Changes for page LHT65N -- Manual do sensor de temperatura e umidade LoRaWAN
Last modified by Xiaoling on 2023/07/18 10:12
From version 189.12
edited by Xiaoling
on 2022/08/08 17:01
on 2022/08/08 17:01
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To version 200.1
edited by Bei Jinggeng
on 2022/09/27 09:56
on 2022/09/27 09:56
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... ... @@ -16,6 +16,7 @@ 16 16 17 17 = 1. Introduction = 18 18 19 + 19 19 == 1.1 What is LHT65N Temperature & Humidity Sensor == 20 20 21 21 ... ... @@ -44,6 +44,7 @@ 44 44 ))) 45 45 46 46 48 + 47 47 == 1.2 Features == 48 48 49 49 ... ... @@ -57,15 +57,14 @@ 57 57 * Built-in Temperature & Humidity sensor 58 58 * Optional External Sensors 59 59 * Tri-color LED to indicate working status 60 -* Datalog feature 62 +* Datalog feature (Max 3328 records) 61 61 62 62 63 63 64 - 65 65 == 1.3 Specification == 66 66 67 67 68 -**Built-in Temperature Sensor:** 69 +(% style="color:#037691" %)**Built-in Temperature Sensor:** 69 69 70 70 * Resolution: 0.01 °C 71 71 * Accuracy Tolerance : Typ ±0.3 °C ... ... @@ -72,7 +72,7 @@ 72 72 * Long Term Drift: < 0.02 °C/yr 73 73 * Operating Range: -40 ~~ 85 °C 74 74 75 -**Built-in Humidity Sensor:** 76 +(% style="color:#037691" %)**Built-in Humidity Sensor:** 76 76 77 77 * Resolution: 0.04 %RH 78 78 * Accuracy Tolerance : Typ ±3 %RH ... ... @@ -79,7 +79,7 @@ 79 79 * Long Term Drift: < 0.02 °C/yr 80 80 * Operating Range: 0 ~~ 96 %RH 81 81 82 -**External Temperature Sensor:** 83 +(% style="color:#037691" %)**External Temperature Sensor:** 83 83 84 84 * Resolution: 0.0625 °C 85 85 * ±0.5°C accuracy from -10°C to +85°C ... ... @@ -88,9 +88,9 @@ 88 88 89 89 90 90 91 - 92 92 = 2. Connect LHT65N to IoT Server = 93 93 94 + 94 94 == 2.1 How does LHT65N work? == 95 95 96 96 ... ... @@ -279,8 +279,6 @@ 279 279 * The 8(% _msthash="734578" _msttexthash="21372" _mstvisible="4" %)^^th^^(%%) ~~ 11(% _msthash="734579" _msttexthash="21372" _mstvisible="4" %)^^th^^(%%) byte: the value for external sensor value. The definition is based on external sensor type. (If EXT=0, there won't be these four bytes.) 280 280 281 281 282 - 283 - 284 284 === 2.4.1 Decoder in TTN V3 === 285 285 286 286 ... ... @@ -314,8 +314,6 @@ 314 314 * Battery Voltage =0xCBF6&0x3FFF=0x0BA4=2980mV 315 315 316 316 317 - 318 - 319 319 === 2.4.3 Built-in Temperature === 320 320 321 321 ... ... @@ -328,8 +328,6 @@ 328 328 * Temperature: (0xF5C6-65536)/100=-26.18℃ 329 329 330 330 331 - 332 - 333 333 === 2.4.4 Built-in Humidity === 334 334 335 335 ... ... @@ -338,8 +338,6 @@ 338 338 * Humidity: 0x025C/10=60.4% 339 339 340 340 341 - 342 - 343 343 === 2.4.5 Ext # === 344 344 345 345 ... ... @@ -499,7 +499,6 @@ 499 499 500 500 501 501 502 - 503 503 ==== 2.4.6.3 Ext~=6, ADC Sensor (use with E2 Cable) ==== 504 504 505 505 ... ... @@ -509,7 +509,7 @@ 509 509 510 510 sensor by setting: 511 511 512 -AT+EXT=6,timeout (% _msthash="506085" _msttexthash="8782189" _mstvisible="3" style="color:red" %)Time to power this sensor, from 0 ~~ 65535ms 504 +AT+EXT=6,timeout (% _msthash="506085" _msttexthash="8782189" _mstvisible="3" style="color:red" %)**Time to power this sensor, from 0 ~~ 65535ms** 513 513 514 514 For example: 515 515 ... ... @@ -532,6 +532,7 @@ 532 532 533 533 When the voltage collected by ADC_IN1 is less than the minimum range, the minimum range will be used as the output; Similarly, when the collected voltage is greater than the maximum range, the maximum range will be used as the output. 