<
From version < 44.1 >
edited by Edwin Chen
on 2022/05/23 00:08
To version < 76.4 >
edited by Xiaoling
on 2022/05/23 15:37
>
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1 -XWiki.Edwin
1 +XWiki.Xiaoling
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1 -{{box cssClass="floatinginfobox" title="**Contents**"}}
1 +(% style="text-align:center" %)
2 +[[image:image-20220523115324-1.jpeg||height="500" width="500"]]
3 +
4 +
5 +**LHT65N LoRaWAN Temperature & Humidity Sensor Manual**
6 +
7 +
8 +
9 +**Table of Contents:**
10 +
2 2  {{toc/}}
3 -{{/box}}
4 4  
5 -= Overview =
6 6  
7 -[[image:LHT65N_10.png||alt="LHT65_Image" height="265" width="265"]]
8 8  
15 += 1.Introduction =
9 9  
10 -The Dragino LHT65N Temperature & Humidity sensor is a Long Range LoRaWAN Sensor. It includes a(% class="mark" %) **built-in Temperature & Humidity sensor**(%%) and has an external sensor connector to connect to an external (% class="mark" %)**Temperature Sensor**(%%)**.**
17 +== 1.1 What is LHT65N Temperature & Humidity Sensor ==
11 11  
19 +(((
20 +The Dragino LHT65N Temperature & Humidity sensor is a Long Range LoRaWAN Sensor. It includes a (% style="color:#4f81bd" %)**built-in Temperature & Humidity sensor**(%%) and has an external sensor connector to connect to an external (% style="color:#4f81bd" %)**Temperature Sensor**(%%)**.**
21 +)))
22 +
23 +(((
12 12  The LHT65N allows users to send data 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, building automation, and so on.
25 +)))
13 13  
27 +(((
14 14  LHT65N has a built-in 2400mAh non-chargeable battery which can be used for up to 10 years*.
29 +)))
15 15  
31 +(((
16 16  LHT65N is full compatible with LoRaWAN v1.0.3 Class A protocol, it can work with a standard LoRaWAN gateway.
33 +)))
17 17  
18 -LHT65N supports (% class="mark" %)Datalog Feature(%%). It will record the data when there is no network coverage and users can retrieve the sensor value later to ensure no miss for every sensor reading.
35 +(((
36 +LHT65N supports (% style="color:#4f81bd" %)**Datalog Feature**(%%). It will record the data when there is no network coverage and users can retrieve the sensor value later to ensure no miss for every sensor reading.
37 +)))
19 19  
39 +(((
20 20  *The actual battery life depends on how often to send data, please see the battery analyzer chapter.
41 +)))
21 21  
43 +== 1.2 Features ==
22 22  
23 -== Features: ==
24 -
25 25  * Wall mountable
26 26  * LoRaWAN v1.0.3 Class A protocol
27 27  * Frequency Bands: CN470/EU433/KR920/US915/EU868/AS923/AU915
... ... @@ -34,55 +34,87 @@
34 34  * Tri-color LED to indicate working status
35 35  * Datalog feature
36 36  
37 -== Specification: ==
57 +== 1.3 Specification ==
38 38  
59 +(((
39 39  **Built-in Temperature Sensor:**
61 +)))
40 40  
41 -* Resolution: 0.01 °C
42 -* Accuracy Tolerance : Typ ±0.3 °C
43 -* Long Term Drift: < 0.02 °C/yr
44 -* Operating Range: -40 ~~ 85 °C
63 +* (((
64 +Resolution: 0.01 °C
65 +)))
66 +* (((
67 +Accuracy Tolerance : Typ ±0.3 °C
68 +)))
69 +* (((
70 +Long Term Drift: < 0.02 °C/yr
71 +)))
72 +* (((
73 +Operating Range: -40 ~~ 85 °C
74 +)))
45 45  
76 +(((
46 46  **Built-in Humidity Sensor:**
78 +)))
47 47  
48 -* Resolution: 0.04 %RH
49 -* Accuracy Tolerance : Typ ±3 %RH
50 -* Long Term Drift: < 0.02 °C/yr
