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Xiaoling 4.2 1 (% style="text-align:center" %)
2 [[image:image-20220606151504-2.jpeg||height="848" width="848"]]
Xiaoling 1.1 3
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Xiaoling 12.2 11 = 1. Introduction =
Xiaoling 1.1 12
Xiaoling 12.2 13 == 1.1 ​What is LoRaWAN Soil Moisture & EC Sensor ==
Xiaoling 1.1 14
Xiaoling 12.2 15 (((
16 The Dragino LSE01 is a (% style="color:#4f81bd" %)**LoRaWAN Soil Moisture & EC Sensor**(%%) for IoT of Agriculture. It is designed to measure the soil moisture of saline-alkali soil and loamy soil. The soil sensor uses FDR method to calculate the soil moisture with the compensation from soil temperature and conductivity. It also has been calibrated in factory for Mineral soil type.
17 )))
Xiaoling 1.1 18
Xiaoling 12.2 19 (((
20 It detects (% style="color:#4f81bd" %)**Soil Moisture**(%%), (% style="color:#4f81bd" %)**Soil Temperature**(%%) and (% style="color:#4f81bd" %)**Soil Conductivity**(%%), and uploads the value via wireless to LoRaWAN IoT Server.
21 )))
Xiaoling 1.1 22
Xiaoling 12.2 23 (((
Xiaoling 4.2 24 The LoRa wireless technology used in LES01 allows device to send data and reach extremely long ranges at low data-rates. It provides ultra-long range spread spectrum communication and high interference immunity whilst minimizing current consumption.
Xiaoling 12.2 25 )))
Xiaoling 4.2 26
Xiaoling 12.2 27 (((
28 LES01 is powered by (% style="color:#4f81bd" %)**4000mA or 8500mAh Li-SOCI2 battery**(%%), It is designed for long term use up to 10 years.
29 )))
Xiaoling 4.2 30
Xiaoling 12.2 31 (((
Xiaoling 4.2 32 Each LES01 is pre-load with a set of unique keys for LoRaWAN registrations, register these keys to local LoRaWAN server and it will auto connect after power on.
Xiaoling 12.2 33 )))
Xiaoling 4.2 34
35
Xiaoling 12.2 36 [[image:1654503236291-817.png]]
Xiaoling 4.2 37
38
Xiaoling 13.2 39 [[image:1654503265560-120.png]]
Xiaoling 4.2 40
41
42
Xiaoling 13.3 43 == 1.2 ​Features ==
44
Xiaoling 4.2 45 * LoRaWAN 1.0.3 Class A
46 * Ultra low power consumption
47 * Monitor Soil Moisture
48 * Monitor Soil Temperature
49 * Monitor Soil Conductivity
50 * Bands: CN470/EU433/KR920/US915/EU868/AS923/AU915/IN865
51 * AT Commands to change parameters
52 * Uplink on periodically
53 * Downlink to change configure
54 * IP66 Waterproof Enclosure
55 * 4000mAh or 8500mAh Battery for long term use
56
Xiaoling 13.3 57 == 1.3 Specification ==
58
Xiaoling 4.2 59 Measure Volume: Base on the centra pin of the probe, a cylinder with 7cm diameter and 10cm height.
60
Xiaoling 14.2 61 [[image:image-20220606162220-5.png]]
62
Xiaoling 4.2 63
64
Xiaoling 14.3 65 == ​1.4 Applications ==
Xiaoling 4.2 66
67 * Smart Agriculture
68
Xiaoling 15.6 69 (% class="wikigeneratedid" id="H200B1.5FirmwareChangelog" %)
70
Xiaoling 4.2 71
Xiaoling 15.6 72 == 1.5 Firmware Change log ==
73
74
Xiaoling 14.3 75 **LSE01 v1.0 :**  Release
Xiaoling 4.2 76
Xiaoling 14.3 77
78
79 = 2. Configure LSE01 to connect to LoRaWAN network =
80
81 == 2.1 How it works ==
82
Xiaoling 15.3 83 (((
Xiaoling 4.2 84 The LSE01 is configured as LoRaWAN OTAA Class A mode by default. It has OTAA keys to join LoRaWAN network. To connect a local LoRaWAN network, you need to input the OTAA keys in the LoRaWAN IoT server and power on the LSE0150. It will automatically join the network via OTAA and start to send the sensor value
Xiaoling 15.3 85 )))
Xiaoling 4.2 86
Xiaoling 15.3 87 (((
Xiaoling 15.4 88 In case you can’t set the OTAA keys in the LoRaWAN OTAA server, and you have to use the keys from the server, you can [[use AT Commands >>||anchor="H3.​UsingtheATCommands"]].
Xiaoling 15.3 89 )))
Xiaoling 4.2 90
91
92
Xiaoling 14.4 93 == 2.2 ​Quick guide to connect to LoRaWAN server (OTAA) ==
Xiaoling 4.2 94
95 Following is an example for how to join the [[TTN v3 LoRaWAN Network>>url:https://console.cloud.thethings.network/]]. Below is the network structure; we use the [[LG308>>url:http://www.dragino.com/products/lora/item/140-lg308.html]] as a LoRaWAN gateway in this example.
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97
Xiaoling 15.2 98 [[image:1654503992078-669.png]]
Xiaoling 4.2 99
100
101 The LG308 is already set to connected to [[TTN network >>url:https://console.cloud.thethings.network/]], so what we need to now is configure the TTN server.
102
103
104 **Step 1**: Create a device in TTN with the OTAA keys from LSE01.
