Changes for page NDDS75 -- NB-IoT Distance Detect Sensor User Manual
Last modified by Bei Jinggeng on 2024/05/31 09:53
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... ... @@ -1,1 +1,1 @@ 1 -NS E01-NB-IoTSoil Moisture&ECSensor User Manual1 +NDDS75 NB-IoT Distance Detect Sensor User Manual - Content
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... ... @@ -1,16 +1,10 @@ 1 1 (% style="text-align:center" %) 2 -[[image:image-20220 606151504-2.jpeg||height="554" width="554"]]2 +[[image:image-20220709085040-1.png||height="542" width="524"]] 3 3 4 4 5 5 6 6 7 7 8 - 9 - 10 - 11 - 12 - 13 - 14 14 **Table of Contents:** 15 15 16 16 {{toc/}} ... ... @@ -20,56 +20,63 @@ 20 20 21 21 22 22 23 - 24 24 = 1. Introduction = 25 25 26 -== 1.1 What is LoRaWANoilMoisture&ECSensor ==19 +== 1.1 What is NDDS75 Distance Detection Sensor == 27 27 28 28 ((( 29 29 30 30 31 31 ((( 32 -Dragino NSE01 is an (% style="color:blue" %)**NB-IOT soil moisture & EC sensor**(%%) for agricultural IoT. Used to measure the soil moisture of saline-alkali soil and loam. The soil sensor uses the FDR method to calculate soil moisture and compensates it with soil temperature and electrical conductivity. It has also been calibrated for mineral soil types at the factory. 25 +((( 26 +The Dragino NDDS75 is a (% style="color:blue" %)**NB-IoT Distance Detection Sensor**(%%) for Internet of Things solution. It is designed to measure the distance between the sensor and a flat object. The distance detection sensor is a module that uses ultrasonic sensing technology for distance measurement, and temperature compensation is performed internally to improve the reliability of data. 33 33 ))) 34 34 35 35 ((( 36 - Itcandetect(%style="color:blue"%)**SoilMoisture,SoilTemperature andSoilConductivity**(%%), and uploaditsvalue to the serverwirelessly.30 +The NDDS75 can be applied to scenarios such as horizontal distance measurement, liquid level measurement, parking management system, object proximity and presence detection, intelligent trash can management system, robot obstacle avoidance, automatic control, sewer, bottom water level monitoring, etc. It detects the distance between the measured object and the sensor, and uploads the value via wireless to IoT Server via NB-IoT Network. 37 37 ))) 38 38 39 39 ((( 40 -Th ewirelesstechnologyusedin NSE01 allows theevicetosend dataatalowdatarate andreachultra-longdistances,providingultra-long-distance spread spectrumCommunication.34 +NarrowBand-Internet of Things (NB-IoT) is a standards-based low power wide area (LPWA) technology developed to enable a wide range of new IoT devices and services. NB-IoT significantly improves the power consumption of user devices, system capacity and spectrum efficiency, especially in deep coverage. 41 41 ))) 42 42 43 43 ((( 44 -NS E01arepoweredby(% style="color:blue" %)**8500mAhLi-SOCI2**(%%)batteries,which canbesed forup to 5 years.38 +NDDS75 supports different uplink methods include (% style="color:blue" %)**TCP, MQTT, UDP and CoAP** (%%)for different application requirement. 45 45 ))) 46 46 47 - 41 +((( 42 +NDDS75 is powered by (% style="color:blue" %)**8500mAh Li-SOCI2 battery**(%%), It is designed for long term use up to 5 years. (Actually Battery life depends on the use environment, update period & uplink method) 48 48 ))) 49 49 50 -[[image:1654503236291-817.png]] 45 +((( 46 +To use NDDS75, user needs to check if there is NB-IoT coverage in local area and with the bands NDDS75 supports. If the local operate support it, user needs to get a NB-IoT SIM card from local operator and install NDDS75 to get NB-IoT network connection. 47 +))) 48 +))) 51 51 50 + 51 +))) 52 52 53 -[[image:16572 45163077-232.png]]53 +[[image:1657327959271-447.png]] 54 54 55 55 56 - 57 57 == 1.2 Features == 58 58 58 + 59 59 * NB-IoT Bands: B1/B3/B8/B5/B20/B28 @H-FDD 60 -* Monitor Soil Moisture 61 -* Monitor Soil Temperature 62 -* Monitor Soil Conductivity 60 +* Ultra low power consumption 61 +* Distance Detection by Ultrasonic technology 62 +* Flat object range 280mm - 7500mm 63 +* Accuracy: ±(1cm+S*0.3%) (S: Distance) 64 +* Cable Length: 25cm 63 63 * AT Commands to change parameters 64 64 * Uplink on periodically 65 65 * Downlink to change configure 66 66 * IP66 Waterproof Enclosure 67 -* Ultra-Low Power consumption 68 -* AT Commands to change parameters 69 69 * Micro SIM card slot for NB-IoT SIM 70 70 * 8500mAh Battery for long term use 71 71 72 72 73 + 73 73 == 1.3 Specification == 74 74 75 75 ... ... @@ -80,82 +80,96 @@ 80 80 81 81 (% style="color:#037691" %)**NB-IoT Spec:** 82 82 83 -* -B1 @H-FDD: 2100MHz84 -* -B3 @H-FDD: 1800MHz85 -* -B8 @H-FDD: 900MHz86 -* -B5 @H-FDD: 850MHz87 -* -B20 @H-FDD: 800MHz88 -* -B28 @H-FDD: 700MHz84 +* B1 @H-FDD: 2100MHz 85 +* B3 @H-FDD: 1800MHz 86 +* B8 @H-FDD: 900MHz 87 +* B5 @H-FDD: 850MHz 88 +* B20 @H-FDD: 800MHz 89 +* B28 @H-FDD: 700MHz 89 89 90 - Probe(% style="color:#037691" %)**Specification:**91 +(% style="color:#037691" %)**Battery:** 91 91 92 -Measure Volume: Base on the centra pin of the probe, a cylinder with 7cm diameter and 10cm height. 