534 534 527 + 535 535 1) The minimum range is about 0.1V. Each chip has internal calibration, so this value is close to 0.1V 536 536 537 537 [[image:image-20220628151005-5.png]] ... ... @@ -548,6 +548,166 @@ 548 548 549 549 550 550 544 +==== 2.4.6.4 Ext~=2 TMP117 Sensor (since v1.3) ==== 545 + 546 +[[image:image-20220927095645-1.png||height="534" width="460"]] 547 + 548 +**Ext=2,Temperature Sensor(TMP117):** 549 + 550 +[[image:image-20220906102307-7.png]] 551 + 552 + 553 +(% style="color:blue" %)**Interrupt Mode and Counting Mode:** 554 + 555 +The external cable NE2 can be use for MOD4 and MOD8 556 + 557 + 558 + 559 + 560 +==== 2.4.6.5 Ext~=4 Interrupt Mode (since v1.3) ==== 561 + 562 + 563 +(% style="color:red" %)**Note: In this mode, 3.3v output will be always ON. LHT65N will send an uplink when there is a trigger.** 564 + 565 + 566 +(% style="color:blue" %)**Interrupt Mode can be used to connect to external interrupt sensors such as:** 567 + 568 +**Case 1: Door Sensor.** 3.3v Out for such sensor is just to detect Open/Close. 569 + 570 + In Open State, the power consumption is the same as if there is no probe 571 + 572 + In Close state, the power consumption will be 3uA higher than normal. 573 + 574 +[[image:image-20220906100852-1.png||height="205" width="377"]] 575 + 576 + 577 +Ext=4,Interrupt Sensor: 578 + 579 +(% border="2" cellpadding="4" cellspacing="4" style="background-color:#ffffcc; color:green; height:6px; width:512px" %) 580 +|(% style="width:117px" %)((( 581 +AT+EXT=4,1 582 +)))|(% style="width:371px" %)((( 583 +Sent uplink packet in both rising and falling interrupt 584 +))) 585 +|(% style="width:117px" %)((( 586 +AT+EXT=4,2 587 +)))|(% style="width:371px" %)((( 588 +Sent uplink packet only in falling interrupt 589 +))) 590 +|(% style="width:117px" %)((( 591 +AT+EXT=4,3 592 +)))|(% style="width:371px" %)((( 593 +Sent uplink packet only in rising interrupt 594 +))) 595 + 596 +Trigger by falling edge: 597 + 598 +[[image:image-20220906101145-2.png]] 599 + 600 + 601 +Trigger by raising edge: 602 + 603 +[[image:image-20220906101145-3.png]] 604 + 605 + 606 + 607 + 608 +==== 2.4.6.6 Ext~=8 Counting Mode(since v1.3) ==== 609 + 610 + 611 +(% style="color:red" %)**Note: In this mode, 3.3v output will be always ON. LHT65N will count for every interrupt and uplink periodically.** 612 + 613 + 614 +(% style="color:blue" %)**Case 1**(%%): Low power consumption Flow Sensor, such flow sensor has pulse output and the power consumption in uA level and can be powered by LHT65N. 615 + 616 +[[image:image-20220906101320-4.png||height="366" width="698"]] 617 + 618 + 619 +(% style="color:blue" %)**Case 2**(%%): Normal Flow Sensor: Such flow sensor has higher power consumption and is not suitable to be powered by LHT65N. It is powered by external power and output <3.3v pulse 620 + 621 +[[image:image-20220906101320-5.png||height="353" width="696"]] 622 + 623 +Ext=8, Counting Sensor ( 4 bytes): 624 + 625 +(% border="2" cellpadding="4" cellspacing="4" style="background-color:#ffffcc; color:green; height:6px; width:381px" %) 626 +|(% style="width:138px" %)((( 627 +AT+EXT=8,0 628 +)))|(% style="width:240px" %)((( 629 +Count at falling