105
106 Each LSE01 is shipped with a sticker with the default device EUI as below:
107
Xiaoling 17.2 108 [[image:image-20220606163732-6.jpeg]]
Xiaoling 4.2 109
110 You can enter this key in the LoRaWAN Server portal. Below is TTN screen shot:
111
112 **Add APP EUI in the application**
113
114
Xiaoling 17.2 115 [[image:1654504596150-405.png]]
Xiaoling 4.2 116
117
118
119 **Add APP KEY and DEV EUI**
120
Xiaoling 18.2 121 [[image:1654504683289-357.png]]
Xiaoling 4.2 122
123
Xiaoling 19.2 124
Xiaoling 4.2 125 **Step 2**: Power on LSE01
126
127
128 Put a Jumper on JP2 to power on the device. ( The Jumper must be in FLASH position).
129
Xiaoling 19.2 130 [[image:image-20220606163915-7.png]]
Xiaoling 4.2 131
132
133 **Step 3:** The LSE01 will auto join to the TTN network. After join success, it will start to upload messages to TTN and you can see the messages in the panel.
134
Xiaoling 20.2 135 [[image:1654504778294-788.png]]
Xiaoling 4.2 136
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138
Xiaoling 20.3 139 == 2.3 Uplink Payload ==
Xiaoling 4.2 140
Xiaoling 20.3 141 === 2.3.1 MOD~=0(Default Mode) ===
Xiaoling 4.2 142
Xiaoling 4.4 143 LSE01 will uplink payload via LoRaWAN with below payload format: 
Xiaoling 4.2 144
145
146 Uplink payload includes in total 11 bytes.
147
148
149 |(((
150 **Size**
151
152 **(bytes)**
153 )))|**2**|**2**|**2**|**2**|**2**|**1**
154 |**Value**|[[BAT>>path:#bat]]|(((
155 Temperature
156
157 (Reserve, Ignore now)
158 )))|[[Soil Moisture>>path:#soil_moisture]]|[[Soil Temperature>>path:#soil_tem]]|[[Soil Conductivity (EC)>>path:#EC]]|(((
159 MOD & Digital Interrupt
160
161 (Optional)
162 )))
163
Xiaoling 22.2 164 [[image:1654504881641-514.png]]
Xiaoling 4.2 165
166
167
Xiaoling 22.2 168 === 2.3.2 MOD~=1(Original value) ===
169
Xiaoling 4.2 170 This mode can get the original AD value of moisture and original conductivity (with temperature drift compensation).
171
172 |(((
173 **Size**
174
175 **(bytes)**
176 )))|**2**|**2**|**2**|**2**|**2**|**1**
177 |**Value**|[[BAT>>path:#bat]]|(((
178 Temperature
179
180 (Reserve, Ignore now)
181 )))|[[Soil Moisture>>path:#soil_moisture]](raw)|[[Soil Temperature>>path:#soil_tem]]|[[Soil Conductivity (EC)>>path:#EC]](raw)|(((
182 MOD & Digital Interrupt
183
184 (Optional)
185 )))
186
Xiaoling 22.2 187 [[image:1654504907647-967.png]]
Xiaoling 4.2 188
189
Xiaoling 22.2 190
191 === 2.3.3 Battery Info ===
192
Xiaoling 4.2 193 Check the battery voltage for LSE01.
194
195 Ex1: 0x0B45 = 2885mV
196
197 Ex2: 0x0B49 = 2889mV
198
199
200
Xiaoling 22.3 201 === 2.3.4 Soil Moisture ===
Xiaoling 4.2 202
203 Get the moisture content of the soil. The value range of the register is 0-10000(Decimal), divide this value by 100 to get the percentage of moisture in the soil.
204
Xiaoling 22.4 205 For example, if the data you get from the register is __0x05 0xDC__, the moisture content in the soil is
Xiaoling 4.2 206
207
Xiaoling 22.4 208 (% style="color:#4f81bd" %)**05DC(H) = 1500(D) /100 = 15%.**
Xiaoling 4.2 209
Xiaoling 22.4 210
Xiaoling 4.2 211
Xiaoling 22.5 212 === 2.3.5 Soil Temperature ===
213
Xiaoling 4.2 214 Get the temperature in the soil. The value range of the register is -4000 - +800(Decimal), divide this value by 100 to get the temperature in the soil. For example, if the data you get from the register is 0x09 0xEC, the temperature content in the soil is
215
216 **Example**:
217
218 If payload is 0105H: ((0x0105 & 0x8000)>>15 === 0),temp = 0105(H)/100 = 2.61 °C
219
220 If payload is FF7EH: ((FF7E & 0x8000)>>15 ===1),temp = (FF7E(H)-FFFF(H))/100 = -1.29 °C
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222
223
Xiaoling 22.6 224 === 2.3.6 Soil Conductivity (EC) ===
225
Xiaoling 23.2 226 (((
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 )))
Xiaoling 4.2 229
Xiaoling 23.2 230 (((
Xiaoling 4.2 231 For example, if the data you get from the register is 0x00 0xC8, the soil conductivity is 00C8(H) = 200(D) = 200 uS/cm.
Xiaoling 23.2 232 )))
Xiaoling 4.2 233
Xiaoling 23.2 234 (((
Xiaoling 4.2 235 Generally, the EC value of irrigation water is less than 800uS / cm.
Xiaoling 23.2 236 )))
Xiaoling 4.2 237
Xiaoling 23.2 238 (((
239
240 )))
Xiaoling 4.2 241
Xiaoling 23.2 242 (((
243
244 )))
245
246 === 2.3.7 MOD ===
247
Xiaoling 4.2 248 Firmware version at least v2.1 supports changing mode.
249
250 For example, bytes[10]=90
251
252 mod=(bytes[10]>>7)&0x01=1.
