Last modified by Mengting Qiu on 2025/07/14 09:59

From version 32.5
edited by Xiaoling
on 2022/06/02 15:25
Change comment: There is no comment for this version
To version 72.1
edited by Bei Jinggeng
on 2022/08/24 14:56
Change comment: There is no comment for this version

Summary

Details

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Title
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1 -RS485-LN – RS485 to LoRaWAN Converter
1 +RS485-LN – RS485 to LoRaWAN Converter User Manual
Author
... ... @@ -1,1 +1,1 @@
1 -XWiki.Xiaoling
1 +XWiki.Bei
Content
... ... @@ -1,17 +1,33 @@
1 -(% style="text-align:center" %)
2 -[[image:1653266934636-343.png||height="385" width="385"]]
1 +(% aria-label="1653266934636-343.png image widget" contenteditable="false" role="region" tabindex="-1" %)
2 +(((
3 +(% data-widget="image" style="text-align:center" %)
4 +[[image:1653266934636-343.png||height="385" width="385"]](% title="Click and drag to resize" %)​
3 3  
6 +(% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||height="15" role="presentation" title="Click and drag to move" width="15"]]
7 +)))
4 4  
5 5  
6 -**RS485-LN – RS485 to LoRaWAN Converter User Manual**
7 7  
8 8  
12 +
13 +
14 +
9 9  **Table of Contents:**
10 10  
17 +{{toc/}}
11 11  
12 12  
20 +(% aria-label="macro:toc widget" contenteditable="false" role="region" tabindex="-1" %)
21 +(((
22 +(% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||height="15" role="presentation" title="Click and drag to move" width="15"]]
23 +)))
13 13  
14 14  
26 +
27 +
28 +
29 +
30 +
15 15  = 1.Introduction =
16 16  
17 17  == 1.1 What is RS485-LN RS485 to LoRaWAN Converter ==
... ... @@ -18,31 +18,47 @@
18 18  
19 19  (((
20 20  (((
37 +(((
38 +
39 +
21 21  The Dragino RS485-LN is a (% style="color:blue" %)**RS485 to LoRaWAN Converter**(%%). It converts the RS485 signal into LoRaWAN wireless signal which simplify the IoT installation and reduce the installation/maintaining cost.
22 22  )))
42 +)))
23 23  
24 24  (((
45 +(((
25 25  RS485-LN allows user to (% style="color:blue" %)**monitor / control RS485 devices**(%%) and reach extremely long ranges. It provides ultra-long range spread spectrum communication and high interference immunity whilst minimizing current consumption. It targets professional wireless sensor network applications such as irrigation systems, smart metering, smart cities, smartphone detection, building automation, and so on.
26 26  )))
48 +)))
27 27  
28 28  (((
51 +(((
29 29  (% style="color:blue" %)**For data uplink**(%%), RS485-LN sends user-defined commands to RS485 devices and gets the return from the RS485 devices. RS485-LN will process these returns according to user-define rules to get the final payload and upload to LoRaWAN server.
30 30  )))
54 +)))
31 31  
32 32  (((
57 +(((
33 33  (% style="color:blue" %)**For data downlink**(%%), RS485-LN runs in LoRaWAN Class C. When there downlink commands from LoRaWAN server, RS485-LN will forward the commands from LoRaWAN server to RS485 devices.
59 +)))
34 34  
61 +(((
35 35  (% style="color:blue" %)**Demo Dashboard for RS485-LN**(%%) connect to two energy meters: [[https:~~/~~/app.datacake.de/dashboard/d/58844a26-378d-4c5a-aaf5-b5b5b153447a>>url:https://app.datacake.de/dashboard/d/58844a26-378d-4c5a-aaf5-b5b5b153447a]]
63 +
64 +
36 36  )))
37 37  )))
67 +)))
38 38  
39 -[[image:1653267211009-519.png||height="419" width="724"]]
69 +(% aria-label="1653267211009-519.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:1653267211009-519.png||data-widget="image" height="419" width="724"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
40 40  
41 41  
72 +
42 42  == 1.2 Specifications ==
43 43  
44 -**Hardware System:**
45 45  
76 +(% style="color:#037691" %)**Hardware System:**
77 +
46 46  * STM32L072CZT6 MCU
47 47  * SX1276/78 Wireless Chip 
48 48  * Power Consumption (exclude RS485 device):
... ... @@ -49,12 +49,12 @@
49 49  ** Idle: 32mA@12v
50 50  ** 20dB Transmit: 65mA@12v
51 51  
52 -**Interface for Model:**
84 +(% style="color:#037691" %)**Interface for Model:**
53 53  
54 54  * RS485
55 55  * Power Input 7~~ 24V DC. 
56 56  
57 -**LoRa Spec:**
89 +(% style="color:#037691" %)**LoRa Spec:**
58 58  
59 59  * Frequency Range:
60 60  ** Band 1 (HF): 862 ~~ 1020 Mhz
... ... @@ -73,12 +73,13 @@
73 73  * Preamble detection.
74 74  * 127 dB Dynamic Range RSSI.
75 75  * Automatic RF Sense and CAD with ultra-fast AFC.
76 -* Packet engine up to 256 bytes with CRC.
108 +* Packet engine up to 256 bytes with CRC
77 77  
78 78  == 1.3 Features ==
79 79  
112 +
80 80  * LoRaWAN Class A & Class C protocol (default Class C)
81 -* Frequency Bands: CN470/EU433/KR920/US915/EU868/AS923/AU915/IN865/RU864
114 +* Frequency Bands: CN470/EU433/KR920/US915/EU868/AS923/AU915/IN865/RU864/MA869
82 82  * AT Commands to change parameters
83 83  * Remote configure parameters via LoRa Downlink
84 84  * Firmware upgradable via program port
... ... @@ -88,6 +88,7 @@
88 88  
89 89  == 1.4 Applications ==
90 90  
124 +
91 91  * Smart Buildings & Home Automation
92 92  * Logistics and Supply Chain Management
93 93  * Smart Metering
... ... @@ -97,20 +97,32 @@
97 97  
98 98  == 1.5 Firmware Change log ==
99 99  
134 +
100 100  [[RS485-LN Image files – Download link and Change log>>url:http://www.dragino.com/downloads/index.php?dir=RS485-LN/]]
101 101  
137 +
138 +
102 102  == 1.6 Hardware Change log ==
103 103  
141 +
104 104  (((
105 105  (((
144 +(((
106 106  v1.2: Add External Interrupt Pin.
146 +)))
107 107  
148 +(((
108 108  v1.0: Release
109 109  )))
151 +
152 +
153 +
110 110  )))
155 +)))
111 111  
112 112  = 2. Power ON Device =
113 113  
159 +
114 114  (((
115 115  The RS485-LN can be powered by 7 ~~ 24V DC power source. Connection as below
116 116  
... ... @@ -121,7 +121,10 @@
121 121  Once there is power, the RS485-LN will be on.
122 122  )))
123 123  
124 -[[image:1653268091319-405.png]]
170 +(% aria-label="1653268091319-405.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:1653268091319-405.png||data-widget="image"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
171 +
172 +
173 +
125 125  )))
126 126  
127 127  = 3. Operation Mode =
... ... @@ -128,29 +128,44 @@
128 128  
129 129  == 3.1 How it works? ==
130 130  
180 +
131 131  (((
182 +(((
132 132  The RS485-LN is configured as LoRaWAN OTAA Class C mode by default. It has OTAA keys to join network. To connect a local LoRaWAN network, user just need to input the OTAA keys in the network server and power on the RS485-LN. It will auto join the network via OTAA.
133 133  )))
134 134  
186 +
187 +
188 +)))
189 +
135 135  == 3.2 Example to join LoRaWAN network ==
136 136  
192 +
137 137  Here shows an example for how to join the TTN V3 Network. Below is the network structure, we use [[LG308>>url:http://www.dragino.com/products/lora-lorawan-gateway/item/140-lg308.html]] as LoRaWAN gateway here. 
138 138  
139 -[[image:1653268155545-638.png||height="334" width="724"]]
195 +(% aria-label="1653268155545-638.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:1653268155545-638.png||data-widget="image" height="334" width="724"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
140 140  
197 +
141 141  (((
199 +(((
142 142  The RS485-LN in this example connected to two RS485 devices for demonstration, user can connect to other RS485 devices via the same method. The connection is as below:
201 +)))
143 143  
203 +(((
144 144  485A+ and 485B- of the sensor are connected to RS485A and RA485B of RS485-LN respectively.
205 +)))
145 145  
146 -[[image:1653268227651-549.png||height="592" width="720"]]
207 +(% aria-label="1653268227651-549.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:1653268227651-549.png||data-widget="image" height="592" width="720"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
147 147  
209 +
148 148  (((
149 -The LG308 is already set to connect to [[TTN V3 network >>path:eu1.cloud.thethings.network/]]. So what we need to now is only configure the TTN V3:
211 +The LG308 is already set to connect to [[TTN V3 network >>path:https://www.thethingsnetwork.org/]]. So what we need to now is only configure the TTN V3:
212 +
213 +
150 150  )))
151 151  
152 152  (((
153 -**Step 1**: Create a device in TTN V3 with the OTAA keys from RS485-LN.
217 +(% style="color:blue" %)**Step 1**(%%): Create a device in TTN V3 with the OTAA keys from RS485-LN.
154 154  )))
155 155  
156 156  (((
... ... @@ -158,8 +158,9 @@
158 158  )))
159 159  )))
160 160  
161 -[[image:1652953462722-299.png]]
225 +(% aria-label="1652953462722-299.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:1652953462722-299.png||data-widget="image"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
162 162  
227 +
163 163  (((
164 164  (((
165 165  User can enter this key in their LoRaWAN Server portal. Below is TTN V3 screen shot:
... ... @@ -166,62 +166,75 @@
166 166  )))
167 167  
168 168  (((
169 -Add APP EUI in the application.
234 +**Add APP EUI in the application.**
170 170  )))
171 171  )))
172 172  
173 -[[image:image-20220519174512-1.png]]
238 +(% aria-label="image-20220519174512-1.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:image-20220519174512-1.png||data-widget="image"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
174 174  
175 -[[image:image-20220519174512-2.png||height="323" width="720"]]
240 +(% aria-label="image-20220519174512-2.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:image-20220519174512-2.png||data-widget="image" height="323" width="720"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
176 176  
177 -[[image:image-20220519174512-3.png||height="556" width="724"]]
242 +(% aria-label="image-20220519174512-3.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:image-20220519174512-3.png||data-widget="image" height="556" width="724"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
178 178  
179 -[[image:image-20220519174512-4.png]]
244 +(% aria-label="image-20220519174512-4.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:image-20220519174512-4.png||data-widget="image"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
180 180  
181 181  You can also choose to create the device manually.
182 182  
183 -[[image:1652953542269-423.png||height="710" width="723"]]
248 +(% aria-label="1652953542269-423.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:1652953542269-423.png||data-widget="image" height="710" width="723"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
184 184  
185 -Add APP KEY and DEV EUI
186 186  
187 -[[image:1652953553383-907.png||height="514" width="724"]]
188 188  
252 +**Add APP KEY and DEV EUI**
189 189  
254 +(% aria-label="1652953553383-907.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:1652953553383-907.png||data-widget="image" height="514" width="724"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
255 +
256 +
190 190  (((
191 -**Step 2**: Power on RS485-LN and it will auto join to the TTN V3 network. After join success, it will start to upload message to TTN V3 and user can see in the panel.
258 +(% style="color:blue" %)**Step 2**(%%): Power on RS485-LN and it will auto join to the TTN V3 network. After join success, it will start to upload message to TTN V3 and user can see in the panel.
192 192  )))
193 193  
194 -[[image:1652953568895-172.png||height="232" width="724"]]
261 +(% aria-label="1652953568895-172.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:1652953568895-172.png||data-widget="image" height="232" width="724"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
195 195  
263 +
264 +
196 196  == 3.3 Configure Commands to read data ==
197 197  
267 +
198 198  (((
199 199  (((
200 -There are plenty of RS485 devices in the market and each device has different command to read the valid data. To support these devices in flexible, RS485-LN supports flexible command set. User can use [[AT Commands>>path:#AT_COMMAND]] or LoRaWAN Downlink Command to configure what commands RS485-LN should send for each sampling and how to handle the return from RS485 devices.
270 +(((
271 +There are plenty of RS485 devices in the market and each device has different command to read the valid data. To support these devices in flexible, RS485-LN supports flexible command set. User can use [[AT Commands>>||anchor="H3.5ConfigureRS485-LNviaATorDownlink"]] or LoRaWAN Downlink Command to configure what commands RS485-LN should send for each sampling and how to handle the return from RS485 devices.
