Last modified by Kilight Cao on 2025/07/23 16:27

From version 100.1
edited by Edwin Chen
on 2023/08/12 22:37
Change comment: There is no comment for this version
To version 53.22
edited by Xiaoling
on 2023/08/02 14:25
Change comment: There is no comment for this version

Summary

Details

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Author
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1 -XWiki.Edwin
1 +XWiki.Xiaoling
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1 -(% class="wikigeneratedid" id="HTableofContents:" %)
1 +(% class="wikigeneratedid" %)
2 2  **Table of Contents:**
3 3  
4 4  {{toc/}}
5 5  
6 6  
7 +
7 7  = 1. The use of this guideline =
8 8  
9 9  
... ... @@ -10,32 +10,20 @@
10 10  This configure instruction is for Dragino NB-IoT models with -NB or -NS suffix, for example DDS75-NB. These models use the same NB-IoT Module **[[BC660K-GL>>https://www.quectel.com/product/lpwa-bc660k-gl-nb2]]** and has the same software structure. The have the same configure instruction to different IoT servers. Use can follow the instruction here to see how to configure to connect to those servers.
11 11  
12 12  
13 -= 2. Attach Network =
14 += 2. Network Connection =
14 14  
15 15  
16 -To attache NB-IoT sensors to NB-IoT Network, You need to:
17 -
18 -1. Get a NB-IoT SIM card from Service Provider. (Not the same as the SIM card we use in mobile phone)
19 -1. Insert the SIM card to Sensor
20 -1. [[Configure APN>>http://wiki.dragino.com/xwiki/bin/view/Main/How%20to%20configure%20APN%20in%20the%20node/]] in the sensor (AT+APN=<APN>)
21 -
22 -[[image:image-20230808205045-1.png||height="293" width="438"]]
23 -
24 -After doing above, the NB-IoT Sensors should be able to attach to NB-IoT network .
25 -
26 26  The -NB and -NS models support (% style="color:blue" %)**LTE Cat NB2**(%%), with below frequency band: multiple frequency bands of (% style="color:blue" %)**B1/B2/B3/B4/B5/B8/B12/B13/B14/B17/B18/B19/B20/B25/B28/B66/B70/B85**(%%) . Make sure you use a the NB-IoT SIM card.
27 27  
28 -(% border="1" cellspacing="4" style="background-color:#f2f2f2; width:878px" %)
29 -|(% style="background-color:#4f81bd; color:white; width:117px" %)**SIM Provider**|(% style="background-color:#4f81bd; color:white; width:151px" %)**AT+APN=**|(% style="background-color:#4f81bd; color:white; width:474px" %)**NB-IoT Coverage**|(% style="background-color:#4f81bd; color:white; width:135px" %)**Comments**
30 -|(% style="width:117px" %)**[[1NCE>>https://1nce.com]]**|(% style="width:151px" %)iot.1nce.net|(% style="width:474px" %)(((
31 -**[[Coverage Reference Link>>https://1nce.com/en-ap/1nce-connect]]**
19 +(% border="1" cellspacing="4" style="background-color:#f2f2f2; width:510px" %)
20 +|(% style="background-color:#4f81bd; color:white" %)**SIM Provider**|(% style="background-color:#4f81bd; color:white" %)**APN**|(% style="background-color:#4f81bd; color:white" %)**NB-IoT Coverage**|(% style="background-color:#4f81bd; color:white" %)**Comments**
21 +|1NCE| | |
22 +|China Mobile| | |
32 32  
33 -Austria, Belgium, Bulgaria, Croatia, Czech Republic, Denmark, Finland, Germany, Great Britain, Greece, Hungary, Ireland, Italy, Latvia, Malta, Netherlands, Norway, Puerto Rico, Russia, Slovak , Republic, Slovenia, Spain, Sweden, Switzerland, Taiwan, USA, US Virgin Islands
34 -)))|(% style="width:135px" %)
35 -|(% style="width:117px" %)China Mobile|(% style="width:151px" %)No need configure|(% style="width:474px" %)China Mainland, HongKong|(% style="width:135px" %)
36 -|(% style="width:117px" %)China Telecom|(% style="width:151px" %)ctnb|(% style="width:474px" %)China Mainland|(% style="width:135px" %)
24 +== 2.1 1NCE SIM Card. ==
37 37  
38 38  
27 +
39 39  = 3. Configure to connect to different servers =
40 40  
41 41  == 3.1 General UDP Connection ==
... ... @@ -116,9 +116,9 @@
116 116  [[image:image-20230802112413-7.png]]
117 117  
118 118  
119 -=== 3.3.2 Simulate with MQTT.fx ===
108 +== 3.3.2 Simulate with MQTT.fx ==
120 120  
121 -==== 3.3.2.1 Establish MQTT Connection ====
110 +=== 3.3.2.1 Establish MQTT Connection ===
122 122  
123 123  
124 124  After we got MQTT Credentials, we can first simulate with PC tool MQTT.fx tool to see if the Credentials and settings are fine.
... ... @@ -136,14 +136,12 @@
136 136  * (% style="color:#037691" %)**Password:**(%%) <Your ThingSpeak MQTT Password>
137 137  
138 138  
139 -==== 3.3.2.2 Publish Data to ThingSpeak Channel ====
128 +=== 3.3.2.2 Publish Data to ThingSpeak Channel ===
140 140  
141 -
142 142  [[image:image-20230802112413-9.png]]
143 143  
144 144  [[image:image-20230802112413-10.png]]
145 145  
146 -
147 147  (% style="color:blue" %)**In MQTT.fx, we can publish below info:**
148 148  
149 149  * (% style="color:#037691" %)**Topic:**(%%) channels/YOUR_CHANNEL_ID/publish
... ... @@ -158,27 +158,27 @@
158 158  [[image:image-20230802112413-11.png]]
159 159  
160 160  
161 -=== 3.3.3 Configure NB-IoT Sensor for connection ===
148 +== 3.3 Configure NB-IoT Sensor for connection ==
162 162  
163 -==== 3.3.3.1 AT Commands: ====
150 +=== 3.3.1 AT Commands: ===
164 164  
165 165  
166 166  In the NB-IoT, we can run below commands so to publish the channels like MQTT.fx
167 167  
168 -* (% style="color:blue" %)**AT+PRO=3,1** (%%) ~/~/ Set to use ThingSpeak Server and Related Payload
155 +* **AT+PRO=3,1**   ~/~/ Set to use ThingSpeak Server and Related Payload
169 169  
170 -* (% style="color:blue" %)**AT+CLIENT=<Your ThingSpeak MQTT ClientID>**
157 +* **AT+CLIENT=<Your ThingSpeak MQTT ClientID>**
171 171  
172 -* (% style="color:blue" %)**AT+UNAME=<Your ThingSpeak MQTT User Name>**
159 +* **AT+UNAME=<Your ThingSpeak MQTT User Name>**
173 173  
174 -* (% style="color:blue" %)**AT+PWD=<Your ThingSpeak MQTT Password>**
161 +* **AT+PWD=<Your ThingSpeak MQTT Password>**
175 175  
176 -* (% style="color:blue" %)**AT+PUBTOPIC=<YOUR_CHANNEL_ID>**
163 +* **AT+PUBTOPIC=<YOUR_CHANNEL_ID>**
177 177  
178 -* (% style="color:blue" %)**AT+SUBTOPIC=<YOUR_CHANNEL_ID>**
165 +* **AT+SUBTOPIC=<YOUR_CHANNEL_ID>**
179 179  
180 180  
181 -==== 3.3.3.2 Uplink Examples ====
168 +=== 3.3.2 Uplink Examples ===
182 182  
183 183  
184 184  For S31-NB
... ... @@ -206,7 +206,7 @@
206 206  For SN50V3-NB
207 207  
208 208  
209 -==== 3.3.3.3 Map fields to sensor value ====
196 +=== 3.3.3 Map fields to sensor value ===
210 210  
211 211  
212 212  When NB-IoT sensor upload to ThingSpeak. The payload already specify which fileds related to which sensor value. Use need to create fileds in Channels Settings. with name so to see the value correctly.
