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1 (% style="text-align:center" %)
2 [[image:1654592399090-860.png||height="521" width="483"]]
3
4
5
6
7 **Contents:**
8
9 * [[1. Introduction>>path:#H1.Introduction]]
10 ** [[1.1 ​What is LoRaWAN Soil pH Sensor>>path:#H1.1200BWhatisLoRaWANSoilpHSensor]]
11 ** [[​1.2 Features>>path:#H200B1.2Features]]
12 ** [[1.3 Probe Specification>>path:#H1.3ProbeSpecification]]
13 ** [[1.4 ​Applications>>path:#H1.4200BApplications]]
14 ** [[1.5 Pin mapping and power on>>path:#H1.5Pinmappingandpoweron]]
15 * [[2. Configure LSPH01 to connect to LoRaWAN network>>path:#H2.ConfigureLSPH01toconnecttoLoRaWANnetwork]]
16 ** [[2.1 How it works>>path:#H2.1Howitworks]]
17 ** [[2.2 ​Quick guide to connect to LoRaWAN server (OTAA)>>path:#H2.2200BQuickguidetoconnecttoLoRaWANserver28OTAA29]]
18 ** [[2.3 ​Uplink Payload>>path:#H2.3200BUplinkPayload]]
19 *** [[2.3.1 Battery Info>>path:#H2.3.1BatteryInfo]]
20 *** [[2.3.2 DS18B20 Temperature sensor>>path:#H2.3.2DS18B20Temperaturesensor]]
21 *** [[2.3.3 Soil pH>>path:#H2.3.3SoilpH]]
22 *** [[2.3.4 Soil Temperature>>path:#H2.3.4SoilTemperature]]
23 *** [[2.3.5 Interrupt Pin>>path:#H2.3.5InterruptPin]]
24 *** [[2.3.6 Message Type>>path:#H2.3.6MessageType]]
25 *** [[2.3.7 Decode payload in The Things Network>>path:#H2.3.7DecodepayloadinTheThingsNetwork]]
26 ** [[2.4 Uplink Interval>>path:#H2.4UplinkInterval]]
27 ** [[2.5 ​Show Data in DataCake IoT Server>>path:#H2.5200BShowDatainDataCakeIoTServer]]
28 ** [[2.6 Installation and Maintain>>path:#H2.6InstallationandMaintain]]
29 *** [[2.6.1 Before measurement>>path:#H2.6.1Beforemeasurement]]
30 *** [[2.6.2 Measurement>>path:#H2.6.2Measurement]]
31 *** [[2.6.3 Maintain Probe>>path:#H2.6.3MaintainProbe]]
32 ** [[2.7 Calibration>>path:#H2.7Calibration]]
33 ** [[2.8 Frequency Plans>>path:#H2.8FrequencyPlans]]
34 *** [[2.8.1 EU863-870 (EU868)>>path:#H2.8.1EU863-87028EU86829]]
35 *** [[2.8.2 US902-928(US915)>>path:#H2.8.2US902-92828US91529]]
36 *** [[2.8.3 CN470-510 (CN470)>>path:#H2.8.3CN470-51028CN47029]]
37 *** [[2.8.4 AU915-928(AU915)>>path:#H2.8.4AU915-92828AU91529]]
38 *** [[2.8.5 AS920-923 & AS923-925 (AS923)>>path:#H2.8.5AS920-92326AS923-92528AS92329]]
39 *** [[2.8.6 KR920-923 (KR920)>>path:#H2.8.6KR920-92328KR92029]]
40 *** [[2.8.7 IN865-867 (IN865)>>path:#H2.8.7IN865-86728IN86529]]
41 ** [[2.9 LED Indicator>>path:#H2.9LEDIndicator]]
42 ** [[2.10 ​Firmware Change Log>>path:#H2.10200BFirmwareChangeLog]]
43 * [[3. Configure LSPH01 via AT Command or LoRaWAN Downlink>>path:#H3.ConfigureLSPH01viaATCommandorLoRaWANDownlink]]
44 ** [[3.1 Set Transmit Interval Time>>path:#H3.1SetTransmitIntervalTime]]
45 ** [[3.2 Set Interrupt Mode>>path:#H3.2SetInterruptMode]]
46 ** [[3.3 Calibrate Sensor>>path:#H3.3CalibrateSensor]]
47 ** [[3.4 Get Firmware Version Info>>path:#H3.4GetFirmwareVersionInfo]]
48 * [[4. Battery & How to replace>>path:#H4.Battery26Howtoreplace]]
49 ** [[4.1 Battery Type>>path:#H4.1BatteryType]]
50 ** [[4.2 Replace Battery>>path:#H4.2ReplaceBattery]]
51 ** [[4.3 Power Consumption Analyze>>path:#H4.3PowerConsumptionAnalyze]]
52 *** [[4.3.1 ​Battery Note>>path:#H4.3.1200BBatteryNote]]
53 *** [[​4.3.2 Replace the battery>>path:#H200B4.3.2Replacethebattery]]
54 * [[5. Use AT Command>>path:#H5.UseATCommand]]
55 ** [[5.1 Access AT Commands>>path:#H5.1AccessATCommands]]
56 * [[6. FAQ>>path:#H6.FAQ]]
57 ** [[6.1 How to change the LoRa Frequency Bands/Region>>path:#H6.1HowtochangetheLoRaFrequencyBands2FRegion]]
58 * [[7. Trouble Shooting>>path:#H7.TroubleShooting]]
59 ** [[7.1 AT Commands input doesn’t work>>path:#H7.1ATCommandsinputdoesn2019twork]]
60 * [[8. Order Info>>path:#H8.OrderInfo]]
61 * [[9. ​Packing Info>>path:#H9.200BPackingInfo]]
62 * [[10. ​Support>>path:#H10.A0200BSupport]]
63
64
65
66
67 = 1. Introduction =
68
69 == 1.1 ​What is LoRaWAN Soil pH Sensor ==
70
71 (((
72 The Dragino LSPH01 is a (% style="color:#4f81bd" %)**LoRaWAN Soil pH Sensor**(%%) for IoT of Agriculture. It is designed to measure the soil PH and soil temperature, so to send to the platform to analyze the soil acid or alkali level. The probe is IP68 waterproof.
