<
From version < 22.5 >
edited by Xiaoling
on 2022/06/06 16:45
To version < 28.6 >
edited by Xiaoling
on 2022/06/06 17:04
>
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... ... @@ -220,21 +220,31 @@
220 220  If payload is FF7EH: ((FF7E & 0x8000)>>15 ===1),temp = (FF7E(H)-FFFF(H))/100 = -1.29 °C
221 221  
222 222  
223 -1.
224 -11.
225 -111. Soil Conductivity (EC)
226 226  
227 -Obtain soluble salt concentration in soil or soluble ion concentration in liquid fertilizer or planting medium,. The value range of the register is 0 - 20000(Decimal)( Can be greater than 20000).
224 +=== 2.3.6 Soil Conductivity (EC) ===
228 228  
226 +(((
227 +Obtain (% style="color:#4f81bd" %)**__soluble salt concentration__**(%%) in soil or (% style="color:#4f81bd" %)**__soluble ion concentration in liquid fertilizer__**(%%) or (% style="color:#4f81bd" %)**__planting medium__**(%%). The value range of the register is 0 - 20000(Decimal)( Can be greater than 20000).
228 +)))
229 +
230 +(((
229 229  For example, if the data you get from the register is 0x00 0xC8, the soil conductivity is 00C8(H) = 200(D) = 200 uS/cm.
232 +)))
230 230  
231 -
234 +(((
232 232  Generally, the EC value of irrigation water is less than 800uS / cm.
236 +)))
233 233  
234 -1.
235 -11.
236 -111. MOD
238 +(((
239 +
240 +)))
237 237  
242 +(((
243 +
244 +)))
245 +
246 +=== 2.3.7 MOD ===
247 +
238 238  Firmware version at least v2.1 supports changing mode.
239 239  
240 240  For example, bytes[10]=90
... ... @@ -249,14 +249,13 @@
249 249  If** **payload =** **0x0A01, workmode=1
250 250  
251 251  
252 -1.
253 -11.
254 -111. ​Decode payload in The Things Network
255 255  
263 +=== 2.3.8 ​Decode payload in The Things Network ===
264 +
256 256  While using TTN network, you can add the payload format to decode the payload.
257 257  
258 258  
259 -[[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image009.png]]
268 +[[image:1654505570700-128.png]]
260 260  
261 261  The payload decoder function for TTN is here:
262 262  
... ... @@ -263,30 +263,26 @@
263 263  LSE01 TTN Payload Decoder: [[http:~~/~~/www.dragino.com/downloads/index.php?dir=LoRa_End_Node/LSE01/Payload_Decoder/>>url:http://www.dragino.com/downloads/index.php?dir=LoRa_End_Node/LSE01/Payload_Decoder/]]
264 264  
265 265  
266 -1.
267 -11. Uplink Interval
275 +== 2.4 Uplink Interval ==
268 268  
269 269  The LSE01 by default uplink the sensor data every 20 minutes. User can change this interval by AT Command or LoRaWAN Downlink Command. See this link:
270 270  
271 271  [[http:~~/~~/wiki.dragino.com/index.php?title=End_Device_AT_Commands_and_Downlink_Commands#Change_Uplink_Interval>>url:http://wiki.dragino.com/index.php?title=End_Device_AT_Commands_and_Downlink_Commands#Change_Uplink_Interval]]
272 272  
273 -1.
274 -11. ​Downlink Payload
275 275  
282 +
283 +== 2.5 Downlink Payload ==
284 +
276 276  By default, LSE50 prints the downlink payload to console port.
277 277  
278 -|**Downlink Control Type**|**FPort**|**Type Code**|**Downlink payload size(bytes)**
279 -|TDC (Transmit Time Interval)|Any|01|4
280 -|RESET|Any|04|2
281 -|AT+CFM|Any|05|4
282 -|INTMOD|Any|06|4
283 -|MOD|Any|0A|2
287 +[[image:image-20220606165544-8.png]]
284 284  
285 -**Examples**
286 286  
290 +**Examples:**
287 287  
288 -**Set TDC**
289 289  
293 +* **Set TDC**
294 +
290 290  If the payload=0100003C, it means set the END Node’s TDC to 0x00003C=60(S), while type code is 01.
291 291  
292 292  Payload:    01 00 00 1E    TDC=30S
... ... @@ -294,18 +294,19 @@
294 294  Payload:    01 00 00 3C    TDC=60S
295 295  
296 296  
297 -**Reset**
302 +* **Reset**
298 298  
299 299  If payload = 0x04FF, it will reset the LSE01
300 300  
301 301  
302 -**CFM**
307 +* **CFM**
303 303  
304 304  Downlink Payload: 05000001, Set AT+CFM=1 or 05000000 , set AT+CFM=0
305 305  
306 -1.