... ... @@ -219,326 +219,334 @@
219 219  
220 220  Below is the NB-IoT Product Table show the mapping.
221 221  
222 -(% border="1" cellspacing="4" style="background-color:#f2f2f2; width:1424px" %)
223 -|(% style="background-color:#4f81bd; width:143px" %) |(% style="background-color:#4f81bd; color:white; width:103px" %)Field1|(% style="background-color:#4f81bd; color:white; width:102px" %)Field2|(% style="background-color:#4f81bd; color:white; width:157px" %)Field3|(% style="background-color:#4f81bd; color:white; width:154px" %)Field4|(% style="background-color:#4f81bd; color:white; width:153px" %)Field5|(% style="background-color:#4f81bd; color:white; width:151px" %)Field6|(% style="background-color:#4f81bd; color:white; width:160px" %)Field7|(% style="background-color:#4f81bd; color:white; width:152px" %)Field8|(% style="background-color:#4f81bd; color:white; width:67px" %)Field9|(% style="background-color:#4f81bd; color:white; width:69px" %)Field10
224 -|(% style="background-color:#4f81bd; color:white; width:143px" %)S31x-NB|(% style="width:103px" %)Temperature |(% style="width:102px" %)Humidity|(% style="width:157px" %)Battery|(% style="width:154px" %)RSSI|(% style="width:153px" %) |(% style="width:151px" %) |(% style="width:160px" %) |(% style="width:152px" %) |(% style="width:67px" %) |(% style="width:69px" %)
225 -|(% style="background-color:#4f81bd; color:white; width:143px" %)SE01-NB|(% style="width:103px" %)Temperature |(% style="width:102px" %)Humidity|(% style="width:157px" %)conduct|(% style="width:154px" %)dielectric_constant|(% style="width:153px" %)Battery|(% style="width:151px" %)RSSI|(% style="width:160px" %) |(% style="width:152px" %) |(% style="width:67px" %) |(% style="width:69px" %)
226 -|(% style="background-color:#4f81bd; color:white; width:143px" %)DDS20-NB|(% style="width:103px" %)distance|(% style="width:102px" %)Battery|(% style="width:157px" %)RSSI|(% style="width:154px" %) |(% style="width:153px" %) |(% style="width:151px" %) |(% style="width:160px" %) |(% style="width:152px" %) |(% style="width:67px" %) |(% style="width:69px" %)
227 -|(% style="background-color:#4f81bd; color:white; width:143px" %)DDS45-NB|(% style="width:103px" %)distance|(% style="width:102px" %)Battery|(% style="width:157px" %)RSSI|(% style="width:154px" %) |(% style="width:153px" %) |(% style="width:151px" %) |(% style="width:160px" %) |(% style="width:152px" %) |(% style="width:67px" %) |(% style="width:69px" %)
228 -|(% style="background-color:#4f81bd; color:white; width:143px" %)DDS75-NB|(% style="width:103px" %)distance|(% style="width:102px" %)Battery|(% style="width:157px" %)RSSI|(% style="width:154px" %) |(% style="width:153px" %) |(% style="width:151px" %) |(% style="width:160px" %) |(% style="width:152px" %) |(% style="width:67px" %) |(% style="width:69px" %)
229 -|(% style="background-color:#4f81bd; color:white; width:143px" %)NMDS120-NB|(% style="width:103px" %)distance|(% style="width:102px" %)Battery|(% style="width:157px" %)RSSI|(% style="width:154px" %) |(% style="width:153px" %) |(% style="width:151px" %) |(% style="width:160px" %) |(% style="width:152px" %) |(% style="width:67px" %) |(% style="width:69px" %)
230 -|(% rowspan="1" style="background-color:#4f81bd; color:white; width:143px" %)SPH01-NB|(% style="width:103px" %)ph|(% style="width:102px" %)Temperature|(% style="width:157px" %)Battery|(% style="width:154px" %)RSSI|(% style="width:153px" %) |(% style="width:151px" %) |(% style="width:160px" %) |(% style="width:152px" %) |(% style="width:67px" %) |(% colspan="1" rowspan="1" style="width:69px" %)
231 -|(% style="background-color:#4f81bd; color:white; width:143px" %)NLM01-NB|(% style="width:103px" %)Humidity|(% style="width:102px" %)Temperature|(% style="width:157px" %)Battery|(% style="width:154px" %)RSSI|(% style="width:153px" %) |(% style="width:151px" %) |(% style="width:160px" %) |(% style="width:152px" %) |(% style="width:67px" %) |(% style="width:69px" %)
232 -|(% style="background-color:#4f81bd; color:white; width:143px" %)NMDS200-NB|(% style="width:103px" %)distance1|(% style="width:102px" %)distance2|(% style="width:157px" %)Battery|(% style="width:154px" %)RSSI|(% style="width:153px" %) |(% style="width:151px" %) |(% style="width:160px" %) |(% style="width:152px" %) |(% style="width:67px" %) |(% style="width:69px" %)
233 -|(% style="background-color:#4f81bd; color:white; width:143px" %)CPN01-NB|(% style="width:103px" %)alarm|(% style="width:102px" %)count|(% style="width:157px" %)door open duration|(% style="width:154px" %)calc flag|(% style="width:153px" %)Battery|(% style="width:151px" %)RSSI|(% style="width:160px" %) |(% style="width:152px" %) |(% style="width:67px" %) |(% style="width:69px" %)
234 -|(% colspan="1" rowspan="1" style="background-color:#4f81bd; color:white; width:143px" %)DS03A-NB|(% colspan="1" rowspan="1" style="width:103px" %)level|(% colspan="1" rowspan="1" style="width:102px" %)alarm|(% colspan="1" rowspan="1" style="width:157px" %)pb14door open num|(% colspan="1" rowspan="1" style="width:154px" %)pb14 last open time|(% colspan="1" rowspan="1" style="width:153px" %)pb15 level status|(% colspan="1" rowspan="1" style="width:151px" %)pb15 alarm status|(% colspan="1" rowspan="1" style="width:160px" %)pb15 door open num|(% colspan="1" rowspan="1" style="width:152px" %)pb15 last open time|(% colspan="1" rowspan="1" style="width:67px" %)Battery|(% colspan="1" rowspan="1" style="width:69px" %)RSSI