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254
255 Downlink Command:
256
257 If payload = 0x0A00, workmode=0
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259 If** **payload =** **0x0A01, workmode=1
260
261
262
Xiaoling 23.2 263 === 2.3.8 ​Decode payload in The Things Network ===
264
Xiaoling 4.2 265 While using TTN network, you can add the payload format to decode the payload.
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267
Xiaoling 23.2 268 [[image:1654505570700-128.png]]
Xiaoling 4.2 269
270 The payload decoder function for TTN is here:
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272 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/]]
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274
Xiaoling 23.3 275 == 2.4 Uplink Interval ==
Xiaoling 4.2 276
277 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:
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279 [[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]]
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281
Xiaoling 24.2 282
283 == 2.5 Downlink Payload ==
284
Xiaoling 4.2 285 By default, LSE50 prints the downlink payload to console port.
286
Xiaoling 24.2 287 [[image:image-20220606165544-8.png]]
Xiaoling 4.2 288
Xiaoling 24.2 289
Xiaoling 26.2 290 **Examples:**
Xiaoling 4.2 291
292
Xiaoling 26.2 293 * **Set TDC**
Xiaoling 4.2 294
295 If the payload=0100003C, it means set the END Node’s TDC to 0x00003C=60(S), while type code is 01.
296
297 Payload:    01 00 00 1E    TDC=30S
298
299 Payload:    01 00 00 3C    TDC=60S
300
301
Xiaoling 26.2 302 * **Reset**
Xiaoling 4.2 303
304 If payload = 0x04FF, it will reset the LSE01
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306
Xiaoling 26.2 307 * **CFM**
Xiaoling 4.2 308
309 Downlink Payload: 05000001, Set AT+CFM=1 or 05000000 , set AT+CFM=0
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311
Xiaoling 26.2 312
313 == 2.6 ​Show Data in DataCake IoT Server ==
314
Xiaoling 4.2 315 [[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:
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317
318 **Step 1**: Be sure that your device is programmed and properly connected to the network at this time.
319
320 **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:
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322
Xiaoling 26.2 323 [[image:1654505857935-743.png]]
Xiaoling 4.2 324
325
Xiaoling 26.2 326 [[image:1654505874829-548.png]]
Xiaoling 4.2 327
328 Step 3: Create an account or log in Datacake.
329
330 Step 4: Search the LSE01 and add DevEUI.
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332
Xiaoling 27.2 333 [[image:1654505905236-553.png]]
Xiaoling 4.2 334
335
336 After added, the sensor data arrive TTN, it will also arrive and show in Mydevices.
337
Xiaoling 28.2 338 [[image:1654505925508-181.png]]
Xiaoling 4.2 339
340
341
Xiaoling 28.4 342 == 2.7 Frequency Plans ==
Xiaoling 4.2 343
344 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.
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346
Xiaoling 28.5 347 === 2.7.1 EU863-870 (EU868) ===
Xiaoling 4.2 348
Xiaoling 28.5 349 (% style="color:#037691" %)** Uplink:**
350
Xiaoling 4.2 351 868.1 - SF7BW125 to SF12BW125
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353 868.3 - SF7BW125 to SF12BW125 and SF7BW250
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355 868.5 - SF7BW125 to SF12BW125
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357 867.1 - SF7BW125 to SF12BW125
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359 867.3 - SF7BW125 to SF12BW125
360
361 867.5 - SF7BW125 to SF12BW125
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363 867.7 - SF7BW125 to SF12BW125
364
365 867.9 - SF7BW125 to SF12BW125
366
367 868.8 - FSK
368
369
Xiaoling 28.5 370 (% style="color:#037691" %)** Downlink:**
Xiaoling 4.2 371
372 Uplink channels 1-9 (RX1)
373
374 869.525 - SF9BW125 (RX2 downlink only)
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376
377
Xiaoling 28.5 378 === 2.7.2 US902-928(US915) ===
379
Xiaoling 4.2 380 Used in USA, Canada and South America. Default use CHE=2
381
Xiaoling 28.5 382 (% style="color:#037691" %)**Uplink:**
Xiaoling 4.2 383
384 903.9 - SF7BW125 to SF10BW125
385
386 904.1 - SF7BW125 to SF10BW125
387
388 904.3 - SF7BW125 to SF10BW125
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390 904.5 - SF7BW125 to SF10BW125
391
392 904.7 - SF7BW125 to SF10BW125
393
394 904.9 - SF7BW125 to SF10BW125
395
396 905.1 - SF7BW125 to SF10BW125
397
398 905.3 - SF7BW125 to SF10BW125
399
400
Xiaoling 28.5 401 (% style="color:#037691" %)**Downlink:**
Xiaoling 4.2 402
403 923.3 - SF7BW500 to SF12BW500
404
405 923.9 - SF7BW500 to SF12BW500
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407 924.5 - SF7BW500 to SF12BW500
408
409 925.1 - SF7BW500 to SF12BW500
410
