Changes for page SN50v3-LB/LS -- LoRaWAN Sensor Node User Manual
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... ... @@ -1,1 +1,1 @@ 1 -SN50v3-LB LoRaWAN Sensor NodeUser Manual1 +SN50v3-LB User Manual - Author
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... ... @@ -1,1 +1,1 @@ 1 -XWiki. Xiaoling1 +XWiki.Edwin - Content
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... ... @@ -1,5 +1,4 @@ 1 -(% style="text-align:center" %) 2 -[[image:image-20230515135611-1.jpeg||height="589" width="589"]] 1 +[[image:image-20230511201248-1.png||height="403" width="489"]] 3 3 4 4 5 5 ... ... @@ -16,21 +16,23 @@ 16 16 17 17 == 1.1 What is SN50v3-LB LoRaWAN Generic Node == 18 18 19 - 20 20 (% style="color:blue" %)**SN50V3-LB **(%%)LoRaWAN Sensor Node is a Long Range LoRa Sensor Node. It is designed for outdoor use and powered by (% style="color:blue" %)** 8500mA Li/SOCl2 battery**(%%) for long term use.SN50V3-LB is designed to facilitate developers to quickly deploy industrial level LoRa and IoT solutions. It help users to turn the idea into a practical application and make the Internet of Things a reality. It is easy to program, create and connect your things everywhere. 21 21 20 + 22 22 (% style="color:blue" %)**SN50V3-LB wireless part**(%%) is based on SX1262 allows the user 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 minimising current consumption.It targets professional wireless sensor network applications such as irrigation systems, smart metering, smart cities, smartphone detection, building automation, and so on. 23 23 23 + 24 24 (% style="color:blue" %)**SN50V3-LB **(%%)has a powerful 48Mhz ARM microcontroller with 256KB flash and 64KB RAM. It has multiplex I/O pins to connect to different sensors. 25 25 26 + 26 26 (% style="color:blue" %)**SN50V3-LB**(%%) has a built-in BLE module, user can configure the sensor remotely via Mobile Phone. It also support OTA upgrade via private LoRa protocol for easy maintaining. 27 27 29 + 28 28 SN50V3-LB is the 3^^rd^^ generation of LSN50 series generic sensor node from Dragino. It is an (% style="color:blue" %)**open source project**(%%) and has a mature LoRaWAN stack and application software. User can use the pre-load software for their IoT projects or easily customize the software for different requirements. 29 29 30 30 31 31 == 1.2 Features == 32 32 33 - 34 34 * LoRaWAN 1.0.3 Class A 35 35 * Ultra-low power consumption 36 36 * Open-Source hardware/software ... ... @@ -43,7 +43,6 @@ 43 43 44 44 == 1.3 Specification == 45 45 46 - 47 47 (% style="color:#037691" %)**Common DC Characteristics:** 48 48 49 49 * Supply Voltage: built in 8500mAh Li-SOCI2 battery , 2.5v ~~ 3.6v ... ... @@ -80,7 +80,6 @@ 80 80 81 81 == 1.4 Sleep mode and working mode == 82 82 83 - 84 84 (% style="color:blue" %)**Deep Sleep Mode: **(%%)Sensor doesn't have any LoRaWAN activate. This mode is used for storage and shipping to save battery life. 85 85 86 86 (% style="color:blue" %)**Working Mode:** (%%)In this mode, Sensor will work as LoRaWAN Sensor to Join LoRaWAN network and send out sensor data to server. Between each sampling/tx/rx periodically, sensor will be in IDLE mode), in IDLE mode, sensor has the same power consumption as Deep Sleep mode. ... ... @@ -123,7 +123,7 @@ 123 123 == 1.7 Pin Definitions == 124 124 125 125 126 -[[image:image-2023051 3102034-2.png]]125 +[[image:image-20230511203450-2.png||height="443" width="785"]] 127 127 128 128 129 129 == 1.8 Mechanical == ... ... @@ -138,7 +138,6 @@ 138 138 139 139 == Hole Option == 140 140 141 - 142 142 SN50v3-LB has different hole size options for different size sensor cable. The options provided are M12, M16 and M20. The definition is as below: 143 143 144 144 [[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/image-20220627104757-1.png?rev=1.1||alt="image-20220627104757-1.png"]] ... ... @@ -151,7 +151,7 @@ 151 151 == 2.1 How it works == 152 152 153 153 154 -The SN50v3-LB is configured as (% style="color:#037691" %)**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 press the button to activate the S N50v3-LB. It will automatically join the network via OTAA and start to send the sensor value. The default uplink interval is 20 minutes.152 +The SN50v3-LB is configured as (% style="color:#037691" %)**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 press the button to activate the S31x-LB. It will automatically join the network via OTAA and start to send the sensor value. The default uplink interval is 20 minutes. 155 155 156 156 157 157 == 2.2 Quick guide to connect to LoRaWAN server (OTAA) == ... ... @@ -159,7 +159,7 @@ 159 159 160 160 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 [[LPS8v2>>url:https://www.dragino.com/products/lora-lorawan-gateway/item/228-lps8v2.html]] as a LoRaWAN gateway in this example. 161 161 162 -The LPS8 v2 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.160 +The LPS8V2 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. 163 163 164 164 165 165 (% style="color:blue" %)**Step 1:**(%%) Create a device in TTN with the OTAA keys from SN50v3-LB. ... ... @@ -208,7 +208,7 @@ 208 208 === 2.3.1 Device Status, FPORT~=5 === 209 209 210 210 211 -Users can use the downlink command(**0x26 01**) to ask SN50v3 -LBto send device configure detail, include device configure status. SN50v3-LBwill uplink a payload via FPort=5 to server.209 +Users can use the downlink command(**0x26 01**) to ask SN50v3 to send device configure detail, include device configure status. SN50v3 will uplink a payload via FPort=5 to server. 212 212 213 213 The Payload format is as below. 214 214 ... ... @@ -221,7 +221,7 @@ 221 221 Example parse in TTNv3 222 222 223 223 224 -(% style="color:#037691" %)**Sensor Model**(%%): For SN50v3 -LB, this value is 0x1C222 +(% style="color:#037691" %)**Sensor Model**(%%): For SN50v3, this value is 0x1C 225 225 226 226 (% style="color:#037691" %)**Firmware Version**(%%): 0x0100, Means: v1.0.0 version 227 227 ... ... @@ -277,16 +277,16 @@ 277 277 === 2.3.2 Working Modes & Sensor Data. Uplink via FPORT~=2 === 278 278 279 279 280 -SN50v3 -LBhas different working mode for the connections of different type of sensors. This section describes these modes. Use can use the AT Command(% style="color:blue" %)**AT+MOD**(%%)to set SN50v3-LBto different working modes.278 +SN50v3 has different working mode for the connections of different type of sensors. This section describes these modes. Use can use the AT Command AT+MOD to set SN50v3 to different working modes. 281 281 282 282 For example: 283 283 284 - (% style="color:blue" %)**AT+MOD=2 **(%%)282 + **AT+MOD=2 ** ~/~/ will set the SN50v3 to work in MOD=2 distance mode which target to measure distance via Ultrasonic Sensor. 285 285 286 286 287 -(% style="color:red" %) **Important Notice:** 285 +(% style="color:red" %) **Important Notice:** (%%) 288 288 289 - ~1. Some working modes has payload more than 12 bytes, The US915/AU915/AS923 frequency bands' definition has maximum 11 bytes in(% style="color:blue" %)**DR0**(%%). Server sides will see NULL payload while SN50v3-LBtransmit in DR0 with 12 bytes payload.287 +1. Some working modes has payload more than 12 bytes, The US915/AU915/AS923 frequency bands' definition has maximum 11 bytes in **DR0**. Server sides will see NULL payload while SN50v3 transmit in DR0 with 12 bytes payload. 290 290 291 291 2. All modes share the same Payload Explanation from HERE. 292 292 ... ... @@ -293,300 +293,223 @@ 293 293 3. By default, the device will send an uplink message every 20 minutes. 294 294 295 295 296 -=== =2.3.2.1 MOD~=1 (Default Mode) ====294 +=== 2.3.1 MOD~=1 (Default Mode) === 297 297 298 - 299 299 In this mode, uplink payload includes in total 11 bytes. Uplink packets use FPORT=2. 