235 -|(% colspan="1" rowspan="1" style="background-color:#4f81bd; color:white; width:143px" %)SN50V3-NB mod1|(% colspan="1" rowspan="1" style="width:103px" %)mod|(% colspan="1" rowspan="1" style="width:102px" %)Battery|(% colspan="1" rowspan="1" style="width:157px" %)RSSI|(% colspan="1" rowspan="1" style="width:154px" %)DS18B20 Temp|(% colspan="1" rowspan="1" style="width:153px" %)exit_state/input PA4|(% colspan="1" rowspan="1" style="width:151px" %)adc0|(% colspan="1" rowspan="1" style="width:160px" %)Temperature |(% colspan="1" rowspan="1" style="width:152px" %)Humidity|(% colspan="1" rowspan="1" style="width:67px" %) |(% colspan="1" rowspan="1" style="width:69px" %)
236 -|(% colspan="1" style="background-color:#4f81bd; color:white; width:143px" %)SN50V3-NB mod2|(% colspan="1" style="width:103px" %)mod|(% colspan="1" style="width:102px" %)Battery|(% colspan="1" style="width:157px" %)RSSI|(% colspan="1" style="width:154px" %)DS18B20 Temp|(% colspan="1" style="width:153px" %)exit_state/input PA4|(% colspan="1" style="width:151px" %)adc0|(% colspan="1" style="width:160px" %)distance|(% colspan="1" style="width:152px" %) |(% colspan="1" style="width:67px" %) |(% colspan="1" style="width:69px" %)
237 -|(% colspan="1" style="background-color:#4f81bd; color:white; width:143px" %)SN50V3-NB mod3|(% colspan="1" style="width:103px" %)mod|(% colspan="1" style="width:102px" %)Battery|(% colspan="1" style="width:157px" %)RSSI|(% colspan="1" style="width:154px" %)adc0|(% colspan="1" style="width:153px" %)exit_state/input PA4|(% colspan="1" style="width:151px" %)adc1|(% colspan="1" style="width:160px" %)Temperature|(% colspan="1" style="width:152px" %)Humidity|(% colspan="1" style="width:67px" %)adc4|(% colspan="1" style="width:69px" %)
238 -|(% colspan="1" style="background-color:#4f81bd; color:white; width:143px" %)SN50V3-NB mod4|(% colspan="1" style="width:103px" %)mod|(% colspan="1" style="width:102px" %)Battery|(% colspan="1" style="width:157px" %)RSSI|(% colspan="1" style="width:154px" %)DS18B20 Temp|(% colspan="1" style="width:153px" %)adc0|(% colspan="1" style="width:151px" %)exit_state/input PA4|(% colspan="1" style="width:160px" %)DS18B20 Temp2|(% colspan="1" style="width:152px" %)DS18B20 Temp3|(% colspan="1" style="width:67px" %) |(% colspan="1" style="width:69px" %)
239 -|(% colspan="1" style="background-color:#4f81bd; color:white; width:143px" %)SN50V3-NB mod5|(% colspan="1" style="width:103px" %)mod|(% colspan="1" style="width:102px" %)Battery|(% colspan="1" style="width:157px" %)RSSI|(% colspan="1" style="width:154px" %)DS18B20 Temp|(% colspan="1" style="width:153px" %)adc0|(% colspan="1" style="width:151px" %)exit_state/input PA4|(% colspan="1" style="width:160px" %)Weight|(% colspan="1" style="width:152px" %) |(% colspan="1" style="width:67px" %) |(% colspan="1" style="width:69px" %)
240 -|(% colspan="1" style="background-color:#4f81bd; color:white; width:143px" %)SN50V3-NB mod6|(% colspan="1" style="width:103px" %)mod|(% colspan="1" style="width:102px" %)Battery|(% colspan="1" style="width:157px" %)RSSI|(% colspan="1" style="width:154px" %)count|(% colspan="1" style="width:153px" %) |(% colspan="1" style="width:151px" %) |(% colspan="1" style="width:160px" %) |(% colspan="1" style="width:152px" %) |(% colspan="1" style="width:67px" %) |(% colspan="1" style="width:69px" %)
209 +(% border="1" cellspacing="4" style="width:1386px;background-color:#F2F2F2" %)
210 +|(% style="width:124px;background-color:#4F81BD" %) |(% style="width:91px;background-color:#4F81BD;color:white" %)Field1|(% style="width:102px;background-color:#4F81BD;color:white" %)Field2|(% style="width:159px;background-color:#4F81BD;color:white" %)Field3|(% style="width:153px;background-color:#4F81BD;color:white" %)Field4|(% style="width:152px;background-color:#4F81BD;color:white" %)Field5|(% style="width:148px;background-color:#4F81BD;color:white" %)Field6|(% style="width:164px;background-color:#4F81BD;color:white" %)Field7|(% style="width:152px;background-color:#4F81BD;color:white" %)Field8|(% style="width:66px;background-color:#4F81BD;color:white" %)Field9|(% style="width:66px;background-color:#4F81BD;color:white" %)Field10
211 +|(% style="width:124px;background-color:#4F81BD;color:white" %)S31x-NB|(% style="width:91px" %)Temperature |(% style="width:102px" %)Humidity|(% style="width:159px" %)Battery|(% style="width:153px" %)RSSI|(% style="width:152px" %) |(% style="width:148px" %) |(% style="width:164px" %) |(% style="width:152px" %) |(% style="width:66px" %) |(% style="width:66px" %)
212 +|(% style="width:124px;background-color:#4F81BD;color:white" %)SE01-NB|(% style="width:91px" %)Temperature |(% style="width:102px" %)Humidity|(% style="width:159px" %)conduct|(% style="width:153px" %)dielectric_constant|(% style="width:152px" %)Battery|(% style="width:148px" %)RSSI|(% style="width:164px" %) |(% style="width:152px" %) |(% style="width:66px" %) |(% style="width:66px" %)
213 +|(% style="width:124px;background-color:#4F81BD;color:white" %)DDS20-NB|(% style="width:91px" %)distance|(% style="width:102px" %)Battery|(% style="width:159px" %)RSSI|(% style="width:153px" %) |(% style="width:152px" %) |(% style="width:148px" %) |(% style="width:164px" %) |(% style="width:152px" %) |(% style="width:66px" %) |(% style="width:66px" %)