411 925.7 - SF7BW500 to SF12BW500
412
413 926.3 - SF7BW500 to SF12BW500
414
415 926.9 - SF7BW500 to SF12BW500
416
417 927.5 - SF7BW500 to SF12BW500
418
419 923.3 - SF12BW500(RX2 downlink only)
420
421
422
Xiaoling 28.5 423 === 2.7.3 CN470-510 (CN470) ===
424
Xiaoling 4.2 425 Used in China, Default use CHE=1
426
Xiaoling 28.5 427 (% style="color:#037691" %)**Uplink:**
Xiaoling 4.2 428
429 486.3 - SF7BW125 to SF12BW125
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431 486.5 - SF7BW125 to SF12BW125
432
433 486.7 - SF7BW125 to SF12BW125
434
435 486.9 - SF7BW125 to SF12BW125
436
437 487.1 - SF7BW125 to SF12BW125
438
439 487.3 - SF7BW125 to SF12BW125
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441 487.5 - SF7BW125 to SF12BW125
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443 487.7 - SF7BW125 to SF12BW125
444
445
Xiaoling 28.5 446 (% style="color:#037691" %)**Downlink:**
Xiaoling 4.2 447
448 506.7 - SF7BW125 to SF12BW125
449
450 506.9 - SF7BW125 to SF12BW125
451
452 507.1 - SF7BW125 to SF12BW125
453
454 507.3 - SF7BW125 to SF12BW125
455
456 507.5 - SF7BW125 to SF12BW125
457
458 507.7 - SF7BW125 to SF12BW125
459
460 507.9 - SF7BW125 to SF12BW125
461
462 508.1 - SF7BW125 to SF12BW125
463
464 505.3 - SF12BW125 (RX2 downlink only)
465
466
467
Xiaoling 28.5 468 === 2.7.4 AU915-928(AU915) ===
469
Xiaoling 4.2 470 Default use CHE=2
471
Xiaoling 28.5 472 (% style="color:#037691" %)**Uplink:**
Xiaoling 4.2 473
474 916.8 - SF7BW125 to SF12BW125
475
476 917.0 - SF7BW125 to SF12BW125
477
478 917.2 - SF7BW125 to SF12BW125
479
480 917.4 - SF7BW125 to SF12BW125
481
482 917.6 - SF7BW125 to SF12BW125
483
484 917.8 - SF7BW125 to SF12BW125
485
486 918.0 - SF7BW125 to SF12BW125
487
488 918.2 - SF7BW125 to SF12BW125
489
490
Xiaoling 28.5 491 (% style="color:#037691" %)**Downlink:**
Xiaoling 4.2 492
493 923.3 - SF7BW500 to SF12BW500
494
495 923.9 - SF7BW500 to SF12BW500
496
497 924.5 - SF7BW500 to SF12BW500
498
499 925.1 - SF7BW500 to SF12BW500
500
501 925.7 - SF7BW500 to SF12BW500
502
503 926.3 - SF7BW500 to SF12BW500
504
505 926.9 - SF7BW500 to SF12BW500
506
507 927.5 - SF7BW500 to SF12BW500
508
509 923.3 - SF12BW500(RX2 downlink only)
510
511
Xiaoling 28.6 512
513 === 2.7.5 AS920-923 & AS923-925 (AS923) ===
514
Xiaoling 28.7 515 (% style="color:#037691" %)**Default Uplink channel:**
Xiaoling 4.2 516
517 923.2 - SF7BW125 to SF10BW125
518
519 923.4 - SF7BW125 to SF10BW125
520
521
Xiaoling 28.7 522 (% style="color:#037691" %)**Additional Uplink Channel**:
Xiaoling 4.2 523
524 (OTAA mode, channel added by JoinAccept message)
525
Xiaoling 28.7 526 (% style="color:#037691" %)**AS920~~AS923 for Japan, Malaysia, Singapore**:
Xiaoling 4.2 527
528 922.2 - SF7BW125 to SF10BW125
529
530 922.4 - SF7BW125 to SF10BW125
531
532 922.6 - SF7BW125 to SF10BW125
533
534 922.8 - SF7BW125 to SF10BW125
535
536 923.0 - SF7BW125 to SF10BW125
537
538 922.0 - SF7BW125 to SF10BW125
539
540
Xiaoling 28.7 541 (% style="color:#037691" %)**AS923 ~~ AS925 for Brunei, Cambodia, Hong Kong, Indonesia, Laos, Taiwan, Thailand, Vietnam**:
Xiaoling 4.2 542
543 923.6 - SF7BW125 to SF10BW125
544
545 923.8 - SF7BW125 to SF10BW125
546
547 924.0 - SF7BW125 to SF10BW125
548
549 924.2 - SF7BW125 to SF10BW125
550
551 924.4 - SF7BW125 to SF10BW125
552
553 924.6 - SF7BW125 to SF10BW125
554
555
Xiaoling 28.7 556 (% style="color:#037691" %)** Downlink:**
Xiaoling 4.2 557
558 Uplink channels 1-8 (RX1)
559
560 923.2 - SF10BW125 (RX2)
561
562
563
Xiaoling 28.7 564 === 2.7.6 KR920-923 (KR920) ===
565
Xiaoling 4.2 566 Default channel:
567
568 922.1 - SF7BW125 to SF12BW125
569
570 922.3 - SF7BW125 to SF12BW125
571
572 922.5 - SF7BW125 to SF12BW125
573
574
Xiaoling 28.7 575 (% style="color:#037691" %)**Uplink: (OTAA mode, channel added by JoinAccept message)**
Xiaoling 4.2 576
577 922.1 - SF7BW125 to SF12BW125
578
579 922.3 - SF7BW125 to SF12BW125
580
581 922.5 - SF7BW125 to SF12BW125
582
583 922.7 - SF7BW125 to SF12BW125
584
585 922.9 - SF7BW125 to SF12BW125
586
587 923.1 - SF7BW125 to SF12BW125
588
589 923.3 - SF7BW125 to SF12BW125
590
591
Xiaoling 28.7 592 (% style="color:#037691" %)**Downlink:**
Xiaoling 4.2 593
594 Uplink channels 1-7(RX1)
595
596 921.9 - SF12BW125 (RX2 downlink only; SF12BW125 might be changed to SF9BW125)
597
598
599
Xiaoling 28.7 600 === 2.7.7 IN865-867 (IN865) ===
Xiaoling 4.2 601
Xiaoling 28.7 602 (% style="color:#037691" %)** Uplink:**
603
Xiaoling 4.2 604 865.0625 - SF7BW125 to SF12BW125
605
606 865.4025 - SF7BW125 to SF12BW125
607
608 865.9850 - SF7BW125 to SF12BW125
609
610
Xiaoling 28.7 611 (% style="color:#037691" %) **Downlink:**
Xiaoling 4.2 612
613 Uplink channels 1-3 (RX1)
614
615 866.550 - SF10BW125 (RX2)
616
617
618
Xiaoling 28.7 619
620 == 2.8 LED Indicator ==
621
Xiaoling 4.2 622 The LSE01 has an internal LED which is to show the status of different state.