300 300 301 -(% border="1" cellspacing="4" style="background-color:#f2f2f2; width:520px" %) 302 -|(% style="background-color:#d9e2f3; color:#0070c0; width:50px" %)**Size(bytes)**|(% style="background-color:#d9e2f3; color:#0070c0; width:20px" %)**2**|(% style="background-color:#d9e2f3; color:#0070c0; width:100px" %)**2**|(% style="background-color:#d9e2f3; color:#0070c0; width:50px" %)**2**|(% style="background-color:#d9e2f3; color:#0070c0; width:90px" %)**1**|(% style="background-color:#d9e2f3; color:#0070c0; width:130px" %)**2**|(% style="background-color:#d9e2f3; color:#0070c0; width:80px" %)**2** 303 -|**Value**|Bat|(% style="width:191px" %)((( 304 -Temperature(DS18B20)(PC13) 305 -)))|(% style="width:78px" %)((( 306 -ADC(PA4) 307 -)))|(% style="width:216px" %)((( 308 -Digital in(PB15)&Digital Interrupt(PA8) 309 -)))|(% style="width:308px" %)((( 310 -Temperature(SHT20 or SHT31 or BH1750 Illumination Sensor) 311 -)))|(% style="width:154px" %)((( 312 -Humidity(SHT20 or SHT31) 313 -))) 298 +|**Size(bytes)**|**2**|**2**|**2**|**1**|**2**|**2** 299 +|**Value**|Bat|Temperature(DS18B20)|ADC|Digital in & Digital Interrupt|Temperature(SHT20 or SHT31 or BH1750 Illumination Sensor|Humidity(SHT20) 314 314 315 315 [[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/image-20220627150949-6.png?rev=1.1||alt="image-20220627150949-6.png"]] 316 316 303 +=== 2.3.2 MOD~=2 (Distance Mode) === 317 317 318 - 319 -==== 2.3.2.2 MOD~=2 (Distance Mode) ==== 320 - 321 - 322 322 This mode is target to measure the distance. The payload of this mode is totally 11 bytes. The 8^^th^^ and 9^^th^^ bytes is for the distance. 323 323 324 -(% border="1" cellspacing="4" style="background-color:#f2f2f2; width:520px" %) 325 -|(% style="background-color:#d9e2f3; color:#0070c0; width:50px" %)**Size(bytes)**|(% style="background-color:#d9e2f3; color:#0070c0; width:30px" %)**2**|(% style="background-color:#d9e2f3; color:#0070c0; width:110px" %)**2**|(% style="background-color:#d9e2f3; color:#0070c0; width:40px" %)**2**|(% style="background-color:#d9e2f3; color:#0070c0; width:110px" %)**1**|(% style="background-color:#d9e2f3; color:#0070c0; width:140px" %)**2**|(% style="background-color:#d9e2f3; color:#0070c0; width:40px" %)**2** 326 -|**Value**|BAT|(% style="width:196px" %)((( 327 -Temperature(DS18B20)(PC13) 328 -)))|(% style="width:87px" %)((( 329 -ADC(PA4) 330 -)))|(% style="width:189px" %)((( 331 -Digital in(PB15) & Digital Interrupt(PA8) 332 -)))|(% style="width:208px" %)((( 333 -Distance measure by:1) LIDAR-Lite V3HP 307 +|**Size(bytes)**|**2**|**2**|**2**|**1**|**2**|**2** 308 +|**Value**|BAT|((( 309 +Temperature(DS18B20) 310 +)))|ADC|Digital in & Digital Interrupt|((( 311 +Distance measure by: 312 +1) LIDAR-Lite V3HP 334 334 Or 335 335 2) Ultrasonic Sensor 336 -)))| (% style="width:117px" %)Reserved315 +)))|Reserved 337 337 338 338 [[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/1656324539647-568.png?rev=1.1||alt="1656324539647-568.png"]] 339 339 319 +**Connection of LIDAR-Lite V3HP:** 340 340 341 - (% style="color:blue"%)**ConnectionfLIDAR-LiteV3HP:**321 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/1656324581381-162.png?rev=1.1||alt="1656324581381-162.png"]] 342 342 343 - [[image:image-20230512173758-5.png||height="563"width="712"]]323 +**Connection to Ultrasonic Sensor:** 344 344 325 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/1656324598488-204.png?rev=1.1||alt="1656324598488-204.png"]] 345 345 346 -(% style="color:blue" %)**Connection to Ultrasonic Sensor:** 347 - 348 -(% style="color:red" %)**Need to remove R1 and R2 resistors to get low power,otherwise there will be 240uA standby current.** 349 - 350 -[[image:image-20230512173903-6.png||height="596" width="715"]] 351 - 352 - 353 353 For the connection to TF-Mini or TF-Luna , MOD2 payload is as below: 354 354 355 -(% border="1" cellspacing="4" style="background-color:#f2f2f2; width:520px" %) 356 -|(% style="background-color:#d9e2f3; color:#0070c0; width:50px" %)**Size(bytes)**|(% style="background-color:#d9e2f3; color:#0070c0; width:20px" %)**2**|(% style="background-color:#d9e2f3; color:#0070c0; width:100px" %)**2**|(% style="background-color:#d9e2f3; color:#0070c0; width:100px" %)**1**|(% style="background-color:#d9e2f3; color:#0070c0; width:50px" %)**2**|(% style="background-color:#d9e2f3; color:#0070c0; width:120px" %)**2**|(% style="background-color:#d9e2f3; color:#0070c0; width:80px" %)**2** 357 -|**Value**|BAT|(% style="width:183px" %)((( 358 -Temperature(DS18B20)(PC13) 359 -)))|(% style="width:173px" %)((( 360 -Digital in(PB15) & Digital Interrupt(PA8) 361 -)))|(% style="width:84px" %)((( 362 -ADC(PA4) 363 -)))|(% style="width:323px" %)((( 329 +|**Size(bytes)**|**2**|**2**|**1**|**2**|**2**|**2** 330 +|**Value**|BAT|((( 331 +Temperature(DS18B20) 332 +)))|Digital in & Digital Interrupt|ADC|((( 364 364 Distance measure by:1)TF-Mini plus LiDAR 365 365 Or 366 366 2) TF-Luna LiDAR 367 -)))| (% style="width:188px" %)Distance signal strength336 +)))|Distance signal strength 368 368 369 369 [[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/1656376779088-686.png?rev=1.1||alt="1656376779088-686.png"]] 370 370 371 - 372 372 **Connection to [[TF-Mini plus>>url:http://en.benewake.com/product/detail/5c345cd0e5b3a844c472329b.html]] LiDAR(UART version):** 373 373 374 - (% style="color:red" %)**Need to remove R3 and R4 resistors to get low power,otherwisetherewill be 400uA standby current.**342 +Need to remove R3 and R4 resistors to get low power. Since firmware v1.7.0 375 375 376 -[[image:i mage-20230512180609-7.png||height="555"width="802"]]344 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/1656376795715-436.png?rev=1.1||alt="1656376795715-436.png"]] 377 377 378 - 379 379 **Connection to [[TF-Luna>>url:http://en.benewake.com/product/detail/5e1c1fd04d839408076b6255.html]] LiDAR (UART version):** 380 380 381 - (% style="color:red" %)**Need to remove R3 and R4 resistors to get low power,otherwisetherewill be 400uA standby current.**348 +Need to remove R3 and R4 resistors to get low power. Since firmware v1.7.0 382 382 383 -[[image:i mage-20230513105207-4.png||height="469" width="802"]]350 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/1656376865561-355.png?rev=1.1||alt="1656376865561-355.png"]] 384 384 352 +Please use firmware version > 1.6.5 when use MOD=2, in this firmware version, user can use LSn50 v1 to power the ultrasonic sensor directly and with low power consumption. 385 385 386 -=== =2.3.2.3=354 +=== 2.3.3 MOD~=3 (3 ADC + I2C) === 387 387 388 - 389 389 This mode has total 12 bytes. Include 3 x ADC + 1x I2C 390 390 391 -(% border="1" cellspacing="4" style="background-color:#f2f2f2; width:520px" %) 392 -|=(% style="width: 50px;background-color:#D9E2F3;color:#0070C0" %)((( 358 +|=((( 393 393 **Size(bytes)** 394 -)))|=(% style="width: 50px;background-color:#D9E2F3;color:#0070C0" %)**2**|=(% style="width: 50px;background-color:#D9E2F3;color:#0070C0" %)**2**|=(% style="width: 50px;background-color:#D9E2F3;color:#0070C0" %)**2**|=(% style="width: 90px;background-color:#D9E2F3;color:#0070C0" %)**1**|=(% style="width: 110px;background-color:#D9E2F3;color:#0070C0" %)2|=(% style="width: 100px;background-color:#D9E2F3;color:#0070C0" %)2|=(% style="width: 20px;background-color:#D9E2F3;color:#0070C0" %)1 395 -|**Value**|(% style="width:68px" %)((( 396 -ADC1(PA4) 397 -)))|(% style="width:75px" %)((( 398 -ADC2(PA5) 399 -)))|((( 400 -ADC3(PA8) 401 -)))|((( 402 -Digital Interrupt(PB15) 403 -)))|(% style="width:304px" %)((( 404 -Temperature(SHT20 or SHT31 or BH1750 Illumination Sensor) 405 -)))|(% style="width:163px" %)((( 406 -Humidity(SHT20 or SHT31) 407 -)))|(% style="width:53px" %)Bat 360 +)))|=**2**|=**2**|=**2**|=**1**|=2|=2|=1 361 +|**Value**|ADC(Pin PA0)|ADC2(PA1)|ADC3 (PA4)|((( 362 +Digital in(PA12)&Digital Interrupt1(PB14) 363 +)))|Temperature(SHT20 or SHT31 or BH1750 Illumination Sensor)|Humidity(SHT20 or SHT31)|Bat 408 408 409 -[[image:i mage-20230513110214-6.png]]365 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/1656377431497-975.png?rev=1.1||alt="1656377431497-975.png"]] 410 410 367 +=== 2.3.4 MOD~=4 (3 x DS18B20) === 411 411 412 - ====2.3.2.4MOD~=4(3 x DS18B20) ====369 +This mode is supported in firmware version since v1.6.1. Software set to AT+MOD=4 413 413 371 +Hardware connection is as below, 414 414 415 - Thismode hastotal 11 bytes. As shown below:373 +**( Note:** 416 416 417 -(% border="1" cellspacing="4" style="background-color:#f2f2f2; width:520px" %) 418 -|(% style="background-color:#d9e2f3; color:#0070c0; width:50px" %)**Size(bytes)**|(% style="background-color:#d9e2f3; color:#0070c0; width:20px" %)**2**|(% style="background-color:#d9e2f3; color:#0070c0; width:100px" %)**2**|(% style="background-color:#d9e2f3; color:#0070c0; width:50px" %)**2**|(% style="background-color:#d9e2f3; color:#0070c0; width:100px" %)**1**|(% style="background-color:#d9e2f3; color:#0070c0; width:100px" %)**2**|(% style="background-color:#d9e2f3; color:#0070c0; width:100px" %)**2** 419 -|**Value**|BAT|(% style="width:186px" %)((( 420 -Temperature1(DS18B20)(PC13) 421 -)))|(% style="width:82px" %)((( 422 -ADC(PA4) 423 -)))|(% style="width:210px" %)((( 424 -Digital in(PB15) & Digital Interrupt(PA8) 425 -)))|(% style="width:191px" %)Temperature2(DS18B20) 426 -(PB9)|(% style="width:183px" %)Temperature3(DS18B20)(PB8) 375 +* In hardware version v1.x and v2.0 , R3 & R4 should change from 10k to 4.7k ohm to support the other 2 x DS18B20 probes. 