Changes for page LA66 USB LoRaWAN Adapter User Manual
Last modified by Xiaoling on 2025/02/07 16:37
From version 159.1
edited by Edwin Chen
on 2022/12/28 17:10
on 2022/12/28 17:10
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... ... @@ -1,1 +1,1 @@ 1 -LA66 USBLoRaWANAdapter UserManual1 +LA66 LoRaWAN Module - Author
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... ... @@ -6,25 +6,35 @@ 6 6 7 7 8 8 9 += 1. LA66 LoRaWAN Module = 9 9 10 10 11 -= 1. LA66 USBLoRaWANAdapter=12 +== 1.1 What is LA66 LoRaWAN Module == 12 12 13 -== 1.1 Overview == 14 14 15 15 16 -[[image:image-20220715001142-3.png||height="145" width="220"]] 16 +((( 17 +((( 18 +[[image:image-20220719093358-2.png||height="145" width="220"]](% style="color:blue" %)** ** 19 +))) 17 17 21 +((( 22 + 23 +))) 18 18 19 19 ((( 20 -(% style="color:blue" %)**LA66 USBLoRaWANAdapter**(%%) isdesignedtofastturnUSBdevicestoportLoRaWANwirelessfeatures. Itcombinesa CP2101 USB TTL Chip andLA66 LoRaWANmodulewhichcaneasy toaddLoRaWANwirelessfeature toPC/ MobilephoneoranembeddeddevicehasUSBInterface.26 +(% style="color:blue" %)**Dragino LA66**(%%) is a small wireless LoRaWAN module that offers a very compelling mix of long-range, low power consumption, and secure data transmission. It is designed to facilitate developers to quickly deploy industrial-level LoRaWAN and IoT solutions. It helps users to turn the idea into a practical application and make the Internet of Things a reality. It is easy to create and connect your things everywhere. 21 21 ))) 28 +))) 22 22 23 23 ((( 24 -(% style="color:blue" %)**LA66**(%%) is a ready-to-use module that includes the (% style="color:blue" %)**LoRaWAN v1.0.3 protocol**(%%). The LoRaWAN stack used in LA66 is used in more than 1 million LoRaWAN End Devices deployed world widely. This mature LoRaWAN stack greatly reduces the risk to make stable LoRaWAN Sensors to support different LoRaWAN servers and different countries' standards. External MCU can use AT command to call LA66 and start to transmit data via the LoRaWAN protocol. 31 +((( 32 +(% style="color:blue" %)**LA66**(%%) is a ready-to-use module that includes the (% style="color:blue" %)**LoRaWAN v1.0.4 protocol**(%%). The LoRaWAN stack used in LA66 is used in more than 1 million LoRaWAN End Devices deployed world widely. This mature LoRaWAN stack greatly reduces the risk to make stable LoRaWAN Sensors to support different LoRaWAN servers and different countries' standards. External MCU can use AT command to call LA66 and start to transmit data via the LoRaWAN protocol. 25 25 ))) 34 +))) 26 26 27 27 ((( 37 +((( 28 28 Each LA66 module includes a (% style="color:blue" %)**world-unique OTAA key**(%%) for LoRaWAN registration. 29 29 ))) 30 30 ... ... @@ -31,35 +31,38 @@ 31 31 ((( 32 32 Besides the support of the LoRaWAN protocol, LA66 also supports (% style="color:blue" %)**open-source peer-to-peer LoRa Protocol**(%%) for the none-LoRaWAN application. 33 33 ))) 44 +))) 34 34 35 35 ((( 47 +((( 36 36 LA66 is equipped with (% style="color:blue" %)**TCXO crystal**(%%) which ensures the module can achieve stable performance in extreme temperatures. 37 37 ))) 50 +))) 38 38 39 39 40 -== 1.2 Features == 41 41 42 42 43 - *LoRaWANUSBadapterbaseon LA66 LoRaWAN module44 - * Ultra-long RF range55 +== 1.2 Features == 56 + 45 45 * Support LoRaWAN v1.0.4 protocol 46 46 * Support peer-to-peer protocol 47 47 * TCXO crystal to ensure RF performance on low temperature 48 -* Sp ringRFantenna60 +* SMD Antenna pad and i-pex antenna connector 49 49 * Available in different frequency LoRaWAN frequency bands. 