214 +|(% style="width:124px;background-color:#4F81BD;color:white" %)DDS45-NB|(% style="width:91px" %)distance|(% style="width:102px" %)Battery|(% style="width:159px" %)RSSI|(% style="width:153px" %) |(% style="width:152px" %) |(% style="width:148px" %) |(% style="width:164px" %) |(% style="width:152px" %) |(% style="width:66px" %) |(% style="width:66px" %)
215 +|(% style="width:124px;background-color:#4F81BD;color:white" %)DDS75-NB|(% style="width:91px" %)distance|(% style="width:102px" %)Battery|(% style="width:159px" %)RSSI|(% style="width:153px" %) |(% style="width:152px" %) |(% style="width:148px" %) |(% style="width:164px" %) |(% style="width:152px" %) |(% style="width:66px" %) |(% style="width:66px" %)
216 +|(% style="width:124px;background-color:#4F81BD;color:white" %)NMDS120-NB|(% style="width:91px" %)distance|(% style="width:102px" %)Battery|(% style="width:159px" %)RSSI|(% style="width:153px" %) |(% style="width:152px" %) |(% style="width:148px" %) |(% style="width:164px" %) |(% style="width:152px" %) |(% style="width:66px" %) |(% style="width:66px" %)
217 +|(% rowspan="1" style="width:124px;background-color:#4F81BD;color:white" %)SPH01-NB|(% style="width:91px" %)ph|(% style="width:102px" %)Temperature|(% style="width:159px" %)Battery|(% style="width:153px" %)RSSI|(% style="width:152px" %) |(% style="width:148px" %) |(% style="width:164px" %) |(% style="width:152px" %) |(% style="width:66px" %) |(% colspan="1" rowspan="1" style="width:66px" %)
218 +|(% style="width:124px;background-color:#4F81BD;color:white" %)NLM01-NB|(% style="width:91px" %)Humidity|(% style="width:102px" %)Temperature|(% style="width:159px" %)Battery|(% style="width:153px" %)RSSI|(% style="width:152px" %) |(% style="width:148px" %) |(% style="width:164px" %) |(% style="width:152px" %) |(% style="width:66px" %) |(% style="width:66px" %)
219 +|(% style="width:124px;background-color:#4F81BD;color:white" %)NMDS200-NB|(% style="width:91px" %)distance1|(% style="width:102px" %)distance2|(% style="width:159px" %)Battery|(% style="width:153px" %)RSSI|(% style="width:152px" %) |(% style="width:148px" %) |(% style="width:164px" %) |(% style="width:152px" %) |(% style="width:66px" %) |(% style="width:66px" %)
220 +|(% style="width:124px;background-color:#4F81BD;color:white" %)CPN01-NB|(% style="width:91px" %)alarm|(% style="width:102px" %)count|(% style="width:159px" %)door open duration|(% style="width:153px" %)calc flag|(% style="width:152px" %)Battery|(% style="width:148px" %)RSSI|(% style="width:164px" %) |(% style="width:152px" %) |(% style="width:66px" %) |(% style="width:66px" %)
221 +|(% colspan="1" rowspan="1" style="width:124px;background-color:#4F81BD;color:white" %)DS03A-NB|(% colspan="1" rowspan="1" style="width:91px" %)level|(% colspan="1" rowspan="1" style="width:102px" %)alarm|(% colspan="1" rowspan="1" style="width:159px" %)pb14door open num|(% colspan="1" rowspan="1" style="width:153px" %)pb14 last open time|(% colspan="1" rowspan="1" style="width:152px" %)pb15 level status|(% colspan="1" rowspan="1" style="width:148px" %)pb15 alarm status|(% colspan="1" rowspan="1" style="width:164px" %)pb15 door open num|(% colspan="1" rowspan="1" style="width:152px" %)pb15 last open time|(% colspan="1" rowspan="1" style="width:66px" %)Battery|(% colspan="1" rowspan="1" style="width:66px" %)RSSI
222 +|(% colspan="1" rowspan="1" style="width:124px;background-color:#4F81BD;color:white" %)SN50V3-NB|(% colspan="1" rowspan="1" style="width:91px" %) |(% colspan="1" rowspan="1" style="width:102px" %) |(% colspan="1" rowspan="1" style="width:159px" %) |(% colspan="1" rowspan="1" style="width:153px" %) |(% colspan="1" rowspan="1" style="width:152px" %) |(% colspan="1" rowspan="1" style="width:148px" %) |(% colspan="1" rowspan="1" style="width:164px" %) |(% colspan="1" rowspan="1" style="width:152px" %) |(% colspan="1" rowspan="1" style="width:66px" %) |(% colspan="1" rowspan="1" style="width:66px" %)
223 +|(% colspan="1" rowspan="1" style="width:124px;background-color:#4F81BD;color:white" %)mod1|(% colspan="1" rowspan="1" style="width:91px" %)mod|(% colspan="1" rowspan="1" style="width:102px" %)Battery|(% colspan="1" rowspan="1" style="width:159px" %)RSSI|(% colspan="1" rowspan="1" style="width:153px" %)DS18B20 Temp|(% colspan="1" rowspan="1" style="width:152px" %)exit_state/input PA4|(% colspan="1" rowspan="1" style="width:148px" %)adc0|(% colspan="1" rowspan="1" style="width:164px" %)Temperature |(% colspan="1" rowspan="1" style="width:152px" %)Humidity|(% colspan="1" rowspan="1" style="width:66px" %) |(% colspan="1" rowspan="1" style="width:66px" %)
224 +|(% colspan="1" style="width:124px;background-color:#4F81BD;color:white" %)mod2|(% colspan="1" style="width:91px" %)mod|(% colspan="1" style="width:102px" %)Battery|(% colspan="1" style="width:159px" %)RSSI|(% colspan="1" style="width:153px" %)DS18B20 Temp|(% colspan="1" style="width:152px" %)exit_state/input PA4|(% colspan="1" style="width:148px" %)adc0|(% colspan="1" style="width:164px" %)distance|(% colspan="1" style="width:152px" %) |(% colspan="1" style="width:66px" %) |(% colspan="1" style="width:66px" %)