376 +* In hardware version v2.1 no need to change R3 , R4, by default, they are 4.7k ohm already. 427 427 428 -[[ image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/1656377606181-607.png?rev=1.1||alt="1656377606181-607.png"]]378 +See [[here>>url:http://wiki.dragino.com/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/#H1.6A0HardwareChangelog]] for hardware changelog. **) ** 429 429 430 -[[image:i mage-20230513134006-1.png||height="559" width="736"]]380 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/1656377461619-156.png?rev=1.1||alt="1656377461619-156.png"]] 431 431 382 +This mode has total 11 bytes. As shown below: 432 432 384 +|**Size(bytes)**|**2**|**2**|**2**|**1**|**2**|**2** 385 +|**Value**|BAT|((( 386 +Temperature1 387 +(DS18B20) 388 +(PB3) 389 +)))|ADC|Digital in & Digital Interrupt|Temperature2 390 +(DS18B20) 391 +(PA9)|Temperature3 392 +(DS18B20) 393 +(PA10) 433 433 434 - ==== 2.3.2.5 MOD~=5(WeighteasurementbyHX711)====395 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/1656377606181-607.png?rev=1.1||alt="1656377606181-607.png"]] 435 435 397 +=== 2.3.5 MOD~=5(Weight Measurement by HX711) === 436 436 437 - [[image:image-20230512164658-2.png||height="532"width="729"]]399 +This mode is supported in firmware version since v1.6.2. Please use v1.6.5 firmware version so user no need to use extra LDO for connection. 438 438 439 -Each HX711 need to be calibrated before used. User need to do below two steps: 440 440 441 -1. Zero calibration. Don't put anything on load cell and run (% style="color:blue" %)**AT+WEIGRE**(%%) to calibrate to Zero gram. 442 -1. Adjust calibration factor (default value 400): Put a known weight thing on load cell and run (% style="color:blue" %)**AT+WEIGAP**(%%) to adjust the Calibration Factor. 443 -1. ((( 444 -Weight has 4 bytes, the unit is g. 402 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/1656378224664-860.png?rev=1.1||alt="1656378224664-860.png"]] 445 445 404 +Each HX711 need to be calibrated before used. User need to do below two steps: 446 446 447 - 406 +1. Zero calibration. Don't put anything on load cell and run **AT+WEIGRE** to calibrate to Zero gram. 407 +1. Adjust calibration factor (default value 400): Put a known weight thing on load cell and run **AT+WEIGAP** to adjust the Calibration Factor. 408 +1. ((( 409 +Remove the limit of plus or minus 5Kg in mode 5, and expand from 2 bytes to 4 bytes, the unit is g.(Since v1.8.0) 448 448 ))) 449 449 450 450 For example: 451 451 452 - (% style="color:blue" %)**AT+GETSENSORVALUE=0**414 +**AT+WEIGAP =403.0** 453 453 454 454 Response: Weight is 401 g 455 455 456 456 Check the response of this command and adjust the value to match the real value for thing. 457 457 458 -(% border="1" cellspacing="4" style="background-color:#f2f2f2; width:520px" %) 459 -|=(% style="width: 50px;background-color:#D9E2F3;color:#0070C0" %)((( 420 +|=((( 460 460 **Size(bytes)** 461 -)))|=(% style="width: 20px;background-color:#D9E2F3;color:#0070C0" %)**2**|=(% style="width: 150px;background-color:#D9E2F3;color:#0070C0" %)**2**|=(% style="width: 50px;background-color:#D9E2F3;color:#0070C0" %)**2**|=(% style="width: 200px;background-color:#D9E2F3;color:#0070C0" %)**1**|=(% style="width: 50px;background-color:#D9E2F3;color:#0070C0" %)**4** 462 -|**Value**|BAT|(% style="width:193px" %)((( 463 -Temperature(DS18B20)(PC13) 464 -)))|(% style="width:85px" %)((( 465 -ADC(PA4) 466 -)))|(% style="width:186px" %)((( 467 -Digital in(PB15) & Digital Interrupt(PA8) 468 -)))|(% style="width:100px" %)Weight 422 +)))|=**2**|=**2**|=**2**|=**1**|=**4**|=2 423 +|**Value**|[[Bat>>url:http://wiki.dragino.com/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/#H2.4.1BatteryInfo]]|[[Temperature(DS18B20)>>url:http://wiki.dragino.com/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/#H2.4.2Temperature28DS18B2029]]|[[ADC>>url:http://wiki.dragino.com/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/#H2.4.4AnalogueDigitalConverter28ADC29]]|[[Digital Input and Digitak Interrupt>>url:http://wiki.dragino.com/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/#H2.4.3DigitalInput]]|Weight|Reserved 469 469 470 470 [[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/image-20220820120036-2.png?width=1003&height=469&rev=1.1||alt="image-20220820120036-2.png" height="469" width="1003"]] 471 471 427 +=== 2.3.6 MOD~=6 (Counting Mode, Since firmware v1.6.5) === 472 472 473 - 474 -==== 2.3.2.6 MOD~=6 (Counting Mode) ==== 475 - 476 - 477 477 In this mode, the device will work in counting mode. It counts the interrupt on the interrupt pins and sends the count on TDC time. 478 478 479 479 Connection is as below. The PIR sensor is a count sensor, it will generate interrupt when people come close or go away. User can replace the PIR sensor with other counting sensors. 480 480 481 -[[image:i mage-20230512181814-9.png||height="543" width="697"]]433 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/1656378351863-572.png?rev=1.1||alt="1656378351863-572.png"]] 482 482 435 +**Note:** LoRaWAN wireless transmission will infect the PIR sensor. Which cause the counting value increase +1 for every uplink. User can change PIR sensor or put sensor away of the LSN50 to avoid this happen. 483 483 484 -(% style="color:red" %)**Note:** **LoRaWAN wireless transmission will infect the PIR sensor. Which cause the counting value increase +1 for every uplink. User can change PIR sensor or put sensor away of the SN50_v3 to avoid this happen.** 437 +|=**Size(bytes)**|=**2**|=**2**|=**2**|=**1**|=**4** 438 +|**Value**|[[BAT>>url:http://wiki.dragino.com/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/#H2.4.1BatteryInfo]]|((( 439 +[[Temperature(DS18B20)>>url:http://wiki.dragino.com/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/#H2.4.2Temperature28DS18B2029]] 440 +)))|[[ADC>>url:http://wiki.dragino.com/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/#H2.4.4AnalogueDigitalConverter28ADC29]]|[[Digital in>>url:http://wiki.dragino.com/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/#H2.4.3DigitalInput]]|Count 485 485 486 -(% border="1" cellspacing="4" style="background-color:#f2f2f2; width:520px" %) 487 -|=(% style="width: 60px;background-color:#D9E2F3;color:#0070C0" %)**Size(bytes)**|=(% style="width: 40px;background-color:#D9E2F3;color:#0070C0" %)**2**|=(% style="width: 180px;background-color:#D9E2F3;color:#0070C0" %)**2**|=(% style="width: 60px;background-color:#D9E2F3;color:#0070C0" %)**2**|=(% style="width: 100px;background-color:#D9E2F3;color:#0070C0" %)**1**|=(% style="width: 80px;background-color:#D9E2F3;color:#0070C0" %)**4** 488 -|**Value**|BAT|(% style="width:256px" %)((( 489 -Temperature(DS18B20)(PC13) 490 -)))|(% style="width:108px" %)((( 491 -ADC(PA4) 492 -)))|(% style="width:126px" %)((( 493 -Digital in(PB15) 494 -)))|(% style="width:145px" %)((( 495 -Count(PA8) 496 -))) 497 - 498 498 [[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/1656378441509-171.png?rev=1.1||alt="1656378441509-171.png"]] 499 499 444 +=== 2.3.7 MOD~=7 Three interrupt contact modes (the hardware version needs to support three interrupt versions, Since firmware v1.8.0) === 500 500 446 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/image-20220820140109-3.png?rev=1.1||alt="image-20220820140109-3.png"]] 501 501 502 -==== 