Changes for page NDDS75 -- NB-IoT Distance Detect Sensor User Manual
Last modified by Bei Jinggeng on 2024/05/31 09:53
Summary
-
Page properties (1 modified, 0 added, 0 removed)
-
Attachments (0 modified, 1 added, 0 removed)
Details
- Page properties
-
- Content
-
... ... @@ -3,7 +3,7 @@ 3 3 4 4 5 5 6 -**Contents:** 6 +**Table of Contents:** 7 7 8 8 {{toc/}} 9 9 ... ... @@ -17,6 +17,8 @@ 17 17 == 1.1 What is LoRaWAN Soil Moisture & EC Sensor == 18 18 19 19 ((( 20 + 21 + 20 20 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. 21 21 ))) 22 22 ... ... @@ -59,6 +59,7 @@ 59 59 * 4000mAh or 8500mAh Battery for long term use 60 60 61 61 64 + 62 62 == 1.3 Specification == 63 63 64 64 Measure Volume: Base on the centra pin of the probe, a cylinder with 7cm diameter and 10cm height. ... ... @@ -106,7 +106,7 @@ 106 106 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. 107 107 108 108 109 -**Step 1**: Create a device in TTN with the OTAA keys from LSE01. 112 +(% style="color:blue" %)**Step 1**(%%): Create a device in TTN with the OTAA keys from LSE01. 110 110 111 111 Each LSE01 is shipped with a sticker with the default device EUI as below: 112 112 ... ... @@ -127,7 +127,7 @@ 127 127 128 128 129 129 130 -**Step 2**: Power on LSE01 133 +(% style="color:blue" %)**Step 2**(%%): Power on LSE01 131 131 132 132 133 133 Put a Jumper on JP2 to power on the device. ( The Jumper must be in FLASH position). ... ... @@ -135,7 +135,7 @@ 135 135 [[image:image-20220606163915-7.png]] 136 136 137 137 138 -**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. 141 +(% style="color:blue" %)**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. 139 139 140 140 [[image:1654504778294-788.png]] 141 141 ... ... @@ -143,12 +143,14 @@ 143 143 144 144 == 2.3 Uplink Payload == 145 145 149 + 146 146 === 2.3.1 MOD~=0(Default Mode) === 147 147 148 148 LSE01 will uplink payload via LoRaWAN with below payload format: 149 149 150 - 154 +((( 151 151 Uplink payload includes in total 11 bytes. 156 +))) 152 152 153 153 (% border="1" cellspacing="10" style="background-color:#ffffcc; width:500px" %) 154 154 |((( ... ... @@ -193,36 +193,60 @@ 193 193 194 194 195 195 201 + 196 196 === 2.3.3 Battery Info === 197 197 204 +((( 198 198 Check the battery voltage for LSE01. 206 +))) 199 199 208 +((( 200 200 Ex1: 0x0B45 = 2885mV 210 +))) 201 201 212 +((( 202 202 Ex2: 0x0B49 = 2889mV 214 +))) 203 203 204 204 205 205 206 206 === 2.3.4 Soil Moisture === 207 207 220 +((( 208 208 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. 222 +))) 209 209 224 +((( 210 210 For example, if the data you get from the register is __0x05 0xDC__, the moisture content in the soil is 226 +))) 211 211 228 +((( 229 + 230 +))) 212 212 232 +((( 213 213 (% style="color:#4f81bd" %)**05DC(H) = 1500(D) /100 = 15%.** 234 +))) 214 214 215 215 216 216 217 217 === 2.3.5 Soil Temperature === 218 218 240 +((( 219 219 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 242 +))) 220 220 244 +((( 221 221 **Example**: 246 +))) 222 222 248 +((( 223 223 If payload is 0105H: ((0x0105 & 0x8000)>>15 === 0),temp = 0105(H)/100 = 2.61 °C 250 +))) 224 224 252 +((( 225 225 If payload is FF7EH: ((FF7E & 0x8000)>>15 ===1),temp = (FF7E(H)-FFFF(H))/100 = -1.29 °C 254 +))) 226 226 227 227 228 228 ... ... @@ -272,12 +272,15 @@ 272 272 273 273 [[image:1654505570700-128.png]] 274 274 304 +((( 275 275 The payload decoder function for TTN is here: 306 +))) 276 276 277 -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/]] 308 +((( 309 +LSE01 TTN Payload Decoder: [[https:~~/~~/www.dropbox.com/sh/si8icbrjlamxqdb/AAACYwjsxxr5fj_vpqRtrETAa?dl=0>>https://www.dropbox.com/sh/si8icbrjlamxqdb/AAACYwjsxxr5fj_vpqRtrETAa?dl=0]] 310 +))) 278 278 279 279 280 - 281 281 == 2.4 Uplink Interval == 282 282 283 283 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: [[Change Uplink Interval>>doc:Main.End Device AT Commands and Downlink Command.WebHome||anchor="H4.1ChangeUplinkInterval"]] ... ... @@ -291,21 +291,41 @@ 291 291 [[image:image-20220606165544-8.png]] 292 292 293 293 326 +((( 294 294 **Examples:** 328 +))) 295 295 330 +((( 331 + 332 +))) 296 296 297 -* **Set TDC** 334 +* ((( 335 +**Set TDC** 336 +))) 298 298 338 +((( 299 299 If the payload=0100003C, it means set the END Node’s TDC to 0x00003C=60(S), while type code is 01. 340 +))) 300 300 342 +((( 301 301 Payload: 01 00 00 1E TDC=30S 344 +))) 302 302 346 +((( 303 303 Payload: 01 00 00 3C TDC=60S 348 +))) 304 304 350 +((( 351 + 352 +))) 305 305 306 -* **Reset** 354 +* ((( 355 +**Reset** 356 +))) 307 307 358 +((( 308 308 If payload = 0x04FF, it will reset the LSE01 360 +))) 309 309 310 310 311 311 * **CFM** ... ... @@ -316,12 +316,21 @@ 316 316 317 317 == 2.6 Show Data in DataCake IoT Server == 318 318 371 +((( 319 319 [[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: 373 +))) 320 320 375 +((( 376 + 377 +))) 321 321 379 +((( 322 322 **Step 1**: Be sure that your device is programmed and properly connected to the network at this time. 381 +))) 323 323 383 +((( 324 324 **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: 385 +))) 325 325 326 326 327 327 [[image:1654505857935-743.png]] ... ... @@ -713,7 +713,7 @@ 713 713 [[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]] 714 714 ))) 715 715 716 - [[image:image-2022060 6171726-9.png]]777 + [[image:image-20220610172436-1.png]] 717 717 718 718 719 719 ... ... @@ -1042,7 +1042,6 @@ 1042 1042 * ((( 1043 1043 Weight / pcs : g 1044 1044 1045 - 1046 1046 1047 1047 ))) 1048 1048 ... ... @@ -1050,8 +1050,3 @@ 1050 1050 1051 1051 * 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. 1052 1052 * 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]] 1053 - 1054 - 1055 -~)~)~) 1056 -~)~)~) 1057 -~)~)~)
- image-20220610172436-1.png
-
- Author
-
... ... @@ -1,0 +1,1 @@ 1 +XWiki.Xiaoling - Size
-
... ... @@ -1,0 +1,1 @@ 1 +370.3 KB - Content