51 -* Operating Range: 0 ~~ 96 %RH
80 +* (((
81 +Resolution: 0.04 %RH
82 +)))
83 +* (((
84 +Accuracy Tolerance : Typ ±3 %RH
85 +)))
86 +* (((
87 +Long Term Drift: < 0.02 °C/yr
88 +)))
89 +* (((
90 +Operating Range: 0 ~~ 96 %RH
91 +)))
52 52  
93 +(((
53 53  **External Temperature Sensor:**
95 +)))
54 54  
55 -* Resolution: 0.0625 °C
56 -* ±0.5°C accuracy from -10°C to +85°C
57 -* ±2°C accuracy from -55°C to +125°C
58 -* Operating Range: -55 °C ~~ 125 °C
97 +* (((
98 +Resolution: 0.0625 °C
99 +)))
100 +* (((
101 +±0.5°C accuracy from -10°C to +85°C
102 +)))
103 +* (((
104 +±2°C accuracy from -55°C to +125°C
105 +)))
106 +* (((
107 +Operating Range: -55 °C ~~ 125 °C
108 +)))
59 59  
60 -= Connect LHT65N to IoT Server =
110 += 2. Connect LHT65N to IoT Server =
61 61  
62 -== How does LHT65N work? ==
112 +== 2.1 How does LHT65N work? ==
63 63  
114 +(((
64 64  LHT65N is configured as LoRaWAN OTAA Class A mode by default. Each LHT65N is shipped with a worldwide unique set of OTAA keys. To use LHT65N in a LoRaWAN network, first, we need to put the OTAA keys in LoRaWAN Network Server and then activate LHT65N.
116 +)))
65 65  
118 +(((
66 66  If LHT65N is under the coverage of this LoRaWAN network. LHT65N can join the LoRaWAN network automatically. After successfully joining, LHT65N will start to measure environment temperature and humidity, and start to transmit sensor data to the LoRaWAN server. The default period for each uplink is 20 minutes.
120 +)))
67 67  
122 +== 2.2 How to Activate LHT65N? ==
68 68  
69 -== How to Activate LHT65N? ==
70 -
71 71  The LHT65N has two working modes:
72 72  
73 73  * **Deep Sleep Mode**: LHT65N doesn’t have any LoRaWAN activation. This mode is used for storage and shipping to save battery life.
74 74  * **Working Mode**: In this mode, LHT65N works as LoRaWAN Sensor mode to Join LoRaWAN network and send out the sensor data to the server. Between each sampling/tx/rx periodically, LHT65 will be in STOP mode (IDLE mode), in STOP mode, LHT65N has the same power consumption as Deep Sleep mode. 
75 75  
129 +(((
76 76  The LHT65N is set in deep sleep mode by default; The ACT button on the front is to switch to different modes:
131 +)))
77 77  
78 78  [[image:image-20220515123819-1.png||height="379" width="317"]]
79 79  
80 -|**Behavior on ACT**|**Function**|**Action**
81 -|**Pressing ACT between 1s < time < 3s**|Test uplink status|If LHT65N is already Joined to the LoRaWAN network, LHT65N will send an uplink packet, if LHT65N has an external sensor connected, blue led will blink once. If LHT65N has no external sensor, red led will blink once.
82 -|**Pressing ACT for more than 3s**|Active Device|green led will fast blink 5 times, LHT65N will enter working mode and start to JOIN LoRaWAN network. green led will solid turn on for 5 seconds after join in network.
83 -|**Fast press ACT 5 times**|Deactivate Device|red led will solid on for 5 seconds. This means LHT65N is in Deep Sleep Mode.
135 +[[image:image-20220523153201-19.png||height="163" width="739"]]
84 84  
85 -== Example to join LoRaWAN network ==
137 +== 2.3 Example to join LoRaWAN network ==
86 86  
87 87  (% class="wikigeneratedid" %)
88 88  This section shows an example of how to join the TTN V3 LoRaWAN IoT server. Use with other LoRaWAN IoT servers is of a similar procedure.