interrupt 630 +))) 631 +|(% style="width:138px" %)((( 632 +AT+EXT=8,1 633 +)))|(% style="width:240px" %)((( 634 +Count at rising interrupt 635 +))) 636 +|(% style="width:138px" %)((( 637 +AT+SETCNT=60 638 +)))|(% style="width:240px" %)((( 639 +Sent current count to 60 640 +))) 641 + 642 +[[image:image-20220906101320-6.png]] 643 + 644 + 645 +(% style="color:blue" %)**A2 downlink Command:** 646 + 647 +A2 02: Same as AT+EXT=2 (AT+EXT= second byte) 648 + 649 +A2 06 01 F4: Same as AT+EXT=6,500 (AT+EXT= second byte, third and fourth bytes) 650 + 651 +A2 04 02: Same as AT+EXT=4,2 (AT+EXT= second byte, third byte) 652 + 653 +A2 08 01 00: Same as AT+EXT=8,0 (AT+EXT= second byte, fourth byte) 654 + 655 +A2 08 02 00 00 00 3C: Same as AT+ SETCNT=60 (AT+ SETCNT = 4th byte and 5th byte and 6th byte and 7th byte) 656 + 657 + 658 +(% style="color:blue" %)**Modified ATWOOD command for external sensor TMP117 or DS18B20 temperature alarm.** 659 + 660 + 661 +(% style="color:#037691" %)**AT+WMOD=parameter1,parameter2,parameter3,parameter4** 662 + 663 +(% style="color:#037691" %)**Parameter 1**(%%): Alarm mode: 664 + 665 +0): Cancel 666 + 667 +1): Threshold alarm 668 + 669 +2): Fluctuation alarm 670 + 671 + 672 +(% style="color:#037691" %)** Parameter 2**(%%): Sampling time. Unit: seconds, up to 255 seconds. 673 + 674 +(% style="color:red" %)**Note: When the collection time is less than 60 seconds and always exceeds the set alarm threshold, the sending interval will not be the collection time, but will be sent every 60 seconds.** 675 + 676 + 677 +(% style="color:#037691" %) **Parameter 3 and parameter 4:** 678 + 679 +1): If Alarm Mode is set to 1: Parameter 3 and parameter 4 are valid, as before, they represent low temperature and high temperature. 680 + 681 +Such as AT+WMOD=1,60,45,105, it means high and low temperature alarm. 682 + 683 + 684 +2): If Alarm Mode is set to 2: Parameter 3 is valid, which represents the difference between the currently collected temperature and the last uploaded temperature. 685 + 686 +Such as AT+WMOD=2,10,2,it means that it is a fluctuation alarm. 687 + 688 +If the difference between the current collected temperature and the last Uplin is ±2 degrees, the alarm will be issued. 689 + 690 + 691 +(% style="color:blue" %)** Downlink:** 692 + 693 +0xA5 00 ~-~- AT+WMOD=0. 694 + 695 +0xA5 01 0A 11 94 29 04 ~-~- AT+WMOD=1,10,45,105 (AT+WMOD = second byte, third byte, fourth and fifth bytes divided by 100, sixth and seventh bytes divided by 100 ) 696 + 697 +0xA5 02 0A 02 ~-~- AT+WMOD=2,10,2 (AT+WMOD = second byte, third byte, fourth byte) 698 + 699 +0xA5 FF ~-~- After the device receives it, upload the current alarm configuration (FPORT=8). Such as 01 0A 11 94 29 04 or 02 0A 02. 700 + 701 + 702 + 703 + 551 551 == 2.5 Show data on Datacake == 552 552 553 553 ... ... @@ -611,7 +611,7 @@ 611 611 There are two methods: 612 612 613 613 1. IoT Server sends a downlink LoRaWAN command to [[poll the value>>||anchor="H2.6.4Pollsensorvalue"]] for specifying time range. 614 -1. Set [[PNACKMD=1>>||anchor="H4.13AutoSendNone-ACKmessages"]], LHT65N will wait for ACK for every uplink, when there is no LoRaWAN network, LHT65N will store the sensor data, and it will send all messages after the network recovery. 