201 201  )))
273 +)))
202 202  
203 203  (((
204 -(% style="color:red" %)Note: below description and commands are for firmware version >v1.1, if you have firmware version v1.0. Please check the [[user manual v1.0>>url:http://www.dragino.com/downloads/index.php?dir=RS485-LN/&file=RS485-LN_UserManual_v1.0.1.pdf]] or upgrade the firmware to v1.1
276 +(((
277 +(% style="color:red" %)**Note: below description and commands are for firmware version >v1.1, if you have firmware version v1.0. Please check the [[user manual v1.0>>url:http://www.dragino.com/downloads/index.php?dir=RS485-LN/&file=RS485-LN_UserManual_v1.0.1.pdf]] or upgrade the firmware to v1.1**
205 205  )))
279 +
280 +
281 +
206 206  )))
283 +)))
207 207  
208 -=== 3.3.1 onfigure UART settings for RS485 or TTL communication ===
285 +=== 3.3.1 Configure UART settings for RS485 or TTL communication ===
209 209  
287 +
210 210  To use RS485-LN to read data from RS485 sensors, connect the RS485-LN A/B traces to the sensors. And user need to make sure RS485-LN use the match UART setting to access the sensors. The related commands for UART settings are:
211 211  
212 -(% border="1" style="background-color:#ffffcc; color:green; width:795px" %)
213 -|(((
290 +(% border="1" cellspacing="10" style="background-color:#ffffcc; color:green; width:510px" %)
291 +|=(% style="width: 110px;" %)(((
214 214  **AT Commands**
215 -)))|(% style="width:285px" %)(((
293 +)))|=(% style="width: 190px;" %)(((
216 216  **Description**
217 -)))|(% style="width:347px" %)(((
295 +)))|=(% style="width: 190px;" %)(((
218 218  **Example**
219 219  )))
220 -|(((
298 +|(% style="width:110px" %)(((
221 221  AT+BAUDR
222 -)))|(% style="width:285px" %)(((
300 +)))|(% style="width:190px" %)(((
223 223  Set the baud rate (for RS485 connection). Default Value is: 9600.
224 -)))|(% style="width:347px" %)(((
302 +)))|(% style="width:190px" %)(((
225 225  (((
226 226  AT+BAUDR=9600
227 227  )))
... ... @@ -230,11 +230,11 @@
230 230  Options: (1200,2400,4800,14400,19200,115200)
231 231  )))
232 232  )))
233 -|(((
311 +|(% style="width:110px" %)(((
234 234  AT+PARITY
235 -)))|(% style="width:285px" %)(((
313 +)))|(% style="width:190px" %)(((
236 236  Set UART parity (for RS485 connection)
237 -)))|(% style="width:347px" %)(((
315 +)))|(% style="width:190px" %)(((
238 238  (((
239 239  AT+PARITY=0
240 240  )))
... ... @@ -243,9 +243,9 @@
243 243  Option: 0: no parity, 1: odd parity, 2: even parity
244 244  )))
245 245  )))
246 -|(((
324 +|(% style="width:110px" %)(((
247 247  AT+STOPBIT
248 -)))|(% style="width:285px" %)(((
326 +)))|(% style="width:190px" %)(((
249 249  (((
250 250  Set serial stopbit (for RS485 connection)
251 251  )))
... ... @@ -253,7 +253,7 @@
253 253  (((
254 254  
255 255  )))
256 -)))|(% style="width:347px" %)(((
334 +)))|(% style="width:190px" %)(((
257 257  (((
258 258  AT+STOPBIT=0 for 1bit
259 259  )))
... ... @@ -269,904 +269,1286 @@
269 269  
270 270  === 3.3.2 Configure sensors ===
271 271  
350 +
272 272  (((
273 273  (((
274 -Some sensors might need to configure before normal operation. User can configure such sensor via PC and RS485 adapter or through RS485-LN AT Commands (% style="color:#4f81bd" %)**AT+CFGDEV**(%%). Each (% style="color:#4f81bd" %)**AT+CFGDEV **(%%)equals to send a RS485 command to sensors. This command will only run when user input it and won’t run during each sampling.
353 +Some sensors might need to configure before normal operation. User can configure such sensor via PC and RS485 adapter or through RS485-LN AT Commands (% style="color:#4f81bd" %)**AT+CFGDEV**(%%). Each (% style="color:#4f81bd" %)**AT+CFGDEV **(%%)equals to send a RS485 command to sensors. This command will only run when user input it and won't run during each sampling.
354 +
355 +
275 275  )))
276 276  )))
277 277  
278 -(% border="1" style="background-color:#ffffcc; color:green; width:806px" %)
279 -|**AT Commands**|(% style="width:418px" %)**Description**|(% style="width:256px" %)**Example**
280 -|AT+CFGDEV|(% style="width:418px" %)(((
359 +(% border="1" cellspacing="10" style="background-color:#ffffcc; color:green; width:510px" %)
360 +|=(% style="width: 110px;" %)**AT Commands**|=(% style="width: 190px;" %)**Description**|=(% style="width: 190px;" %)**Example**
361 +|AT+CFGDEV|(% style="width:110px" %)(((
362 +(((
281 281  This command is used to configure the RS485/TTL devices; they won’t be used during sampling.
364 +)))
282 282  
366 +(((
283 283  AT+CFGDEV=xx xx xx xx xx xx xx xx xx xx xx xx,
368 +)))
284 284  
370 +(((
285 285  mm: 0: no CRC, 1: add CRC-16/MODBUS in the end of this command
286 -)))|(% style="width:256px" %)AT+CFGDEV=xx xx xx xx xx xx xx xx xx xx xx xx,m
372 +)))
373 +)))|(% style="width:190px" %)AT+CFGDEV=xx xx xx xx xx xx xx xx xx xx xx xx,m
287 287  
288 288  === 3.3.3 Configure read commands for each sampling ===
289 289  
290 -(((
291 -RS485-BL is a battery powered device; it will sleep most of time. And wake up on each period and read RS485 / TTL sensor data and uplink.
292 -)))
293 293  
294 294  (((
295 -During each sampling, we need to confirm what commands we need to send to the sensors to read data. After the RS485/TTL sensors send back the value, it normally includes some bytes and we only need a few from them for a shorten payload.
296 -)))
379 +During each sampling, we need confirm what commands we need to send to the RS485 sensors to read data. After the RS485 sensors send back the value, it normally include some bytes and we only need a few from them for a shorten payload.
297 297  
298 -(((
299 299  To save the LoRaWAN network bandwidth, we might need to read data from different sensors and combine their valid value into a short payload.
300 -)))
301 301  
302 -(((
303 303  This section describes how to achieve above goals.
304 -)))
305 305  
306 -(((
307 -During each sampling, the RS485-BL can support 15 commands to read sensors. And combine the return to one or several uplink payloads.
308 -)))
385 +During each sampling, the RS485-LN can support 15 commands to read sensors. And combine the return to one or several uplink payloads.
309 309  
310 -(((
311 -**Command from RS485-BL to Sensor:**
387 +
388 +(% style="color:#037691" %)**Each RS485 commands include two parts:**
389 +
390 +~1. What commands RS485-LN will send to the RS485 sensors. There are total 15 commands from **AT+COMMAD1**, **ATCOMMAND2**,…, to **AT+COMMANDF**. All commands are of same grammar.
391 +
392 +2. How to get wanted value the from RS485 sensors returns from by 1). There are total 15 AT Commands to handle the return, commands are **AT+DATACUT1**,**AT+DATACUT2**,…, **AT+DATACUTF** corresponding to the commands from 1). All commands are of same grammar.
393 +
394 +3. Some RS485 device might has longer delay on reply, so user can use AT+CMDDL to set the timeout for getting reply after the RS485 command is sent. For example **AT+CMDDL1=1000** to send the open time to 1000ms
395 +
396 +
397 +After we got the valid value from each RS485 commands, we need to combine them together with the command **AT+DATAUP**.
398 +
399 +Below are examples for the how above AT Commands works.
400 +
401 +
402 +(% style="color:#037691" %)**AT+COMMANDx **(%%)**: **This command will be sent to RS485 devices during each sampling, Max command length is 14 bytes. The grammar is:
403 +
404 +(% border="1" style="background-color:#4bacc6; color:white; width:499px" %)
405 +|(% style="width:496px" %)(((
406 +(% style="color:#037691" %)**AT+COMMANDx=xx xx xx xx xx xx xx xx xx xx xx xx,m**
407 +
408 +**xx xx xx xx xx xx xx xx xx xx xx xx: The RS485 command to be sent**
409 +
410 +**m: 0: no CRC, 1: add CRC-16/MODBUS in the end of this command**
312 312  )))
313 313  
314 -(((
315 -RS485-BL can send out pre-set max 15 strings via **AT+COMMAD1**, **ATCOMMAND2**,…, to **AT+COMMANDF** . All commands are of same grammar.
413 +For example, if we have a RS485 sensor. The command to get sensor value is: 01 03 0B B8 00 02 46 0A. Where 01 03 0B B8 00 02 is the Modbus command to read the register 0B B8 where stored the sensor value. The 46 0A is the CRC-16/MODBUS which calculate manually.
414 +
415 +In the RS485-LN, we should use this command AT+COMMAND1=01 03 0B B8 00 02,1 for the same.
416 +
417 +
418 +(% style="color:#037691" %)**AT+DATACUTx **(%%)**: **This command defines how to handle the return from AT+COMMANDx, max return length is 100 bytes.
419 +
420 +(% border="1" style="background-color:#4bacc6; color:white; width:510px" %)
421 +|(% style="width:510px" %)(((
422 +**AT+DATACUTx=a,b,c**
423 +
424 +* **a: length for the return of AT+COMMAND**
425 +* **b:1: grab valid value by byte, max 6 bytes. 2: grab valid value by bytes section, max 3 sections.**
426 +* **c: define the position for valid value.  **
316 316  )))
317 317  
318 -(((
319 -**Handle return from sensors to RS485-BL**:
429 +**Examples:**
430 +
431 +* (% style="color:#037691" %)**Grab bytes**
432 +
433 +(% aria-label="image-20220602153621-1.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:image-20220602153621-1.png||data-widget="image"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
434 +
435 +
436 +
437 +* (% style="color:#037691" %)**Grab a section**
438 +
439 +(% aria-label="image-20220602153621-2.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:image-20220602153621-2.png||data-widget="image"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
440 +
441 +
442 +
443 +* (% style="color:#037691" %)**Grab different sections**
444 +
445 +(% aria-label="image-20220602153621-3.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:image-20220602153621-3.png||data-widget="image"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
446 +
447 +
448 +
320 320  )))
321 321  
451 +=== 3.3.4 Compose the uplink payload ===
452 +
453 +
322 322  (((
323 -After RS485-BL send out a string to sensor, RS485-BL will wait for the return from RS485 or TTL sensor. And user can specify how to handle the return, by **AT+DATACUT or AT+SEARCH commands**
324 -)))
455 +Through AT+COMMANDx and AT+DATACUTx we got valid value from each RS485 commands, Assume these valid value are RETURN1, RETURN2, .., to RETURNx. The next step is how to compose the LoRa Uplink Payload by these RETURNs. The command is **AT+DATAUP.**
325 325  
326 -* (((
327 -**AT+DATACUT**
457 +
328 328  )))
329 329  
330 330  (((
331 -When the return value from sensor have fix length and we know which position the valid value we should get, we can use AT+DATACUT command.
332 -)))
461 +(% style="color:#037691" %)**Examples: AT+DATAUP=0**
333 333  
334 -* (((
335 -**AT+SEARCH**
463 +
336 336  )))
337 337  
338 338  (((
339 -When the return value from sensor is dynamic length and we are not sure which bytes the valid data is, instead, we know what value the valid value following. We can use AT+SEARCH to search the valid value in the return string.
467 +Compose the uplink payload with value returns in sequence and send with (% style="color:red" %)**A SIGNLE UPLINK**.
340 340  )))
341 341  
342 342  (((
343 -**Define wait timeout:**
471 +Final Payload is
344 344  )))
345 345  
346 346  (((
347 -Some RS485 device might has longer delay on reply, so user can use AT+CMDDL to set the timeout for getting reply after the RS485 command is sent. For example, AT+CMDDL1=1000 to send the open time to 1000ms
475 +(% style="color:#4f81bd" %)**Battery Info+PAYVER + VALID Value from RETURN1 + Valid Value from RETURN2 + … + RETURNx**
348 348  )))
349 349  
350 350  (((
351 -After we got the valid value from each RS485 commands, we need to combine them together with the command **AT+DATAUP**.
479 +Where PAYVER is defined by AT+PAYVER, below is an example screen shot.
352 352  )))
353 353  
354 -**Examples:**
482 +(% aria-label="1653269759169-150.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:1653269759169-150.png||data-widget="image" height="513" width="716"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
355 355  
356 -Below are examples for the how above AT Commands works.
357 357  
358 -**AT+COMMANDx : **This command will be sent to RS485/TTL devices during each sampling, Max command length is 14 bytes. The grammar is:
485 +(% style="color:#037691" %)**Examples: AT+DATAUP=1**
359 359  
360 -(% border="1" class="table-bordered" %)
361 -|(((
362 -**AT+COMMANDx=xx xx xx xx xx xx xx xx xx xx xx xx,m**
363 363  
364 -**xx xx xx xx xx xx xx xx xx xx xx xx: The RS485 command to be sent**
488 +Compose the uplink payload with value returns in sequence and send with (% style="color:red" %)**Multiply UPLINKs**.
