Changes for page PS-LB/LS -- LoRaWAN Air Water Pressure Sensor User Manual
Last modified by Xiaoling on 2025/07/10 16:21
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... ... @@ -1,8 +1,7 @@ 1 1 2 2 3 3 4 -(% style="text-align:center" %) 5 -[[image:image-20240109154731-4.png||height="546" width="769"]] 4 +[[image:image-20240109154731-4.png||data-xwiki-image-style-alignment="center" height="546" width="769"]] 6 6 7 7 8 8 ... ... @@ -142,7 +142,11 @@ 142 142 * Long-Term Stability: ±0.2% F.S / Year 143 143 * Storage temperature: -30°C~~80°C 144 144 * Operating temperature: 0°C~~50°C 145 -* Material: 316 stainless steels 144 +* Probe Material: 316 stainless steels 145 +* Cable model specifications: CGYPU 5*0.2mm2 146 +* Usage characteristics of Cable 147 +1) Operating temperature:-40℃— +70℃ 148 +2) -30℃ bending cable 15 times of outer diameter can work normally 146 146 147 147 === 1.4.3 Wireless Differential Air Pressure Sensor === 148 148 ... ... @@ -242,13 +242,13 @@ 242 242 243 243 (% border="1" cellspacing="4" style="background-color:#f2f2f2; width:510px" %) 244 244 |=(% style="width: 167px;background-color:#4F81BD;color:white" %)Behavior on ACT|=(% style="width: 117px;background-color:#4F81BD;color:white" %)Function|=(% style="width: 226px;background-color:#4F81BD;color:white" %)Action 245 -| (% style="background-color:#f2f2f2; width:167px" %)PressingACT between1s < time <3s|(% style="background-color:#f2f2f2; width:117px" %)Send an uplink|(% style="background-color:#f2f2f2; width:225px" %)(((248 +|[[image:1749521239729-288.png]] 1~~3s|(% style="background-color:#f2f2f2; width:117px" %)Send an uplink|(% style="background-color:#f2f2f2; width:225px" %)((( 246 246 247 247 248 248 If sensor is already Joined to LoRaWAN network, sensor will send an uplink packet, blue led will blink once. 249 249 Meanwhile, BLE module will be active and user can connect via BLE to configure device. 250 250 ))) 251 -| (% style="background-color:#f2f2f2; width:167px" %)PressingACT for more than3s|(% style="background-color:#f2f2f2; width:117px" %)Active Device|(% style="background-color:#f2f2f2; width:225px" %)(((254 +|[[image:1749521245437-170.png]] >3s|(% style="background-color:#f2f2f2; width:117px" %)Active Device|(% style="background-color:#f2f2f2; width:225px" %)((( 252 252 253 253 254 254 Green led will fast blink 5 times, device will enter OTA mode for 3 seconds. And then start to JOIN LoRaWAN network. ... ... @@ -255,7 +255,7 @@ 255 255 Green led will solidly turn on for 5 seconds after joined in network. 256 256 Once sensor is active, BLE module will be active and user can connect via BLE to configure device, no matter if device join or not join LoRaWAN network. 257 257 ))) 258 -| (% style="background-color:#f2f2f2; width:167px"%)Fast press ACT5times.|(% style="background-color:#f2f2f2; width:117px" %)Deactivate Device|(% style="background-color:#f2f2f2; width:225px" %)Red led will solid on for 5 seconds. Means PS-LB is in Deep Sleep Mode.261 +|[[image:1749521282079-419.png]] x5|(% style="background-color:#f2f2f2; width:117px" %)Deactivate Device|(% style="background-color:#f2f2f2; width:225px" %)Red led will solid on for 5 seconds. Means PS-LB is in Deep Sleep Mode. 259 259 260 260 == 1.8 Pin Mapping == 261 261 ... ... @@ -311,7 +311,7 @@ 311 311 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. 