50 50 * World-wide unique OTAA keys. 51 51 * AT Command via UART-TTL interface 52 52 * Firmware upgradable via UART interface 53 -* Open Source Mobile App forLoRaWAN signaldetect andGPStracking.65 +* Ultra-long RF range 54 54 55 55 68 + 56 56 == 1.3 Specification == 57 57 58 - 59 59 * CPU: 32-bit 48 MHz 60 60 * Flash: 256KB 61 61 * RAM: 64KB 62 -* Input Power Range: 5v 74 +* Input Power Range: 1.8v ~~ 3.7v 75 +* Power Consumption: < 4uA. 63 63 * Frequency Range: 150 MHz ~~ 960 MHz 64 64 * Maximum Power +22 dBm constant RF output 65 65 * High sensitivity: -148 dBm ... ... @@ -71,360 +71,446 @@ 71 71 ** Operating: 10 ~~ 95% (Non-Condensing) 72 72 * LoRa Tx Current: <90 mA at +17 dBm, 108 mA at +22 dBm 73 73 * LoRa Rx current: <9 mA 87 +* I/O Voltage: 3.3v 74 74 75 75 76 -== 1.4 Pin Mapping & LED == 77 77 91 +== 1.4 AT Command == 78 78 79 -[[image:image-20220813183239-3.png||height="526" width="662"]] 80 80 94 +AT Command is valid over Main TXD and Main RXD. Serial Baud Rate is 9600. AT commands can be found in AT Command documents. 81 81 82 -== 1.5 Example: Send & Get Messages via LoRaWAN in PC == 83 83 84 84 85 -((( 86 -Assume user already input the LA66 USB LoRaWAN Adapter OTAA Keys in TTN and there is already TTN network coverage. 87 -))) 98 +== 1.5 Dimension == 88 88 100 +[[image:image-20220718094750-3.png]] 89 89 90 -(% style="color:blue" %)**1. Connect the LA66 USB LoRaWAN adapter to PC** 91 91 92 92 93 -[[image:image-20220723100027-1.png]] 94 94 105 +== 1.6 Pin Mapping == 95 95 96 -Open the serial port tool 97 97 98 -[[image:image-20220 602161617-8.png]]108 +[[image:image-20220719093156-1.png]] 99 99 100 100 101 -[[image:image-20220602161718-9.png||height="457" width="800"]] 102 102 112 +== 1.7 Land Pattern == 103 103 114 +[[image:image-20220517072821-2.png]] 104 104 105 -(% style="color:blue" %)**2. Press the reset switch RST on the LA66 USB LoRaWAN Adapter to reset it.** 106 106 107 107 108 - Thefollowingpicture appears to prove that theLA66USBLoRaWANAdapter successfullyJoin the LoRaWAN network118 += 2. LA66 LoRaWAN Shield = 109 109 110 110 111 - [[image:image-20220602161935-10.png||height="498"width="800"]]121 +== 2.1 Overview == 112 112 113 113 114 114 115 -(% style="color:blue" %)**3. See Uplink Command** 125 +((( 126 +[[image:image-20220715000826-2.png||height="145" width="220"]] 127 +))) 116 116 129 +((( 130 + 131 +))) 117 117 118 -Command format: (% style="color:#4472c4" %)** AT+SENDB=<confirn_status>,<Fport>,<data_len>,<data>** 133 +((( 134 +LA66 LoRaWAN Shield is the Arduino shield base on LA66. Users can use LA66 LoRaWAN Shield to rapidly add LoRaWAN or peer-to-peer LoRa wireless function to Arduino projects. 135 +))) 119 119 120 -example: AT+SENDB=01,02,8,05820802581ea0a5 137 +((( 138 +((( 139 +(% style="color:blue" %)**LA66**(%%) is a ready-to-use module that includes the (% style="color:blue" %)**LoRaWAN v1.0.4 protocol**(%%). The LoRaWAN stack used in LA66 is used in more than 1 million LoRaWAN End Devices deployed world widely. This mature LoRaWAN stack greatly reduces the risk to make stable LoRaWAN Sensors to support different LoRaWAN servers and different countries' standards. External MCU can use AT command to call LA66 and start to transmit data via the LoRaWAN protocol. 140 +))) 141 +))) 121 121 122 -[[image:image-20220602162157-11.png||height="497" width="800"]] 143 +((( 144 +((( 145 +Each LA66 module includes a (% style="color:blue" %)**world-unique OTAA key**(%%) for LoRaWAN registration. 146 +))) 147 +))) 123 123 149 +((( 150 +((( 151 +Besides the support of the LoRaWAN protocol, LA66 also supports (% style="color:blue" %)**open-source peer-to-peer LoRa Protocol**(%%) for the none-LoRaWAN application. 152 +))) 153 +))) 124 124 155 +((( 156 +((( 157 +LA66 is equipped with (% style="color:blue" %)**TCXO crystal**(%%) which ensures the module can achieve stable performance in extreme temperatures. 