365 365  
366 -**m: 0: no CRC, 1: add CRC-16/MODBUS in the end of this command**
367 -)))
490 +Final Payload is
368 368  
492 +(% style="color:#4f81bd" %)**Battery Info+PAYVER + PAYLOAD COUNT + PAYLOAD# + DATA**
493 +
494 +
495 +1. PAYVER: Defined by AT+PAYVER
496 +1. PAYLOAD COUNT: Total how many uplinks of this sampling.
497 +1. PAYLOAD#: Number of this uplink. (from 0,1,2,3…,to PAYLOAD COUNT)
498 +1. DATA: Valid value: max 8 bytes for each uplink so each uplink <= 11 bytes. For the last uplink, DATA will might less than 8 bytes
499 +
500 +(% aria-label="image-20220602155039-4.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:image-20220602155039-4.png||data-widget="image"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
501 +
502 +
503 +So totally there will be 3 uplinks for this sampling, each uplink include 8 bytes DATA
504 +
505 +DATA1=RETURN1 Valid Value + the first two of Valid value of RETURN10= **20 20 0a 33 90 41 02 aa**
506 +
507 +DATA2=3^^rd^^ ~~ 10^^th^^ byte of Valid value of RETURN10= **05 81 0a 20 20 20 20 2d**
508 +
509 +DATA3=the rest of Valid value of RETURN10= **30**
510 +
511 +
512 +(% style="color:red" %)**Notice: In firmware v1.3, the Max bytes has been changed according to the max bytes in different Frequency Bands for lowest SF. As below:**
513 +
514 + ~* For AU915/AS923 bands, if UplinkDwell time=0, max 51 bytes for each uplink.
515 +
516 + * For AU915/AS923 bands, if UplinkDwell time=0, max 11 bytes for each uplink.
517 +
518 + * For US915 band, max 11 bytes for each uplink.
519 +
520 + ~* For all other bands: max 51 bytes for each uplink.
521 +
522 +(% style="color:red" %)*** When AT+DATAUP=1, the maximum number of segments is 15, and the maximum total number of bytes is 1500;**
523 +
524 +(% style="color:red" %)** When AT+DATAUP=1 and AT+ADR=0, the maximum number of bytes of each payload is determined by the DR value. (Since v1.4.0)**
525 +
526 +
527 +(% style="color:#4f81bd" %)**If the data is empty, return to the display(Since v1.4.0)**
528 +
529 +1)When AT+MOD=1, if the data intercepted by AT+DATACUT or AT+MBFUN is empty, it will display NULL, and the payload will be filled with n FFs.
530 +
531 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/test/WebHome/image-20220824114359-3.png?width=1106&height=297&rev=1.1||alt="image-20220824114359-3.png" height="297" width="1106"]]
532 +
533 +2)When AT+MOD=2, if the data intercepted by AT+DATACUT or AT+MBFUN is empty, it will display NULL, and the payload will be filled with n 00s.
534 +
535 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/test/WebHome/image-20220824114330-2.png?rev=1.1||alt="image-20220824114330-2.png"]]
536 +
537 +
538 +Below are the uplink payloads:
539 +
540 +(% aria-label="1654157178836-407.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:1654157178836-407.png||data-widget="image"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
541 +
542 +
543 +
544 +=== 3.3.5 Uplink on demand ===
545 +
546 +
547 +Except uplink periodically, RS485-LN is able to uplink on demand. The server send downlink command to RS485-LN and RS485 will uplink data base on the command.
548 +
549 +Downlink control command:
550 +
551 +**0x08 command**: Poll an uplink with current command set in RS485-LN.
552 +
553 +**0xA8 command**: Send a command to RS485-LN and uplink the output from sensors.
554 +
555 +
556 +
557 +=== 3.3.6 Uplink on Interrupt ===
558 +
559 +
560 +RS485-LN support external Interrupt uplink since hardware v1.2 release.
561 +
562 +(% aria-label="1654157342174-798.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:1654157342174-798.png||data-widget="image"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
563 +
564 +Connect the Interrupt pin to RS485-LN INT port and connect the GND pin to V- port. When there is a high voltage (Max 24v) on INT pin. Device will send an uplink packet.
565 +
566 +
567 +
568 +== 3.4 Uplink Payload ==
569 +
570 +
571 +(% aria-label="image-20220606110929-1.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:image-20220606110929-1.png||data-widget="image"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
572 +
573 +Below is the decoder for the first 3 bytes. The rest bytes are dynamic depends on different RS485 sensors.
574 +
575 +
576 +
577 +== 3.5 Configure RS485-LN via AT or Downlink ==
578 +
579 +
369 369  (((
370 -For example, if we have a RS485 sensor. The command to get sensor value is: 01 03 0B B8 00 02 46 0A. Where 01 03 0B B8 00 02 is the Modbus command to read the register 0B B8 where stored the sensor value. The 46 0A is the CRC-16/MODBUS which calculate manually.
581 +User can configure RS485-LN via AT Commands or LoRaWAN Downlink Commands
371 371  )))
372 372  
373 373  (((
374 -In the RS485-BL, we should use this command AT+COMMAND1=01 03 0B B8 00 02,1 for the same.
585 +There are two kinds of Commands:
375 375  )))
376 376  
377 -(((
378 -**AT+SEARCHx**: This command defines how to handle the return from AT+COMMANDx.
588 +* (((
589 +(% style="color:#4f81bd" %)**Common Commands**(%%): They should be available for each sensor, such as: change uplink interval, reset device. For firmware v1.3, user can find what common commands it supports: [[AT Commands and Downlink Command>>doc:Main.End Device AT Commands and Downlink Command.WebHome]]
379 379  )))
380 380  
381 -(% border="1" class="table-bordered" %)
382 -|(((
383 -**AT+SEARCHx=aa,xx xx xx xx xx**
592 +* (((
593 +(% style="color:#4f81bd" %)**Sensor Related Commands**(%%): These commands are special designed for RS485-LN.  User can see these commands below:
594 +)))
384 384  
385 -* **aa: 1: prefix match mode; 2: prefix and suffix match mode**
386 -* **xx xx xx xx xx: match string. Max 5 bytes for prefix and 5 bytes for suffix**
387 -
596 +(((
388 388  
389 389  )))
390 390  
391 -**Examples:**
392 392  
393 -~1. For a return string from AT+COMMAND1: 16 0c 1e 56 34 2e 30 58 5f 36 41 30 31 00 49
394 394  
395 -If we set AT+SEARCH1=1,1E 56 34.      (max 5 bytes for prefix)
602 +=== 3.5.1 Common Commands ===
396 396  
397 -The valid data will be all bytes after 1E 56 34 , so it is (% style="background-color:yellow" %)** 2e 30 58 5f 36 41 30 31 00 49**
398 398  
399 -[[image:1653269403619-508.png]]
605 +They should be available for each of Dragino Sensors, such as: change uplink interval, reset device. For firmware v1.3, user can find what common commands it supports: [[End Device AT Commands and Downlink Command>>doc:Main.End Device AT Commands and Downlink Command.WebHome]]
400 400  
401 -2. For a return string from AT+COMMAND1:  16 0c 1e 56 34 2e 30 58 5f 36 41 30 31 00 49
402 402  
403 -If we set AT+SEARCH1=2, 1E 56 34+31 00 49
404 404  
405 -Device will search the bytes between 1E 56 34 and 31 00 49. So it is (% style="background-color:yellow" %)** 2e 30 58 5f 36 41 30**
609 +=== 3.5.2 Downlink Response(Since firmware v1.4) ===
406 406  
407 -[[image:1653269438444-278.png]]
408 408  
409 -**AT+DATACUTx : **This command defines how to handle the return from AT+COMMANDx, max return length is 45 bytes.
612 +Response feature is added to the server's downlink, a special package with a FPort of 200 will be uploaded immediately after receiving the data sent by the server.
410 410  
411 -|(((
412 -**AT+DATACUTx=a,b,c**
614 +(% aria-label="image-20220602163333-5.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:image-20220602163333-5.png||data-widget="image" height="263" width="1160"]](% title="Click and drag to resize" %)​
413 413  
414 -* **a: length for the return of AT+COMMAND**
415 -* **b:1: grab valid value by byte, max 6 bytes. 2: grab valid value by bytes section, max 3 sections.**
416 -* **c: define the position for valid value.  **
417 -)))
616 +The first byte of this package represents whether the configuration is successful, 00 represents failure, 01 represents success. Except for the first byte, the other is the previous downlink. (All commands except A8 type commands are applicable)
418 418  
419 -Examples:
420 420  
421 -* Grab bytes:
422 422  
423 -[[image:1653269551753-223.png||height="311" width="717"]]
620 +=== 3.5.3 Sensor related commands ===
424 424  
425 -* Grab a section.
426 426  
427 -[[image:1653269568276-930.png||height="325" width="718"]]
428 428  
429 -* Grab different sections.
430 430  
431 -[[image:1653269593172-426.png||height="303" width="725"]]
625 +==== (% style="color:blue" %)**RS485 Debug Command**(%%) ====
432 432  
433 -(% style="color:red" %)**Note:**
434 434  
435 -AT+SEARCHx and AT+DATACUTx can be used together, if both commands are set, RS485-BL will first process AT+SEARCHx on the return string and get a temporary string, and then process AT+DATACUTx on this temporary string to get the final payload. In this case, AT+DATACUTx need to set to format AT+DATACUTx=0,xx,xx where the return bytes set to 0.
628 +(((
629 +This command is used to configure the RS485 devices; they won't be used during sampling.
630 +)))
436 436  
437 -Example:
632 +* (((
633 +(% style="color:#037691" %)**AT Command**
438 438  
439 -(% style="color:red" %)AT+COMMAND1=11 01 1E D0,0
635 +(((
636 +**AT+CFGDEV=xx xx xx xx xx xx xx xx xx xx xx xx,m**  m: 0: no CRC, 1: add CRC-16/MODBUS in the end of this command
637 +)))
638 +)))
440 440  
441 -(% style="color:red" %)AT+SEARCH1=1,1E 56 34
640 +(((
641 +
642 +)))
442 442  
443 -(% style="color:red" %)AT+DATACUT1=0,2,1~~5
644 +* (((
645 +(% style="color:#037691" %)**Downlink Payload**
646 +)))
444 444  
445 -(% style="color:red" %)Return string from AT+COMMAND1: 16 0c 1e 56 34 2e 30 58 5f 36 41 30 31 00 49
648 +(((
649 +Format: A8 MM NN XX XX XX XX YY
650 +)))
446 446  
447 -(% style="color:red" %)String after SEARCH command: 2e 30 58 5f 36 41 30 31 00 49
652 +(((
653 +Where:
654 +)))
448 448  
449 -(% style="color:red" %)Valid payload after DataCUT command: 2e 30 58 5f 36
656 +* (((
657 +MM: 1: add CRC-16/MODBUS ; 0: no CRC
658 +)))
659 +* (((
660 +NN: The length of RS485 command
661 +)))
662 +* (((
663 +XX XX XX XX: RS485 command total NN bytes
664 +)))
665 +* (((
666 +(((
667 +YY: How many bytes will be uplink from the return of this RS485 command,
668 +)))
450 450  
451 -[[image:1653269618463-608.png]]
670 +* (((
671 +if YY=0, RS485-LN will execute the downlink command without uplink;
672 +)))
673 +* (((
674 +if YY>0, RS485-LN will uplink total YY bytes from the output of this RS485 command; Fport=200
675 +)))
676 +* (((
677 +if YY=FF, RS485-LN will uplink RS485 output with the downlink command content; Fport=200.
678 +)))
679 +)))
452 452  
453 -=== 3.3.4 Compose the uplink payload ===
681 +(((
682 +
454 454  
684 +(% style="color:blue" %)**Example 1:**  (%%) ~-~-> Configure without ask for uplink (YY=0)
685 +)))
686 +
455 455  (((
456 -Through AT+COMMANDx and AT+DATACUTx we got valid value from each RS485 commands, Assume these valid value are RETURN1, RETURN2, .., to RETURNx. The next step is how to compose the LoRa Uplink Payload by these RETURNs. The command is **AT+DATAUP.**
688 +To connect a Modbus Alarm with below commands.
457 457  )))
458 458  
691 +* (((
692 +The command to active alarm is: 0A 05 00 04 00 01 4C B0. Where 0A 05 00 04 00 01 is the Modbus command to read the register 00 40 where stored the DI status. The 4C B0 is the CRC-16/MODBUS which calculate manually.
693 +)))
694 +
695 +* (((
696 +The command to deactivate alarm is: 0A 05 00 04 00 00 8D 70. Where 0A 05 00 04 00 00 is the Modbus command to read the register 00 40 where stored the DI status. The 8D 70 is the CRC-16/MODBUS which calculate manually.
697 +)))
698 +
459 459  (((
460 -(% style="color:#4f81bd" %)**Examples: AT+DATAUP=0**
700 +
701 +
702 +So if user want to use downlink command to control to RS485 Alarm, he can use:
461 461  )))
462 462  
463 463  (((
464 -Compose the uplink payload with value returns in sequence and send with (% style="color:red" %)**A SIGNLE UPLINK**.