73 )))
74
75 (((
76 LSPH01 probe is made by Solid AgCl reference electrode and Pure metal pH sensitive electrode. It can detect soil's** (% style="color:#4f81bd" %)pH (%%)**with high accuracy and stable value. The LSPH01 probe can be buried into soil for long time use.
77 )))
78
79 (((
80 The LoRa wireless technology used in LSPH01 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.
81 )))
82
83 (((
84 LSPH01 is powered by (% style="color:#4f81bd" %)**8500mAh Li-SOCI2 battery**(%%), it is designed for long term use up to 5 years.
85 )))
86
87 (((
88 Each LSPH01 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.
89 )))
90
91
92 [[image:1654592435432-887.png]]
93
94
95
96 == ​1.2 Features ==
97
98 * LoRaWAN 1.0.3 Class A
99 * Ultra-low power consumption
100 * Monitor soil pH with temperature compensation.
101 * Monitor soil temperature
102 * Monitor Battery Level
103 * Support pH calibration by end user
104 * Bands: CN470/EU433/KR920/US915/EU868/AS923/AU915/IN865
105 * AT Commands to change parameters
106 * Uplink on periodically
107 * Downlink to change configure
108 * IP66 Waterproof Enclosure
109 * IP68 rate for the Sensor Probe
110 * 8500mAh Battery for long term use
111
112 == 1.3 Probe Specification ==
113
114
115 (% style="color:#4f81bd" %)**Soil pH:**
116
117 * Range: 3 ~~ 10 pH
118 * Resolution: 0.01 pH
119 * Accuracy: ±2% under (0~~50 ℃, Accuracy will poor under 0 due to frozen)
120 * Temperature Compensation Range: 0 ~~ 50℃
121 * IP68 Protection
122 * Length: 3.5 meters
123
124 (% style="color:#4f81bd" %)**Soil Temperature:**
125
126 * Range -40℃~85℃
127 * Resolution: 0.1℃
128 * Accuracy: <±0.5℃(-10℃~40℃),<±0.8℃ (others)
129 * IP68 Protection
130 * Length: 3.5 meters
131
132 == 1.4 ​Applications ==
133
134 * Smart Agriculture
135
136 == 1.5 Pin mapping and power on ==
137
138 [[image:1654592472094-134.png]]
139
140
141
142 = 2. Configure LSPH01 to connect to LoRaWAN network =
143
144 == 2.1 How it works ==
145
146 (((
147 The LSPH01 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 LSPH01. It will automatically join the network via OTAA and start to send the sensor value. The default uplink interval is 20 minutes.
148 )))
149
150 (((
151 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 >>path:#H5.UseATCommand]]to set the keys in the LSPH01.
152 )))
153
154
155 == 2.2 ​Quick guide to connect to LoRaWAN server (OTAA) ==
156
157 (((
158 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.
159 )))
160
161 (((
162 [[image:1654592492399-921.png]]
163 )))
164
165 (((
166 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.
167 )))
168
169 (((
170 (% style="color:blue" %)**Step 1**(%%): Create a device in TTN with the OTAA keys from LSPH01.
171 )))
172
173 (((
174 Each LSPH01 is shipped with a sticker with the default device EUI as below:
175 )))
176
177 [[image:image-20220607170145-1.jpeg]]
178
179
180
181 You can enter this key in the LoRaWAN Server portal. Below is TTN screen shot:
182
183
184 **Register the device**
185
186
187 [[image:1654592600093-601.png]]
188
189
190 **Add APP EUI and DEV EUI**
191
192 [[image:1654592619856-881.png]]
193
194
195 **Add APP EUI in the application**
196
197 [[image:1654592632656-512.png]]
198
199
200
201 **Add APP KEY**
202
203 [[image:1654592653453-934.png]]
204
205
206 (% style="color:blue" %)**Step 2**(%%): Power on LSPH01
207
208
209 Put a Jumper on JP2 to power on the device. ( The Switch must be in FLASH position).
210
211 [[image:image-20220607170442-2.png]]
212
213
214 (((
215 (% style="color:blue" %)**Step 3**(%%)**:** The LSPH01 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.
