Changes for page NMDS200 - NB-IoT Microwave Radar Distance Sensor User Manual
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... ... @@ -1,1 +1,1 @@ 1 - CPN01- NB-IoTOutdoorOpen/CloseDryContactSensor User Manual1 +NMDS200 - NB-IoT Microwave Radar Distance Sensor User Manual - Author
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... ... @@ -1,1 +1,1 @@ 1 -XWiki. David1 +XWiki.Xiaoling - Content
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... ... @@ -1,36 +1,46 @@ 1 1 (% style="text-align:center" %) 2 -[[image: http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/CPL01%20LoRaWAN%20Outdoor%20PulseContact%20%20Sensor%20Manual/WebHome/1652856952171-363.png?rev=1.1||alt="1652856952171-363.png" height="578" width="588"]]2 +[[image:LMDS200_10.jpg]] 3 3 4 4 5 - =**1.Introduction**=5 +**Table of Contents:** 6 6 7 -== **1.1 **What is CPN01 **NB-IOT** Pulse/Contact Sensor == 8 8 9 -The Dragino CPL01 is a **NB-IOT Contact Sensor**. It detects open/close status and uplink to IoT server via LoRaWAN network. user can see the dry contact status, open time, open counts in the IoT Server. 10 10 11 -The CPL01 will send periodically data every day as well as for each dry contact action. It also counts the contact open times and calculate last open duration. User can also disable the uplink for each open/close event, instead, device can count each open event and uplink periodically. 12 12 13 -CPL01 has the open alarm feature, user can set this feature so device will send Alarm if the contact has been open for a certain time. 14 14 15 - CPL01is designed for outdoor use. Ithas a weatherproof enclosure andindustrial level battery towork inlow to high temperatures.11 += 1. Introduction = 16 16 17 -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. 18 -\\CPN01 supports different uplink methods include **TCP,MQTT,UDP and CoAP **for different application requirement. 19 -\\CPN01 is powered by **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) 20 -\\To use CPN01, user needs to check if there is NB-IoT coverage in local area and with the bands CPN01 supports. If the local operate support it, user needs to get a **NB-IoT SIM card** from local operator and install CPN01 to get NB-IoT network connection 13 +== 1.1 What is NMDS200 NB-IoT Microwave Radar Distance Sensor == 21 21 22 - 23 23 16 +((( 17 +The Dragino NMDS200 is a(% style="color:blue" %)** NB-IoT Microwave Radar distance sensor**(%%). It uses (% style="color:blue" %)**24Ghz Microwave**(%%) to detect the distance between sensor and different objects. Compare vs ultrasonic or Lidar measurement method, Microwave Radar is (% style="color:blue" %)**more reliable for condensation / dusty environment**(%%). It can sense correct distance even there is water or thick dust on top of the sensor. 24 24 25 - ==**1.2Features**==19 +The NMDS200 can be applied to scenarios such as horizontal distance measurement, parking management system, object proximity and presence detection, intelligent trash can management system, robot obstacle avoidance, automatic control, sewer, etc. 26 26 21 +NMDS200 can (% style="color:blue" %)**measure two distances**(%%): the closest object and next object behind the closest one. 22 + 23 +NMDS200 (% style="color:blue" %)**supports Alarm Feature**(%%), user can set the NMDS200 to uplink data in a short interval when the distance is out of configured range. 24 + 25 +NarrowBand-Internet of Things (NB-IoT) is a (% style="color:blue" %)**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. 26 + 27 +NMDS200 (% style="color:blue" %)**supports different uplink**(%%) methods including (% style="color:blue" %)**TCP, MQTT, UDP, and CoAP**(%%) for different application requirements. 28 + 29 +NMDS200 is powered by (% style="color:blue" %)**8500mAh Li-SOCI2 battery**,(%%) It is designed for long-term use of up to 5 years. (Actually Battery life depends on the use environment, update period & uplink method) 30 + 31 +To use NMDS200, user needs to check if there is NB-IoT coverage in the field and with the Nb-IoT bands that NMDS200 supports. If local operator support it, user needs to get a** (% style="color:blue" %)NB-IoT SIM card(%%)** from the operator and install into NMDS200 to get NB-IoT network connection. 32 +))) 33 + 34 + 35 +== 1.2 Features == 36 + 37 + 27 27 * NB-IoT Bands: B1/B3/B8/B5/B20/B28 @H-FDD 28 -* Open/Close detect 29 -* Open/Close statistics 39 +* Short uplink interval for Distance Alarm 30 30 * Monitor Battery Level 31 -* Uplink on periodicallyand open/close event41 +* Microwave Radar for distance detection 32 32 * Datalog feature 33 -* Uplink onperiodically43 +* Uplink periodically 34 34 * Downlink to change configure 35 35 * Wall Mountable 36 36 * Outdoor Use ... ... @@ -37,517 +37,528 @@ 37 37 * Ultra-Low Power consumption 38 38 * AT Commands to change parameters 39 39 * Micro SIM card slot for NB-IoT SIM 40 -* 8500mAh Battery for long 50 +* 8500mAh Battery for long-term use 41 41 42 -== **1.3Specification**==52 +== 1.3 Radar probe specification == 43 43 44 -**Common DC Characteristics:** 45 45 46 -* Supply Voltage: 2.1v ~~ 3.6v 47 -* Operating Temperature: -40 ~~ 85°C 55 +* Measuring Method: FMCW 56 +* Frequency: 24.000 24.500 GHz 57 +* Measurement output power: 6dBm 58 +* Measure range: 0.5 20m 59 +* Accuracy: ±0.1m 60 +* Resolution: 0.01m 61 +* Horizontal Angel: 78° 62 +* Vertical Angel: 23° 48 48 49 - **NB-IoTSpec:**64 +== 1.4 Storage Temperature == 50 50 51 -* - B1 @H-FDD: 2100MHz 52 -* - B3 @H-FDD: 1800MHz 53 -* - B8 @H-FDD: 900MHz 54 -* - B5 @H-FDD: 850MHz 55 -* - B20 @H-FDD: 800MHz 56 -* - B28 @H-FDD: 700MHz 57 57 58 - ==**1.4Installation**==67 + -40°C to +85°C 59 59 60 -Connect CPL01 to an Open Close sensor like below. So it can detect the open/close event. 