158 +))) 159 +))) 125 125 126 -(% style="color:blue" %)**4. Check to see if TTN received the message** 127 127 128 128 129 -[[image:image-20220817093644-1.png]] 130 130 164 +== 2.2 Features == 131 131 132 -== 1.6 Example: How to join helium == 166 +* Arduino Shield base on LA66 LoRaWAN module 167 +* Support LoRaWAN v1.0.4 protocol 168 +* Support peer-to-peer protocol 169 +* TCXO crystal to ensure RF performance on low temperature 170 +* SMA connector 171 +* Available in different frequency LoRaWAN frequency bands. 172 +* World-wide unique OTAA keys. 173 +* AT Command via UART-TTL interface 174 +* Firmware upgradable via UART interface 175 +* Ultra-long RF range 133 133 134 134 135 135 136 -(% style="color:blue" %)**1. Create a new device.** 137 137 180 +== 2.3 Specification == 138 138 139 -[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LA66%20LoRaWAN%20Shield%20User%20Manual/WebHome/image-20220907165500-1.png?width=940&height=464&rev=1.1||alt="image-20220907165500-1.png"]] 182 +* CPU: 32-bit 48 MHz 183 +* Flash: 256KB 184 +* RAM: 64KB 185 +* Input Power Range: 1.8v ~~ 3.7v 186 +* Power Consumption: < 4uA. 187 +* Frequency Range: 150 MHz ~~ 960 MHz 188 +* Maximum Power +22 dBm constant RF output 189 +* High sensitivity: -148 dBm 190 +* Temperature: 191 +** Storage: -55 ~~ +125℃ 192 +** Operating: -40 ~~ +85℃ 193 +* Humidity: 194 +** Storage: 5 ~~ 95% (Non-Condensing) 195 +** Operating: 10 ~~ 95% (Non-Condensing) 196 +* LoRa Tx Current: <90 mA at +17 dBm, 108 mA at +22 dBm 197 +* LoRa Rx current: <9 mA 198 +* I/O Voltage: 3.3v 140 140 141 141 142 142 143 -(% style="color:blue" %)**2. Save the device after filling in the necessary information.** 144 144 203 +== 2.4 Pin Mapping & LED == 145 145 146 -[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LA66%20LoRaWAN%20Shield%20User%20Manual/WebHome/image-20220907165837-2.png?width=809&height=375&rev=1.1||alt="image-20220907165837-2.png" height="375" width="809"]] 147 147 148 148 207 +== 2.5 Example: Use AT Command to communicate with LA66 module via Arduino UNO. == 149 149 150 -(% style="color:blue" %)**3. Use AT commands.** 151 151 152 152 153 - [[image:image-20220909151441-1.jpeg||height="695"width="521"]]211 +== 2.6 Example: Join TTN network and send an uplink message, get downlink message. == 154 154 155 155 156 156 157 - (%style="color:blue"%)**4.Use the serialport tool**215 +== 2.7 Example: Log Temperature Sensor(DHT11) and send data to TTN, show it in DataCake. == 158 158 159 159 160 -[[image:image-20220909151517-2.png||height="543" width="708"]] 161 161 219 +== 2.8 Upgrade Firmware of LA66 LoRaWAN Shield == 162 162 163 163 164 - (% style="color:blue"%)**5.UsecommandAT+CFG to getdeviceconfiguration**222 +=== 2.8.1 Items needed for update === 165 165 224 +1. LA66 LoRaWAN Shield 225 +1. Arduino 226 +1. USB TO TTL Adapter 166 166 167 -[[image: http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LA66%20LoRaWAN%20Shield%20User%20Manual/WebHome/image-20220907170308-3.png?width=617&height=556&rev=1.1||alt="image-20220907170308-3.png"height="556" width="617"]]228 +[[image:image-20220602100052-2.png||height="385" width="600"]] 168 168 169 169 231 +=== 2.8.2 Connection === 170 170 171 -(% style="color:blue" %)**6. Network successfully.