2.3.2.7 MOD~=7 (Three interrupt contact modes) ==== 503 - 504 - 505 -(% border="1" cellspacing="4" style="background-color:#f2f2f2; width:520px" %) 506 -|=(% style="width: 50px;background-color:#D9E2F3;color:#0070C0" %)((( 448 +|=((( 507 507 **Size(bytes)** 508 -)))|=(% style="width: 20px;background-color:#D9E2F3;color:#0070C0" %)**2**|=(% style="width: 90px;background-color:#D9E2F3;color:#0070C0" %)**2**|=(% style="width: 50px;background-color:#D9E2F3;color:#0070C0" %)**2**|=(% style="width: 90px;background-color:#D9E2F3;color:#0070C0" %)**1**|=(% style="width: 90px;background-color:#D9E2F3;color:#0070C0" %)**1**|=(% style="width: 90px;background-color:#D9E2F3;color:#0070C0" %)1|=(% style="width: 40px;background-color:#D9E2F3;color:#0070C0" %)2 509 -|**Value**|BAT|(% style="width:188px" %)((( 510 -Temperature(DS18B20) 511 -(PC13) 512 -)))|(% style="width:83px" %)((( 513 -ADC(PA5) 514 -)))|(% style="width:184px" %)((( 515 -Digital Interrupt1(PA8) 516 -)))|(% style="width:186px" %)Digital Interrupt2(PA4)|(% style="width:197px" %)Digital Interrupt3(PB15)|(% style="width:100px" %)Reserved 450 +)))|=**2**|=**2**|=**2**|=**1**|=**1**|=1|=2 451 +|**Value**|BAT|Temperature(DS18B20)|ADC|((( 452 +Digital in(PA12)&Digital Interrupt1(PB14) 453 +)))|Digital Interrupt2(PB15)|Digital Interrupt3(PA4)|Reserved 517 517 518 - [[image:image-20230513111203-7.png||height="324"width="975"]]455 +=== 2.3.8 MOD~=8 (3ADC+1DS18B20, Since firmware v1.8.0) === 519 519 520 - 521 -==== 2.3.2.8 MOD~=8 (3ADC+1DS18B20) ==== 522 - 523 - 524 -(% border="1" cellspacing="4" style="background-color:#f2f2f2; width:520px" %) 525 -|=(% style="width: 50px;background-color:#D9E2F3;color:#0070C0" %)((( 457 +|=((( 526 526 **Size(bytes)** 527 -)))|=(% style="width: 30px;background-color:#D9E2F3;color:#0070C0" %)**2**|=(% style="width: 110px;background-color:#D9E2F3;color:#0070C0" %)**2**|=(% style="width: 70px;background-color:#D9E2F3;color:#0070C0" %)**2**|=(% style="width: 120px;background-color:#D9E2F3;color:#0070C0" %)**1**|=(% style="width: 70px;background-color:#D9E2F3;color:#0070C0" %)**2**|=(% style="width: 70px;background-color:#D9E2F3;color:#0070C0" %)2 528 -|**Value**|BAT|(% style="width:207px" %)((( 529 -Temperature(DS18B20) 530 -(PC13) 531 -)))|(% style="width:94px" %)((( 532 -ADC1(PA4) 533 -)))|(% style="width:198px" %)((( 534 -Digital Interrupt(PB15) 535 -)))|(% style="width:84px" %)((( 536 -ADC2(PA5) 537 -)))|(% style="width:82px" %)((( 538 -ADC3(PA8) 459 +)))|=**2**|=**2**|=**2**|=**1**|=**2**|=2 460 +|**Value**|BAT|Temperature(DS18B20)|((( 461 +ADC1(PA0) 462 +)))|((( 463 +Digital in 464 +& Digital Interrupt(PB14) 465 +)))|((( 466 +ADC2(PA1) 467 +)))|((( 468 +ADC3(PA4) 539 539 ))) 540 540 541 -[[image:image-202 30513111231-8.png||height="335" width="900"]]471 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/image-20220823164903-2.png?rev=1.1||alt="image-20220823164903-2.png"]] 542 542 473 +=== 2.3.9 MOD~=9 3DS18B20+ two Interrupt count mode (the hardware version needs to support 3 interrupt versions, Since firmware v1.8.0) === 543 543 544 -==== 2.3.2.9 MOD~=9 (3DS18B20+ two Interrupt count mode) ==== 545 - 546 - 547 -(% border="1" cellspacing="4" style="background-color:#f2f2f2; width:520px" %) 548 -|=(% style="width: 50px;background-color:#D9E2F3;color:#0070C0" %)((( 475 +|=((( 549 549 **Size(bytes)** 550 -)))|= (% style="width: 20px;background-color:#D9E2F3;color:#0070C0" %)**2**|=(% style="width: 90px;background-color:#D9E2F3;color:#0070C0" %)**2**|=(% style="width: 90px;background-color:#D9E2F3;color:#0070C0" %)**2**|=(% style="width: 60px;background-color:#D9E2F3;color:#0070C0" %)**1**|=(% style="width: 90px;background-color:#D9E2F3;color:#0070C0" %)**2**|=(% style="width: 60px;background-color:#D9E2F3;color:#0070C0" %)4|=(% style="width: 60px;background-color:#D9E2F3;color:#0070C0" %)4477 +)))|=**2**|=**2**|=**2**|=**1**|=**2**|=4|=4 551 551 |**Value**|BAT|((( 552 -Temperature 553 -(DS18B20)(PC13) 479 +Temperature1(PB3) 554 554 )))|((( 555 -Temperature2 556 -(DS18B20)(PB9) 481 +Temperature2(PA9) 557 557 )))|((( 558 -Digital Interrupt 559 -(PB15) 560 -)))|(% style="width:193px" %)((( 561 -Temperature3 562 -(DS18B20)(PB8) 563 -)))|(% style="width:78px" %)((( 564 -Count1(PA8) 565 -)))|(% style="width:78px" %)((( 566 -Count2(PA4) 483 +Digital in 484 +& Digital Interrupt(PA4) 485 +)))|((( 486 +Temperature3(PA10) 487 +)))|((( 488 +Count1(PB14) 489 +)))|((( 490 +Count2(PB15) 567 567 ))) 568 568 569 -[[image:image-202 30513111255-9.png||height="341"width="899"]]493 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/image-20220823165322-3.png?rev=1.1||alt="image-20220823165322-3.png"]] 570 570 571 - (% style="color:blue" %)**The newly added AT command is issued correspondingly:**495 +**The newly added AT command is issued correspondingly:** 572 572 573 - (% style="color:#037691" %)** AT+INTMOD1 PA8**(%%)pin: Corresponding downlink:(% style="color:#037691" %)**06 00 00 xx**497 +**~ AT+INTMOD1** ** PB14** pin: Corresponding downlink: **06 00 00 xx** 574 574 575 - (% style="color:#037691" %)** AT+INTMOD2PA4**(%%)pin: Corresponding downlink:(% style="color:#037691"%)**060001 xx**499 +**~ AT+INTMOD2** **PB15** pin: Corresponding downlink:** 06 00 01 xx** 576 576 577 - (% style="color:#037691" %)** AT+INTMOD3 PB15**(%%)pin: Corresponding downlink:(% style="color:#037691" %)**501 +**~ AT+INTMOD3** **PA4** pin: Corresponding downlink: ** 06 00 02 xx** 578 578 503 +**AT+SETCNT=aa,bb** 579 579 580 - (%style="color:blue"%)**AT+SETCNT=aa,bb**505 +When AA is 1, set the count of PB14 pin to BB Corresponding downlink:09 01 bb bb bb bb 581 581 582 -When AA is 1, set the count of PA8pin to BB Corresponding downlink:09 01bb bb bb bb507 +When AA is 2, set the count of PB15 pin to BB Corresponding downlink:09 02 bb bb bb bb 583 583 584 - WhenAA is2,set thecountofPA4 pinto BB Correspondingdownlink:0902 bb bb bb bb509 +=== 2.3.10 Decode payload in The Things Network === 585 585 586 - 587 -=== 2.3.3 Decode payload === 588 - 589 - 590 590 While using TTN V3 network, you can add the payload format to decode the payload. 591 591 592 592 [[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/1656378466788-734.png?rev=1.1||alt="1656378466788-734.png"]] ... ... @@ -593,33 +593,41 @@ 593 593 594 594 The payload decoder function for TTN V3 are here: 595 595 596 -SN50 v3-LBTTN V3 Payload Decoder: [[https:~~/~~/github.com/dragino/dragino-end-node-decoder>>url:https://github.com/dragino/dragino-end-node-decoder]]517 +LSN50 TTN V3 Payload Decoder: [[https:~~/~~/github.com/dragino/dragino-end-node-decoder>>url:https://github.com/dragino/dragino-end-node-decoder]] 597 597 598 598 599 - ====2.3.3.1 BatteryInfo====520 +Sensor Data is uplink via FPORT=2 600 600 522 +(% border="1" cellspacing="5" style="background-color:#f2f2f2; width:500px" %) 523 +|=(% style="width: 90px;background-color:#D9E2F3" %)((( 524 +**Size(bytes)** 525 +)))|=(% style="width: 80px;background-color:#D9E2F3" %)2|=(% style="width: 90px;background-color:#D9E2F3" %)4|=(% style="width:80px;background-color:#D9E2F3" %)1|=(% style="width: 80px;background-color:#D9E2F3" %)**2**|=(% style="width: 80px;background-color:#D9E2F3" %)2 526 +|(% style="width:99px" %)**Value**|(% style="width:69px" %)((( 527 +[[Battery>>||anchor="HBattery:"]] 528 +)))|(% style="width:130px" %)((( 529 +[[Unix TimeStamp>>||anchor="H2.5.2UnixTimeStamp"]] 530 +)))|(% style="width:91px" %)((( 531 +[[Alarm Flag>>||anchor="HAlarmFlag26MOD:"]] 532 +)))|(% style="width:103px" %)((( 533 +[[Temperature>>||anchor="HTemperature:"]] 534 +)))|(% style="width:80px" %)((( 535 +[[Humidity>>||anchor="HHumidity:"]] 536 +))) 601 601 602 - Checkthebatteryvoltage for SN50v3-LB.538 +==== (% style="color:#4472c4" %)**Battery**(%%) ==== 603 603 540 +Sensor Battery Level. 