61 61 62 - [[image:image-20221021110329-1.png]]70 +== 1.5 Applications == 63 63 64 -[[image:image-20221021110340-2.png]] 65 65 66 -== **1.5 Applications** == 73 +* Horizontal distance measurement 74 +* Liquid level measurement 75 +* Parking management system 76 +* Object proximity and presence detection 77 +* Intelligent trash can management system 78 +* Robot obstacle avoidance 79 +* Automatic control 80 +* Sewer 81 +* Bottom water level monitoring 67 67 68 -* Open/Close Detection 69 -* Pulse meter application 70 -* Dry Contact Detection 83 +== 1.6 Specification == 71 71 72 -== **1.6 Mechanical** == 73 73 74 - [[image:image-20221021110415-3.png]]86 +(% style="color:blue" %)**Common DC Characteristics:** 75 75 76 -== ** 1.7 Pin Definitions and Switch** == 88 +* Supply Voltage: 2.1v ~~ 3.6v 89 +* Operating Temperature: 0 ~~ 70°C 77 77 78 - [[image:image-20221021110429-4.png]]91 +(% style="color:blue" %)**NB-IoT Spec:** 79 79 80 -=== **1.7.1 Pin Definition** === 93 +* B1 @H-FDD: 2100MHz 94 +* B3 @H-FDD: 1800MHz 95 +* B8 @H-FDD: 900MHz 96 +* B5 @H-FDD: 850MHz 97 +* B20 @H-FDD: 800MHz 98 +* B28 @H-FDD: 700MHz 81 81 82 - CPL01is pre-configured to connect to two external wires.The other pins are not used.If user wantso know moreabout other pins, please refertothe user manualof LSN50v2 at: [[https:~~/~~/www.dropbox.com/sh/djkxs7mr17y94mi/AABVlWbM9uzK9OA3mXyAT10Za?dl=0>>url:https://www.dropbox.com/sh/djkxs7mr17y94mi/AABVlWbM9uzK9OA3mXyAT10Za?dl=0]]100 +== 1.7 Installation == 83 83 84 -=== **1.7.2 Jumper JP2(Power ON/OFF)** === 85 85 103 +Sensor measure direction and angle is as below. When install the sensor, please make sure the sensor direct to object. 86 86 87 -Power on Device when putting this jumper. 88 88 106 +[[image:image-20221207170748-1.png]] [[image:image-20221207170748-2.png||height="366" width="672"]] 89 89 90 90 91 -=== **1.7.3 BOOT MODE / SW1** === 92 92 110 +== 1.8 Pin Definitions and Switch == 93 93 94 -1) ISP: upgrade mode, device won't have any signal in this mode. but ready for upgrade firmware. LED won't work. Firmware won't run. 95 95 96 - 2) Flash: work mode, the device starts to work and send out console output for further debug113 +[[image:1670404362039-351.png]] 97 97 98 98 116 += 2. Use NMDS200 to communicate with IoT Server = 99 99 100 -== =**1.7.4ResetButton**===118 +== 2.1 How it works == 101 101 102 102 103 - Pressto rebootthe device.121 +The NB-IoT network will forward this value to IoT server via the protocol defined by NMDS200. 104 104 105 - ====123 +The diagram below shows the working flow in the default firmware of NMDS200: 106 106 107 - === **1.7.5LED** ===125 +[[image:image-20221021110615-5.png]] 108 108 109 109 110 - Itwillflash:128 +== 2.2 Configure NMDS200 == 111 111 112 -1. Boot the device in flash mode 113 -1. Send an uplink packet 114 114 115 - =**2. UseCPN01tocommunicatewithIoTServer** =131 +To use NMDS200 in your city, make sure to meet below requirements: 116 116 117 -== **2.1 How it works** == 133 +* Your local operator has already distributed an NB-IoT Network. 134 +* The local NB-IoT network used the band that NMDS200 supports. 135 +* Your operator is able to distribute the data received in their NB-IoT network to your IoT server. 118 118 119 - TheCPN01isequippedwitha NB-IoTmodule, thepre-loadedfirmware inCPN01willgetenvironmentdatafromsensorsandsendthe valuetocalNB-IoTnetworkviatheNB-IoT module.The NB-IoTnetworkwillforward this valuetoIoTservervia theprotocoldefined by CPN01.137 +Below figure shows our testing structure. Here we have NB-IoT network coverage by China Mobile, the band they use is B8. The NMDS200 will use** (% style="color:red" %)CoAP(120.24.4.116:5683)(%%)** or raw (% style="color:red" %)**UDP(120.24.4.116:5601) **(%%)or (% style="color:red" %)**MQTT(120.24.4.116:1883) **(%%)or (% style="color:red" %)**TCP(120.24.4.116:5600)protocol**(%%) to send data to the test server. 120 120 121 - The diagram below shows the working flow in default firmwareof CPN01:139 +[[image:image-20221208090742-1.png]] 122 122 123 -[[image:image-20221021110615-5.png]] 124 124 125 -== **2.2ConfigureheCPN01**==142 +=== 2.2.1 Insert NB-IoT SIM card === 126 126 127 -=== **2.2.1 Test Requirement** === 128 128 129 - To useCPN01 in yourcity,makesuremeetbelowrequirements:145 +Insert the NB-IoT Card get from your provider. 130 130 131 -* Your local operator has already distributed a NB-IoT Network there. 132 -* The local NB-IoT network used the band that CPN01 supports. 133 -* Your operator is able to distribute the data received in their NB-IoT network to your IoT server. 147 +User needs to take out the NB-IoT module and insert the SIM card like below: 134 134 135 - Below figureshows our testing structure. Here we have NB-IoT network coverageby China Mobile, the band they use is B8. The CPN01 will use CoAP(120.24.4.116:5683) or raw UDP(120.24.4.116:5601) or MQTT(120.24.4.116:1883)or TCP(120.24.4.116:5600)protocol to senddata to the test server149 +[[image:image-20221021110745-6.png]] 136 136 137 - 138 138 139 -=== **2.2.2Insert SIMcard**===152 +=== 2.2.2 Connect USB – TTL to NMDS200 and configure it === 140 140 141 -Insert the NB-IoT Card get from your provider. 142 142 143 -User need to take out theNB-IoTmodule and insert theSIMcardlike below:155 +User need to configure NMDS200 via serial port to set the (% style="color:red" %)**Server Address** / **Uplink Topic**(%%) to define where and how-to uplink packets. NMDS200 support AT Commands, user can use a USB to TTL adapter to connect to NMDS200 and use AT Commands to configure it, as below. 