225 +|(% colspan="1" style="width:124px;background-color:#4F81BD;color:white" %)mod3|(% colspan="1" style="width:91px" %)mod|(% colspan="1" style="width:102px" %)Battery|(% colspan="1" style="width:159px" %)RSSI|(% colspan="1" style="width:153px" %)adc0|(% colspan="1" style="width:152px" %)exit_state/input PA4|(% colspan="1" style="width:148px" %)adc1|(% colspan="1" style="width:164px" %)Temperature|(% colspan="1" style="width:152px" %)Humidity|(% colspan="1" style="width:66px" %)adc4|(% colspan="1" style="width:66px" %)
226 +|(% colspan="1" style="width:124px;background-color:#4F81BD;color:white" %)mod4|(% colspan="1" style="width:91px" %)mod|(% colspan="1" style="width:102px" %)Battery|(% colspan="1" style="width:159px" %)RSSI|(% colspan="1" style="width:153px" %)DS18B20 Temp|(% colspan="1" style="width:152px" %)adc0|(% colspan="1" style="width:148px" %)exit_state/input PA4|(% colspan="1" style="width:164px" %)DS18B20 Temp2|(% colspan="1" style="width:152px" %)DS18B20 Temp3|(% colspan="1" style="width:66px" %) |(% colspan="1" style="width:66px" %)
227 +|(% colspan="1" style="width:124px;background-color:#4F81BD;color:white" %)mod5|(% colspan="1" style="width:91px" %)mod|(% colspan="1" style="width:102px" %)Battery|(% colspan="1" style="width:159px" %)RSSI|(% colspan="1" style="width:153px" %)DS18B20 Temp|(% colspan="1" style="width:152px" %)adc0|(% colspan="1" style="width:148px" %)exit_state/input PA4|(% colspan="1" style="width:164px" %)Weight|(% colspan="1" style="width:152px" %) |(% colspan="1" style="width:66px" %) |(% colspan="1" style="width:66px" %)
228 +|(% colspan="1" style="width:124px;background-color:#4F81BD;color:white" %)mod6|(% colspan="1" style="width:91px" %)mod|(% colspan="1" style="width:102px" %)Battery|(% colspan="1" style="width:159px" %)RSSI|(% colspan="1" style="width:153px" %)count|(% colspan="1" style="width:152px" %) |(% colspan="1" style="width:148px" %) |(% colspan="1" style="width:164px" %) |(% colspan="1" style="width:152px" %) |(% colspan="1" style="width:66px" %) |(% colspan="1" style="width:66px" %)
241 241  
242 242  
243 -== 3.4 [[Datacake>>https://datacake.co/]] ==
244 244  
232 +== 3.4 Datacake ==
245 245  
246 -(% class="wikigeneratedid" %)
247 -Dragino NB-IoT sensors has its template in **[[Datacake>>https://datacake.co/]]** Platform. There are two version for NB Sensor,
234 +== 3.4.1 Define Product ==
248 248  
249 249  
250 -(% class="wikigeneratedid" %)
251 -As example for S31B-NB. there are two versions: S31B-NB-1D and S31B-NB-GE.
237 +Firstly, we need to set the MQTT mode to datacake, and we need to run** AT+PRO=3,2**. This command is set to datacake. After running the command, the device automatically sets the server address, port.
252 252  
253 -* **S31B-NB-1D**: This version have pre-configure DataCake connection. User just need to Power on this device, it will auto connect send data to DataCake Server.
254 -* **S31B-NB-GE**: This verson doesn't have pre-configure Datacake connection. User need to enter the AT Commands to connect to Datacake. See below for instruction.
255 255  
240 +By chosing to add the device under a (% style="color:blue" %)**"New Product"**(%%) you are required to give a name for this product. You can name it something like "My First MQTT Product".
256 256  
257 -=== 3.4.1 Create device ===
242 +[[image:image-20230802112413-14.png]]
258 258  
259 259  
260 -**Add Device** in DataCake.
245 +=== 3.4.2 Create Device ===
261 261  
262 -[[image:image-20230808162301-1.png]]
263 263  
248 +In the second step you have to define the device which should be added to the product.
264 264  
265 -[[image:image-20230808162342-2.png]]
250 +[[image:image-20230802112413-15.png]]
266 266  
252 +Enter a name here (such as "My First MQTT Device") and complete the creation of the device by clicking on the "Next" button.
267 267  
268 -**Choose the correct model** from template.
269 269  
270 -[[image:image-20230808162421-3.png]]
255 +=== 3.4.3 Create Database Fields ===
271 271  
272 272  
273 -**Fill Device ID**. The device ID needs to be filled in with IMEI, and a prefix of** 'f' **needs to be added.
258 +Aftecreating the device, it ilisted in the table of the fleet view. Now open the device by clicking on the entry in the list.
274 274  
275 -[[image:image-20230808163612-7.png]]
260 +You will then see a device view with an empty dashboard. Now, the first thing we want to do is navigate to the Device configuration. To do this, use the tab bar and click on "Configuration".
276 276  
277 -[[image:image-20230808163035-5.png]]
262 +[[image:image-20230802112413-16.png]]
278 278  
279 -[[image:image-20230808163049-6.png]]
264 +[[image:image-20230802112413-17.png]]
280 280  
266 +To create a first database field, please click on the "Add Field" button as marked in the screenshot above.
281 281  
282 -=== 3.4.2 Scan QR code to obtain data ===
268 +This will open another modal asking for some required input for your first field.
283 283  
270 +[[image:image-20230802112413-18.png]]
284 284  
285 -Users can use their phones or computers to scan QR codes to obtain device data information.
272 +[[image:image-20230802112413-19.png]]
286 286  
287 -[[image:image-20230808170051-8.png||height="255" width="259"]]
288 288  
289 -[[image:image-20230808170548-9.png]]
275 +=== 3.4.4 Set up Broker ===
290 290  
291 291  
292 -=== 3.4.2 AT command for connecting to DataCake ===
278 +The broker is running on mqtt.datacake.co on ports 1883 and 8883. Port 1883 is unsecured and should not be used in production environments. Port 8883 uses a CA signed server certificate.