541 + 604 604 Ex1: 0x0B45 = 2885mV 605 605 606 606 Ex2: 0x0B49 = 2889mV 607 607 608 608 609 -==== 2.3.3.2 Temperature (DS18B20) ==== 610 610 548 +==== (% style="color:#4472c4" %)**Temperature**(%%) ==== 611 611 612 - If there isaDS18B20 connected to PC13 pin. The temperature will beuploaded in the payload.550 +**Example**: 613 613 614 -More DS18B20 can check the [[3 DS18B20 mode>>||anchor="H2.3.2.4MOD3D4283xDS18B2029"]] 615 - 616 -(% style="color:blue" %)**Connection:** 617 - 618 -[[image:image-20230512180718-8.png||height="538" width="647"]] 619 - 620 - 621 -(% style="color:blue" %)**Example**: 622 - 623 623 If payload is: 0105H: (0105 & 8000 == 0), temp = 0105H /10 = 26.1 degree 624 624 625 625 If payload is: FF3FH : (FF3F & 8000 == 1) , temp = (FF3FH - 65536)/10 = -19.3 degrees. ... ... @@ -627,224 +627,195 @@ 627 627 (FF3F & 8000:Judge whether the highest bit is 1, when the highest bit is 1, it is negative) 628 628 629 629 630 -==== 2.3.3.3DigitalInput ====559 +==== (% style="color:#4472c4" %)**Humidity**(%%) ==== 631 631 632 632 633 - TheigitalinputforpinPB15,562 +Read:0x(0197)=412 Value: 412 / 10=41.2, So 41.2% 634 634 635 -* When PB15 is high, the bit 1 of payload byte 6 is 1. 636 -* When PB15 is low, the bit 1 of payload byte 6 is 0. 637 637 638 -(% class="wikigeneratedid" id="H2.3.3.4A0AnalogueDigitalConverter28ADC29" %) 639 -((( 640 -When the digital interrupt pin is set to AT+INTMODx=0, this pin is used as a digital input pin. 565 +==== (% style="color:#4472c4" %)**Alarm Flag& MOD**(%%) ==== 641 641 642 -(% style="color:red" %)**Note: The maximum voltage input supports 3.6V.** 643 643 644 - 645 -))) 568 +**Example:** 646 646 647 - ====2.3.3.4 AnalogueDigitalConverter(ADC)====570 +If payload & 0x01 = 0x01 **~-~->** This is an Alarm Message 648 648 572 +If payload & 0x01 = 0x00 **~-~->** This is a normal uplink message, no alarm 649 649 650 - Themeasuring rangeoftheADCisonlyabout0Vto1.1VThevoltageresolution isabout 0.24mv.574 +If payload >> 2 = 0x00 **~-~->** means MOD=1, This is a sampling uplink message 651 651 652 - Whenthe measuredoutputvoltageofthesensorisnotwithintherangeof 0V and1.1V, the output voltage terminalof theensor shall bedividedTheexamplein the followingfigure isto reduce the output voltage ofthe sensorbythreetimesIf itsnecessary to reducemoretimes,calculate accordingto the formula inthefigureand connecthe corresponding resistancein series.576 +If payload >> 2 = 0x31 **~-~->** means MOD=31, this message is a reply message for polling, this message contains the alarm settings. see [[this link>>path:#HPolltheAlarmsettings:]] for detail. 653 653 654 -[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LHT65N%20LoRaWAN%20Temperature%20%26%20Humidity%20Sensor%20Manual/WebHome/image-20220628150112-1.png?width=285&height=241&rev=1.1||alt="image-20220628150112-1.png" height="241" width="285"]] 655 655 579 +== 2.4 Payload Decoder file == 656 656 657 -(% style="color:red" %)**Note: If the ADC type sensor needs to be powered by SN50_v3, it is recommended to use +5V to control its switch.Only sensors with low power consumption can be powered with VDD.** 658 658 582 +In TTN, use can add a custom payload so it shows friendly reading 659 659 660 - ====2.3.3.5DigitalInterrupt====584 +In the page (% style="color:#037691" %)**Applications ~-~-> Payload Formats ~-~-> Custom ~-~-> decoder**(%%) to add the decoder from: 661 661 586 +[[https:~~/~~/github.com/dragino/dragino-end-node-decoder/tree/main/LSN50v2-S31%26S31B >>https://github.com/dragino/dragino-end-node-decoder/tree/main/LSN50v2-S31%26S31B]] 662 662 663 -Digital Interrupt refers to pin PA8, and there are different trigger methods. When there is a trigger, the SN50v3-LB will send a packet to the server. 664 664 665 - (%style="color:blue"%)** Interruptconnectionmethod:**589 +== 2.5 Datalog Feature == 666 666 667 -[[image:image-20230513105351-5.png||height="147" width="485"]] 668 668 592 +Datalog Feature is to ensure IoT Server can get all sampling data from Sensor even if the LoRaWAN network is down. For each sampling, S31x-LB will store the reading for future retrieving purposes. 669 669 670 -(% style="color:blue" %)**Example to use with door sensor :** 671 671 672 - Thedoor sensor is shown at right.It isatwowire magneticcontactswitch used fordetectingtheopen/close statusof doors or windows.595 +=== 2.5.1 Ways to get datalog via LoRaWAN === 673 673 674 -[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/1656379210849-860.png?rev=1.1||alt="1656379210849-860.png"]] 675 675 676 - Whenthetwoecesare close to each other,the2wireoutputwillbe shortoropen (dependingon thetype), whileifthetwopiecesre awayfromeachother,the2wire outputwillbe the oppositestatus.So wecan useSN50v3-LBinterruptinterfaceto detect thestatus forthedooror window.598 +Set [[PNACKMD=1>>||anchor="H2.5.4DatalogUplinkpayloadA028FPORT3D329"]], S31x-LB will wait for ACK for every uplink, when there is no LoRaWAN network,S31x-LB will mark these records with non-ack messages and store the sensor data, and it will send all messages (10s interval) after the network recovery. 677 677 600 +* a) S31x-LB will do an ACK check for data records sending to make sure every data arrive server. 601 +* b) S31x-LB will send data in **CONFIRMED Mode** when PNACKMD=1, but S31x-LB won't re-transmit the packet if it doesn't get ACK, it will just mark it as a NONE-ACK message. In a future uplink if S31x-LB gets a ACK, S31x-LB will consider there is a network connection and resend all NONE-ACK messages. 678 678 679 - (% style="color:blue" %)**Below is theinstallationexample:**603 +Below is the typical case for the auto-update datalog feature (Set PNACKMD=1) 680 680 681 - Fix oneeceof themagneticsensortothedoorndconnectthewopinsto SN50v3-LBas follows:605 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LHT65N%20LoRaWAN%20Temperature%20%26%20Humidity%20Sensor%20Manual/WebHome/image-20220703111700-2.png?width=1119&height=381&rev=1.1||alt="图片-20220703111700-2.png" height="381" width="1119"]] 682 682 683 -* ((( 684 -One pin to SN50v3-LB's PA8 pin 685 -))) 686 -* ((( 687 -The other pin to SN50v3-LB's VDD pin 688 -))) 607 +=== 2.5.2 Unix TimeStamp === 689 689 690 -Install the other piece to the door. Find a place where the two pieces will be close to each other when the door is closed. For this particular magnetic sensor, when the door is closed, the output will be short, and PA8 will be at the VCC voltage. 691 691 692 - Doorsensors have two types: (% style="color:blue" %)** NC (Normal close)**(%%) and (%style="color:blue"%)**NO (normalopen)**(%%).The connection for both typesensors arethe same.But the decodingforpayloadare reverse, user needtomodify this inthe IoT Server decoder.610 +S31x-LB uses Unix TimeStamp format based on 693 693 694 - Whenrsensorisshorted,there willextra power consumptionnthecircuit, the extra current is 3v3/R14=v3/1Mohm= 3uA whichcan beignored.612 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LHT65N%20LoRaWAN%20Temperature%20%26%20Humidity%20Sensor%20Manual/WebHome/image-20220523001219-11.png?width=627&height=97&rev=1.1||alt="图片-20220523001219-11.png" height="97" width="627"]] 695 695 696 - [[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/1656379283019-229.png?rev=1.1||alt="1656379283019-229.png"]]614 +User can get this time from link: [[https:~~/~~/www.epochconverter.com/>>url:https://www.epochconverter.com/]] : 697 697 698 - Theabove photos showsthe two partsofthemagnetic switch fittedtoadoor.616 +Below is the converter example 699 699 700 - The softwareby defaultusesthe falling edge on the signal lineasaninterrupt.Weneedtomodify it toccept both theisingedge (0v ~-~-> VCC ,doorclose)andfallingdge (VCC ~-~->0v , door open)as the interrupt.618 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LHT65N%20LoRaWAN%20Temperature%20%26%20Humidity%20Sensor%20Manual/WebHome/image-20220523001219-12.png?width=720&height=298&rev=1.1||alt="图片-20220523001219-12.png" height="298" width="720"]] 701 701 702 -The c ommandis:620 +So, we can use AT+TIMESTAMP=1611889405 or downlink 3060137afd00 to set the current time 2021 – Jan ~-~- 29 Friday 03:03:25 703 703 704 -(% style="color:blue" %)**AT+INTMOD1=1 ** (%%) ~/~/ (more info about INMOD please refer** **[[**AT Command Manual**>>url:http://www.dragino.com/downloads/index.php?dir=LSN50-LoRaST/&file=DRAGINO_LSN50_AT_Commands_v1.5.1.pdf]]**. **) 705 705 706 - BelowshowssomescreencapturesinTTN V3:623 +=== 2.5.3 Set Device Time === 707 707 708 -[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/1656379339508-835.png?rev=1.1||alt="1656379339508-835.png"]] 709 709 626 +User need to set (% style="color:blue" %)**SYNCMOD=1**(%%) to enable sync time via MAC command. 