93 +* Li/SOCI2 un-chargeable battery 94 +* Capacity: 8500mAh 95 +* Self Discharge: <1% / Year @ 25°C 96 +* Max continuously current: 130mA 97 +* Max boost current: 2A, 1 second 93 93 94 - [[image:image-20220708101224-1.png]]99 +(% style="color:#037691" %)**Power Consumption** 95 95 101 +* STOP Mode: 10uA @ 3.3v 102 +* Max transmit power: [[350mA@3.3v>>mailto:350mA@3.3v]] 96 96 97 97 105 + 98 98 == 1.4 Applications == 99 99 108 + 109 +* Smart Buildings & Home Automation 110 +* Logistics and Supply Chain Management 111 +* Smart Metering 100 100 * Smart Agriculture 113 +* Smart Cities 114 +* Smart Factory 101 101 102 102 (% class="wikigeneratedid" id="H200B1.5FirmwareChangelog" %) 103 103 104 104 119 + 105 105 == 1.5 Pin Definitions == 106 106 107 107 108 -[[image:16572 46476176-652.png]]123 +[[image:1657328609906-564.png]] 109 109 110 110 126 += 2. Use NDDS75 to communicate with IoT Server = 111 111 112 -= 2. Use NSE01 to communicate with IoT Server = 113 - 114 114 == 2.1 How it works == 115 115 116 116 117 117 ((( 118 -The NS E01is equipped with a NB-IoT module, the pre-loaded firmware in NSE01will get environment data from sensors and send the value to local NB-IoT network via the NB-IoT module. The NB-IoT network will forward this value to IoT server via the protocol defined by NSE01.132 +The NDDS75 is equipped with a NB-IoT module, the pre-loaded firmware in NDDS75 will get environment data from sensors and send the value to local NB-IoT network via the NB-IoT module. The NB-IoT network will forward this value to IoT server via the protocol defined by NDDS75. 119 119 ))) 120 120 121 121 122 122 ((( 123 -The diagram below shows the working flow in default firmware of NS E01:137 +The diagram below shows the working flow in default firmware of NDDS75: 124 124 ))) 125 125 126 -[[image:image-20220708101605-2.png]] 127 - 128 128 ((( 129 129 130 130 ))) 131 131 144 +[[image:1657328659945-416.png]] 132 132 146 +((( 147 + 148 +))) 133 133 134 -== 2.2 Configure the NS E01==150 +== 2.2 Configure the NDDS75 == 135 135 136 - 137 137 === 2.2.1 Test Requirement === 138 138 139 139 140 140 ((( 141 -To use NS E01in your city, make sure meet below requirements:156 +To use NDDS75 in your city, make sure meet below requirements: 142 142 ))) 143 143 144 144 * Your local operator has already distributed a NB-IoT Network there. 145 -* The local NB-IoT network used the band that NS E01supports.160 +* The local NB-IoT network used the band that NDDS75 supports. 146 146 * Your operator is able to distribute the data received in their NB-IoT network to your IoT server. 147 147 148 148 ((( 149 -Below figure shows our testing structure. Here we have NB-IoT network coverage by China Mobile, the band they use is B8. The E01will use CoAP((% style="color:red" %)120.24.4.116:5683)(%%) or raw UDP((% style="color:red" %)120.24.4.116:5601)(%%) or MQTT((% style="color:red" %)120.24.4.116:1883)(%%)or TCP((% style="color:red" %)120.24.4.116:5600)(%%)protocol to send data to the test server164 +Below figure shows our testing structure. Here we have NB-IoT network coverage by China Mobile, the band they use is B8. The NDDS75 will use CoAP((% style="color:red" %)120.24.4.116:5683)(%%) or raw UDP((% style="color:red" %)120.24.4.116:5601)(%%) or MQTT((% style="color:red" %)120.24.4.116:1883)(%%)or TCP((% style="color:red" %)120.24.4.116:5600)(%%)protocol to send data to the test server. 150 150 ))) 151 151 152 152 153 -[[image:16572 49419225-449.png]]168 +[[image:1657328756309-230.png]] 154 154 155 155 156 - 157 157 === 2.2.2 Insert SIM card === 158 158 173 + 159 159 ((( 160 160 Insert the NB-IoT Card get from your provider. 161 161 ))) ... ... @@ -165,28 +165,30 @@ 165 165 ))) 166 166 167 167 168 -[[image:16572 49468462-536.png]]183 +[[image:1657328884227-504.png]] 169 169 170 170 186 +=== 2.2.3 Connect USB – TTL to NDDS75 to configure it === 171 171 172 -=== 2.2.3 Connect USB – TTL to NSE01 to configure it === 173 173 174 174 ((( 175 175 ((( 176 -User need to configure NS E01via serial port to set the (% style="color:blue" %)**Server Address** / **Uplink Topic** (%%)to define where and how-to uplink packets. NSE01support AT Commands, user can use a USB to TTL adapter to connect to NSE01and use AT Commands to configure it, as below.191 +User need to configure NDDS75 via serial port to set the (% style="color:blue" %)**Server Address** / **Uplink Topic** (%%)to define where and how-to uplink packets. NDDS75 support AT Commands, user can use a USB to TTL adapter to connect to NDDS75 and use AT Commands to configure it, as below. 177 177 ))) 178 178 ))) 179 179 195 +[[image:image-20220709092052-2.png]] 180 180 181 -**Connection:** 182 182 183 - background-color:yellow" %)USB TTL GND <~-~-~-~-> GND198 +(% style="color:blue" %)**Connection:** 184 184 185 - (% style="background-color:yellow" %)USB TTL TXD <~-~-~-~->UART_RXD200 + (% style="background-color:yellow" %)**USB TTL GND <~-~-~-~-> GND** 186 186 187 - (% style="background-color:yellow" %)USB TTL RXD <~-~-~-~-> UART_TXD202 +**~ (% style="background-color:yellow" %)USB TTL TXD <~-~-~-~-> UART_RXD(%%)** 188 188 204 +**~ (% style="background-color:yellow" %)USB TTL RXD <~-~-~-~-> UART_TXD(%%)** 189 189 206 + 190 190 In the PC, use below serial tool settings: 191 191 192 192 * Baud: (% style="color:green" %)**9600** ... ... @@ -196,72 +196,87 @@ 196 196 * Flow Control: (% style="color:green" %)**None** 197 197 198 198 ((( 199 -Make sure the switch is in FLASH position, then power on device by connecting the jumper on NS E01. NSE01will output system info once power on as below, we can enter the (% style="color:green" %)**password: 12345678**(%%) to access AT Command input.216 +Make sure the switch is in FLASH position, then power on device by connecting the jumper on NDDS75. NDDS75 will output system info once power on as below, we can enter the (% style="color:green" %)**password: 12345678**(%%) to access AT Command input. 