. Select the protocol for communication, such as WECON LX3V;
191
192 (% style="text-align:center" %)
193 [[image:image-20220819093729-3.png]]
194
195 **Parameter settings**
196
197 The parameters settings are in [Communication] window, shown as following below.
198
199 1. Click [Setting] to open the [COM port setting] window;
200 1. Set the parameters such as [connection], [Baud rate] and so on;
201
202 (% style="text-align:center" %)
203 [[image:image-20220819093729-4.png||height="636" width="818"]]
204
205 (% start="3" %)
206 1. Click [Setting] to open [Timeout] setting window, you could set the parameters according your requirements, or just use the default value.
207
208 (% style="text-align:center" %)
209 [[image:image-20220819093729-5.png]]
210
211 **Set PLC address in HMI screen**
212
213 1. Place the objects to HMI screen;
214 1. Double-click the object to open the setting window;
215 1. Click “Edit” to open the address setting windows;
216 1. Connection: select the serial port in HMI;
217 1. Address type: All the PLC address types will be display in this list, such as M;
218 1. Address No.: Please input the number of this address, such as 0;
219
220 [[image:image-20220819093729-6.jpeg]]
221
222 **Communication cable**
223
224 In order to ensure the stability of communication, please use the twisted-pair communication cable with good grounding. The following figure shows the pin out definition.
225
226 (% style="text-align:center" %)
227 [[image:image-20220819093729-7.png]]
228
229 **HMI communication PLC use Modbus **
230
231 * HMI setting: [[https:~~/~~/docs.we-con.com.cn/bin/view/PIStudio/12.PLC%20protocols/>>https://docs.we-con.com.cn/bin/view/PIStudio/12.PLC%20protocols/]]
232 * PLC setting: [[https:~~/~~/docs.we-con.com.cn/bin/view/PLC%20Editor/8.1.%09Communication/>>https://docs.we-con.com.cn/bin/view/PLC%20Editor/8.1.%09Communication/]]
233
234 (% class="wikigeneratedid" id="HPLCsettings" %)
235 **PLC settings**
236
237 **Download PLC Software**
238
239 Please visit below link to get the latest version PLC Editor for HMI programming
240
241 * LX3V:[[Download link>>doc:PLC Editor.10 Hardware .Software.WebHome]]
242 * LX5V:[[Download link>>doc:PLC Editor2.Download.03 Software.WebHome]]
243
244 **Start a new PLC project**
245
246 Start a new PLC project by clicking “New” on the left top corner of screen, select the PLC mode from the drop-down list.
247
248 (% style="text-align:center" %)
249 [[image:image-20220819101447-3.jpeg]]
250
251
252
253 **Add a new instruction **
254
255 Double click on the ladder, select the ladder symbol (instruction) from the drop-down list, then enter the address for this symbol.
256
257 (% style="text-align:center" %)
258 [[image:image-20220819105530-1.png]]
259
260 You could also select the ladder symbol from the menu bar directly.
261
262 [[image:image-20220819093729-11.png]]
263
264 [[image:image-20220819093729-12.png]]
265
266 **Add comment to PLC program**
267
268 (% style="text-align:center" %)
269 [[image:image-20220819105630-3.png]]
270
271 **Add the statement to PLC program**
272
273 Add the statement by single click on “Statement”, when finished, single click on “Statement” again to go back to Ladder edit.
274
275 (% style="text-align:center" %)
276 [[image:image-20220819105644-4.png]]
277
278 **Compile **
279
280 You need to compile the PLC program before downloading or running Off-line simulator. The background color will be changed from purple to white when there is no error.
281
282 [[image:image-20220819093729-15.png]]
283
284 **Download setting **
285
286 Click on “Transfer Setup” to select download mode.
287
288 [[image:image-20220820150853-1.png]]**Download PLC program to PLC**
289
290 Quick select the parameters and main program of PLC program, then download to PLC, “Yes”-”Yes”-”OK”
291
292 [[image:image-20220819093729-17.png]]
293
294 **Upload PLC program from PLC**
295
296 Read the PLC program from PLC to computer.
297
298 [[image:image-20220819093729-18.png]]
299
300 **Device monitor**
301
302 Monitor the value of certain address in PLC, double click “Current value” to change the value in this address.
303
304 [[image:image-20220819093730-19.png]]
305
306 **Online monitor**
307
308 Monitor the each address in PLC by online monitor. Changing the state or value in PLC is also allowd.
309
310 [[image:image-20220819093730-20.png]]
311
312 **Monitor edit**
313
314 In this mode, you could edit the PLC program during PLC is running. 
315
316
317 (% style="text-align:center" %)
318 [[image:image-20220819105928-9.png||height="229" width="669"]]
319
320 == **LX5V Serial Protocol** ==
321
322 This example introduces the establishment of serial port communication between Wecon HMI and LX5V. It is introduced through three parts: PLC software configuration, HMI software configuration, and hardware wiring.
323
324 **Software configuration of PLC**
325
326 **1)PLC programming software**
327
328 [[image:image-20220810164710-1.png]]
329
330 **2)New PLC project**
331
332 Click New Project and select the PLC model.
333
334 [[image:image-20220810172412-1.png]]
335
336
337 **3)Set Serial port parameters**
338
339 Follow the steps below to configure Serial port parameters
340
341 Baud rate:115200
342
343 Data bit:8
344
345 Stop bit:1
346
347 Parity:No verification
348
349 [[image:image-20220810165759-3.png]]
350
351
352 **4)Registers list**
353
354 [[image:image-20220811102219-3.png]]
355
356
357 **HMI software configuration**
358
359 **1)HMI programming software**
360
361 [[image:image-20220810171237-4.png]]
362
363 **2)New HMI project**
364
365 Click New Project and select the HMI model.
366
367 [[image:image-20220810172010-5.png]]
368
369 **3)Set communication port parameters**
370
371 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.
372
373 Baud rate:115200
374
375 Data bit:8
376
377 Stop bit:1
378
379 Parity:No verification
380
381
382 [[image:image-20220811104012-1.png]]
383
384
385 **hardware connection**
386
387 **1)Hardware wiring diagram**
388
389 This example introduces WeconHMI with LX5V PLC to establish communication through serial port. The connection diagram is as follows:
390
391 [[image:image-20220811103005-4.png]]
392
393
394 [[image:image-20220811103227-7.png]]
395
396 The above are all the steps for establishing serial port communication between Wecon HMI with LX5V PLC.
397
398 == **LX5V-N Ethernet protocol** ==
399
400 (% id="cke_bm_147709S" style="display:none" %) (%%)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.
401
402 **Software configuration of PLC**
403
404 **1)PLC programming software**
405
406 [[image:image-20220810164710-1.png]]
407
408 **2)New PLC project**
409
410 Click New Project and select the PLC model.
411
412 [[image:image-20220811115454-1.png]]
413
414
415 **3)Set Ethernet port parameters**
416
417 Follow the steps below to configure Ethernet parameters
418
419 PLC IP address:192.168.39.200
420
421 default gateway:192.168.39.1
422
423 subnet mask:255.255.255.0
424
425 [[image:image-20220811140530-2.png]]
426
427
428 **4)Registers list**
429
430 [[image:image-20220811102219-3.png]]
431
432
433 **HMI software configuration**
434
435 **1)HMI programming software**
436
437 [[image:image-20220810171237-4.png]]
438
439 **2)New HMI project**
440
441 Click New Project and select the HMI model.
442
443 [[image:image-20220810172010-5.png]]
444
445 **3)Set communication port parameters**
446
447 Click the project setting button on the left to configure the IP address of the HMI machine to ensure that the HMI and PLC IP remain in a local area network.
448
449 HMI IP address:192.168.39.201
450
451 default gateway:192.168.39.1
452
453 subnet mask:255.255.255.0
454
455 [[image:image-20220811170753-2.png]]
456
457 Next, click Communication Settings to configure the IP of the HMI communication object.
458
459 [[image:image-20220811163047-1.png]]
460
461 **hardware connection**
462
463 **1)Hardware wiring diagram**
464
465 This example introduces WeconHMI with LX5V-N PLC to establish communication through ethernet. The connection diagram is as follows:
466
467 [[image:image-20220811170248-1.png]]
468
469 The above are all the steps for establishing ethernet communication between Wecon HMI with LX5V PLC.
470
471 = Create communication with **Rockwell PLC** =
472
473 == **MicroLogix Protocol** ==
474
475 MicroLogix 1000/1100/1200/1400/1500; SLC 5/03 5/04 5/05 PLC-5
476
477 **HMI Settings**
478
479 (% class="table-bordered" %)
480 |**Item**|**Settings**|**Note**
481 |Protocol|Allen-Bradlley MicroLogix|
482 |Connection|RS232|
483 |Baud rate|19200|
484 |Data bit|8|
485 |Parity|None|
486 |Stop bit|1|
487 |PLC station No.|1|
488
489 **Address List**
490
491 (% class="table-bordered" %)
492 |**Type**|**Device registers**|**Format**|**Range**|**Note**
493 |(% rowspan="5" %)Bit|I|I d.d|0.0~~255.15|
494 |O|O d.d|0.0~~255.15|
495 |B|B nnhh.dd|0.0~~ffff.15|nn: block number (hex)
496 |S|S d.d|0.0~~255.15|
497 |N|N nnhh.dd|0.0~~ffff.15|nn: block number (hex)
498 |(% rowspan="9" %)Word|S|S d|0~~255|
499 |TS|TS nnhh|0~~ffff|(% rowspan="8" %)nn: block number (hex)
500 |TP|TP nnhh|0~~ffff
501 |CS|CS nnhh|0~~ffff
502 |CP|CP nnhh|0~~ffff
503 |N|N nnhh|0~~ffff
504 |C|C nnhh|0~~ffff
505 |T|T nnhh|0~~ffff
506 |R|R nnhh|0~~ffff
507
508 **Cable Wiring**
509
510
511 (% style="text-align:center" %)
512 [[image:12.PLC Protocol_html_58205bdf82c06d4.png||data-xwiki-image-style-alignment="center" height="307" width="500" class="img-thumbnail"]]
513
514 == **CompactLogix FreeTag Ethernet protocol** ==
515
516 Allen-Brandly CompactLogix
517
518 **HMI Settings**
519
520 (% class="table-bordered" %)
521 |**Items**|**Settings**|**Note**
522 |Protocol|Allen-Brandley FreeTag Ethernet/IP (CompactLogix)|
523 |Connection|Ethernet|
524 |Port No.|44818|
525
526 **PLC Setting**
527
528 Create new tags
529
530 (% style="text-align:center" %)
531 [[image:12.PLC Protocol_html_a748a27dcf7f1124.png||data-xwiki-image-style-alignment="center" height="411" width="700" class="img-thumbnail"]]
532
533 Export tags to CSV file. ([Tools] » [Export] » [Tags and Logic Comments])
534
535 (% style="text-align:center" %)
536 [[image:12.PLC Protocol_html_151379170bb8ff3e.png||data-xwiki-image-style-alignment="center" height="352" width="700" class="img-thumbnail"]]
537
538 Import labels, please open [Communication] window and click [Import label];
539
540 Select csv file, all tags will be displayed as belows;
541
542 (% style="text-align:center" %)
543 [[image:12.PLC Protocol_html_af192e54dee96f38.png||data-xwiki-image-style-alignment="center" height="586" width="700" class="img-thumbnail"]]
544
545 **✎Note:**
546
547 Because in different region, the separation symbol is different, we suggest you check this before you want to import your tags. To open csv file as text format.
548
549 (% style="text-align:center" %)
550 [[image:12.PLC Protocol_html_33df1d63ebe53726.png||data-xwiki-image-style-alignment="center" height="206" width="700" class="img-thumbnail"]]
551
552 The directory of changing system settings: [Control Panel] -> [Date, Time, Language,and Regional Options] -> [Change the format of numbers, dates, and times]->[Customize]-> [List separator]. Please select [,] and export CSV file after setting.
553
554 **Communication settings in HMI**
555
556 Enable HMI Ethernet in [Project Settings];
557
558 (% style="text-align:center" %)
559 [[image:12.PLC Protocol_html_43b671f18153910d.png||data-xwiki-image-style-alignment="center" height="106" width="400" class="img-thumbnail"]]
560
561 Set PLC IP in [Device IP] settings;
562
563 (% style="text-align:center" %)
564 [[image:12.PLC Protocol_html_27870d373581892e.png||data-xwiki-image-style-alignment="center" height="206" width="600" class="img-thumbnail"]]
565
566 **Cable Wiring**
567
568 (% style="text-align:center" %)
569 [[image:12.PLC Protocol_html_2297240b57346b2a.png||data-xwiki-image-style-alignment="center" height="170" width="400" class="img-thumbnail"]]
570
571 == **MicroLogix 1200** ** protocol** ==
572
573 The operational address is determined by the connection of Allen-Bradley PLC to HMI. For extension modules or other special conditions, refer to allen-Bradley PLC instruction manual. The following is an example of allen-bradley MicroLogix1200.
574
575 * **Bit address I:** The address ranges from 0.0 to 255.15. The value of the data before the decimal point ranges from 0 to 255 (decimal). The value from 0 to 15 after the decimal point is the sub address (decimal).
576 * **Bit address B:** The address ranges from 000.0 to fff.15. The first f from left to right represents the block number (hexadecimal); The second and third f from left to right represent the word address (hexadecimal). The value 0 to 15 after the decimal point reprensents the sub address (decimal).
577 * **Word address S:** The word address ranges from 0 to 255 (decimal).
578 * **Word address TS:** The address ranges from 000.0 to ffff. The first and second f from left to right represents the block number (hexadecimal); The third and fourth f from left to right represent the word address (hexadecimal).
579
580 **✎Note: **Register address TP, CS, CP, N, F and TS address edit are same. D indicates decimal, and F indicates hexadecimal. Different PLC models may support different registers. See the following table.
581
582 |(% style="width:393px" %)**PLC bit address type**|(% style="width:350px" %)**Address format**|(% style="width:333px" %)**Address range**
583 |(% style="width:393px" %)I|(% style="width:350px" %)dd.dd|(% style="width:333px" %)I 0.0 ~~ 255.15
584 |(% style="width:393px" %)O|(% style="width:350px" %)dd.dd|(% style="width:333px" %)O 0.0 ~~ 255.15
585 |(% style="width:393px" %)B|(% style="width:350px" %)fff.dd|(% style="width:333px" %)B 000.0 ~~ fff.15
586 |(% style="width:393px" %)S|(% style="width:350px" %)dd.dd|(% style="width:333px" %)S 0.0 ~~ 255.15
587 |(% style="width:393px" %)N|(% style="width:350px" %)ffff.dd|(% style="width:333px" %)N 000.0 ~~ fff.15
588 |**PLC word address type**|**Address format**|**Address range**
589 |S|ddd|S0 ~~ 255
590 |TS|ffff|TS0 ~~ FFFF
591 |TP|ffff|TP0 ~~ FFFF
592 |CS|ffff|CS0 ~~ FFFF
593 |CP|ffff|CP0 ~~ FFFF
594 |N|ffff|N0 ~~ FFFF
595 |F|ffff|F0 ~~ FFFF
596
597 = Create communication with (% id="cke_bm_43878S" style="display:none" %)** **(%%)**Siemens PLC** =