710 710 711 - InMOD=1,usercanusebyte6to seethestatus fordooropen orclose.TTNV3decoderis asbelow:628 +Once S31x-LB Joined LoRaWAN network, it will send the MAC command (DeviceTimeReq) and the server will reply with (DeviceTimeAns) to send the current time to S31x-LB. If S31x-LB fails to get the time from the server, S31x-LB will use the internal time and wait for next time request (AT+SYNCTDC to set the time request period, default is 10 days). 712 712 713 - door=(bytes[6]&0x80)?"CLOSE":"OPEN";630 +(% style="color:red" %)**Note: LoRaWAN Server need to support LoRaWAN v1.0.3(MAC v1.0.3) or higher to support this MAC command feature, Chirpstack,TTN V3 v3 and loriot support but TTN V3 v2 doesn't support. If server doesn't support this command, it will through away uplink packet with this command, so user will lose the packet with time request for TTN V3 v2 if SYNCMOD=1.** 714 714 715 715 716 -=== =2.3.3.6I2C Interface(SHT20 & SHT31) ====633 +=== 2.5.4 Datalog Uplink payload (FPORT~=3) === 717 717 718 718 719 -The SDAand SCK are I2C interfacelines.Youcanusethese toconnect toan I2Cdeviceand get the sensordata.636 +The Datalog uplinks will use below payload format. 720 720 721 - Wehave made an exampleto show how to use the I2Cinterfaceto connect to the SHT20/ SHT31 TemperatureandHumiditySensor.638 +**Retrieval data payload:** 722 722 723 -(% style="color:red" %)**Notice: Different I2C sensors have different I2C commands set and initiate process, if user want to use other I2C sensors, User need to re-write the source code to support those sensors. SHT20/ SHT31 code in SN50v3-LB will be a good reference.** 640 +(% border="1" cellspacing="5" style="background-color:#f2f2f2; width:510px" %) 641 +|=(% style="width: 80px;background-color:#D9E2F3" %)((( 642 +**Size(bytes)** 643 +)))|=(% style="width: 60px; background-color: rgb(217, 226, 243);" %)**2**|=(% style="width: 60px; background-color: rgb(217, 226, 243);" %)**2**|=(% style="width: 120px; background-color: rgb(217, 226, 243);" %)**2**|=(% style="width: 103px; background-color: rgb(217, 226, 243);" %)**1**|=(% style="width: 85px; background-color: rgb(217, 226, 243);" %)**4** 644 +|(% style="width:103px" %)**Value**|(% style="width:54px" %)((( 645 +[[Temp_Black>>||anchor="HTemperatureBlack:"]] 646 +)))|(% style="width:51px" %)[[Temp_White>>||anchor="HTemperatureWhite:"]]|(% style="width:89px" %)[[Temp_ Red or Temp _White>>||anchor="HTemperatureREDorTemperatureWhite:"]]|(% style="width:103px" %)Poll message flag & Ext|(% style="width:54px" %)[[Unix Time Stamp>>||anchor="H2.5.2UnixTimeStamp"]] 724 724 648 +**Poll message flag & Ext:** 725 725 726 - Belows theconnectiontoSHT20/SHT31.Theconnection isas below:650 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LHT65N%20LoRaWAN%20Temperature%20%26%20Humidity%20Sensor%20Manual/WebHome/image-20221006192726-1.png?width=754&height=112&rev=1.1||alt="图片-20221006192726-1.png" height="112" width="754"]] 727 727 728 - [[image:image-20230513103633-3.png||height="448"width="716"]]652 +**No ACK Message**: 1: This message means this payload is fromn Uplink Message which doesn't get ACK from the server before ( for **PNACKMD=1** feature) 729 729 730 - The device willbebletogettheI2Csensor datanowanduploadto IoT Server.654 +**Poll Message Flag**: 1: This message is a poll message reply. 731 731 732 - [[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/1656379664142-345.png?rev=1.1||alt="1656379664142-345.png"]]656 +* Poll Message Flag is set to 1. 733 733 734 - Converttheread byte todecimaland divide itby ten.658 +* Each data entry is 11 bytes, to save airtime and battery, devices will send max bytes according to the current DR and Frequency bands. 735 735 736 - **Example:**660 +For example, in US915 band, the max payload for different DR is: 737 737 738 - Temperature:Read:0116(H)=278(D)Value:278/10=27.8℃;662 +**a) DR0:** max is 11 bytes so one entry of data 739 739 740 - Humidity:Read:0248(H)=584(D)Value:584/10=58.4,So58.4%664 +**b) DR1:** max is 53 bytes so devices will upload 4 entries of data (total 44 bytes) 741 741 742 - Ifyouwanttouse otherI2Cdevice, pleaserefertheSHT20 partsourcecodeas reference.666 +**c) DR2:** total payload includes 11 entries of data 743 743 668 +**d) DR3: **total payload includes 22 entries of data. 744 744 745 - ====2.3.3.7 DistanceReading====670 +If devise doesn't have any data in the polling time. Device will uplink 11 bytes of 0 746 746 747 747 748 -Refer [[Ultrasonic Sensor section>>||anchor="H2.3.3.8UltrasonicSensor"]]. 749 - 750 - 751 -==== 2.3.3.8 Ultrasonic Sensor ==== 752 - 753 - 754 -This Fundamental Principles of this sensor can be found at this link: [[https:~~/~~/wiki.dfrobot.com/Weather_-_proof_Ultrasonic_Sensor_with_Separate_Probe_SKU~~_~~__SEN0208>>url:https://wiki.dfrobot.com/Weather_-_proof_Ultrasonic_Sensor_with_Separate_Probe_SKU___SEN0208]] 755 - 756 -The SN50v3-LB detects the pulse width of the sensor and converts it to mm output. The accuracy will be within 1 centimeter. The usable range (the distance between the ultrasonic probe and the measured object) is between 24cm and 600cm. 757 - 758 -The working principle of this sensor is similar to the (% style="color:blue" %)**HC-SR04**(%%) ultrasonic sensor. 759 - 760 -The picture below shows the connection: 761 - 762 -[[image:image-20230512173903-6.png||height="596" width="715"]] 763 - 764 - 765 -Connect to the SN50v3-LB and run (% style="color:blue" %)**AT+MOD=2**(%%) to switch to ultrasonic mode (ULT). 766 - 767 -The ultrasonic sensor uses the 8^^th^^ and 9^^th^^ byte for the measurement value. 768 - 769 769 **Example:** 770 770 771 - Distance:Read: 0C2D(Hex) =3117(D)Value:3117mm=311.7cm675 +If S31x-LB has below data inside Flash: 772 772 677 +[[image:1682646494051-944.png]] 773 773 774 - ====2.3.3.9 BatteryOutput-BAT pin====679 +If user sends below downlink command: 3160065F9760066DA705 775 775 681 +Where : Start time: 60065F97 = time 21/1/19 04:27:03 776 776 777 - TheBATpinofSN50v3isconnectedtotheBatterydirectly.Ifuserswanttouse BATpinto power an external sensor. User need to make sure the external sensoris of low power consumption. Becausethe BATpin is always open. Ifthe external sensoris of high power consumption. thebatteryof SN50v3-LB will run out very soon.683 + Stop time: 60066DA7= time 21/1/19 05:27:03 778 778 779 779 780 - ==== 2.3.3.10+5VOutput====686 +**S31x-LB will uplink this payload.** 781 781 688 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LHT65N%20LoRaWAN%20Temperature%20%26%20Humidity%20Sensor%20Manual/WebHome/image-20220523001219-13.png?width=727&height=421&rev=1.1||alt="图片-20220523001219-13.png" height="421" width="727"]] 782 782 783 -SN50v3-LB will enable +5V output before all sampling and disable the +5v after all sampling. 690 +((( 691 +__**7FFF089801464160065F97**__ **__7FFF__ __088E__ __014B__ __41__ __60066009__** 7FFF0885014E41600660667FFF0875015141600662BE7FFF086B015541600665167FFF08660155416006676E7FFF085F015A41600669C67FFF0857015D4160066C1E 692 +))) 784 784 785 -The 5V output time can be controlled by AT Command. 694 +((( 695 +Where the first 11 bytes is for the first entry: 696 +))) 786 786 787 -(% style="color:blue" %)**AT+5VT=1000** 698 +((( 699 +7FFF089801464160065F97 700 +))) 788 788 789 -Means set 5V valid time to have 1000ms. So the real 5V output will actually have 1000ms + sampling time for other sensors. 702 +((( 703 +**Ext sensor data**=0x7FFF/100=327.67 704 +))) 790 790 791 -By default the AT+5VT=500. If the external sensor which require 5v and require more time to get stable state, user can use this command to increase the power ON duration for this sensor. 706 +((( 707 +**Temp**=0x088E/100=22.00 708 +))) 792 792 710 +((( 711 +**Hum**=0x014B/10=32.6 712 +))) 793 793 794 -==== 2.3.3.11 BH1750 Illumination Sensor ==== 714 +((( 715 +**poll message flag & Ext**=0x41,means reply data,Ext=1 716 +))) 795 795 718 +((( 719 +**Unix time** is 0x60066009=1611030423s=21/1/19 04:27:03 720 +))) 796 796 797 -MOD=1 support this sensor. The sensor value is in the 8^^th^^ and 9^^th^^ bytes. 