144 144 145 - [[image:image-20221021110745-6.png]]157 +(% style="color:blue" %)**Connection:** 146 146 147 - ===**2.2.3 ConnectUSB–TTLto CPN01toconfigure it**===159 +(% style="background-color:yellow" %)** USB TTL GND <~-~-~-~-> GND** 148 148 149 - Usereedtoconfigure CPN01 via serialport to set the **Server Address** / **Uplink Topic**todefine where and how-to uplink packets. CPN01 support AT Commands, user can use aUSBtoTTLadaptertoconnect to CPN01 and useATCommands to configure it, as below.161 +(% style="background-color:yellow" %)** USB TTL TXD <~-~-~-~-> UART_RXD** 150 150 151 - **Connection:**163 +(% style="background-color:yellow" %)** USB TTL RXD <~-~-~-~-> UART_TXD** 152 152 153 - USB TTL GND <~-~-~-~-> GND 154 154 155 - USBTTLTXD<~-~-~-~->UART_RXD166 +In the PC, use below serial tool settings: 156 156 157 - USBTTLRXD<~-~-~-~->UART_TXD168 +* Baud: (% style="color:red" %)**9600** 158 158 159 - InthePC, usebelow serialtoolsettings:170 +* Data bits:** (% style="color:red" %)8(%%)** 160 160 161 -* Baud: **9600** 162 -* Data bits:** 8** 163 -* Stop bits: **1** 164 -* Parity: **None** 165 -* Flow Control: **None** 172 +* Stop bits: (% style="color:red" %)**1** 166 166 167 - Makesure the switch is in FLASH position, then power on device byconnectingthejumperonCPN01.CPN01 will outputsystem info once power on as below, we can enterthe **password:12345678**toaccess AT Command input.174 +* Parity: (% style="color:red" %)**None** 168 168 176 +* Flow Control: (% style="color:red" %)**None** 177 + 178 +Make sure the switch is in FLASH position, then power on NMDS200 by connecting the (% style="color:orange" %)**Yellow Jumper**(%%). 179 + 169 169 [[image:image-20221021110817-7.png]] 170 170 171 - **Note:thevalidAT Commands canbefoundat:**[[**https:~~/~~/www.dropbox.com/sh/351dwor6joz8nwh/AADn1BQaAAxLF_QMyU8NkW47a?dl=0**>>url:https://www.dropbox.com/sh/351dwor6joz8nwh/AADn1BQaAAxLF_QMyU8NkW47a?dl=0]]182 +NMDS200 will output system info once powered on as below, we can enter the **password: 12345678** to access AT Command input. 172 172 173 -=== **2.2.4 Use CoAP protocol to uplink data** === 174 174 175 -**Note: if you don'taveCoAP server,youcanrefer thislinkto setupone: **[[**http:~~/~~/wiki.dragino.com/xwiki/bin/view/Main/Set%20up%20CoAP%20Server/**>>url:http://wiki.dragino.com/xwiki/bin/view/Main/Set%20up%20CoAP%20Server/]]185 +(% style="color:red" %)**Note: the valid AT Commands can be found at: **(%%)[[**https:~~/~~/www.dropbox.com/sh/351dwor6joz8nwh/AADn1BQaAAxLF_QMyU8NkW47a?dl=0**>>url:https://www.dropbox.com/sh/351dwor6joz8nwh/AADn1BQaAAxLF_QMyU8NkW47a?dl=0]] 176 176 177 -**Use below commands:** 178 178 179 -* **AT+PRO=1** ~/~/ Set to use CoAP protocol to uplink 180 -* **AT+SERVADDR=120.24.4.116,5683 ** ~/~/ to set CoAP server address and port 181 -* **AT+URI=5,11,"mqtt",11,"coap",12,"0",15,"c=text1",23,"0" ** ~/~/Set COAP resource path 182 182 189 +=== 2.2.3 Use CoAP protocol to uplink data === 190 + 191 + 192 +(% style="color:red" %)**Note: if you don't have a CoAP server, you can refer this link to set up a CoAP server: **(%%)[[**http:~~/~~/wiki.dragino.com/xwiki/bin/view/Main/Set%20up%20CoAP%20Server/**>>url:http://wiki.dragino.com/xwiki/bin/view/Main/Set%20up%20CoAP%20Server/]] 193 + 194 + 195 +(% style="color:blue" %)**Use below commands in NMDS200:** 196 + 197 +* (% style="color:#037691" %)**AT+PRO=1** (%%) ~/~/ Set to use CoAP protocol to uplink 198 + 199 +* (% style="color:#037691" %)**AT+SERVADDR=120.24.4.116,5683 ** (%%) ~/~/ Set CoAP server address and port 200 + 201 +* (% style="color:#037691" %)**AT+URI=0,0,11,2,"mqtt" ** (%%) ~/~/ Set CoAP resource path 202 + 183 183 For parameter description, please refer to AT command set 184 184 185 185 [[image:image-20221021110948-8.png]] 186 186 187 -After configure the server address and **reset the device** (via AT+ATZ ), CPN01 will start to uplink sensor values to CoAP server. 188 188 189 - [[image:image-20221021110956-9.png]]208 +After configuring the server address and (% style="color:green" %)**reset NMDS200**(%%) (via AT+ATZ ), NMDS200 will start to uplink sensor values to the CoAP server. 190 190 191 - === **2.2.5 Use UDP protocol to uplink data(Defaultprotocol)**===210 +[[image:1670405841875-916.png]] 192 192 193 -This feature is supported since firmware version v1.0.1 194 194 195 -* **AT+PRO=2 ** ~/~/ Set to use UDP protocol to uplink 196 -* **AT+SERVADDR=120.24.4.116,5601 ** ~/~/ to set UDP server address and port 197 -* **AT+CFM=1 ** ~/~/If the server does not respond, this command is unnecessary 213 +=== 2.2.4 Use UDP protocol to uplink data(Default protocol) === 198 198 199 - [[image:image-20221021111025-10.png]] 200 200 216 +(% style="color:blue" %)**AT Commands:** 217 + 218 +* (% style="color:#037691" %)**AT+PRO=2 ** (%%) ~/~/ Set to use UDP protocol to uplink 219 + 220 +* (% style="color:#037691" %)**AT+SERVADDR=120.24.4.116,5601 ** (%%) ~/~/ Set UDP server address and port 221 + 222 +* (% style="color:#037691" %)**AT+CFM=1 ** (%%) ~/~/ If the server does not respond, this command is unnecessary 223 + 224 + [[image:image-20221021111025-10.png]] 225 + 226 + 201 201 [[image:image-20221021111033-11.png||height="241" width="576"]] 202 202 203 203 204 204 205 -=== **2.2.6Use MQTT protocol to uplink data**===231 +=== 2.2.5 Use MQTT protocol to uplink data === 206 206 207 -This feature is supported since firmware version v110 208 208 209 -* **AT+PRO=3 ** ~/~/Set to use MQTT protocol to uplink 210 -* **AT+SERVADDR=120.24.4.116,1883 ** ~/~/Set MQTT server address and port 211 -* **AT+CLIENT=CLIENT ** ~/~/Set up the CLIENT of MQTT 212 -* **AT+UNAME=UNAME **~/~/Set the username of MQTT 213 -* **AT+PWD=PWD **~/~/Set the password of MQTT 214 -* **AT+PUBTOPIC=NSE01_PUB **~/~/Set the sending topic