216 )))
217
218 [[image:1654592697690-910.png]]
219
220
221
222 == 2.3 ​Uplink Payload ==
223
224 (((
225 LSPH01 will uplink payload via LoRaWAN with below payload format: 
226 )))
227
228 (((
229 Uplink payload includes in total 11 bytes.
230 )))
231
232 (((
233 Normal uplink payload:
234 )))
235
236 (% border="1" cellspacing="10" style="background-color:#ffffcc; width:510px" %)
237 |(((
238 **Size**
239
240 **(bytes)**
241 )))|**2**|**2**|**2**|**2**|**1**|**1**|**1**
242 |**Value**|[[BAT>>path:#H2.3.1BatteryInfo]]|(((
243 [[Temperature>>path:#H2.3.2DS18B20Temperaturesensor]]
244
245 [[(Optional)>>path:#H2.3.2DS18B20Temperaturesensor]]
246 )))|[[Soil pH>>path:#H2.3.3SoilpH]]|[[Soil Temperature>>path:#H2.3.4SoilTemperature]]|(((
247 [[Digital Interrupt (Optional)>>path:#H2.3.5InterruptPin]]
248 )))|Reserve|(((
249 [[Message Type>>path:#H2.3.6MessageType]]
250 )))
251
252 [[image:1654592721645-318.png]]
253
254
255
256 === 2.3.1 Battery Info ===
257
258
259 Check the battery voltage for LSPH01.
260
261 Ex1: 0x0B45 = 2885mV
262
263 Ex2: 0x0B49 = 2889mV
264
265
266
267 === 2.3.2 DS18B20 Temperature sensor ===
268
269 This is optional, user can connect external DS18B20 sensor to the +3.3v, 1-wire and GND pin . and this field will report temperature.
270
271
272 **Example**:
273
274 If payload is: 0105H:  (0105 & FC00 == 0), temp = 0105H /10 = 26.1 degree
275
276 If payload is: FF3FH :  (FF3F & FC00 == 1) , temp = (FF3FH - 65536)/10 = -19.3 degrees.
277
278
279
280 === 2.3.3 Soil pH ===
281
282 Range: 0 ~~ 14 pH
283
284 **Example:**
285
286 (% style="color:#037691" %)** 0x02B7(H) = 695(D) = 6.95pH**
287
288
289
290 === 2.3.4 Soil Temperature ===
291
292 Get Soil Temperature 
293
294
295 **Example**:
296
297 If payload is: **0105H**:  (0105 & FC00 == 0), temp = 0105H /10 = 26.1 degree
298
299 If payload is: **FF3FH** :  (FF3F & FC00 == 1) , temp = (FF3FH - 65536)/10 = -19.3 degrees.
300
301
302
303 === 2.3.5 Interrupt Pin ===
304
305 This data field shows if this packet is generated by interrupt or not. [[Click here>>path:#H3.2SetInterruptMode]] for the hardware and software set up.
306
307
308 **Example:**
309
310 0x00: Normal uplink packet.
311
312 0x01: Interrupt Uplink Packet.
313
314
315
316 === 2.3.6 Message Type ===
317
318 (((
319 For a normal uplink payload, the message type is always 0x01.
320 )))
321
322 (((
323 Valid Message Type:
324 )))
325
326
327 (% border="1" cellspacing="10" style="background-color:#ffffcc; width:510px" %)
328 |=**Message Type Code**|=**Description**|=**Payload**
329 |0x01|Normal Uplink|[[Normal Uplink Payload>>path:#H2.3200BUplinkPayload]]
330 |0x02|Reply configures info|[[Configure Info Payload>>path:#H3.4GetFirmwareVersionInfo]]
331 |0x03|Reply Calibration Info|[[Calibration Payload>>path:#H2.7Calibration]]
332
333 === 2.3.7 Decode payload in The Things Network ===
334
335 While using TTN network, you can add the payload format to decode the payload.
336
337
338 [[image:1654592762713-715.png]]
339
340 (((
341 The payload decoder function for TTN is here:
342 )))
343
344 (((
345 LSPH01 TTN Payload Decoder: [[https:~~/~~/www.dragino.com/downloads/index.pHp?dir=LoRa_End_Node/LSPH01/Decoder/>>url:https://www.dragino.com/downloads/index.php?dir=LoRa_End_Node/LSNPK01/Decoder/]]
346 )))
347
348
349
350 == 2.4 Uplink Interval ==
351
352 The LSPH01 by default uplink the sensor data every 20 minutes. User can change this interval by AT Command or LoRaWAN Downlink Command. See this link: [[Change Uplink Interval>>path:/xwiki/bin/view/Main/End%20Device%20AT%20Commands%20and%20Downlink%20Command/#H4.1ChangeUplinkInterval]]
353
354
355
356 == 2.5 ​Show Data in DataCake IoT Server ==
357
358 (((
359 [[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:
360 )))
361
362 (((
363
364 )))
365
366 (((
367 (% style="color:blue" %)**Step 1**(%%)**: Be sure that your device is programmed and properly connected to the network at this time.**
368 )))
369
370 (((
371 (% style="color:blue" %)**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:**
372 )))
373
374
375 [[image:1654592790040-760.png]]
376
377
378 [[image:1654592800389-571.png]]
379
380
381 (% style="color:blue" %)**Step 3**(%%)**: Create an account or log in Datacake.**
382
383 (% style="color:blue" %)**Step 4**(%%)**: Create LSPH01 product.**
384
385 [[image:1654592819047-535.png]]
386
387
388
389 [[image:1654592833877-762.png]]
390
391
392 [[image:1654592856403-259.png]]
393
394
395 (((
396 (% style="color:blue" %)**Step 5**(%%)**: add payload decode**
397 )))
398
399 (((
400 Download Datacake decoder from: [[https:~~/~~/www.dragino.com/downloads/index.pHp?dir=LoRa_End_Node/LSPH01/Decoder/>>url:https://www.dragino.com/downloads/index.php?dir=LoRa_End_Node/LSNPK01/Decoder/]]
401 )))
402
403
404 [[image:1654592878525-845.png]]
405
406 [[image:1654592892967-474.png]]
407
408
409 [[image:1654592905354-123.png]]