706 +(% style="color:#4f81bd" %)**A8 01 06 0A 05 00 04 00 01 00**(%%): to activate the RS485 Alarm
465 465  )))
466 466  
467 467  (((
468 -Final Payload is
710 +(% style="color:#4f81bd" %)**A8 01 06 0A 05 00 04 00 00 00**(%%): to deactivate the RS485 Alarm
469 469  )))
470 470  
471 471  (((
472 -(% style="color:#4f81bd" %)**Battery Info+PAYVER + VALID Value from RETURN1 + Valid Value from RETURN2 + + RETURNx**
714 +A8 is type code and 01 means add CRC-16/MODBUS at the end, the 3^^rd^^ byte is 06, means the next 6 bytes are the command to be sent to the RS485 network, the final byte 00 means this command don’t need to acquire output.
473 473  )))
474 474  
475 475  (((
476 -Where PAYVER is defined by AT+PAYVER, below is an example screen shot.
718 +
477 477  )))
478 478  
479 -[[image:1653269759169-150.png||height="513" width="716"]]
721 +(((
722 +(% style="color:blue" %)**Example 2:**  (%%) ~-~-> Configure with requesting uplink and original downlink command (**YY=FF**)
723 +)))
480 480  
481 -(% style="color:#4f81bd" %)**Examples: AT+DATAUP=1**
725 +(((
726 +User in IoT server send a downlink command: (% style="color:#4f81bd" %)**A8 01 06 0A 08 00 04 00 01 YY**
727 +)))
482 482  
483 -Compose the uplink payload with value returns in sequence and send with (% style="color:red" %)**Multiply UPLINKs**.
729 +(((
730 +
731 +)))
484 484  
485 -Final Payload is
733 +(((
734 +(((
735 +RS485-LN got this downlink command and send (% style="color:#4f81bd" %)**0A 08 00 04 00 01 **(%%)to Modbus network. One of the RS485 sensor in the network send back Modbus reply **0A 08 00 04 00 00**. RS485-LN get this reply and combine with the original downlink command and uplink. The uplink message is:  **A8** (% style="color:#4f81bd" %)**0A 08 00 04 00  **(% style="color:red" %)**01 06** ** **(% style="color:green" %)**0A 08 00 04 00 00**
736 +)))
486 486  
487 -(% style="color:#4f81bd" %)**Battery Info+PAYVER + PAYLOAD COUNT + PAYLOAD# + DATA**
738 +
739 +)))
488 488  
489 -1. Battery Info (2 bytes): Battery voltage
490 -1. PAYVER (1 byte): Defined by AT+PAYVER
491 -1. PAYLOAD COUNT (1 byte): Total how many uplinks of this sampling.
492 -1. PAYLOAD# (1 byte): Number of this uplink. (from 0,1,2,3…,to PAYLOAD COUNT)
493 -1. DATA: Valid value: max 6 bytes(US915 version here, Notice*!) for each uplink so each uplink <= 11 bytes. For the last uplink, DATA will might less than 6 bytes
741 +(((
742 + (% aria-label="1654159460680-153.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:1654159460680-153.png||data-widget="image"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
743 +)))
494 494  
495 -[[image:1653269916228-732.png||height="433" width="711"]]
496 496  
497 497  
498 -So totally there will be 3 uplinks for this sampling, each uplink includes 6 bytes DATA
499 499  
500 -DATA1=RETURN1 Valid Value = (% style="background-color:green; color:white" %)20 20 0a 33 90 41
748 +==== (% style="color:blue" %)**Set Payload version**(%%) ====
501 501  
502 -DATA2=1^^st^^ ~~ 6^^th^^ byte of Valid value of RETURN10=(% style="background-color:green; color:white" %) 02 aa 05 81 0a 20
503 503  
504 -DATA3=7^^th^^ ~~ 11^^th^^ bytes of Valid value of RETURN10 = (% style="background-color:green; color:white" %)20 20 20 2d 30
751 +(((
752 +This is the first byte of the uplink payload. RS485-LN can connect to different sensors. User can set the PAYVER field to tell server how to decode the current payload.
753 +)))
505 505  
506 -Below are the uplink payloads:
755 +* (((
756 +(% style="color:#037691" %)**AT Command:**
507 507  
508 -[[image:1653270130359-810.png]]
758 +**AT+PAYVER:    **Set PAYVER field = 1
509 509  
760 +
761 +)))
762 +* (((
763 +(% style="color:#037691" %)**Downlink Payload:**
764 +)))
510 510  
511 -(% style="color:red" %)**Notice: the Max bytes is according to the max support bytes in different Frequency Bands for lowest SF. As below:**
766 +(((
767 +**0xAE 01**  ~-~->  Set PAYVER field =  0x01
768 +)))
512 512  
513 - ~* For AU915/AS923 bands, if UplinkDwell time=0, max 51 bytes for each uplink ( so 51 -5 = 46 max valid date)
770 +(((
771 +**0xAE 0F**   ~-~->  Set PAYVER field =  0x0F
772 +)))
514 514  
515 - * For AU915/AS923 bands, if UplinkDwell time=1, max 11 bytes for each uplink ( so 11 -5 = 6 max valid date).
516 516  
517 - * For US915 band, max 11 bytes for each uplink ( so 11 -5 = 6 max valid date).
775 +1)Add the interrupt flag at the highest bit of the Payver byte, that is, Byte7 of the first byte. (Since v1.4.0)[[image:image-20220824145428-2.png||height="168" width="1300"]]
518 518  
519 - ~* For all other bands: max 51 bytes for each uplink  ( so 51 -5 = 46 max valid date).
520 520  
521 -=== 3.3.5 Uplink on demand ===
778 +2)if the data intercepted by AT+DATACUT or AT+MBFUN is empty, it will display NULL, and the payload will be filled with n FFs.
522 522  
523 -Except uplink periodically, RS485-BL is able to uplink on demand. The server sends downlink command to RS485-BL and RS485 will uplink data base on the command.
780 +[[image:image-20220824145428-3.png||height="308" width="1200"]]
524 524  
525 -Downlink control command:
526 526  
527 -[[0x08 command>>path:#downlink_08]]: Poll an uplink with current command set in RS485-BL.
783 +==== (% style="color:blue" %)**Set RS485 Sampling Commands**(%%) ====
528 528  
529 -[[0xA8 command>>path:#downlink_A8]]: Send a command to RS485-BL and uplink the output from sensors.
530 530  
786 +(((
787 +AT+COMMANDx or AT+DATACUTx
788 +)))
531 531  
790 +(((
791 +These three commands are used to configure how the RS485-LN polling data from Modbus device. Detail of usage please see : [[polling RS485 device>>||anchor="H3.3.3Configurereadcommandsforeachsampling"]].
792 +)))
532 532  
533 -1.
534 -11.
535 -111. Uplink on Interrupt
794 +(((
795 +
796 +)))
536 536  
537 -Put the interrupt sensor between 3.3v_out and GPIO ext.[[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image022.png]]
798 +* (((
799 +(% style="color:#037691" %)**AT Command:**
800 +)))
538 538  
539 -AT+INTMOD=0  Disable Interrupt
802 +**AT+COMMANDx:    **Configure RS485 read command to sensor.
540 540  
541 -AT+INTMOD=1  Interrupt trigger by rising or falling edge.
804 +**AT+DATACUTx:        **Configure how to handle return from RS485 devices.
542 542  
543 -AT+INTMOD=2  Interrupt trigger by falling edge. ( Default Value)
544 544  
545 -AT+INTMOD=3  Interrupt trigger by rising edge.
807 +* (((
808 +(% style="color:#037691" %)**Downlink Payload:**
809 +)))
546 546  
811 +(((
812 +**0xAF** downlink command can be used to set AT+COMMANDx or AT+DATACUTx.
547 547  
548 -1.
549 -11. Uplink Payload
814 +
815 +)))
550 550  
551 -|**Size(bytes)**|**2**|**1**|**Length depends on the return from the commands**
552 -|Value|(((
553 -Battery(mV)
817 +(((
818 +(% style="color:red" %)**Note**(%%): if user use AT+COMMANDx to add a new command, he also need to send AT+DATACUTx downlink.
554 554  
555 -&
820 +
821 +)))
556 556  
557 -Interrupt _Flag
558 -)))|(((
559 -PAYLOAD_VER
823 +(((
824 +Format: AF MM NN LL XX XX XX XX YY
825 +)))
560 560  
561 -
562 -)))|If the valid payload is too long and exceed the maximum support payload length in server, server will show payload not provided in the LoRaWAN server.
827 +(((
828 +Where:
829 +)))
563 563  
564 -Below is the decoder for the first 3 bytes. The rest bytes are dynamic depends on different RS485 sensors.
831 +* (((
832 +MM: the ATCOMMAND or AT+DATACUT to be set. Value from 01 ~~ 0F,
833 +)))
834 +* (((
835 +NN:  0: no CRC; 1: add CRC-16/MODBUS ; 2: set the AT+DATACUT value.
836 +)))
837 +* (((
838 +LL:  The length of AT+COMMAND or AT+DATACUT command
839 +)))
840 +* (((
841 +XX XX XX XX: AT+COMMAND or AT+DATACUT command
842 +)))
843 +* (((
844 +YY:  If YY=0, RS485-LN will execute the downlink command without uplink; if YY=1, RS485-LN will execute an uplink after got this command.
845 +)))
565 565  
847 +(((
848 +
566 566  
567 -function Decoder(bytes, port) {
850 +**Example:**
851 +)))
568 568  
569 -~/~/Payload Formats of RS485-BL Deceive
853 +(((
854 +(% style="color:#037691" %)**AF 03 01 06 0A 05 00 04 00 01 00**(%%): Same as AT+COMMAND3=0A 05 00 04 00 01,1
855 +)))
570 570  
571 -return {
857 +(((
858 +(% style="color:#037691" %)**AF 03 02 06**(% style="color:orange" %)** 10 **(% style="color:red" %)**01 **(% style="color:green" %)**05 06 09 0A**(% style="color:#037691" %)** 00**(%%): Same as AT+DATACUT3=(% style="color:orange" %)**16**(%%),(% style="color:red" %)**1**(%%),(% style="color:green" %)**5+6+9+10**
859 +)))
572 572  
573 - ~/~/Battery,units:V
861 +(((
862 +(% style="color:#037691" %)**AF 03 02 06 **(% style="color:orange" %)**0B**(% style="color:red" %)** 02 **(% style="color:green" %)**05 07 08 0A **(% style="color:#037691" %)**00**(%%): Same as AT+DATACUT3=(% style="color:orange" %)**11**(%%),(% style="color:red" %)**2**(%%),(% style="color:green" %)**5~~7+8~~10**
863 +)))
574 574  
575 - BatV:((bytes[0]<<8 | bytes[1])&0x7fff)/1000,
576 576  
577 - ~/~/GPIO_EXTI 
578 578  
579 - EXTI_Trigger:(bytes[0] & 0x80)? "TRUE":"FALSE",
580 580  
581 - ~/~/payload of version
868 +==== (% style="color:blue" %)**Fast command to handle MODBUS device**(%%) ====
582 582  
583 - Pay_ver:bytes[2],
584 584  
585 - };
871 +(((
872 +**AT+MBFUN** is valid since v1.3 firmware version. The command is for fast configure to read Modbus devices. It is only valid for the devices which follow the [[MODBUS-RTU protocol>>url:https://www.modbustools.com/modbus.html]].
873 +)))
586 586  
587 - }
875 +(((
876 +This command is valid since v1.3 firmware version
877 +)))
588 588  
879 +(((
880 +AT+MBFUN can auto read the Modbus function code: 01, 02, 03 or 04. AT+MBFUN has lower priority vs AT+DATACUT command. If AT+DATACUT command is configured, AT+MBFUN will be ignore.
881 +)))
589 589  
883 +(((
884 +
885 +)))
590 590  
887 +(((
888 +**Example:**
889 +)))
591 591  
891 +* (((
892 +AT+MBFUN=1 and AT+DATACUT1/AT+DATACUT2  are not configure (0,0,0). So RS485-LN.
893 +)))
894 +* (((
895 +AT+COMMAND1= 01 03 00 10 00 08,1  ~-~-> read slave address 01 , function code 03, start address 00 01, quantity of registers 00 08.
896 +)))
897 +* (((
898 +AT+COMMAND2= 01 02 00 40 00 10,1  ~-~-> read slave address 01 , function code 02, start address 00 40, quantity of inputs 00 10.
592 592  
900 +
901 +)))
593 593  
903 +(% aria-label="image-20220602165351-6.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:image-20220602165351-6.png||data-widget="image"]](% title="Click and drag to resize" %)​
594 594  
595 -TTN V3 uplink screen shot.
905 +(% aria-label="image-20220602165351-7.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:image-20220602165351-7.png||data-widget="image"]](% title="Click and drag to resize" %)​
596 596  
597 -[[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image023.png]]
598 598  
599 -1.
