Changes for page SDI-12-LB/LS -- SDI-12 to LoRaWAN Converter User Manual
Last modified by Mengting Qiu on 2025/07/03 15:42
From version 171.2
edited by Mengting Qiu
on 2025/06/09 14:18
on 2025/06/09 14:18
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To version 166.1
edited by Mengting Qiu
on 2025/06/05 09:19
on 2025/06/05 09:19
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... ... @@ -511,10 +511,8 @@ 511 511 512 512 (% style="color:red" %)**var2**(%%): Wait timeout for return. (unit: second) 513 513 514 -(% style="color:red" %)**var3**(%%): Whether to send //addrD0!// to get return after var2 timeout. 0: Don't Send //addrD0! //; 1: Send //addrD0!//. (% style="color:red" %)**2: Whensetto 2, AT+ALDATAMOD=1 doesnot interceptdatareturnedby the current COMMAND command.(since v1.3.0)**514 +(% style="color:red" %)**var3**(%%): Whether to send //addrD0!// to get return after var2 timeout. 0: Don't Send //addrD0! //; 1: Send //addrD0!//. (% style="color:red" %)**2: The returned data will not be clipped.(since v1.3.0)** 515 515 516 -(% style="color:red" %)**(Function set to 2: When the device is connected to more than two sensors with different sampling addresses, concurrent measurement can be used to reduce data acquisition time and save battery power; for example, when the device is connected to two sensors with different addresses, the concurrent measurement function can be used and the two sensors can collect data at the same time.)** 517 - 518 518 (% style="color:red" %)**var4**(%%): validation check for return. If return invalid, SDI-12-LB/LS will resend this command. Max 3 retries. 519 519 520 520 (% style="color:red" %)**0 **(%%) No validation check; ... ... @@ -679,53 +679,21 @@ 679 679 680 680 (% style="color:red" %)**Notice: Among them, var1, var3, var5, var7, and var9 are the data to be selected for conversion, and var2, var4, var6, var8, and var10 are the number of bytes to be uploaded. The values of var2, var4, var6, var8, and var10 range from 1 to 4.** 681 681 682 -* (% style="color:blue" %)**Downlink Command:** 683 683 684 -Format: Command code (0xAC) followed by up to 20 bytes. 685 - 686 - 687 -Example 1 1:AT+DATACONVx=var1, var2 688 - 689 -Downlink Command:AC x var1 var2 690 - 691 -Example 1 2:AT+DATACONVx=var1, var2+ var3, var4 692 - 693 -Downlink Command:AC x var1 var2 var3 var4 694 - 695 -Example 1 3:AT+DATACONVx=var1, var2+ var3, var4+ var5, var6 696 - 697 -Downlink Command:AC x var1 var2 var3 var4 var5 var6 698 - 699 -Example 1 4:AT+DATACONVx=var1, var2+ var3, var4+ var5, var6+ var7, var8 700 - 701 -Downlink Command:AC x var1 var2 var3 var4 var5 var6 var7 var8 702 - 703 -Example 1 5:AT+DATACONVx=var1, var2+ var3, var4+ var5, var6+ var7, var8+ var9, var10 704 - 705 -Downlink Command:AC x var1 var2 var3 var4 var5 var6 var7 var8 var9 var10 706 - 707 - 708 -Example: 709 - 710 -* Example 1: Downlink Payload: AC 01 01 02 02 02 ~/~/ AT+DATACONV1=1,2+2,2 711 -* Example 2: Downlink Payload: AC 02 01 02 02 02 03 02 ~/~/ AT+DATACONV2=1,2+2,2+3,2 712 - 713 - 714 714 **For example:** 715 715 716 716 This is my configuration: 717 717 718 -[[image:image-202506091 34137-1.png]]685 +[[image:image-20250605091006-1.png]] 719 719 720 720 721 721 * AT+COMMAND1=0C!,0,2,0 After sending the concurrent command of device 0, the data will not be cut, and the next command will be sent immediately. 722 -* AT+COMMAND2=1C!,1,2,0 After sending a concurrent command to device 1, do not truncate the data and wait for one second. (Concurrent commands will be sampled with the command with the longest waiting time; for example, if the waiting time in the current device is set to 1s, the concurrent command will default to a maximum waiting time of 1s.) 723 -* AT+COMMAND3=0D0!,0,0,0 Query the data measured by device 0 724 -* AT+COMMAND4=1D0!,0,0,0 Query the data measured by device 1 689 +* AT+COMMAND2=0M!,1,2,0 After sending the concurrent command of device 0, do not cut the data and wait for one second. (The last concurrent command needs to wait for the measurement time of all sensors) 690 +* AT+COMMAND3=0D0!,0,0,0 Query the data measured by device 0 725 725 726 726 This is the data obtained: 727 727 728 -[[image:image-202506 09134901-2.png]]694 +[[image:image-20250516145402-2.png]] 729 729 730 730 731 731 When using the AT+DATACONVx command, ... ... @@ -733,31 +733,20 @@ 733 733 The data of RETURN3 will be converted into 2 data, the first data is +95, and the second data is +260. 734 734 735 735 * AT+DATACONV3=1,2+2,2 The first data is uploaded as 2 bytes and the second data is uploaded as 2 bytes. The form converted to hexadecimal is as shown above,as below: 736 -* ((( 737 -AT+DATACONV4=1,3+2,2+3,2 The first data uploads 3 bytes, the second data also uploads 2 bytes, and the third data also uploads 2 bytes. The hexadecimal form is shown above and as shown in the following figure: 738 -))) 739 739 740 -[[image:image-202506 09141343-1.png]]703 +[[image:image-20250516144559-1.png]] 741 741 742 - **Forexample,theuplinkpayload as below:**705 +0C90 01 005F 0104 743 743 744 - 0CE40100C6010302DB9900FD0001707 +(% style="color:#037691" %)**BAT**(%%): 0x0c90 = 3216mV = 3.216V 745 745 746 -(% style="color:#037691" %)**BAT**(%%): 0x0CE4 = 3300mV = 3.300V 747 - 748 748 (% style="color:#037691" %)**Payload Version**(%%): 0x01, Means: v1.0 version 749 749 750 -(% style="color:#037691" %)**Data 1: **(%%)0x00 C6(H) =198(D) / 100 =19.8711 +(% style="color:#037691" %)**Data 1: **(%%)0x005F(H) = 95(D) / 100 = 0.95 751 751 752 -(% style="color:#037691" %)**Data 2: **(%%)0x010 3(H) = 259(D) / 10 = 25.9713 +(% style="color:#037691" %)**Data 2: **(%%)0x0104(H) = 260(D) / 10 = 26.0 753 753 754 -(% style="color:#037691" %)**Data 3: **(%%)0x02DB99(H) = 187289(D) / 100 = 1872.89 755 755 756 -(% style="color:#037691" %)**Data 4: **(%%)0x00FD(H) = 253(D) / 10 = 25.3 757 - 758 -(% style="color:#037691" %)**Data 5: **(%%)0x0001(H) = 1(D) = 1 759 - 760 - 761 761 == 2.4 Uplink Payload == 762 762 763 763 === 2.4.1 Device Payload, FPORT~=5 === ... ... @@ -1818,7 +1818,7 @@ 1818 1818 No downlink commands for feature 1819 1819 1820 1820 1821 -== 3.9 Clear Flash Record(Since v1.3.0) == 1776 +=== 3.9 Clear Flash Record(Since v1.3.0) === 1822 1822 1823 1823 1824 1824 Feature: Clear flash storage for data log feature.
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