410
411
412 After added, the sensor data arrive TTN, it will also arrive and show in Mydevices.
413
414
415 [[image:1654592917530-261.png]]
416
417
418
419 == 2.6 Installation and Maintain ==
420
421 === 2.6.1 Before measurement ===
422
423 (((
424 (((
425 If the LSPH01 has more than 7 days not use or just clean the pH probe. User should put the probe inside pure water for more than 24 hours for activation. If no put in water, user need to put inside soil for more than 24 hours to ensure the measurement accuracy. 
426 )))
427 )))
428
429
430
431 === 2.6.2 Measurement ===
432
433
434 (((
435 (% style="color:#4f81bd" %)**Measurement the soil surface:**
436 )))
437
438 (((
439 [[image:1654592946732-634.png]]
440 )))
441
442 (((
443 Choose the proper measuring position. Split the surface soil according to the measured deep.
444 )))
445
446 (((
447 Put pure water, or rainwater to make the soil of measurement point to moist mud. Remove rocks or hard things.
448 )))
449
450 (((
451 Slowly insert the probe to the measure point. Don’t use large force which will break the probe. Make sure not shake when inserting.
452 )))
453
454 (((
455 Put soil over the probe after insert. And start to measure.
456 )))
457
458 (((
459
460 )))
461
462 (((
463 (% style="color:#4f81bd" %)**Measurement inside soil:**
464 )))
465
466 (((
467 Dig a hole with diameter > 20CM.
468 )))
469
470 (((
471 Insert the probe inside, method like measure the surface.
472 )))
473
474
475
476 === 2.6.3 Maintain Probe ===
477
478 1. (((
479 pH probe electrode is fragile and no strong. User must avoid strong force or hitting it.
480 )))
481 1. (((
482 After long time use (3~~ 6  months). The probe electrode needs to be clean; user can use high grade sandpaper to polish it or put in 5% hydrochloric acid for several minutes. After the metal probe looks like new, user can use pure water to wash it.
483 )))
484 1. (((
485 Probe reference electrode is also no strong, need to avoid strong force or hitting.
486 )))
487 1. (((
488 User should keep reference electrode wet while not use.
489 )))
490 1. (((
491 Avoid the probes to touch oily matter. Which will cause issue in accuracy.
492 )))
493 1. (((
494 The probe is IP68 can be put in water.
495
496
497
498 )))
499
500 == 2.7 Calibration ==
501
502 (((
503 User can do calibration for the probe. It is limited to use below pH buffer solution to calibrate: 4.00, 6.86, 9.18. When calibration, user need to clean the electrode and put the probe in the pH buffer solution to wait the value stable ( a new clean electrode might need max 24 hours to be stable).
504 )))
505
506 (((
507 After stable, user can use below command to calibrate.
508 )))
509
510 [[image:image-20220607171149-4.png]]
511
512
513 (% style="color:#037691" %)**Calibration Payload**
514
515 (% border="1" cellspacing="10" style="background-color:#ffffcc; color:green; width:510px" %)
516 |(((
517 **Size**
518
519 **(bytes)**
520 )))|**1**|**1**|**1**|**7**|**1**
521 |**Value**|(((
522 PH4
523
524 Calibrate value
525 )))|PH6.86 Calibrate value|(((
526 PH9.18
527
528 Calibrate value
529 )))|Reserve|(((
530 [[Message Type>>path:#H2.3.6MessageType]]
531
532 Always 0x03
533 )))
534
535 User can also send 0x14 downlink command to poll the current calibration payload.
536
537 [[image:image-20220607171416-7.jpeg]]
538
539
540 * Reply to the confirmation package: 14 01
541 * Reply to non-confirmed packet: 14 00
542
543 == 2.8 Frequency Plans ==
544
545 (((
546 The LSPH01 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.
547 )))
548
549
550 === 2.8.1 EU863-870 (EU868) ===
551
552 (((
553 (% style="color:blue" %)**Uplink:**
554 )))
555
556 (((
557 868.1 - SF7BW125 to SF12BW125
558 )))
559
560 (((
561 868.3 - SF7BW125 to SF12BW125 and SF7BW250
562 )))
563
564 (((
565 868.5 - SF7BW125 to SF12BW125
566 )))
567
568 (((
569 867.1 - SF7BW125 to SF12BW125
570 )))
571
572 (((
573 867.3 - SF7BW125 to SF12BW125
574 )))
575
576 (((
577 867.5 - SF7BW125 to SF12BW125
578 )))
579
580 (((
581 867.7 - SF7BW125 to SF12BW125
582 )))
583
584 (((
585 867.9 - SF7BW125 to SF12BW125
586 )))
587
588 (((
589 868.8 - FSK
590 )))
591
592 (((
593
594 )))
595
596 (((
597 (% style="color:blue" %)**Downlink:**
598 )))
599
600 (((
601 Uplink channels 1-9 (RX1)
602 )))
603
604 (((
605 869.525 - SF9BW125 (RX2 downlink only)
606 )))
