<
From version < 21.1 >
edited by Xiaoling
on 2022/05/27 09:33
To version < 41.3 >
edited by Xiaoling
on 2022/05/30 11:24
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3 3  
4 4  {{toc/}}
5 5  
6 +
7 +
8 +
9 +
10 +
6 6  = 1. Introduction =
7 7  
8 8  This article provide the examples for RS485-LN to connect to different type of RS485 sensors.
9 9  
15 +
10 10  == 1.1 Example 1: Connect to Leak relay and VFD ==
11 11  
12 12  This instruction is provided by Xavier Florensa Berenguer from [[NORIA GRUPO DE COMPRAS>>url:http://www.gruponovelec.com/]]. It is to show how to use RS485-LN to connect to Relay and VFD and communicate with Mobile. The structure is like below:
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28 28  * [[Configure Manual>>url:http://www.dragino.com/downloads/index.php?dir=RS485-LN/Application_Note/Relay_VFD/]] : Explanation on how to integrate to Node-red and to the Mobile Phone, and with link to the Github code.
29 29  * [[Video Demo>>url:https://www.youtube.com/watch?v=TAFZ5eaf-MY&t=6s&ab_channel=XavierFlorensaBerenguer]]
30 30  
31 -
32 32  == 1.2 Example 2: Connect to Pulse Counter ==
33 33  
34 34  This instruction is provided by Xavier Florensa Berenguer from [[NORIA GRUPO DE COMPRAS>>url:http://www.gruponovelec.com/]]. It is to show how to use RS485-LN to connect to Pulse Counter and communicate with Mobile. This example and example 2 compose the structure for a farm IoT solution. The structure is like below:
... ... @@ -45,7 +45,6 @@
45 45  * [[Pickdata MIO40 water pulse counter to LoRa with Dragino RS485-LN>>url:http://www.dragino.com/downloads/index.php?dir=RS485-LN/Application_Note/Pulse-Counter/]] : Configure Document
46 46  * [[Dragino Solution in Farm>>url:http://www.dragino.com/downloads/index.php?dir=RS485-LN/Application_Note/&file=Dragino%20on%20Farms.pptx]]
47 47  
48 -(% class="wikigeneratedid" %)
49 49  == ==
50 50  
51 51  == 1.3 Example3: Use RS485-LN with energy meters ==
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138 138  
139 139  )))
140 140  
141 -=== 1.3.3 How to configure RS485-LN and parse output commands ===
145 +=== **1.3.3 How to configure RS485-LN and parse output commands** ===
142 142  
143 143  RS485-LN provides two configuration methods: AT COMMAND and DOWNLINK.
144 144  
145 145  
146 -==== 1.3.3.1 via AT COMMAND: ====
150 +==== **1.3.3.1 via AT COMMAND:** ====
147 147  
148 148  First, we can use **AT+CFGDEV** to get the return value, and we can also judge whether the input parameters are correct.
149 149  
... ... @@ -193,7 +193,9 @@
193 193  )))
194 194  
195 195  (((
196 -**Example**: CMD1:Read current data with MODBUS command. address:0x03 AT+COMMAND1= 01 03 00 03 00 01,1
200 +(% style="color:#4f81bd" %)**Example**:
201 +
202 +CMD1:Read current data with MODBUS command. address:0x03 AT+COMMAND1= 01 03 00 03 00 01,1
197 197  )))
198 198  
199 199  (((
... ... @@ -202,6 +202,8 @@
202 202  
203 203  (((
204 204  AT+DATACUT1:9,1,4+5+6+7 Take the return value 00 02 39 85 as the valid value of reading current data and used to splice payload.
211 +
212 +
205 205  )))
206 206  
207 207  (((
... ... @@ -214,6 +214,8 @@
214 214  
215 215  (((
216 216  AT+DATACUT2:7,1,4+5 Take the return value 08 DC as the valid value of reading voltage data and used to splice payload.
225 +
226 +
217 217  )))
218 218  
219 219  (((
... ... @@ -237,7 +237,7 @@
237 237  AT COMMAND
238 238  
239 239  
240 -01 is device address,00 02 is the current, 08 DC is the voltage,00 00 00 44 is the total active energy.