** 172 172 234 +[[image:image-20220602101311-3.png||height="276" width="600"]] 173 173 174 -[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LA66%20LoRaWAN%20Shield%20User%20Manual/WebHome/image-20220907170436-4.png?rev=1.1||alt="image-20220907170436-4.png"]] 175 175 237 +((( 238 +(% style="color:blue" %)**LA66 LoRaWAN Shield**(%%) **<->** (% style="color:blue" %)**USB TTL** 239 +))) 176 176 241 +((( 242 +(% style="background-color:yellow" %)**GND <-> GND 243 +TXD <-> TXD 244 +RXD <-> RXD** 245 +))) 177 177 178 -(% style="color:blue" %)**7. Send uplink using command** 179 179 248 +Put a jumper cap on JP6 of LA66 LoRaWAN Shield. ( the jumper is to power on LA66 module) 180 180 181 - [[image:image-20220912085244-1.png]]250 +Connect USB TTL Adapter to PC after connecting the wires 182 182 183 183 184 -[[image:image-20220 912085307-2.png]]253 +[[image:image-20220602102240-4.png||height="304" width="600"]] 185 185 186 186 256 +=== 2.8.3 Upgrade steps === 187 187 188 -[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LA66%20LoRaWAN%20Shield%20User%20Manual/WebHome/image-20220907170744-6.png?width=798&height=242&rev=1.1||alt="image-20220907170744-6.png" height="242" width="798"]] 189 189 259 +==== 1. Switch SW1 to put in ISP position ==== 190 190 191 -== 1.7 Example: Send PC's CPU/RAM usage to TTN via python == 192 192 262 +[[image:image-20220602102824-5.png||height="306" width="600"]] 193 193 194 -**Use python as an example:**[[https:~~/~~/github.com/dragino/LA66/blob/main/Send_information_to_TTN_WindosPC.py>>https://github.com/dragino/LA66/blob/main/Send_information_to_TTN_WindosPC.py]] 195 195 196 -(**Raspberry Pi example: **[[https:~~/~~/github.com/dragino/LA66/blob/main/Send_information_to_TTN_Raspberry%20Pi.py>>https://github.com/dragino/LA66/blob/main/Send_information_to_TTN_Raspberry%20Pi.py]]) 197 197 266 +==== 2. Press the RST switch once ==== 198 198 199 -(% style="color:red" %)**Preconditions:** 200 200 201 - (% style="color:red" %)**1.LA66 USB LoRaWAN Adapterworks fine**269 +[[image:image-20220602104701-12.png||height="285" width="600"]] 202 202 203 -(% style="color:red" %)**2. LA66 USB LoRaWAN Adapter is registered with TTN** 204 204 205 205 273 +==== 3. Open the Upgrade tool (Tremo Programmer) in PC and Upgrade ==== 206 206 207 -(% style="color:blue" %)**Steps for usage:** 208 208 209 -(% style="color:blue" %)**1.**(%%) Press the reset switch RESET on the LA66 USB LoRaWAN Adapter 276 +((( 277 +(% style="color:blue" %)**1. Software download link: [[https:~~/~~/www.dragino.com/downloads/index.php?dir=LSN50-LoRaST/Utility/LSN50N/>>https://www.dragino.com/downloads/index.php?dir=LSN50-LoRaST/Utility/LSN50N/]]** 278 +))) 210 210 211 -(% style="color:blue" %)**2.**(%%) Add [[decoder>>https://github.com/dragino/dragino-end-node-decoder/tree/main/LA66%20USB]] on TTN 212 212 213 - (% style="color:blue" %)**3.**(%%) Run thepythonscript in PC and see the TTN281 +[[image:image-20220602103227-6.png]] 214 214 215 215 216 -[[image:image-202206021 15852-3.png||height="450" width="1187"]]284 +[[image:image-20220602103357-7.png]] 217 217 218 218 219 -== 1.8 Example: Send & Get Messages via LoRaWAN in RPi == 220 220 288 +(% class="wikigeneratedid" id="HSelecttheCOMportcorrespondingtoUSBTTL" %) 289 +(% style="color:blue" %)**2. Select the COM port corresponding to USB TTL** 221 221 222 -Assume user already input the LA66 USB LoRaWAN Adapter OTAA Keys in TTN and there is already TTN network coverage. 223 223 292 +[[image:image-20220602103844-8.png]] 224 224 225 -(% style="color:blue" %)**1. Connect the LA66 USB LoRaWAN Adapter to the Raspberry Pi** 226 226 227 227 228 -[[image:image-20220723100439-2.png]] 296 +(% class="wikigeneratedid" id="HSelectthebinfiletoburn" %) 297 +(% style="color:blue" %)**3. Select the bin file to burn** 229 229 230 230 300 +[[image:image-20220602104144-9.png]] 231 231 232 -(% style="color:blue" %)**2. Install Minicom in RPi.