293 293  
280 +You will need an access token to log into the Datacake MQTT Broker. You can use your own personal token or create a token explicitly for individual devices or groups of devices.
294 294  
295 -(% style="color:blue" %)**AT+PRO=2,0**
282 +View your Personal Access Token
296 296  
297 -(% style="color:blue" %)**AT+SERVADDR=67.207.76.90,4445**
284 +You can view your own token via the User-Settings-Menu. You can reach this menu by clicking on "Edit Profile" at the end of the list using the Workspace Selector:
298 298  
286 +[[image:image-20230802112413-20.png]]
299 299  
300 -== 3.5 Node-Red (via MQTT) ==
288 +(% style="color:blue" %)**MQTT Client-ID**
301 301  
302 -=== 3.5.1 Configur[[Node-Red>>http://wiki.dragino.com/xwiki/bin/view/Main/Node-RED/]] ===
290 +The Datacake Broker manages the client IDs internally. Yodo not need tworry about a client ID. If your client optionally supports the specification of a client ID, please leave this specification blank. Your client then creates a randomly generated ID.
303 303  
292 +(% style="color:blue" %)**AT+CLIENT=“Any value”**
304 304  
305 -Take S31-NB UDP protocol as an example.
294 +(% style="color:blue" %)**AT+UNAME=Token**
306 306  
307 -Dragino provides input flow examples for the sensors.
296 +(% style="color:blue" %)**AT+PWD=Token**
308 308  
309 -User can download the required JSON file through Dragino Node-RED input flow template.
298 +[[image:image-20230802112413-21.png]]
310 310  
311 -Download sample JSON file link: [[https:~~/~~/www.dropbox.com/sh/mduw85jcuwsua22/AAAvwPhg9z6dLjJhmZjqBf_ma?dl=0>>url:https://www.dropbox.com/sh/mduw85jcuwsua22/AAAvwPhg9z6dLjJhmZjqBf_ma?dl=0]]
312 312  
313 -We can directly import the template.
301 +=== 3.4.5 Creatyour first Subscription ===
314 314  
315 -The templates for S31-NB and NB95S31B are the same.
316 316  
304 +(% style="color:blue" %)**Subscribe**
317 317  
318 -[[image:image-20230809173127-4.png]]
306 +Data is published according to the following structure:
319 319  
308 +dtck~/~//
320 320  
321 -Please select the NB95S31B template.
310 +Subscribe to topics using this structure to receive messages via MQTT when readings (via API or MQTT) arrive in the Datacake Cloud. Messages are published whenever there is a change to a corresponding database field.
322 322  
323 -[[image:image-20230809173310-5.png]]
324 324  
325 -[[image:image-20230809173438-6.png]]
313 +[[image:image-20230802112413-22.png]]
326 326  
327 -[[image:image-20230809173800-7.png]]
328 328  
316 +[[image:image-20230802112413-23.png]]
329 329  
330 -Successfully imported template.
331 331  
332 -[[image:image-20230809173835-8.png]]
319 +[[image:image-20230802112413-24.png]]
333 333  
334 334  
335 -Users can set UDP port.
322 +(% style="color:blue" %)**example:**
336 336  
337 -[[image:image-20230809174053-9.png]]
324 +AT+PUBTOPIC=dtck-pub/nbmattest/936c0db6-e9a5-4353-9fdb-3f63c8bfce7e/Temperature
338 338  
326 +[[image:image-20230802112413-25.png]]
339 339  
340 -=== 3.5.2 Simulate Connection ===
341 341  
329 +=== 3.4.6 Define Publish Topic ===
342 342  
343 -We have completed the configuration of UDP. We can try sending packets to node red.
344 344  
345 -[[image:image-20230810083934-1.png]]
332 +(% style="color:blue" %)**Publish**
346 346  
347 -[[image:image-20230810084048-2.png]]
334 +To upload data into the Datacake Cloud and into a specific device, you publish the data to the respective topic structure.
348 348  
349 -=== 3.5.3 Configure NB-IoT Sensors ===
336 +Due to the nature of MQTT, the topic prefix differs as follows:
350 350  
338 +dtck-pub~/~//
351 351  
352 -* (% style="color:blue" %)**AT+PRO=2,0(hex format) or 2,1(json format)  **(%%)** **~/~/  Set to UDP Server and  Payload
340 +(% style="color:blue" %)**example:**
353 353  
354 -* (% style="color:blue" %)**AT+SERVADDR=xx.xx.xx.xx,port   **(%%)** **~/~/  Set Server IP and  port
342 +AT+SUBTOPIC=dtck/nbmattest/936c0db6-e9a5-4353-9fdb-3f63c8bfce7e/Temperature
355 355  
356 356  
357 -== 3.6 ThingsBoard.Cloud (via MQTT) ==
345 +=== 3.4.7 upload data ===
358 358  
359 -=== 3.6.1 Configure ThingsBoard ===
360 360  
361 -==== 3.6.1.1 Create Device ====
348 +[[image:image-20230802112413-26.png]]
362 362  
350 +[[image:image-20230802112413-27.png]]
363 363  
364 -Create a New Device in [[ThingsBoard>>url:https://thingsboard.cloud/]]. Record Device Name which is used for MQTT connection.
352 +[[image:image-20230802112413-28.png]]
365 365  
366 -[[image:image-20230802112413-32.png]]
367 367  
355 +== 3.5 Node-Red (via MQTT) ==
368 368  
369 -==== 3.6.1.2 Create Uplink & Downlink Converter ====
357 +=== 3.5.1 Configure Node-Red ===
370 370  
359 +[[image:image-20230802112413-29.png]]
371 371  
372 -(% style="color:blue" %)**Uplink Converter**
361 +[[image:image-20230802112413-30.png]]
373 373  
374 -The purpose of the decoder function is to parse the incoming data and metadata to a format that ThingsBoard can consumedeviceName and deviceType are required, whilattributes and telemetry are optional. Attributes and telemetry are flat key-value objects. Nested objects are not supported.
363 +=== 3.5.2 Simulate Connection ===
375 375  
376 -To create an uplink converter go to the (% style="color:blue" %)**Integrations center**(%%) -> (% style="color:blue" %)**Data converters**(%%) page and click (% style="color:blue" %)**“plus”** (%%)button. Name it (% style="color:blue" %)**“MQTT Uplink Converter”**(%%) and select type (% style="color:blue" %)"**Uplink"**(%%). Use debug mode for now.