200 200 ))) 201 201 202 -[[image: image-20220708110657-3.png]]219 +[[image:1657329814315-101.png]] 203 203 221 + 204 204 ((( 205 -(% style="color:red" %)Note: the valid AT Commands can be found at: (%%)[[http:~~/~~/www.dr agino.com/downloads/index.php?dir=NB-IoT/NSE01/>>url:http://www.dragino.com/downloads/index.php?dir=NB-IoT/NBSN50/]]223 +(% style="color:red" %)**Note: the valid AT Commands can be found at: **(%%)**[[https:~~/~~/www.dropbox.com/sh/aaq2xcl0bzfu0yd/AAAEAHRa7Io_465ds4Y7-F3aa?dl=0>>https://www.dropbox.com/sh/aaq2xcl0bzfu0yd/AAAEAHRa7Io_465ds4Y7-F3aa?dl=0]]** 206 206 ))) 207 207 208 208 209 - 210 210 === 2.2.4 Use CoAP protocol to uplink data === 211 211 212 -(% style="color:red" %)Note: if you don't have CoAP server, you can refer this link to set up one: (%%)[[http:~~/~~/wiki.dragino.com/xwiki/bin/view/Main/Set%20up%20CoAP%20Server/>>http://wiki.dragino.com/xwiki/bin/view/Main/Set%20up%20CoAP%20Server/]] 213 213 230 +(% style="color:red" %)**Note: if you don't have CoAP server, you can refer this link to set up one: **(%%)**[[http:~~/~~/wiki.dragino.com/xwiki/bin/view/Main/Set%20up%20CoAP%20Server/>>http://wiki.dragino.com/xwiki/bin/view/Main/Set%20up%20CoAP%20Server/]]** 214 214 232 + 233 +((( 215 215 **Use below commands:** 235 +))) 216 216 217 -* (% style="color:blue" %)**AT+PRO=1** (%%) ~/~/ Set to use CoAP protocol to uplink 218 -* (% style="color:blue" %)**AT+SERVADDR=120.24.4.116,5683 ** (%%)~/~/ to set CoAP server address and port 219 -* (% style="color:blue" %)**AT+URI=5,11,"mqtt",11,"coap",12,"0",15,"c=text1",23,"0" ** (%%) ~/~/Set COAP resource path 237 +* ((( 238 +(% style="color:blue" %)**AT+PRO=1** (%%) ~/~/ Set to use CoAP protocol to uplink 239 +))) 240 +* ((( 241 +(% style="color:blue" %)**AT+SERVADDR=120.24.4.116,5683 ** (%%)~/~/ to set CoAP server address and port 242 +))) 243 +* ((( 244 +(% style="color:blue" %)**AT+URI=5,11,"mqtt",11,"coap",12,"0",15,"c=text1",23,"0" ** (%%) ~/~/ Set COAP resource path 220 220 246 + 247 + 248 +))) 249 + 250 +((( 221 221 For parameter description, please refer to AT command set 222 222 223 -[[image:1657249793983-486.png]] 253 + 254 +))) 224 224 256 +[[image:1657330452568-615.png]] 225 225 226 -After configure the server address and (% style="color:green" %)**reset the device**(%%) (via AT+ATZ ), NSE01 will start to uplink sensor values to CoAP server. 227 227 228 -[[image:1657249831934-534.png]] 229 229 260 +((( 261 +After configure the server address and (% style="color:green" %)**reset the device**(%%) (via AT+ATZ ), NDDS75 will start to uplink sensor values to CoAP server. 230 230 263 + 264 +))) 231 231 232 - === 2.2.5 Use UDP protocol to uplink data(Defaultprotocol) ===266 +[[image:1657330472797-498.png]] 233 233 234 -This feature is supported since firmware version v1.0.1 235 235 269 +=== 2.2.5 Use UDP protocol to uplink data(Default protocol) === 236 236 237 -* (% style="color:blue" %)**AT+PRO=2 ** (%%) ~/~/ Set to use UDP protocol to uplink 238 -* (% style="color:blue" %)**AT+SERVADDR=120.24.4.116,5601 ** (%%) ~/~/ to set UDP server address and port 239 -* (% style="color:blue" %)**AT+CFM=1 ** (%%) ~/~/If the server does not respond, this command is unnecessary 240 240 241 -[[image:1657249864775-321.png]] 272 +* (% style="color:blue" %)**AT+PRO=2 ** (%%) ~/~/ Set to use UDP protocol to uplink 273 +* (% style="color:blue" %)**AT+SERVADDR=120.24.4.116,5601 ** (%%) ~/~/ to set UDP server address and port 274 +* (% style="color:blue" %)**AT+CFM=1 ** (%%) ~/~/ If the server does not respond, this command is unnecessary 242 242 276 +[[image:1657330501006-241.png]] 243 243 244 -[[image:1657249930215-289.png]] 245 245 279 +[[image:1657330533775-472.png]] 246 246 247 247 248 248 === 2.2.6 Use MQTT protocol to uplink data === 249 249 250 -This feature is supported since firmware version v110 251 251 285 +* (% style="color:blue" %)**AT+PRO=3 ** (%%) ~/~/ Set to use MQTT protocol to uplink 286 +* (% style="color:blue" %)**AT+SERVADDR=120.24.4.116,1883 ** (%%) ~/~/ Set MQTT server address and port 287 +* (% style="color:blue" %)**AT+CLIENT=CLIENT ** (%%)~/~/ Set up the CLIENT of MQTT 288 +* (% style="color:blue" %)**AT+UNAME=UNAME **(%%)~/~/ Set the username of MQTT 289 +* (% style="color:blue" %)**AT+PWD=PWD **(%%)~/~/ Set the password of MQTT 290 +* (% style="color:blue" %)**AT+PUBTOPIC=NDDS75_PUB **(%%)~/~/ Set the sending topic of MQTT 291 +* (% style="color:blue" %)**AT+SUBTOPIC=NDDS75_SUB **(%%) ~/~/ Set the subscription topic of MQTT 252 252 253 -* (% style="color:blue" %)**AT+PRO=3 ** (%%) ~/~/Set to use MQTT protocol to uplink 254 -* (% style="color:blue" %)**AT+SERVADDR=120.24.4.116,1883 ** (%%) ~/~/Set MQTT server address and port 255 -* (% style="color:blue" %)**AT+CLIENT=CLIENT ** (%%)~/~/Set up the CLIENT of MQTT 256 -* (% style="color:blue" %)**AT+UNAME=UNAME **(%%)~/~/Set the username of MQTT 257 -* (% style="color:blue" %)**AT+PWD=PWD **(%%)~/~/Set the password of MQTT 258 -* (% style="color:blue" %)**AT+PUBTOPIC=NSE01_PUB **(%%)~/~/Set the sending topic of MQTT 259 -* (% style="color:blue" %)**AT+SUBTOPIC=NSE01_SUB **(%%) ~/~/Set the subscription topic of MQTT 260 - 261 261 [[image:1657249978444-674.png]] 262 262 263 263 264 -[[image:16572 49990869-686.png]]296 +[[image:1657330723006-866.png]] 265 265 266 266 267 267 ((( ... ... @@ -269,230 +269,306 @@ 269 269 ))) 270 270 271 271 272 - 273 273 === 2.2.7 Use TCP protocol to uplink data === 274 274 275 -This feature is supported since firmware version v110 276 276 307 +* (% style="color:blue" %)**AT+PRO=4 ** (%%) ~/~/ Set to use TCP protocol to uplink 308 +* (% style="color:blue" %)**AT+SERVADDR=120.24.4.116,5600 **(%%) ~/~/ to set TCP server address and port 277 277 278 -* (% style="color:blue" %)**AT+PRO=4 ** (%%) ~/~/ Set to use TCP protocol to uplink 279 -* (% style="color:blue" %)**AT+SERVADDR=120.24.4.116,5600 **(%%) ~/~/ to set TCP server address and port 310 +[[image:image-20220709093918-1.png]] 280 280 281 -[[image:1657250217799-140.png]] 282 282 313 +[[image:image-20220709093918-2.png]] 283 283 284 -[[image:1657250255956-604.png]] 285 285 286 - 287 - 288 288 === 2.2.8 Change Update Interval === 289 289 318 + 290 290 User can use below command to change the (% style="color:green" %)**uplink interval**. 291 291 292 -* (% style="color:blue" %)**AT+TDC=600 ** (%%)~/~/ Set Update Interval to 600s 321 +* (% style="color:blue" %)**AT+TDC=600 ** (%%)~/~/ Set Update Interval to 600s 293 293 294 294 ((( 324 + 325 + 326 + 295 295 (% style="color:red" %)**NOTE:** 296 -))) 297 297 298 -((( 299 -(% style="color:red" %)1. By default, the device will send an uplink message every 1 hour. 329 +(% style="color:red" %)**1. By default, the device will send an uplink message every 1 hour.