312 312 313 313 314 -Step 1: Create a device in TTN with the OTAA keys from PS-LB/LS. 317 +(% style="color:blue" %)**Step 1: Create a device in TTN with the OTAA keys from PS-LB/LS.** 315 315 316 316 Each PS-LB/LS is shipped with a sticker with the default device EUI as below: 317 317 ... ... @@ -320,30 +320,45 @@ 320 320 321 321 You can enter this key in the LoRaWAN Server portal. Below is TTN screen shot: 322 322 326 +**Create the application.** 323 323 324 - Registerdevice328 +[[image:https://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/SAC01L_LoRaWAN_Temperature%26Humidity_Sensor_User_Manual/WebHome/image-20250423093843-1.png?width=756&height=264&rev=1.1||alt="image-20250423093843-1.png"]] 325 325 326 -[[image: 1675144099263-405.png]]330 +[[image:https://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LTC2-LB--LoRaWAN_Temperature_Transmitter_User_Manual/WebHome/image-20240907111305-2.png?width=1000&height=572&rev=1.1||alt="image-20240907111305-2.png"]] 327 327 328 328 329 -Add APPEUIandDEV EUI333 +**Add devices to the created Application.** 330 330 331 -[[image:167514 4117571-832.png]]335 +[[image:https://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LTC2-LB--LoRaWAN_Temperature_Transmitter_User_Manual/WebHome/image-20240907111659-3.png?width=977&height=185&rev=1.1||alt="image-20240907111659-3.png"]] 332 332 337 +[[image:https://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LTC2-LB--LoRaWAN_Temperature_Transmitter_User_Manual/WebHome/image-20240907111820-5.png?width=975&height=377&rev=1.1||alt="image-20240907111820-5.png"]] 333 333 334 -Add APP EUI in the application 335 335 340 +**Enter end device specifics manually.** 336 336 337 -[[image:167 5144143021-195.png]]342 +[[image:https://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LTC2-LB--LoRaWAN_Temperature_Transmitter_User_Manual/WebHome/image-20240907112136-6.png?width=697&height=687&rev=1.1||alt="image-20240907112136-6.png"]] 338 338 339 339 340 -Add APPKEY345 +**Add DevEUI and AppKey. Customize a platform ID for the device.** 341 341 342 -[[image: 1675144157838-392.png]]347 +[[image:https://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LTC2-LB--LoRaWAN_Temperature_Transmitter_User_Manual/WebHome/image-20240907112427-7.png?rev=1.1||alt="image-20240907112427-7.png"]] 343 343 344 -Step 2: Activate on PS-LB/LS 345 345 350 +(% style="color:blue" %)**Step 2: Add decoder.** 346 346 352 +In TTN, user can add a custom payload so it shows friendly reading. 353 + 354 +Click this link to get the decoder: [[https:~~/~~/github.com/dragino/dragino-end-node-decoder/tree/main/>>url:https://github.com/dragino/dragino-end-node-decoder/tree/main/]] 355 + 356 +Below is TTN screen shot: 357 + 358 +[[image:https://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LDS25-LBLDS25-LS--LoRaWAN_LiDAR_Distance_Auto-Clean_Sensor_User_Manual/WebHome/image-20241009140556-1.png?width=1184&height=488&rev=1.1||alt="image-20241009140556-1.png" height="488" width="1184"]] 359 + 360 +[[image:https://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LDS25-LBLDS25-LS--LoRaWAN_LiDAR_Distance_Auto-Clean_Sensor_User_Manual/WebHome/image-20241009140603-2.png?width=1168&height=562&rev=1.1||alt="image-20241009140603-2.png" height="562" width="1168"]] 