767 +1. Set [[PNACKMD=1>>||anchor="H4.13AutoSendNone-ACKmessages"]], LHT65N will wait for ACK for every uplink, when there is no LoRaWAN network, LHT65N will mark these records with non-ack message and store the sensor data, and it will send all messages (10s interval) after the network recovery. note: a) LHT65N will do ack check for data records sending to make sure every data arrive server. b) LHT65N will send data in CONFIRMED Mode when PNACKMD=1, but it won't re-transmit the same packet , it will just mark it as NONE-ACK and resend after network is detected. 615 615 616 616 Below is the typical case for the auto-update datalog feature (Set PNACKMD=1) 617 617 ... ... @@ -1099,7 +1099,6 @@ 1099 1099 1100 1100 1101 1101 1102 - 1103 1103 == 2.9 installation == 1104 1104 1105 1105 ... ... @@ -1110,6 +1110,7 @@ 1110 1110 1111 1111 = 3. Sensors and Accessories = 1112 1112 1265 + 1113 1113 == 3.1 E2 Extension Cable == 1114 1114 1115 1115 ... ... @@ -1157,8 +1157,6 @@ 1157 1157 * Working voltage 2.35v ~~ 5v 1158 1158 1159 1159 1160 - 1161 - 1162 1162 = 4. Configure LHT65N via AT command or LoRaWAN downlink = 1163 1163 1164 1164 ... ... @@ -1230,7 +1230,6 @@ 1230 1230 1231 1231 1232 1232 1233 - 1234 1234 == 4.2 Set External Sensor Mode == 1235 1235 1236 1236 ... ... @@ -1256,7 +1256,6 @@ 1256 1256 1257 1257 1258 1258 1259 - 1260 1260 == 4.3 Enable/Disable uplink Temperature probe ID == 1261 1261 1262 1262 ... ... @@ -1289,7 +1289,6 @@ 1289 1289 1290 1290 1291 1291 1292 - 1293 1293 == 4.4 Set Password == 1294 1294 1295 1295 ... ... @@ -1343,7 +1343,6 @@ 1343 1343 1344 1344 1345 1345 1346 - 1347 1347 == 4.7 Set system time == 1348 1348 1349 1349 ... ... @@ -1454,7 +1454,6 @@ 1454 1454 1455 1455 1456 1456 1457 - 1458 1458 == 4.13 Auto Send None-ACK messages == 1459 1459 1460 1460 ... ... @@ -1477,9 +1477,9 @@ 1477 1477 1478 1478 1479 1479 1480 - 1481 1481 = 5. Battery & How to replace = 1482 1482 1628 + 1483 1483 == 5.1 Battery Type == 1484 1484 1485 1485 ... ... @@ -1929,20 +1929,13 @@ 1929 1929 1930 1930 (% style="color:#4f81bd" %)**XX **(%%): The default frequency band 1931 1931 1932 -(% style="color:#4f81bd" %)** **(% style="color:red" %)**AS923**(%%): LoRaWAN AS923 band 1933 - 2078 +* (% style="color:#4f81bd" %)** **(% style="color:red" %)**AS923**(%%): LoRaWAN AS923 band 1934 1934 * (% style="color:#4f81bd" %)** **(% style="color:red" %)**AU915**(%%): LoRaWAN AU915 band 1935 - 1936 1936 * (% style="color:#4f81bd" %)** **(% style="color:red" %)**EU433**(%%): LoRaWAN EU433 band 1937 - 1938 1938 * (% style="color:#4f81bd" %)** **(% style="color:red" %)**EU868**(%%): LoRaWAN EU868 band 1939 - 1940 1940 * (% style="color:#4f81bd" %)** **(% style="color:red" %)**KR920**(%%): LoRaWAN KR920 band 1941 - 1942 1942 * (% style="color:#4f81bd" %)** **(% style="color:red" %)**US915**(%%): LoRaWAN US915 band 1943 - 1944 1944 * (% style="color:#4f81bd" %)** **(% style="color:red" %)**IN865**(%%): LoRaWAN IN865 band 1945 - 1946 1946 * (% style="color:#4f81bd" %)** **(% style="color:red" %)**CN470**(%%): LoRaWAN CN470 band 1947 1947 1948 1948 (% style="color:#4f81bd" %)**YY**(%%): Sensor Accessories ... ... @@ -1981,3 +1981,6 @@ 1981 1981 (1) This device may not cause harmful interference; 1982 1982 1983 1983 (2) this device must accept any interference received, including interference that may cause undesired operation. 2123 + 2124 + 2125 +
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