** 330 + 331 +(% style="color:red" %)**2. When the firmware version is v1.3.2 and later firmware:** 300 300 ))) 301 301 334 +(% style="color:red" %)**By default, the device will send an uplink message every 2 hours. Each Uplink Include 8 set of records in this 2 hour (15 minute interval / record).** 302 302 303 303 304 304 == 2.3 Uplink Payload == 305 305 306 - Inthismode,uplink payload includesin total18bytes339 +=== 2.3.1 Before Firmware v1.3.2 === 307 307 308 -(% border="1" cellspacing="10" style="background-color:#ffffcc; color:green; width:510px" %) 341 + 342 +In this mode, uplink payload includes in total 14 bytes 343 + 344 +(% border="1" cellspacing="10" style="background-color:#ffffcc; color:green; width:440px" %) 309 309 |=(% style="width: 60px;" %)((( 310 310 **Size(bytes)** 311 -)))|=(% style="width: 50px;" %)**6**|=(% style="width:25px;" %)2|=(% style="width:25px;" %)**2**|=(% style="width:70px;" %)**1**|=(% style="width:60px;" %)**2**|=(% style="width: 80px;" %)**2**|=(% style="width:90px;" %)**2**|=(% style="width: 50px;" %)**1**312 -|(% style="width:97px" %)**Value**|(% style="width:83px" %)[[Device ID>>||anchor="H2.4.1A0A0DeviceID"]]|(% style="width:41px" %)[[Ver>>||anchor="H2.4.2A0VersionInfo"]]|(% style="width:46px" %)[[BAT>>||anchor="H2.4.3A0BatteryInfo"]]|(% style="width:123px" %)[[Signal Strength>>||anchor="H2.4.4A0SignalStrength"]]|(% style="width:10 8px" %)[[Soil Moisture>>||anchor="H2.4.5A0SoilMoisture"]]|(%style="width:133px"%)[[Soil Temperature>>||anchor="H2.4.6A0SoilTemperature"]]|(%style="width:159px" %)[[Soil Conductivity(EC)>>||anchor="H2.4.7A0SoilConductivity28EC29"]]|(% style="width:80px" %)[[Interrupt>>||anchor="H2.4.8A0DigitalInterrupt"]]347 +)))|=(% style="width: 60px;" %)**6**|=(% style="width: 35px;" %)2|=(% style="width: 35px;" %)**2**|=(% style="width: 80px;" %)**1**|=(% style="width: 100px;" %)**2**|=(% style="width: 60px;" %)**1** 348 +|(% style="width:97px" %)**Value**|(% style="width:83px" %)[[Device ID>>||anchor="H2.4.1A0A0DeviceID"]]|(% style="width:41px" %)[[Ver>>||anchor="H2.4.2A0VersionInfo"]]|(% style="width:46px" %)[[BAT>>||anchor="H2.4.3A0BatteryInfo"]]|(% style="width:123px" %)[[Signal Strength>>||anchor="H2.4.4A0SignalStrength"]]|(% style="width:120px" %)[[Distance (unit: mm)>>||anchor="H2.4.5A0Distance"]]|(% style="width:80px" %)[[Interrupt>>||anchor="H2.4.6A0DigitalInterrupt"]] 313 313 314 -If we use the MQTT client to subscribe to this MQTT topic, we can see the following information when the NSE01 uplink data. 350 +((( 351 +If we use the MQTT client to subscribe to this MQTT topic, we can see the following information when the NDDS75 uplink data. 352 +))) 315 315 316 316 317 -[[image: image-20220708111918-4.png]]355 +[[image:1657331036973-987.png]] 318 318 319 319 320 -The payload is ASCII string, representative same HEX: 358 +The payload is **ASCII** string, representative same HEX: 321 321 322 -0x72403155615900640c 7817075e0a8c02f900where:360 +(% style="background-color:yellow" %)**0x 724031556159 0064 0c6c 19 0292 00 ** 323 323 324 -* Device ID: 0x 724031556159 = 724031556159 325 -* Version: 0x0064=100=1.0.0 362 +**where :** 326 326 327 -* BAT: 0x0c78 = 3192 mV = 3.192V 328 -* Singal: 0x17 = 23 329 -* Soil Moisture: 0x075e= 1886 = 18.86 % 330 -* Soil Temperature:0x0a8c =2700=27 °C 331 -* Soil Conductivity(EC) = 0x02f9 =761 uS /cm 332 -* Interrupt: 0x00 = 0 364 +* (% style="color:#037691" %)**Device ID:**(%%) 0x724031556159 = 724031556159 333 333 366 +* (% style="color:#037691" %)**Version:**(%%) 0x0064=100=1.0.0 334 334 335 - ==2.4Payload ExplanationandSensorInterface==368 +* (% style="color:#037691" %)**BAT:** (%%) 0x0c6c = 3180 mV = 3.180V 336 336 370 +* (% style="color:#037691" %)**Signal:**(%%) 0x19 = 25 337 337 338 - ===2.4.1eviceID===372 +* (% style="color:#037691" %)**Distance:** (%%)0x0292= 658 mm 339 339 340 - Bydefault,theDevice ID equalto thelast6bytesof IMEI.374 +* (% style="color:#037691" %)**Interrupt:**(%%) 0x00 = 0 341 341 342 -User can use (% style="color:blue" %)**AT+DEUI**(%%) to set Device ID 343 343 344 -**Example:** 345 345 346 - AT+DEUI=A84041F15612378 +=== 2.3.2 Since firmware v1.3.2 === 347 347 348 -The Device ID is stored in a none-erase area, Upgrade the firmware or run AT+FDR won't erase Device ID. 349 349 381 +In this mode, uplink payload includes 69 bytes in total by default. 350 350 383 +Each time the device uploads a data package, 8 sets of recorded data will be attached. Up to 32 sets of recorded data can be uploaded. 351 351 352 -=== 2.4.2 Version Info === 385 +(% border="1" style="background-color:#ffffcc; color:green; width:490px" %) 386 +|=(% scope="row" style="width: 60px;" %)**Size(bytes)**|(% style="width:40px" %)**8**|(% style="width:25px" %)**2**|(% style="width:25px" %)**2**|(% style="width:60px" %)**1**|(% style="width:25px" %)**1**|(% style="width:40px" %)**1**|(% style="width:40px" %)**2**|(% style="width:70px" %)**4**|(% style="width:40px" %)**2**|(% style="width:60px" %)**4** 387 +|=(% style="width: 95px;" %)**Value**|(% style="width:84px" %)Device ID|(% style="width:44px" %)Ver|(% style="width:48px" %)BAT|(% style="width:123px" %)Signal Strength|(% style="width:55px" %)MOD|(% style="width:80px" %)Interrupt|(% style="width:77px" %)Distance|(% style="width:94px" %)Timestamp|(% style="width:77px" %)Distance|(% style="width:116px" %)Timestamp....... 