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From version < 66.4 >
edited by Xiaoling
on 2022/06/25 10:25
To version < 67.12 >
edited by Xiaoling
on 2022/06/25 10:51
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29 29  == 1.1  What is GroPoint Air ==
30 30  
31 31  
32 +(((
32 32  The Dragino GroPoint is a (% style="color:blue" %)**LoRaWAN Multi Soil Segment Converter**(%%) for IoT of Agriculture. It is designed to connect to [[GroPoint Profile Multi-depth Soil moisture and temperature profile Sensor>>url:https://www.gropoint.com/products/soil-sensors/gropoint-profile]] and get GroPoint Profile’s reading and send it to IoT server via LoRaWAN wireless network.
34 +)))
33 33  
36 +(((
34 34  (% style="color:blue" %)**GroPoint Profile is plug-and-play with GroPoint Air**(%%) to get soil moisture and send via wireless. GroPoint Profile is powered by GroPoint Air, (% style="color:blue" %)**no need external power source**(%%).
38 +)))
35 35  
40 +(((
36 36  The LoRa wireless technology used in GroPoint Air allows devices 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.
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37 37  
44 +(((
38 38  GroPoint Air is powered by (% style="color:blue" %)**an 8500mAh Li-SOCI2 battery**(%%), it is designed for long-term use for up to 5 years.
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39 39  
48 +(((
40 40  Each GroPoint Air is pre-load with a set of unique keys for LoRaWAN registrations, register these keys to the local LoRaWAN server and it will auto-connect after power on.
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41 41  
42 42  (% aria-label="image-20220530002019-2.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:image-20220530002019-2.png||data-widget="image" height="295" width="655"]](% title="Click and drag to resize" %)​
43 43  
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54 54  * IP66 Waterproof Enclosure
55 55  * 8500mAh Battery for long term use
56 56  
67 +
68 +
69 +
70 +
57 57  == 1.3  Probe Specification ==
58 58  
73 +(((
59 59  GroPoint Air includes an M12 5-pin connector, the pins definition matches GroPoint Profile M12 version probes. Users can connect this connector to GroPoint Profile directly.
75 +)))
60 60  
77 +(((
61 61  GroPoint Profile includes a series of multi-depth soil moisture and temperature sensors. The specification for GroPoint Profile can be found here: [[https:~~/~~/www.gropoint.com/products/soil-sensors/gropoint-profile>>https://www.gropoint.com/products/soil-sensors/gropoint-profile]]
79 +)))
62 62  
63 63  
64 64  == 1.4  Applications ==
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65 65  
66 66  * Smart Agriculture
67 67  
86 +
87 +
88 +
89 +
68 68  == 1.5  Pin Mapping ==
69 69  
70 70  Inner PCB Pin mapping for reference:
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81 81  * The sensor is detected when the device is turned on, and it will flash 4 times quickly when it is detected.
82 82  * Blink once when device transmits a packet.
83 83  
106 +
107 +
108 +
109 +
110 +
84 84  == 2.2  Firmware and Changelog ==
85 85  
86 86  (((
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100 100  
101 101  == 3.1  Connect to GroPoint Profile ==
102 102  
130 +(((
103 103  GroPoint Air must be used with [[GroPoint Profile>>https://www.gropoint.com/products/soil-sensors/gropoint-profile]]. There are different interface model from GroPoint, users need to choose the one:
132 +)))
104 104  
105 -* Support RS485 Interface
106 -* with M12 5pin connector.
134 +* (((
135 +Support RS485 Interface
136 +)))
137 +* (((
138 +with M12 5pin connector.
139 +)))
107 107  
141 +(((
108 108  Such model in GroPoint Profile is: (% style="color:blue" %)**2625-N-T-x-M-M **(%%)(Where x is different depending on how many levels it detects).
143 +)))
109 109  
110 110  
111 111  == 3.2  Connect to LoRaWAN Network? ==
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115 115  
116 116  == 3.3  Example to use for LoRaWAN network ==
117 117  
153 +(((
118 118  This section shows an example of how to join the TTN V3 LoRaWAN IoT server. Usages with other LoRaWAN IoT servers are similar.
155 +)))
119 119  
120 -* In this use case, the GroPoint Air measures soil moisture and temperature and sends the status to the LoRaWAN server.The GroPoint Air will uplink different types of messages to the LoRaWAN server. See [[Uplink payload>>||anchor="H3.4A0UplinkPayloadAnalyze"]] for detail.
157 +* (((
158 +In this use case, the GroPoint Air measures soil moisture and temperature and sends the status to the LoRaWAN server.The GroPoint Air will uplink different types of messages to the LoRaWAN server. See [[Uplink payload>>||anchor="H3.4A0UplinkPayloadAnalyze"]] for detail.
159 +)))
121 121  
161 +(((
122 122  Assume the DLOS8 is already set to connect to the [[TTN V3 network >>url:https://eu1.cloud.thethings.network/]]. We need to add the GroPoint Air device in TTN V3:
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123 123  
165 +(((
166 +
167 +)))
124 124  
169 +(((
125 125  (% style="color:blue" %)**Step 1**(%%): Create a device in TTN V3 with the OTAA keys from GroPoint Air.