623
624 * Blink once when device power on.
625 * Solid ON for 5 seconds once device successful Join the network.
626 * Blink once when device transmit a packet.
627
628
Xiaoling 28.8 629
630 == 2.9 Installation in Soil ==
631
Xiaoling 4.2 632 **Measurement the soil surface**
633
634
635 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image014.png]] ​
636
637 Choose the proper measuring position. Avoid the probe to touch rocks or hard things. Split the surface soil according to the measured deep. Keep the measured as original density. Vertical insert the probe into the soil to be measured. Make sure not shake when inserting.
638
639
640
641
642
643
644
645 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image015.png]]
646
647
648
649 Dig a hole with diameter > 20CM.
650
651 Horizontal insert the probe to the soil and fill the hole for long term measurement.
652
653
654
655
Xiaoling 28.7 656 1.
Xiaoling 4.2 657 11. ​Firmware Change Log
658
659 **Firmware download link:**
660
661 [[http:~~/~~/www.dragino.com/downloads/index.php?dir=LoRa_End_Node/LSE01/Firmware/>>url:http://www.dragino.com/downloads/index.php?dir=LoRa_End_Node/LSE01/Firmware/]]
662
663
664 **Firmware Upgrade Method:**
665
666 [[http:~~/~~/wiki.dragino.com/index.php?title=Firmware_Upgrade_Instruction_for_STM32_base_products#Introduction>>url:http://wiki.dragino.com/index.php?title=Firmware_Upgrade_Instruction_for_STM32_base_products#Introduction]]
667
668
669 **V1.0.**
670
671 Release
672
673
674
Xiaoling 28.7 675 1.
Xiaoling 4.2 676 11. ​Battery Analysis
677 111. ​Battery Type
678
679 The LSE01 battery is a combination of a 4000mAh Li/SOCI2 Battery and a Super Capacitor. The battery is non-rechargeable battery type with a low discharge rate (<2% per year). This type of battery is commonly used in IoT devices such as water meter.
680
681
682 The battery is designed to last for more than 5 years for the LSN50.
683
684
685 The battery related documents as below:
686
687 * [[Battery Dimension>>url:http://www.dragino.com/downloads/index.php?dir=datasheet/Battery/&file=LSN50-Battery-Dimension.pdf]],
688 * [[Lithium-Thionyl Chloride Battery>>url:http://www.dragino.com/downloads/downloads/datasheet/Battery/ER18505_datasheet-EN.pdf]] datasheet, [[Tech Spec>>url:http://www.dragino.com/downloads/downloads/datasheet/Battery/ER18505_datasheet_PM-ER18505-S-02-LF_EN.pdf]]
689 * [[Lithium-ion Battery-Capacitor datasheet>>url:http://www.dragino.com/downloads/downloads/datasheet/Battery/SPC_1520_datasheet.jpg]], [[Tech Spec>>url:http://www.dragino.com/downloads/downloads/datasheet/Battery/SPC1520%20Technical%20Specification20171123.pdf]]
690
691 |(((
692 JST-XH-2P connector
693 )))
694
695 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image016.png]] [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image017.png]]
696
697
698
Xiaoling 28.7 699 1.
700 11.
Xiaoling 4.2 701 111. ​Battery Note
702
703 The Li-SICO battery is designed for small current / long period application. It is not good to use a high current, short period transmit method. The recommended minimum period for use of this battery is 5 minutes. If you use a shorter period time to transmit LoRa, then the battery life may be decreased.
704
705
Xiaoling 28.7 706 1.
707 11.
Xiaoling 4.2 708 111. ​Replace the battery
709
710 If Battery is lower than 2.7v, user should replace the battery of LSE01.
711
712
713 You can change the battery in the LSE01.The type of battery is not limited as long as the output is between 3v to 3.6v. On the main board, there is a diode (D1) between the battery and the main circuit. If you need to use a battery with less than 3.3v, please remove the D1 and shortcut the two pads of it so there won’t be voltage drop between battery and main board.
714
715
716 The default battery pack of LSE01 includes a ER18505 plus super capacitor. If user can’t find this pack locally, they can find ER18505 or equivalence, which will also work in most case. The SPC can enlarge the battery life for high frequency use (update period below 5 minutes)
717
718
719
720
721
722
Xiaoling 9.2 723 = 3. ​Using the AT Commands =
Xiaoling 4.2 724
Xiaoling 9.2 725 == 3.1 Access AT Commands ==
726
Xiaoling 11.4 727
Xiaoling 4.2 728 LSE01 supports AT Command set in the stock firmware. You can use a USB to TTL adapter to connect to LSE01 for using AT command, as below.