361 + 362 + 363 +(% style="color:blue" %)**Step 3: Activate on PS-LB/LS** 364 + 347 347 Press the button for 5 seconds to activate the PS-LB/LS. 348 348 349 349 Green led will fast blink 5 times, device will enter OTA mode for 3 seconds. And then start to JOIN LoRaWAN network. Green led will solidly turn on for 5 seconds after joined in network. ... ... @@ -361,7 +361,7 @@ 361 361 Users can also use the downlink command(0x26 01) to ask PS-LB/LS to resend this uplink. 362 362 363 363 (% border="1" cellspacing="4" style="background-color:#f2f2f2; width:510px" %) 364 -|(% colspan="6" style="background-color:#4f81bd; color:white" %)Device Status (FPORT=5) 382 +|(% colspan="6" style="background-color:#4f81bd; color:white" %)**Device Status (FPORT=5)** 365 365 |(% style="background-color:#f2f2f2; width:103px" %)Size (bytes)|(% style="background-color:#f2f2f2; width:72px" %)1|(% style="background-color:#f2f2f2" %)2|(% style="background-color:#f2f2f2; width:91px" %)1|(% style="background-color:#f2f2f2; width:86px" %)1|(% style="background-color:#f2f2f2; width:44px" %)2 366 366 |(% style="background-color:#f2f2f2; width:103px" %)Value|(% style="background-color:#f2f2f2; width:72px" %)Sensor Model|(% style="background-color:#f2f2f2" %)Firmware Version|(% style="background-color:#f2f2f2; width:91px" %)Frequency Band|(% style="background-color:#f2f2f2; width:86px" %)Sub-band|(% style="background-color:#f2f2f2; width:44px" %)BAT 367 367 ... ... @@ -431,10 +431,8 @@ 431 431 432 432 (% border="1" cellspacing="3" style="background-color:#f2f2f2; width:510px" %) 433 433 |(% style="background-color:#4f81bd; color:white; width:97px" %)((( 434 - 435 - 436 -Size(bytes) 437 -)))|(% style="background-color:#4f81bd; color:white; width:50px" %)2|(% style="background-color:#4f81bd; color:white; width:71px" %)2|(% style="background-color:#4f81bd; color:white; width:98px" %)2|(% style="background-color:#4f81bd; color:white; width:73px" %)2|(% style="background-color:#4f81bd; color:white; width:122px" %)1 452 +**Size(bytes)** 453 +)))|(% style="background-color:#4f81bd; color:white; width:50px" %)**2**|(% style="background-color:#4f81bd; color:white; width:71px" %)**2**|(% style="background-color:#4f81bd; color:white; width:98px" %)**2**|(% style="background-color:#4f81bd; color:white; width:73px" %)**2**|(% style="background-color:#4f81bd; color:white; width:122px" %)**1** 438 438 |(% style="width:97px" %)Value|(% style="width:48px" %)[[BAT>>||anchor="H2.3.3BatteryInfo"]]|(% style="width:71px" %)[[Probe Model>>||anchor="H2.3.4ProbeModel"]]|(% style="width:98px" %)[[0 ~~~~ 20mA value>>||anchor="H2.3.507E20mAvalue28IDC_IN29"]]|(% style="width:73px" %)[[0 ~~~~ 30v value>>||anchor="H2.3.607E30Vvalue28pinVDC_IN29"]]|(% style="width:122px" %)[[IN1 &IN2 Interrupt flag>>||anchor="H2.3.7IN126IN226INTpin"]] 439 439 440 440 [[image:1675144608950-310.png]] ... ... @@ -455,11 +455,10 @@ 455 455 456 456 PS-LB/LS has different kind of probe, 4~~20mA represent the full scale of the measuring range. So a 12mA output means different meaning for different probe. 457 457 458 - 459 459 For example. 