353 353 354 - Specifythe softwareversion:0x64=100,means firmwareversion1.00.389 +If we use the MQTT client to subscribe to this MQTT topic, we can see the following information when the NDDS75 uplink data. 355 355 356 - For example:0x00 64 : this device is NSE01 with firmwareversion 1.0.0.391 +[[image:image-20220908175246-1.png]] 357 357 358 358 394 +The payload is ASCII string, representative same HEX: 359 359 360 -= ==2.4.3BatteryInfo ===396 +**0x (% style="color:red" %)f867787050213317 (% style="color:blue" %)0084 (% style="color:green" %)0cf4 (% style="color:#00b0f0" %)1e (% style="color:#7030a0" %)01 (% style="color:#d60093" %)00(% style="color:#a14d07" %) 0039 (% style="color:#0020b0" %)6315537b (% style="color:#663300" %)00396319baf0 00396319ba3c 00396319b988 00396319b8d4 00396319b820 00396319b76c 00396319b6b8 00396319b604 (%%)** 361 361 398 +**where:** 399 + 400 +* (% style="color:#037691" %)**Device ID:**(%%) f867787050213317 = f867787050213317 401 + 402 +* (% style="color:#037691" %)**Version:**(%%) 0x0084=132=1.3.2 403 + 404 +* (% style="color:#037691" %)**BAT:**(%%) 0x0cf4 = 3316 mV = 3.316V 405 + 406 +* (% style="color:#037691" %)**Singal:**(%%) 0x1e = 30 407 + 408 +* (% style="color:#037691" %)**Mod:**(%%)** **0x01 = 1 409 + 410 +* (% style="color:#037691" %)**Interrupt:**(%%) 0x00= 0 411 + 412 +* (% style="color:#037691" %)**Distance:**(%%) 0x0039= 57 = 57 413 + 414 +* (% style="color:#037691" %)**Time stamp:**(%%) 0x6315537b =1662342011 ([[Unix Epoch Time>>url:http://www.epochconverter.com/]]) 415 + 416 +* (% style="color:#037691" %)**Distance,Time stamp:**(%%) 00396319baf0 417 + 418 +* (% style="color:#037691" %)**8 sets of recorded data: Distance,Time stamp :**(%%) //**00396319ba3c**//,....... 419 + 420 + 421 + 422 +== 2.4 Payload Explanation and Sensor Interface == 423 + 424 +=== 2.4.1 Device ID === 425 + 426 + 362 362 ((( 363 - CheckthebatteryvoltageforLSE01.428 +By default, the Device ID equal to the last 6 bytes of IMEI. 364 364 ))) 365 365 366 366 ((( 367 -Ex1: 0x0B45 = 2885mV 432 +User can use (% style="color:blue" %)**AT+DEUI**(%%) to set Device ID 433 + 434 + 368 368 ))) 369 369 370 370 ((( 371 - Ex2:0x0B49=2889mV438 +(% style="color:blue" %)**Example :** 372 372 ))) 373 373 441 +((( 442 +AT+DEUI=A84041F15612 443 +))) 374 374 445 +((( 446 +The Device ID is stored in a none-erase area, Upgrade the firmware or run (% style="color:blue" %)**AT+FDR**(%%) won't erase Device ID. 447 +))) 375 375 376 -=== 2.4.4 Signal Strength === 377 377 378 - NB-IoTNetworksignalStrength.450 +(% style="color:red" %)**NOTE: When the firmware version is v1.3.2 and later firmware:** 379 379 380 -** Ex1:0x1d=29**452 +(% style="color:red" %)**By default, the Device ID equal to the last 15 bits of IMEI.** 381 381 382 -(% style="color:blue" %)** 0**(%%)-113dBmorless454 +User can use (% style="color:blue" %)**AT+DEUI**(%%) to set Device ID 383 383 384 -(% style="color:blue" %)**1**(%%) -111dBm 385 385 386 -(% style="color:blue" %)** 2...30**(%%) -109dBm...-53dBm457 +(% style="color:blue" %)**Example :** 387 387 388 - (% style="color:blue" %)**31** (%%) -51dBm or greater459 +AT+DEUI=868411056754138 389 389 390 -(% style="color:blue" %)**99** (%%) Not known or not detectable 391 391 462 +=== 2.4.2 Version Info === 392 392 393 393 394 -=== 2.4.5 Soil Moisture === 395 - 396 396 ((( 397 - Get the moisturecontent of the soil. The valuerangeof theegisteris0-10000(Decimal),dividethis value by 100 to get the percentageofmoisturein theoil.466 +Specify the software version: 0x64=100, means firmware version 1.00. 398 398 ))) 399 399 400 400 ((( 401 -For example ,ifthedatayou getfrom theregisteris**__0x050xDC__**,themoisturecontentinthe soil is470 +For example: 0x00 64 : this device is NDDS75 with firmware version 1.0.0. 402 402 ))) 403 403 473 + 474 +=== 2.4.3 Battery Info === 475 + 476 + 404 404 ((( 405 - 478 +Ex1: 0x0B45 = 2885mV 406 406 ))) 407 407 408 408 ((( 409 - (% style="color:#4f81bd"%)**05DC(H) = 1500(D)/100=15%.**482 +Ex2: 0x0B49 = 2889mV 410 410 ))) 411 411 412 412 486 +=== 2.4.4 Signal Strength === 413 413 414 -=== 2.4.6 Soil Temperature === 415 415 416 416 ((( 417 - Get the temperature in the soil.Thevaluerange oftheregisteris-4000 - +800(Decimal), divide this value by 100 toget the temperature inthe soil. For example,ifthe data you get from theregister is __**0x09 0xEC**__, the temperature content in the soil is490 +NB-IoT Network signal Strength. 418 418 ))) 419 419 420 420 ((( 421 -**Ex ample**:494 +**Ex1: 0x1d = 29** 422 422 ))) 423 423 424 424 ((( 425 - Ifpayload is 0105H:((0x0105&0x8000)>>15===0),temp=0105(H)/100=2.61 °C498 +(% style="color:blue" %)**0**(%%) -113dBm or less 426 426 ))) 427 427 428 428 ((( 429 - Ifpayload is FF7EH: ((FF7E&0x8000)>>15===1),temp=(FF7E(H)-FFFF(H))/100=-1.29 °C502 +(% style="color:blue" %)**1**(%%) -111dBm 430 430 ))) 431 431 505 +((( 506 +(% style="color:blue" %)**2...30**(%%) -109dBm... -53dBm 507 +))) 432 432 433 - 434 -=== 2.4.7 Soil Conductivity (EC) === 435 - 436 436 ((( 437 - Obtain(% style="color:#4f81bd" %)**__solublesalt concentration__**(%%) in soil or (% style="color:#4f81bd"%)**__soluble ion concentration in liquid fertilizer__**(%%)or(%style="color:#4f81bd" %)**__plantingmedium__**(%%).The value rangeof theregisteris 0 - 20000(Decimal)( Can begreaterthan 20000).510 +(% style="color:blue" %)**31** (%%) -51dBm or greater 438 438 ))) 439 439 440 440 ((( 441 - Forexample, ifthe datayou get from theregisteris __**0x00 0xC8**__,thesoilconductivityis 00C8(H) = 200(D) = 200 uS/cm.514 +(% style="color:blue" %)**99** (%%) Not known or not detectable 442 442 ))) 443 443 517 + 518 +=== 2.4.5 Distance === 519 + 520 + 521 +Get the distance. Flat object range 280mm - 7500mm. 522 + 444 444 ((( 445 - Generally, theEC valueofirrigation water islessthan800uS/cm.524 +For example, if the data you get from the register is **__0x0B 0x05__**, the distance between the sensor and the measured object is 446 446 ))) 447 447 448 448 ((( 449 - 528 +((( 529 +(% style="color:blue" %)** 0B05(H) = 2821(D) = 2821mm.** 450 450 ))) 531 +))) 451 451 452 452 ((( 453 453 454 454 ))) 455 455 456 -=== 2.4. 