Changes for page NMDS200 - NB-IoT Microwave Radar Distance Sensor User Manual
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... ... @@ -1,27 +1,27 @@ 1 1 (% style="text-align:center" %) 2 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"]] 3 3 4 -{{toc/}} 5 5 6 6 = **1. Introduction** = 7 7 8 -== **1.1 **What is CPN01 **NB-I oT** Pulse/Contact Sensor ==7 +== **1.1 **What is CPN01 **NB-IOT** Pulse/Contact Sensor == 9 9 10 -The Dragino CP N01 is an(%style="color:blue" %)**NB-IoTDryContact Sensor**(%%). It detects open/close status and uplinksthe infotoIoT server viaNB-IoTnetwork.User can see the(% style="color:blue" %)**dry contact status, open time,andopen counts**(%%)in the IoT Server.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. 11 11 12 -The CP N01 will send periodically data every day as well as for each dry contact action. It also counts the contact open times and calculatesthelast open duration. Userscan also disable the uplink for eachOpen/Close event, instead, device can count each open event and uplink periodically.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. 13 13 14 -CP N01 has**(% style="color:blue"%)Open-Alarm feature(%%)**, user can set this feature soCPN01will sendan alarm if the contact has been openexceedsa certain time.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. 15 15 16 -CP N01 is designed for outdoor use. It has a weatherproof enclosure and industrial-level battery to work in low to high temperatures.15 +CPL01 is designed for outdoor use. It has a weatherproof enclosure and industrial level battery to work in low to high temperatures. 17 17 18 -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.19 -\\CPN01 supports different uplink methods includ ing (% style="color:blue" %)**TCP,,and CoAP**(%%)for different application requirements.20 -\\CPN01 is powered by (% style="color:blue" %)**8500mAh Li-SOCI2 battery**(%%), It is designed for long-term useofup to 5 years. (Actually Battery life depends on the use environment, update period & uplink method)21 -\\To use CPN01, user needs to check if there is NB-IoT coverage in thefieldand with theNb-IoT bandsthatCPN01 supports. If local operatorsupport it, user needs to get a(% style="color:blue" %)**NB-IoT SIM card**(%%)fromtheoperator and installintoCPN01 to get NB-IoT network connection.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 22 22 23 23 24 24 24 + 25 25 == **1.2 Features** == 26 26 27 27 * NB-IoT Bands: B1/B3/B8/B5/B20/B28 @H-FDD ... ... @@ -30,7 +30,7 @@ 30 30 * Monitor Battery Level 31 31 * Uplink on periodically and open/close event 32 32 * Datalog feature 33 -* Uplink periodically 33 +* Uplink on periodically 34 34 * Downlink to change configure 35 35 * Wall Mountable 36 36 * Outdoor Use ... ... @@ -37,7 +37,7 @@ 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 -term use40 +* 8500mAh Battery for long term use 41 41 42 42 == **1.3 Specification** == 43 43 ... ... @@ -57,13 +57,12 @@ 57 57 58 58 == **1.4 Installation** == 59 59 60 -Connect CP N01 to an Open Close sensor like below. So it can detect theOpen/Close event.60 +Connect CPL01 to an Open Close sensor like below. So it can detect the open/close event. 61 61 62 62 [[image:image-20221021110329-1.png]] 63 63 64 -[[image:image-2022102 2234602-2.png||height="288" width="922"]]64 +[[image:image-20221021110340-2.png]] 65 65 66 - 67 67 == **1.5 Applications** == 68 68 69 69 * Open/Close Detection ... ... @@ -80,32 +80,35 @@ 80 80 81 81 === **1.7.1 Pin Definition** === 82 82 83 -CP N01 is pre-configured to connect to two external wires. The other pins are not used. If user wants to know more about other pins, please refer to the**[[LSN50v2 User Manual>>doc:Main.UserManualforLoRaWAN End Nodes.LSN50& LSN50-V2- LoRaWANSensorNode Useranual.WebHome]]**.82 +CPL01 is pre-configured to connect to two external wires. The other pins are not used. If user wants to know more about other pins, please refer to the user manual of LSN50v2 at: [[https:~~/~~/www.dropbox.com/sh/djkxs7mr17y94mi/AABVlWbM9uzK9OA3mXyAT10Za?dl=0>>url:https://www.dropbox.com/sh/djkxs7mr17y94mi/AABVlWbM9uzK9OA3mXyAT10Za?dl=0]] 84 84 85 - 86 86 === **1.7.2 Jumper JP2(Power ON/OFF)** === 87 87 86 + 88 88 Power on Device when putting this jumper. 