** 233 233 303 +[[image:image-20220602104251-10.png]] 234 234 235 -(% id="cke_bm_509388S" style="display:none" %) (%%)Enter the following command in the RPi terminal 236 236 237 - (% style="background-color:yellow" %)**apt update**306 +[[image:image-20220602104402-11.png]] 238 238 239 - (% style="background-color:yellow" %)**apt install minicom** 240 240 241 241 242 -Use minicom to connect to the RPI's terminal 310 +(% class="wikigeneratedid" id="HClicktostartthedownload" %) 311 +(% style="color:blue" %)**4. Click to start the download** 243 243 244 -[[image:image-202206021 53146-3.png||height="439" width="500"]]313 +[[image:image-20220602104923-13.png]] 245 245 246 246 247 247 248 -(% style="color:blue" %)**3. Press the reset switch RST on the LA66 USB LoRaWAN Adapter.** 317 +(% class="wikigeneratedid" id="HThefollowingfigureappearstoprovethattheburningisinprogress" %) 318 +(% style="color:blue" %)**5. Check update process** 249 249 250 250 251 - The followingpictureppears to prove that the LA66 USB LoRaWAN Adapter successfully entered the network.321 +[[image:image-20220602104948-14.png]] 252 252 253 253 254 -[[image:image-20220602154928-5.png||height="436" width="500"]] 255 255 325 +(% class="wikigeneratedid" id="HThefollowingpictureappearstoprovethattheburningissuccessful" %) 326 +(% style="color:blue" %)**The following picture shows that the burning is successful** 256 256 328 +[[image:image-20220602105251-15.png]] 257 257 258 -(% style="color:blue" %)**4. Send Uplink message** 259 259 260 260 261 - Format: (% style="color:#4472c4"%)**AT+SENDB=<confirn_status>,<Fport>,<data_len>,<data>**332 += 3. LA66 USB LoRaWAN Adapter = 262 262 263 -example: AT+SENDB=01,02,8,05820802581ea0a5 264 264 335 +== 3.1 Overview == 265 265 266 -[[image:image-20220 602160339-6.png||height="517" width="600"]]337 +[[image:image-20220715001142-3.png||height="145" width="220"]] 267 267 339 +(% style="color:blue" %)**LA66 USB LoRaWAN Adapter**(%%) is designed to fast turn USB devices to support LoRaWAN wireless features. It combines a CP2101 USB TTL Chip and LA66 LoRaWAN module which can easy to add LoRaWAN wireless feature to PC / Mobile phone or an embedded device that has USB Interface. 268 268 341 +(% style="color:blue" %)**LA66**(%%) is a ready-to-use module that includes the (% style="color:blue" %)**LoRaWAN v1.0.4 protocol**(%%). The LoRaWAN stack used in LA66 is used in more than 1 million LoRaWAN End Devices deployed world widely. This mature LoRaWAN stack greatly reduces the risk to make stable LoRaWAN Sensors to support different LoRaWAN servers and different countries' standards. External MCU can use AT command to call LA66 and start to transmit data via the LoRaWAN protocol. 269 269 270 - ChecktoseeifTTNreceivedthemessage343 +Each LA66 module includes a (% style="color:blue" %)**world-unique OTAA key**(%%) for LoRaWAN registration. 271 271 345 +Besides the support of the LoRaWAN protocol, LA66 also supports (% style="color:blue" %)**open-source peer-to-peer LoRa Protocol**(%%) for the none-LoRaWAN application. 272 272 273 - [[image:image-20220602160627-7.png||height="369" width="800"]]347 +LA66 is equipped with (% style="color:blue" %)**TCXO crystal**(%%) which ensures the module can achieve stable performance in extreme temperatures. 274 274 275 275 276 -== 1.9Example: Use of LA66 USB LoRaWAN Adapterand mobileAPP==350 +== 3.2 Features == 277 277 278 -=== 1.9.1 Hardware and Software Connection === 352 +* LoRaWAN USB adapter base on LA66 LoRaWAN module 353 +* Ultra-long RF range 354 +* Support LoRaWAN v1.0.4 protocol 355 +* Support peer-to-peer protocol 356 +* TCXO crystal to ensure RF performance on low temperature 357 +* Spring RF antenna 358 +* Available in different frequency LoRaWAN frequency bands. 359 +* World-wide unique OTAA keys. 360 +* AT Command via UART-TTL interface 361 +* Firmware upgradable via UART interface 362 +* Open Source Mobile App for LoRaWAN signal detect and GPS tracking. 