250 +(% style="color:#4f81bd" %)**01 is device address,00 02 is the current, 08 DC is the voltage,00 00 00 44 is the total active energy.**
241 241  
242 242  [[image:image-20220527093251-14.png]]
243 243  
... ... @@ -244,9 +244,9 @@
244 244  AT COMMAND
245 245  
246 246  
247 -==== 1.3.3.2 via LoRaWAN DOWNLINK ====
257 +==== **1.3.3.2 via LoRaWAN DOWNLINK** ====
248 248  
249 -[[image:image-20220512104358-3.png]]
259 +[[image:image-20220527093358-15.png]]
250 250  
251 251  (((
252 252  DOWNLINK
... ... @@ -257,7 +257,7 @@
257 257  )))
258 258  
259 259  (((
260 -**Type Code 0xAF**
270 +(% style="color:#4f81bd" %)**Type Code 0xAF**
261 261  )))
262 262  
263 263  (((
... ... @@ -304,39 +304,39 @@
304 304  )))
305 305  
306 306  (((
307 -Example:
317 +(% style="color:#4f81bd" %)**Example:**
308 308  )))
309 309  
310 310  (((
311 -AF 03 01 06 0A 05 00 04 00 01 00: Same as AT+COMMAND3=0A 05 00 04 00 01,1
321 +**AF 03 01 06 0A 05 00 04 00 01 00**: Same as AT+COMMAND3=0A 05 00 04 00 01,1
312 312  )))
313 313  
314 -[[image:https://wiki.dragino.com/images/thumb/4/45/DOWNLINK_METER2.png/600px-DOWNLINK_METER2.png||height="208" width="600"]]
324 +[[image:image-20220527093430-16.png]]
315 315  
316 316  DOWNLINK
317 317  
318 318  
319 -[[~[~[image:https://wiki.dragino.com/images/thumb/2/20/DOWNLINK_METER3.png/600px-DOWNLINK_METER3.png~|~|height="105" width="600"~]~]>>url:https://wiki.dragino.com/index.php/File:DOWNLINK_METER3.png]]
329 +[[image:image-20220527093508-17.png]]
320 320  
321 321  DOWNLINK
322 322  
323 323  
324 -[[image:https://wiki.dragino.com/images/thumb/2/27/DOWNLINK_METER4.png/600px-DOWNLINK_METER4.png||height="210" width="600"]]
334 +[[image:image-20220527093530-18.png]]
325 325  
326 326  DOWNLINK
327 327  
328 328  
329 -[[~[~[image:https://wiki.dragino.com/images/thumb/3/39/DOWNLINK_METER5.png/600px-DOWNLINK_METER5.png~|~|height="176" width="600"~]~]>>url:https://wiki.dragino.com/index.php/File:DOWNLINK_METER5.png]]
339 +[[image:image-20220527093607-19.png]]
330 330  
331 331  DOWNLINK
332 332  
333 333  
334 -[[image:https://wiki.dragino.com/images/thumb/a/a2/DOWNLINK_METER6.png/600px-DOWNLINK_METER6.png||height="365" width="600"]]
344 +[[image:image-20220527093628-20.png]]
335 335  
336 336  DOWNLINK
337 337  
338 338  
339 -=== 1.3.4 How to configure and output commands for RS485 to USB ===
349 +=== **1.3.4 How to configure and output commands for RS485 to USB** ===
340 340  
341 341  (((
342 342  This step is not necessary, it is just to show how to use a normal RS485 to USB adapter to connect to the meter to check the input and output. This can be used to test the connection and RS485 command of the meter without RS485-LN.
... ... @@ -358,12 +358,12 @@
358 358  check digit: Even
359 359  )))
360 360  
361 -[[image:https://wiki.dragino.com/images/thumb/8/8f/Usb_meter2.jpg/600px-Usb_meter2.jpg||height="725" width="544"]]
371 +[[image:image-20220527093708-21.png]]
362 362  
363 363  USB
364 364  
365 365  
366 -[[image:https://wiki.dragino.com/images/thumb/6/62/Usb_meter1.jpg/600px-Usb_meter1.jpg||height="728" width="546"]]
376 +[[image:image-20220527093747-22.png]]
367 367  
368 368  USB
369 369  
... ... @@ -373,7 +373,7 @@
373 373  )))
374 374  
375 375  (((
376 -**Example:**  input:01 03 00 31 00 02 95 c4
386 +(% style="color:#4f81bd" %)**Example:**  (%%)input:01 03 00 31 00 02 95 c4
377 377  )))
378 378  
379 379  (((
... ... @@ -380,12 +380,13 @@
380 380   output:01 03 04 00 00 00 42 7A 02
381 381  )))
382 382  
383 -[[image:https://wiki.dragino.com/images/thumb/b/b3/Usb_meter3.jpg/600px-Usb_meter3.jpg||height="466" width="600"]]
393 +[[image:image-20220527093821-23.png]]
384 384  
385 385  USB
386 386  
387 -=== 1.3.5 How to configure multiple devices and modify device addresses ===
388 388  
398 +=== **1.3.5 How to configure multiple devices and modify device addresses** ===
399 +
389 389  If users need to read the parameters of multiple energy meters, they need to modify the device address, because the default device address of each energy meter is 01.