607
608
609
610 === 2.8.2 US902-928(US915) ===
611
612 (((
613 Used in USA, Canada and South America. Frequency band as per definition in LoRaWAN 1.0.3 Regional document.
614 )))
615
616 (((
617 To make sure the end node supports all sub band by default. In the OTAA Join process, the end node will use frequency 1 from sub-band1, then frequency 1 from sub-band2, then frequency 1 from sub-band3, etc to process the OTAA join.
618 )))
619
620 (((
621 After Join success, the end node will switch to the correct sub band by:
622 )))
623
624 * Check what sub-band the LoRaWAN server ask from the OTAA Join Accept message and switch to that sub-band
625 * Use the Join successful sub-band if the server doesn’t include sub-band info in the OTAA Join Accept message ( TTN v2 doesn't include)
626
627 === 2.8.3 CN470-510 (CN470) ===
628
629 (((
630 Used in China, Default use CHE=1
631 )))
632
633 (((
634 (% style="color:blue" %)**Uplink:**
635 )))
636
637 (((
638 486.3 - SF7BW125 to SF12BW125
639 )))
640
641 (((
642 486.5 - SF7BW125 to SF12BW125
643 )))
644
645 (((
646 486.7 - SF7BW125 to SF12BW125
647 )))
648
649 (((
650 486.9 - SF7BW125 to SF12BW125
651 )))
652
653 (((
654 487.1 - SF7BW125 to SF12BW125
655 )))
656
657 (((
658 487.3 - SF7BW125 to SF12BW125
659 )))
660
661 (((
662 487.5 - SF7BW125 to SF12BW125
663 )))
664
665 (((
666 487.7 - SF7BW125 to SF12BW125
667 )))
668
669 (((
670
671 )))
672
673 (((
674 (% style="color:blue" %)**Downlink:**
675 )))
676
677 (((
678 506.7 - SF7BW125 to SF12BW125
679 )))
680
681 (((
682 506.9 - SF7BW125 to SF12BW125
683 )))
684
685 (((
686 507.1 - SF7BW125 to SF12BW125
687 )))
688
689 (((
690 507.3 - SF7BW125 to SF12BW125
691 )))
692
693 (((
694 507.5 - SF7BW125 to SF12BW125
695 )))
696
697 (((
698 507.7 - SF7BW125 to SF12BW125
699 )))
700
701 (((
702 507.9 - SF7BW125 to SF12BW125
703 )))
704
705 (((
706 508.1 - SF7BW125 to SF12BW125
707 )))
708
709 (((
710 505.3 - SF12BW125 (RX2 downlink only)
711 )))
712
713
714
715 === 2.8.4 AU915-928(AU915) ===
716
717 (((
718 Frequency band as per definition in LoRaWAN 1.0.3 Regional document.
719 )))
720
721 (((
722 To make sure the end node supports all sub band by default. In the OTAA Join process, the end node will use frequency 1 from sub-band1, then frequency 1 from sub-band2, then frequency 1 from sub-band3, etc to process the OTAA join.
723 )))
724
725 (((
726
727 )))
728
729 (((
730 After Join success, the end node will switch to the correct sub band by:
731 )))
732
733 * Check what sub-band the LoRaWAN server ask from the OTAA Join Accept message and switch to that sub-band
734 * Use the Join successful sub-band if the server doesn’t include sub-band info in the OTAA Join Accept message ( TTN v2 doesn't include)
735
736 === 2.8.5 AS920-923 & AS923-925 (AS923) ===
737
738 (((
739 (% style="color:blue" %)**Default Uplink channel:**
740 )))
741
742 (((
743 923.2 - SF7BW125 to SF10BW125
744 )))
745
746 (((
747 923.4 - SF7BW125 to SF10BW125
748 )))
749
750 (((
751
752 )))
753
754 (((
755 (% style="color:blue" %)**Additional Uplink Channel**:
756 )))
757
758 (((
759 (OTAA mode, channel added by JoinAccept message)
760 )))
761
762 (((
763
764 )))
765
766 (((
767 (% style="color:blue" %)**AS920~~AS923 for Japan, Malaysia, Singapore**:
768 )))
769
770 (((
771 922.2 - SF7BW125 to SF10BW125
772 )))
773
774 (((
775 922.4 - SF7BW125 to SF10BW125
776 )))
777
778 (((
779 922.6 - SF7BW125 to SF10BW125
780 )))
781
782 (((
783 922.8 - SF7BW125 to SF10BW125
784 )))
785
786 (((
787 923.0 - SF7BW125 to SF10BW125
788 )))
789
790 (((
791 922.0 - SF7BW125 to SF10BW125
792 )))
793
794 (((
795
796 )))
797
798 (((
799 (% style="color:blue" %)**AS923 ~~ AS925 for Brunei, Cambodia, Hong Kong, Indonesia, Laos, Taiwan, Thailand, Vietnam**:
800 )))
801
802 (((
803 923.6 - SF7BW125 to SF10BW125
804 )))
805
806 (((
807 923.8 - SF7BW125 to SF10BW125
808 )))
809
810 (((
811 924.0 - SF7BW125 to SF10BW125
812 )))
813
814 (((
815 924.2 - SF7BW125 to SF10BW125
816 )))
817
818 (((
819 924.4 - SF7BW125 to SF10BW125
820 )))
821
822 (((
823 924.6 - SF7BW125 to SF10BW125
824 )))
825
826 (((
827
828 )))
829