460 460 461 461 (% border="1" cellspacing="4" style="background-color:#f2f2f2; width:510px" %) 462 -|(% style="background-color:#4f81bd; color:white" %)Part Number|(% style="background-color:#4f81bd; color:white" %)Probe Used|(% style="background-color:#4f81bd; color:white" %)4~~20mA scale|(% style="background-color:#4f81bd; color:white" %)Example: 12mA meaning 477 +|(% style="background-color:#4f81bd; color:white" %)**Part Number**|(% style="background-color:#4f81bd; color:white" %)**Probe Used**|(% style="background-color:#4f81bd; color:white" %)**4~~20mA scale**|(% style="background-color:#4f81bd; color:white" %)**Example: 12mA meaning** 463 463 |(% style="background-color:#f2f2f2" %)PS-LB/LS-I3|(% style="background-color:#f2f2f2" %)immersion type with 3 meters cable|(% style="background-color:#f2f2f2" %)0~~3 meters|(% style="background-color:#f2f2f2" %)1.5 meters pure water 464 464 |(% style="background-color:#f2f2f2" %)PS-LB/LS-I5|(% style="background-color:#f2f2f2" %)immersion type with 5 meters cable|(% style="background-color:#f2f2f2" %)0~~5 meters|(% style="background-color:#f2f2f2" %)2.5 meters pure water 465 465 |(% style="background-color:#f2f2f2" %)PS-LB/LS-T20-B|(% style="background-color:#f2f2f2" %)T20 threaded probe|(% style="background-color:#f2f2f2" %)0~~1MPa|(% style="background-color:#f2f2f2" %)0.5MPa air / gas or water pressure ... ... @@ -467,6 +467,23 @@ 467 467 The probe model field provides the convenient for server to identical how it should parse the 4~~20mA sensor value and get the correct value. 468 468 469 469 485 +When connecting to current sensors sold by our company, you can convert current readings to corresponding values by simply configuring the [[AT+PROBE>>||anchor="H3.3.4SettheProbeModel"]] command. If you prefer not to configure this command on the sensor, you can uniformly handle the conversion in the payload decoder instead. 486 + 487 +**Examples for decoder implementation:** 488 + 489 +~1. For AT+PROBE=0005, add the following processing in your decoder: 490 + 491 +[[image:image-20250512144042-1.png]] 492 + 493 +[[image:image-20250512144122-2.png]] 494 + 495 +2. For AT+PROBE=0102, add the following processing in your decoder(Corresponding to the position shown in the above screenshot). 496 + 497 +bytes[i]=0x01;bytes[1+i]=0x02; 498 + 499 +bytes[2]=0x01;bytes[3]=0x02; 500 + 501 + 470 470 === 2.3.5 0~~20mA value (IDC_IN) === 471 471 472 472 ... ... @@ -520,10 +520,8 @@ 520 520 521 521 (% border="1" cellspacing="4" style="background-color:#f2f2f2; width:500px" %) 522 522 |(% style="background-color:#4f81bd; color:white; width:65px" %)((( 523 - 524 - 525 -Size(bytes) 526 -)))|(% style="background-color:#4f81bd; color:white; width:35px" %)2|(% style="background-color:#4f81bd; color:white; width:400px" %)n 555 +**Size(bytes)** 556 +)))|(% style="background-color:#4f81bd; color:white; width:35px" %)**2**|(% style="background-color:#4f81bd; color:white; width:400px" %)**n** 527 527 |(% style="width:94px" %)Value|(% style="width:43px" %)[[BAT>>||anchor="H2.3.3BatteryInfo"]]|(% style="width:367px" %)((( 528 528 529 529 ... ... @@ -1204,7 +1204,7 @@ 1204 1204 1205 1205 AT Command: AT +STDC 1206 1206 1207 -AT+STDC=aa,bb, bb1237 +AT+STDC=aa,bb,cc 1208 1208 1209 1209 aa: 1210 1210 0: means disable this function and use TDC to send packets. ... ... @@ -1238,6 +1238,113 @@ 1238 1238 1239 1239 * Example 1: Downlink Payload: AE 01 02 58 12 ~-~--> AT+STDC=1,600,18 1240 1240 1271 +== 3.4 Print data entries base on page(Since v1.1.0) == 1272 + 1273 + 1274 +Feature: Print the sector data from start page to stop page (max is 416 pages). 