89 89 90 90 90 + 91 91 === **1.7.3 BOOT MODE / SW1** === 92 92 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. The firmware won't run.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 ingmode, the device starts to workfor NB-IoT connectionand sendsout console output for further debugging.96 +2) Flash: work mode, the device starts to work and send out console output for further debug 97 97 98 98 99 + 99 99 === **1.7.4 Reset Button** === 100 100 101 101 102 102 Press to reboot the device. 103 103 105 +== == 104 104 105 105 === **1.7.5 LED** === 106 106 107 107 108 - TheLEDwillblink when:110 +It will flash: 109 109 110 110 1. Boot the device in flash mode 111 111 1. Send an uplink packet ... ... @@ -114,27 +114,24 @@ 114 114 115 115 == **2.1 How it works** == 116 116 117 -The CPN01 is equipped with a nNB-IoT module, the pre-loaded firmware in CPN01 will get**Open/CloseEventor Count**from sensor and send the value totheNB-IoT network. The NB-IoT network will forward this value to IoT server via the protocol defined by CPN01.119 +The CPN01 is equipped with a NB-IoT module, the pre-loaded firmware in CPN01 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 CPN01. 118 118 119 -The diagram below shows the working flow in thedefault firmware of CPN01:121 +The diagram below shows the working flow in default firmware of CPN01: 120 120 121 121 [[image:image-20221021110615-5.png]] 122 122 125 +== **2.2 Configure the CPN01** == 123 123 124 -== **2.2 Configure CPN01** == 125 - 126 126 === **2.2.1 Test Requirement** === 127 127 128 -To use CPN01 in your city, make sure tomeet below requirements:129 +To use CPN01 in your city, make sure meet below requirements: 129 129 130 -* Your local operator has already distributed a nNB-IoT Network.131 +* Your local operator has already distributed a NB-IoT Network there. 131 131 * The local NB-IoT network used the band that CPN01 supports. 132 132 * Your operator is able to distribute the data received in their NB-IoT network to your IoT server. 133 133 134 -Below figure shows our testing structure. Here we have NB-IoT network coverage by 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 send data to the test server .135 +Below figure shows our testing structure. Here we have NB-IoT network coverage by 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 send data to the test server 135 135 136 -[[image:image-20221023000439-3.png]] 137 - 138 138 139 139 140 140 === **2.2.2 Insert SIM card** === ... ... @@ -141,11 +141,10 @@ 141 141 142 142 Insert the NB-IoT Card get from your provider. 143 143 144 -User need sto take out the NB-IoT module and insert the SIM card like below:143 +User need to take out the NB-IoT module and insert the SIM card like below: 145 145 146 146 [[image:image-20221021110745-6.png]] 147 147 148 - 149 149 === **2.2.3 Connect USB – TTL to CPN01 to configure it** === 150 150 151 151 User need to configure CPN01 via serial port to set the **Server Address** / **Uplink Topic** to define where and how-to uplink packets. CPN01 support AT Commands, user can use a USB to TTL adapter to connect to CPN01 and use AT Commands to configure it, as below. ... ... @@ -166,13 +166,10 @@ 166 166 * Parity: **None** 167 167 * Flow Control: **None** 168 168 169 -Make sure the switch is in FLASH position, then power on CPN01by connecting the(%style="color:orange"%)**YellowJumper**(%%).167 +Make sure the switch is in FLASH position, then power on device by connecting the jumper on CPN01. CPN01 will output system info once power on as below, we can enter the **password: 12345678** to access AT Command input. 