600 -11. Configure RS485-BL via AT or Downlink
601 601  
602 -User can configure RS485-BL via [[AT Commands >>path:#_​Using_the_AT]]or LoRaWAN Downlink Commands
603 603  
604 -There are two kinds of Commands:
910 +==== (% style="color:blue" %)**RS485 command timeout**(%%) ====
605 605  
606 -* **Common Commands**: They should be available for each sensor, such as: change uplink interval, reset device. For firmware v1.3, user can find what common commands it supports: http:~/~/wiki.dragino.com/index.php?title=End_Device_AT_Commands_and_Downlink_Commands
607 607  
608 -* **Sensor Related Commands**: These commands are special designed for RS485-BL.  User can see these commands below:
913 +(((
914 +Some Modbus device has slow action to send replies. This command is used to configure the RS485-LN to use longer time to wait for their action.
915 +)))
609 609  
610 -1.
611 -11.
612 -111. Common Commands:
917 +(((
918 +Default value: 0, range:  0 ~~ 65 seconds
919 +)))
613 613  
614 -They should be available for each of Dragino Sensors, such as: change uplink interval, reset device. For firmware v1.3, user can find what common commands it supports: [[http:~~/~~/wiki.dragino.com/index.php?title=End_Device_AT_Commands_and_Downlink_Commands>>url:http://wiki.dragino.com/index.php?title=End_Device_AT_Commands_and_Downlink_Commands]]
921 +* (((
922 +(% style="color:#037691" %)** AT Command:**
615 615  
924 +**AT+CMDDLaa=hex(bb cc)*1000**
925 +)))
616 616  
617 -1.
618 -11.
619 -111. Sensor related commands:
927 +(((
928 +
620 620  
621 -==== Choose Device Type (RS485 or TTL) ====
930 +**Example:**
931 +)))
622 622  
623 -RS485-BL can connect to either RS485 sensors or TTL sensor. User need to specify what type of sensor need to connect.
933 +(((
934 +**AT+CMDDL1=1000** to send the open time to 1000ms
935 +)))
624 624  
625 -* AT Command
937 +(((
938 +
939 +)))
626 626  
627 -**AT+MOD=1** ~/~/ Set to support RS485-MODBUS type sensors. User can connect multiply RS485 , Modbus sensors to the A / B pins.
941 +* (((
942 +(% style="color:#037691" %)** Downlink Payload:**
943 +)))
628 628  
629 -**AT+MOD=2** ~/~/ Set to support TTL Level sensors, User can connect one TTL Sensor to the TXD/RXD/GND pins.
945 +(((
946 +**0x AA aa bb cc**
947 +)))
630 630  
949 +(((
950 +Same as: AT+CMDDLaa=hex(bb cc)*1000
951 +)))
631 631  
632 -* Downlink Payload
953 +(((
954 +**Example:**
955 +)))
633 633  
634 -**0A aa**     à same as AT+MOD=aa
957 +(((
958 +**0xAA 01 00 01**  ~-~-> Same as  **AT+CMDDL1=1000 ms**
959 +)))
635 635  
636 636  
962 +==== (% style="color:blue" %)**Uplink payload mode**(%%) ====
637 637  
638 -==== [[RS485 Debug Command>>path:#downlink_A8]] (AT+CFGDEV) ====
639 639  
640 -This command is used to configure the RS485 or TTL sensors; they won’t be used during sampling.
965 +(((
966 +Define to use one uplink or multiple uplinks for the sampling.
967 +)))
641 641  
642 -* AT Command
969 +(((
970 +The use of this command please see: [[Compose Uplink payload>>||anchor="H3.3.4Composetheuplinkpayload"]]
643 643  
644 -AT+CFGDEV=xx xx xx xx xx xx xx xx xx xx xx xx,m
972 +
973 +)))
645 645  
646 -m: 0: no CRC; 1: add CRC-16/MODBUS in the end of this command.
975 +* (((
976 +(% style="color:#037691" %)** AT Command:**
647 647  
978 +**AT+DATAUP=0**
648 648  
980 +**AT+DATAUP=1**
649 649  
650 -* Downlink Payload
982 +
983 +)))
651 651  
652 -Format: A8 MM NN XX XX XX XX YY
985 +**0xAD 01 00 00 14**  **~-~->** Same as AT+DATAUP=1,20000 ~/~/(00 00 14 is 20 seconds)
653 653  
654 -Where:
987 +Each uplink is sent to the server at 20-second intervals when segmented.
655 655  
656 -* MM: 1: add CRC-16/MODBUS ; 0: no CRC
657 -* NN: The length of RS485 command
658 -* XX XX XX XX: RS485 command total NN bytes
659 -* YY: How many bytes will be uplink from the return of this RS485 command, if YY=0, RS485-BL will execute the downlink command without uplink; if YY>0, RS485-BL will uplink total YY bytes from the output of this RS485 command
660 660  
661 -**Example 1:**
990 +* (((
991 +(% style="color:#037691" %)** Downlink Payload:**
992 +)))
662 662  
663 -To connect a Modbus Alarm with below commands.
994 +**0xAD 00**  **~-~->** Same as AT+DATAUP=0
664 664  
665 -* The command to active alarm is: 0A 05 00 04 00 01 4C B0. Where 0A 05 00 04 00 01 is the Modbus command to read the register 00 40 where stored the DI status. The 4C B0 is the CRC-16/MODBUS which calculate manually.
996 +**0xAD 01**  **~-~->** Same as AT+DATAUP=1  ~/~/Each uplink is sent to the server one after the other as it is segmented.
666 666  
667 -* The command to deactivate alarm is: 0A 05 00 04 00 00 8D 70. Where 0A 05 00 04 00 00 is the Modbus command to read the register 00 40 where stored the DI status. The 8D 70 is the CRC-16/MODBUS which calculate manually.
668 668  
669 -So if user want to use downlink command to control to RS485 Alarm, he can use:
999 +* (((
1000 +(% style="color:#037691" %)** AT Command:**
1001 +)))
670 670  
671 -**A8 01 06 0A 05 00 04 00 01 00**: to activate the RS485 Alarm
1003 +**AT+DATAUP=1,Timeout**
672 672  
673 -**A8 01 06 0A 05 00 04 00 00 00**: to deactivate the RS485 Alarm
674 674  
675 -A8 is type code and 01 means add CRC-16/MODBUS at the end, the 3^^rd^^ byte is 06, means the next 6 bytes are the command to be sent to the RS485 network, the final byte 00 means this command don’t need to acquire output.
1006 +* (((
1007 +(% style="color:#037691" %)** Downlink Payload:**
1008 +)))
676 676  
1010 +**0xAD 01 00 00 14**  **~-~->** Same as AT+DATAUP=1,20000 ~/~/(00 00 14 is 20 seconds)
677 677  
678 -**Example 2:**
1012 +Each uplink is sent to the server at 20-second intervals when segmented.
679 679  
680 -Check TTL Sensor return:
1014 +==== (% style="color:blue" %)**Manually trigger an Uplink**(%%) ====
681 681  
682 -[[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image024.png]]
683 683  
1017 +(((
1018 +Ask device to send an uplink immediately.
1019 +)))
684 684  
1021 +* (((
1022 +(% style="color:#037691" %)** AT Command:**
1023 +)))
685 685  
1025 +(((
1026 +No AT Command for this, user can press the [[ACT button>>||anchor="H3.7Buttons"]] for 1 second for the same.
1027 +)))
686 686  
687 -==== Set Payload version ====
1029 +(((
1030 +
1031 +)))
688 688  
689 -This is the first byte of the uplink payload. RS485-BL can connect to different sensors. User can set the PAYVER field to tell server how to decode the current payload.
1033 +* (((
1034 +(% style="color:#037691" %)** Downlink Payload:**
1035 +)))
690 690  
691 -* AT Command:
1037 +(((
1038 +**0x08 FF**, RS485-LN will immediately send an uplink.
1039 +)))
692 692  
693 -AT+PAYVER: Set PAYVER field = 1
694 694  
695 695  
696 -* Downlink Payload:
697 697  
698 -0xAE 01   à Set PAYVER field =  0x01
1044 +==== (% style="color:blue" %)**Clear RS485 Command**(%%) ====
699 699  
700 -0xAE 0F   à Set PAYVER field =  0x0F
701 701  
1047 +(((
1048 +The AT+COMMANDx and AT+DATACUTx settings are stored in special location, user can use below command to clear them.
702 702  
703 -==== Set RS485 Sampling Commands ====
1050 +
1051 +)))
704 704  
705 -AT+COMMANDx, AT+DATACUTx and AT+SEARCHx
1053 +* (((
1054 +(% style="color:#037691" %)** AT Command:**
1055 +)))
706 706  
707 -These three commands are used to configure how the RS485-BL polling data from Modbus device. Detail of usage please see : [[polling RS485 device>>path:#polling_485]].
1057 +(((
1058 +**AT+CMDEAR=mm,nn**   mm: start position of erase ,nn: stop position of erase
1059 +)))
708 708  
1061 +(((
1062 +Etc. AT+CMDEAR=1,10 means erase AT+COMMAND1/AT+DATACUT1 to AT+COMMAND10/AT+DATACUT10
1063 +)))
709 709  
710 -* AT Command:
1065 +(((
1066 +Example screen shot after clear all RS485 commands. 
1067 +)))
711 711  
712 -AT+COMMANDx: Configure RS485 read command to sensor.
1069 +(((
1070 +
1071 +)))
713 713  
714 -AT+DATACUTx: Configure how to handle return from RS485 devices.
1073 +(((
1074 +The uplink screen shot is:
1075 +)))
715 715  
716 -AT+SEARCHx: Configure search command
1077 +(% aria-label="1654160691922-496.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:1654160691922-496.png||data-widget="image"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
717 717  
718 718  
719 -* Downlink Payload:
1080 +* (((
1081 +(% style="color:#037691" %)** Downlink Payload:**
1082 +)))
720 720  
721 -0xAF downlink command can be used to set AT+COMMANDx or AT+DATACUTx.
1084 +(((
1085 +**0x09 aa bb** same as AT+CMDEAR=aa,bb
1086 +)))
722 722  
723 -Note: if user use AT+COMMANDx to add a new command, he also need to send AT+DATACUTx downlink.
724 724  
725 -Format: AF MM NN LL XX XX XX XX YY
726 726  
727 -Where:
728 728  
729 -* MM: the ATCOMMAND or AT+DATACUT to be set. Value from 01 ~~ 0F,
730 -* NN: 0: no CRC; 1: add CRC-16/MODBUS ; 2: set the AT+DATACUT value.
731 -* LL: The length of AT+COMMAND or AT+DATACUT command
732 -* XX XX XX XX: AT+COMMAND or AT+DATACUT command
733 -* YY: If YY=0, RS485-BL will execute the downlink command without uplink; if YY=1, RS485-BL will execute an uplink after got this command.
1091 +==== (% style="color:blue" %)**Set Serial Communication Parameters**(%%) ====
734 734  
735 -Example:
736 736  
737 -**AF 03 01 06 0A 05 00 04 00 01 00**: Same as AT+COMMAND3=0A 05 00 04 00 01,1
1094 +(((
1095 +Set the Rs485 serial communication parameters:
738 738  
739 -**AF 03 02 06 10 01 05 06 09 0A 00**: Same as AT+DATACUT3=**16**,**1**,**5+6+9+10**
1097 +
1098 +)))
740 740  
741 -**AF 03 02 06 0B 02 05 07 08 0A 00**: Same as AT+DATACUT3=**11**,**2**,**5~~7+8~~10**
1100 +* (((
1101 +(% style="color:#037691" %)** AT Command:**
1102 +)))
742 742  
1104 +(((
1105 +* Set Baud Rate
1106 +)))
743 743  
744 -0xAB downlink command can be used for set AT+SEARCHx
1108 +**AT+BAUDR=9600**    ~/~/ Options: (200~~115200)  When using low baud rate or receiving multiple bytes, you need to use AT+CMDDL to increase the receive timeout (the default receive timeout is 400ms), otherwise data will be lost
745 745  
746 -Example: **AB aa 01 03 xx xx xx** (03 here means there are total 3 bytes after 03) So
747 747  
748 -* AB aa 01 03 xx xx xx  same as AT+SEARCHaa=1,xx xx xx
749 -* AB aa 02 03 xx xx xx 02 yy yy(03 means there are 3 bytes after 03, they are xx xx xx;02 means there are 2 bytes after 02, they are yy yy) so the commands
1111 +(((
1112 +* Set UART Parity
1113 +)))
750 750  
751 -**AB aa 02 03 xx xx xx 02 yy yy**  same as **AT+SEARCHaa=2,xx xx xx+yy yy**
1115 +**AT+PARITY=0**    ~/~/ Option: 0: no parity, 1: odd parity, 2: even parity
752 752  
753 753  
754 -==== Fast command to handle MODBUS device ====
1118 +(((
1119 +* Set STOPBIT
1120 +)))
755 755  
756 -AT+MBFUN is valid since v1.3 firmware version. The command is for fast configure to read Modbus devices. It is only valid for the devices which follow the [[MODBUS-RTU protocol>>url:https://www.modbustools.com/modbus.html]].