598
599 == **S7-200 Smart Ethernet Protocol** ==
600
601 Supported Series: Siemens S7-200 SMART Series Ethernet Module.
602
603 Website: [[http:~~/~~/www.siemens.com/entry/cc/en/>>url:http://www.siemens.com/entry/cc/en/]]
604
605 **HMI Setting**
606
607 (% class="table-bordered" %)
608 |**Items**|**Settings**|**Note**
609 |Protocol|Simens S7-200 Smart Ethernet|
610 |Connection|Ethernet|
611 |Port No.|102|
612 |PLC station No.|2|
613
614 **Address List**
615
616 (% class="table-bordered" %)
617 |**Type**|**Device register**|**HMI register**|**Format**|**Range**|**Note**
618 |(% rowspan="9" %)Bit|I|I|I ddddd.o|0.0~~99999.7|
619 |Q|Q|Q ddddd.o|0.0~~99999.7|
620 |V|VWbit|VWbit ddddd.o|0.0~~99999.7|
621 |V|V|V ddddd.o|0.0~~99999.7|
622 |M|M|M ddddd.o|0.0~~99999.7|
623 |SM|SM|ddddd.o|0.0~~99999.7|
624 |S|S|ddddd.o|0.0~~99999.7|Read only
625 |T|T|ddddd|0~~99999|Timer state, read only
626 |C|C|ddddd|0~~99999|Counter state, read only
627 |(% rowspan="12" %)Word|I|IW|IW ddddd|0~~99999|
628 |Q|QW|QW ddddd|0~~99999|
629 |AI|AIW|AIW ddddd|0~~99999|
630 |AQ|VB|VB ddddd|0~~99999|
631 |V|VW|VW ddddd|0~~99998|(((
632 VW0=VB (0~~1)
633
634 VW2=VB (2~~3)
635
636 Address value is a multiple of 2
637 )))
638 |V|VD|VD ddddd|0~~99998|(((
639 VD0=VB (0~~3)
640
641 VD2=VB (4~~7)
642
643 Address value is a multiple of 4
644 )))
645 |M|MB|MB ddddd|0~~99999|
646 |M|MW|MW ddddd|0~~99999|(((
647 MW0=MB(0~~1)
648
649 MW2=MB(2~~3)
650
651 Address value is a multiple of 2
652 )))
653 |M|MD|MD ddddd|0~~99999|(((
654 MD0=MB(0~~3)
655
656 MD4=MB(4~~7)
657
658 Address value is a multiple of 4
659 )))
660 |T|TW|TW ddddd|0~~99999|Value of timer
661 |C|CW|CW ddddd|0~~99999|Value of counter
662 |W|SW|SW ddddd|0~~99999|
663
664 **Communication Settings**
665
666 Enable HMI Ethernet in [Project Settings];
667
668 (% style="text-align:center" %)
669 [[image:12.PLC Protocol_html_43b671f18153910d.png||data-xwiki-image-style-alignment="center" height="107" width="405" class="img-thumbnail"]]
670
671 Set PLC IP in [Device IP] settings;
672
673 (% style="text-align:center" %)
674 [[image:12.PLC Protocol_html_70b0c4c2ee21b10d.png||data-xwiki-image-style-alignment="center" height="189" width="554" class="img-thumbnail"]]
675
676 * PLC IP Address: PLC IP
677 * PLC pot No.: 102(fixed)
678 * Network:TCP_Client_2N(fixed)
679
680 (% style="text-align:center" %)
681 [[image:12.PLC Protocol_html_5891afd92901b7ad.png||data-xwiki-image-style-alignment="center" height="276" width="347" class="img-thumbnail"]]
682
683 * Wait timeout: depend on actual network situation (more than 1500 ms)
684
685 **Cable Wiring**
686
687 (% style="text-align:center" %)
688 [[image:12.PLC Protocol_html_2297240b57346b2a.png||data-xwiki-image-style-alignment="center" height="170" width="401" class="img-thumbnail"]]
689
690 == **S7-300 Ethernet Protocol** ==
691
692 Supported Series: Siemens S7-300 series PLC
693
694 **HMI Setting**
695
696 (% class="table-bordered" %)
697 |**Items**|**Settings**|**Note**
698 |Protocol|Simens S7-300 Ethernet|
699 |Connection|Ethernet|
700 |Port No.|102|
701 |PLC station No.|2|Need to be same as the PLC setting
702
703 **Address List**
704
705 (% class="table-bordered" %)
706 |**Type**|**Device register**|**HMI register**|**Format**|**Range**|**Note**
707 |(% rowspan="4" %)Bit|I|I|I ddddd.o|0.0~~99999.7|
708 |Q|Q|Q ddddd.o|0.0~~99999.7|
709 |M|M|M ddddd.o|0.0~~99999.7|
710 |DB0.DB~~DB99.DB|DBxDBD|DBxDB nndddd.o|0.0~~99999999.7|(((
711 nn: block number;
712
713 dddd: address;
714 )))
715 |(% rowspan="8" %)Word|I|IW|IW ddddd|0~~99999|
716 |Q|QW|QW ddddd|0~~99999|
717 |(% rowspan="3" %)M|MB|MB ddddd|0~~99999|
718 |MW|MW ddddd|0~~99999|(((
719 MW0=MB(0~~1)
720
721 MW2=MB(2~~3)
722
723 Address value is a multiple of 2
724 )))
725 |MD|MD ddddd|0~~99999|(((
726 MD0=MB(0~~3)
727
728 MD4=MB(4~~7)
729
730 Address value is a multiple of 4
731 )))
732 |(% rowspan="3" %)DB0.DB~~DB99.DB|DBxDBB|DBxDBB nndddd|0~~99999999|(% rowspan="3" %)(((
733 nn: block number;
734
735 dddd: address
736 )))
737 |DBxDBW|DBxDBW nndddd|0~~99999999
738 |DBxDBD|DBxDBD nndddd|0~~99999999
739
740 **Communication Settings**
741
742 Enable HMI Ethernet in [Project Settings];
743
744 (% style="text-align:center" %)
745 [[image:12.PLC Protocol_html_43b671f18153910d.png||data-xwiki-image-style-alignment="center" height="107" width="405" class="img-thumbnail"]]
746
747 Set PLC IP in [Device IP] settings;
748
749 (% style="text-align:center" %)
750 [[image:12.PLC Protocol_html_910b1a0aa9e2201c.png||data-xwiki-image-style-alignment="center" height="188" width="554" class="img-thumbnail"]]
751
752 * PLC IP Address: PLC IP
753 * PLC pot No.: 102(fixed)
754 * Network:TCP_Client_2N(fixed)
755
756 (% style="text-align:center" %)
757 [[image:12.PLC Protocol_html_5891afd92901b7ad.png||data-xwiki-image-style-alignment="center" height="276" width="347" class="img-thumbnail"]]
758
759 * Wait timeout: depend on actual network situation (more than 1500 ms)
760
761 **Cable Wiring**
762
763 (% style="text-align:center" %)
764 [[image:12.PLC Protocol_html_2297240b57346b2a.png||data-xwiki-image-style-alignment="center" height="170" width="401" class="img-thumbnail"]]
765
766 == **S7-1200 Ethernet Protocol** ==
767
768 Supported Series: Siemens S7-1200
769
770 **HMI Setting**
771
772 (% class="table-bordered" %)
773 |**Items**|**Settings**|**Note**
774 |Protocol|Siemens S7-1200|
775 |Connection|Ethernet|
776 |Port No.|102|
777 |PLC station No.|2|
778
779 **Address List**
780
781 (% class="table-bordered" %)
782 |**Type**|**Device register**|**HMI register**|**Format**|**Range**|**Note**
783 |(% rowspan="4" %)Bit|I|I|M d.o|(((
784 d:0~-~-9999
785
786 o:0-7
787 )))|
788 |Q|Q|Q d.o|(((
789 d:0~-~-9999
790
791 o:0-7
792 )))|
793 |M|M|M d.o|(((
794 d:0~-~-9999
795
796 o:0-7
797 )))|
798 |DB0.DB-DB99.DB|DBxDB|DBxDBnndddd.o|(((
799 nn:0-9999,
800
801 dddd:0-9999,
802
803 o:0-7
804 )))|(((
805 nn:DB No.
806
807 dddd:address value
808
809 o: digit address
810 )))
811 |(% rowspan="8" %)Word|M|MB|MB d|d:0-99999|
812 |M|MW|MW d|d:0-99999|(((
813 MW0=MB(0~~1)
814
815 MW2=MB(2~~3)
816
817 Address value is a multiple of 2
818 )))
819 |M|MD|MD d|d:0-99999|(((
820 MD0=MB(0~~3)
821
822 MD4=MB(4~~7)
823
824 Address value is a multiple of 4
825 )))
826 |I|IW|IW d|d:0-99999|
827 |Q|QW|QW d|d:0-99999|
828 |DB0.DB-DB99.DB|DBxDBB|DBxDBBnndddd|(((
829 nn:0-9999
830
831 dddd:0-9999
832 )))|(((
833 nn:DB No.
834
835 dddd:address value
836 )))
837 |DB0.DB-DB99.DB|DBxDBW|DBxDBWnndddd|(((
838 nn:0-9999
839
840 dddd:0-9999
841 )))|(((
842 nn:DB No.
843
844 dddd:address value
845
846 Address value is a multiple of 2
847 )))
848 |DB0.DB-DB99.DB|DBxDBD|DBxDBDnndddd|(((
849 nn:0-9999
850
851 dddd:0-9999
852 )))|(((
853 nn:DB No.
854
855 dddd:address value
856
857 Address value is a multiple of 4
858 )))
859
860 **Communication Settings**
861
862 Enable HMI Ethernet in [Project Settings];
863
864 (% style="text-align:center" %)
865 [[image:12.PLC Protocol_html_43b671f18153910d.png||data-xwiki-image-style-alignment="center" height="107" width="405" class="img-thumbnail"]]
866
867 Set PLC IP in [Device IP] settings;
868
869 (% style="text-align:center" %)
870 [[image:12.PLC Protocol_html_f7b3eb9abda33833.png||data-xwiki-image-style-alignment="center" height="190" width="554" class="img-thumbnail"]]
871
872 **✎Note:**
873
874 * The S7-1200 supports simultaneous connection of three devices, so the driver supports simultaneous access to PLC by three touch screens.
875 * HMI access PLC, use S7 protocol, access PLC TSAP 02.01 (s7-1200 PROFINET interface only supports three connections, the default support), detailed reference to the system manual of S7-1200.
876
877 **PLC Settings**
878
879 Add BD
880
881 * Please uncheck [Symbolic access only] option;
882
883 (% style="text-align:center" %)
884 [[image:12.PLC Protocol_html_643144c591994418.png||data-xwiki-image-style-alignment="center" height="546" width="550" class="img-thumbnail"]]
885
886 Address settings, using BD2 as example.
887
888 * DB×DBB2xxxx, DB×DBW2xxxx, DB×DBD2xxxx for accessing data of DB2 in B1.
889 * 2 represent DB block number
890 * xxxx represent address
891
892 **Such as:**
893
894 * DBxDBB20000 = DB2.DBB0
895 * DBxDBW20004 = DB2.DBW4
896
897 (% style="text-align:center" %)
898 [[image:12.PLC Protocol_html_87ceaea84d552e62.png||data-xwiki-image-style-alignment="center" height="245" width="537" class="img-thumbnail"]]
899
900 **How to connect with S7-1200 Firmware V4.0**
901
902 PLC configuration
903
904 * Double click [device configuration] in Siemens via software
905 * Double click [protection] to enter protection configuration screen
906
907 (% style="text-align:center" %)
908 [[image:12.PLC Protocol_html_9779940d38da8e07.png||data-xwiki-image-style-alignment="center" height="426" width="341" class="img-thumbnail"]]
909
910 * Check [Permit access with PUT / GET communication from remote partner (PLC, HMI, OPC, ...)]
911
912 (% style="text-align:center" %)
913 [[image:12.PLC Protocol_html_d2c667b02f9720b1.png||data-xwiki-image-style-alignment="center" height="296" width="554" class="img-thumbnail"]]
914
915 DB settings
916
917 * Right click [DB], select [properties]
918 * Uncheck [optimized block access]
919
920 **Cable Wiring**
921
922 (% style="text-align:center" %)
923 [[image:12.PLC Protocol_html_2297240b57346b2a.png||data-xwiki-image-style-alignment="center" height="170" width="401" class="img-thumbnail"]]
924
925 == **S7-XXX Ethernet Protocol** ==
926
927 Supported Series: Siemens S7-400, S7-1200 and S7-1500
928
929 **HMI Setting**
930
931 (% class="table-bordered" style="width:823px" %)
932 |=**Items**|=(% style="width: 437px;" %)**Settings**|=(% style="width: 201px;" %)**Note**
933 |Protocol|(% style="width:437px" %)Siemens S7-XXX|(% style="width:201px" %)
934 |Connection|(% style="width:437px" %)Ethernet|(% style="width:201px" %)
935 |Port No.|(% style="width:437px" %)102|(% style="width:201px" %)
936 |Device No.|(% style="width:437px" %)Slot (Default 1 for S7-1500/ 2 for S7-1200/ 3 for S7-400)|(% style="width:201px" %)
937 |HMI No.|(% style="width:437px" %)Rack (Default as 0)|(% style="width:201px" %)
938
939 Slot from TIA Portal is equal to Device No. of PIStudio
940
941 Rack from TIA Portal is equal to HMI No. of PIStudio
942
943 (% style="text-align:center" %)
944 [[image:S7-XXXCommunication Settings.png]]
945
946 (% style="text-align:center" %)
947 [[image:S7-XXXCommunication SettingsPIStudio.png||alt="S7-XXXCommunication SettingsPI.png"]]
948
949 **Address List**
950
951 (% class="table-bordered" %)
952 |**Type**|**Device register**|**HMI register**|**Format**|**Range**|**Note**
953 |(% rowspan="4" %)Bit|I|I|M d.o|(((
954 d:0~-~-9999
955
956 o:0-7
957 )))|
958 |Q|Q|Q d.o|(((
959 d:0~-~-9999
960
961 o:0-7
962 )))|
963 |M|M|M d.o|(((
964 d:0~-~-9999
965
966 o:0-7
967 )))|
968 |DB0.DB-DB99.DB|DBxDB|DBxDBnndddd.o|(((
969 nn:0-9999,
970
971 dddd:0-9999,
972
973 o:0-7
974 )))|(((
975 nn:DB No.
976
977 dddd:address value
978
979 o: digit address
980 )))
981 |(% rowspan="8" %)Word|M|MB|MB d|d:0-99999|
982 |M|MW|MW d|d:0-99999|(((
983 MW0=MB(0~~1)
984
985 MW2=MB(2~~3)
986
987 Address value is a multiple of 2
988 )))
989 |M|MD|MD d|d:0-99999|(((
990 MD0=MB(0~~3)
991
992 MD4=MB(4~~7)
993
994 Address value is a multiple of 4
995 )))
996 |I|IW|IW d|d:0-99999|
997 |Q|QW|QW d|d:0-99999|
998 |DB0.DB-DB99.DB|DBxDBB|DBxDBBnndddd|(((
999 nn:0-9999
1000
1001 dddd:0-9999
1002 )))|(((
1003 nn:DB No.
1004
1005 dddd:address value
1006 )))
1007 |DB0.DB-DB99.DB|DBxDBW|DBxDBWnndddd|(((
1008 nn:0-9999
1009
1010 dddd:0-9999
1011 )))|(((
1012 nn:DB No.
1013
1014 dddd:address value
1015
1016 Address value is a multiple of 2
1017 )))
1018 |DB0.DB-DB99.DB|DBxDBD|DBxDBDnndddd|(((
1019 nn:0-9999
1020
1021 dddd:0-9999
1022 )))|(((
1023 nn:DB No.
1024
1025 dddd:address value
1026
1027 Address value is a multiple of 4
1028 )))
1029
1030 **Communication Settings**
1031
1032 Enable HMI Ethernet in [Project Settings];
1033
1034 (% style="text-align:center" %)
1035 [[image:12.PLC Protocol_html_43b671f18153910d.png||data-xwiki-image-style-alignment="center" height="107" width="405" class="img-rounded img-thumbnail"]]
1036
1037 Set PLC IP in [Device IP] settings;
1038
1039 (% style="text-align:center" %)
1040 [[image:12.PLC Protocol_html_f7b3eb9abda33833.png||data-xwiki-image-style-alignment="center" height="190" width="554" class="img-thumbnail"]]
1041
1042 **✎Note:**
1043
1044 * The S7-1200 supports simultaneous connection of three devices, so the driver supports simultaneous access to PLC by three touch screens.
1045 * HMI access PLC, use S7 protocol, access PLC TSAP 02.01 (s7-1200 PROFINET interface only supports three connections, the default support), detailed reference to the system manual of S7-1200.
1046
1047 **Cable Wiring**
1048
1049 [[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.可编程逻辑控制器Protocol_html_2297240b57346b2a.png" height="170" width="401"]]
1050
1051 == (% id="cke_bm_25456S" style="display:none" %)** **(%%)**LOGO Ethernet Protocol** ==
1052
1053 Supported Series: Siemens Logo 0BA0 series
1054
1055 **HMI Settings**
1056
1057 (% class="table-bordered" %)
1058 |**Items**|**Settings**|**Note**
1059 |Protocol|Siemens LOGO|
1060 |Connection|Ethernet|
1061 |Port No.|102|
1062 |PLC station No.|2|
1063
1064 **Address List**
1065
1066 (% class="table-bordered" %)
1067 |**Number**|**Address Type**|**Data Type**|**Range**|**DB Address**|**PLC Address**
1068 |1|RTC|Word|1-7|DB1.DBX984.0|0x001ec0
1069 |2|VB|Byte|0-1469|DB1.DBX0.0|0x000000
1070 |3|VD|Double Word|0-1466|DB1.DBX0.0|0x000000
1071 |4|VW|Word|0-1468|DB1.DBX0.0|0x000000
1072 |5|NAQ|Word|1-32|DB1.DBX1406.0|0x002bf0
1073 |6|NAI|Word|1-64|DB1.DBX1262.0|0x002770
1074 |7|AM|Word|1-64|DB1.DBX1118.0|0x0022f0
1075 |8|AQ|Word|1-16|DB1.DBX1072.0|0x002180
1076 |9|AI|Word|1-16|DB1.DBX1032.0|0x002040
1077 |10|I|Bit|1-64|DB1.DBX1024.0|0x002000
1078 |11|Q|Bit|1-64|DB1.DBX1064.0|0x002140
1079 |12|M|Bit|1-112|DB1.DBX1104.0|0x002280
1080 |13|NI|Bit|1-128|DB1.DBX1246.0|0x0026f0
1081 |14|NQ|Bit|1-128|DB1.DBX1390.0|0x002b70
1082 |15|V|Bit|0-14697|DB1.DBX0.0|0x000000
1083
1084 **PLC Settings in LOGO Software:**
1085
1086 Click [Tools]~-~-[Ethernet Connections],shown as below.
1087
1088 (% style="text-align:center" %)
1089 [[image:12.PLC Protocol_html_8b9d2322edf89519.png||data-xwiki-image-style-alignment="center" height="641" width="423" class="img-thumbnail"]]
1090
1091 Set Ethernet connection parameter. IP, Subnet Mask, shown as below.
1092
1093 (% style="text-align:center" %)
1094 [[image:12.PLC Protocol_html_6c4dd041b26cd8a1.png||data-xwiki-image-style-alignment="center" height="481" width="363" class="img-thumbnail"]]
1095
1096 **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.
1097
1098 (% style="text-align:center" %)
1099 [[image:12.PLC Protocol_html_7af2611d3790a77d.png||data-xwiki-image-style-alignment="center" height="359" width="426" class="img-thumbnail"]]
1100
1101 **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.
1102
1103 (% style="text-align:center" %)
1104 [[image:12.PLC Protocol_html_3243e4cd600595cc.png||data-xwiki-image-style-alignment="center" height="368" width="554" class="img-thumbnail"]]
1105
1106
1107 (% style="text-align:center" %)
1108 [[image:12.PLC Protocol_html_cb1d92e2cc91a8db.png||data-xwiki-image-style-alignment="center" height="320" width="553" class="img-thumbnail"]]
1109
1110
1111 **HMI Communication Settings**
1112
1113 Set PLC IP in [Device IP] settings;
1114
1115 (% style="text-align:center" %)
1116 [[image:SiemensLOGODeviceIP.png]]
1117
1118 Enable HMI Ethernet in [Project Settings];
1119
1120 (% style="text-align:center" %)
1121 [[image:12.PLC Protocol_html_95917a3d92068467.png||data-xwiki-image-style-alignment="center" height="311" width="553" class="img-thumbnail"]]
1122
1123 TSAP setting
1124
1125 * Regarding the setting of PLC TSAP, HMI provides system special address for setting, it is recommended to run in HMI script initialization, write PLC TSAP to corresponding system special register.
1126 * HSW10118 = local TSAP of HMI, this is remote TSAP of PLC.
1127 * HSW10119 = Remote TSAP of HMI, this is local TSAP of PLC.
1128
1129 **✎Note:**
1130
1131 * The data of TSAP is hexadecimal format. For example: the remote TSAP configured in the PLC is set to 20.00, then HSW10118 should be set to 0x2000, that is, HSW10118 = 8192.
1132
1133 (% style="text-align:center" %)
1134 [[image:12.PLC Protocol_html_5c6374b21f46e01e.png||data-xwiki-image-style-alignment="center" height="139" width="498" class="img-thumbnail"]]
1135
1136
1137 * AI word address and Ibit address are read-only and cannot be written on HMI.
1138 * VW address should be even number.such as VW0, VW2, VW4...
1139 * VD address it takes two VW addresses.such as VD0,VD4,VD8...
1140 * Written value of RTC cannot exceed 255.