390 390  
391 391  (((
... ... @@ -394,13 +394,14 @@
394 394  )))
395 395  )))
396 396  
397 -[[image:https://wiki.dragino.com/images/thumb/1/1f/Double_meter3.png/600px-Double_meter3.png||alt="Double meter3.png" height="83" width="600"]]
408 +[[image:image-20220527093849-24.png]]
398 398  
410 +
399 399  **Example**:These two meters are examples of setting parameters and device addresses.
400 400  
401 -[[image:https://wiki.dragino.com/images/thumb/e/ee/Double_meter1.jpg/600px-Double_meter1.jpg||alt="Double meter1.jpg" height="737" width="553"]]
413 +[[image:image-20220527093950-25.png]]
402 402  
403 -[[image:https://wiki.dragino.com/images/thumb/7/72/Double_meter2.jpg/600px-Double_meter2.jpg||alt="Double meter2.jpg" height="733" width="550"]]
415 +[[image:image-20220527094028-26.png]]
404 404  
405 405  (((
406 406  (((
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420 420  )))
421 421  )))
422 422  
423 -[[image:https://wiki.dragino.com/images/6/6b/Double_meter4.png||alt="Double meter4.png" height="141" width="456"]]
435 +[[image:image-20220527094100-27.png]]
424 424  
425 -AT+CFGDEV:01 10 00 61 00 01 02 00 02,1
437 +(% class="box infomessage" %)
438 +(((
439 +**AT+CFGDEV:01 10 00 61 00 01 02 00 02,1**
440 +)))
426 426  
427 427  * 01:device adaress
428 428  
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444 444  
445 445  Its default device address is 01, and the following are the parameters for configuring two energy meters.
446 446  
447 -[[image:https://wiki.dragino.com/images/1/13/Meter11.png||alt="Meter11.png" height="576" width="379"]]
462 +[[image:image-20220527094150-28.png]]
448 448  
449 -[[image:https://wiki.dragino.com/images/thumb/7/7e/Meter12.png/600px-Meter12.png||alt="Meter12.png" height="262" width="600"]]
450 450  
451 -PAYLOAD:01 08 DF 43 62
465 +[[image:image-20220527094224-29.png]]
452 452  
467 +**PAYLOAD:01 08 DF 43 62**
468 +
453 453  * 08 DF is the valid value of the meter with device address 02.
454 454  * 43 62 is the valid value of the meter with device address 01.
455 455  
472 +
473 +
456 456  == 1.4 Example 4: Circuit Breaker Remote Open Close ==
457 457  
458 458  This instruction is provided by Xavier Florensa Berenguer from [[NORIA GRUPO DE COMPRAS>>url:http://www.gruponovelec.com/]]. It is to show how to use RS485-LN to connect to SCHNEIDER SMART and Monitor and control your cabinet remotely with no wires and with Dragino RS485-LN LoRaWAN technology. The structure is like below:
459 459  
460 -[[image:https://wiki.dragino.com/images/thumb/f/fa/RS485_04_2.png/600px-RS485_04_2.png||height="336" width="600"]]
478 +[[image:image-20220527094330-30.png]]
461 461  
462 462  Connection
463 463  
464 464  * [[Circuit Breaker Remote Open Close>>url:http://www.dragino.com/downloads/index.php?dir=RS485-LN/Application_Note/Circuit_Breaker_Remote_Open_Close/]] : Configure Documen
465 465  
484 +
485 +
466 466  == 1.5 Example 5: SEM Three Energy Meter with RS485-BL or RS485-LN ==
467 467  
468 468  This instruction is provided by Xavier Florensa Berenguer from [[NORIA GRUPO DE COMPRAS>>url:http://www.gruponovelec.com/]]. It is to show how to use RS485-BL to connect to SEM Three Energy Meter and send the data to mobile phone for remote minitor. The structure is like below:
... ... @@ -471,6 +471,8 @@
471 471  
472 472  * [[Connect to SEM Three>>url:http://www.dragino.com/downloads/index.php?dir=RS485-LN/Application_Note/SEM_Three_Energy_Meter/&file=SEM%20three%20and%20Dragino%20RS485-LN%20v1.pdf]] : Configure Document for RS485-LN
473 473  
494 +
495 +
474 474  == 1.6 Example 6:CEM C31 485-T1-MID Energy Meter with RS485-LN ==
475 475  
476 476  This instruction is provided by Xavier Florensa Berenguer from [[NORIA GRUPO DE COMPRAS>>url:http://www.gruponovelec.com/]]. It is to show how to use RS485-LN to connect to CEM C31 485-T1-MID and send the data for remote minitor. The structure is like below:
... ... @@ -479,7 +479,7 @@
479 479  
480 480  == 1.7 Example 7:Schneider Electric PLC M221 with RS485-BL ==
481 481  
482 -[[image:https://wiki.dragino.com/images/thumb/9/97/PLC_M221.png/600px-PLC_M221.png||height="353" width="600"]]
504 +[[image:image-20220527094556-31.png]]
483 483  
484 484  Network Structure
485 485  
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