377 377  
378 -[[image:image-20230802112413-33.png||height="732" width="1302"]]
366 +[[image:image-20230802112413-31.png]]
379 379  
380 380  
381 -(% style="color:blue" %)**Downlink Converter**
369 +=== 3.5.3 Configure NB-IoT Sensors ===
382 382  
383 -The Downlink converter transforming outgoing RPC message and then the Integration sends it to external MQTT broke
384 384  
385 -[[image:image-20230802112413-34.png||height="734" width="1305"]]
372 +* (% style="color:blue" %)**AT+PRO=3,0(hex format) or 3,5(json format)**(%%)    ~/~/Set to mqtt Server and  Payload
386 386  
387 -(% style="color:red" %)**Note: Our device payload is already human readable data. Therefore, users do not need to write decoders. Simply create by default.**
374 +* (% style="color:blue" %)**AT+CLIENT=anvalue**(%%)
388 388  
376 +* (% style="color:blue" %)**AT+UNAME=any value**(%%)
389 389  
390 -==== 3.6.1.3 MQTT IntegratioSetup ====
378 +* (% style="color:blue" %)**AT+PWD=any value**(%%)
391 391  
380 +* (% style="color:blue" %)**AT+PUBTOPIC=any value**(%%)
392 392  
393 -Go to the (% style="color:blue" %)**Integrations center**(%%) **->** (% style="color:blue" %)**Integrations page**(%%) and click **“(% style="color:blue" %)plus(%%)”** icon to add a new integration. Name it (% style="color:blue" %)**“MQTT Integration”**(%%), select type (% style="color:blue" %)**MQTT**;
382 +* (% style="color:blue" %)**AT+SUBTOPIC=any value**(%%)
394 394  
395 -[[image:image-20230802112413-35.png||height="738" width="1312"]]
396 396  
385 +== 3.6 ThingsBoard.Cloud (via MQTT) ==
397 397  
398 -* The next steps is to add the recently created uplink and downlink converters;
387 +=== 3.6.1 Configure ThingsBoard ===
399 399  
400 -[[image:image-20230802112413-36.png||height="736" width="1308"]]
389 +==== 3.6.1.1 Create Device ====
401 401  
402 -[[image:image-20230802112413-37.png||height="735" width="1307"]]
391 +Create a New Device in [[ThingsBoard>>url:https://thingsboard.cloud/]].
403 403  
393 +[[image:image-20230802112413-32.png]]
404 404  
405 -(% style="color:blue" %)**Add a topic filter:**
395 +==== 3.6.2.2 Create Uplink & Downlink Converter ====
406 406  
407 -tb/mqtt-integration-tutorial/sensors~/~/temperature ~-~-> Temperature  **固定的? 对的。**
397 +(% style="color:blue" %)**Uplink Converter**
408 408  
409 -You caalso select an MQTT QoS level. We usMQTT QoS level 0 (At mosonce) by default;
399 +The purpose of the decoder function is tparse the incoming data and metadata to a format that ThingsBoard can consume. deviceName and deviceType are required, while attributes and telemetry are optional. Attributes and telemetry arflat key-value objects. Nested objects are not supported.
410 410  
411 -[[image:image-20230802112413-38.png||height="731" width="1300"]]
401 +To create an uplink converter go to the Integrations center -> Data converters page and click “plus” button. Name it “MQTT Uplink Converter” and select type Uplink. Use debug mode for now.
412 412  
403 +[[image:image-20230802112413-33.png]]
413 413  
414 -=== 3.6.2 Simulate with MQTT.fx ===
415 415  
406 +(% style="color:blue" %)**Downlink Converter**
416 416  
417 -[[image:image-20230802112413-39.png]]
408 +The Downlink converter transforming outgoing RPC message and then the Integration sends it to external MQTT broke
418 418  
419 -[[image:image-20230802112413-40.png]]
410 +[[image:image-20230802112413-34.png]]
420 420  
412 +(% style="color:red" %)**Note:Our device payload is already human readable data. Therefore, users do not need to write decoders. Simply create by default.**
421 421  
422 -=== 3.6.3 Configure NB-IoT Sensor ===
423 423  
415 +=== 1.1.3 MQTT Integration Setup ===
424 424  
425 -(% style="color:blue" %)**AT Commands**
417 +Go to the Integrations center -> Integrations page and click “plus” icon to add a new integration. Name it “MQTT Integration”, select type MQTT;
426 426  
427 -* (% style="color:#037691" %)**AT+PRO=3,3  **(%%)** **~/~/ Use MQTT to connect to ThingsBoard. Payload Type set to 3.
419 +[[image:image-20230802112413-35.png]]
428 428  
429 -* (% style="color:#037691" %)**AT+SUBTOPIC=<device name>**
421 +* The next steps is to add the recently created uplinand downlink converters;
430 430  
431 -* (% style="color:#037691" %)**AT+PUBTOPIC=<device name>**
423 +[[image:image-20230802112413-36.png]]
432 432  
433 -* (% style="color:#037691" %)**AT+CLIENT=<device name> or User Defined**
425 +[[image:image-20230802112413-37.png]]
434 434  
435 -* (% style="color:#037691" %)**AT+UNAME=<device name> or User Defined**
427 +Add a topic filter:
436 436  
437 -* (% style="color:#037691" %)**AT+PWD=<device name> or User Defined**
438 438  
439 -Test Uplink by click the button for 1 second
430 +tb/mqtt-integration-tutorial/sensors~/~/temperature ~-~-> Temperature 固定的? 对的。
440 440  
441 -[[image:image-20230802112413-41.png]]
432 +You can also select an MQTT QoS level. We use MQTT QoS level 0 (At most once) by default;
442 442  
443 -[[image:image-20230802112413-42.png]]
434 +[[image:image-20230802112413-38.png]]
444 444  
445 -[[image:image-20230802112413-43.png]]
436 +== 1.2 Simulate with MQTT.fx ==
446 446  
438 +[[image:image-20230802112413-39.png]]
447 447  
448 -== 3.7 [[Tago.io>>url:https://admin.tago.io/]] (via MQTT) ==
440 +[[image:image-20230802112413-40.png]]
449 449  
450 -=== 3.7.1 Create device & Get Credentials ===
442 +== 1.3 Configure NB-IoT Sensor ==
451 451  
444 +AT Commands
452 452  
453 -We use MQTT Connection to send data to [[Tago.io>>url:https://admin.tago.io/]]. We need to Create Device and Get MQTT Credentials first.
446 +AT+PRO=3,3  ~/~/ Use MQTT to connect to ThingsBoard.