of MQTT 215 -* **AT+SUBTOPIC=NSE01_SUB ** ~/~/Set the subscription topic of MQTT 234 +(% style="color:blue" %)**AT Commands:** 216 216 217 - [[image:image-20221021111058-12.png]]236 +* (% style="color:#037691" %)**AT+PRO=3 ** (%%) ~/~/ Set to use MQTT protocol to uplink 218 218 219 - [[image:image-20221021111108-13.png]]238 +* (% style="color:#037691" %)**AT+SERVADDR=120.24.4.116,1883 ** (%%) ~/~/ Set MQTT server address and port 220 220 240 +* (% style="color:#037691" %)**AT+CLIENT=CLIENT ** (%%) ~/~/ Set up the CLIENT of MQTT 241 + 242 +* (% style="color:#037691" %)**AT+UNAME=UNAME **(%%)** **~/~/ Set the username of MQTT 243 + 244 +* (% style="color:#037691" %)**AT+PWD=PWD **(%%)** **~/~/ Set the password of MQTT 245 + 246 +* (% style="color:#037691" %)**AT+PUBTOPIC=NSE01_PUB **(%%)** **~/~/ Set the sending topic of MQTT 247 + 248 +* (% style="color:#037691" %)**AT+SUBTOPIC=NSE01_SUB ** (%%) ~/~/ Set the subscription topic of MQTT 249 + 250 + [[image:image-20221118103445-7.png]] 251 + 252 + 253 +[[image:1670405928926-116.png]] 254 + 221 221 222 222 223 -MQTT protocol has a much higher power consumption compare vsUDP / CoAP protocol. Please check the power analyze document and adjust the uplink period to a suitable interval.257 +MQTT protocol has a much higher power consumption compare with UDP / CoAP protocol. Please check the power analyze document and adjust the uplink period to a suitable interval. 224 224 225 -=== **2.2.7 Use TCP protocol to uplink data** === 226 226 227 - Thisfeatureissupported sincefirmwareversionv110260 +=== 2.2.6 Use TCP protocol to uplink data === 228 228 229 -* **AT+PRO=4 ** ~/~/ Set to use TCP protocol to uplink 230 -* **AT+SERVADDR=120.24.4.116,5600 ** ~/~/ to set TCP server address and port 231 231 232 - [[image:image-20221021111125-14.png]]263 +(% style="color:blue" %)**AT Commands:** 233 233 265 +* (% style="color:#037691" %)**AT+PRO=4 ** (%%) ~/~/ Set to use TCP protocol to uplink 266 + 267 +* (% style="color:#037691" %)**AT+SERVADDR=120.24.4.116,5600 ** (%%) ~/~/ Set TCP server address and port 268 + 269 + [[image:1670406036256-101.png||height="676" width="713"]] 270 + 271 + 234 234 [[image:image-20221021111131-15.png]] 235 235 236 236 237 237 238 -=== **2.2.8Change Update Interval**===276 +=== 2.2.7 Change Update Interval === 239 239 240 -User can use below command to change the **uplink interval**. 241 241 242 - ***AT+TDC=600**~/~/SetUpdateIntervalto 600s279 +User can use below command to change the (% style="color:blue" %)**uplink interval**. 243 243 244 -** NOTE:**281 +* (% style="color:#037691" %)**AT+TDC=7200 ** (%%) ~/~/ Set Update Interval to 7200s (4 hours) 245 245 246 - **~1.Bydefault, thedevice will sendan uplink message every 1 hour.**283 +(% style="color:red" %)**NOTE:** 247 247 248 - == **2.3UplinkPayload**==285 +1. By default, the device will send an uplink message every 4 hour. 249 249 250 -In this mode, uplink payload includes 87 bytes in total by default. 251 251 252 - Eachtimethe device uploads a data package,8 sets of recorded data will be attached. Up to32 sets of recorded data can be uploaded.288 +== 2.3 Uplink Payload == 253 253 254 -|**Size(bytes)**|**8**|**2**|**2**|**1**|**1**|**1**|**2**|**2**|4 255 -|**Value**|[[Device ID>>path:#H2.4.1A0A0DeviceID]]|[[Ver>>path:#H2.4.2A0VersionInfo]]|[[BAT>>path:#H2.4.3A0BatteryInfo]]|[[Signal Strength>>path:#H2.4.4A0SignalStrength]]|MOD|[[Interrupt>>path:#H2.4.8A0DigitalInterrupt]]|[[Soil P>>path:#H2.4.7A0SoilConductivity28EC29]]H|[[Soil Temperature>>path:#H2.4.6A0SoilTemperature]]|Time stamp 256 256 257 -|2|2|4|8 group 258 -|[[Soil Temperature>>path:#H2.4.6A0SoilTemperature]]|[[Soil P>>path:#H2.4.7A0SoilConductivity28EC29]]H|Time stamp|... 291 +The uplink payload includes 23 bytes in total by default. 259 259 260 - IfweusetheMQTT client to subscribetothisMQTTtopic,we can seethefollowinginformationwhentheCPN01uplinkdata.293 +Each time the device uploads a data package. The user can use the AT+NOUD command to upload the recorded data.Up to 32 sets of recorded data can be uploaded. 261 261 262 -[[image:image-20221021111201-16.png||height="572" width="792"]] 263 263 264 -The payload is ASCII string, representative same HEX: 296 +(% border="1" cellspacing="5" style="background-color:#ffffcc; color:green; width:510px" %) 297 +|=(% scope="row" style="width: 50px;" %)**Size(bytes)**|(% style="width:50px" %)**8**|(% style="width:20px" %)**2**|(% style="width:20px" %)**2**|(% style="width:65px" %)**1**|(% style="width:25px" %)**1**|(% style="width:50px" %)**1**|(% style="width:90px" %)**2**|(% style="width:100px" %)**2** 298 +|=(% style="width: 93px;" %)**Value**|(% style="width:67px" %)[[Device ID>>||anchor="H2.4.1A0A0DeviceID"]]|(% style="width:40px" %)[[Ver>>||anchor="H2.4.2A0VersionInfo"]]|(% style="width:45px" %)[[BAT>>||anchor="H2.4.3A0BatteryInfo"]]|(% style="width:75px" %)[[Signal Strength>>||anchor="H2.4.4A0SignalStrength"]]|(% style="width:54px" %)MOD|(% style="width:62px" %)Exit flag|(% style="width:94px" %) [[Distance 1>>||anchor="H2.4.5A0A0Distance"]] |(% style="width:93px" %) [[Distance 2>>||anchor="H2.4.5A0A0Distance"]] 265 265 266 -0xf86778705021331700640c7817010001000000090000026315537b 0100000b02000002663510fed0100000e0200000263510f39010000000000000063510e85010000000000000063510d2e010000000000000063510c7a010000000000000063510bc6010000000000000063510954010000000000000063510882 where: 300 +(% border="1.5" style="background-color:#ffffcc; color:green; width:450px" %) 301 +|(% style="width:50px" %)**4**|(% style="width:90px" %)**2**|(% style="width:90px" %)**2**|(% style="width:60px" %)**4**|(% style="width:50px" %)((( 302 +**1-32 group** 303 +))) 304 +|(% style="width:98px" %)[[Time stamp>>||anchor="H2.4.6A0Timestamp"]]| Distance 1 | Distance 2|(% style="width:67px" %)Time stamp|(% style="width:74px" %)... 