279 279 280 280 281 281 282 -== ==(%style="color:blue"%)**Overview:**(%%)====366 +== 3.3 Specification == 283 283 368 +* CPU: 32-bit 48 MHz 369 +* Flash: 256KB 370 +* RAM: 64KB 371 +* Input Power Range: 5v 372 +* Frequency Range: 150 MHz ~~ 960 MHz 373 +* Maximum Power +22 dBm constant RF output 374 +* High sensitivity: -148 dBm 375 +* Temperature: 376 +** Storage: -55 ~~ +125℃ 377 +** Operating: -40 ~~ +85℃ 378 +* Humidity: 379 +** Storage: 5 ~~ 95% (Non-Condensing) 380 +** Operating: 10 ~~ 95% (Non-Condensing) 381 +* LoRa Tx Current: <90 mA at +17 dBm, 108 mA at +22 dBm 382 +* LoRa Rx current: <9 mA 284 284 285 -((( 286 -DRAGINO-LA66-APP is an Open Source mobile APP for LA66 USB LoRaWAN Adapter. DRAGINO-LA66-APP has below features: 287 287 288 -* Send real-time location information of mobile phone to LoRaWAN network. 289 -* Check LoRaWAN network signal strengh. 290 -* Manually send messages to LoRaWAN network. 291 -))) 292 292 386 +== 3.4 Pin Mapping & LED == 293 293 294 294 295 295 296 -== ==(%style="color:blue"%)**HardwareConnection:**(%%)====390 +== 3.5 Example: Send & Get Messages via LoRaWAN in PC == 297 297 298 298 299 -A USB toType-Cadapter isneededtoconnecttoa Mobilephone.393 +Assume user already input the LA66 USB LoRaWAN Adapter OTAA Keys in TTN and there is already TTN network coverage. 300 300 301 -Note: The package of LA66 USB adapter already includes this USB Type-C adapter. 302 302 303 - [[image:image-20220813174353-2.png||height="360"width="313"]]396 +(% style="color:blue" %)**1. Connect the LA66 USB LoRaWAN adapter to PC** 304 304 305 305 399 +[[image:image-20220602171217-1.png||height="538" width="800"]] 306 306 307 -==== (% style="color:blue" %)**Download and Install App:**(%%) ==== 308 308 402 +Open the serial port tool 309 309 310 -[[ (%id="cke_bm_895007S" style="display:none" %)** **(%%)**Download Link for Android apk **>>https://www.dropbox.com/sh/zxwx16qb777uvkz/AABE_P8coGCQ4DAC8enH4bUya?dl=0]]. (Android Version Only)404 +[[image:image-20220602161617-8.png]] 311 311 406 +[[image:image-20220602161718-9.png||height="457" width="800"]] 312 312 313 -[[image:image-20220813173738-1.png]] 314 314 315 315 410 +(% style="color:blue" %)**2. Press the reset switch RST on the LA66 USB LoRaWAN Adapter to reset it.** 316 316 317 - ====(%style="color:blue"%)**Use ofAPP:**(%%)====412 +The following picture appears to prove that the LA66 USB LoRaWAN Adapter successfully Join the LoRaWAN network 318 318 319 319 320 - Functionand pageroduction415 +[[image:image-20220602161935-10.png||height="498" width="800"]] 321 321 322 322 323 -[[image:image-20220723113448-7.png||height="995" width="450"]] 324 324 419 +(% style="color:blue" %)**3. See Uplink Command** 325 325 326 - **BlockExplain:**421 +Command format: (% style="color:#4472c4" %)** AT+SENDB=<confirn_status>,<Fport>,<data_len>,<data>** 327 327 328 - 1. DisplayLA66 USB LoRaWANModuleconnection status423 +example: AT+SENDB=01,02,8,05820802581ea0a5 329 329 330 -2. Checkandreconnect425 +[[image:image-20220602162157-11.png||height="497" width="800"]] 331 331 332 -3. Turn send timestamps on or off 333 333 334 -4. Display LoRaWan connection status 335 335 336 - 5.LoRaWanconnectionstatus429 +(% style="color:blue" %)**4. Check to see if TTN received the message** 337 337 338 - 6. TheRSSI valueof thenode when theACKis received431 +[[image:image-20220602162331-12.png||height="420" width="800"]] 339 339 340 -7. Node's Signal Strength Icon 341 341 342 -8. Configure Location Uplink Interval 343 343 344 - 9.AT commandinputbox435 +== 3.6 Example: Send PC's CPU/RAM usage to TTN via python == 345 345 346 -10. Send Button: Send input box info to LA66 