... ... @@ -93,7 +93,7 @@
93 93  Assume the LPS8N is already set to connect to [[TTN V3 network>>url:https://eu1.cloud.thethings.network]], So it provides network coverage for LHT65N. Next we need to add the LHT65N device in TTN V3:
94 94  
95 95  
96 -=== **Step 1**: Create Device n TTN ===
148 +=== 2.3.1 Step 1: Create Device n TTN ===
97 97  
98 98  Create a device in TTN V3 with the OTAA keys from LHT65N.
99 99  
... ... @@ -107,10 +107,8 @@
107 107  
108 108  [[image:image-20220522232916-3.png]]
109 109  
110 -
111 111  [[image:image-20220522232932-4.png]]
112 112  
113 -
114 114  [[image:image-20220522232954-5.png]]
115 115  
116 116  Note: LHT65N use same payload as LHT65.
... ... @@ -123,37 +123,60 @@
123 123  [[image:image-20220522233118-7.png]]
124 124  
125 125  
126 -=== Step 2: Activate LHT65N by pressing the ACT button for more than 5 seconds. ===
176 +=== 2.3.2 Step 2: Activate LHT65N by pressing the ACT button for more than 5 seconds. ===
127 127  
128 128  Use ACT button to activate LHT65N and it will auto-join to the TTN V3 network. After join success, it will start to upload sensor data to TTN V3 and user can see in the panel.
129 129  
130 -[[image:image-20220522233300-8.png]]
180 +[[image:image-20220522233300-8.png||height="219" width="722"]]
131 131  
132 132  
133 -== Uplink Payload: ==
183 +== 2.4 Uplink Payload ==
134 134  
135 -The uplink payload includes totally 11 bytes. Uplink packets use FPORT=2 and(% class="mark" %) every 20 minutes(%%) send one uplink by default.
185 +The uplink payload includes totally 11 bytes. Uplink packets use FPORT=2 and (% style="color:#4f81bd" %)**every 20 minutes**(%%) send one uplink by default.
136 136  
137 -After each uplink, the (% class="mark" %)BLUE LED(%%) will blink once.
187 +After each uplink, the (% style="color:blue" %)**BLUE LED**(%%) will blink once.
138 138  
189 +(% border="1" style="background-color:#ffffcc; color:green; width:426px" %)
190 +|(% style="width:97px" %)(((
191 +**Size(bytes)**
192 +)))|(% style="width:39px" %)(((
193 +**2**
194 +)))|(% style="width:100px" %)(((
195 +**2**
196 +)))|(% style="width:77px" %)(((
197 +**2**
198 +)))|(% style="width:47px" %)(((
199 +**1**
200 +)))|(% style="width:51px" %)(((
201 +**4**
202 +)))
203 +|(% style="width:97px" %)(((
204 +**Value**
205 +)))|(% style="width:39px" %)(((
206 +[[BAT>>path:http://8.211.40.43/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LHT65N%20LoRaWAN%20Temperature%20%26%20Humidity%20Sensor%20Manual/#H2.4.2BAT-BatteryInfo]]
207 +)))|(% style="width:100px" %)(((
208 +(((
209 +[[Built-In Temperature>>http://8.211.40.43/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LHT65N%20LoRaWAN%20Temperature%20%26%20Humidity%20Sensor%20Manual/#H2.4.3Built-inTemperature]]
210 +)))
211 +)))|(% style="width:77px" %)(((
212 +(((
213 +[[Built-in>>path:http://8.211.40.43/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LHT65N%20LoRaWAN%20Temperature%20%26%20Humidity%20Sensor%20Manual/#H2.4.4Built-inHumidity]]
214 +)))
139 139  
140 -(% style="width:572px" %)
141 -|(% style="width:106px" %)**Size(bytes)**|(% style="width:71px" %)**2**|(% style="width:128px" %)**2**|(% style="width:103px" %)**2**|(% style="width:72px" %)**1**|(% style="width:89px" %)**4**