830 (((
831 (% style="color:blue" %)**Downlink:**
832 )))
833
834 (((
835 Uplink channels 1-8 (RX1)
836 )))
837
838 (((
839 923.2 - SF10BW125 (RX2)
840 )))
841
842
843
844 === 2.8.6 KR920-923 (KR920) ===
845
846 (((
847 (% style="color:blue" %)**Default channel:**
848 )))
849
850 (((
851 922.1 - SF7BW125 to SF12BW125
852 )))
853
854 (((
855 922.3 - SF7BW125 to SF12BW125
856 )))
857
858 (((
859 922.5 - SF7BW125 to SF12BW125
860 )))
861
862 (((
863
864 )))
865
866 (((
867 (% style="color:blue" %)**Uplink: (OTAA mode, channel added by JoinAccept message)**
868 )))
869
870 (((
871 922.1 - SF7BW125 to SF12BW125
872 )))
873
874 (((
875 922.3 - SF7BW125 to SF12BW125
876 )))
877
878 (((
879 922.5 - SF7BW125 to SF12BW125
880 )))
881
882 (((
883 922.7 - SF7BW125 to SF12BW125
884 )))
885
886 (((
887 922.9 - SF7BW125 to SF12BW125
888 )))
889
890 (((
891 923.1 - SF7BW125 to SF12BW125
892 )))
893
894 (((
895 923.3 - SF7BW125 to SF12BW125
896 )))
897
898 (((
899
900 )))
901
902 (((
903 (% style="color:blue" %)**Downlink:**
904 )))
905
906 (((
907 Uplink channels 1-7(RX1)
908 )))
909
910 (((
911 921.9 - SF12BW125 (RX2 downlink only; SF12BW125 might be changed to SF9BW125)
912 )))
913
914
915
916 === 2.8.7 IN865-867 (IN865) ===
917
918 (((
919 (% style="color:blue" %)**Uplink:**
920 )))
921
922 (((
923 865.0625 - SF7BW125 to SF12BW125
924 )))
925
926 (((
927 865.4025 - SF7BW125 to SF12BW125
928 )))
929
930 (((
931 865.9850 - SF7BW125 to SF12BW125
932 )))
933
934 (((
935
936 )))
937
938 (((
939 (% style="color:blue" %)**Downlink:**
940 )))
941
942 (((
943 Uplink channels 1-3 (RX1)
944 )))
945
946 (((
947 866.550 - SF10BW125 (RX2)
948 )))
949
950
951
952 == 2.9 LED Indicator ==
953
954 The LSPH01 has an internal LED which is to show the status of different state.
955
956 * The sensor is detected when the device is turned on, and it will flash 4 times quickly when it is detected.
957 * Blink once when device transmit a packet.
958
959
960 == 2.10 ​Firmware Change Log ==
961
962
963 **Firmware download link:**
964
965 [[http:~~/~~/www.dragino.com/downloads/index.pHp?dir=LoRa_End_Node/LSPH01/Firmware/>>url:http://www.dragino.com/downloads/index.php?dir=LoRa_End_Node/LSE01/Firmware/]]
966
967
968 **Firmware Upgrade Method: **[[Firmware Upgrade Instruction>>path:/xwiki/bin/view/Main/Firmware%20Upgrade%20Instruction%20for%20STM32%20base%20products/]]
969
970
971
972 = 3. Configure LSPH01 via AT Command or LoRaWAN Downlink =
973
974 (((
975 Use can configure LSPH01 via AT Command or LoRaWAN Downlink.
976 )))
977
978 * (((
979 AT Command Connection: See [[FAQ>>path:#H6.FAQ]].
980 )))
981 * (((
982 LoRaWAN Downlink instruction for different platforms: [[IoT LoRaWAN Server>>path:/xwiki/bin/view/Main/]]
983 )))
984
985 (((
986 There are two kinds of commands to configure LSPH01, they are:
987 )))
988
989 * (((
990 (% style="color:#4f81bd" %)** General Commands**.
991 )))
992
993 (((
994 These commands are to configure:
995 )))
996
997 * (((
998 General system settings like: uplink interval.
999 )))
1000 * (((
1001 LoRaWAN protocol & radio related command.
1002 )))
1003
1004 (((
1005 They are same for all Dragino Device which support DLWS-005 LoRaWAN Stack. These commands can be found on the wiki:[[End Device AT Commands and Downlink Command>>path:/xwiki/bin/view/Main/End%20Device%20AT%20Commands%20and%20Downlink%20Command/]]
1006 )))
1007
1008 (((
1009
1010 )))
1011
1012 * (((
1013 (% style="color:#4f81bd" %)** Commands special design for LSPH01**
1014 )))
1015
1016 (((
1017 These commands only valid for LSPH01, as below:
1018 )))
1019
1020
1021
1022 == 3.1 Set Transmit Interval Time ==
1023
1024 Feature: Change LoRaWAN End Node Transmit Interval.
1025
1026 (% style="color:#037691" %)**AT Command: AT+TDC**
1027
1028 [[image:image-20220607171554-8.png]]
1029
1030
1031
1032 (((
1033 (% style="color:#037691" %)**Downlink Command: 0x01**
1034 )))
1035
1036 (((
1037 Format: Command Code (0x01) followed by 3 bytes time value.
1038 )))
1039
1040 (((
1041 If the downlink payload=0100003C, it means set the END Node’s Transmit Interval to 0x00003C=60(S), while type code is 01.