1275 + 1276 +(% style="color:#4f81bd" %)**AT Command: AT+PDTA** 1277 + 1278 +(% border="1" cellspacing="3" style="background-color:#f2f2f2; width:510px" %) 1279 +|(% style="background-color:#4f81bd; color:white; width:158px" %)**Command Example**|(% style="background-color:#4f81bd; color:white; width:352px" %)**Function** 1280 +|(% style="width:156px" %)((( 1281 + AT+PDTA=1,1 1282 +Print page 1 to 1 1283 +)))|(% style="width:311px" %)((( 1284 +Stop Tx events when read sensor data 1285 + 1286 +8031000 1970/1/1 00:00:00 0 in1:low in2:low exti:low status:false vdc:0.000 idc:0.000 proble:0000 water_deep:0.000 1287 + 1288 +8031010 1970/1/1 00:00:00 0 in1:low in2:low exti:low status:false vdc:0.000 idc:0.000 proble:0000 water_deep:0.000 1289 + 1290 +8031020 1970/1/1 00:00:00 0 in1:low in2:low exti:low status:false vdc:0.000 idc:0.000 proble:0000 water_deep:0.000 1291 + 1292 +8031030 1970/1/1 00:00:00 0 in1:low in2:low exti:low status:false vdc:0.000 idc:0.000 proble:0000 water_deep:0.000 1293 + 1294 +8031040 1970/1/1 00:00:00 0 in1:low in2:low exti:low status:false vdc:0.000 idc:0.000 proble:0000 water_deep:0.000 1295 + 1296 +8031050 1970/1/1 00:00:00 0 in1:low in2:low exti:low status:false vdc:0.000 idc:0.000 proble:0000 water_deep:0.000 1297 + 1298 +8031060 1970/1/1 00:00:00 0 in1:low in2:low exti:low status:false vdc:0.000 idc:0.000 proble:0000 water_deep:0.000 1299 + 1300 +8031070 1970/1/1 00:00:00 0 in1:low in2:low exti:low status:false vdc:0.000 idc:0.000 proble:0000 water_deep:0.000 1301 + 1302 +Start Tx events 1303 + 1304 + 1305 +OK 1306 +))) 1307 + 1308 +(% style="color:#4f81bd" %)**Downlink Command:** 1309 + 1310 +No downlink commands for feature 1311 + 1312 + 1313 +== 3.5 Print last few data entries(Since v1.1.0) == 1314 + 1315 + 1316 +Feature: Print the last few data entries 1317 + 1318 + 1319 +(% style="color:#4f81bd" %)**AT Command: AT+PLDTA** 1320 + 1321 +(% border="1" cellspacing="3" style="background-color:#f2f2f2; width:510px" %) 1322 +|(% style="background-color:#4f81bd; color:white; width:158px" %)**Command Example**|(% style="background-color:#4f81bd; color:white; width:352px" %)**Function** 1323 +|(% style="width:156px" %)((( 1324 +AT+PLDTA=10 1325 +Print last 10 entries 1326 +)))|(% style="width:311px" %)((( 1327 +Stop Tx events when read sensor data 1328 + 1329 +0001 2025/5/19 06:16:50 3246 in1:low in2:low exti:low status:false vdc:3.352 idc:0.000 proble:0000 water_deep:0.000 1330 + 1331 +0002 2025/5/19 06:17:50 3246 in1:low in2:low exti:low status:false vdc:3.352 idc:0.000 proble:0000 water_deep:0.000 1332 + 1333 +0003 2025/5/19 06:18:50 3246 in1:low in2:low exti:low status:false vdc:3.352 idc:0.000 proble:0000 water_deep:0.000 1334 + 1335 +0004 2025/5/19 06:19:50 3246 in1:low in2:low exti:low status:false vdc:3.352 idc:0.000 proble:0000 water_deep:0.000 1336 + 1337 +0005 2025/5/19 06:20:50 3246 in1:low in2:low exti:low status:false vdc:3.352 idc:0.000 proble:0000 water_deep:0.000 1338 + 1339 +0006 2025/5/19 06:21:50 3246 in1:low in2:low