170 170 171 171 [[image:image-20221021110817-7.png]] 172 172 173 -CPN01 will output system info once powered on as below, we can enter the **password: 12345678** to access AT Command input. 174 - 175 - 176 176 **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]] 177 177 178 178 === **2.2.4 Use CoAP protocol to uplink data** === ... ... @@ -201,7 +201,7 @@ 201 201 * **AT+SERVADDR=120.24.4.116,5601 ** ~/~/ to set UDP server address and port 202 202 * **AT+CFM=1 ** ~/~/If the server does not respond, this command is unnecessary 203 203 204 - [[image:image-20221021111025-10.png]] 199 + [[image:image-20221021111025-10.png]] 205 205 206 206 [[image:image-20221021111033-11.png||height="241" width="576"]] 207 207 ... ... @@ -219,7 +219,7 @@ 219 219 * **AT+PUBTOPIC=NSE01_PUB **~/~/Set the sending topic of MQTT 220 220 * **AT+SUBTOPIC=NSE01_SUB ** ~/~/Set the subscription topic of MQTT 221 221 222 - [[image:image-20221021111058-12.png]] 217 + [[image:image-20221021111058-12.png]] 223 223 224 224 [[image:image-20221021111108-13.png]] 225 225 ... ... @@ -234,7 +234,7 @@ 234 234 * **AT+PRO=4 ** ~/~/ Set to use TCP protocol to uplink 235 235 * **AT+SERVADDR=120.24.4.116,5600 ** ~/~/ to set TCP server address and port 236 236 237 - [[image:image-20221021111125-14.png]] 232 + [[image:image-20221021111125-14.png]] 238 238 239 239 [[image:image-20221021111131-15.png]] 240 240 ... ... @@ -268,35 +268,23 @@ 268 268 269 269 The payload is ASCII string, representative same HEX: 270 270 271 - **0x(% style="color:red" %)__0xf867787050213317__ (% style="color:blue" %)__0064__ (% style="color:green" %)_0c78__ __(% style="color:#00b0f0" %)17__ __(% style="color:#7030a0" %)01__ __(% style="color:#d60093" %)00__ __(% style="color:#a14d07" %)01 __ __(% style="color:#0020b0" %)__ __00__ __(% style="color:#420042" %)000009__ __(% style="color:#663300" %)000002__ __(% style="color:#d60093" %)6315537bb____(% style="color:#663300" %)// 0100000b02000002663510fed__ __0100000e0200000263510f39//(%%)**266 +0xf86778705021331700640c7817010001000000090000026315537b 0100000b02000002663510fed0100000e0200000263510f39010000000000000063510e85010000000000000063510d2e010000000000000063510c7a010000000000000063510bc6010000000000000063510954010000000000000063510882 where: 272 272 273 - where:274 -* (%style="color:#037691" %)**Device ID:**(%%)0xf867787050213317 = f867787050213317268 +* **Device ID: 0x f867787050213317 = f867787050213317** 269 +* **Version: 0x0064=100=1.0.0** 275 275 276 -*(% style="color:#037691" %) **Version:**(%%) 0x0064=100=1.0.0 271 +* **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,.......** 277 277 278 -*(% style="color:#037691" %) **BAT:**(%%) 0x0c78 = 3192 mV = 3.192V 279 - 280 -*(% style="color:#037691" %) **Singal: **(%%)0x17 = 23 281 - 282 -*(% style="color:#037691" %) **Mod:**(%%) 0x01 = 1 283 - 284 -*(% style="color:#037691" %) **Calculate Flag:**(%%) 0x00= 0 285 - 286 -*(% style="color:#037691" %) **Contact Status:**(%%) 0x00= 0 287 - 288 -*(% style="color:#037691" %) **Alarm:**(%%)0x00 =0 289 - 290 -*(% style="color:#037691" %) **Total pulse:0x09 =0** 291 - 292 -*(% style="color:#037691" %) **The last open duration:**(%%)0x02 =2 293 - 294 -*(% style="color:#037691" %)**Time stamp :**(%%) 0x6315537b =1662342011 295 - 296 -*(% style="color:#037691" %) **Contact Status, Total pulse, Calculate Flag, The last open duration ,Time stamp :**(%%) 0100000b0200002663510fed 297 - 298 -*(% style="color:#037691" %) **8 sets of recorded data: Contact Status, Total pulse, Calculate Flag, The last open duration ,Time stamp :**(%%) 0100000e0200002663510f39,....... 299 - 300 300 == **2.4 Payload Explanation and Sensor Interface** == 301 301 302 302 === **2.4.1 Device ID** ===
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