1141
1142 **Cable Wiring**
1143
1144 [[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.可编程逻辑控制器Protocol_html_2297240b57346b2a.png" height="170" width="401"]]
1145
1146 = Create communication with **Mitsubishi PLC** =
1147
1148 == **FX1S, 1N, 2N Series Protocol** ==
1149
1150 Supported Series: Mitsubishi FX1S, FX1N, FX2N series
1151
1152 **HMI Settings**
1153
1154 (% class="table-bordered" %)
1155 |**Item**|**Settings**|**Note**
1156 |Protocol|Mitsubishi FX1S/FX1N/FX2N|
1157 |Connection|RS422/RS485/RS232|
1158 |Baud rate|9600~~115200|
1159 |Data bit|7/8|
1160 |Parity|EVEN/Odd/None|
1161 |Stop bit|1/2|
1162 |PLC station No.|1~~255|
1163
1164 **Address List**
1165
1166 (% class="table-bordered" %)
1167 |**Type**|**Device registers**|**HMI registers**|**Format**|**Range**|**Note**
1168 |(% rowspan="7" %)Bit|X|X|Xo|0~~303237|
1169 |Y|Y|Y o|0~~303237|
1170 |M|M|M d|0~~99999|
1171 |T|T|T d|0~~99999|
1172 |C|C|C d|0~~99999|
1173 |S|S|S d|0~~99999|
1174 |SM|SM|SM d|8000~~9999|
1175 |(% rowspan="8" %)Word|X|X|Xo|0~~303237|
1176 |Y|Y|Y o|0~~303237|
1177 |M|M|M d|0~~99999|
1178 |T|T|T d|0~~99999|
1179 |C|C|C d|0~~199|
1180 |D|D|D d|0~~7999|
1181 |S|S|S d|0~~99999|
1182 |SD|SD|SD d|8000~~9999|
1183
1184 **Cable Wiring**
1185
1186 * **RS485**
1187
1188 (% style="text-align:center" %)
1189 [[image:12.PLC Protocol_html_d4012bdeb4ce4aae.png||data-xwiki-image-style-alignment="center" height="244" width="394" class="img-thumbnail"]]
1190
1191 (% style="text-align:center" %)
1192 [[image:12.PLC Protocol_html_4bf57ad8d44eacc4.png||data-xwiki-image-style-alignment="center" height="244" width="394" class="img-thumbnail"]]
1193
1194 * **RS422**
1195
1196 (% style="text-align:center" %)
1197 [[image:12.PLC Protocol_html_f8a6bebc5792960d.png||data-xwiki-image-style-alignment="center" height="253" width="402" class="img-thumbnail"]]
1198
1199 **✎Note:** COM3 only available in PI8000/PI9000 series.
1200
1201 == **FX3U/3G/3GA serial protocol** ==
1202
1203 (% class="wikigeneratedid" %)
1204 **1)HMI Settings**
1205
1206 |**Item**|**Settings**|**Note**
1207 |Protocol|Mitsubishi FX3U/3G/3GA|
1208 |Connection|RS422|
1209 |Baud rate|9600~~115200|
1210 |Data bit|7/8|
1211 |Parity|EVEN/Odd/None|
1212 |Stop bit|1/2|
1213 |PLC station No.|1~~255|
1214
1215 (% class="wikigeneratedid" %)
1216 **2)Address List**
1217
1218 |**Type**|**Device registers**|**HMI registers**|**Format**|**Range**|**Note**
1219 |(% rowspan="7" %)Bit|X|X|Xo|0~~303237|
1220 |Y|Y|Y o|0~~303237|
1221 |M|M|M d|0~~99999|
1222 |T|T|T d|0~~99999|
1223 |C|C|C d|0~~99999|
1224 |S|S|S d|0~~99999|
1225 |SM|SM|SM d|8000~~9999|
1226 |(% rowspan="8" %)Word|X|X|Xo|0~~303237|
1227 |Y|Y|Y o|0~~303237|
1228 |M|M|M d|0~~99999|
1229 |T|T|T d|0~~99999|
1230 |C|C|C d|0~~199|
1231 |D|D|D d|0~~7999|
1232 |S|S|S d|0~~99999|
1233 |SD|SD|SD d|8000~~9999|
1234
1235 **3)Configure the communication protocol**
1236
1237 [[image:image-20220831095222-1.png]]
1238
1239 [[image:image-20220831095743-2.png]]
1240
1241 **4)Cable Wiring**
1242
1243 Figure
1244
1245 [[image:image-20220831100333-7.png]]
1246
1247 Pin Definition Diagram
1248
1249 [[image:image-20220831100314-6.png]]
1250
1251 == **FX5U Ethernet Protocol** ==
1252
1253 Mitsubishi FX5U series PLC
1254
1255 **HMI Settings**
1256
1257 (% class="table-bordered" %)
1258 |**Items**|**Settings**|**Note**
1259 |Protocol|Mitsubishi FX5U|
1260 |Connection|Ethernet|
1261 |Port No.|5002|Must be the same as the PLC setting
1262 |PLC station No.|0|
1263
1264 **Address List**
1265
1266 (% class="table-bordered" %)
1267 |**Type**|**Device registers**|**HMI registers**|**Format**|**Range**|**Note**
1268 |(% rowspan="15" %)Bit|X|X|X o|0~~303237|
1269 |Y|Y|Y o|0~~303237|
1270 |M|M|M d|0~~99999|
1271 |B|B|B h|0~~7FFF|
1272 |F|F|F d|0~~32767|
1273 |SB|SB|SB h|0~~7FFF|
1274 |TS|TS|TS d|0~~1023|
1275 |TC|TC|TC d|0~~1023|
1276 |STS|STS|STS d|0~~1023|
1277 |STC|STC|STS d|0~~1023|
1278 |CS|CS|CS d|0~~1023|
1279 |CC|CC|CC d|0~~1023|
1280 |SM|SM|SM d|0~~9999|
1281 |L|L|L d|0~~32767|
1282 |S|S|S d|0~~4095|
1283 |(% rowspan="9" %)Word|W|W|W h|0~~3FF|
1284 |TN|TN|TN d|0~~1023|
1285 |STN|STN|STN d|0~~1023|
1286 |CN|CN|CN d|0~~1023|
1287 |R|R|R d|0~~32767|
1288 |SW|SW|SW h|0~~7FFF|
1289 |Z|Z|Z d|0~~23|
1290 |D|D|D d|0~~7999|
1291 |SD|SD|SD d|0~~11999|
1292
1293 **PLC Settings (GX Works 3)**
1294
1295 Find the [Ethernet port] in the navigation area.
1296
1297 (% style="text-align:center" %)
1298 [[image:12.PLC Protocol_html_8e8f85ace087346c.png||data-xwiki-image-style-alignment="center" height="593" width="300" class="img-thumbnail"]]
1299
1300 Select [Own Node Settings] in the [Setting Item List];
1301
1302 Set [IP Address], [Subnet Mask], [Default Gateway];
1303
1304 Click [Detailed Settings] into [Ethernet Configuration (Built-in Ethernet Port)] windows;
1305
1306 (% style="text-align:center" %)
1307 [[image:12.PLC Protocol_html_5d98495052c8c10e.png||data-xwiki-image-style-alignment="center" height="339" width="600" class="img-thumbnail"]]
1308
1309 Select [SLMP Connection Module] and add into host station as below picture shows;
1310
1311 Set Port number as 5002 (this is necessary settings);
1312
1313 Click [Close with Reflecting the Setting] to save and close window;
1314
1315 (% style="text-align:center" %)
1316 [[image:12.PLC Protocol_html_14b489fdc6c6589d.png||data-xwiki-image-style-alignment="center" height="350" width="600" class="img-thumbnail"]]
1317
1318 Click [Apply] to completed Etherenet settings;
1319
1320 Switch to the [On line data operation] interface as below, check the item and click [Execute] to download.
1321
1322 (% style="text-align:center" %)
1323 [[image:12.PLC Protocol_html_c93025a968a8a9e7.png||data-xwiki-image-style-alignment="center" height="434" width="600" class="img-thumbnail"]]
1324
1325 **Cable Wiring**
1326
1327 (% style="text-align:center" %)
1328 [[image:12.PLC Protocol_html_2297240b57346b2a.png||data-xwiki-image-style-alignment="center" height="170" width="401" class="img-thumbnail"]]
1329
1330 == **FX5U Serial Port Protocol** ==
1331
1332 Mitsubishi FX5U series PLC
1333
1334 **HMI Settings**
1335
1336 (% class="table-bordered" %)
1337 |**Item**|**Settings**|**Note**
1338 |Protocol|Mitsubishi FX5U|
1339 |Connection|RS422/RS485|
1340 |Baud rate|9600|
1341 |Data bit|7|
1342 |Parity|Odd|
1343 |Stop bit|1|
1344 |PLC station No.|1~~255|Need to be the same as PLC settings
1345
1346 **Address List**
1347
1348 (% class="table-bordered" %)
1349 |**Type**|**Device registers**|**HMI registers**|**Format**|**Range**|**Note**
1350 |(% rowspan="15" %)Bit|X|X|X o|0~~303237|
1351 |Y|Y|Y o|0~~303237|
1352 |M|M|M d|0~~99999|
1353 |B|B|B h|0~~7FFF|
1354 |F|F|F d|0~~32767|
1355 |SB|SB|SB h|0~~7FFF|
1356 |TS|TS|TS d|0~~1023|
1357 |TC|TC|TC d|0~~1023|
1358 |STS|STS|STS d|0~~1023|
1359 |STC|STC|STS d|0~~1023|
1360 |CS|CS|CS d|0~~1023|
1361 |CC|CC|CC d|0~~1023|
1362 |SM|SM|SM d|0~~9999|
1363 |L|L|L d|0~~32767|
1364 |S|S|S d|0~~4095|
1365 |(% rowspan="9" %)Word|W|W|W h|0~~3FF|
1366 |TN|TN|TN d|0~~1023|
1367 |STN|STN|STN d|0~~1023|
1368 |CN|CN|CN d|0~~1023|
1369 |R|R|R d|0~~32767|
1370 |SW|SW|SW h|0~~7FFF|
1371 |Z|Z|Z d|0~~23|
1372 |D|D|D d|0~~7999|
1373 |SD|SD|SD d|0~~11999|
1374
1375 **PLC Settings (GX Works 3)**
1376
1377 Create a blank FX5U project
1378
1379 Find the 485 serial port module in the system navigation bar and double click to enter the settings.
1380
1381 (% style="text-align:center" %)
1382 [[image:12.PLC Protocol_html_5c9cb13fac1e6c93.png||data-xwiki-image-style-alignment="center" height="462" width="200" class="img-thumbnail"]]
1383
1384 Select protocol in the setting item, and set parameters.
1385
1386 (% style="text-align:center" %)
1387 [[image:12.PLC Protocol_html_de942589ca070228.png||data-xwiki-image-style-alignment="center" height="324" width="600" class="img-thumbnail"]]
1388
1389 Set station number, and [Message Pattern] (Pattern 1 or Pattern 4)
1390
1391 (% style="text-align:center" %)
1392 [[image:12.PLC Protocol_html_387ec7d00b5feb59.png||data-xwiki-image-style-alignment="center" height="323" width="600" class="img-thumbnail"]]
1393
1394 Click the [Apply] button to finish the setting.
1395
1396 Click download and select the items as below, then click [execute] to download the configuration to PLC.
1397
1398 (% style="text-align:center" %)
1399 [[image:12.PLC Protocol_html_cdef1c5ec8cc2105.png||data-xwiki-image-style-alignment="center" height="434" width="600" class="img-thumbnail"]]
1400
1401 As soon as download is completed, connect PLC with serial port, then configure it in the [Specify Connection Destination Connection].
1402
1403 Done.
1404
1405 **Cable Wiring**
1406
1407 * **RS485**
1408
1409 (% style="text-align:center" %)
1410 [[image:12.PLC Protocol_html_d4012bdeb4ce4aae.png||data-xwiki-image-style-alignment="center" height="244" width="394" class="img-thumbnail"]]
1411
1412 (% style="text-align:center" %)
1413 [[image:12.PLC Protocol_html_4bf57ad8d44eacc4.png||data-xwiki-image-style-alignment="center" height="244" width="394" class="img-thumbnail"]]
1414
1415 * **RS422**
1416
1417 (% style="text-align:center" %)
1418 [[image:12.PLC Protocol_html_f8a6bebc5792960d.png||data-xwiki-image-style-alignment="center" height="253" width="402" class="img-thumbnail"]]
1419
1420 **✎Note:** COM3 only available in PI8000/PI9000 series.
1421
1422 == **L02 MELSEC (Ethernet) Protocol** ==
1423
1424 Mitsubishi Q series CPU built-in Ethernet port.
1425
1426 **HMI Settings**
1427
1428 (% class="table-bordered" %)
1429 |**Items**|**Settings**|**Note**
1430 |Protocol|MIT L02 CPU MELSEC|
1431 |Connection|Ethernet|
1432 |Port No.|1025|Must be the same as the PLC setting
1433 |PLC station No.|0|Must be the same as the PLC setting
1434
1435 **Address List**
1436
1437 (% class="table-bordered" %)
1438 |**Type**|**Device registers**|**HMI registers**|**Format**|**Range**|**Note**
1439 |Bit|X|X|X h|0~~FFFF|
1440 |Bit|Y|Y|Y h|0~~FFFF|
1441 |Bit|M|M|M d|0~~9999|
1442 |Bit|L|L|L d|0~~9999|
1443 |Bit|F|F|F d|0~~9999|
1444 |Bit|B|B|B h|0~~FFFF|
1445 |Bit|V|V|V d|0~~2047|
1446 |Bit|TC|TC|TC d|0~~9999|
1447 |Bit|SS|SS|SS d|0~~9999|
1448 |Bit|SC|SC|SC d|0~~9999|
1449 |Bit|CS|CS|CS d|0~~9999|
1450 |Bit|CC|CC|CC d|0~~9999|
1451 |Bit|SB|SB|SB h|0~~FFFF|
1452 |Bit|SM|SM|SM d|0~~2047|
1453 |Bit|STS|STS|STS d|0~~1023|
1454 |Bit|S|S|S d|0~~9999|
1455 |Bit|DX|DX|DX h|0~~FFFF|
1456 |Bit|DY|DY|DY h|0~~FFFF|
1457 |Bit|TS|TS|TS d|0~~9999|
1458 |Bit|Dbit|Dbit|Dbit d.d|0~~99999.0~~15|
1459 |Word|W|W|W h|0~~FFFF|
1460 |Word|TN|TN|TN d|0~~99999|
1461 |Word|SN|SN|SN d|0~~99999|
1462 |Word|CN|CN|CN d|0~~99999|
1463 |Word|R|R|R d|0~~99999|
1464 |Word|SW|SW|SW h|0~~FFFF|
1465 |Word|Z|Z|Z d|0~~99999|
1466 |Word|ZR|ZR|ZR h|0~~FFFF|
1467 |Word|D|D|D d|0~~99999|
1468
1469 **Communication Settings**
1470
1471 Enable HMI Ethernet in [Project Settings];
1472
1473 (% id="cke_bm_7504S" style="display:none" %) [[image:12.PLC Protocol_html_43b671f18153910d.png||height="107" width="405"]]
1474
1475 Set PLC IP in [Device IP] settings;
1476
1477 (% style="text-align:center" %)
1478 [[image:12.PLC Protocol_html_38189fae42f6caa7.png||data-xwiki-image-style-alignment="center" height="206" width="600" class="img-thumbnail"]]
1479
1480 **PLC Settings (GX Works2 )**
1481
1482 Create a project
1483
1484 Set PLC IP, subnet mask and gateway;
1485
1486 Select [Binary Code] as communication data code;
1487
1488 (% style="text-align:center" %)
1489 [[image:12.PLC Protocol_html_776e17505f3fc6c0.png||data-xwiki-image-style-alignment="center" height="524" width="600" class="img-thumbnail"]]
1490
1491 Set PLC port number, for example 1025
1492
1493 (% style="text-align:center" %)
1494 [[image:12.PLC Protocol_html_8d0d1a22d388f70b.png||data-xwiki-image-style-alignment="center" height="524" width="600" class="img-thumbnail"]]
1495
1496 Save settings;
1497
1498 Download project into PLC device;
1499
1500 Restart PLC device;
1501
1502 **Cable Wiring**
1503
1504 (% style="text-align:center" %)
1505 [[image:12.PLC Protocol_html_2297240b57346b2a.png||data-xwiki-image-style-alignment="center" height="170" width="401" class="img-thumbnail"]]
1506
1507 == **QJ71E71 MELSEC Protocol** ==
1508
1509 Mitsubishi QJ71E71 Ethernet communication module;
1510
1511 **HMI Settings**
1512
1513 (% class="table-bordered" %)
1514 |**Items**|**Settings**|**Note**
1515 |Protocol|MIT QJ71E71 MELSEC|
1516 |Connection|Ethernet|
1517 |Port No.|1025|Must be the same as the PLC setting
1518 |PLC station No.|0|Must be the same as the PLC setting
1519
1520 **Address List**
1521
1522 (% class="table-bordered" %)
1523 |**Type**|**Device registers**|**HMI registers**|**Format**|**Range**|**Note**
1524 |(% rowspan="18" %)Bit|X|X|X h|0~~1FFF|
1525 |Y|Y|Y h|0~~1FFF|
1526 |M|M|M d|0~~99999|
1527 |L|L|L d|0~~8191|
1528 |F|F|F d|0~~2047|
1529 |B|B|B h|0~~1FFF|
1530 |V|V|V d|0~~2047|
1531 |TS|TS|TS d|0~~2047|
1532 |TC|TC|TC d|0~~2047|
1533 |SS|SS|SS d|0~~2047|
1534 |SC|SC|SC d|0~~2047|
1535 |CS|CS|CS d|0~~1023|
1536 |CC|CC|CC d|0~~1023|
1537 |SB|SB|SB h|0~~7FF|
1538 |S|S|S d|0~~8191|
1539 |DX|DX|DX h|0~~1FFF|
1540 |DY|DY|DY h|0~~1FFF|
1541 |SM|SM|SM d|8000~~9999|
1542 |(% rowspan="10" %)Word|SD|SD|SD d|0~~2047|
1543 |D|D|D d|0~~12287|
1544 |W|W|W h|0~~1FFF|
1545 |TN|TN|TN d|0~~2047|
1546 |SN|SN|SN d|0~~2047|
1547 |CN|CN|CN d|0~~1023|
1548 |R|R|R d|0~~32767|
1549 |SW|SW|SW h|0~~7FF|
1550 |Z|Z|Z d|0~~15|
1551 |ZR|ZR|ZR h|0~~FE7FF|
1552
1553 **HMI Communication Settings**
1554
1555 1) Enable HMI Ethernet in [Project Settings];
1556
1557 (% id="cke_bm_7537S" style="display:none" %) [[image:12.PLC Protocol_html_43b671f18153910d.png||height="107" width="405"]]
1558
1559 2) Set PLC IP in [Device IP] settings;
1560
1561 (% style="text-align:center" %)
1562 [[image:12.PLC Protocol_html_2d566cb5ffb2618c.png||data-xwiki-image-style-alignment="center" height="190" width="554" class="img-thumbnail"]]