8Digital Interrupt ===537 +=== 2.4.6 Digital Interrupt === 457 457 458 -Digital Interrupt refers to pin (% style="color:blue" %)**GPIO_EXTI**(%%), and there are different trigger methods. When there is a trigger, the NSE01 will send a packet to the server. 459 459 540 +((( 541 +Digital Interrupt refers to pin (% style="color:blue" %)**GPIO_EXTI**(%%), and there are different trigger methods. When there is a trigger, the NDDS75 will send a packet to the server. 542 +))) 543 + 544 +((( 460 460 The command is: 546 +))) 461 461 462 -(% style="color:blue" %)**AT+INTMOD=3 **(%%) ~/~/(more info about INMOD please refer [[**AT Command Manual**>>url:https://www.dragino.com/downloads/downloads/NB-IoT/NBSN95/DRAGINO_NBSN95-NB_AT%20Commands_v1.1.0.pdf]])**.** 548 +((( 549 +(% style="color:blue" %)**AT+INTMOD=3 **(%%) ~/~/ (more info about INMOD please refer [[**AT Command Manual**>>url:https://www.dragino.com/downloads/downloads/NB-IoT/NBSN95/DRAGINO_NBSN95-NB_AT%20Commands_v1.1.0.pdf]])**.** 550 +))) 463 463 464 464 553 +((( 465 465 The lower four bits of this data field shows if this packet is generated by interrupt or not. Click here for the hardware and software set up. 555 +))) 466 466 467 467 558 +((( 468 468 Example: 560 +))) 469 469 562 +((( 470 470 0x(00): Normal uplink packet. 564 +))) 471 471 566 +((( 472 472 0x(01): Interrupt Uplink Packet. 568 +))) 473 473 474 474 571 +=== 2.4.7 +5V Output === 475 475 476 -=== 2.4.9 +5V Output === 477 477 478 -NSE01 will enable +5V output before all sampling and disable the +5v after all sampling. 574 +((( 575 +NDDS75 will enable +5V output before all sampling and disable the +5v after all sampling. 576 +))) 479 479 480 480 579 +((( 481 481 The 5V output time can be controlled by AT Command. 482 482 582 + 583 +))) 584 + 585 +((( 483 483 (% style="color:blue" %)**AT+5VT=1000** 484 484 588 + 589 +))) 590 + 591 +((( 485 485 Means set 5V valid time to have 1000ms. So the real 5V output will actually have 1000ms + sampling time for other sensors. 593 +))) 486 486 487 487 488 - 489 489 == 2.5 Downlink Payload == 490 490 491 -By default, NSE01 prints the downlink payload to console port. 492 492 493 - [[image:image-20220708133731-5.png]]599 +By default, NDDS75 prints the downlink payload to console port. 494 494 601 +[[image:image-20220709100028-1.png]] 495 495 603 + 496 496 ((( 497 497 (% style="color:blue" %)**Examples:** 498 498 ))) ... ... @@ -526,240 +526,206 @@ 526 526 ))) 527 527 528 528 ((( 529 -If payload = 0x04FF, it will reset the NS E01637 +If payload = 0x04FF, it will reset the NDDS75 530 530 ))) 531 531 532 532 533 533 * (% style="color:blue" %)**INTMOD** 534 534 535 -Downlink Payload: 06000003, Set AT+INTMOD=3 536 - 537 - 538 - 539 -== 2.6 LED Indicator == 540 - 541 541 ((( 542 -The NSE01 has an internal LED which is to show the status of different state. 543 - 544 - 545 -* When power on, NSE01 will detect if sensor probe is connected, if probe detected, LED will blink four times. (no blinks in this step is no probe) 546 -* Then the LED will be on for 1 second means device is boot normally. 547 -* After NSE01 join NB-IoT network. The LED will be ON for 3 seconds. 548 -* For each uplink probe, LED will be on for 500ms. 644 +Downlink Payload: 06000003, Set AT+INTMOD=3 549 549 ))) 550 550 551 551 648 +== 2.6 Distance alarm function(Since firmware v1.3.2) == 552 552 553 553 554 - ==2.7 InstallationinSoil==651 +(% style="color:blue" %)** ➢ AT Command:** 555 555 556 - __**Measurementthesoilsurface**__653 +(% style="color:#037691" %)** AT+ LDDSALARM=min,max** 557 557 558 - Choosethepropermeasuringposition. Avoidthe probe to touch rocks or hardthings. Split the surface soil according to themeasureddeep. Keep the measured as original density. Vertical insert theprobeinto the soil to be measured. Make surenotshake when inserting. [[https:~~/~~/img.alicdn.com/imgextra/i3/2005165265/O1CN010rj9Oh1olPsQxrdUK_!!2005165265.jpg>>url:https://img.alicdn.com/imgextra/i3/2005165265/O1CN010rj9Oh1olPsQxrdUK_!!2005165265.jpg]]655 +² When min=0, and max≠0, Alarm higher than max 559 559 560 - [[image:1657259653666-883.png]]657 +² When min≠0, and max=0, Alarm lower than min 561 561 659 +² When min≠0 and max≠0, Alarm higher than max or lower than min 562 562 563 -((( 564 - 565 565 566 -((( 567 -Dig a hole with diameter > 20CM. 568 -))) 662 +(% style="color:blue" %)** Example:** 569 569 570 -((( 571 -Horizontal insert the probe to the soil and fill the hole for long term measurement. 572 -))) 573 -))) 664 +**AT+ LDDSALARM=260,2000** ~/~/ Alarm when distance lower than 260. 574 574 575 -[[image:1654506665940-119.png]] 576 576 577 -((( 578 - 579 -))) 667 +== 2.7 Set the number of data to be uploaded and the recording time == 580 580 581 581 582 - ==2.8 Firmware Change Log ==670 +(% style="color:blue" %)** ➢ AT Command:** 583 583 672 +* (% style="color:#037691" %)** AT+TR=900** (%%) ~/~/ The unit is seconds, and the default is to record data once every 900 seconds.( The minimum can be set to 180 seconds) 673 +* (% style="color:#037691" %)** AT+NOUD=8** (%%) ~/~/ The device uploads 8 sets of recorded data by default. Up to 32 sets of record data can be uploaded. 584 584 585 - DownloadURL& FirmwareChange log675 + The diagram below explains the relationship between TR, NOUD, and TDC more clearly**:** 586 586 587 -[[ www.dragino.com/downloads/index.php?dir=NB-IoT/NSE01/Firmware/>>url:http://www.dragino.com/downloads/index.php?dir=NB-IoT/NBSN50/Firmware/]]677 +[[image:image-20221009001114-1.png||height="687" width="955"]] 588 588 589 589 590 - UpgradeInstruction: [[Upgrade_Firmware>>||anchor="H5.1200BHowtoUpgradeFirmware"]]680 +== 2.8 Read or Clear cached data == 591 591 592 592 683 +(% style="color:blue" %)** ➢ AT Command:** 593 593 594 -== 2.9 Battery Analysis == 685 +* (% style="color:#037691" %)** AT+CDP ** (%%) ~/~/ Read cached data 686 +* (% style="color:#037691" %)** AT+CDP=0** (%%) ~/~/ Clear cached data 595 595 596 - ===2.9.1Battery Type ===688 +[[image:image-20220908175333-2.png]] 597 597 598 598 599 - TheNSE01 battery is a combination of an 8500mAh Li/SOCI2Battery and a Super Capacitor.Thebattery isnone-rechargeable battery type with a lowdischarge rate (<2% per year). This typeof batteryis commonly used in IoT devices such as water meter.691 +== 2.9 LED Indicator == 600 600 601 601 602 -The batteryisdesignedto last for severalyearsdepends onthe actually useenvironment and updateinterval.694 +The NDDS75 has an internal LED which is to show the status of different state. 