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126 126  
173 +(((
127 127  Each GroPoint Air is shipped with a sticker with the default device EUI as below:
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128 128  
129 129  
130 130  (% aria-label="1652944593868-618.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/SW3L%20LoRaWAN%20Outdoor%20Flow%20Sensor/WebHome/1652944593868-618.png?rev=1.1||alt="1652944593868-618.png" data-widget="image"]](% title="Click and drag to resize" %)​
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146 146  
147 147  (% style="color:blue" %)**Step 2**(%%):  Power on GroPoint Air
148 148  
149 -(% aria-label="image-20220519094347-1.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/SW3L%20LoRaWAN%20Outdoor%20Flow%20Sensor/WebHome/image-20220519094347-1.png?width=725&height=430&rev=1.1||alt="image-20220519094347-1.png" data-widget="image" height="430" width="725"]](% title="Click and drag to resize" %)​
197 +(% aria-label="image-20220519094347-1.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/SW3L%20LoRaWAN%20Outdoor%20Flow%20Sensor/WebHome/image-20220519094347-1.png?width=725&height=430&rev=1.1||alt="image-20220519094347-1.png" data-widget="image" height="430" width="725"]]
150 150  
199 +(% title="Click and drag to resize" %)​
200 +
201 +(((
151 151  Put the jumper to power on GroPoint Air and it will auto-join to the TTN V3 network. After join success, it will start to upload sensor data to TTN V3 and the user can see it in the panel.
203 +)))
152 152  
153 153  (% aria-label="image-20220611174943-1.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:image-20220611174943-1.png||data-widget="image" height="139" width="1008"]](% title="Click and drag to resize" %)​
154 154  
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165 165  
166 166  == 3.4  Uplink Payload Analyze ==
167 167  
220 +(((
168 168  Uplink payloads have two types:
222 +)))
169 169  
170 170  * (((
225 +(((
171 171  Report temperature and humidity status normally: Use FPORT=2
172 172  )))
228 +)))
173 173  * (((
230 +(((
174 174  Other control commands: Use other FPORT fields.
175 175  )))
233 +)))
176 176  
235 +(((
177 177  The application server should parse the correct value based on FPORT settings.
237 +)))
178 178  
179 179  
180 180  == 3.5  temperature and humidity Value, Uplink FPORT~=2 ==
181 181  
182 182  
243 +(((
183 183  GroPoint Air will send this uplink after Device Status once join the LoRaWAN network successfully. And GroPoint Air will:
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184 184  
247 +(((
185 185  periodically send this uplink every 20 minutes, this interval can be changed.
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186 186  
251 +(((
187 187  The drawing below shows the probe dimensions of the 2-8 segment probes, Temperature sen sor locations provided in table below:
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188 188  
189 189  (% aria-label="image-20220621093414-1.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:image-20220621093414-1.png||data-widget="image" height="932" width="816"]](% title="Click and drag to resize" %)​
190 190  
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287 287  
288 288  
289 289  
356 +
357 +
358 +
290 290  == 4.2  Set Interrupt Mode ==
291 291  
292 292  Feature, Set Interrupt mode for GPIO_EXIT.
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306 306  
307 307  
308 308  
378 +
379 +
380 +
309 309  == 4.3  Set the sensor delay time ==
310 310  
311 311  Feature: Change the sensor delay time.
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329 329  
330 330  
331 331  
404 +
405 +
406 +
332 332  == 4.4  Query sensor model function ==
333 333  
334 334  Feature: Using this function will re-update the model.
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407 407  0x08: LSLP01
408 408  
409 409  
485 +
410 410  = 5.  Use AT Command =
411 411  
412 412  == 5.1  Access AT Commands ==
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454 454  Instruction to use as below:
455 455  
456 456  
457 -**Step 1**: Downlink the up-to-date DRAGINO_Battery_Life_Prediction_Table.xlsx from: [[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/]]
533 +(% style="color:blue" %)**Step 1**(%%):  Downlink the up-to-date DRAGINO_Battery_Life_Prediction_Table.xlsx from: [[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/]]
458 458  
459 459  
460 -**Step 2**: Open it and choose
536 +(% style="color:blue" %)**Step 2**(%%):  Open it and choose
461 461  
462 462  * (((
463 463  Product Model
... ... @@ -476,13 +476,13 @@
476 476  The battery-related documents as below:
477 477  
478 478  * (((
479 -[[Battery Dimension>>url:http://www.dragino.com/downloads/index.php?dir=datasheet/Battery/&file=LSN50-Battery-Dimension.pdf]],
555 +[[Battery Dimension>>https://www.dragino.com/downloads/index.php?dir=datasheet/Battery/]],
480 480  )))
481 481  * (((
482 482  [[Lithium-Thionyl Chloride Battery  datasheet>>url:https://www.dragino.com/downloads/downloads/datasheet/Battery/ER26500/ER26500_Datasheet-EN.pdf]],
483 483  )))
484 484  * (((
485 -[[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]]
561 +[[Lithium-ion Battery-Capacitor datasheet>>https://www.dragino.com/downloads/index.php?dir=datasheet/Battery/]], [[Tech Spec>>https://www.dragino.com/downloads/index.php?dir=datasheet/Battery/]]
486 486  )))
487 487  
488 488  (% aria-label="image-20220607172042-11.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:http://8.211.40.43/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LLMS01-LoRaWAN%20Leaf%20Moisture%20Sensor%20User%20Manual/WebHome/image-20220607172042-11.png?rev=1.1||alt="image-20220607172042-11.png" data-widget="image"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
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537 537  * (% style="color:red" %)**EU868**(%%): LoRaWAN EU868 band
538 538  * (% style="color:red" %)**KR920**(%%): LoRaWAN KR920 band
539 539  * (% style="color:red" %)**US915**(%%): LoRaWAN US915 band
540 -* (% style="color:red" %)**IN865**(%%): LoRaWAN IN865 band
616 +* (% style="color:red" %)**IN865**(%%):  LoRaWAN IN865 band
541 541  * (% style="color:red" %)**CN470**(%%): LoRaWAN CN470 band
542 542  
543 543  ​
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