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... ... @@ -3,10 +3,16 @@ 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: ... ... @@ -28,7 +28,6 @@ 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 == ... ... @@ -138,12 +138,12 @@ 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-202205 12104358-3.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 ((( ... ... @@ -420,9 +420,12 @@ 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 ... ... @@ -444,25 +444,30 @@ 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:0108 DF43 62465 +[[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: ... ... @@ -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"]]502 +[[image:image-20220527094556-31.png]] 483 483 484 484 Network Structure 485 485
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