603 603 604 604 605 -The battery related documents as below: 697 +* When power on, NDDS75 will detect if sensor probe is connected, if probe detected, LED will blink four times. (no blinks in this step is no probe) 698 +* Then the LED will be on for 1 second means device is boot normally. 699 +* After NDDS75 join NB-IoT network. The LED will be ON for 3 seconds. 700 +* For each uplink probe, LED will be on for 500ms. 606 606 607 -* [[Battery Dimension>>http://www.dragino.com/downloads/index.php?dir=datasheet/Battery/ER26500/]] 608 -* [[Lithium-Thionyl Chloride Battery datasheet>>http://www.dragino.com/downloads/index.php?dir=datasheet/Battery/ER26500/]] 609 -* [[Lithium-ion Battery-Capacitor datasheet>>http://www.dragino.com/downloads/index.php?dir=datasheet/Battery/ER26500/]] 610 - 611 611 ((( 612 - [[image:image-20220708140453-6.png]]703 + 613 613 ))) 614 614 615 615 707 +== 2.10 Firmware Change Log == 616 616 617 -=== 2.9.2 Power consumption Analyze === 618 618 619 619 ((( 620 -D raginobattery poweredproductareall runsin Low Powerode.Wehave anupdatebattery calculator whichbaseon themeasurement of thereal device. User can usethiscalculator to check the battery life and calculate the battery life ifwant touse different transmitinterval.711 +Download URL & Firmware Change log: [[https:~~/~~/www.dropbox.com/sh/3hb94r49iszmstx/AADvSJcXxahEUfxqKWVnZx-La?dl=0>>https://www.dropbox.com/sh/3hb94r49iszmstx/AADvSJcXxahEUfxqKWVnZx-La?dl=0]] 621 621 ))) 622 622 623 - 624 624 ((( 625 -Instruction to use as below:715 +Upgrade Instruction: [[Upgrade Firmware>>||anchor="H5.1200BHowtoUpgradeFirmware"]] 626 626 ))) 627 627 628 -((( 629 -(% style="color:blue" %)**Step 1: **(%%)Downlink the up-to-date DRAGINO_Battery_Life_Prediction_Table.xlsx from: [[https:~~/~~/www.dragino.com/downloads/index.php?dir=LoRa_End_Node/Battery_Analyze/>>url:https://www.dragino.com/downloads/index.php?dir=LoRa_End_Node/Battery_Analyze/]] 630 -))) 631 631 719 +== 2.11 Battery & Power Consumption == 632 632 633 -((( 634 -(% style="color:blue" %)**Step 2: **(%%) Open it and choose 635 -))) 636 636 637 -* ((( 638 -Product Model 639 -))) 640 -* ((( 641 -Uplink Interval 642 -))) 643 -* ((( 644 -Working Mode 645 -))) 722 +NDDS75 uses ER26500 + SPC1520 battery pack. See below link for detail information about the battery info and how to replace. 646 646 647 -((( 648 -And the Life expectation in difference case will be shown on the right. 649 -))) 724 +[[**Battery Info & Power Consumption Analyze**>>url:http://wiki.dragino.com/xwiki/bin/view/Main/How%20to%20calculate%20the%20battery%20life%20of%20Dragino%20sensors%3F/]] . 650 650 651 -[[image:image-20220708141352-7.jpeg]] 652 652 727 += 3. Access NB-IoT Module = 653 653 654 654 655 -=== 2.9.3 Battery Note === 656 - 657 657 ((( 658 - The Li-SICO battery isdesigned formallcurrent/ long periodapplication.It is not good to useahighcurrent,short period transmitmethod.Therecommendedminimum period for use of this batteryis 5 minutes.If youuse a shorter period time totransmit LoRa, then the batterylifemay be decreased.731 +Users can directly access the AT command set of the NB-IoT module. 659 659 ))) 660 660 734 +((( 735 +The AT Command set can refer the BC35-G NB-IoT Module AT Command: [[https:~~/~~/www.dragino.com/downloads/index.php?dir=datasheet/other_vendors/BC35-G/>>url:https://www.dragino.com/downloads/index.php?dir=datasheet/other_vendors/BC35-G/]] 661 661 737 + 738 +))) 662 662 663 - ===2.9.4 Replace the battery ===740 +[[image:1657333200519-600.png]] 664 664 665 -((( 666 -The default battery pack of NSE01 includes a ER26500 plus super capacitor. If user can't find this pack locally, they can find ER26500 or equivalence without the SPC1520 capacitor, which will also work in most case. The SPC can enlarge the battery life for high frequency use (update period below 5 minutes). 667 -))) 668 668 743 += 4. Using the AT Commands = 669 669 745 +== 4.1 Access AT Commands == 670 670 671 -= 3. Access NB-IoT Module = 672 672 673 -((( 674 -Users can directly access the AT command set of the NB-IoT module. 675 -))) 748 +See this link for detail: [[https:~~/~~/www.dropbox.com/sh/aaq2xcl0bzfu0yd/AAAEAHRa7Io_465ds4Y7-F3aa?dl=0>>https://www.dropbox.com/sh/aaq2xcl0bzfu0yd/AAAEAHRa7Io_465ds4Y7-F3aa?dl=0]] 676 676 677 -((( 678 -The AT Command set can refer the BC35-G NB-IoT Module AT Command: [[https:~~/~~/www.dragino.com/downloads/index.php?dir=datasheet/other_vendors/BC35-G/>>url:https://www.dragino.com/downloads/index.php?dir=datasheet/other_vendors/BC35-G/]] 679 -))) 680 680 681 - [[image:1657261278785-153.png]]751 +AT+<CMD>? : Help on <CMD> 682 682 753 +AT+<CMD> : Run <CMD> 683 683 755 +AT+<CMD>=<value> : Set the value 684 684 685 -= 4.UsingtheAT Commands =757 +AT+<CMD>=? : Get the value 686 686 687 -== 4.1 Access AT Commands == 688 688 689 - Seethislink for detail: [[http:~~/~~/www.dragino.com/downloads/index.php?dir=NB-IoT/NSE01/>>url:http://www.dragino.com/downloads/index.php?dir=NB-IoT/NBSN50/]]760 +(% style="color:#037691" %)**General Commands**(%%) 690 690 762 +AT : Attention 691 691 692 -AT +<CMD>? : Helpon <CMD>764 +AT? : Short Help 693 693 694 -AT +<CMD>Run<CMD>766 +ATZ : MCU Reset 695 695 696 -AT+ <CMD>=<value>:Set thevalue768 +AT+TDC : Application Data Transmission Interval 697 697 698 -AT+ <CMD>=?:Getthevalue770 +AT+CFG : Print all