1563
1564 **PLC Settings(GX Works2)**
1565
1566 * Click [Ethernet/CC IE/MELSECNET];
1567 * Please select [Ethernet] as network type;
1568 * Set station I/O number according to situation (For example, 0000 means that the module is connected to PLC CPU in first order);
1569 * Select [Online] as Mode;(% id="cke_bm_8449S" style="display:none" %) [[image:12.PLC Protocol_html_acd084d845da380e.png||height="300" width="554"]]
1570 * Click [Operation setting] to set IP;
1571 * Select [Binary Code] as [Communication Data Code];(% id="cke_bm_8474S" style="display:none" %) [[image:12.PLC Protocol_html_a972e671d2bb9150.png||height="304" width="553"]]
1572 * Set protocol: TCP;
1573 * Set [unpassive] in [Open system];
1574 * Set [receive] in [Fixed buffer];
1575 * Set [procedure Exist] in [Fixed buffer communication];
1576 * Disable [Pairing open];
1577 * Set [No confirm] in [Existence confirmation];
1578 * Host station port number: 1025;
1579 * (% id="cke_bm_8547S" style="display:none" %)[[image:12.PLC Protocol_html_f2c432006cdd2f9.png||height="220" width="553"]](%%)Save settings;
1580 * Download project into PLC and restart it
1581
1582 **Cable Wiring**
1583
1584 (% style="text-align:center" %)
1585 [[image:12.PLC Protocol_html_2297240b57346b2a.png||data-xwiki-image-style-alignment="center" height="170" width="401" class="img-thumbnail"]]
1586
1587 = Create communication with **Delta PLC** =
1588
1589 == **DVP serial protocol** ==
1590
1591 (% class="wikigeneratedid" %)
1592 Supported Series: Delta DVP EH/ES/SS/EX/EH2/SV/SA/SC/SX Controller
1593
1594 **1)HMI Settings**
1595
1596 |**Item**|**Settings**|**Note**
1597 |Protocol|DELTA DVP Series|
1598 |Connection|RS485|
1599 |Baud rate|9600|
1600 |Data bit|7|
1601 |Parity|Even|
1602 |Stop bit|1|
1603 |PLC station No.|1~~255|Need to be the same as PLC settings
1604
1605 **2)Address List**
1606
1607 |**Type**|**Device registers**|**HMI registers**|**Format**|**Range**|**Note**
1608 |Bit|X|X|X d|0~~303237|
1609 |Bit|Y|Y|Y d|0~~303237|
1610 |Bit|M|M|M d|0~~99999|
1611 |Bit|T|T|T d|0~~99999|
1612 |Bit|C|C|T d|0~~99999|
1613 |Bit|S|S|T d|0~~99999|
1614 |Word|D|D|D d|0~~99999|
1615 |Word|T|T|T d|0~~99999|
1616 |Word|C|C|C d|0~~99999|
1617
1618 (% class="wikigeneratedid" %)
1619 **3)Configure the communication protocol**
1620
1621 (% class="wikigeneratedid" %)
1622 [[image:image-20220829152327-6.png]]
1623
1624 (% class="wikigeneratedid" %)
1625 [[image:image-20220829152016-3.png]]
1626
1627 (% class="wikigeneratedid" %)
1628 **4)Cable Wiring**
1629
1630 (% class="wikigeneratedid" id="H" %)
1631 [[image:image-20220829152610-7.png]]
1632
1633 (% class="wikigeneratedid" id="H" %)
1634 [[image:image-20220829152102-5.png]]
1635
1636
1637 == **DVP Ethernet Protocol** ==
1638
1639 (% class="wikigeneratedid" %)
1640 Supported Series: Delta DVP ES2/EX2/SS2/SA2/SX2/SE Controller
1641
1642 **1)HMI Settings**
1643
1644 |**Items**|**Settings**|**Note**
1645 |Protocol|DELTA DVP Modbus TCP|
1646 |Connection|Ethernet|
1647 |Port No.|201|Must be the same as the PLC setting
1648 |PLC station No.|0|Must be the same as the PLC setting
1649
1650 **2)Address List**
1651
1652 |**Type**|**Device registers**|**HMI registers**|**Format**|**Range**|**Note**
1653 |Bit|X|X|X o|0~~377|
1654 |Bit|Y|Y|Y o|0~~377|
1655 |Bit|M0|M0|M0 d|0~~1535|
1656 |Bit|M1|M1|M1 d|1536~~4095|
1657 |Bit|T|T|T d|0~~255|
1658 |Bit|C|C|C d|0~~255|
1659 |Bit|S|S|S d|0~~1023|
1660 |Word|D0|D0|D0 d|0~~4095|
1661 |Word|D1|D1|D1 d|4096~~11999|(((
1662
1663 )))
1664 |Word|T|T|T d|0~~255|
1665 |Word|C|C|C d|0~~199|(((
1666
1667 )))
1668
1669 (% class="wikigeneratedid" %)
1670 **3)Configure the communication protocol**
1671
1672 [[image:image-20220829155452-1.png]]
1673
1674 [[image:image-20220829162116-2.png]]
1675
1676 **4)Cable Wiring**
1677
1678 [[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"]]
1679
1680 == **AS serial protocol** ==
1681
1682 **1)HMI Settings**
1683
1684 |**Item**|**Settings**|**Note**
1685 |Protocol|DELTA AS300 MODBUS RTU|
1686 |Connection|RS485|
1687 |Baud rate|9600|
1688 |Data bit|8|
1689 |Parity|NONE|
1690 |Stop bit|1|
1691 |PLC station No.|1|
1692
1693 **2)Address List**
1694
1695
1696 |**Type**|**Device registers**|**HMI registers**|**Format**|**Range**|**Note**
1697 |Bit|X|X|X o|0~~63|
1698 |Bit|Y|Y|Y o|0~~63|
1699 |Bit|D|D|D d|0~~29999|
1700 |Bit|M|M|M d|0~~8191|
1701 |Bit|SM|SM|SM d|0~~4095|
1702 |Bit|S|S|S d|0~~2047|
1703 |Bit|T|T|T d|0~~511|
1704 |Bit|C|C|C d|0~~511|
1705 |Bit|HC|HC|HC d|0~~255|
1706 |Word|X|X|X o|0~~63|
1707 |Word|Y|Y|Y o|0~~63|
1708 |Word|SR|SR|SR d|0~~2047|
1709 |Word|D|D|D d|0~~29999|
1710 |Word|T|T|T d|0~~511|
1711 |Word|C|C|C d|0~~511|
1712 |Word|E|E|E d|0~~9|
1713
1714 **3)Configure the communication protocol**
1715
1716 [[image:image-20220830094600-1.png]]
1717
1718 [[image:image-20220830094657-2.png]]
1719
1720 **4)Cable Wiring**
1721
1722 Figure
1723
1724 [[image:image-20220830141138-1.png]]
1725
1726 Pin Definition Diagram
1727
1728 [[image:image-20220830095131-1.png]]
1729
1730 == **AS Ethernet Protocol** ==
1731
1732 **1)HMI Settings**
1733
1734
1735 |=**Items**|=**Settings**|=**Note**
1736 |Protocol|DELTA AS300 MODBUS TCP|
1737 |Connection|Ethernet|
1738 |Port No.|502|
1739 |Device No.|1|
1740 |HMI No.|0|
1741
1742 **2)Address List**
1743
1744
1745 |**Type**|**Device registers**|**HMI registers**|**Format**|**Range**|**Note**
1746 |Bit|X|X|X d|0~~63|
1747 |Bit|Y|Y|Y d|0~~63|
1748 |Bit|D|D|D d|0~~29999|
1749 |Bit|M|M|M d|0~~8191|
1750 |Bit|SM|SM|SM d|0~~4095|
1751 |Bit|S|S|S h|0~~2047|
1752 |Bit|T|T|T d|0~~511|
1753 |Bit|C|C|C d|0~~511|
1754 |Bit|HC|HC|HC d|0~~255|
1755 |Word|X|X|X h|0~~63|
1756 |Word|Y|Y|Y d|0~~63|
1757 |Word|SR|SR|SR d|0~~2047|
1758 |Word|D|D|D d|0~~29999|
1759 |Word|T|T|T d|0~~511|
1760 |Word|C|C|C h|0~~511|
1761 |Word|E|E|E d|0~~9|
1762
1763 **3)Configure the communication protocol**
1764
1765 [[image:image-20220830140537-1.png]]
1766
1767 [[image:image-20220830140629-2.png]]
1768
1769 **4)Cable Wiring**
1770
1771 Figure
1772
1773 [[image:image-20220830094929-1.png]]
1774
1775 Pin Definition Diagram
1776
1777 [[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"]]
1778
1779 = Create communication with **Omron** PLC =
1780
1781 == **CJ TCP FINS Ethemet  Protocol** ==
1782
1783 Supported device:CJ series
1784
1785 **1)HMI Settings**
1786
1787 |=**Items**|=**Settings**|=**Note**
1788 |Protocol|OMRON CJ TCP FINS Ethemet|
1789 |Connection|Ethernet|
1790 |Port No.|9600|
1791 |Device No.|0|
1792 |HMI No.|0|(((
1793
1794 )))
1795
1796 **2)Address List**
1797
1798 |**Type**|**Device registers**|**HMI registers**|**Format**|**Range**|**Note**
1799 |Bit|CIO|CIO|CIO d|0~~99999|
1800 |Bit|W|W|W d|0~~99999|
1801 |Bit|D|D|D d|0~~99999|
1802 |Bit|H|H|H d|0~~99999|
1803 |Bit|A|A|A d|0~~99999|
1804 |Bit|T|T|T h|0~~99999|
1805 |Bit|CF|CF|CF d|0~~99999|
1806 |Bit|FF|FF|FF d|0~~99999|
1807 |Bit|C|C|C d|0~~99999|
1808 |Bit|EM0|EM0|EM0 d|0~~99999|
1809 |Bit|EM1|EM1|EM1 d|0~~99999|
1810 |Bit|EM2|EM2|EM2 d|0~~99999|
1811 |Bit|EM3|EM3|EM3 d|0~~99999|
1812 |Bit|EM4|EM4|EM4 d|0~~99999|
1813 |Bit|EM5|EM5|EM5 h|0~~99999|
1814 |Bit|EM6|EM6|EM6 d|0~~99999|
1815 |Bit|EM7|EM7|EM7 d|0~~99999|
1816 |Bit|EM8|EM8|EM8 d|0~~99999|
1817 |Bit|EM9|EM9|EM9 d|0~~99999|
1818 |Bit|EMA|EMA|EMA d|0~~99999|
1819 |Bit|EMB|EMB|EMB d|0~~99999|
1820 |Bit|EMC|EMC|EMC d|0~~99999|
1821 |Bit|Lamp|Lamp|Lamp d|0~~0|
1822 |Word|CIO|CIO|CIO d|0~~99999|
1823 |Word|W|W|W d|0~~99999|
1824 |Word|D|D|D d|0~~99999|
1825 |Word|H|H|H d|0~~99999|
1826 |Word|A|A|A d|0~~99999|
1827 |Word|T|T|T h|0~~99999|
1828 |Word|CF|CF|CF d|0~~99999|
1829 |Word|FF|FF|FF d|0~~99999|
1830 |Word|C|C|C d|0~~99999|
1831 |Word|EM0|EM0|EM0 d|0~~99999|
1832 |Word|EM1|EM1|EM1 d|0~~99999|
1833 |Word|EM2|EM2|EM2 d|0~~99999|
1834 |Word|EM3|EM3|EM3 d|0~~99999|
1835 |Word|EM4|EM4|EM4 d|0~~99999|
1836 |Word|EM5|EM5|EM5 h|0~~99999|
1837 |Word|EM6|EM6|EM6 d|0~~99999|
1838 |Word|EM7|EM7|EM7 d|0~~99999|
1839 |Word|EM8|EM8|EM8 d|0~~99999|
1840 |Word|EM9|EM9|EM9 d|0~~99999|
1841 |Word|EMA|EMA|EMA d|0~~99999|
1842 |Word|EMB|EMB|EMB d|0~~99999|
1843 |Word|EMC|EMC|EMC d|0~~99999|
1844 |Word|IR|IR|IR d|0~~99999|
1845 |Word|DR|DR|DR d|0~~99999|
1846
1847 **3)Configure the communication protocol**
1848
1849 [[image:image-20220830143348-1.png]]
1850
1851 [[image:image-20220830143511-2.png]]
1852
1853 **4)Cable Wiring**
1854
1855 Pin Definition Diagram
1856
1857 [[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"]]
1858
1859 == **CP1E/CP1H serial protocol** ==
1860
1861 Supported device: OMRON CS1(CP1E/CP1H)
1862
1863 **1)HMI Settings**
1864
1865 **2)Address List**
1866
1867 **3)Configure the communication protocol**
1868
1869 **4)Cable Wiring**
1870
1871
1872 == **EC55 Protocol** ==
1873
1874 Supported device: EC55 temperature instrument
1875
1876 **1)HMI Settings**
1877
1878 |**Items**|**Settings**|**Note**
1879 |Protocol|Omron EC55|
1880 |Connection|RS485 (9600, 2, 7, EVEN)|
1881 |Port No.|None|
1882 |PLC station No.|0|
1883
1884 **2)Address List**
1885
1886 |**Type**|**Register**|**Device range**|**HMI range**|**Function**
1887 |(% rowspan="3" %)Double word|C0|0-13 (Hex)|0-19|Set read only parameter for area 0
1888 |C1|0-4D(Hex)|0-77|Set Read/Write parameter for area 0
1889 |C3|0-CD(Hex)|0-205|Set Read/Write parameter for area 1
1890 |(% rowspan="6" %)Word|80|0-13(Hex)|0-19|Set read only parameter in area 0
1891 |81|0-4D(Hex)|0-77|Set Read/Write parameter in area 0
1892 |83|0-CD(Hex)|0-205|Set Read/Write parameter in area 1
1893 |CP|-|0-6|Read controller intrinsic property
1894 |CS|-|0-2|Read controller states
1895 |CA|-|0-17|Action command
1896
1897 **3)Device Settings**
1898
1899 Omron E5CC PLC configuration
1900
1901 After entering the Communication Settings menu, please set the parameters to the default values for the following table. Press the cycle key of the instrument to enter the next setting.
1902
1903 (% style="text-align:center" %)
1904 [[image:12.PLC Protocol_html_3d95e093792ba98a.png||data-xwiki-image-style-alignment="center" height="229" width="550" class="img-thumbnail"]]
1905
1906 According to PLC configuration and communication port configuration information of the HMI, provide the corresponding steps and configuration screenshots. This configuration needs to communicate properly with the above PLC configuration. The project settings are as follows
1907
1908 (% style="text-align:center" %)
1909 [[image:12.PLC Protocol_html_be583aa69dd6cf4c.png||data-xwiki-image-style-alignment="center" height="242" width="550" class="img-thumbnail"]]
1910
1911 **✎Note:** The communication settings for HMI should be consistent with this setting.
1912
1913 **Cable Wiring**
1914
1915 (% style="text-align:center" %)
1916 [[image:12.PLC Protocol_html_5e9a81a14106da9e.png||data-xwiki-image-style-alignment="center" height="223" width="392" class="img-thumbnail"]]
1917
1918 (% style="text-align:center" %)
1919 [[image:12.PLC Protocol_html_1897d92be6948d58.png||data-xwiki-image-style-alignment="center" height="223" width="393" class="img-thumbnail"]]
1920
1921 **✎Note:**
1922
1923 * COM3 only available in PI8000/PI9000 series.
1924 * CA address could not support continuous writing function;
1925 * Because of CP address intrinsic property: read control intrinsic property, so please place the character input part in use. Set address with CP0 and character length 10, used to display controller type. And place a number input part, set address with CP5 (cache size). Do not place other CP type address without CP0 in screen, otherwise CP type address is invalid
1926 * When set value into read & write address, it is necessary to switch the temperature instrument meter to the corresponding interface according to the menu of the instrument where the address locates, so that the value could be written, otherwise, the value could not be written; When the communication write setting of the instrument is turned off, the writing function is invalid. Writing function could be opened by using the 00 address of the CA register, which write 01 value.
1927 * When continuous writing of a value to a read-write address, please make sure all continuous writing address could be written. Otherwise, if one of these addresses could not be written, then all continuous writing commands will fail.
1928 * Because of the mechanism problem, this protocol could not support CompoWay/F function that is read-write function of variables in protocol document.
1929 * When using double-word address, set the data format to 32 bits, otherwise the read/write function is unable.
1930 * Please set the communication delay time of 10ms in setting, to avoid that the instrument may not be able to communicate in a short time due to too fast data access and too much connection requests.
1931 * [[image:12.PLC Protocol_html_d428cad280fdefb3.png||height="276" width="347"]]Because of the particularity of the instrument, it is necessary to write the value of the address in the menu interface corresponding to the address, and to enter the menu where the address locates, so that the value could be written.
1932
1933 == **EtherNet/IP NX series Protocol** ==
1934
1935 Supported series: Omron NX/NJ series
1936
1937 **HMI Setting**
1938
1939 |**Items**|**Settings**|**Note**
1940 |Protocol|Omron NX Ethernet/IP|
1941 |Connection|Ethernet|
1942 |Port No.|44818|
1943 |PLC station No.|1|
1944
1945 **Instruction**
1946
1947 1) In Sysmac Studio, please select [Publish Only] for [Network Publish] when setting address tag.
1948
1949 2) When [Do not publish] is selected for a tag, different import methods may lead to different results. When import tags by [Get Tags from Device], the tag will be eliminated. If [Import tags] is selected, the tags will be imported, but the communication will not succeed.