267 267 268 -* **Device ID: 0x f867787050213317 = f867787050213317** 269 -* **Version: 0x0064=100=1.0.0** 306 +If we use the MQTT client to subscribe to this MQTT topic, we can see the following information when the NMDS200 uplink data. 270 270 271 -* **BAT: 0x0c78 = 3192 mV = 3.192V** 272 -* **Singal: 0x17 = 23** 273 -* **Mod: 0x01 = 1** 274 -* **Calculate Flag: 0x00= 0** 275 -* **Contact Status: 0x00= 0** 276 -* **Alarm:0x00 =0** 277 -* **Total pulse:0x09 =0** 278 -* **The last open duration:0x02 =2** 279 -* **Time stamp : 0x6315537b =1662342011** 280 -* **Contact Status, Total pulse, Calculate Flag, The last open duration ,Time stamp : 0100000b0200002663510fed** 281 -* **8 sets of recorded data: Contact Status, Total pulse, Calculate Flag, The last open duration ,Time stamp : 0100000e0200002663510f39,.......** 308 +[[image:1670406261143-723.png]] 282 282 283 -== **2.4 Payload Explanation and Sensor Interface** == 284 284 285 - ===**2.4.1DeviceID**===311 +The payload is ASCII string, representative same HEX: f867787050471071 0064 0cc3 09 01 00 00ef 013d 6390453d 286 286 287 - Bydefault,theDeviceIDequal to theast15bits ofIMEI.313 +**0x (% style="color:red" %)__f867787050471071__ (% style="color:blue" %)__0064__ (% style="color:green" %) __0cc3__(% style="color:#00b0f0" %) 0__9__(% style="color:#7030a0" %) __01__(% style="color:#0020b0" %) __00__ (% style="color:#420042" %)__00ef__(% style="color:#660066" %) (% style="color:#663300" %)__013d__ (% style="color:#d60093" %)__6390453d__(%%)** 288 288 289 - Usercan useAT+DEUI** to set Device ID315 +**where:** 290 290 291 -* *Example:**317 +* (% style="color:#037691" %)**Device ID:**(%%) 0x f867787050471071 = f867787050471071 292 292 293 - AT+DEUI=868411056754138319 +* (% style="color:#037691" %)**Version:**(%%) 0x0064=100=1.0.0 294 294 295 - TheDeviceID isstored in a none-erasearea,UpgradethefirmwareorrunAT+FDRwon'teraseDevice ID.321 +* (% style="color:#037691" %)**BAT :**(%%) 0x0cc3 = 3267 mV = 3.267V 296 296 297 - ===**2.4.2VersionInfo** ===323 +* (% style="color:#037691" %)**Singal: **(%%)0x09 = 9 298 298 299 - Specifythesoftwareversion:x64=100,means firmware version1.00.325 +* (% style="color:#037691" %)**Mod:**(%%) 0x01 = 1 300 300 301 - Forexample:0x00 64 : thisdevice is CPN01withfirmwareversion 1.0.0.327 +* (% style="color:#037691" %)**Exit flag: **(%%)0x00 =0 302 302 303 - ===**2.4.3BatteryInfo** ===329 +* (% style="color:#037691" %)**Distance 1: **(%%)0x00ef=239 304 304 305 - CheckthebatteryvoltageforCPN01.331 +* (% style="color:#037691" %)**Distance 2: **(%%)0x013d =317 306 306 307 - Ex1: 0x0B45 =885mV333 +* (% style="color:#037691" %)**Timestamp: **(%%)0x6390453d =1670399293 (Unix Time) 308 308 309 -Ex2: 0x0B49 = 2889mV 310 310 311 -=== **2.4.4 Signal Strength** === 312 312 313 - NB-IoTNetworksignalStrength.337 +== 2.4 Payload Explanation and Sensor Interface == 314 314 315 - **Ex1:0x1d=29**339 +=== 2.4.1 Device ID === 316 316 317 -**0** -113dBm or less 318 318 319 - **1**-111dBm342 +By default, the Device ID is equal to the last 15 bits of IMEI. 320 320 321 -** 2...30**-109dBm...-53dBm344 +User can use (% style="color:blue" %)**AT+DEUI** (%%)to set Device ID 322 322 323 -** 31** -51dBmor greater346 +**Example:** 324 324 325 - **99** Not known or not detectable348 +AT+DEUI=868411056754138 326 326 327 - ===**2.4.5Calculate Flag**===350 +The Device ID is stored in a non-erase area, Upgrade the firmware or run AT+FDR won't erase the Device ID. 328 328 329 -The calculate flag is a user define field, IoT server can use this filed to handle different meter with different pulse factor. For example, if there are 100 water meters, meter 1 ~~50 are 1 liter/pulse and meter 51 ~~ 100 has 1.5 liter/pulse. 330 330 331 - Usercan set calculate flag to 1 for meter 1~~50 and2for meter51 ~~ 100, So IoT Server canuse thisfield forcalculation.353 +=== 2.4.2 Version Info === 332 332 333 -Default value: 0. 334 334 335 - Range(6bits):(b)000000~~(b)111111356 +Specify the software version: 0x64=100, which means firmware version 1.00. 336 336 337 - ===**2.4.6Alarm**===358 +For example 0x00 64 : This device is NMDS200 1 with firmware version 1.0.0. 338 338 339 -See [[Alarm Base on Timeout>>url:http://wiki.dragino.com/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/CPL01%20LoRaWAN%20Outdoor%20PulseContact%20%20Sensor%20Manual/#H3.5AlarmBaseonTimeout]] 340 340 341 -=== **2.4.7ContactStatus**===361 +=== 2.4.3 Battery Info === 342 342 343 -0: Open 344 344 345 - 1:Close364 +Check the battery voltage for NMDS200. 346 346 347 - ===**2.4.8Total pulse**===366 +Ex1: 0x0B45 = 2885mV 348 348 349 - Total pulse/counting base on dry [[contact trigger event>>url:http://wiki.dragino.com/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/CPL01%20LoRaWAN%20Outdoor%20PulseContact%20%20Sensor%20Manual/#H2.3.2SensorConfiguration2CFPORT3D4]]368 +Ex2: 0x0B49 = 2889mV 350 350 351 -Range (3 Bytes) : 0x000000 ~~ 0xFFFFFF . Max: 16777215 352 352 353 -=== **2.4.9Thelastopenduration**===371 +=== 2.4.4 Signal Strength === 354 354 355 -Dry Contact last open duration. 356 356 357 - Unit:min.374 +NB-IoT Network signal Strength. 