configurations 699 699 772 +AT+CFGMOD : Working mode selection 700 700 701 - (%style="color:#037691"%)**GeneralCommands**(%%)774 +AT+INTMOD : Set the trigger interrupt mode 702 702 703 -AT Attention776 +AT+5VT : Set extend the time of 5V power 704 704 705 -AT ?Short Help778 +AT+PRO : Choose agreement 706 706 707 -AT Z: MCU Reset780 +AT+WEIGRE : Get weight or set weight to 0 708 708 709 -AT+ TDC: ApplicationDataTransmissionInterval782 +AT+WEIGAP : Get or Set the GapValue of weight 710 710 711 -AT+ CFG:Print allconfigurations784 +AT+RXDL : Extend the sending and receiving time 712 712 713 -AT+CF GMODWorkingmode selection786 +AT+CNTFAC : Get or set counting parameters 714 714 715 -AT+ INTMODt the triggerinterrupt mode788 +AT+SERVADDR : Server Address 716 716 717 -AT+ 5VT:Set extend the timeof 5V power790 +AT+TR : Get or Set record time" 718 718 719 -AT+P ROChooseagreement792 +AT+APN : Get or set the APN 720 720 721 -AT+ WEIGREweightorset weight to0794 +AT+FBAND : Get or Set whether to automatically modify the frequency band 722 722 723 -AT+ WEIGAPtheGapValueof weight796 +AT+DNSCFG : Get or Set DNS Server 724 724 725 -AT+R XDLExtendthesendingandreceivingtime798 +AT+GETSENSORVALUE : Returns the current sensor measurement 726 726 727 -AT+ CNTFAC:Get orsetcountingparameters800 +AT+NOUD : Get or Set the number of data to be uploaded 728 728 729 -AT+ SERVADDR: ServerAddress802 +AT+CDP : Read or Clear cached data 730 730 804 +AT+LDDSALARM : Get or Set alarm of distance 731 731 806 + 732 732 (% style="color:#037691" %)**COAP Management** 733 733 734 -AT+URI : Resource parameters 809 +AT+URI : Resource parameters 735 735 736 736 737 737 (% style="color:#037691" %)**UDP Management** 738 738 739 -AT+CFM : Upload confirmation mode (only valid for UDP) 814 +AT+CFM : Upload confirmation mode (only valid for UDP) 740 740 741 741 742 742 (% style="color:#037691" %)**MQTT Management** 743 743 744 -AT+CLIENT 819 +AT+CLIENT : Get or Set MQTT client 745 745 746 -AT+UNAME 821 +AT+UNAME : Get or Set MQTT Username 747 747 748 -AT+PWD 823 +AT+PWD : Get or Set MQTT password 749 749 750 -AT+PUBTOPIC 825 +AT+PUBTOPIC : Get or Set MQTT publish topic 751 751 752 -AT+SUBTOPIC 827 +AT+SUBTOPIC : Get or Set MQTT subscription topic 753 753 754 754 755 755 (% style="color:#037691" %)**Information** 756 756 757 -AT+FDR : Factory Data Reset 832 +AT+FDR : Factory Data Reset 758 758 759 -AT+PWORD : Serial Access Password 834 +AT+PWORD : Serial Access Password 760 760 761 761 762 - 763 763 = 5. FAQ = 764 764 765 765 == 5.1 How to Upgrade Firmware == ... ... @@ -774,42 +774,38 @@ 774 774 ))) 775 775 776 776 ((( 777 -(% style="color:red" %)Notice, NS E01and LSE01share the same mother board. They use the same connection and method to update.851 +(% style="color:red" %)**Notice, NDDS75 and LDDS75 share the same mother board. They use the same connection and method to update.** 778 778 ))) 779 779 780 780 781 - 782 782 = 6. Trouble Shooting = 783 783 784 784 == 6.1 Connection problem when uploading firmware == 785 785 786 786 860 +((( 861 +**Please see: **[[http:~~/~~/wiki.dragino.com/xwiki/bin/view/Main/Firmware%20Upgrade%20Instruction%20for%20STM32%20base%20products/#H3.3Troubleshooting>>url:http://wiki.dragino.com/xwiki/bin/view/Main/Firmware%20Upgrade%20Instruction%20for%20STM32%20base%20products/#H3.3Troubleshooting]] 862 +))) 863 + 787 787 (% class="wikigeneratedid" %) 788 788 ((( 789 - (%style="font-size:14px" %)**Please see: **(%%)[[http:~~/~~/wiki.dragino.com/xwiki/bin/view/Main/Firmware%20Upgrade%20Instruction%20for%20STM32%20base%20products/#H3.3Troubleshooting>>http://wiki.dragino.com/xwiki/bin/view/Main/Firmware%20Upgrade%20Instruction%20for%20STM32%20base%20products/#H3.3Troubleshooting||style="background-color: rgb(255, 255, 255); font-size: 14px;"]]866 + 790 790 ))) 791 791 792 - 793 - 794 794 == 6.2 AT Command input doesn't work == 795 795 871 + 796 796 ((( 797 797 In the case if user can see the console output but can't type input to the device. Please check if you already include the (% style="color:green" %)**ENTER**(%%) while sending out the command. Some serial tool doesn't send (% style="color:green" %)**ENTER**(%%) while press the send key, user need to add ENTER in their string. 798 798 ))) 799 799 800 800 801 - 802 802 = 7. Order Info = 803 803 804 804 805 -Part Number**:** (% style="color:#4f81bd" %)**NS E01**880 +Part Number**:** (% style="color:#4f81bd" %)**NSDDS75** 806 806 807 807 808 -(% class="wikigeneratedid" %) 809 -((( 810 - 811 -))) 812 - 813 813 = 8. Packing Info = 814 814 815 815 ((( ... ... @@ -817,8 +817,7 @@ 817 817 818 818 (% style="color:#037691" %)**Package Includes**: 819 819 820 - 821 -* NSE01 NB-IoT Soil Moisture & EC Sensor x 1 890 +* NDDS75 NB-IoT Distance Detect Sensor Node x 1 822 822 * External antenna x 1 823 823 ))) 824 824 ... ... @@ -827,19 +827,20 @@ 827 827 828 828 (% style="color:#037691" %)**Dimension and weight**: 829 829 830 - 831 -* Size: 195 x 125 x 55 mm 832 -* Weight: 420g 899 +* Device Size: 13.0 x 5 x 4.5 cm 900 +* Device Weight: 150g 901 +* Package Size / pcs : 15 x 12x 5.5 cm 902 +* Weight / pcs : 220g 833 833 ))) 834 834 835 835 ((( 836 836 837 837 838 - 839 839 840 840 ))) 841 841 842 842 = 9. Support = 843 843 913 + 844 844 * Support is provided Monday to Friday, from 09:00 to 18:00 GMT+8. Due to different timezones we cannot offer live support. However, your questions will be answered as soon as possible in the before-mentioned schedule. 845 845 * Provide as much information as possible regarding your enquiry (product models, accurately describe your problem and steps to replicate it etc) and send a mail to [[support@dragino.com>>url:http://../../../../../../D:%5C%E5%B8%82%E5%9C%BA%E8%B5%84%E6%96%99%5C%E8%AF%B4%E6%98%8E%E4%B9%A6%5CLoRa%5CLT%E7%B3%BB%E5%88%97%5Csupport@dragino.com]]
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