307 -11. ​Show Data in DataCake IoT Server
308 308  
312 +
313 +== 2.6 ​Show Data in DataCake IoT Server ==
314 +
309 309  [[DATACAKE>>url:https://datacake.co/]] provides a human friendly interface to show the sensor data, once we have data in TTN, we can use [[DATACAKE>>url:https://datacake.co/]] to connect to TTN and see the data in DATACAKE. Below are the steps:
310 310  
311 311  
... ... @@ -314,42 +314,34 @@
314 314  **Step 2**: To configure the Application to forward data to DATACAKE you will need to add integration. To add the DATACAKE integration, perform the following steps:
315 315  
316 316  
317 -[[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image010.png]]
323 +[[image:1654505857935-743.png]]
318 318  
319 319  
320 -[[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image011.png]]
326 +[[image:1654505874829-548.png]]
321 321  
322 -
323 -
324 -
325 -
326 326  Step 3: Create an account or log in Datacake.
327 327  
328 328  Step 4: Search the LSE01 and add DevEUI.
329 329  
330 330  
331 -[[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image012.png]]
333 +[[image:1654505905236-553.png]]
332 332  
333 333  
334 -
335 335  After added, the sensor data arrive TTN, it will also arrive and show in Mydevices.
336 336  
338 +[[image:1654505925508-181.png]]
337 337  
338 -[[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image013.png]]
339 339  
340 340  
342 +== 2.7 Frequency Plans ==
341 341  
342 -1.
343 -11. Frequency Plans
344 -
345 345  The LSE01 uses OTAA mode and below frequency plans by default. If user want to use it with different frequency plan, please refer the AT command sets.
346 346  
347 -1.
348 -11.
349 -111. EU863-870 (EU868)
350 350  
351 -Uplink:
347 +=== 2.7.1 EU863-870 (EU868) ===
352 352  
349 +(% style="color:#037691" %)** Uplink:**
350 +
353 353  868.1 - SF7BW125 to SF12BW125
354 354  
355 355  868.3 - SF7BW125 to SF12BW125 and SF7BW250
... ... @@ -369,7 +369,7 @@
369 369  868.8 - FSK
370 370  
371 371  
372 -Downlink:
370 +(% style="color:#037691" %)** Downlink:**
373 373  
374 374  Uplink channels 1-9 (RX1)
375 375  
... ... @@ -376,13 +376,12 @@
376 376  869.525 - SF9BW125 (RX2 downlink only)
377 377  
378 378  
379 -1.
380 -11.
381 -111. US902-928(US915)
382 382  
378 +=== 2.7.2 US902-928(US915) ===
379 +
383 383  Used in USA, Canada and South America. Default use CHE=2
384 384  
385 -Uplink:
382 +(% style="color:#037691" %)**Uplink:**
386 386  
387 387  903.9 - SF7BW125 to SF10BW125
388 388  
... ... @@ -401,7 +401,7 @@
401 401  905.3 - SF7BW125 to SF10BW125
402 402  
403 403  
404 -Downlink:
401 +(% style="color:#037691" %)**Downlink:**
405 405  
406 406  923.3 - SF7BW500 to SF12BW500
407 407  
... ... @@ -422,13 +422,12 @@
422 422  923.3 - SF12BW500(RX2 downlink only)
423 423  
424 424  
425 -1.
426 -11.
427 -111. CN470-510 (CN470)
428 428  
423 +=== 2.7.3 CN470-510 (CN470) ===
424 +
429 429  Used in China, Default use CHE=1
430 430  
431 -Uplink:
427 +(% style="color:#037691" %)**Uplink:**
432 432  
433 433  486.3 - SF7BW125 to SF12BW125
434 434  
... ... @@ -447,7 +447,7 @@
447 447  487.7 - SF7BW125 to SF12BW125
448 448  
449 449  
450 -Downlink:
446 +(% style="color:#037691" %)**Downlink:**
451 451  
452 452  506.7 - SF7BW125 to SF12BW125
453 453  
... ... @@ -468,13 +468,12 @@
468 468  505.3 - SF12BW125 (RX2 downlink only)
469 469  
470 470  
471 -1.
472 -11.
473 -111. AU915-928(AU915)
474 474  
468 +=== 2.7.4 AU915-928(AU915) ===
469 +
475 475  Default use CHE=2
476 476  
477 -Uplink:
472 +(% style="color:#037691" %)**Uplink:**
478 478  
479 479  916.8 - SF7BW125 to SF12BW125
480 480  
... ... @@ -493,7 +493,7 @@
493 493  918.2 - SF7BW125 to SF12BW125
494 494  
495 495  
496 -Downlink:
491 +(% style="color:#037691" %)**Downlink:**
497 497  
498 498  923.3 - SF7BW500 to SF12BW500
499 499  
... ... @@ -513,10 +513,10 @@
513 513  
514 514  923.3 - SF12BW500(RX2 downlink only)
515 515  
516 -1.
517 -11.
518 -111. AS920-923 & AS923-925 (AS923)
519 519  
512 +
513 +=== 2.7.5 AS920-923 & AS923-925 (AS923) ===
514 +
520 520  **Default Uplink channel:**
521 521  
522 522  923.2 - SF7BW125 to SF10BW125
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