1950
1951 (% style="text-align:center" %)
1952 [[image:12.PLC Protocol_html_4156caf6f116c570.png||data-xwiki-image-style-alignment="center" height="277" width="600" class="img-thumbnail"]]
1953
1954 **Export labels from Sysmac Studio**
1955
1956 Launch Sysmac Studio, under Global Variables create the address labels, and thenselect [Tools] -> [Export Global Variables];
1957
1958 (% style="text-align:center" %)
1959 [[image:12.PLC Protocol_html_26f91dee66c723e9.png||data-xwiki-image-style-alignment="center" height="276" width="600" class="img-thumbnail"]]
1960
1961 Launch PIStudio, in [Communication] Settings add Omron NX Ethernet/IP protocol;
1962
1963 Click [Label manage];
1964
1965 (% style="text-align:center" %)
1966 [[image:12.PLC Protocol_html_cd38d2d0c5187f6b.png||data-xwiki-image-style-alignment="center" height="276" width="600" class="img-thumbnail"]]
1967
1968 Click [Import labels] and then select the file exported in step 1;
1969
1970 (% style="text-align:center" %)
1971 [[image:12.PLC Protocol_html_52bd5da678bef9b4.png||data-xwiki-image-style-alignment="center" height="403" width="600" class="img-thumbnail"]]
1972
1973 The Import Status field shows the result, click [OK] to finish importing address labels;
1974
1975 (% style="text-align:center" %)
1976 [[image:12.PLC Protocol_html_7f0465a589b98912.png||data-xwiki-image-style-alignment="center" height="291" width="600" class="img-thumbnail"]]
1977
1978 **Communication Settings**
1979
1980 Enable HMI Ethernet in [Project Settings];
1981
1982 (% style="text-align:center" %)
1983 [[image:12.PLC Protocol_html_43b671f18153910d.png||data-xwiki-image-style-alignment="center" height="107" width="405" class="img-thumbnail"]]
1984
1985 Set PLC IP in [Device IP] settings;
1986
1987 (% style="text-align:center" %)
1988 [[image:12.PLC Protocol_html_437cb087b36b5784.png||data-xwiki-image-style-alignment="center" height="330" width="600" class="img-thumbnail"]]
1989
1990 (% style="text-align:center" %)
1991 [[image:12.PLC Protocol_html_60ef71528a99abf5.png||data-xwiki-image-style-alignment="center" height="188" width="554" class="img-thumbnail"]]
1992
1993 **Cable Wiring**
1994
1995 [[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"]]
1996
1997 = Create communication with Xinje** PLC** =
1998
1999 == **XC serial protocol** ==
2000
2001 **1)HMI Settings**
2002
2003 |**Item**|**Settings**|**Note**
2004 |Protocol|XINJE XC MODBUS|
2005 |Connection|RS232|
2006 |Baud rate|19200|
2007 |Data bit|8|
2008 |Parity|EVEN|
2009 |Stop bit|1|
2010 |PLC station No.|1|
2011
2012 **2)Address List**
2013
2014 |**Type**|**Device registers**|**HMI registers**|**Format**|**Range**|**Note**
2015 |Bit|M|M|M d|0~~8511|
2016 |Bit|X|X|X o|0~~1747|
2017 |Bit|Y|Y|Y o|0~~1747|
2018 |Bit|S|S|S d|0~~1023|
2019 |Bit|T|T|T d|0~~4095|
2020 |Bit|C|C|C d|0~~634|
2021 |Word|D|D|D d|0~~8511|
2022 |Word|TD|TD|TD d|0~~618|
2023 |Word|CD|CD|CD d|0~~634|
2024 |Word|FD|FD|FD d|0~~8511|
2025
2026 **3)Configure the communication protocol**
2027
2028 [[image:image-20220830154105-1.png]]
2029
2030 [[image:image-20220830154159-3.png]]
2031
2032 **4)Cable Wiring**
2033
2034 Figure
2035
2036 [[image:image-20220830155728-4.png]]
2037
2038 Pin Definition Diagram
2039
2040 [[image:image-20220830154131-2.png]]
2041
2042 == **XD serial protocol** ==
2043
2044 **1)HMI Settings**
2045
2046 Supported Series: Delta Xinjie XD/XE Series PLC
2047
2048 |**Item**|**Settings**|**Note**
2049 |Protocol|XINJE XD/XC MODBUS|
2050 |Connection|RS232|
2051 |Baud rate|19200|
2052 |Data bit|8|
2053 |Parity|EVEN|
2054 |Stop bit|1|
2055 |PLC station No.|1|
2056
2057 **2)Address List**
2058
2059 |**Type**|**Device registers**|**HMI registers**|**Format**|**Range**|**Note**
2060 |Bit|M|M|M d|0~~74999|
2061 |Bit|X1xx|X1xx|X1xx o|0~~1177|
2062 |Bit|X2xx|X2xx|X2xx o|0~~277|
2063 |Bit|X|X|X o|0~~77|
2064 |Bit|Y1xx|Y1xx|Y1xx o|0~~1177|
2065 |Bit|Y2xx|Y2xx|Y2xx o|0~~277|
2066 |Bit|Y|Y|Y o|0~~4095|
2067 |Bit|SM|SM|SM d|0~~4999|(((
2068
2069 )))
2070 |Bit|T|T|T d|0~~4999|
2071 |Bit|C|C|C d|0~~4999|
2072 |Bit|ET|ET|ET d|0~~31|
2073 |Bit|SE|SE|SE d|0~~31|
2074 |Bit|HM|HM|HM d|0~~11999|
2075 |Bit|HSC|HSC|HSC d|0~~39|
2076 |Bit|HS|HS|HS d|0~~999|
2077 |Bit|HT|HT|HT d|0~~1999|
2078 |Bit|HC|HC|HC d|0~~1999|
2079 |Bit|S|S|S d|0~~7999|
2080 |Word|D|D|D d|0~~69999|
2081 |Word|ID|ID|ID d|0~~99|
2082 |Word|ID1xx|ID1xx|ID1xx d|0~~999|
2083 |Word|ID2xx|ID2xx|ID2xx d|0~~299|
2084 |Word|QD|QD|QD d|0~~99|
2085 |Word|QD1xx|QD1xx|QD1xx d|0~~999|
2086 |Word|QD2xx|QD2xx|QD2xx d|0~~299|
2087 |Word|SD|SD|SD d|0~~4999|
2088 |Word|TD|TD|TD d|0~~575|
2089 |Word|CD|CD|CD d|0~~575|
2090 |Word|ETD|ETD|ETD d|0~~31|
2091 |Word|HD|HD|HD d|0~~24999|
2092 |Word|HSD|HSD|HSD d|0~~1023|
2093 |Word|HTD|HTD|HTD d|0~~95|
2094 |Word|HCD|HCD|HCD d|0~~95|
2095 |Word|HSCD|HSCD|HSCD d|0~~31|
2096 |Word|FD|FD|FD d|0~~8191|
2097 |Word|SFD|SFD|SFD d|0~~5999|
2098 |Word|FS|FS|FS d|0~~47|
2099
2100 **3)Configure the communication protocol**
2101
2102 [[image:image-20220830160042-1.png]]
2103
2104 [[image:image-20220830160129-2.png]]
2105
2106 **4)Cable Wiring**
2107
2108 Figure
2109
2110 [[image:image-20220830160257-4.png]]
2111
2112 Pin Definition Diagram
2113
2114 [[image:image-20220830160232-3.png]]
2115
2116 = Create communication with Inovance** PLC** =
2117
2118 == **H3U serial protocol** ==
2119
2120 **1)HMI Settings**
2121
2122 |**Item**|**Settings**|**Note**
2123 |Protocol|INOVANCE H3U PLC|
2124 |Connection|RS22|
2125 |Baud rate|9600|
2126 |Data bit|7|
2127 |Parity|EVEN|
2128 |Stop bit|1|
2129 |PLC station No.|0|
2130
2131 **2)Address List**
2132
2133 |**Type**|**Device registers**|**HMI registers**|**Format**|**Range**|**Note**
2134 |Bit|X|X|X o|0~~303237|
2135 |Bit|Y|Y|Y o|0~~303237|
2136 |Bit|M|M|M d|0~~99999|
2137 |Bit|T|T|T d|0~~99999|
2138 |Bit|C|C|C d|0~~99999|
2139 |Bit|SM|SM|SM d|8000~~999|
2140 |Bit|S|T|S d|0~~99999|
2141 |Bit|Lamp|Lamp|Lamp d|0~~0|
2142 |Word|X|X|X o|0~~303237|
2143 |Word|Y|Y|Y o|0~~303237|
2144 |Word|M|M|M d|0~~99999|
2145 |Word|T|T|T d|0~~99999|
2146 |Word|C|C|C d|0~~199|
2147 |Word|D|D|D d|0~~7999|
2148 |Word|S|S|S d|0~~99999|
2149 |Word|SD|SD|SD d|8000~~9999|
2150 |Word|R|R|R d|0~~32767|
2151
2152 **3)Configure the communication protocol**
2153
2154 [[image:image-20220830170114-4.png]]
2155
2156 [[image:image-20220830170017-3.png]]
2157
2158
2159
2160 **4)Cable Wiring**
2161
2162 Figure
2163
2164 [[image:image-20220830165930-1.png]]
2165
2166
2167 Pin Definition Diagram
2168
2169 [[image:image-20220830165947-2.png]]
2170
2171 = Create communication with Panasonic** PLC** =
2172
2173 == **FP serial protocol** ==
2174
2175 **1)HMI Settings**
2176
2177 |**Item**|**Settings**|**Note**
2178 |Protocol|Panasonic FP MFWTOCOL|
2179 |Connection|RS232|
2180 |Baud rate|9600|
2181 |Data bit|8|
2182 |Parity|ODD|
2183 |Stop bit|1|
2184 |PLC station No.|1|
2185
2186 **2)Address List**
2187
2188 |(% style="width:143px" %)**Type**|(% style="width:409px" %)**Device registers**|(% style="width:342px" %)**HMI registers**|(% style="width:202px" %)**Format**|**Range**|**Note**
2189 |(% style="width:143px" %)Bit|(% style="width:409px" %)X|(% style="width:342px" %)X|(% style="width:202px" %)X d|0~~9999|
2190 |(% style="width:143px" %)Bit|(% style="width:409px" %)Y|(% style="width:342px" %)Y|(% style="width:202px" %)Y d|0~~9999|
2191 |(% style="width:143px" %)Bit|(% style="width:409px" %)R|(% style="width:342px" %)R|(% style="width:202px" %)R d|0~~9999|
2192 |(% style="width:143px" %)Bit|(% style="width:409px" %)T|(% style="width:342px" %)T|(% style="width:202px" %)T d|0~~9999|
2193 |(% style="width:143px" %)Bit|(% style="width:409px" %)C|(% style="width:342px" %)C|(% style="width:202px" %)C d|0~~9999|
2194 |(% style="width:143px" %)Bit|(% style="width:409px" %)L|(% style="width:342px" %)L|(% style="width:202px" %)L d|0~~9999|
2195 |(% style="width:143px" %)Word|(% style="width:409px" %)WX|(% style="width:342px" %)WX|(% style="width:202px" %)WX d|0~~9999|
2196 |(% style="width:143px" %)Word|(% style="width:409px" %)WY|(% style="width:342px" %)WY|(% style="width:202px" %)WY d|0~~9999|
2197 |(% style="width:143px" %)Word|(% style="width:409px" %)WR|(% style="width:342px" %)WR|(% style="width:202px" %)WR d|0~~9999|
2198 |(% style="width:143px" %)Word|(% style="width:409px" %)WL|(% style="width:342px" %)WL|(% style="width:202px" %)WL d|0~~9999|
2199 |(% style="width:143px" %)Word|(% style="width:409px" %)LD|(% style="width:342px" %)LD|(% style="width:202px" %)LD d|0~~9999|
2200 |(% style="width:143px" %)Word|(% style="width:409px" %)DT|(% style="width:342px" %)DT|(% style="width:202px" %)DT d|0~~65535|
2201 |(% style="width:143px" %)Word|(% style="width:409px" %)FL|(% style="width:342px" %)FL|(% style="width:202px" %)FL d|0~~9999|
2202 |(% style="width:143px" %)Word|(% style="width:409px" %)EV|(% style="width:342px" %)EV|(% style="width:202px" %)EV d|0~~9999|
2203 |(% style="width:143px" %)Word|(% style="width:409px" %)SV|(% style="width:342px" %)SV|(% style="width:202px" %)SV d|0~~9999|
2204
2205 **3)Configure the communication protocol**
2206
2207 [[image:image-20220830171050-1.png]]
2208
2209 [[image:image-20220830171126-2.png]]
2210
2211 **4)Cable Wiring**
2212
2213 Figure
2214
2215 [[image:image-20220830171328-4.png]]
2216
2217 Pin Definition Diagram
2218
2219 [[image:image-20220830171146-3.png]]
2220
2221 = Create communication with LS** PLC** =
2222
2223 == **XBC serial protocol** ==
2224
2225 **1)HMI Settings**
2226
2227 |**Item**|**Settings**|**Note**
2228 |Protocol|LS XBC CNet|
2229 |Connection|RS232|
2230 |Baud rate|115200|
2231 |Data bit|8|
2232 |Parity|NONE|
2233 |Stop bit|1|
2234 |PLC station No.|1|
2235
2236 **2)Address List**
2237
2238 |**Type**|(% style="width:398px" %)**Device registers**|(% style="width:331px" %)**HMI registers**|**Format**|**Range**|**Note**
2239 |Bit|(% style="width:398px" %)P|(% style="width:331px" %)P|P d|0~~2047|
2240 |Bit|(% style="width:398px" %)M|(% style="width:331px" %)M|M d|0~~2047|
2241 |Bit|(% style="width:398px" %)L|(% style="width:331px" %)L|L d|0~~11263|
2242 |Bit|(% style="width:398px" %)K|(% style="width:331px" %)K|K d|0~~16183|
2243 |Bit|(% style="width:398px" %)F|(% style="width:331px" %)F|F d|0~~2047|
2244 |Bit|(% style="width:398px" %)D|(% style="width:331px" %)D|D d|0~~32767|
2245 |Bit|(% style="width:398px" %)R|(% style="width:331px" %)R|R d|0~~32767|
2246 |Bit|(% style="width:398px" %)U|(% style="width:331px" %)U|U d|0~~4095|
2247 |Word|(% style="width:398px" %)P|(% style="width:331px" %)P|P d|0~~2047|
2248 |Word|(% style="width:398px" %)M|(% style="width:331px" %)M|M d|0~~2047|
2249 |Word|(% style="width:398px" %)L|(% style="width:331px" %)L|L d|0~~11263|
2250 |Word|(% style="width:398px" %)K|(% style="width:331px" %)K|K d|0~~16183|
2251 |Word|(% style="width:398px" %)F|(% style="width:331px" %)F|F d|0~~2047|
2252 |Word|(% style="width:398px" %)C|(% style="width:331px" %)C|C d|0~~2047|
2253 |Word|(% style="width:398px" %)T|(% style="width:331px" %)T|T d|0~~2047|
2254 |Word|(% style="width:398px" %)D|(% style="width:331px" %)D|D d|0~~32767|
2255 |Word|(% style="width:398px" %)N|(% style="width:331px" %)N|N d|0~~21503|
2256 |Word|(% style="width:398px" %)R|(% style="width:331px" %)R|R d|0~~32767|
2257 |Word|(% style="width:398px" %)U|(% style="width:331px" %)U|U d|0~~4095|
2258 |Word|(% style="width:398px" %)Z|(% style="width:398px" %)Z|Z d|0~~127|
2259 |Word|(% style="width:398px" %)S|(% style="width:331px" %)S|S d|0~~127|
2260
2261 **3)Configure the communication protocol**
2262
2263 [[image:image-20220830174853-3.png]]
2264
2265 [[image:image-20220830174733-2.png]]
2266
2267
2268
2269 **4)Cable Wiring**
2270
2271 Figure
2272
2273 [[image:image-20220830174659-1.png]]
2274
2275 Pin Definition Diagram
2276
2277 [[image:image-20220830173402-8.png]]
2278
2279 == **XGK FEnet Ethernet protocol** ==
2280
2281 Supported Series: LS XGT series XGK CPU with XGL-EFMT Ethernet module
2282
2283 **HMI Settings**
2284
2285 |**Items**|**Settings**|**Note**
2286 |Protocol|LG XGK FEnet(Ethernet)|
2287 |Connection|Ethernet|
2288 |Port No.|2004|
2289
2290 **Address List**
2291
2292 |**Type**|**Register**|**Range**|**Format**|**Note**
2293 |(% rowspan="14" %)Word|P|0~~2047|P d|
2294 |M|0~~2047|M d|
2295 |K|0~~2047|K d|
2296 |F|0~~2047|F d|
2297 |T|0~~2047|T d|
2298 |C|0~~2047|C d|
2299 |Z|0~~127|Z d|
2300 |S|0~~127|S d|
2301 |L|0~~11263|L d|
2302 |N|0~~21503|N d|
2303 |D|0~~32767|D d|
2304 |R|0~~32767|R d|
2305 |ZR|0~~65535|ZR d|
2306 |UxDD|0~~6331|UxDD nndd|nn: 0~~63, dd: 0~~31
2307
2308 **✎Note:**
2309
2310 * In addition to the "UxDD" register, the others correspond to the PLC register one by one. UxDD corresponds to U in the PLC;
2311 * The [UxDD] register, defined in the PLC is Ux.dd, x represents the block, and dd represents 0-31 of each block. There are 64 blocks in the PLC;
2312 * All bit registers are in the form of bits in word, and the range is the same as the word register;
2313
2314 **Communication settings in HMI**
2315
2316 Enable HMI Ethernet in [Project Settings];
2317
2318 (% style="text-align:center" %)
2319 [[image:12.PLC Protocol_html_43b671f18153910d.png||data-xwiki-image-style-alignment="center" height="107" width="405" class="img-thumbnail"]]
2320
2321 Set PLC IP in [Device IP] settings;
2322
2323 (% style="text-align:center" %)
2324 [[image:12.PLC Protocol_html_a2a19b5003ad4090.png||data-xwiki-image-style-alignment="center" height="189" width="554" class="img-thumbnail"]]
2325
2326 **Cable Wiring**
2327
2328 [[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.可编程逻辑控制器Protocol_html_2297240b57346b2a.png" height="170" width="401"]]
2329
2330 = Create communication with **SHIMADEN PLC** =
2331
2332 == **FP23 series protocol** ==
2333
2334 Supported series: SHIMADEN FP23 series
2335
2336 **HMI Setting**
2337
2338 |**Items**|**Settings**|**Note**
2339 |Protocol|SHIMADEN FP23 series|
2340 |Connection|RS485 (9600, 1, 7, EVEN)|
2341 |Port No.|None|
2342 |PLC station No.|0|
2343
2344 **Address List**
2345
2346 |**Device address**|**HMI register**|**Address range**|**Type**
2347 |0040-0043(HEX)|FP040|100064-200067|Read only
2348 |0100-010B(HEX)|FP100|100256-200267|Read only
2349 |0110-0142(HEX)|FP110|100272-200322|Read only
2350 |0182-0252(HEX)|FP182|100386-200594|Write only
2351 |0280-0281(HEX)|FP280|100640-200641|Read only
2352 |0300-030B(HEX)|FP300|100768-200779|Read and write
2353 |0380-039F(HEX)|FP380|100896-200927|Read and write
2354 |0400-04D7(HEX)|FP400|101024-201239|Read and write
2355 |0500-05B0(HEX)|FP500|101280-201456|Read and write
2356 |0600-0670(HEX)|FP600|101536-201814|Read and write
2357 |0720-0738(HEX)|FP720|101824-201848|Read and write
2358 |0800-083F(HEX)|FP800|102048-202111|Read and write
2359 |0900-0952(HEX)|FP900|102304-202386|Read and write
2360 | |Ctrl|0-2|
2361
2362 **✎Note:**
2363
2364 * The upper 2 bits of the address of the HMI register are taken as the sub address, and the real address is the last four bits (for example, if the address is 100256, then 10 is the sub address as 1, and 0256 is the real address);
2365 * The address range in the table is only divided by the start and end addresses, and some of the addresses in the range have no corresponding address in FP23;
2366 * The Ctrl register is used to store the control group number and BCC check mode.