1122 +**AT+STOPBIT=0**    ~/~/ Option: 0 for 1bit; 1 for 1.5 bit ; 2 for 2 bits
757 757  
758 -This command is valid since v1.3 firmware version
759 759  
760 760  
761 -AT+MBFUN has only two value:
1126 +* (((
1127 +(% style="color:#037691" %)** Downlink Payload:**
1128 +)))
762 762  
763 -* AT+MBFUN=1: Enable Modbus reading. And get response base on the MODBUS return
1130 +(((
1131 +**A7 01 aa bb**:  Same  AT+BAUDR=hex(aa bb)*100
1132 +)))
764 764  
765 -AT+MBFUN=1, device can auto read the Modbus function code: 01, 02, 03 or 04. AT+MBFUN has lower priority vs AT+DATACUT command. If AT+DATACUT command is configured, AT+MBFUN will be ignore.
1134 +(((
1135 +**Example:**
1136 +)))
766 766  
767 -* AT+MBFUN=0: Disable Modbus fast reading.
1138 +* (((
1139 +A7 01 00 60   same as AT+BAUDR=9600
1140 +)))
1141 +* (((
1142 +A7 01 04 80  same as AT+BAUDR=115200
1143 +)))
768 768  
769 -Example:
1145 +(((
1146 +A7 02 aa:  Same as  AT+PARITY=aa  (aa value: 00 , 01 or 02)
1147 +)))
770 770  
771 -* AT+MBFUN=1 and AT+DATACUT1/AT+DATACUT2 are not configure (0,0,0).
772 -* AT+COMMAND1= 01 03 00 10 00 08,1 ~-~-> read slave address 01 , function code 03, start address 00 01, quantity of registers 00 08.
773 -* AT+COMMAND2= 01 02 00 40 00 10,1 ~-~-> read slave address 01 , function code 02, start address 00 40, quantity of inputs 00 10.
1149 +(((
1150 +A7 03 aa:  Same as  AT+STOPBIT=aa  (aa value: 00 , 01 or 02)
1151 +)))
774 774  
775 -[[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image025.png]]
776 776  
1154 +==== (% style="color:blue" %)**Encrypted payload**(%%) ====
777 777  
778 -[[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image026.png]]
1156 +(((
1157 +
1158 +)))
779 779  
1160 +* (((
1161 +(% style="color:#037691" %)** AT Command:**
1162 +)))
780 780  
781 -* Downlink Commands:
1164 +**AT+DECRYPT=1  **~/~/ The payload is uploaded without encryption
782 782  
783 -A9 aa -à Same as AT+MBFUN=aa
1166 +**AT+DECRYPT=0  **~/~/Encrypt when uploading payload (default)
784 784  
785 785  
786 -==== RS485 command timeout ====
1169 +==== (% style="color:blue" %)**Get sensor value**(%%) ====
787 787  
788 -Some Modbus device has slow action to send replies. This command is used to configure the RS485-BL to use longer time to wait for their action.
789 789  
790 -Default value: 0, range:  0 ~~ 5 seconds
1172 +* (((
1173 +(% style="color:#037691" %)** AT Command:**
1174 +)))
791 791  
1176 +**AT+GETSENSORVALUE=0  **~/~/ The serial port gets the reading of the current sensor
792 792  
793 -* AT Command:
1178 +**AT+GETSENSORVALUE=1  **~/~/The serial port gets the current sensor reading and uploads it.
794 794  
795 -AT+CMDDLaa=hex(bb cc)
796 796  
797 -Example:
1181 +==== (% style="color:blue" %)**Resets the downlink packet count**(%%) ====
798 798  
799 -**AT+CMDDL1=1000** to send the open time to 1000ms
800 800  
1184 +* (((
1185 +(% style="color:#037691" %)** AT Command:**
1186 +)))
801 801  
802 -* Downlink Payload:
1188 +**AT+DISFCNTCHECK=0  **~/~/ When the downlink packet count sent by the server is less than the node downlink packet count or exceeds 16384, the node will no longer receive downlink packets (default)
803 803  
804 -0x AA aa bb cc
1190 +**AT+DISFCNTCHECK=1  **~/~/When the downlink packet count sent by the server is less than the node downlink packet count or exceeds 16384, the node resets the downlink packet count and keeps it consistent with the server downlink packet count.
805 805  
806 -Same as: AT+CMDDLaa=hex(bb cc)
807 807  
808 - Example:
1193 +==== (% style="color:blue" %)**When the limit bytes are exceeded, upload in batches**(%%) ====
809 809  
810 - 0xAA 01 03 E8  à Same as **AT+CMDDL1=1000 ms**
811 811  
1196 +* (((
1197 +(% style="color:#037691" %)** AT Command:**
1198 +)))
812 812  
813 -==== [[Uplink>>path:#downlink_A8]] payload mode ====
1200 + **AT+DISMACANS=0**  ~/~/ When the MACANS of the reply server plus the payload exceeds the maximum number of bytes of 11 bytes (DR0 of US915, DR2 of AS923, DR2 of AU195), the node will send a packet with a payload of 00 and a port of 4. (default)
814 814  
815 -Define to use one uplink or multiple uplinks for the sampling.
1202 + **AT+DISMACANS=1**      ~/~/ When the MACANS of the reply server plus the payload exceeds the maximum number of bytes of the DR, the node will ignore the MACANS and not reply, and only upload the payload part.
816 816  
817 -The use of this command please see: [[Compose Uplink payload>>path:#DataUP]]
818 818  
819 -* AT Command:
1205 +* (((
1206 +(% style="color:#037691" %)** Downlink Payload:**
1207 +)))
820 820  
821 -AT+DATAUP=0
1209 +**0x21 00 01 ** ~/~/ Set  the DISMACANS=1
822 822  
823 -AT+DATAUP=1
824 824  
1212 +==== (% style="color:blue" %)** Copy downlink to uplink **(%%) ====
825 825  
826 -* Downlink Payload:
827 827  
828 -0xAD 00   à Same as AT+DATAUP=0
1215 +* (((
1216 +(% style="color:#037691" %)** AT Command:**
1217 +)))
829 829  
830 -0xAD 01   à Same as AT+DATAUP=1
1219 +**AT+RPL=5**  ~/~/ After receiving the package from the server, it will immediately upload the content of the package to the server, the port number is 100.
831 831  
1221 +Example:**aa xx xx xx xx**         ~/~/ aa indicates whether the configuration has changed, 00 is yes, 01 is no; xx xx xx xx are the bytes sent.
832 832  
833 -==== Manually trigger an Uplink ====
1223 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/image-20220823173747-6.png?width=1124&height=165&rev=1.1||alt="image-20220823173747-6.png"]]
834 834  
835 -Ask device to send an uplink immediately.
1225 +For example, sending 11 22 33 44 55 66 77 will return invalid configuration 00 11 22 33 44 55 66 77.
836 836  
837 -* Downlink Payload:
1227 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/image-20220823173833-7.png?width=1124&height=149&rev=1.1||alt="image-20220823173833-7.png"]]
838 838  
839 -0x08 FF, RS485-BL will immediately send an uplink.
1229 +For example, if 01 00 02 58 is issued, a valid configuration of 01 01 00 02 58 will be returned.
840 840  
841 841  
842 -==== Clear RS485 Command ====
1232 +==== (% style="color:blue" %)**Query version number and frequency band 、TDC**(%%) ====
843 843  
844 -The AT+COMMANDx and AT+DATACUTx settings are stored in special location, user can use below command to clear them.
845 845  
1235 +* (((
1236 +(% style="color:#037691" %)**Downlink Payload:**
846 846  
847 -* AT Command:
1238 +**26 01  ** ~/~/ Downlink 26 01 can query device upload frequency, frequency band, software version number, TDC time.
1239 +)))
848 848  
849 -**AT+CMDEAR=mm,nn**   mm: start position of erase ,nn: stop position of erase
1241 +Example
850 850  
851 -Etc. AT+CMDEAR=1,10 means erase AT+COMMAND1/AT+DATACUT1 to AT+COMMAND10/AT+DATACUT10
1243 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LSN50%20%26%20LSN50-V2%20-%20LoRaWAN%20Sensor%20Node%20User%20Manual/WebHome/image-20220823173929-8.png?width=1205&height=76&rev=1.1||alt="image-20220823173929-8.png"]]
852 852  
853 -Example screen shot after clear all RS485 commands. 
1245 +(% class="wikigeneratedid" %)
1246 +==== ====
854 854  
1248 +==== (% style="color:blue" %)** Monitor RS485 communication of other devices**(%%) ====
855 855  
856 856  
857 -The uplink screen shot is:
1251 +* (((
1252 +(% style="color:#037691" %)** AT Command:**
1253 +)))
858 858  
859 -[[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image023.png]]
1255 +**~ ​AT+RXMODE=1,10**  ~/~/ When the RS485-LN receives more than 10 bytes from the RS485, it immediately sends the uplink of the received data.
860 860  
1257 +**~ ​AT+RXMODE=2,500 ** ~/~/RS485-LN uploads data as uplink from the first byte received by RS485 to the data received within 500ms after that.
861 861  
862 -* Downlink Payload:
1259 + **AT+RXMODE=0,0  ** ~/~/Disable this mode (default)
863 863  
864 -0x09 aa bb same as AT+CMDEAR=aa,bb
865 865  
1262 +* (((
1263 +(% style="color:#037691" %)**Downlink Payload:**
1264 +)))
866 866  
867 -==== Set Serial Communication Parameters ====
1266 +**A6 aa bb bb  ** ~/~/same as AT+RXMODE=aa,bb
868 868  
869 -Set the Rs485 serial communication parameters:
1268 +[[image:image-20220824144240-1.png]]
870 870  
871 -* AT Command:
872 872  
873 -Set Baud Rate:
874 874  
875 -AT+BAUDR=9600    ~/~/ Options: (1200,2400,4800,14400,19200,115200)
1272 +== 3.Listening mode for RS485 network ==
876 876  
877 877  
878 -Set UART parity
1275 +(((
1276 +This feature support since firmware v1.4
1277 +)))
879 879  
880 -AT+PARITY=0    ~/~/ Option: 0: no parity, 1: odd parity, 2: even parity
1279 +(((
1280 +RS485-LN supports listening mode, it can listen the RS485 network packets and send them via LoRaWAN uplink. Below is the structure. The blue arrow shows the RS485 network packets to RS485-LN.
881 881  
1282 +
1283 +)))
882 882  
883 -Set STOPBIT
1285 +(% aria-label="image-20220602171200-8.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:image-20220602171200-8.png||data-widget="image" height="567" width="1007"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
884 884  
885 -AT+STOPBIT=0    ~/~/ Option: 0 for 1bit; 1 for 1.5 bit ; 2 for 2 bits
1287 +(((
1288 +To enable the listening mode, use can run the command AT+RXMODE.
1289 +)))
886 886  
1291 +(((
1292 +
1293 +)))
887 887  
888 -* Downlink Payload:
1295 +(% border="1" cellspacing="10" style="background-color:#ffffcc; width:500px" %)
1296 +|=(% style="width: 100px;" %)(((
1297 +**Command example**
1298 +)))|=(% style="width: 400px;" %)(((
1299 +**Function**
1300 +)))
1301 +|(% style="width:100px" %)(((
1302 +AT+RXMODE=1,10
1303 +)))|(% style="width:400px" %)(((
1304 +Enable listening mode 1, if RS485-LN has received more than 10 RS485 commands from the network. RS485-LN will send these commands via LoRaWAN uplinks.
1305 +)))
1306 +|(% style="width:100px" %)(((
1307 +AT+RXMODE=2,500
1308 +)))|(% style="width:400px" %)(((
1309 +Enable listening mode 2, RS485-LN will capture and send a 500ms content once from the first detect of character. Max value is 65535 ms
1310 +)))
1311 +|(% style="width:100px" %)(((
1312 +AT+RXMODE=0,0
1313 +)))|(% style="width:400px" %)(((
1314 +Disable listening mode. This is the default settings.
1315 +)))
1316 +|(% style="width:100px" %)(((
1317 +
1318 +)))|(% style="width:400px" %)(((
1319 +A6 aa bb cc  same as AT+RXMODE=aa,(bb<<8 | cc)
1320 +)))
889 889  
890 -A7 01 aa bb: Same  AT+BAUDR=hex(aa bb)*100
1322 +(((
1323 +(% style="color:#037691" %)** Downlink Command:**
1324 +)))
891 891  
892 -Example:
1326 +(((
1327 +**0xA6 aa bb cc ** same as AT+RXMODE=aa,(bb<<8 | cc)
1328 +)))
893 893  
894 -* A7 01 00 60   same as AT+BAUDR=9600
895 -* A7 01 04 80  same as AT+BAUDR=115200
1330 +(((
1331 +
1332 +)))
896 896  
897 -A7 02 aa: Same as  AT+PARITY=aa  (aa value: 00 , 01 or 02)
1334 +(((
1335 +**Example**:
1336 +)))
898 898  
899 -A7 03 aa: Same as  AT+STOPBIT=aa  (aa value: 00 , 01 or 02)
1338 +(((
1339 +The RS485-LN is set to AT+RXMODE=2,1000
1340 +)))
900 900  
1342 +(((
1343 +There is a two Modbus commands in the RS485 network as below:
1344 +)))
901 901  
902 -==== Control output power duration ====
1346 +(((
1347 +The Modbus master send a command: (% style="background-color:#ffc000" %)01 03 00 00 00 02 c4 0b
1348 +)))
903 903  
904 -User can set the output power duration before each sampling.