454 454  
455 -[[image:image-20230802112413-44.png]]
448 +AT+SUBTOPIC=device name ~-~-> 只需要 Device Name 吗?对的
456 456  
457 -[[image:image-20230802112413-45.png]]
450 +AT+PUBTOPIC=device name ~-~-> 只需要 Device Name 吗?对的
458 458  
459 459  
460 -Go to the Device section and create a device. Then, go to the section tokens and copy your device-token.
453 +Users dnot need tfill in the client, username, and password. But the configuration information of the device requires setting the client, username, and password, which can be entered freely. (软件自动填充为 Device Name 吧).这边不用提示了,客户不需要输入。(大部分客户还是会自己去设置这个的,提高安全性)
461 461  
462 -[[image:image-20230802112413-46.png]]
455 +CLIENT :“Any value
463 463  
457 +User Name:“Any value”
464 464  
465 -The device needs to enable the TLS mode and set the (% style="color:blue" %)**AT+TLSMOD=1,0**(%%) command.
459 +Password:Any value”
466 466  
467 -(% style="color:blue" %)**On the Connection Profile window, set the following information:**
468 468  
469 -* (% style="color:#037691" %)**Profile Name: “Any name”**
462 +Test Uplink by click thbuttofor 1 second
470 470  
471 -* (% style="color:#037691" %)**Broker Address: mqtt.tago.io**
464 +[[image:image-20230802112413-41.png]]
472 472  
473 -* (% style="color:#037691" %)**Broker Port: 8883**
466 +[[image:image-20230802112413-42.png]]
474 474  
475 -* (% style="color:#037691" %)**Client ID: “Any value”**
468 +[[image:image-20230802112413-43.png]]
476 476  
477 -(% style="color:blue" %)**On the section User credentials, set the following information:**
478 478  
479 -* (% style="color:#037691" %)**User Name: “Any value”** (%%) **~/~/ Tago validates your user by the token only**
471 += 7. [[Tago.io>>url:https://admin.tago.io/]] (via MQTT) =
480 480  
481 -* (% style="color:#037691" %)**Password: “Your device token”**
473 +== 5.1 Create device & Get Credentials ==
482 482  
483 -* (% style="color:#037691" %)**PUBTOPIC“Any value”**
475 +We use MQTT Connection to send data to [[Tago.io>>url:https://admin.tago.io/]]. We need to Create Device and Get MQTT Credentials first.
484 484  
485 -* (% style="color:#037691" %)**SUBTOPIC: “Any value”**
477 +[[image:image-20230802112413-44.png]]
486 486  
487 -(% style="color:blue" %)**AT command:**
479 +[[image:image-20230802112413-45.png]]
488 488  
489 -* (% style="color:#037691" %)**AT+PRO=3,0 or 3,5 ** (%%) **~/~/ hex format or json format**
481 += =
490 490  
491 -* (% style="color:#037691" %)**AT+SUBTOPIC=<device name>or User Defined**
483 +Go to the Device section and create a device. Then, go to the section tokens and copy your device-token.
492 492  
493 -* (% style="color:#037691" %)**AT+PUBTOPIC=<device name>or User Defined**
485 +[[image:image-20230802112413-46.png]]
494 494  
495 -* (% style="color:#037691" %)**AT+CLIENT=<device name> or User Defined**
496 496  
497 -* (% style="color:#037691" %)**AT+UNAME=<device name> or User Defined**
488 +On the Connection Profilwindow, set the following information: (这边加一个截图)
498 498  
499 -* (% style="color:#037691" %)**AT+PWD=“Your device token”**
490 +* Profile Name: “Any name”
491 +* Broker Address: mqtt.tago.io
492 +* Broker Port: 1883
493 +* Client ID: “Any value”
500 500  
495 +On the section User credentials, set the following information:(这边加一个截图)
501 501  
502 -=== 3.7.2 Simulate with MQTT.fx ===
497 +* User Name: “Any value” Tago validates your user by the token only
498 +* Password: “Your device token”
499 +* PUBTOPIC: “Any value”
500 +* SUBTOPIC: “Any value”
503 503  
502 +== 5.2 Simulate with MQTT.fx ==
504 504  
505 -[[image:image-20230802112413-52.png]]
504 +[[image:image-20230802112413-47.png]]
506 506  
506 +[[image:image-20230802112413-48.png]]
507 507  
508 -[[image:image-20230808105300-2.png]]
508 +Users can run the AT+PRO=3,5 command, and the payload will be converted to JSON format.
509 509  
510 +[[image:image-20230802112413-49.png]]
510 510  
511 -Users can run the (% style="color:blue" %)**AT+PRO=3,5**(%%) command, and the payload will be converted to **JSON format**.
512 +== 1.4. tago data ==
512 512  
513 -[[image:image-20230808105217-1.png]]
514 514  
515 -[[image:image-20230808105329-3.png]]
516 -
517 -
518 -=== 3.7.3 tago data ===
519 -
520 -
521 521  [[image:image-20230802112413-50.png]]
522 522  
523 -[[image:image-20230802112413-51.png||height="184" width="696"]]
517 +[[image:image-20230802112413-51.png]]
524 524  
519 +== 1.4. TLS mode ==
525 525  
526 -== 3.8 TCP Connection ==
521 +Users can choose to use SSL/TLS mode.
527 527  
523 +On the SSL/TLS section, check the option Enable SSL/TLS, and click OK.
528 528  
529 -(% style="color:blue" %)**AT command:**
525 +The device needs to enable the TLS mode and set the AT+TLSMOD=1,0 command.
530 530  
531 -* (% style="color:#037691" %)**AT+PRO=4,0   ** (%%) ~/~/ Set to use TCP protocol to uplink(HEX format)
527 +* Profile Name: “Any name”
528 +* Broker Address: mqtt.tago.io
529 +* Broker Port: 8883
530 +* Client ID: “Any value”
531 +* User Name: “Any value” Tago validates your user by the token only
532 +* Password: “Your device token”
533 +* PUBTOPIC: “Any value”
534 +* SUBTOPIC: “Any value”
532 532  
533 -* (% style="color:#037691" %)**AT+PRO=4,1   ** (%%) ~/~/ Set to use TCP protocol to uplink(JSON format)
536 +[[image:image-20230802112413-52.png]]
534 534  
535 -* (% style="color:#037691" %)**AT+SERVADDR=120.24.4.116,5600 ** (%%) ~/~/ to set TCP server address and port
536 536  
537 -(% style="color:blue" %)**Sensor Console Output when Uplink:**
538 -
539 -[[image:image-20230807233631-1.png]]
540 -
541 -
542 -(% style="color:blue" %)**See result in TCP Server:**
543 -
544 -[[image:image-20230807233631-2.png]]
539 +
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