2367
2368 **Ctrl Register Description**
2369
2370 * The Ctrl register is a special register that does not communicate with the temperature controller. User needs to assign value in the screen according to the settings as in the temperature controller.
2371 * Ctrl0 indicates the setting of the control character, the valid values are 1, 2, 3 respectively, and the corresponding control group is: STX_ETX_CR , STX_ETX_CR LF and @_:_CR .
2372 * Ctrl1 indicates the BCC block check mode. The valid value range is 1-4. The corresponding check mode is: 1.ADD, 2.ADD_two's cmp, 3.XOR, 4.None;
2373 * Ctrl3 reserved
2374
2375 **✎Note:**
2376
2377 After reloading the HMI project or restarting the HMI, HMI will reset the value of ctrl0 and ctrl1 as 1, so user need to set these two values to make it the same as it in the temperature controller, then communication will be normal.
2378
2379 **Cable Wiring**
2380
2381 (% style="text-align:center" %)
2382 [[image:12.PLC Protocol_html_5e9a81a14106da9e.png||data-xwiki-image-style-alignment="center" height="223" width="392" class="img-thumbnail"]]
2383
2384 (% style="text-align:center" %)
2385 [[image:12.PLC Protocol_html_1897d92be6948d58.png||data-xwiki-image-style-alignment="center" height="223" width="393" class="img-thumbnail"]]
2386
2387 **✎Note:** COM3 only available in PI8000/PI9000 series.
2388
2389 == **SR90 protocol** ==
2390
2391 Supported series: SHIMADEN SR90 series
2392
2393 **HMI Setting**
2394
2395 |**Items**|**Settings**|**Note**
2396 |Protocol|SHIMADEN SR90 protocol|
2397 |Connection|RS485 (1200, 1, 7, EVEN)|
2398 |Port No.|None|
2399 |PLC station No.|0|
2400
2401 **Address List**
2402
2403 |**Device address**|**HMI register**|**Address range**|**Type**
2404 |0040-0043 (HEX)|SR040|100064-100067|Read only
2405 |0100-010A(HEX)|SR0100|100256-100266|Read only
2406 |0182-018C(HEX)|SR0182|100386-100396|Write only
2407 |0300-04FE(HEX)|SR0300|100768-101278|Write/read
2408 |0500-050B(HEX)|SR0500|101280-101291|Write/read
2409 |0590-0611(HEX)|SR0590|101424-101553|Write/read
2410 |0701-0709(HEX)|SR0701|101793-101801|Write/read
2411 | |Ctrl|0-2|~-~-
2412
2413 **✎Note:**
2414
2415 * The upper 2 bits of the address of HMIs are taken as the sub address, and the real address is the last four bits (for example, if the address is 100256, then 10 is the sub address as 1, and 0256 is the real address);
2416 * The address range in the table is only divided by the start and end addresses, and some of the addresses in the range have no corresponding address in SR90;
2417 * The Ctrl register is used to store the control group number and BCC check mode. See how to use it below;
2418
2419 **Ctrl Register Description**
2420
2421 * The Ctrl register is a special register that does not communicate with the temperature controller. User needs to assign value in the screen according to the settings as in the temperature controller.
2422 * Ctrl0 indicates the setting of the control character, the valid values are 1, 2, 3 respectively, and the corresponding control group is: STX_ETX_CR , STX_ETX_CR LF and @_:_CR .
2423 * Ctrl1 indicates the BCC block check mode. The valid value range is 1-4. The corresponding check mode is: 1.ADD, 2.ADD_two's cmp, 3.XOR, 4.None;
2424 * Ctrl3 reserved
2425
2426 **✎Note:**
2427
2428 After reloading the HMI project or restarting the HMI, HMI will reset the value of ctrl0 and ctrl1 as 1, so user need to set these two values to make it the same as it in the temperature controller, then communication will be normal.
2429
2430 **Cable Wiring**
2431
2432 (% style="text-align:center" %)
2433 [[image:12.PLC Protocol_html_5e9a81a14106da9e.png||data-xwiki-image-style-alignment="center" height="223" width="392" class="img-thumbnail"]]
2434
2435 (% style="text-align:center" %)
2436 [[image:12.PLC Protocol_html_1897d92be6948d58.png||data-xwiki-image-style-alignment="center" height="223" width="393" class="img-thumbnail"]]
2437
2438 **✎Note:** COM3 only available in PI8000/PI9000 series.
2439
2440 == **MR13 series(standard protocol)** ==
2441
2442 Supported series: SHIMADEN MR13 series
2443
2444 **HMI Setting**
2445
2446 |**Items**|**Settings**|**Note**
2447 |Protocol|SHIMADEN standard protocol|
2448 |Connection|RS485 (1200, 1, 7, EVEN)|
2449 |Port No.|None|
2450 |PLC station No.|0|
2451
2452 **Address List**
2453
2454 |**Device address**|**HMI register**|**Address range**|**Type**
2455 |0100-010B(HEX)|MR100|100256-300267|Read only
2456 |0111-0126(HEX)|MR111|100273-300294|Read only
2457 |0184-0192(HEX)|MR184|100388-300402|Write only
2458 |0280-0282(HEX)|MR280|100640-300642|Read only
2459 |0300-030B(HEX)|MR300|100768-300779|Read/write
2460 |0314-0317(HEX)|MR314|100788-300791|Read/write
2461 |031A(HEX)|MR31A|100794-300794|Read/write
2462 |0320-0321(HEX)|MR320|100800-300801|Read/write
2463 |0400-0504(HEX)|MR400|101024-301284|Read/write
2464 |0506(HEX)|MR506|101286-301286|Read/write
2465 |0510-0514(HEX)|MR510|101296-301300|Read/write
2466 |0516-0524(HEX)|MR516|101302-301316|Read/write
2467 |0526(HEX)|MR526|101318-301318|Read/write
2468 |0580-08C3(HEX)|MR580|101408-302243|Read/write
2469 |~-~-|Ctrl|0-2|~-~-
2470
2471 **✎Note:**
2472
2473 * The upper 2 bits of the address of the HMI register are taken as the sub address, and the real address is the last four bits (for example, if the address is 100256, then 10 is the sub address as 1, and 0256 is the real address);
2474 * The address range in the table is only divided by the start and end addresses, and some of the addresses in the range have no corresponding address in MR13;
2475 * The Ctrl register is used to store the control group number and BCC check mode.
2476
2477 **Ctrl Register Description**
2478
2479 * The Ctrl register is a special register that does not communicate with the temperature controller. User needs to assign value in the screen according to the settings as in the temperature controller.
2480 * Ctrl0 indicates the setting of the control character, the valid values are 1, 2, 3 respectively, and the corresponding control group is: STX_ETX_CR, STX_ETX_CR LF and @_:_CR .
2481 * Ctrl1 indicates the BCC block check mode. The valid value range is 1-4. The corresponding check mode is: 1.ADD, 2.ADD_two's cmp, 3.XOR, 4.None;
2482 * Ctrl3 reserved
2483
2484 **✎Note:**
2485
2486 After reloading project or restarting the HMI, HMI will reset the value of ctrl0 and ctrl1 as 1, so user need to set these two values to make it the same as it in the temperature controller, then communication will be normal.
2487
2488 **Cable Wiring**
2489
2490 (% style="text-align:center" %)
2491 [[image:12.PLC Protocol_html_5e9a81a14106da9e.png||data-xwiki-image-style-alignment="center" height="223" width="392" class="img-thumbnail"]]
2492
2493 (% style="text-align:center" %)
2494 [[image:12.PLC Protocol_html_1897d92be6948d58.png||data-xwiki-image-style-alignment="center" height="223" width="393" class="img-thumbnail"]]
2495
2496 **✎Note:** COM3 only available in PI8000/PI9000 series.
2497
2498 = Create communication with **MODBUS** =
2499
2500 == **MODBUS RTU Master** ==
2501
2502 Supported Series: MODBUS RTU CONTROLLER
2503
2504 HMI works as MODBUS SLAVE connecting with MASTER
2505
2506 (% style="text-align:center" %)
2507 [[image:12.PLC Protocol_html_44425b313b0a6b96.png||data-xwiki-image-style-alignment="center" height="571" width="544" class="img-thumbnail"]]
2508
2509
2510 (% style="text-align:center" %)
2511 [[image:12.PLC Protocol_html_b56b9da32c3caaa.png||data-xwiki-image-style-alignment="center" height="462" width="600" class="img-thumbnail"]]
2512
2513
2514 (% style="text-align:center" %)
2515 [[image:12.PLC Protocol_html_67cd25458b9c72a6.png||data-xwiki-image-style-alignment="center" height="462" width="600" class="img-thumbnail"]]
2516
2517 **HMI Settings**
2518
2519 (% class="table-bordered" %)
2520 |**Items**|**Settings**|**Note**
2521 |Protocol|MODBUS RTU Master|
2522 |Connection|RS485/RS232|
2523 |Baud rate|2400~~187500|
2524 |Data bit|8|
2525 |Parity|Even/ Odd/ None|
2526 |Stop bit|1/2|
2527 |Station No.|0~~255|
2528
2529 **Address List**
2530
2531 (% class="table-bordered" %)
2532 |**Type**|**HMI address**|**MODBUS code**|**Range**
2533 |Bit|HDX3000.0~~HDX3499.15|0|0~~7999
2534 |Word|HDW3500~~HDW7999|4|0~~4499
2535
2536 **Cable Wiring**
2537
2538 * **RS485**
2539
2540 (% style="text-align:center" %)
2541 [[image:12.PLC Protocol_html_68dfb6d383f0edd9.png||data-xwiki-image-style-alignment="center" height="244" width="394" class="img-thumbnail"]]
2542
2543 (% style="text-align:center" %)
2544 [[image:12.PLC Protocol_html_cbeb90cb4faaa8bc.png||data-xwiki-image-style-alignment="center" height="244" width="394" class="img-thumbnail"]]
2545
2546 * **RS232**
2547
2548 (% style="text-align:center" %)
2549 [[image:12.PLC Protocol_html_9030ba679545793b.png||data-xwiki-image-style-alignment="center" height="241" width="387" class="img-thumbnail"]]
2550
2551 **✎Note:** COM3 only available in PI8000/PI9000 series.
2552
2553 == **MODBUS RTU Slave (All function)/(All function OneBaseAddress)** ==
2554
2555 Supported Series: MODBUS RTU CONTROLLER
2556
2557 HMI works as MODBUS MASTER connecting with SLAVE.
2558
2559 The addresses in [All function] start from 0, while the addresses in [All function OneBaseAddress] start from 1 (offset 1).
2560
2561 (% style="text-align:center" %)
2562 [[image:12.PLC Protocol_html_7236139c887defad.png||data-xwiki-image-style-alignment="center" height="571" width="544" class="img-thumbnail"]]
2563
2564
2565 (% style="text-align:center" %)
2566 [[image:12.PLC Protocol_html_de80207f2b495c17.png||data-xwiki-image-style-alignment="center" height="462" width="600" class="img-thumbnail"]]
2567
2568
2569 (% style="text-align:center" %)
2570 [[image:12.PLC Protocol_html_4e9e8eff81c7ff8b.png||data-xwiki-image-style-alignment="center" height="462" width="600" class="img-thumbnail"]]
2571
2572 **HMI Settings**
2573
2574 (% class="table-bordered" %)
2575 |**Items**|**Settings**|**Note**
2576 |Protocol|MODBUS RTU Slave (All function)/( All function OneBaseAddress)|
2577 |Connection|RS485/RS232|
2578 |Baud rate|2400~~187500|
2579 |Data bit|8|
2580 |Parity|Even/ Odd/ None|
2581 |Stop bit|1/2|
2582 |PLC station No.|0~~255|
2583
2584 **Address List**
2585
2586 (% class="table-bordered" %)
2587 |**Type**|**Address Type**|**Function code & Description**
2588 |(% rowspan="11" %)Word|(% rowspan="3" %)3|04 (read input register: read current binary value in one or more input registers)
2589 |06 (write single register: write a binary value to a holding register)
2590 |10 (write values to multiple addresses )
2591 |(% rowspan="3" %)4|03 (read holding register: read current binary value in one or more holding registers)
2592 |06 (write single register: write a binary value to a holding register)
2593 |10 (write values to multiple addresses )
2594 |(% rowspan="3" %)W6|03 (read holding register: read current binary value in one or more holding registers)
2595 |06 (write single register: write a binary value to a holding register)
2596 |10 (write values to multiple addresses )
2597 |(% rowspan="2" %)W16|03 (read holding register: read current binary value in one or more holding registers)
2598 |10 (write values to multiple addresses )
2599 |(% rowspan="11" %)Bit|(% rowspan="3" %)0|01 (Read coil state)
2600 |05 (Force a single coil to force the on/off state of a logic coil)
2601 |0F (Write multiple bits, ie write continuously)
2602 |(% rowspan="3" %)1|02 (Read the input state)
2603 |05 (Force a single coil to force the on/off state of a logic coil)
2604 |0F (Write multiple bits)
2605 |(% rowspan="3" %)W5|01 (Read coil state to obtain the current state of a set of logic coils)
2606 |05 (Force a single coil to force the on/off state of a logic coil)
2607 |0F (Write multiple bits)
2608 |(% rowspan="2" %)W15|01 (Read coil state to obtain the current state of a set of logic coils)
2609 |0F (Write multiple bits)
2610
2611 **✎Note:**
2612
2613 * Modbus can also support getting bit from the word, which could access the address such as 100.1 and other formats.
2614 * The function codes sent out are the same as those that read and write words.
2615
2616 **Station number for more than one slaves**
2617
2618 If there are more than one slaves connected to HMI, please set slave station number during editing address, as below shows.
2619
2620 (% style="text-align:center" %)
2621 [[image:12.PLC Protocol_html_31f028c6d80be344.png||data-xwiki-image-style-alignment="center" height="515" width="485" class="img-thumbnail"]]
2622
2623 **Cable Wiring**
2624
2625 * **RS485**
2626
2627 (% style="text-align:center" %)
2628 [[image:12.PLC Protocol_html_68dfb6d383f0edd9.png||data-xwiki-image-style-alignment="center" height="244" width="394" class="img-thumbnail"]]
2629
2630 (% style="text-align:center" %)
2631 [[image:12.PLC Protocol_html_cbeb90cb4faaa8bc.png||data-xwiki-image-style-alignment="center" height="244" width="394" class="img-thumbnail"]]
2632
2633 * **RS232**
2634
2635 (% style="text-align:center" %)
2636 [[image:12.PLC Protocol_html_9030ba679545793b.png||data-xwiki-image-style-alignment="center" height="241" width="387" class="img-thumbnail"]]
2637
2638 **✎Note:** COM3 only available in PI8000/PI9000 series.
2639
2640 == **MODBUS TCP Slave (All function)** ==
2641
2642 Supported series: MODBUS TCP controller
2643
2644 HMI works as MODBUS TCP MASTER connecting with TCP SLAVE
2645
2646 (% style="text-align:center" %)
2647 [[image:12.PLC Protocol_html_8877cb7f39c2b607.png||data-xwiki-image-style-alignment="center" height="571" width="544" class="img-thumbnail"]]
2648
2649 (% style="text-align:center" %)
2650 [[image:12.PLC Protocol_html_e7e1f06f127a9175.png||data-xwiki-image-style-alignment="center" height="426" width="553" class="img-thumbnail"]]
2651
2652
2653 (% style="text-align:center" %)
2654 [[image:12.PLC Protocol_html_60bbfe5de79417a6.png||data-xwiki-image-style-alignment="center" height="163" width="553" class="img-thumbnail"]]
2655
2656 **HMI Setting**
2657
2658 (% class="table-bordered" %)
2659 |**Items**|**Settings**|**Note**
2660 |Protocol|MODBUS TCP Slave (All function)|
2661 |Connection|Ethernet|
2662 |Port No.|502|
2663 |PLC station No.|1|
2664
2665 **Address List**
2666
2667 (% class="table-bordered" %)
2668 |**Type**|**Register**|**Function code & Description**
2669 |(% rowspan="11" %)Word|(% rowspan="3" %)3|04 (read input register: read current binary value in one or more input registers)
2670 |06 (write single register: write a binary value to a holding register)
2671 |10 (write values to multiple addresses )
2672 |(% rowspan="3" %)4|03 (read holding register: read current binary value in one or more holding registers)
2673 |06 (write single register: write a binary value to a holding register)
2674 |10 (write values to multiple addresses )
2675 |(% rowspan="3" %)W6|03 (read holding register: read current binary value in one or more holding registers)
2676 |06 (write single register: write a binary value to a holding register)
2677 |10 (write values to multiple addresses )
2678 |(% rowspan="2" %)W16|03 (read holding register: read current binary value in one or more holding registers)
2679 |10 (write values to multiple addresses )
2680 |(% rowspan="11" %)Bit|(% rowspan="3" %)0|01 (Read coil state)
2681 |05 (Force a single coil to force the on/off state of a logic coil)
2682 |0F (Write multiple bits, ie write continuously)
2683 |(% rowspan="3" %)1|02 (Read the input state)
2684 |05 (Force a single coil to force the on/off state of a logic coil)
2685 |0F (Write multiple bits)
2686 |(% rowspan="3" %)W5|01 (Read coil state to obtain the current state of a set of logic coils)
2687 |05 (Force a single coil to force the on/off state of a logic coil)
2688 |0F (Write multiple bits)
2689 |(% rowspan="2" %)W15|01 (Read coil state to obtain the current state of a set of logic coils)
2690 |0F (Write multiple bits)
2691
2692 **Communication Settings**
2693
2694 Enable HMI Ethernet in [Project Settings];
2695
2696 (% style="text-align:center" %)
2697 [[image:12.PLC Protocol_html_43b671f18153910d.png||data-xwiki-image-style-alignment="center" height="107" width="405" class="img-thumbnail"]]
2698
2699 Set PLC IP in [Device IP] settings;
2700
2701 (% style="text-align:center" %)
2702 [[image:12.PLC Protocol_html_4bd3cc8348adecf8.png||data-xwiki-image-style-alignment="center" height="190" width="554" class="img-thumbnail"]]
2703
2704 **Cable Wiring**
2705
2706 (% style="text-align:center" %)
2707 [[image:12.PLC Protocol_html_2297240b57346b2a.png||data-xwiki-image-style-alignment="center" height="170" width="401" class="img-thumbnail"]]
2708
2709 = **Printer** =
2710
2711 == **TSPL label printer** ==
2712
2713 **Introduction**
2714
2715 TSPL label printer protocol supports following models.
2716
2717 * SPRT TL21: [[https:~~/~~/www.sprinter.com.cn/show-60-62-1.html>>https://www.sprinter.com.cn/show-60-62-1.html]]
2718 * DL-888D: [[https:~~/~~/www.deliworld.com/product/detail/7624>>https://www.deliworld.com/product/detail/7624]]
2719
2720 **Setting Step**
2721
2722 Select the protocol
2723
2724 * Create a new project, select the TSPL label printer protocol as shown below.