1350 +(((
1351 +And Modbus slave reply with: (% style="background-color:green" %)01 03 04 00 00 00 00 fa 33
1352 +)))
905 905  
906 -* AT Command:
1354 +(((
1355 +RS485-LN will capture both and send the uplink: (% style="background-color:#ffc000" %)01 03 00 00 00 02 c4 0b  (% style="background-color:green" %)01 03 04 00 00 00 00 fa 33
1356 +)))
907 907  
908 -Example:
1358 +(((
1359 +(% aria-label="image-20220602171200-9.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:image-20220602171200-9.png||data-widget="image"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
1360 +)))
909 909  
910 -AT+3V3T=1000 ~/~/ 3V3 output power will open 1s before each sampling.
1362 +(((
1363 +
1364 +)))
911 911  
912 -AT+5VT=1000 ~/~/ +5V output power will open 1s before each sampling.
1366 +(((
1367 +(((
1368 +(% style="color:red" %)**Notice: Listening mode can work with the default polling mode of RS485-LN. When RS485-LN is in to send the RS485 commands (from AT+COMMANDx), the listening mode will be interrupt for a while.**
1369 +)))
1370 +)))
913 913  
914 914  
915 -* LoRaWAN Downlink Command:
916 916  
917 -07 01 aa bb  Same as AT+5VT=(aa bb)
1374 +== 3.7 Buttons ==
918 918  
919 -07 02 aa bb  Same as AT+3V3T=(aa bb)
920 920  
1377 +(% border="1" cellspacing="10" style="background-color:#f7faff; width:430px" %)
1378 +|=(% style="width: 50px;" %)**Button**|=(% style="width: 361px;" %)**Feature**
1379 +|(% style="width:50px" %)**ACT**|(% style="width:361px" %)If RS485 joined in network, press this button for more than 1 second, RS485 will upload a packet, and the SYS LED will give a (% style="color:blue" %)**Blue blink**
1380 +|(% style="width:50px" %)**RST**|(% style="width:361px" %)Reboot RS485
1381 +|(% style="width:50px" %)**PRO**|(% style="width:361px" %)Use for upload image, see [[How to Update Image>>||anchor="H6.1Howtoupgradetheimage3F"]]
921 921  
1383 +== 3.8 LEDs ==
922 922  
923 923  
924 -1.
925 -11. Buttons
1386 +(% border="1" cellspacing="10" style="background-color:#f7faff; width:430px" %)
1387 +|=(% style="width: 50px;" %)**LEDs**|=(% style="width: 380px;" %)**Feature**
1388 +|**PWR**|Always on if there is power
1389 +|**SYS**|After device is powered on, the SYS will (% style="color:green" %)**fast blink in GREEN**(%%) for 5 times, means RS485-LN start to join LoRaWAN network. If join success, SYS will be (% style="color:green" %)**on GREEN for 5 seconds** (%%)**. **SYS will (% style="color:green" %)**blink Blue**(%%) on every upload and (% style="color:green" %)**blink Green**(%%) once receive a downlink message.
926 926  
927 -|**Button**|**Feature**
928 -|**RST**|Reboot RS485-BL
1391 += 4. Case Study =
929 929  
930 -1.
931 -11. +3V3 Output
932 932  
933 -RS485-BL has a Controllable +3V3 output, user can use this output to power external sensor.
1394 +User can check this URL for some case studies: [[APP RS485 COMMUNICATE WITH SENSORS>>doc:Main.Application Note \: Communicate with Different Sensors ----- RS485-LN RS485-BL.WebHome]]
934 934  
935 -The +3V3 output will be valid for every sampling. RS485-BL will enable +3V3 output before all sampling and disable the +3V3 after all sampling. 
936 936  
937 937  
938 -The +3V3 output time can be controlled by AT Command.
1398 += 5. Use AT Command =
939 939  
940 -**AT+3V3T=1000**
941 941  
942 -Means set +3v3 valid time to have 1000ms. So, the real +3v3 output will actually have 1000ms + sampling time for other sensors.
1401 +== 5.1 Access AT Command ==
943 943  
944 944  
945 -By default, the AT+3V3T=0. This is a special case, means the +3V3 output is always on at any time
1404 +(((
1405 +RS485-LN supports AT Command set. User can use a USB to TTL adapter plus the 3.5mm Program Cable to connect to RS485-LN to use AT command, as below.
1406 +)))
946 946  
1408 +(% aria-label="1654162355560-817.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:1654162355560-817.png||data-widget="image"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
947 947  
948 -1.
949 -11. +5V Output
950 950  
951 -RS485-BL has a Controllable +5V output, user can use this output to power external sensor.
1411 +(((
1412 +In PC, User needs to set (% style="color:blue" %)**serial tool**(%%)(such as [[putty>>url:https://www.chiark.greenend.org.uk/~~sgtatham/putty/latest.html]], SecureCRT) baud rate to (% style="color:green" %)**9600**(%%) to access to access serial console of RS485-LN. The default password is 123456. Below is the output for reference:
1413 +)))
952 952  
953 -The +5V output will be valid for every sampling. RS485-BL will enable +5V output before all sampling and disable the +5v after all sampling
1415 +(% aria-label="1654162368066-342.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:1654162368066-342.png||data-widget="image"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
954 954  
955 955  
956 -The 5V output time can be controlled by AT Command.
1418 +(((
1419 +More detail AT Command manual can be found at [[AT Command Manual>>https://www.dragino.com/downloads/index.php?dir=LT_LoRa_IO_Controller/LT33222-L/]]
1420 +)))
957 957  
958 -**AT+5VT=1000**
959 959  
960 -Means set 5V valid time to have 1000ms. So, the real 5V output will actually have 1000ms + sampling time for other sensors.
961 961  
1424 +== 5.2 Common AT Command Sequence ==
962 962  
963 -By default, the AT+5VT=0. If the external sensor which require 5v and require more time to get stable state, user can use this command to increase the power ON duration for this sensor.
964 964  
1427 +=== 5.2.1 Multi-channel ABP mode (Use with SX1301/LG308) ===
965 965  
966 966  
1430 +If device has not joined network yet:
967 967  
968 -1.
969 -11. LEDs
1432 +* (% style="color:#037691" %)**AT+FDR**
1433 +* (% style="color:#037691" %)**AT+NJM=0**
1434 +* (% style="color:#037691" %)**ATZ**
970 970  
971 -|**LEDs**|**Feature**
972 -|**LED1**|Blink when device transmit a packet.
1436 +(((
1437 +
973 973  
974 -1.
975 -11. Switch Jumper
1439 +If device already joined network:
976 976  
977 -|**Switch Jumper**|**Feature**
978 -|**SW1**|(((
979 -ISP position: Upgrade firmware via UART
1441 +* (% style="color:#037691" %)**AT+NJM=0**
1442 +* (% style="color:#037691" %)**ATZ**
980 980  
981 -Flash position: Configure device, check running status.
1444 +
982 982  )))
983 -|**SW2**|(((
984 -5V position: set to compatible with 5v I/O.
985 985  
986 -3.3v position: set to compatible with 3.3v I/O.,
987 -)))
988 988  
989 -+3.3V: is always ON
990 990  
991 -+5V: Only open before every sampling. The time is by default, it is AT+5VT=0.  Max open time. 5000 ms.
1449 +=== 5.5.2 Single-channel ABP mode (Use with LG01/LG02) ===
992 992  
993 -1. Case Study
994 994  
995 -User can check this URL for some case studies.
1452 +(% style="background-color:#dcdcdc" %)**AT+FDR** (%%) Reset Parameters to Factory Default, Keys Reserve
996 996  
997 -[[http:~~/~~/wiki.dragino.com/index.php?title=APP_RS485_COMMUNICATE_WITH_SENSORS>>url:http://wiki.dragino.com/index.php?title=APP_RS485_COMMUNICATE_WITH_SENSORS]]
1454 +(% style="background-color:#dcdcdc" %)**AT+NJM=0 **(%%) Set to ABP mode
998 998  
1456 +(% style="background-color:#dcdcdc" %)**AT+ADR=0** (%%) Set the Adaptive Data Rate Off
999 999  
1458 +(% style="background-color:#dcdcdc" %)**AT+DR=5**   (%%) Set Data Rate
1000 1000  
1460 +(% style="background-color:#dcdcdc" %)**AT+TDC=60000** (%%) Set transmit interval to 60 seconds
1001 1001  
1002 -1. Use AT Command
1003 -11. Access AT Command
1462 +(% style="background-color:#dcdcdc" %)**AT+CHS=868400000**(%%)  Set transmit frequency to 868.4Mhz
1004 1004  
1005 -RS485-BL supports AT Command set. User can use a USB to TTL adapter plus the 3.5mm Program Cable to connect to RS485-BL to use AT command, as below.
1464 +(% style="background-color:#dcdcdc" %)**AT+RX2FQ=868400000** (%%) Set RX2Frequency to 868.4Mhz (according to the result from server)
1006 1006  
1007 -[[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image027.png]]
1466 +(% style="background-color:#dcdcdc" %)**AT+RX2DR=5**  (%%) Set RX2DR to match the downlink DR from server. see below
1008 1008  
1468 +(% style="background-color:#dcdcdc" %)**AT+DADDR=26** (%%) 01 1A F1 Set Device Address to 26 01 1A F1, this ID can be found in the LoRa Server portal.
1009 1009  
1010 -In PC, User needs to set **serial tool**(such as [[putty>>url:https://www.chiark.greenend.org.uk/~~sgtatham/putty/latest.html]], SecureCRT) baud rate to **9600** to access to access serial console of RS485-BL. The default password is 123456. Below is the output for reference:
1470 +(% style="background-color:#dcdcdc" %)**ATZ**       (%%) Reset MCU
1011 1011  
1012 -[[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image028.png]]
1013 1013  
1473 +(% style="color:red" %)**Note:**
1014 1014  
1475 +(((
1476 +(% style="color:red" %)1. Make sure the device is set to ABP mode in the IoT Server.
1477 +2. Make sure the LG01/02 gateway RX frequency is exactly the same as AT+CHS setting.
1478 +3. Make sure SF / bandwidth setting in LG01/LG02 match the settings of AT+DR. refer [[this link>>url:http://www.dragino.com/downloads/index.php?dir=LoRa_Gateway/&file=LoRaWAN%201.0.3%20Regional%20Parameters.xlsx]] to see what DR means.
1479 +4. The command AT+RX2FQ and AT+RX2DR is to let downlink work. to set the correct parameters, user can check the actually downlink parameters to be used. As below. Which shows the RX2FQ should use 868400000 and RX2DR should be 5
1015 1015  
1016 -More detail AT Command manual can be found at [[AT Command Manual>>path:#AT_COMMAND]]
1481 +
1482 +)))
1017 1017  
1484 +(% aria-label="1654162478620-421.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:1654162478620-421.png||data-widget="image"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
1018 1018  
1019 1019  
1020 -1.
1021 -11. Common AT Command Sequence
1022 -111. Multi-channel ABP mode (Use with SX1301/LG308)
1023 1023  
1024 -If device has not joined network yet:
1488 += 6. FAQ =
1025 1025  
1026 -AT+FDR
1027 1027  
1028 -AT+NJM=0
1491 +== 6.1 How to upgrade the image? ==
1029 1029  
1030 -ATZ
1031 1031  
1494 +(((
1495 +The RS485-LN LoRaWAN Controller is shipped with a 3.5mm cable, the cable is used to upload image to RS485-LN to:
1496 +)))
1032 1032  
1033 -If device already joined network:
1498 +* (((
1499 +Support new features
1500 +)))
1501 +* (((
1502 +For bug fix
1503 +)))
1504 +* (((
1505 +Change LoRaWAN bands.
1506 +)))
1034 1034  
1035 -AT+NJM=0
1508 +(((
1509 +Below shows the hardware connection for how to upload an image to RS485-LN:
1510 +)))
1036 1036  
1037 -ATZ
1512 +(% aria-label="1654162535040-878.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:1654162535040-878.png||data-widget="image"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]]
1038 1038  
1039 -1.
1040 -11.
1041 -111. Single-channel ABP mode (Use with LG01/LG02)
1514 +(% title="Click and drag to resize" %)​
1042 1042  
1043 -AT+FDR   Reset Parameters to Factory Default, Keys Reserve
1516 +(((
1517 +(% style="color:blue" %)**Step1**(%%)**:** Download [[flash loader>>url:https://www.st.com/content/st_com/en/products/development-tools/software-development-tools/stm32-software-development-tools/stm32-programmers/flasher-stm32.html]].