729
Xiaoling 9.2 730 [[image:1654501986557-872.png]]
Xiaoling 4.2 731
732
733 Or if you have below board, use below connection:
734
735
Xiaoling 11.2 736 [[image:1654502005655-729.png]]
Xiaoling 4.2 737
738
739
Xiaoling 11.2 740 In the PC, you need to set the serial baud rate to (% style="color:green" %)**9600**(%%) to access the serial console for LSE01. LSE01 will output system info once power on as below:
Xiaoling 4.2 741
742
Xiaoling 11.2 743 [[image:1654502050864-459.png]]
Xiaoling 4.2 744
745
746 Below are the available commands, a more detailed AT Command manual can be found at [[AT Command Manual>>url:http://www.dragino.com/downloads/index.php?dir=LoRa_End_Node/LSE01/]]: [[http:~~/~~/www.dragino.com/downloads/index.php?dir=LoRa_End_Node/LSE01/>>url:http://www.dragino.com/downloads/index.php?dir=LoRa_End_Node/LSE01/]]
747
748
Xiaoling 11.4 749 (% style="background-color:#dcdcdc" %)**AT+<CMD>=?AT+<CMD>? **(%%) : Help on <CMD>
Xiaoling 4.2 750
Xiaoling 11.4 751 (% style="background-color:#dcdcdc" %)**AT+<CMD>=?AT+<CMD> **(%%) : Run <CMD>
Xiaoling 4.2 752
Xiaoling 11.4 753 (% style="background-color:#dcdcdc" %)**AT+<CMD>=?AT+<CMD>=<value>**(%%) : Set the value
Xiaoling 4.2 754
Xiaoling 11.4 755 (% style="background-color:#dcdcdc" %)**AT+<CMD>=?AT+<CMD>=?**(%%)  : Get the value
Xiaoling 4.2 756
757
Xiaoling 11.6 758 (% style="color:#037691" %)**General Commands**(%%)      
Xiaoling 4.2 759
Xiaoling 11.6 760 (% style="background-color:#dcdcdc" %)**AT**(%%)  : Attention       
Xiaoling 4.2 761
Xiaoling 11.6 762 (% style="background-color:#dcdcdc" %)**AT?**(%%)  : Short Help     
Xiaoling 4.2 763
Xiaoling 11.6 764 (% style="background-color:#dcdcdc" %)**ATZ**(%%)  : MCU Reset    
Xiaoling 4.2 765
Xiaoling 11.6 766 (% style="background-color:#dcdcdc" %)**AT+TDC**(%%)  : Application Data Transmission Interval 
Xiaoling 4.2 767
768
Xiaoling 11.4 769 (% style="color:#037691" %)**Keys, IDs and EUIs management**
Xiaoling 4.2 770
Xiaoling 11.6 771 (% style="background-color:#dcdcdc" %)**AT+APPEUI**(%%)              : Application EUI      
Xiaoling 4.2 772
Xiaoling 11.6 773 (% style="background-color:#dcdcdc" %)**AT+APPKEY**(%%)              : Application Key     
Xiaoling 4.2 774
Xiaoling 11.6 775 (% style="background-color:#dcdcdc" %)**AT+APPSKEY**(%%)            : Application Session Key
Xiaoling 4.2 776
Xiaoling 11.6 777 (% style="background-color:#dcdcdc" %)**AT+DADDR**(%%)              : Device Address     
Xiaoling 4.2 778
Xiaoling 11.6 779 (% style="background-color:#dcdcdc" %)**AT+DEUI**(%%)                   : Device EUI     
Xiaoling 4.2 780
Xiaoling 11.6 781 (% style="background-color:#dcdcdc" %)**AT+NWKID**(%%)               : Network ID (You can enter this command change only after successful network connection) 
Xiaoling 4.2 782
Xiaoling 11.6 783 (% style="background-color:#dcdcdc" %)**AT+NWKSKEY**(%%)          : Network Session Key Joining and sending date on LoRa network  
Xiaoling 4.2 784
Xiaoling 11.6 785 (% style="background-color:#dcdcdc" %)**AT+CFM**(%%)  : Confirm Mode       
Xiaoling 4.2 786
Xiaoling 11.6 787 (% style="background-color:#dcdcdc" %)**AT+CFS**(%%)                     : Confirm Status       
Xiaoling 4.2 788
Xiaoling 11.6 789 (% style="background-color:#dcdcdc" %)**AT+JOIN**(%%)  : Join LoRa? Network       
Xiaoling 4.2 790
Xiaoling 11.6 791 (% style="background-color:#dcdcdc" %)**AT+NJM**(%%)  : LoRa? Network Join Mode    
Xiaoling 4.2 792
Xiaoling 11.6 793 (% style="background-color:#dcdcdc" %)**AT+NJS**(%%)                     : LoRa? Network Join Status    
Xiaoling 4.2 794
Xiaoling 11.6 795 (% style="background-color:#dcdcdc" %)**AT+RECV**(%%)                  : Print Last Received Data in Raw Format
Xiaoling 4.2 796
Xiaoling 11.6 797 (% style="background-color:#dcdcdc" %)**AT+RECVB**(%%)                : Print Last Received Data in Binary Format      
Xiaoling 4.2 798
Xiaoling 11.6 799 (% style="background-color:#dcdcdc" %)**AT+SEND**(%%)                  : Send Text Data      
Xiaoling 4.2 800
Xiaoling 11.6 801 (% style="background-color:#dcdcdc" %)**AT+SENB**(%%)                  : Send Hexadecimal Data
Xiaoling 4.2 802
803
Xiaoling 11.4 804 (% style="color:#037691" %)**LoRa Network Management**
Xiaoling 4.2 805
Xiaoling 11.6 806 (% style="background-color:#dcdcdc" %)**AT+ADR**(%%)          : Adaptive Rate
Xiaoling 4.2 807
Xiaoling 11.6 808 (% style="background-color:#dcdcdc" %)**AT+CLASS**(%%)  : LoRa Class(Currently only support class A
Xiaoling 4.2 809
Xiaoling 11.6 810 (% style="background-color:#dcdcdc" %)**AT+DCS**(%%)  : Duty Cycle Setting 