2725
2726 (% style="text-align:center" %)
2727 [[image:12.PLC Protocol_html_a2bec264816230db.png||data-xwiki-image-style-alignment="center" height="331" width="495" class="img-thumbnail"]]
2728
2729 Set parameters
2730
2731 * The connection between the TSPL label printer and the HMI is via the USB-A interface, no need to configure serial port parameters.
2732
2733 Printer register
2734
2735 (% class="table-bordered" %)
2736 |**Register**|**System**|**Range**|**Function**
2737 |TSPL_SP|decimal|0 - 1|Set the paper size
2738 |TSPL_PT|decimal|0 - 1999|Print text
2739 |TSPL_PQ|decimal|0 - 999|Print QR code
2740 |TSPL_PB|decimal|0 - 999|Print barcode
2741 |TSPL_PR|decimal|0 - 1|Print offset
2742 |TSPL_PN|decimal|0 - 0|Trigger printing
2743 |TSPL_PS|decimal|0 - 0|Print status
2744
2745 * Set paper size:
2746 ** TSPL_SP0: width of paper, unit: mm.
2747 ** TSPL_SP1: height of paper, unit: mm.
2748 * Print text:
2749 ** TSPL_PT can print up to 20 texts. TSPL_PT0-TSPL_PT99 is the first text; TSPL_PT100-TSPL_PT199 is the second text; … TSPL_PT1000-TSPL_PT1999 is the 20th text.
2750 ** Detailed parameter settings of each text is shown as below table. For example, first text,TSPL_PT0-TSPL_PT99.
2751
2752 (% class="table-bordered" %)
2753 |**Register**|**Function**|**Description**
2754 |TSPL_PT0|X coordinate|Unit: dot
2755 |TSPL_PT1|Ycoordinate|Unit: dot
2756 |TSPL_PT2|Rotation angle|(((
2757 0: 0 degrees
2758
2759 1: 90 degrees
2760
2761 2: 180 degrees
2762
2763 3: 270 degrees
2764 )))
2765 |TSPL_PT3|Size|Range: 0-3
2766 |TSPL_PT4 - TSPL_PT99|QR code content(text content)|Use character input device to configure
2767
2768 By analogy, we can know the text information configuration of the 2nd to 20th QR codes
2769
2770 Print QR code:
2771
2772 * TSPL_PQ can print up to 10 QR codes. TSPL_PQ0-TSPL_PQ99 is the first QR code; TSPL_PQ100-TSPL_PQ199 is the second QR code; ...., TSPL_PQ900-TSPL_PQ999 is the tenth QR code.
2773 * Specific parameter description of each item: for example, the first QR code, TSPL_PQ0-TSPL_PQ99:
2774
2775 (% class="table-bordered" %)
2776 |**Register**|**Function**|**Description**
2777 |TSPL_PQ0|X coordinate|Unit: dot
2778 |TSPL_PQ1|Ycoordinate|Unit: dot
2779 |TSPL_PQ2|Rotation angle|(((
2780 0: 0 degrees
2781
2782 1: 90 degrees
2783
2784 2: 180 degrees
2785
2786 3: 270 degrees
2787 )))
2788 |TSPL_PQ3|Size|Range: 0-5
2789 |TSPL_PQ4 - TSPL_PQ99|QR code content|Use character input device to configure
2790
2791 * By analogy, we can know the text information configuration of the 2nd to 20th QR codes.
2792
2793 Print bar code:
2794
2795 * TSPL_PB can print up to 10 barcodes. TSPL_PB0-TSPL_PB99 is the first bar code; TSPL_PB100-TSPL_PB199 is the second bar code; ..., TSPL_PB900-TSPL_PB999 is the tenth bar code.
2796 * Specific parameter description of each item: for example, the first barcode, TSPL_PB0-TSPL_PB99:
2797
2798 (% class="table-bordered" %)
2799 |**Register**|**Function**|**Description**
2800 |TSPL_PB0|X coordinate|Unit: dot
2801 |TSPL_PB1|Ycoordinate|Unit: dot
2802 |TSPL_PB2|Rotation angle|(((
2803 0: 0 degrees
2804
2805 1: 90 degrees
2806
2807 2: 180 degrees
2808
2809 3: 270 degrees
2810 )))
2811 |TSPL_PB3|height|Unit: dot
2812 |TSPL_PB4|width|Range:0-2
2813 |TSPL_PB5- TSPL_PB99|Bar code content|Use character input device to configure
2814
2815 By analogy, we can know the text information configuration of the 2nd to 20th bar codes.
2816
2817 Print offset:
2818
2819 * TSPL_PR0: X coordinate offset, unit: mm;
2820 * TSPL_PR1: Y coordinate offset, unit: mm.
2821
2822 Trigger printing:
2823
2824 * TSPL_PN0 = 1: trigger the printer to start printing.
2825
2826 Printing status:
2827
2828 * TSPL_PS0 = 1: The printing is normal.
2829 * TSPL_PS0 = 1: The printing is abnormal.
2830
2831 Print picture
2832
2833 * For the function of printing pictures, please refer to the configuration of [Printer object].
2834
2835 Conversion between dot and mm
2836
2837 * Dot is the meaning of pixels. For the conversion between dot and mm, please refer to the printer manual or consult the customer service of the corresponding printer manufacturer. For example, SPRT TL21: 8 dots / mm, that is, 1mm = 8 dot.
2838
2839 == **EpsonTM series** ==
2840
2841 **HMI Settings**
2842
2843 (% class="table-bordered" %)
2844 |**Item**|**Settings**|**Note**
2845 |Protocol|EPSON-TM-T82II/TM-XXX|
2846 |Connection|RS232|
2847 |Baud rate|9600~~115200|
2848 |Data bit|8|
2849 |Parity|None|
2850 |Stop bit|1|
2851 |PLC station No.|1|
2852
2853 Each printer protocol has default parameter. These parameters could be configured by addresses. Error parameters may cause print failure.
2854
2855 **Printer Settings**
2856
2857 (% class="table-bordered" %)
2858 |(% style="width:504px" %)**Address**|(% style="width:778px" %)**Description**|(% style="width:208px" %)**Value**
2859 |(% style="width:504px" %)HSW10603|(% style="width:778px" %)Print direction (only valid for print function)|(% style="width:208px" %)1
2860 |(% style="width:504px" %)HSW10604|(% style="width:778px" %)Dot Matrix Type|(% style="width:208px" %)1
2861 |(% style="width:504px" %)HSW10605|(% style="width:778px" %)Print width (depending on printer and paper)|(% style="width:208px" %)384
2862 |(% style="width:504px" %)HSW10606|(% style="width:778px" %)Printer instruction type|(% style="width:208px" %)1
2863 |(% style="width:504px" %)HSW10607|(% style="width:778px" %)Paper cut|(% style="width:208px" %)2
2864 |(% style="width:504px" %)HSW10608|(% style="width:778px" %)Alignment (only valid for print function)|(% style="width:208px" %)1
2865
2866 **Cable Wiring**
2867
2868 (% style="text-align:center" %)
2869 [[image:12.PLC Protocol_html_5e9a81a14106da9e.png||data-xwiki-image-style-alignment="center" height="223" width="392" class="img-thumbnail"]]
2870
2871 (% style="text-align:center" %)
2872 [[image:12.PLC Protocol_html_1897d92be6948d58.png||data-xwiki-image-style-alignment="center" height="223" width="393" class="img-thumbnail"]]
2873
2874 **✎Note:** COM3 only available in PI8000/PI9000 series.
2875
2876
2877 (% class="wikigeneratedid" %)
2878 = Create communication with **Schneider PLC** =
2879
2880 == **Schneider MODBUS RTU** ==
2881
2882 **HMI Setting**
2883
2884 |=**Parameters**|=**Recommended**|=**Notes**
2885 |**Protocol**|(% colspan="1" %)Schneider MODBUS RTU|
2886 |Connection|RS485|
2887 |**Baud rate**|19200|
2888 |**Data bit**|8|
2889 |**Parity**|Even|
2890 |**Stop bit**|1|
2891 |**PLC station No.**|1|
2892
2893 **PLC Setting**
2894
2895 |=(% scope="row" %)**Communication mode**|Modbus RTU protocol
2896
2897 **Device Address**
2898
2899 |=**Bit/Word**|=**Device type**|=**Format**|=**Range**|=**Memo**
2900 |B|IX|DDDDDo|0 ~~ 655357|Input bit (read only)
2901 |B|QX|DDDDDo|0 ~~ 655357|Write multiple coils
2902 |B|MX|DDDDDDo|0 ~~ 9999997|Output register bit (octal)
2903 |W|MW|DDDDDD|0 ~~ 999999|Output register
2904 |DW|MD|DDDDDD|0 ~~ 999999|Output register
2905
2906 **Wiring Diagram**
2907
2908 **RS-485 2W **(RJ45 Connector): The following is the view from the soldering point of a connector.
2909
2910 (% style="text-align:center" %)
2911 [[image:image-20220817154212-1.jpeg||height="315" width="554" class="img-thumbnail"]]
2912
2913 = **Barcode Scanner** =
2914
2915 Supported: DELI 14880 barcode scanner
2916
2917 **HMI Setting**
2918
2919 |**Items**|**Settings**|**Note**
2920 |Protocol|Barcode Scanner|
2921 |Connection|USB|
2922
2923 **Operating Procedures**
2924
2925 Select [Barcode Scanner];
2926
2927 (% style="text-align:center" %)
2928 [[image:12.PLC Protocol_html_55a3056357320966.png||data-xwiki-image-style-alignment="center" height="266" width="600" class="img-thumbnail"]]
2929
2930 Set address for receiving;
2931
2932 Set correct length;
2933
2934 (% style="text-align:center" %)
2935 [[image:12.PLC Protocol_html_30a4c9e9dd4db40b.png||data-xwiki-image-style-alignment="center" height="701" width="500" class="img-thumbnail"]]
2936
2937 **✎Note:**
2938
2939 * The protocol uploads the information acquired by the USB scanner to the HMI;
2940 * The acquired information is displayed in string mode, so it is necessary to use [characters input/display] object;
2941 * Recommended model: DELI 14880 barcode scanner;
2942
2943 = **Hitachi EHV Series (Ethernet)** =
2944
2945 Supported series: Hitachi EHV series
2946
2947 **HMI Settings**
2948
2949 (% class="table-bordered" %)
2950 |**Items**|**Settings**|**Note**
2951 |Protocol|Hitachi EHV series|
2952 |Connection|Ethernet|
2953 |Port No.|3004~~3007|
2954
2955 **Address List**
2956
2957 (% class="table-bordered" %)
2958 |**Type**|**Register**|**Range**|**Format**|**Note**
2959 |(% rowspan="6" %)Bit|T|0 - 2545|T DDDD|
2960 |M|0 - 7FFF.f (Hex)|M HHHH.h|
2961 |X|0 – FFFF.f (Hex)|X H1H2H3H4.h|(% rowspan="2" %)(((
2962 H1H2H3H4 Module main number
2963
2964 H1: Remote number
2965
2966 H2: Unit number
2967
2968 H3: Slot number
2969
2970 H4: Word number of Module
2971
2972 H Sub number of Module
2973
2974 For example:X21.3
2975
2976 Slot number 2
2977
2978 Word number of module is 1
2979
2980 Bit number of module is 3
2981
2982 Remote number and unit number are 0
2983 )))
2984 |Y|0 – FFFF.f (Hex)|Y H1H2H3H4.h
2985 |R|0 – FF.f (Hex)|R HH.h|
2986 |L|0 - 73FF.f (Hex)|L HHHH.h|
2987 |(% rowspan="6" %)Word|WM|0 - 7FFF (Hex)|WM HHHH|
2988 |WX|0 – FFFF (Hex)|WX H1H2H3H4|(% rowspan="2" %)(((
2989 H1H2H3H4 Module main number
2990
2991 H1: Remote number
2992
2993 H2: Unit number
2994
2995 H3: Slot number
2996
2997 H4: Word number of module
2998
2999 For example:WX21
3000
3001 Word number of module is 1
3002
3003 Slot number is 2
3004
3005 Remote number and unit number are 0
3006 )))
3007 |WY|0 – FFFF (Hex)|WY H1H2H3H4
3008 |WR|0 – FFFF (Hex)|WR HHHH|
3009 |WL|0 - 73FF (Hex)|WL HHHH|
3010 |TC|0 - 2559|TC DDDD|
3011
3012 **Communication settings in HMI**
3013
3014 Enable HMI Ethernet in [Project Settings];
3015
3016 (% style="text-align:center" %)
3017 [[image:12.PLC Protocol_html_43b671f18153910d.png||data-xwiki-image-style-alignment="center" height="107" width="405" class="img-thumbnail"]]
3018
3019 Set PLC IP in [Device IP] settings;
3020
3021 (% style="text-align:center" %)
3022 [[image:12.PLC Protocol_html_d825387f5bde6cdd.png||data-xwiki-image-style-alignment="center" height="190" width="554" class="img-thumbnail"]]
3023
3024 **PLC Configuration**
3025
3026 Connect with PLC, select[Online mode];
3027
3028 (% style="text-align:center" %)
3029 [[image:12.PLC Protocol_html_8430dda44e5c199c.png||data-xwiki-image-style-alignment="center" height="420" width="600" class="img-thumbnail"]]
3030
3031 Set IP address, it is the same LAN parameters with HMI;
3032
3033 (% style="text-align:center" %)
3034 [[image:12.PLC Protocol_html_1d8a634f64e25fc3.png||data-xwiki-image-style-alignment="center" height="252" width="347" class="img-thumbnail"]]
3035
3036 3) Save PLC communication parameter, and restart PLC
3037
3038 **PLC Monitor Mode**
3039
3040 Connect with PLC and choose to “online” mode
3041
3042 (% style="text-align:center" %)
3043 [[image:12.PLC Protocol_html_cdac598e770e3b67.png||data-xwiki-image-style-alignment="center" height="193" width="553" class="img-thumbnail"]]
3044
3045 Open I/O monitor sheet1
3046
3047 (% style="text-align:center" %)
3048 [[image:12.PLC Protocol_html_68eb3518e5f80892.png||data-xwiki-image-style-alignment="center" height="369" width="559" class="img-thumbnail"]]
3049
3050 During monitoring bit address,1 pts should be selected; during monitoring word address, 16 pts should be selected
3051
3052 (% style="text-align:center" %)
3053 [[image:12.PLC Protocol_html_774652d8daf548d4.png||data-xwiki-image-style-alignment="center" height="118" width="102" class="img-thumbnail"]]
3054
3055 Enter the register address, click OK to view the value of the register.
3056
3057 (% style="text-align:center" %)
3058 [[image:12.PLC Protocol_html_bba169c300c92051.png||data-xwiki-image-style-alignment="center" height="404" width="600" class="img-thumbnail"]]
3059
3060 (% style="text-align:center" %)
3061 [[image:12.PLC Protocol_html_d3b23bb9e81921a3.png||data-xwiki-image-style-alignment="center" height="404" width="600" class="img-thumbnail"]]
3062
3063 **✎Note:**
3064
3065 * Both word registers and bit registers support even continuous read/write functions;
3066 * The range of registers is based on the specific PLC type;
3067
3068 **Cable Wiring**
3069
3070 (% style="text-align:center" %)
3071 [[image:12.PLC Protocol_html_2297240b57346b2a.png||data-xwiki-image-style-alignment="center" height="170" width="401" class="img-thumbnail"]]
3072
3073 = **IEC60870-5 104 Client** =
3074
3075 **HMI Setting**
3076
3077 (% class="table-bordered" %)
3078 |**Items**|(% style="width:725px" %)**Settings**|(% style="width:309px" %)**Note**
3079 |Protocol|(% style="width:725px" %)IEC60870-5 104 Client|(% style="width:309px" %)
3080 |Connection|(% style="width:725px" %)Ethernet|(% style="width:309px" %)
3081 |Port No.|(% style="width:725px" %)2404|(% style="width:309px" %)
3082
3083 **Address List**
3084
3085 (% class="table-bordered" %)
3086 |(% style="width:460px" %)**Type**|(% style="width:461px" %)**Register**|**Range**
3087 |(% rowspan="9" style="width:460px" %)Bit|(% style="width:461px" %)SPTB|0~~16777215.7
3088 |(% style="width:461px" %)SCNA|0~~16777215.7
3089 |(% style="width:461px" %)DPTB|0~~16777215.7
3090 |(% style="width:461px" %)DCNA|0~~16777215.7
3091 |(% style="width:461px" %)METF|0~~16777215.7
3092 |(% style="width:461px" %)SENC|0~~16777215.7
3093 |(% style="width:461px" %)SENA|0~~16777215.7
3094 |(% style="width:461px" %)MENA|0~~16777215.7
3095 |(% style="width:461px" %)METD|0~~16777215.7
3096 |(% rowspan="11" style="width:460px" %)Word|(% style="width:461px" %)SPTB|0~~16777215
3097 |(% style="width:461px" %)SCNA|0~~16777215
3098 |(% style="width:461px" %)DPTB|0~~16777215
3099 |(% style="width:461px" %)DCNA|0~~16777215
3100 |(% style="width:461px" %)SENA|0~~16777215
3101 |(% style="width:461px" %)MENA|0~~16777215
3102 |(% style="width:461px" %)METD|0~~16777215
3103 |(% style="width:461px" %)INRO|0~~16777215
3104 |(% style="width:461px" %)TIMESYN|0~~16777215
3105 |(% style="width:461px" %)TIMEZ|0~~16777215
3106 |(% style="width:461px" %)NTP|0~~16777215
3107 |(% rowspan="2" style="width:460px" %)Double word|(% style="width:461px" %)METF|0~~16777215
3108 |(% style="width:461px" %)SENC|0~~16777215
3109
3110 **Address Configuration**
3111
3112 The address registers of the IEC60870-5-104 protocol are SPTB, SCNA, DPTB, DCNA, METF, and SENC. The protocol needs to be added with an extension tag "ASDU", which could only be added in the [Address Identification Library], other places are not editable, that is, the read address in the object or script is not editable.