1042 )))
1043
1044 * (((
1045 Example 1: Downlink Payload: 0100001E ~/~/ Set Transmit Interval (TDC) = 30 seconds
1046 )))
1047 * (((
1048 Example 2: Downlink Payload: 0100003C ~/~/ Set Transmit Interval (TDC) = 60 seconds
1049
1050
1051
1052 )))
1053
1054 == 3.2 Set Interrupt Mode ==
1055
1056 Feature, Set Interrupt mode for GPIO_EXIT.
1057
1058 (% style="color:#037691" %)**AT Command: AT+INTMOD**
1059
1060 [[image:image-20220607171716-9.png]]
1061
1062
1063 (((
1064 (% style="color:#037691" %)**Downlink Command: 0x06**
1065 )))
1066
1067 (((
1068 Format: Command Code (0x06) followed by 3 bytes.
1069 )))
1070
1071 (((
1072 This means that the interrupt mode of the end node is set to 0x000003=3 (rising edge trigger), and the type code is 06.
1073 )))
1074
1075 * (((
1076 Example 1: Downlink Payload: 06000000 ~/~/ Turn off interrupt mode
1077 )))
1078 * (((
1079 Example 2: Downlink Payload: 06000003 ~/~/ Set the interrupt mode to rising edge trigger
1080 )))
1081
1082 (((
1083
1084 )))
1085
1086
1087
1088 == 3.3 Calibrate Sensor ==
1089
1090 Detail See [[Calibration Guide>>path:#H2.7Calibration]] for the user of 0x13 and 0x14 downlink commands
1091
1092
1093
1094 == 3.4 Get Firmware Version Info ==
1095
1096 Feature: use downlink to get firmware version.
1097
1098 (% style="color:#037691" %)**Downlink Command: 0x26**
1099
1100 [[image:image-20220607171917-10.png]]
1101
1102 * Reply to the confirmation package: 26 01
1103 * Reply to non-confirmed packet: 26 00
1104
1105 Device will send an uplink after got this downlink command. With below payload:
1106
1107 Configures info payload:
1108
1109 (% border="1" cellspacing="10" style="background-color:#ffffcc; color:green; width:510px" %)
1110 |=(((
1111 **Size(bytes)**
1112 )))|=**1**|=**1**|=**1**|=**1**|=**1**|=**5**|=**1**
1113 |**Value**|Software Type|(((
1114 Frequency
1115
1116 Band
1117 )))|Sub-band|(((
1118 Firmware
1119
1120 Version
1121 )))|Sensor Type|Reserve|(((
1122 [[Message Type>>path:#H2.3.6MessageType]]
1123 Always 0x02
1124 )))
1125
1126 **Software Type**: Always 0x03 for LSPH01
1127
1128
1129 **Frequency Band**:
1130
1131 *0x01: EU868
1132
1133 *0x02: US915
1134
1135 *0x03: IN865
1136
1137 *0x04: AU915
1138
1139 *0x05: KZ865
1140
1141 *0x06: RU864
1142
1143 *0x07: AS923
1144
1145 *0x08: AS923-1
1146
1147 *0x09: AS923-2
1148
1149 *0xa0: AS923-3
1150
1151
1152 **Sub-Band**: value 0x00 ~~ 0x08
1153
1154
1155 **Firmware Version**: 0x0100, Means: v1.0.0 version
1156
1157
1158 **Sensor Type**:
1159
1160 0x01: LSE01
1161
1162 0x02: LDDS75
1163
1164 0x03: LDDS20
1165
1166 0x04: LLMS01
1167
1168 0x05: LSPH01
1169
1170 0x06: LSNPK01
1171
1172 0x07: LDDS12
1173
1174
1175
1176 = 4. Battery & How to replace =
1177
1178 == 4.1 Battery Type ==
1179
1180 (((
1181 LSPH01 is equipped with a [[8500mAH ER26500 Li-SOCI2 battery>>url:https://www.dragino.com/downloads/index.php?dir=datasheet/Battery/ER26500/]]. The battery is un-rechargeable battery with low discharge rate targeting for 8~~10 years use. This type of battery is commonly used in IoT target for long-term running, such as water meter.
1182 )))
1183
1184 (((
1185 The discharge curve is not linear so can’t simply use percentage to show the battery level. Below is the battery performance.