Xiaoling 4.2 811
Xiaoling 11.6 812 (% style="background-color:#dcdcdc" %)**AT+DR**(%%)  : Data Rate (Can Only be Modified after ADR=0)     
Xiaoling 4.2 813
Xiaoling 11.6 814 (% style="background-color:#dcdcdc" %)**AT+FCD**(%%)  : Frame Counter Downlink       
Xiaoling 4.2 815
Xiaoling 11.6 816 (% style="background-color:#dcdcdc" %)**AT+FCU**(%%)  : Frame Counter Uplink   
Xiaoling 4.2 817
Xiaoling 11.6 818 (% style="background-color:#dcdcdc" %)**AT+JN1DL**(%%)  : Join Accept Delay1
Xiaoling 4.2 819
Xiaoling 11.6 820 (% style="background-color:#dcdcdc" %)**AT+JN2DL**(%%)  : Join Accept Delay2
Xiaoling 4.2 821
Xiaoling 11.6 822 (% style="background-color:#dcdcdc" %)**AT+PNM**(%%)  : Public Network Mode   
Xiaoling 4.2 823
Xiaoling 11.6 824 (% style="background-color:#dcdcdc" %)**AT+RX1DL**(%%)  : Receive Delay1      
Xiaoling 4.2 825
Xiaoling 11.6 826 (% style="background-color:#dcdcdc" %)**AT+RX2DL**(%%)  : Receive Delay2      
Xiaoling 4.2 827
Xiaoling 11.6 828 (% style="background-color:#dcdcdc" %)**AT+RX2DR**(%%)  : Rx2 Window Data Rate 
Xiaoling 4.2 829
Xiaoling 11.6 830 (% style="background-color:#dcdcdc" %)**AT+RX2FQ**(%%)  : Rx2 Window Frequency
Xiaoling 4.2 831
Xiaoling 11.6 832 (% style="background-color:#dcdcdc" %)**AT+TXP**(%%)  : Transmit Power
Xiaoling 4.2 833
Xiaoling 11.6 834 (% style="background-color:#dcdcdc" %)**AT+ MOD**(%%)  : Set work mode
Xiaoling 4.2 835
836
Xiaoling 11.4 837 (% style="color:#037691" %)**Information** 
Xiaoling 4.2 838
Xiaoling 11.6 839 (% style="background-color:#dcdcdc" %)**AT+RSSI**(%%)           : RSSI of the Last Received Packet   
Xiaoling 4.2 840
Xiaoling 11.6 841 (% style="background-color:#dcdcdc" %)**AT+SNR**(%%)           : SNR of the Last Received Packet   
Xiaoling 4.2 842
Xiaoling 11.6 843 (% style="background-color:#dcdcdc" %)**AT+VER**(%%)           : Image Version and Frequency Band       
Xiaoling 4.2 844
Xiaoling 11.6 845 (% style="background-color:#dcdcdc" %)**AT+FDR**(%%)           : Factory Data Reset
Xiaoling 4.2 846
Xiaoling 11.6 847 (% style="background-color:#dcdcdc" %)**AT+PORT**(%%)  : Application Port    
Xiaoling 4.2 848
Xiaoling 11.6 849 (% style="background-color:#dcdcdc" %)**AT+CHS**(%%)  : Get or Set Frequency (Unit: Hz) for Single Channel Mode
Xiaoling 4.2 850
Xiaoling 11.6 851 (% style="background-color:#dcdcdc" %)**AT+CHE**(%%)  : Get or Set eight channels mode, Only for US915, AU915, CN470
Xiaoling 4.2 852
853
Xiaoling 6.3 854 = ​4. FAQ =
Xiaoling 4.2 855
Xiaoling 6.3 856 == 4.1 ​How to change the LoRa Frequency Bands/Region? ==
857
Xiaoling 4.2 858 You can follow the instructions for [[how to upgrade image>>path:#3ygebqi]].
859 When downloading the images, choose the required image file for download. ​
860
861
Xiaoling 8.3 862 How to set up LSE01 to work in 8 channel mode By default, the frequency bands US915, AU915, CN470 work in 72 frequencies. Many gateways are 8 channel gateways, and in this case, the OTAA join time and uplink schedule is long and unpredictable while the end node is hopping in 72 frequencies.
Xiaoling 4.2 863
864
865 You can configure the end node to work in 8 channel mode by using the AT+CHE command. The 500kHz channels are always included for OTAA.
866
867
868 For example, in **US915** band, the frequency table is as below. By default, the end node will use all channels (0~~71) for OTAA Join process. After the OTAA Join, the end node will use these all channels (0~~71) to send uplink packets.
869
Xiaoling 8.2 870 [[image:image-20220606154726-3.png]]
Xiaoling 4.2 871
872 When you use the TTN network, the US915 frequency bands use are:
873
874 * 903.9 - SF7BW125 to SF10BW125
875 * 904.1 - SF7BW125 to SF10BW125
876 * 904.3 - SF7BW125 to SF10BW125
877 * 904.5 - SF7BW125 to SF10BW125
878 * 904.7 - SF7BW125 to SF10BW125
879 * 904.9 - SF7BW125 to SF10BW125
880 * 905.1 - SF7BW125 to SF10BW125
881 * 905.3 - SF7BW125 to SF10BW125
882 * 904.6 - SF8BW500
883
884 Because the end node is now hopping in 72 frequency, it makes it difficult for the devices to Join the TTN network and uplink data. To solve this issue, you can access the device via the AT commands and run:
885
Xiaoling 8.3 886 (% class="box infomessage" %)
887 (((
Xiaoling 4.2 888 **AT+CHE=2**
Xiaoling 8.3 889 )))
Xiaoling 4.2 890
Xiaoling 8.3 891 (% class="box infomessage" %)
892 (((
Xiaoling 4.2 893 **ATZ**
Xiaoling 8.3 894 )))
Xiaoling 4.2 895
896 to set the end node to work in 8 channel mode. The device will work in Channel 8-15 & 64-71 for OTAA, and channel 8-15 for Uplink.