358 358 359 - [[image:image-20221021111346-17.png||height="146"width="770"]]376 +(% style="color:blue" %)**Ex1: 0x1d = 29** 360 360 378 +(% style="color:#037691" %)**0** (%%) -113dBm or less 361 361 362 -= ==**2.4.10 Timestamp**===380 +(% style="color:#037691" %)**1** (%%) -111dBm 363 363 364 - Timestamp:x6315537b =1662342011382 +(% style="color:#037691" %)**2...30** (%%) -109dBm... -53dBm 365 365 366 - ConvertUnixtimestampto time2022-9-5 9:40:11.384 +(% style="color:#037691" %)**31** (%%) -51dBm or greater 367 367 368 -** ~**386 +(% style="color:#037691" %)**99** (%%) Not known or not detectable 369 369 370 -== **2.5 Downlink Payload** == 371 371 372 - Bydefault,CPN01 printshe downlink payload to consoleport.389 +=== 2.4.5 Distance === 373 373 374 -[[image:image-20221021111414-18.png]] 375 375 376 - **Examples:**392 +[[image:1670407401682-959.png]] 377 377 378 -* **Set TDC** 379 379 380 - Ifthe payload=0100003C, it means set the END Node's TDC to0x00003C=60(S), whiletypeodeis01.395 +(% style="color:blue" %)**Object1 Distance:** 381 381 382 - Payload:0100001ETDC=30S397 +Distance between sensor probe to the first object. (unit: cm) 383 383 384 - Payload:0100 003CTDC=60S399 +For example, if the data you get from the register is 0x02 0x05, the distance between the sensor and the measured object is 385 385 386 - ***Reset**401 +(% style="color:blue" %)**0205(H) = 517 (D) = 517 cm.** 387 387 388 -If payload = 0x04FF, it will reset the NSE01 389 389 390 - ***INTMOD**404 +(% style="color:blue" %)**Object2 Distance:** 391 391 392 -D ownlinkPayload:06000003,SetAT+INTMOD=3406 +Distance between sensor probe to the second object. (unit: cm) 393 393 394 -== **2.6 LED Indicator** == 395 395 396 - TheCPN01has aninternal LED which iso show the statusof different state.409 +=== 2.4.6 Timestamp === 397 397 398 -* When power on, CPN01 will detect if sensor probe is connected, if probe detected, LED will blink four times. (no blinks in this step is no probe) 399 -* Then the LED will be on for 1 second means device is boot normally. 400 -* After CPN01 join NB-IoT network. The LED will be ON for 3 seconds. 401 -* For each uplink probe, LED will be on for 500ms. 402 402 403 - == **2.7 Alarm Base onTimeout**==412 +Timestamp : 0x6315537b =1662342011 404 404 405 -CPL01 can monitor the timeout for a status change, this feature can be used to monitor some events such as door opening too long etc. Related Parameters are: 406 406 415 +== 2.5 Downlink Payload == 407 407 408 -**~1. Keep Status: Status to be monitor** 409 409 410 - KeepStatus=1: MonitorClosetoOpenvent418 +By default, NMDS200 prints the downlink payload to console port. 411 411 412 - Keep Status = 0:Monitor Opento Close event420 +[[image:image-20221021111414-18.png]] 413 413 414 414 415 -** 2. Keep Time: Timeout tosend an Alarm**423 +**Examples:** 416 416 417 - Range0 ~~ 65535(0xFFFF)seconds.425 +* (% style="color:#037691" %)**Set TDC** 418 418 419 -If keeptime =DisableAlarmBase onTimeoutfeature.427 +If the payload=0100003C, it means set the END Node's TDC to 0x00003C=60(S), while type code is 01. 420 420 421 - If keep time > 0, device will monitor the keep status event andsendanalarmwhenstatus doesn’t change after timeout.429 +Payload: 01 00 00 1E TDC=30S 422 422 431 +Payload: 01 00 00 3C TDC=60S 423 423 424 -* *ATCommand** toconfigure:433 +* (% style="color:#037691" %)**Reset** 425 425 426 - **AT+TTRIG=1,30**~-~-> When the **KeepStatus** change from connect to disconnect,anddeviceremainsin disconnectstatus for more than 30 seconds. CPL01will send an uplink packet,the[[Alarmbit>>url:http://wiki.dragino.com/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/CPL01%20LoRaWAN%20Outdoor%20PulseContact%20%20Sensor%20Manual/#H2.3.3Real-TimeOpen2FCloseStatus2CUplinkFPORT3D2]] (the second bit of 1^^st^^ byte of payload) on this uplink packet is set to 1.435 +If payload = 0x04FF, it will reset the NMDS200 427 427 428 -* *AT+TTIG=0,0**~-~-> DefaultValue, disable timeout Alarm.437 +* (% style="color:#037691" %)**INTMOD** 429 429 430 - ==**2.8Setdebug mode**==439 +Downlink Payload: 06000003, Set AT+INTMOD=3 431 431 432 -Feature: Enable or Disable debug mode 433 433 442 +== 2.6 LED Indicator == 434 434 435 -**AT Command: AT+DEBUG** 436 436 437 - [[image:image-20221021111629-21.png]]445 +The NMDS200 has an internal LED which is to show the status of different states. 438 438 439 -== **2.9 Clear Flash Record** == 447 +* When the device starts normally, the LED will light up for 1 second. 448 +* After NMDS200 join NB-IoT network. The LED will be ON for 3 seconds. 449 +* For each uplink probe, LED will be on for 500ms. 440 440 441 -Feature: Clear flash storage for data log feature. 442 442 443 -**AT Command: AT+CLRDTA** 444 444 445 - [[image:image-20221021111527-19.png]]453 +== 2.7 Distance alarm function == 446 446 447 -== ** 2.10 Set trigger mode** == 448 448 449 - ➢AT Command:**AT+TTRMOD**456 +(% style="color:blue" %)**AT Command: AT+ALARM1=min,max** 450 450 451 - Feature:Setthetriggerinterruptmode.458 +(% style="color:#037691" %)**Example 1:** 452 452 453 - [[image:image-20221021111552-20.png]]460 +AT+ ALARM1 =60,200 ~/~/ Alarm when moisture lower than 60. 454 454 455 - ==**2.11Set the calculate flag**==462 +AT+ ALARM2 =min,max 456 456 457 -Feature: Set the calculate flag 458 458 459 - **ATCommand:AT+CALCFLAG**465 +(% style="color:#037691" %)**Example 2:** 460 460 461 - [[image:image-20221021111711-22.png]]467 +AT+ ALARM2 =200,1500 ~/~/ Alarm when temperature lower than 1500 462 462 463 -== **2.12 Set count number** == 464 464 465 -Feature: Manually set the count number 466 466 467 -**AT Command: AT+SETCNT** 468 468 469 - [[image:image-20221021111748-24.png]]472 +== 2.8 Set the number of data to be uploaded and the recording time == 470 470 471 -== **2.13 Set the number of data to be uploaded and the recording time** == 472 472 473 - ➢AT Command:475 +(% style="color:blue" %)**AT Command:** 474 474 475 -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) 477 +(% 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) 476 476 479 +(% style="color:#037691" %)**AT+NOUD=8**(%%)** ** ~/~/ The device uploads 0 sets of recorded data by default. Up to 32 sets of record data can be uploaded. 