1186 )))
1187
1188 [[image:1654593587246-335.png]]
1189
1190
1191 Minimum Working Voltage for the LSPH01:
1192
1193 LSPH01:  2.45v ~~ 3.6v
1194
1195
1196
1197 == 4.2 Replace Battery ==
1198
1199 (((
1200 Any battery with range 2.45 ~~ 3.6v can be a replacement. We recommend to use Li-SOCl2 Battery.
1201 )))
1202
1203 (((
1204 And make sure the positive and negative pins match.
1205 )))
1206
1207
1208
1209 == 4.3 Power Consumption Analyze ==
1210
1211 (((
1212 Dragino Battery powered product are all runs in Low Power mode. We have an update battery calculator which base on the measurement of the real device. User can use this calculator to check the battery life and calculate the battery life if want to use different transmit interval.
1213 )))
1214
1215 (((
1216 Instruction to use as below:
1217 )))
1218
1219
1220 **Step 1**: Downlink the up-to-date DRAGINO_Battery_Life_Prediction_Table.xlsx from:
1221
1222 [[https:~~/~~/www.dragino.com/downloads/index.pHp?dir=LoRa_End_Node/Battery_Analyze/>>url:https://www.dragino.com/downloads/index.php?dir=LoRa_End_Node/Battery_Analyze/]]
1223
1224
1225 **Step 2**: Open it and choose
1226
1227 * Product Model
1228 * Uplink Interval
1229 * Working Mode
1230
1231 And the Life expectation in difference case will be shown on the right.
1232
1233 [[image:1654593605679-189.png]]
1234
1235
1236 The battery related documents as below:
1237
1238 * (((
1239 [[Battery Dimension>>url:http://www.dragino.com/downloads/index.php?dir=datasheet/Battery/&file=LSN50-Battery-Dimension.pdf]],
1240 )))
1241 * (((
1242 [[Lithium-Thionyl Chloride Battery  datasheet>>url:https://www.dragino.com/downloads/downloads/datasheet/Battery/ER26500/ER26500_Datasheet-EN.pdf]],
1243 )))
1244 * (((
1245 [[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]]
1246 )))
1247
1248 [[image:image-20220607172042-11.png]]
1249
1250
1251
1252 === 4.3.1 ​Battery Note ===
1253
1254 (((
1255 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.
1256 )))
1257
1258
1259
1260 === ​4.3.2 Replace the battery ===
1261
1262 (((
1263 You can change the battery in the LSPH01.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.
1264 )))
1265
1266 (((
1267 The default battery pack of LSPH01 includes a ER26500 plus super capacitor. If user can’t find this pack locally, they can find ER26500 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)
1268 )))
1269
1270
1271
1272 = 5. Use AT Command =
1273
1274 == 5.1 Access AT Commands ==
1275
1276 LSPH01 supports AT Command set in the stock firmware. You can use a USB to TTL adapter to connect to LSPH01 for using AT command, as below.
1277
1278 [[image:1654593668970-604.png]]
1279
1280 **Connection:**
1281
1282 (% style="background-color:yellow" %)** USB TTL GND <~-~-~-~-> GND**
1283
1284 (% style="background-color:yellow" %)** USB TTL TXD  <~-~-~-~-> UART_RXD**
1285
1286 (% style="background-color:yellow" %)** USB TTL RXD  <~-~-~-~-> UART_TXD**
1287
1288
1289 (((
1290 In the PC, you need to set the serial baud rate to (% style="color:green" %)**9600**(%%) to access the serial console for LSPH01. LSPH01 will output system info once power on as below:
1291 )))
1292
1293
1294 [[image:1654593712276-618.png]]
1295
1296 Valid AT Command please check [[Configure Device>>path:#H3.ConfigureLSPH01viaATCommandorLoRaWANDownlink]].
1297
1298
1299
1300 = 6. FAQ =
1301
1302 == 6.1 How to change the LoRa Frequency Bands/Region ==
1303
1304 You can follow the instructions for [[how to upgrade image>>path:#H2.10200BFirmwareChangeLog]].
1305 When downloading the images, choose the required image file for download. ​
1306
1307
1308
1309 = 7. Trouble Shooting =
1310
1311 == 7.1 AT Commands input doesn’t work ==
1312
1313 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.
1314
1315
1316
1317 = 8. Order Info =
1318
1319 Part Number: (% style="color:blue" %)**LSPH01-XX**
1320
1321
1322 (% style="color:blue" %)**XX**(%%): The default frequency band
1323
1324 * (% style="color:red" %)**AS923**(%%):  LoRaWAN AS923 band
1325 * (% style="color:red" %)**AU915**(%%): LoRaWAN AU915 band
1326 * (% style="color:red" %)**EU433**(%%): LoRaWAN EU433 band
1327 * (% style="color:red" %)**EU868**(%%): LoRaWAN EU868 band
1328 * (% style="color:red" %)**KR920**(%%): LoRaWAN KR920 band
1329 * (% style="color:red" %)**US915**(%%): LoRaWAN US915 band
1330 * (% style="color:red" %)**IN865**(%%):  LoRaWAN IN865 band
1331 * (% style="color:red" %)**CN470**(%%): LoRaWAN CN470 band
1332
1333 = 9. ​Packing Info =
1334
1335
1336 **Package Includes**:
1337
1338 * LSPH01 LoRaWAN Soil Ph Sensor x 1
1339
1340 **Dimension and weight**:
1341
1342 * Device Size: cm
1343 * Device Weight: g
1344 * Package Size / pcs : cm
1345 * Weight / pcs : g
1346
1347 = 10. ​Support =
1348
1349 * 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.
1350 * 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]].
1351
1352
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