1518 +)))
1044 1044  
1045 -AT+NJM=0 Set to ABP mode
1520 +(((
1521 +(% style="color:blue" %)**Step2**(%%)**:** Download the [[LT Image files>>url:https://www.dragino.com/downloads/index.php?dir=RS485-LN/Firmware/]].
1522 +)))
1046 1046  
1047 -AT+ADR=0 Set the Adaptive Data Rate Off
1524 +(((
1525 +(% style="color:blue" %)**Step3**(%%)**: **Open flashloader; choose the correct COM port to update.
1526 +)))
1048 1048  
1049 -AT+DR=5  Set Data Rate
1528 +(((
1529 +(((
1530 +(((
1531 +(% style="color:blue" %) Hold down the PRO button and then momentarily press the RST reset button and the SYS led will change from OFF to ON, While SYS LED is RED ON, it means the RS485-LN is ready to be program.
1532 +)))
1533 +)))
1534 +)))
1050 1050  
1051 -AT+TDC=60000  Set transmit interval to 60 seconds
1052 1052  
1053 -AT+CHS=868400000 Set transmit frequency to 868.4Mhz
1537 +(% aria-label="image-20220602175818-12.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:image-20220602175818-12.png||data-widget="image"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
1054 1054  
1055 -AT+RX2FQ=868400000 Set RX2Frequency to 868.4Mhz (according to the result from server)
1056 1056  
1057 -AT+RX2DR=5  Set RX2DR to match the downlink DR from server. see below
1540 +(% aria-label="image-20220602175848-13.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:image-20220602175848-13.png||data-widget="image"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
1058 1058  
1059 -AT+DADDR=26 01 1A F1 Set Device Address to 26 01 1A F1, this ID can be found in the LoRa Server portal.
1060 1060  
1061 -ATZ          Reset MCU
1543 +(% aria-label="image-20220602175912-14.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:image-20220602175912-14.png||data-widget="image"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
1062 1062  
1063 -**Note:**
1064 1064  
1065 -1. Make sure the device is set to ABP mode in the IoT Server.
1066 -1. Make sure the LG01/02 gateway RX frequency is exactly the same as AT+CHS setting.
1067 -1. Make sure SF / bandwidth setting in LG01/LG02 match the settings of AT+DR. refer [[this link>>url:http://www.dragino.com/downloads/index.php?dir=LoRa_Gateway/&file=LoRaWAN%201.0.3%20Regional%20Parameters.xlsx]] to see what DR means.
1068 -1. The command AT+RX2FQ and AT+RX2DR is to let downlink work. to set the correct parameters, user can check the actually downlink parameters to be used. As below. Which shows the RX2FQ should use 868400000 and RX2DR should be 5
1546 +(% style="color:red" %)**Notice**: **In case user has lost the program cable. User can hand made one from a 3.5mm cable. The pin mapping is:**
1069 1069  
1070 -[[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image029.png]]
1548 +(% aria-label="image-20220602175638-10.png image widget" contenteditable="false" role="region" tabindex="-1" %)[[image:image-20220602175638-10.png||data-widget="image"]](% style="background-image:url(http://wiki.dragino.com/xwiki/webjars/wiki%3Axwiki/application-ckeditor-webjar/1.61/plugins/widget/images/handle.png); background:rgba(220,220,220,0.5); display:none" %)[[image:data:image/gif;base64,R0lGODlhAQABAPABAP///wAAACH5BAEKAAAALAAAAAABAAEAAAICRAEAOw==||draggable="true" height="15" role="presentation" title="Click and drag to move" width="15"]](% title="Click and drag to resize" %)​
1071 1071  
1072 1072  
1073 -1. FAQ
1074 -11. How to upgrade the image?
1075 1075  
1076 -The RS485-BL LoRaWAN Controller is shipped with a 3.5mm cable, the cable is used to upload image to RS485-BL to:
1552 +== 6.2 How to change the LoRa Frequency Bands/Region? ==
1077 1077  
1078 -* Support new features
1079 -* For bug fix
1080 -* Change LoRaWAN bands.
1081 1081  
1082 -Below shows the hardware connection for how to upload an image to RS485-BL:
1555 +User can follow the introduction for [[how to upgrade image>>||anchor="H6.1Howtoupgradetheimage3F"]]. When download the images, choose the required image file for download.
1083 1083  
1084 -[[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image030.png]]
1085 1085  
1086 -**Step1:** Download [[flash loader>>url:https://www.st.com/content/st_com/en/products/development-tools/software-development-tools/stm32-software-development-tools/stm32-programmers/flasher-stm32.html]].
1087 1087  
1088 -**Step2**: Download the [[LT Image files>>url:http://www.dragino.com/downloads/index.php?dir=LT_LoRa_IO_Controller/LT33222-L/image/]].
1559 +== 6.3 How many RS485-Slave can RS485-LN connects? ==
1089 1089  
1090 -**Step3: **Open flashloader; choose the correct COM port to update.
1091 1091  
1562 +The RS485-LN can support max 32 RS485 devices. Each uplink command of RS485-LN can support max 16 different RS485 command. So RS485-LN can support max 16 RS485 devices pre-program in the device for uplink. For other devices no pre-program, user can use the [[downlink message (type code 0xA8) to poll their info>>||anchor="H3.3.3Configurereadcommandsforeachsampling"]].
1092 1092  
1093 -|(((
1094 -HOLD PRO then press the RST button, SYS will be ON, then click next
1095 -)))
1096 1096  
1097 -|(((
1098 -Board detected
1099 -)))
1100 1100  
1101 -|(((
1102 -
1103 -)))
1566 +== 6.4 Compatible question to ChirpStack and TTI LoRaWAN server ? ==
1104 1104  
1105 -[[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image031.png]] [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image032.png]]
1106 1106  
1569 +When user need to use with ChirpStack or TTI. Please set AT+RPL=4.
1107 1107  
1571 +Detail info check this link: [[Set Packet Receiving Response Level>>doc:Main.End Device AT Commands and Downlink Command.WebHome||anchor="H7.23SetPacketReceivingResponseLevel"]]
1108 1108  
1109 -[[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image033.png]] [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image034.png]]
1110 1110  
1111 1111  
1112 -[[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image035.png]] [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image036.png]]
1575 +== 6.5 Can i use point to point communication for RS485-LN? ==
1113 1113  
1114 1114  
1115 -1.
1116 -11. How to change the LoRa Frequency Bands/Region?
1578 +Yes, please refer [[Point to Point Communication for RS485-LN>>Point to Point Communication for RS485-LN]].
1117 1117  
1118 -User can follow the introduction for [[how to upgrade image>>path:#upgrade_image]]. When download the images, choose the required image file for download.
1119 1119  
1120 1120  
1582 +== 6.6 How to Use RS485-LN  to connect to RS232 devices? ==
1121 1121  
1122 -1.
1123 -11. How many RS485-Slave can RS485-BL connects?
1124 1124  
1125 -The RS485-BL can support max 32 RS485 devices. Each uplink command of RS485-BL can support max 16 different RS485 command. So RS485-BL can support max 16 RS485 devices pre-program in the device for uplink. For other devices no pre-program, user can use the [[downlink message (type code 0xA8) to poll their info>>path:#downlink_A8]].
1585 +[[Use RS485-BL or RS485-LN to connect to RS232 devices. - DRAGINO>>url:http://8.211.40.43:8080/xwiki/bin/view/Main/RS485%20to%20RS232/]]
1126 1126  
1127 1127  
1128 1128  
1589 += 7. Trouble Shooting =
1129 1129  
1130 -1. Trouble Shooting     
1131 -11. Downlink doesn’t work, how to solve it?
1132 1132  
1133 -Please see this link for debug:
1592 +== 7.1 Downlink doesn't work, how to solve it? ==
1134 1134  
1135 -[[http:~~/~~/wiki.dragino.com/index.php?title=Main_Page#LoRaWAN_Communication_Debug>>url:http://wiki.dragino.com/index.php?title=Main_Page#LoRaWAN_Communication_Debug]] 
1136 1136  
1595 +Please see this link for debug: [[LoRaWAN Communication Debug>>doc:Main.LoRaWAN Communication Debug.WebHome]]
1137 1137  
1138 1138  
1139 -1.
1140 -11. Why I can’t join TTN V3 in US915 /AU915 bands?
1141 1141  
1142 -It might about the channels mapping. Please see for detail.
1599 +== 7.2 Why I can't join TTN V3 in US915 /AU915 bands? ==
1143 1143  
1144 -[[http:~~/~~/wiki.dragino.com/index.php?title=LoRaWAN_Communication_Debug#Notice_of_US915.2FCN470.2FAU915_Frequency_band>>url:http://wiki.dragino.com/index.php?title=LoRaWAN_Communication_Debug#Notice_of_US915.2FCN470.2FAU915_Frequency_band]]
1145 1145  
1602 +It might about the channels mapping. Please see for detail: [[Notice of Frequency band>>doc:Main.LoRaWAN Communication Debug.WebHome||anchor="H2.NoticeofUS9152FCN4702FAU915Frequencyband"]]
1146 1146  
1147 1147  
1148 -1. Order Info
1149 1149  
1150 -**Part Number: RS485-BL-XXX**
1606 += 8. Order Info =
1151 1151  
1152 -**XXX:**
1153 1153  
1154 -* **EU433**: frequency bands EU433
1155 -* **EU868**: frequency bands EU868
1156 -* **KR920**: frequency bands KR920
1157 -* **CN470**: frequency bands CN470
1158 -* **AS923**: frequency bands AS923
1159 -* **AU915**: frequency bands AU915
1160 -* **US915**: frequency bands US915
1161 -* **IN865**: frequency bands IN865
1162 -* **RU864**: frequency bands RU864
1163 -* **KZ865: **frequency bands KZ865
1609 +(% style="color:blue" %)**Part Number: RS485-LN-XXX**
1164 1164  
1165 -1. Packing Info
1611 +(% style="color:blue" %)**XXX:**
1166 1166  
1613 +* (% style="color:red" %)**EU433**(%%):  frequency bands EU433
1614 +* (% style="color:red" %)**EU868**(%%):  frequency bands EU868
1615 +* (% style="color:red" %)**KR920**(%%):  frequency bands KR920
1616 +* (% style="color:red" %)**CN470**(%%):  frequency bands CN470
1617 +* (% style="color:red" %)**AS923**(%%):  frequency bands AS923
1618 +* (% style="color:red" %)**AU915**(%%):  frequency bands AU915
1619 +* (% style="color:red" %)**US915**(%%):  frequency bands US915
1620 +* (% style="color:red" %)**IN865**(%%):  frequency bands IN865
1621 +* (% style="color:red" %)**RU864**(%%):  frequency bands RU864
1622 +* (% style="color:red" %)**KZ865**(%%):  frequency bands KZ865
1623 +
1624 += 9.Packing Info =
1625 +
1626 +
1167 1167  **Package Includes**:
1168 1168  
1169 -* RS485-BL x 1
1629 +* RS485-LN x 1
1170 1170  * Stick Antenna for LoRa RF part x 1
1171 1171  * Program cable x 1
1172 1172  
... ... @@ -1177,9 +1177,68 @@
1177 1177  * Package Size / pcs : 14.5 x 8 x 5 cm
1178 1178  * Weight / pcs : 170g
1179 1179  
1180 -1. Support
1640 += 10. FCC Caution for RS485LN-US915 =
1181 1181  
1182 -* 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.
1183 -* 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
1184 1184  
1185 -[[support@dragino.com>>url:file:///D:/市场资料/说明书/LoRa/LT系列/support@dragino.com]]
1643 +(((
1644 +Any Changes or modifications not expressly approved by the party responsible for compliance could void the user's authority to operate the equipment.
1645 +)))
1646 +
1647 +(((
1648 +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.
1649 +)))
1650 +
1651 +(((
1652 +
1653 +)))
1654 +
1655 +(((
1656 +(% style="color:red" %)**IMPORTANT NOTE:**
1657 +)))
1658 +
1659 +(((
1660 +(% 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:
1661 +)))
1662 +
1663 +(((
1664 +—Reorient or relocate the receiving antenna.
1665 +)))
1666 +
1667 +(((
1668 +—Increase the separation between the equipment and receiver.
1669 +)))
1670 +
1671 +(((
1672 +—Connect the equipment into an outlet on a circuit different from that to which the receiver is connected.
1673 +)))
1674 +
1675 +(((
1676 +—Consult the dealer or an experienced radio/TV technician for help.
1677 +)))
1678 +
1679 +(((
1680 +
1681 +)))
1682 +
1683 +(((
1684 +(% style="color:red" %)**FCC Radiation Exposure Statement:**
1685 +)))
1686 +
1687 +(((
1688 +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.
1689 +)))
1690 +
1691 +
1692 +
1693 += 11. Support =
1694 +
1695 +
1696 +* (((
1697 +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.
1698 +)))
1699 +* (((
1700 +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:file:///D:/市场资料/说明书/LoRa/LT系列/support@dragino.com]].
1701 +
1702 +
1703 +
1704 +)))
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