798 798 799 -[[image:image-202 30512172447-4.png||height="416" width="712"]]723 +(% aria-label="数据 URI 图像图像小部件" contenteditable="false" role="region" style="background-image:url(http://wiki1.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" tabindex="-1" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||alt="数据 URI 图片" data-widget="image" draggable="true" height="15" role="presentation" title="单击并拖动以移动" width="15"]](% aria-label="数据 URI 图像图像小部件" contenteditable="false" role="region" style="background-image:url(http://wiki1.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" tabindex="-1" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||alt="数据 URI 图片" draggable="true" height="15" role="presentation" title="单击并拖动以移动" width="15"]](% aria-label="数据 URI 图像图像小部件" contenteditable="false" role="region" style="background-image:url(http://wiki1.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" tabindex="-1" title="单击并拖动以调整大小" %)的(% aria-label="数据 URI 图像图像小部件" contenteditable="false" role="region" style="background-image:url(http://wiki1.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" tabindex="-1" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||alt="数据 URI 图片" data-widget="image" draggable="true" height="15" role="presentation" title="单击并拖动以移动" width="15"]](% aria-label="数据 URI 图像图像小部件" contenteditable="false" role="region" style="background-image:url(http://wiki1.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" tabindex="-1" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||alt="数据 URI 图片" draggable="true" height="15" role="presentation" title="单击并拖动以移动" width="15"]](% aria-label="数据 URI 图像图像小部件" contenteditable="false" role="region" style="background-image:url(http://wiki1.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" tabindex="-1" title="单击并拖动以调整大小" %)的 800 800 725 +== 2.6 Temperature Alarm Feature == 801 801 802 -[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/image-20220628110012-12.png?rev=1.1||alt="image-20220628110012-12.png" height="361" width="953"]] 803 803 728 +S31x-LB work flow with Alarm feature. 804 804 805 -==== 2.3.3.12 Working MOD ==== 806 806 731 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50v2-D20-D22-D23%20LoRaWAN%20Temperature%20Sensor%20User%20Manual/WebHome/image-20220623090437-1.png?rev=1.1||alt="图片-20220623090437-1.png"]] 807 807 808 -The working MOD info is contained in the Digital in & Digital Interrupt byte (7^^th^^ Byte). 809 809 810 - Usercanusethe 3^^rd^^ ~~ 7^^th^^ bit of this bytetoseethe working mod:734 +== 2.7 Frequency Plans == 811 811 812 -Case 7^^th^^ Byte >> 2 & 0x1f: 813 813 814 -* 0: MOD1 815 -* 1: MOD2 816 -* 2: MOD3 817 -* 3: MOD4 818 -* 4: MOD5 819 -* 5: MOD6 820 -* 6: MOD7 821 -* 7: MOD8 822 -* 8: MOD9 737 +The S31x-LB 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. 823 823 824 -== 2.4 Payload Decoder file == 825 - 826 - 827 -In TTN, use can add a custom payload so it shows friendly reading 828 - 829 -In the page (% style="color:#037691" %)**Applications ~-~-> Payload Formats ~-~-> Custom ~-~-> decoder**(%%) to add the decoder from: 830 - 831 -[[https:~~/~~/github.com/dragino/dragino-end-node-decoder/tree/main/SN50_v3-LB>>https://github.com/dragino/dragino-end-node-decoder/tree/main/SN50_v3-LB]] 832 - 833 - 834 -== 2.5 Frequency Plans == 835 - 836 - 837 -The SN50v3-LB 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. 838 - 839 839 [[http:~~/~~/wiki.dragino.com/xwiki/bin/view/Main/End%20Device%20Frequency%20Band/>>http://wiki.dragino.com/xwiki/bin/view/Main/End%20Device%20Frequency%20Band/]] 840 840 841 841 842 -= 3. Configure S N50v3-LB =742 += 3. Configure S31x-LB = 843 843 844 844 == 3.1 Configure Methods == 845 845 846 846 847 -S N50v3-LB supports below configure method:747 +S31x-LB supports below configure method: 848 848 849 849 * AT Command via Bluetooth Connection (**Recommended**): [[BLE Configure Instruction>>http://wiki.dragino.com/xwiki/bin/view/Main/BLE%20Bluetooth%20Remote%20Configure/]]. 850 850 * AT Command via UART Connection : See [[UART Connection>>http://wiki.dragino.com/xwiki/bin/view/Main/UART%20Access%20for%20LoRa%20ST%20v4%20base%20model/#H2.3UARTConnectionforSN50v3basemotherboard]]. ... ... @@ -863,10 +863,10 @@ 863 863 [[http:~~/~~/wiki.dragino.com/xwiki/bin/view/Main/End%20Device%20AT%20Commands%20and%20Downlink%20Command/>>http://wiki.dragino.com/xwiki/bin/view/Main/End%20Device%20AT%20Commands%20and%20Downlink%20Command/]] 864 864 865 865 866 -== 3.3 Commands special design for S N50v3-LB ==766 +== 3.3 Commands special design for S31x-LB == 867 867 868 868 869 -These commands only valid for S N50v3-LB, as below:769 +These commands only valid for S31x-LB, as below: 870 870 871 871 872 872 === 3.3.1 Set Transmit Interval Time === ... ... @@ -900,7 +900,7 @@ 900 900 === 3.3.2 Get Device Status === 901 901 902 902 903 -Send a LoRaWAN downlink to ask thedevicetosenditsstatus.803 +Send a LoRaWAN downlink to ask device send Alarm settings. 904 904 905 905 (% style="color:blue" %)**Downlink Payload: **(%%)0x26 01 906 906 ... ... @@ -907,148 +907,108 @@ 907 907 Sensor will upload Device Status via FPORT=5. See payload section for detail. 908 908 909 909 910 -=== 3.3.3 Set InterruptMode===810 +=== 3.3.3 Set Temperature Alarm Threshold === 911 911 812 +* (% style="color:blue" %)**AT Command:** 912 912 913 - Feature,SetInterrupt mode forGPIO_EXIT.814 +(% style="color:#037691" %)**AT+SHTEMP=min,max** 914 914 915 -(% style="color:blue" %)**AT Command: AT+INTMOD1,AT+INTMOD2,AT+INTMOD3** 816 +* When min=0, and max≠0, Alarm higher than max 817 +* When min≠0, and max=0, Alarm lower than min 818 +* When min≠0 and max≠0, Alarm higher than max or lower than min 916 916 917 -(% border="1" cellspacing="4" style="background-color:#f2f2f2; width:510px" %) 918 -|=(% style="width: 154px;background-color:#D9E2F3" %)**Command Example**|=(% style="width: 196px;background-color:#D9E2F3" %)**Function**|=(% style="width: 157px;background-color:#D9E2F3" %)**Response** 919 -|(% style="width:154px" %)AT+INTMOD1=?|(% style="width:196px" %)Show current interrupt mode|(% style="width:157px" %)((( 920 -0 921 -OK 922 -the mode is 0 =Disable Interrupt 923 -))) 924 -|(% style="width:154px" %)AT+INTMOD1=2|(% style="width:196px" %)((( 925 -Set Transmit Interval 926 -0. (Disable Interrupt), 927 -~1. (Trigger by rising and falling edge) 928 -2. (Trigger by falling edge) 929 -3. (Trigger by rising edge) 930 -)))|(% style="width:157px" %)OK 931 -|(% style="width:154px" %)AT+INTMOD2=3|(% style="width:196px" %)((( 932 -Set Transmit Interval 933 -trigger by rising edge. 934 -)))|(% style="width:157px" %)OK 935 -|(% style="width:154px" %)AT+INTMOD3=0|(% style="width:196px" %)Disable Interrupt|(% style="width:157px" %)OK 820 +Example: 936 936 937 - (%style="color:blue"%)**DownlinkCommand:0x06**822 + AT+SHTEMP=0,30 ~/~/ Alarm when temperature higher than 30. 938 938 939 - Format:CommandCode(0x06)followedby 3 bytes.824 +* (% style="color:blue" %)**Downlink Payload:** 940 940 941 - Thismeanshat theinterrupt modeofthe end node is set to0x000003=3(risingedgetrigger),andthetypecodeis06.826 +(% style="color:#037691" %)**0x(0C 01 00 1E)** (%%) ~/~/ Set AT+SHTEMP=0,30 942 942 943 -* Example 1: Downlink Payload: 06000000 **~-~-->** AT+INTMOD1=0 944 -* Example 2: Downlink Payload: 06000003 **~-~-->** AT+INTMOD1=3 945 -* Example 3: Downlink Payload: 06000102 **~-~-->** AT+INTMOD2=2 946 -* Example 4: Downlink Payload: 06000201 **~-~-->** AT+INTMOD3=1 828 +(% style="color:red" %)**(note: 3^^rd^^ byte= 0x00 for low limit(not set), 4^^th^^ byte = 0x1E for high limit: 30)** 947 947 948 -=== 3.3.4 Set Power Output Duration === 949 949 831 +=== 3.3.4 Set Humidity Alarm Threshold === 950 950 951 - Controltheoutput duration 5V . Beforeeachsampling,device will833 +* (% style="color:blue" %)**AT Command:** 952 952 953 - ~1.firstenablethe poweroutput to externalsensor,835 +(% style="color:#037691" %)**AT+SHHUM=min,max** 954 954 955 -2. keep it on as per duration, read sensor value and construct uplink payload 837 +* When min=0, and max≠0, Alarm higher than max 838 +* When min≠0, and max=0, Alarm lower than min 839 +* When min≠0 and max≠0, Alarm higher than max or lower than min 956 956 957 - 3. final, closethe power output.841 +Example: 958 958 959 - (%style="color:blue"%)**ATCommand:AT+5VT**843 + AT+SHHUM=70,0 ~/~/ Alarm when humidity lower than 70%. 