<
From version < 200.1 >
edited by Kilight Cao
on 2023/12/04 11:21
To version < 186.1 >
edited by Kilight Cao
on 2023/12/01 17:51
>
Change comment: Uploaded new attachment "image-20231201175118-2.png", version {1}

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848 848  [[image:image-20221012173639-1.png||height="273" width="1206"]]
849 849  
850 850  
851 -= 11.  How to use Chirpstack API to batch register Sensor Node/Gateway in Chistapstack Server =
851 +How to use Chirpstack API to batch register Sensor Node/Gateway in Chistapstack Server
852 852  
853 853  The following example is based on the built-in ChirpStack server for LPS8V2
854 854  
855 -[[image:image-20231201174640-1.png||height="584" width="1148"]]
856 856  
856 += 11.  Example: Use Local Server ChirpStack and Node-Red in LPS8v2 =
857 857  
858 -== **11.1 Generate API Tokens** ==
859 859  
860 -Access the built-in chirpstack , click "API Key" and "Add API Key".
861 -
862 -[[image:image-20231201175118-2.png||height="597" width="1156"]]
863 -
864 -Save the generated API Tokens
865 -
866 -[[image:image-20231201175648-3.png||height="596" width="1155"]]
867 -
868 -[[image:image-20231204104802-1.png]]
869 -
870 -
871 -== **11.2 Template file** ==
872 -
873 -
874 -Click on **"Template File Download"**, the user will download a **register.csv** template file,
875 -
876 -[[image:image-20231204105201-2.png]]
877 -
878 -
879 -Before registering in batches, the user needs to add an **Application** and **Device profile**, If  you have already added them, you do not need to add them again,
880 -
881 -Open the corresponding Application and Device profiles and copy their IDs
882 -
883 -[[image:image-20231204110902-5.png||height="618" width="1197"]]
884 -
885 -[[image:image-20231204111116-7.png||height="619" width="1199"]]
886 -
887 -[[image:image-20231204111834-9.png||height="273" width="1205"]]
888 -
889 -[[image:image-20231204112107-10.png||height="621" width="1203"]]
890 -
891 -
892 -
893 -= 12.  Example: Use Local Server ChirpStack and Node-Red in LPS8v2 =
894 -
895 -
896 896  LPS8v2 includes a local ChirpStack Server and Node-Red. This example shows how to configure LHT65N to use with the local Node-Red server. This example assumes users already have:
897 897  
898 898  * LHT65N register on LPS8v2 Built-In ChirpStack server already
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901 901  Below are the steps to plot the sensor data on LPS8v2 Node-Red.
902 902  
903 903  
904 -== 12.1 Link Node-Red to Local ChirpStack ==
867 +== 11.1 Link Node-Red to Local ChirpStack ==
905 905  
906 906  
907 907  Users can download the Node-Red decoder from this link and import it into the Node-Red platform:  **[[attach:LHT65N-ChirpStack-node-red.json||target="_blank"]]**
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935 935  [[image:http://wiki.dragino.com/xwiki/bin/download/Main/Notes%20for%20TTN/WebHome/image-20220914140918-5.png?width=1121&height=602&rev=1.1||alt="image-20220914140918-5.png"]]
936 936  
937 937  
938 -== 12.2 Check result. ==
901 +== 11.2 Check result. ==
939 939  
940 940  
941 941  Users can check logs by adding debug.
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945 945  [[image:image-20230529150923-1.png||height="424" width="1118"]]
946 946  
947 947  
948 -= 13.  Trouble Shooting =
911 += 12.  Trouble Shooting =
949 949  
950 -== 13.1  MIC Mismatch or MIC Failed ==
913 +== 12.1  MIC Mismatch or MIC Failed ==
951 951  
952 952  
953 953  (((
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958 958  Under normal circumstances, users need to change the APPKEY to solve this problem.
959 959  
960 960  
961 -== 13.2  The node is very close to the gateway, but the signal is poor ==
924 +== 12.2  The node is very close to the gateway, but the signal is poor ==
962 962  
963 963  
964 964  If you are using US915 or AU915, you found the frequency points of different subband ranges in your uplink
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