477 477 478 -AT+NOUD=8 ~/~/The device uploads 8 sets of recorded data by default. Up to 32 sets of record data can be uploaded. 479 479 480 -== **2.14Read or Clear cached data**==482 +== 2.9 Read or Clear cached data == 481 481 482 -➢ AT Command: 483 483 484 - AT+CDP~/~/ Readcacheddata485 +(% style="color:blue" %)**AT Command:** 485 485 486 - [[image:image-20221021111810-25.png||height="364"width="797"]]487 +(% style="color:#037691" %)**AT+CDP** (%%) ~/~/ Read cached data 487 487 489 +(% style="color:#037691" %)**AT+CDP=0** (%%) ~/~/ Clear cached data 488 488 489 - AT+CDP=0 ~/~/ Clear cached data 491 +[[image:1670408172929-569.png]] 490 490 491 -== **2.15 Firmware Change Log** == 492 492 493 - DownloadURL&Firmware Changelog: [[https:~~/~~/www.dropbox.com/sh/1zmcakvbkf24f8x/AACmq2dZ3iRB9F1nVWeEB9Moa?dl=0>>url:https://www.dropbox.com/sh/1zmcakvbkf24f8x/AACmq2dZ3iRB9F1nVWeEB9Moa?dl=0]]494 +== 2.10 Firmware Change Log == 494 494 495 -Upgrade Instruction: [[Upgrade Firmware>>path:#H5.1200BHowtoUpgradeFirmware]] 496 496 497 - ==**2.16BatteryAnalysis**==497 +Download URL & Firmware Change log: [[https:~~/~~/www.dropbox.com/sh/hacq385w6qgnonr/AAC3D79GFGF1JdZUIzNegn2Ha?dl=0>>https://www.dropbox.com/sh/hacq385w6qgnonr/AAC3D79GFGF1JdZUIzNegn2Ha?dl=0]] 498 498 499 - === **2.16.1 BatteryType**===499 +Upgrade Instruction: [[Upgrade Firmware>>||anchor="H5.1200BHowtoUpgradeFirmware"]] 500 500 501 -The CPN01 battery is a combination of an 8500mAh Li/SOCI2 Battery and a Super Capacitor. The battery is none-rechargeable battery type with a low discharge rate (<2% per year). This type of battery is commonly used in IoT devices such as water meter. 502 502 503 - Thebatteryis designed to last for severalearsdependson the actually use environment and update interval.502 +== 2.11 Battery Analysis == 504 504 505 - Thebatteryrelateddocuments as below:504 +=== 2.11.1 Battery Type === 506 506 506 + 507 +The NMDS200 battery is a combination of an 8500mAh Li/SOCI2 Battery and a Super Capacitor. The battery is non-rechargeable battery type with a low discharge rate (<2% per year). This type of battery is commonly used in IoT devices such as water meter. 508 + 509 +The battery is designed to last for several years depends on the actual use environment and update interval. 510 + 511 +The battery-related documents as below: 512 + 507 507 * [[Battery Dimension>>url:http://www.dragino.com/downloads/index.php?dir=datasheet/Battery/ER26500/]] 514 + 508 508 * [[Lithium-Thionyl Chloride Battery datasheet>>url:http://www.dragino.com/downloads/index.php?dir=datasheet/Battery/ER26500/]] 516 + 509 509 * [[Lithium-ion Battery-Capacitor datasheet>>url:http://www.dragino.com/downloads/index.php?dir=datasheet/Battery/ER26500/]] 510 510 511 511 [[image:image-20221021111911-26.png]] 512 512 513 -=== **2.16.2 Power consumption Analyze** === 514 514 522 +=== 2.11.2 Power consumption Analyze === 523 + 524 + 515 515 Dragino battery powered product are all runs in Low Power mode. We have an update battery calculator which base on the measurement of the real device. User can use this calculator to check the battery life and calculate the battery life if want to use different transmit interval. 516 516 517 517 Instruction to use as below: 518 518 519 -**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/]] 529 +(% 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/]] 520 520 521 -**Step 2: ** Open it and choose 531 +(% style="color:blue" %)**Step 2: **(%%) Open it and choose 522 522 523 523 * Product Model 534 + 524 524 * Uplink Interval 536 + 525 525 * Working Mode 526 526 527 527 And the Life expectation in difference case will be shown on the right. 528 528 529 -[[image: image-20221021111923-27.png||height="253" width="783"]] 541 +[[image:1666596205057-567.png]] 530 530 531 -=== **2.16.3 Battery Note** === 532 532 544 +=== 2.11.3 Battery Note === 545 + 546 + 533 533 The Li-SICO battery is designed for small current / long period application. It is not good to use a high current, short period transmit method. The recommended minimum period for use of this battery is 5 minutes. If you use a shorter period time to transmit LoRa, then the battery life may be decreased. 534 534 535 -=== **2.16.4 Replace the battery** === 536 536 537 - Thedefault battery pack of CPN01 includes a ER26500 plus super capacitor.If user can't find this pack locally, they can find ER26500 orequivalence without the SPC1520 capacitor, which willalso work in mostcase.The SPC can enlargethe batterylife for high frequency use (update period below 5 minutes).550 +=== 2.11.4 Replace the battery === 538 538 539 -= **3. Access NB-IoT Module** = 540 540 553 +The default battery pack of NMDS200 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). 554 + 555 + 556 += 3. Access NB-IoT Module = 557 + 558 + 541 541 Users can directly access the AT command set of the NB-IoT module. 