960 960 961 -(% border="1" cellspacing="4" style="background-color:#f2f2f2; width:510px" %) 962 -|=(% style="width: 154px;background-color:#D9E2F3" %)**Command Example**|=(% style="width: 196px;background-color:#D9E2F3" %)**Function**|=(% style="width: 157px;background-color:#D9E2F3" %)**Response** 963 -|(% style="width:154px" %)AT+5VT=?|(% style="width:196px" %)Show 5V open time.|(% style="width:157px" %)((( 964 -500(default) 965 -OK 966 -))) 967 -|(% style="width:154px" %)AT+5VT=1000|(% style="width:196px" %)((( 968 -Close after a delay of 1000 milliseconds. 969 -)))|(% style="width:157px" %)OK 845 +* (% style="color:blue" %)**Downlink Payload:** 970 970 971 -(% style="color: blue" %)**DownlinkCommand:0x07**847 +(% style="color:#037691" %)**0x(0C 02 46 00)**(%%) ~/~/ Set AT+SHTHUM=70,0 972 972 973 - Format:CommandCode(0x07)followedby2bytes.849 +(% style="color:red" %)**(note: 3^^rd^^ byte= 0x46 for low limit (70%), 4^^th^^ byte = 0x00 for high limit (not set))** 974 974 975 -The first and second bytes are the time to turn on. 976 976 977 -* Example 1: Downlink Payload: 070000 **~-~-->** AT+5VT=0 978 -* Example 2: Downlink Payload: 0701F4 **~-~-->** AT+5VT=500 852 +=== 3.3.5 Set Alarm Interval === 979 979 980 - ===3.3.5 SetWeighingparameters===854 +The shortest time of two Alarm packet. (unit: min) 981 981 856 +* (% style="color:blue" %)**AT Command:** 982 982 983 - Feature:Workingmode5iseffective,weight initializationandweightfactorsettingofHX711.858 +(% style="color:#037691" %)**AT+ATDC=30** (%%) ~/~/ The shortest interval of two Alarm packets is 30 minutes, Means is there is an alarm packet uplink, there won't be another one in the next 30 minutes. 984 984 985 -(% style="color:blue" %)** ATCommand:AT+WEIGRE,AT+WEIGAP**860 +* (% style="color:blue" %)**Downlink Payload:** 986 986 987 -(% border="1" cellspacing="4" style="background-color:#f2f2f2; width:510px" %) 988 -|=(% style="width: 154px;background-color:#D9E2F3" %)**Command Example**|=(% style="width: 196px;background-color:#D9E2F3" %)**Function**|=(% style="width: 157px;background-color:#D9E2F3" %)**Response** 989 -|(% style="width:154px" %)AT+WEIGRE|(% style="width:196px" %)Weight is initialized to 0.|(% style="width:157px" %)OK 990 -|(% style="width:154px" %)AT+WEIGAP=?|(% style="width:196px" %)400.0|(% style="width:157px" %)OK(default) 991 -|(% style="width:154px" %)AT+WEIGAP=400.3|(% style="width:196px" %)Set the factor to 400.3.|(% style="width:157px" %)OK 862 +(% style="color:#037691" %)**0x(0D 00 1E)**(%%) **~-~--> ** Set AT+ATDC=0x 00 1E = 30 minutes 992 992 993 -(% style="color:blue" %)**Downlink Command: 0x08** 994 994 995 - Format:CommandCode(0x08) followed by 2 bytesor4 bytes.865 +=== 3.3.6 Get Alarm settings === 996 996 997 -Use AT+WEIGRE when the first byte is 1, only 1 byte. When it is 2, use AT+WEIGAP, there are 3 bytes. 998 998 999 - Thesecond andthird bytesaremultipliedby10timesto betheAT+WEIGAP value.868 +Send a LoRaWAN downlink to ask device send Alarm settings. 1000 1000 1001 -* Example 1: Downlink Payload: 0801 **~-~-->** AT+WEIGRE 1002 -* Example 2: Downlink Payload: 08020FA3 **~-~-->** AT+WEIGAP=400.3 1003 -* Example 3: Downlink Payload: 08020FA0 **~-~-->** AT+WEIGAP=400.0 870 +* (% style="color:#037691" %)**Downlink Payload: **(%%)0x0E 01 1004 1004 1005 - === 3.3.6 Set Digitalpulsecount value ===872 +**Example:** 1006 1006 874 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50v2-D20-D22-D23%20LoRaWAN%20Temperature%20Sensor%20User%20Manual/WebHome/1655948182791-225.png?rev=1.1||alt="1655948182791-225.png"]] 1007 1007 1008 -Feature: Set the pulse count value. 1009 1009 1010 - Count 1 is PA8pin of mode 6and mode 9. Count 2is PA4 pinof mode 9.877 +**Explain:** 1011 1011 1012 - (%style="color:blue"%)**ATCommand:AT+SETCNT**879 +* Alarm & MOD bit is 0x7C, 0x7C >> 2 = 0x31: Means this message is the Alarm settings message. 1013 1013 1014 -(% border="1" cellspacing="4" style="background-color:#f2f2f2; width:510px" %) 1015 -|=(% style="width: 154px;background-color:#D9E2F3" %)**Command Example**|=(% style="width: 196px;background-color:#D9E2F3" %)**Function**|=(% style="width: 157px;background-color:#D9E2F3" %)**Response** 1016 -|(% style="width:154px" %)AT+SETCNT=1,100|(% style="width:196px" %)Initialize the count value 1 to 100.|(% style="width:157px" %)OK 1017 -|(% style="width:154px" %)AT+SETCNT=2,0|(% style="width:196px" %)Initialize the count value 2 to 0.|(% style="width:157px" %)OK 881 +=== 3.3.7 Set Interrupt Mode === 1018 1018 1019 -(% style="color:blue" %)**Downlink Command: 0x09** 1020 1020 1021 -F ormat:CommandCode(0x09)followedby 5 bytes.884 +Feature, Set Interrupt mode for GPIO_EXIT. 1022 1022 1023 - Thefirstbyte is to select which count value toinitialize, and the next fourytes are the count valuetobe initialized.886 +(% style="color:blue" %)**AT Command: AT+INTMOD** 1024 1024 1025 -* Example 1: Downlink Payload: 090100000000 **~-~-->** AT+SETCNT=1,0 1026 -* Example 2: Downlink Payload: 0902000003E8 **~-~-->** AT+SETCNT=2,1000 1027 - 1028 -=== 3.3.7 Set Workmode === 1029 - 1030 - 1031 -Feature: Switch working mode. 1032 - 1033 -(% style="color:blue" %)**AT Command: AT+MOD** 1034 - 1035 1035 (% border="1" cellspacing="4" style="background-color:#f2f2f2; width:510px" %) 1036 1036 |=(% style="width: 154px;background-color:#D9E2F3" %)**Command Example**|=(% style="width: 196px;background-color:#D9E2F3" %)**Function**|=(% style="width: 157px;background-color:#D9E2F3" %)**Response** 1037 -|(% style="width:154px" %)AT+MOD=?|(% style="width:196px" %)Get the current working mode.|(% style="width:157px" %)((( 890 +|(% style="width:154px" %)AT+INTMOD=?|(% style="width:196px" %)Show current interrupt mode|(% style="width:157px" %)((( 891 +0 1038 1038 OK 893 +the mode is 0 =Disable Interrupt 1039 1039 ))) 1040 -|(% style="width:154px" %)AT+MOD=4|(% style="width:196px" %)Set the working mode to 3DS18B20s.|(% style="width:157px" %)((( 1041 -OK 1042 -Attention:Take effect after ATZ 1043 -))) 895 +|(% style="width:154px" %)AT+INTMOD=2|(% style="width:196px" %)((( 896 +Set Transmit Interval 897 +0. (Disable Interrupt), 898 +~1. (Trigger by rising and falling edge) 899 +2. (Trigger by falling edge) 900 +3. (Trigger by rising edge) 901 +)))|(% style="width:157px" %)OK 1044 1044 1045 -(% style="color:blue" %)**Downlink Command: 0x0 A**903 +(% style="color:blue" %)**Downlink Command: 0x06** 1046 1046 1047 -Format: Command Code (0x0 A) followed by1bytes.905 +Format: Command Code (0x06) followed by 3 bytes. 1048 1048 1049 -* Example 1: Downlink Payload: 0A01 **~-~-->** AT+MOD=1 1050 -* Example 2: Downlink Payload: 0A04 **~-~-->** AT+MOD=4 907 +This means that the interrupt mode of the end node is set to 0x000003=3 (rising edge trigger), and the type code is 06. 1051 1051 909 +* Example 1: Downlink Payload: 06000000 ~/~/ Turn off interrupt mode 910 +* Example 2: Downlink Payload: 06000003 ~/~/ Set the interrupt mode to rising edge trigger 911 + 1052 1052 = 4. Battery & Power Consumption = 1053 1053 1054 1054 ... ... @@ -1077,12 +1077,8 @@ 1077 1077 1078 1078 = 6. FAQ = 1079 1079 1080 -== 6.1 Where can i find source code of SN50v3-LB? == 1081 1081 1082 1082 1083 -* **[[Hardware Source Files>>https://github.com/dragino/Lora/tree/master/LSN50/v3.0]].** 1084 -* **[[Software Source Code & Compile instruction>>https://github.com/dragino/SN50v3]].** 1085 - 1086 1086 = 7. Order Info = 1087 1087 1088 1088 ... ... @@ -1108,7 +1108,6 @@ 1108 1108 1109 1109 = 8. Packing Info = 1110 1110 1111 - 1112 1112 (% style="color:#037691" %)**Package Includes**: 1113 1113 1114 1114 * SN50v3-LB LoRaWAN Generic Node ... ... @@ -1124,5 +1124,4 @@ 1124 1124 1125 1125 1126 1126 * 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. 1127 - 1128 -* 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.cc>>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.cc]] 982 +* 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]]
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