USB Adapter 347 347 348 - 11.OutputLogfromUSBadapter438 +**Use python as an example:**[[https:~~/~~/github.com/dragino/LA66/blob/main/Send_information_to_TTN_WindosPC.py>>https://github.com/dragino/LA66/blob/main/Send_information_to_TTN_WindosPC.py]] 349 349 350 -12. clear log button 351 351 352 - 13.exitbutton441 +(% style="color:red" %)**Preconditions:** 353 353 443 +(% style="color:red" %)**1. LA66 USB LoRaWAN Adapter works fine** 354 354 445 +(% style="color:red" %)**2. LA66 USB LoRaWAN Adapter is registered with TTN** 355 355 356 -LA66 USB LoRaWAN Module not connected 357 357 358 358 359 - [[image:image-20220723110520-5.png||height="677"width="508"]]449 +(% style="color:blue" %)**Steps for usage:** 360 360 451 +(% style="color:blue" %)**1.**(%%) Press the reset switch RESET on the LA66 USB LoRaWAN Adapter 361 361 453 +(% style="color:blue" %)**2.**(%%) Run the python script in PC and see the TTN 362 362 363 - ConnectLA66 USB LoRaWAN Module455 +[[image:image-20220602115852-3.png||height="450" width="1187"]] 364 364 365 365 366 -[[image:image-20220723110626-6.png||height="681" width="511"]] 367 367 459 +== 3.7 Example: Send & Get Messages via LoRaWAN in RPi == 368 368 369 -=== 1.9.2 Send data to TTNv3 and plot location info in Node-Red === 370 370 462 +Assume user already input the LA66 USB LoRaWAN Adapter OTAA Keys in TTN and there is already TTN network coverage. 371 371 372 -(% style="color:blue" %)**1. Register LA66 USB LoRaWAN Module to TTNV3** 373 373 465 +(% style="color:blue" %)**1. Connect the LA66 USB LoRaWAN Adapter to the Raspberry Pi** 374 374 375 -[[image:image-20220723 134549-8.png]]467 +[[image:image-20220602171233-2.png||height="538" width="800"]] 376 376 377 377 378 378 379 -(% style="color:blue" %)**2. OpenNode-RED,Andimportthe JSON file to generatethe flow**471 +(% style="color:blue" %)**2. Install Minicom in RPi.** 380 380 473 +(% id="cke_bm_509388S" style="display:none" %) (%%)Enter the following command in the RPi terminal 381 381 382 - SampleJSONfilepleasegoto **[[this link>>https://www.dropbox.com/sh/zxwx16qb777uvkz/AABE_P8coGCQ4DAC8enH4bUya?dl=0]]**odownload.475 + (% style="background-color:yellow" %)**apt update** 383 383 384 - Fortheusageof Node-RED, pleaserefer to: [[http:~~/~~/wiki.dragino.com/xwiki/bin/view/Main/Node-RED/>>http://wiki.dragino.com/xwiki/bin/view/Main/Node-RED/]]477 + (% style="background-color:yellow" %)**apt install minicom** 385 385 386 -After see LoRaWAN Online, walk around and the APP will keep sending location info to LoRaWAN server and then to the Node Red. 387 387 388 - LA66~-~-node-red~-~-decoder:[[dragino-end-node-decoder/Node-REDatmain · dragino/dragino-end-node-decoder· GitHub>>url:https://github.com/dragino/dragino-end-node-decoder/tree/main/Node-RED]]480 +Use minicom to connect to the RPI's terminal 389 389 482 +[[image:image-20220602153146-3.png||height="439" width="500"]] 390 390 391 -Example output in NodeRed is as below: 392 392 393 -[[image:image-20220723144339-1.png]] 394 394 486 +(% style="color:blue" %)**3. Press the reset switch RST on the LA66 USB LoRaWAN Adapter.** 395 395 396 - ==1.10UpgradeFirmware ofLA66 USB LoRaWAN Adapter==488 +The following picture appears to prove that the LA66 USB LoRaWAN Adapter successfully entered the network. 397 397 398 398 399 - The LA66 USB LoRaWAN Adapteris the sameas theLA66LoRaWAN Shieldupdate method.491 +[[image:image-20220602154928-5.png||height="436" width="500"]] 400 400 401 -Just use the yellow jumper cap to short the BOOT corner and the RX corner, and then press the RESET button (without the jumper cap, you can directly short the BOOT corner and the RX corner with a wire to achieve the same effect). 