3113
3114 (% style="text-align:center" %)
3115 [[image:12.PLC Protocol_html_ba78d143bf457ead.png||data-xwiki-image-style-alignment="center" height="369" width="600" class="img-thumbnail"]]
3116
3117 (% style="text-align:center" %)
3118 [[image:12.PLC Protocol_html_23533fd5bb81f4ab.png||data-xwiki-image-style-alignment="center" height="389" width="600" class="img-thumbnail"]]
3119
3120 Extended tag name
3121
3122 Address range for the extended tag.
3123
3124 **Communication Settings**
3125
3126 Enable HMI Ethernet in [Project Settings];
3127
3128 (% style="text-align:center" %)
3129 [[image:12.PLC Protocol_html_43b671f18153910d.png||data-xwiki-image-style-alignment="center" height="107" width="405" class="img-thumbnail"]]
3130
3131 Set PLC IP in [Device IP] settings;
3132
3133 (% style="text-align:center" %)
3134 [[image:12.PLC Protocol_html_f848736ec68b125.png||data-xwiki-image-style-alignment="center" height="191" width="554" class="img-thumbnail"]]
3135
3136 **Cable Wiring**
3137
3138 (% style="text-align:center" %)
3139 [[image:12.PLC Protocol_html_2297240b57346b2a.png||data-xwiki-image-style-alignment="center" height="170" width="401" class="img-thumbnail"]]
3140
3141 = **OpenCAN** =
3142
3143 OpenCan is based on CAN2.0 standard; OpenCAN protocols that could be configured autonomously to accept and send frames.
3144
3145 This protocol is only available in PI8000 series HMI.
3146
3147 **HMI Settings**
3148
3149 |**Items**|**Settings**|**Note**
3150 |Protocol|OPENCAN|
3151 |Connection|CAN port|
3152 |Baud rate|250000|
3153
3154 **CAN frame setting in HMI**
3155
3156 Click [OpenCAN setting] button in communication setting window;
3157
3158 (% style="text-align:center" %)
3159 [[image:12.PLC Protocol_html_e866b9e56e19785d.png||data-xwiki-image-style-alignment="center" height="503" width="600" class="img-thumbnail"]]
3160
3161 Click [Add] to create a new frame;
3162
3163 (% style="text-align:center" %)
3164 [[image:12.PLC Protocol_html_3a6f4e2141763c8f.png||data-xwiki-image-style-alignment="center" height="315" width="600" class="img-thumbnail"]]
3165
3166 |**No**|**Items**|**Description**
3167 |1|Add|add a frame related to register address
3168 |2|Insert|Select the position where you want to insert a frame, and click [Insert frame] to add a new frame in front of the current frame position
3169 |3|Frame manager|This list shows some of the main parameters for each frame that the user adds
3170 |4|Modify|Modify the frames in frame management
3171 |5|Copy|Copy one frame to another
3172 |6|Delete|Remove the selected frames from the list by modifying the frames in frame management. If no frames are selected in the list, the first frame is deleted.
3173 |7|Empty|All frames in the list are cleared
3174 |8|Browse|Displays configuration files in XML format in IE
3175 |9|OK|Complete the configuration of the frame and exit
3176
3177 Set CANBUS frame in setting windows
3178
3179 (% style="text-align:center" %)
3180 [[image:12.PLC Protocol_html_7c83130820321ef.png||data-xwiki-image-style-alignment="center" height="507" width="600" class="img-thumbnail"]]
3181
3182 |**No**|**Items**|**Description**
3183 |1|ID|Set the ID of a can frame in hexadecimal format;
3184 |2|ID assign|split the ID by PF, PS, and SA;
3185 |3|Frame type|Select Standard frame or Extended Frame;
3186 |4|Frame format|Select between data frame and remote Frame;
3187 |5|Data|Set the data part of CAN frame, with two Numbers representing a hexadecimal number and Spaces spaced; Maximum support of 8 bytes is defined according to CAN message;
3188 |6|Use address|(((
3189 Set the register address related to the CAN frame, which corresponds to the register address set on the main state one by one. The data obtained from the address is assigned continuously;
3190
3191 **Edit:** Set a bit or word address by its format;
3192
3193 **Option: **Set address options related to frame, enter “register address option” interface, specifically browse the following “register address option” interface;
3194 )))
3195 |(% rowspan="8" %)7|(% rowspan="8" %)Data interactive configuration|There are two interactive modes of the touch screen. One is that the touch screen actively sends frames, and the device receives and processes and feeds back. The other, on the contrary, passively receives frames from the device for processing and feedback;
3196 |Send after receiving: if this item is selected, the interaction of the touch screen will act as a passive party, and the touch screen will receive the CAN frame first and send feedback. Unchecked items interact in the opposite way;
3197 |Feedback mode: feedback mode includes no response, confirm response and data response;
3198 |No response: the device or touch screen will not receive feedback;
3199 |Confirm response: the device or the touch screen will receive feedback with confirmation, which could be used to compare the data parts. If this function is used, the 20 addresses before and after this address should not be used. All addresses of cata10-cata30 could not be used with the reply confirmation function of cata20;
3200 |Data response: the device or touch screen will receive feedback with data, and the data to be separated from the feedback frame should be set to store in the register address;
3201 |response ID: if the address wants to receive data on a frame with a different ID, set this, check "different from sender", and enter a different ID in the following input box. Without this setting, the screen will receive and process a frame with the same ID as the sender;
3202 |Response timeout: sets whether the response frame timeout;
3203 |(% rowspan="3" %)8|(% rowspan="3" %)Control address|If ticked, enable sending when the value of the corresponding control bit number (address) is non-0.
3204 |Control bit: CtrlBit register range 0~~255, if the control bit is ON, can instruction will run normally. Otherwise, it doesn't run;
3205 |Manually send: a manually send tick indicates only one send;
3206 |9|Flag configuration|Communication control for each frame. Display OFF when communication is normal, and ON when communication is abnormal;
3207 |10|Note|Fill the text to explain the meaning of the frame;
3208 |11|Data assign|Preview the display in this table based on the address and the corresponding number of digits;
3209 |12|Current operation display|Display the description of current operation;
3210 |13|Add|Add a new frame;
3211 |14|Save frame|Save the configured frame format;
3212 |15|Cancel|Cancel the frame configuration;
3213
3214 Set CAN address (Read or write operation);
3215
3216 (% style="text-align:center" %)
3217 [[image:12.PLC Protocol_html_7e9f9b25eb6ae8ce.png||data-xwiki-image-style-alignment="center" height="446" width="600" class="img-thumbnail"]]
3218
3219 |**No.**|**Item**|**Description**
3220 |1|Current address|Displays the register type and register address set by the user in the data access interface
3221 |(% rowspan="3" %)2|(% rowspan="3" %)Trigger|Two operations, "read" and "write," are based on on-screen registers
3222 |If "read" is selected, the register address is reading device data in a manner of sending frames set by the user in a loop.
3223 |If "write" is selected, the screen data of the register address will be written into the device. The writing mode is that the user makes a write operation on the screen, which will trigger the sending of a frame set by the user.
3224 |(% rowspan="5" %)3|(% rowspan="3" %)Data operation|The read and write operations in the trigger conditions are set accordingly.
3225 |If the trigger condition is a read operation, this section needs to set the position and length of the data to be obtained at the current address in the frame.
3226 |If the trigger condition is a writing operation, there are two situations:(((
3227 * If the "add writing data to the frame" option is not selected, the frame set by the user will be sent directly when the user writes on the screen.
3228 * Select the "add the written data to the frame" option, and when the user writes on the screen, the program will insert the data in the frame set by the user and send the written data to the frame set by the user according to the data insertion position and length set by the user.
3229 )))
3230 |(% rowspan="2" %)Position and length input format|If the register type is a bit address, the decimal point is required to represent the bits in the byte. For example, 1.1 represents the first bit of the first byte of 8 bytes in the data frame, and the length is in bits, and so on.
3231 |If the register type is word address, the integer only needs to represent the byte, such as 1, which represents the first byte of 8-byte data in the data frame, and the unit of length is byte, and so on.
3232 |4|Add|Add current configuration
3233 |5|Close|Close the configuration window to exit
3234
3235 **Multiple Packages Settings**
3236
3237 (% style="text-align:center" %)
3238 [[image:12.PLC Protocol_html_107e0f6b1a90afff.png||data-xwiki-image-style-alignment="center" height="341" width="600" class="img-thumbnail"]]
3239
3240 Check [Multiple packages supported] to open [Multiple package data] window, as below show.
3241
3242 Select Multiple package type
3243
3244 * Not Multiple packages
3245 * J1939 Multiple packages
3246 * Customized Multiple packages
3247
3248 Click [Edit Receive data] for [Receive] settings
3249
3250 * Start code+ Total length (J1939)
3251
3252 (% style="text-align:center" %)
3253 [[image:12.PLC Protocol_html_3c360c6b5aca51bf.png||data-xwiki-image-style-alignment="center" height="340" width="426" class="img-thumbnail"]]
3254
3255 As set above set, J1939 command is received by the HMI, only when its length is 25 bytes, and the start code is 0x57, 0x1B;
3256
3257 * Start code + Data max length (J1939)
3258
3259 (% style="text-align:center" %)
3260 [[image:12.PLC Protocol_html_74496b2a68cfcdde.png||data-xwiki-image-style-alignment="center" height="340" width="426" class="img-thumbnail"]]
3261
3262 As set above set, J1939 command is received by the HMI, only when its length less than 50 bytes, and the start code is 0x57, 0x1B;
3263
3264 * Data max length (J1939)
3265
3266 (% style="text-align:center" %)
3267 [[image:12.PLC Protocol_html_98cea3e7cbd8f05d.png||data-xwiki-image-style-alignment="center" height="340" width="426" class="img-thumbnail"]]
3268
3269 As set above set, J1939 command is received by the HMI, only when its length less than 50 bytes.
3270
3271 * Customized multiple package
3272
3273 (% style="text-align:center" %)
3274 [[image:12.PLC Protocol_html_4635bbe4d7999db0.png||data-xwiki-image-style-alignment="center" height="395" width="367" class="img-thumbnail"]]
3275
3276 As set above, It is received by the HMI, when the first frame starts with 0X57 0X1B, and the sum of the data lengths of multiple frames is equal to 79 bytes.
3277
3278 Click [Edit Send data] for [Send] setting
3279
3280 * J1939
3281
3282 (% style="text-align:center" %)
3283 [[image:12.PLC Protocol_html_a4769e44331ca732.png||data-xwiki-image-style-alignment="center" height="280" width="463" class="img-thumbnail"]]
3284
3285 [Data] is all data to be sent.
3286
3287 Since the frame of the J1939 frame contains the number of the data packet, so the data sent is: the first byte (number) + 7 bytes of data. If it is less than 7 bytes, it is sent in the actual number of bytes.
3288
3289 * Customized multiple package
3290
3291 (% style="text-align:center" %)
3292 [[image:12.PLC Protocol_html_78546f765d6f3deb.png||data-xwiki-image-style-alignment="center" height="280" width="463"]]
3293
3294 [Data] is all data to be sent.
3295
3296 As set above, fist frame length is 2 bytes, and others are sent with 6 bytes for every frame, if the last frame is less than 6 bytes, send according to the actual length.
3297
3298 **Cable Wiring**
3299
3300 (% style="text-align:center" %)
3301 [[image:12.PLC Protocol_html_fccede84efcbdc22.png||data-xwiki-image-style-alignment="center" height="111" width="391" class="img-thumbnail"]]
3302
3303 **✎Note:** The address interval between each frame need to be more than a word address;
3304
3305
3306 = **User Defined Protocol** =
3307
3308 If the device does not support MODBUS standard, and the protocol is not list in PIStudio, then user can define the protocol by following instruction to realize simply communication functions like sending and receiving commands.
3309
3310 **HMI Settings**
3311
3312 |**Items**|**Settings**|**Note**
3313 |Protocol|User defined protocol|
3314 |Connection|RS485/RS232|
3315 |Baud rate|2400~~187500|
3316 |Stop bits|1/ 2|
3317 |Data bits|7/ 8|
3318 |Parity|None/ Even/ ODD|
3319
3320 **Operating Procedures**
3321
3322 Select [User defined protocol];
3323
3324 Click [User defined protocol] button to open setting window as below;
3325
3326 (% style="text-align:center" %)
3327 [[image:12.PLC Protocol_html_5ca13817ac812cf0.png||data-xwiki-image-style-alignment="center" height="367" width="437" class="img-thumbnail"]]
3328
3329 Configure user defined command;
3330
3331 (% style="text-align:center" %)
3332 [[image:12.PLC Protocol_html_11441e69f21e243d.png||data-xwiki-image-style-alignment="center" height="525" width="553" class="img-thumbnail"]]
3333
3334 |**No**|**Item**|**Description**
3335 |1|Instruction edit|The required command.
3336 |2|Mode|Write to address or read from the address.
3337 |3|Format|Encode format: HEX or ASCII.
3338 |4|Other|(((
3339 **No receiving: **HMI does not respond to the receiving command.
3340
3341 **Send after receiving:** HMI responds to the receiving command.
3342 )))
3343 |5|Manually send|(((
3344 Respond once after trigger the address.
3345
3346 Address: set the trigger address.
3347 )))
3348 |6|Add|Save this setting.
3349 |7|Cancel|Cancel current settings.
3350 |(% rowspan="4" %)8|Add|Add a new command.
3351 |Edit|Edit the selected command.
3352 |Delete|Delete the selected command.
3353 |Clear|Clear all the commands.
3354 |9|Instruction list|Display all current commands.
3355 |10|Address List|Display all the addresses added.
3356 |(% rowspan="5" %)11|Import|Import the command files to the instruction list.
3357 |Export|Export current command settings to local storage.
3358 |Browse|Browse local command files.
3359 |Advanced|Combine two commands.
3360 |Exit|Complete editing and exit setting.
3361
3362 **Operating Procedures**
3363
3364 Click [Add] to create a new command, as below shows;
3365
3366 (% style="text-align:center" %)
3367 [[image:12.PLC Protocol_html_463f2cd3a8c338fc.png||data-xwiki-image-style-alignment="center" height="116" width="88" class="img-thumbnail"]]
3368
3369 Select mode, [Read] or [Write], and then select Format, there are two options [Hex] and [ASCII]. As below shows;
3370
3371 (% style="text-align:center" %)
3372 [[image:12.PLC Protocol_html_a48eba3aa30b612d.png||data-xwiki-image-style-alignment="center" height="80" width="121" class="img-thumbnail"]]
3373
3374 Other settings: [No receiving] means HMI only sends command, and it would not process the reply command which from device. [Send after receiving] means HMI will be receiving the command which from device firstly, and then sending the command to device. From example, when HMI receiving [00 FF 00] firstly and then send command, as below shows
3375
3376 (% style="text-align:center" %)
3377 [[image:12.PLC Protocol_html_b36d990e126365d.png||data-xwiki-image-style-alignment="center" height="77" width="179" class="img-thumbnail"]]
3378
3379 Check [Manually send], and then please set the address for trigging, the setting range is 1~~10, and please put Bit switch in project screen for it, and [OneCtrlBit] register is for [Manually send].
3380
3381 Instruction edit, when the data format is HEX, please use two numbers to represent one 16-bit number. ASCII format using characters to input;
3382
3383 Check settings;
3384
3385 (% style="text-align:center" %)
3386 [[image:12.PLC Protocol_html_5ac7075d9e8dad8d.png||data-xwiki-image-style-alignment="center" height="185" width="554" class="img-thumbnail"]]
3387
3388 |**No**|**Items**|**Description**
3389 |1|Add checking|Add checking command when receiving the data.
3390 |(% rowspan="2" %)2|Back checking|Add control character in ASCII format.
3391 |Differ with send check|Set return checking.
3392 |(% rowspan="2" %)3|(% rowspan="2" %)Add control character|Start position: select the start position of the data which need to check.
3393 |Length: The data length need to be checked.
3394
3395 Object settings;
3396
3397 (% style="text-align:center" %)
3398 [[image:12.PLC Protocol_html_1e776a838316fb5.png||data-xwiki-image-style-alignment="center" height="185" width="554" class="img-thumbnail"]]
3399
3400 |**No**|**Items**|**Description**
3401 |(% rowspan="3" %)1|(% rowspan="3" %)Object settings|Object type: bit or word address;
3402 |Address: the triggering address;
3403 |Note: description to object;
3404 |2|Byte order|The numerical display order;
3405
3406 Data length settings;
3407
3408 (% style="text-align:center" %)
3409 [[image:12.PLC Protocol_html_6959664a46b03b69.png||data-xwiki-image-style-alignment="center" height="185" width="554" class="img-thumbnail"]]
3410
3411 |**No**|**Item**|**Description**
3412 |(% rowspan="2" %)1|(% rowspan="2" %)Return data|Position: the start position of the return data.
3413 |Length: the return data length.
3414 |(% rowspan="2" %)2|(% rowspan="2" %)Write data|Position: the start position of the write data.
3415 |Length: the write data length.
3416
3417 Instruction length settings
3418
3419 (% style="text-align:center" %)
3420 [[image:12.PLC Protocol_html_7e0d8613c5e12f7b.png||data-xwiki-image-style-alignment="center" height="185" width="554" class="img-thumbnail"]]
3421
3422 |**No**|**Item**|**Description**
3423 |1|Send length|The instruction data will only send designated data length.
3424 |2|Return length|The responds data length.
3425 |3|End code|Instruction will not be terminated until receiving [End code];
3426
3427 **Cable Wiring**
3428
3429 * **RS485**
3430
3431 (% style="text-align:center" %)
3432 [[image:12.PLC Protocol_html_5e9a81a14106da9e.png||data-xwiki-image-style-alignment="center" height="223" width="392" class="img-thumbnail"]]
3433
3434 (% style="text-align:center" %)
3435 [[image:12.PLC Protocol_html_1897d92be6948d58.png||data-xwiki-image-style-alignment="center" height="223" width="393" class="img-thumbnail"]]
3436
3437 * **RS232**
3438
3439 (% style="text-align:center" %)
3440 [[image:12.PLC Protocol_html_5de71638aab8e40d.png||data-xwiki-image-style-alignment="center" height="205" width="385" class="img-thumbnail"]]
3441
3442 **✎Note:** COM3 only available in PI8000/PI9000 series.