542 542 543 543 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/]] 544 544 545 -[[image:image-20221021112006-28.png]] 546 546 547 - = **4. UsingtheAT Commands**=564 +[[image:image-20221118094449-6.png]] 548 548 549 -== **4.1 Access AT Commands** == 550 550 567 += 4. Using the AT Commands = 568 + 569 +== 4.1 Access AT Commands == 570 + 571 + 551 551 See this link for detail: [[https:~~/~~/www.dropbox.com/sh/351dwor6joz8nwh/AADn1BQaAAxLF_QMyU8NkW47a?dl=0>>url:https://www.dropbox.com/sh/351dwor6joz8nwh/AADn1BQaAAxLF_QMyU8NkW47a?dl=0]] 552 552 553 553 AT+<CMD>? : Help on <CMD> ... ... @@ -558,8 +558,9 @@ 558 558 559 559 AT+<CMD>=? : Get the value 560 560 561 -**General Commands** 562 562 583 +(% style="color:blue" %)**General Commands** 584 + 563 563 AT : Attention 564 564 565 565 AT? : Short Help ... ... @@ -582,125 +582,97 @@ 582 582 583 583 AT+SERVADDR : Server Address 584 584 585 -AT+TR : Get or Set record time "607 +AT+TR : Get or Set record time 586 586 609 +AT+NOUD : Get or Set the number of data to be uploaded 587 587 588 -AT+ NOUDGetorSetthenumber ofdatato be uploaded611 +AT+CDP : Read or Clear cached data 589 589 613 +AT+DEBUG: Enable or Disable debug mode 590 590 591 -AT+ CDP: ReadorClearcacheddata615 +AT+ALARM1: Get or Set alarm of distance1 592 592 617 +AT+ALARM2: Get or Set alarm of distance2 593 593 594 -AT+ DEBUG:EnableorDisabledebugmode619 +AT+GETSENSORVALUE : Returns the current sensor measurement 595 595 596 -AT+ TTRIG: Get orSetAlarm Base on Timeout621 +AT+POWERIC : Get or set the Power IC flag 597 597 598 -AT+ TTRMOD : Get or Set the trigger interrupt mode(0:falling,1:rising) 599 599 600 - AT+CALCFLAG : GetSetthecalculateflag624 +(% style="color:blue" %)**COAP Management** 601 601 602 -AT+ CLRC:Clearcurrentdoor open count626 +AT+URI : Resource parameters 603 603 604 -**COAP Management** 605 605 606 - AT+URI: Resourceparameters629 +(% style="color:blue" %)**UDP Management** 607 607 608 - **UDPManagement**631 +AT+CFM : Upload confirmation mode (only valid for UDP) 609 609 610 -AT+CFM : Upload confirmation mode (only valid for UDP) 611 611 612 -**MQTT Management** 634 +(% style="color:blue" %)**MQTT Management** 613 613 614 -AT+CLIENT 636 +AT+CLIENT : Get or Set MQTT client 615 615 616 -AT+UNAME 638 +AT+UNAME : Get or Set MQTT Username 617 617 618 -AT+PWD 640 +AT+PWD : Get or Set MQTT password 619 619 620 -AT+PUBTOPIC :Get or Set MQTT publish topic642 +AT+PUBTOPIC : Get or Set MQTT publish topic 621 621 622 -AT+SUBTOPIC :Get or Set MQTT subscription topic644 +AT+SUBTOPIC : Get or Set MQTT subscription topic 623 623 624 -**Information** 625 625 626 - AT+FDR: FactoryDataReset647 +(% style="color:blue" %)**Information** 627 627 628 -AT+ PWORD:SerialAccessPassword649 +AT+FDR : Factory Data Reset 629 629 630 - =**5.FAQ**=651 +AT+PWORD : Serial Access Password 631 631 632 -== **5.1 How to Upgrade Firmware** == 633 633 634 - Usercanupgradethe firmware for 1) bug fix, 2) new feature release.654 += 5. FAQ = 635 635 636 - Pleaseseethislink for how toupgrade: [[http:~~/~~/wiki.dragino.com/xwiki/bin/view/Main/Firmware%20Upgrade%20Instruction%20for%20STM32%20base%20products/#H2.HardwareUpgradeMethodSupportList>>url:http://wiki.dragino.com/xwiki/bin/view/Main/Firmware%20Upgrade%20Instruction%20for%20STM32%20base%20products/#H2.HardwareUpgradeMethodSupportList]]656 +== 5.1 How to Upgrade Firmware == 637 637 638 -**Notice, **CPN01 **and **CPN01 **share the same mother board. They use the same connection and method to update.** 639 639 640 - ==**5.2 CanI calibrateCPN01todifferentsoiltypes?** ==659 +User can upgrade the firmware for 1) bug fix, 2) new feature release. 641 641 642 - CPN01 is calibratedforsaline-alkalisoilandloamy soil.Ifuserswantto useitfor othersoil, they cancalibratethe valueinhe IoT platformbasen the value measuredby saline-alkali soil andloamy soil. Theformula can befoundat[[thislink>>url:https://www.dragino.com/downloads/downloads/LoRa_End_Node/LSE01/Calibrate_to_other_Soil_20220605.pdf]].661 +Please see this link for how to upgrade: [[http:~~/~~/wiki.dragino.com/xwiki/bin/view/Main/Firmware%20Upgrade%20Instruction%20for%20STM32%20base%20products/#H2.HardwareUpgradeMethodSupportList>>url:http://wiki.dragino.com/xwiki/bin/view/Main/Firmware%20Upgrade%20Instruction%20for%20STM32%20base%20products/#H2.HardwareUpgradeMethodSupportList]] 643 643 644 -= ** 6.Trouble Shooting**=663 +(% style="color:red" %)**Notice: **(% style="color:blue" %)**NMDS200** (%%)**and (% style="color:blue" %)LMDS200(%%)**(% style="color:blue" %) (%%)**share the same mother board. They use the same connection and method to update.** 645 645 646 -== **6.1 Connection problem when uploading firmware** == 647 647 648 - **Pleasesee: **[[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]]666 += 6. Trouble Shooting = 649 649 650 -== **6.2ATCommand inputdoesn'twork**==668 +== 6.1 Connection problem when uploading firmware == 651 651 652 -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 **ENTER** while sending out the command. Some serial tool doesn't send **ENTER** while press the send key, user need to add ENTER in their string. 653 653 654 -= ** 7.Order** =671 +(% style="color:blue" %)**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]] 655 655 656 -Part Number**:** CPN01 657 657 658 -= **8.PackingInfo**=674 +== 6.2 AT Command input doesn't work == 659 659 660 -**Package Includes**: 661 661 662 -* CPN01 NB-IoT Soil Moisture & EC Sensor x 1 663 -* External antenna x 1 677 +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. 664 664 665 -**Dimension and weight**: 666 666 667 -* Size: 195 x 125 x 55 mm 668 -* Weight: 420g 680 += 7. Order Info = 669 669 670 -= **9. Support** = 671 671 672 -* 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. 673 -* 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]] 683 +Part Number:(% style="color:blue" %)** NMDS200** 674 674 675 - 676 676 686 += 8. Packing Info = 677 677 678 678 689 +(% style="color:blue" %)**Package Includes**: 679 679 691 +* NMDS200 NB-IoT Microwave Radar Distance Sensor x 1 680 680 693 += 9. Support = 681 681 682 682 696 +* 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. 683 683 698 +* 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]] 684 684 685 - 686 - 687 - 688 - 689 - 690 - 691 - 692 - 693 - 694 - 695 - 696 - 697 - 698 - 699 - 700 - 701 - 702 - 703 - 704 - 705 - 706 - 700 +
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