402 402 403 -Notice: If upgrade via USB hub is not sucessful. try to connect to PC directly. 404 404 405 - [[image:image-20220723150132-2.png]]495 +(% style="color:blue" %)**4. Send Uplink message** 406 406 497 +Format: (% style="color:#4472c4" %)**AT+SENDB=<confirn_status>,<Fport>,<data_len>,<data>** 407 407 408 - =2. FAQ=499 +example: AT+SENDB=01,02,8,05820802581ea0a5 409 409 410 -== 2.1 How to Compile Source Code for LA66? == 411 411 502 +[[image:image-20220602160339-6.png||height="517" width="600"]] 412 412 413 -Compile and Upload Code to ASR6601 Platform :[[Instruction>>Main.User Manual for LoRaWAN End Nodes.LA66 LoRaWAN Module.Compile and Upload Code to ASR6601 Platform.WebHome]] 414 414 415 415 416 - == 2.2 WheretofindPeer-to-Peerfirmwareof LA66? ==506 +Check to see if TTN received the message 417 417 508 +[[image:image-20220602160627-7.png||height="369" width="800"]] 418 418 419 -Instruction for LA66 Peer to Peer firmware :[[ Instruction >>doc:Main.User Manual for LoRaWAN End Nodes.LA66 LoRaWAN Shield User Manual.Instruction for LA66 Peer to Peer firmware.WebHome]] 420 420 421 421 422 -= 3. OrderInfo =512 +== 3.8 Example: LA66 USB Module got a message from LA66 LoRa Shield and send the sensor data to NodeRed. == 423 423 424 424 425 -**Part Number:** (% style="color:blue" %)**LA66-USB-LoRaWAN-Adapter-XXX** 426 426 516 +== 3.9 Upgrade Firmware of LA66 USB LoRaWAN Adapter == 427 427 518 + 519 + 520 + 521 += 4. Order Info = 522 + 523 + 524 +**Part Number:** (% style="color:blue" %)**LA66-XXX**(%%), (% style="color:blue" %)**LA66-LoRaWAN-Shield-XXX** (%%) **or** (% style="color:blue" %)**LA66-USB-LoRaWAN-Adapter-XXX** 525 + 526 + 428 428 (% style="color:blue" %)**XXX**(%%): The default frequency band 429 429 430 430 * (% style="color:red" %)**AS923**(%%): LoRaWAN AS923 band ... ... @@ -437,39 +437,6 @@ 437 437 * (% style="color:red" %)**CN470**(%%): LoRaWAN CN470 band 438 438 * (% style="color:red" %)**PP**(%%): Peer to Peer LoRa Protocol 439 439 539 += 5. Reference = 440 440 441 -= 4. Reference = 442 - 443 - 444 -* Hardware Design File for LA66 USB LoRaWAN Adapter : [[Download>>https://www.dropbox.com/sh/a3wbmdcvqjxaqw5/AADZfvAiykJTK624RgMquH86a?dl=0]] 445 -* Mobile Phone App Source Code: [[Download>>https://github.com/dragino/LA66_Mobile_App]]. 446 - 447 - 448 -= 5. FCC Statement = 449 - 450 - 451 -(% style="color:red" %)**FCC Caution:** 452 - 453 -Any Changes or modifications not expressly approved by the party responsible for compliance could void the user's authority to operate the equipment. 454 - 455 -This device complies with part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) This device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation. 456 - 457 - 458 -(% style="color:red" %)**IMPORTANT NOTE: ** 459 - 460 -(% style="color:red" %)**Note:**(%%) This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures: 461 - 462 -—Reorient or relocate the receiving antenna. 463 - 464 -—Increase the separation between the equipment and receiver. 465 - 466 -—Connect the equipment into an outlet on a circuit different from that to which the receiver is connected. 467 - 468 -—Consult the dealer or an experienced radio/TV technician for help. 469 - 470 - 471 -(% style="color:red" %)**FCC Radiation Exposure Statement: ** 472 - 473 -This equipment complies with FCC radiation exposure limits set forth for an uncontrolled environment.This equipment should be installed and operated with minimum distance 20cm between the radiator& your body. 474 - 475 - 541 +* Hardware Design File for LA66 LoRaWAN Shield, LA66 USB LoRaWAN Adapter : [[Download>>https://www.dropbox.com/sh/a3wbmdcvqjxaqw5/AADZfvAiykJTK624RgMquH86a?dl=0]]
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