897
898
899 The **AU915** band is similar. Below are the AU915 Uplink Channels.
900
Xiaoling 8.2 901 [[image:image-20220606154825-4.png]]
Xiaoling 4.2 902
903
904
Xiaoling 4.8 905 = 5. Trouble Shooting =
Xiaoling 4.2 906
Xiaoling 4.9 907 == 5.1 ​Why I can’t join TTN in US915 / AU915 bands? ==
908
Xiaoling 4.11 909 It is due to channel mapping. Please see the [[Eight Channel Mode>>doc:Main.LoRaWAN Communication Debug.WebHome||anchor="H2.NoticeofUS9152FCN4702FAU915Frequencyband"]] section above for details.
Xiaoling 4.2 910
911
Xiaoling 4.10 912 == 5.2 AT Command input doesn’t work ==
Xiaoling 4.2 913
Xiaoling 6.2 914 In the case if user can see the console output but can’t type input to the device. Please check if you already include the (% style="color:green" %)**ENTER**(%%) while sending out the command. Some serial tool doesn’t send (% style="color:green" %)**ENTER**(%%) while press the send key, user need to add ENTER in their string.
Xiaoling 4.2 915
916
Xiaoling 4.10 917 == 5.3 Device rejoin in at the second uplink packet ==
Xiaoling 4.2 918
Xiaoling 6.2 919 (% style="color:#4f81bd" %)**Issue describe as below:**
Xiaoling 4.2 920
Xiaoling 6.2 921 [[image:1654500909990-784.png]]
Xiaoling 4.2 922
923
Xiaoling 6.2 924 (% style="color:#4f81bd" %)**Cause for this issue:**
Xiaoling 4.2 925
926 The fuse on LSE01 is not large enough, some of the soil probe require large current up to 5v 800mA, in a short pulse. When this happen, it cause the device reboot so user see rejoin.
927
928
Xiaoling 6.2 929 (% style="color:#4f81bd" %)**Solution: **
Xiaoling 4.2 930
931 All new shipped LSE01 after 2020-May-30 will have this to fix. For the customer who see this issue, please bypass the fuse as below:
932
Xiaoling 6.2 933 [[image:1654500929571-736.png]]
Xiaoling 4.2 934
Xiaoling 4.7 935
Xiaoling 4.4 936 = 6. ​Order Info =
Xiaoling 4.2 937
938
Xiaoling 4.6 939 Part Number**:** (% style="color:#4f81bd" %)**LSE01-XX-YY**
Xiaoling 4.2 940
941
Xiaoling 4.6 942 (% style="color:#4f81bd" %)**XX**(%%)**:** The default frequency band
Xiaoling 4.2 943
Xiaoling 4.4 944 * (% style="color:red" %)**AS923**(%%): LoRaWAN AS923 band
945 * (% style="color:red" %)**AU915**(%%): LoRaWAN AU915 band
946 * (% style="color:red" %)**EU433**(%%): LoRaWAN EU433 band
947 * (% style="color:red" %)**EU868**(%%): LoRaWAN EU868 band
948 * (% style="color:red" %)**KR920**(%%): LoRaWAN KR920 band
949 * (% style="color:red" %)**US915**(%%): LoRaWAN US915 band
Xiaoling 4.5 950 * (% style="color:red" %)**IN865**(%%):  LoRaWAN IN865 band
Xiaoling 4.4 951 * (% style="color:red" %)**CN470**(%%): LoRaWAN CN470 band
Xiaoling 4.2 952
Xiaoling 4.4 953 (% style="color:#4f81bd" %)**YY**(%%)**: **Battery Option
Xiaoling 4.2 954
Xiaoling 4.4 955 * (% style="color:red" %)**4**(%%): 4000mAh battery
956 * (% style="color:red" %)**8**(%%): 8500mAh battery
Xiaoling 4.2 957
Xiaoling 4.3 958 = 7. Packing Info =
Xiaoling 4.2 959
Xiaoling 4.3 960 (((
Xiaoling 4.2 961 **Package Includes**:
Xiaoling 4.3 962 )))
Xiaoling 4.2 963
Xiaoling 4.3 964 * (((
965 LSE01 LoRaWAN Soil Moisture & EC Sensor x 1
966 )))
Xiaoling 4.2 967
Xiaoling 4.3 968 (((
969
970 )))
Xiaoling 4.2 971
Xiaoling 4.3 972 (((
Xiaoling 4.2 973 **Dimension and weight**:
Xiaoling 4.3 974 )))
Xiaoling 4.2 975
Xiaoling 4.3 976 * (((
977 Device Size: cm
978 )))
979 * (((
980 Device Weight: g
981 )))
982 * (((
983 Package Size / pcs : cm
984 )))
985 * (((
986 Weight / pcs : g
987 )))
Xiaoling 4.2 988
Xiaoling 4.3 989 = 8. Support =
Xiaoling 4.2 990
991 * Support is provided Monday to Friday, from 09:00 to 18:00 GMT+8. Due to different timezones we cannot offer live support. However, your questions will be answered as soon as possible in the before-mentioned schedule.
992 * Provide as much information as possible regarding your enquiry (product models, accurately describe your problem and steps to replicate it etc) and send a mail to [[support@dragino.com>>url:http://../../../../../../D:%5C%E5%B8%82%E5%9C%BA%E8%B5%84%E6%96%99%5C%E8%AF%B4%E6%98%8E%E4%B9%A6%5CLoRa%5CLT%E7%B3%BB%E5%88%97%5Csupport@dragino.com]]
993
Xiaoling 27.2 994
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