exti:low status:false vdc:3.351 idc:0.000 proble:0000 water_deep:0.000 1340 + 1341 +0007 2025/5/19 06:22:50 3240 in1:low in2:low exti:low status:false vdc:3.351 idc:0.000 proble:0000 water_deep:0.000 1342 + 1343 +0008 2025/5/19 06:26:44 3276 in1:low in2:low exti:low status:false vdc:3.385 idc:0.000 proble:0000 water_deep:0.000 1344 + 1345 +0009 2025/5/19 06:27:36 3246 in1:low in2:low exti:low status:false vdc:3.351 idc:0.000 proble:0000 water_deep:0.000 1346 + 1347 +0010 2025/5/19 06:28:36 3240 in1:low in2:low exti:low status:false vdc:3.351 idc:0.000 proble:0000 water_deep:0.000 1348 + 1349 +Start Tx events 1350 + 1351 +OK 1352 +))) 1353 + 1354 +(% style="color:#4f81bd" %)**Downlink Command:** 1355 + 1356 +No downlink commands for feature 1357 + 1358 + 1359 +== 3.6 Clear Flash Record(Since v1.1.0) == 1360 + 1361 + 1362 +Feature: Clear flash storage for data log feature. 1363 + 1364 +(% style="color:#4f81bd" %)**AT Command: AT+CLRDTA** 1365 + 1366 +(% border="1" cellspacing="3" style="background-color:#f2f2f2; width:503px" %) 1367 +|(% style="background-color:#4f81bd; color:white; width:157px" %)**Command Example**|(% style="background-color:#4f81bd; color:white; width:137px" %)**Function**|(% style="background-color:#4f81bd; color:white; width:209px" %)**Response** 1368 +|(% style="width:155px" %)AT+CLRDTA |(% style="width:134px" %)Clear date record|(% style="width:209px" %)((( 1369 +Clear all stored sensor data… 1370 + 1371 +OK 1372 +))) 1373 + 1374 +(% style="color:#4f81bd" %)**Downlink Command: 0xA3** 1375 + 1376 +* Example: 0xA301 ~/~/ Same as AT+CLRDTA 1377 + 1241 1241 = 4. Battery & Power Consumption = 1242 1242 1243 1243 ... ... @@ -1302,6 +1302,30 @@ 1302 1302 [[image:image-20240329175044-1.png]] 1303 1303 1304 1304 1442 +== 6.5 Cable & Probe Material Compatibility(Immersion type) == 1443 + 1444 + 1445 +Since the installation method of immersion sensors requires immersion in a liquid environment, the discussion of liquids that can be safely installed is very important. 1446 + 1447 +(% style="color:blue" %)**The material of the immersed part of the immersion sensor:** 1448 + 1449 +* **Cable Jacket**: Black polyurethane (PU) – Resistant to water, oils, and mild chemicals. 1450 +* **Probe Material**: 316 stainless steel – Corrosion-resistant in most industrial/marine environments. 1451 + 1452 +(% style="color:blue" %)**Chemical Compatibility:** 1453 + 1454 +* **Polyurethane (PU) Cable:** Resists water, oils, fuels, and mild chemicals but may degrade with prolonged exposure to strong acids, bases, or solvents (e.g., acetone, chlorinated hydrocarbons). 1455 +* 3**16 Stainless Steel Probe:** Suitable for water, seawater, mild acids/alkalis, and industrial fluids. Avoid highly concentrated acids (e.g., hydrochloric acid) or chlorides at high temperatures. 1456 + 1457 +**Chemical Resistance Chart for Polyurethane (PU) Cable** 1458 + 1459 +[[image:image-20250603171424-1.png||height="429" width="625"]] 1460 + 1461 +**Chemical Resistance Chart for 316 Stainless Steel Probe** 1462 + 1463 +[[image:image-20250603171503-2.png||height="350" width="616"]] 1464 + 1465 + 1305 1305 = 7. Troubleshooting = 1306 1306 1307 1307 == 7.1 Water Depth Always shows 0 in payload ==
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