142 -|(% style="width:106px" %)**Value**|(% style="width:71px" %)[[BAT>>path:#Battery]]|(% style="width:128px" %)(((
143 -[[Built-In>>path:#SHT20_Temperature]]
216 +(((
217 +[[Humidity>>path:http://8.211.40.43/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LHT65N%20LoRaWAN%20Temperature%20%26%20Humidity%20Sensor%20Manual/#H2.4.4Built-inHumidity]]
218 +)))
219 +)))|(% style="width:47px" %)(((
220 +[[Ext>>path:#Extension_Sensor]] #
221 +)))|(% style="width:51px" %)(((
222 +[[Ext value>>path:http://8.211.40.43/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LHT65N%20LoRaWAN%20Temperature%20%26%20Humidity%20Sensor%20Manual/#H2.4.6Extvalue]]
223 +)))
144 144  
145 -[[Temperature>>path:#SHT20_Temperature]]
146 -)))|(% style="width:103px" %)(((
147 -[[Built-in>>path:#SHT20_Humidity]]
148 -
149 -[[Humidity>>path:#SHT20_Humidity]]
150 -)))|(% style="width:72px" %)[[Ext>>path:#Extension_Sensor]] #|(% style="width:89px" %)[[Ext value>>path:#Extension_sensor_value]]
151 -
152 152  * The First 6 bytes: has fix meanings for every LHT65N.
153 153  * The 7th byte (EXT #): defines the external sensor model.
154 154  * The 8^^th^^ ~~ 11^^th^^ byte: the value for external sensor value. The definition is based on external sensor type. (If EXT=0, there won’t be these four bytes.)
155 155  
156 -=== Decoder in TTN V3 ===
229 +=== 2.4.1 Decoder in TTN V3 ===
157 157  
158 158  When the uplink payload arrives TTNv3, it shows HEX format and not friendly to read. We can add LHT65N decoder in TTNv3 for friendly reading.
159 159  
... ... @@ -161,114 +161,117 @@
161 161  
162 162  [[https:~~/~~/www.dropbox.com/sh/r2i3zlhsyrpavla/AAB1sZw3mdT0K7XjpHCITt13a?dl=0 >>https://www.dropbox.com/sh/r2i3zlhsyrpavla/AAB1sZw3mdT0K7XjpHCITt13a?dl=0]]
163 163  
164 -[[image:image-20220522234118-10.png]]
237 +[[image:image-20220522234118-10.png||height="353" width="729"]]
165 165  
239 +=== 2.4.2 BAT-Battery Info ===
166 166  
167 -=== BAT-Battery Info ===
168 -
169 169  These two bytes of BAT include the battery state and the actually voltage
170 170  
171 -(% style="width:646px" %)
172 -|Bit(bit)|(% style="width:272px" %)[15:14]|(% style="width:214px" %)[13:0]
173 -|Value|(% style="width:272px" %)(((
174 -BAT Status
243 +[[image:image-20220523152839-18.png]]
175 175  
176 -00(b): Ultra Low ( BAT <= 2.50v)
245 +[[image:image-20220522235639-1.png||height="139" width="727"]]
177 177  
178 -01(b): Low  (2.50v <=BAT <= 2.55v)
179 -
180 -10(b): OK   (2.55v <= BAT <=2.65v)
181 -
182 -11(b): Good   (BAT >= 2.65v)
183 -)))|(% style="width:214px" %)Actually BAT voltage
184 -
185 -[[image:image-20220522235639-1.png]]
186 -
187 187  Check the battery voltage for LHT65N.
188 188  
189 189  * BAT status=(0Xcba4>>14)&0xFF=11(B),very good
190 190  * Battery Voltage =0xCBF6&0x3FFF=0x0BA4=2980mV
191 191  
192 -=== Built-in Temperature ===
252 +=== 2.4.3 Built-in Temperature ===
193 193  
194 -[[image:image-20220522235639-2.png]]
254 +[[image:image-20220522235639-2.png||height="138" width="722"]]
195 195  
196 196  * Temperature:  0x0ABB/100=27.47℃
197 197  
198 -
199 199  [[image:image-20220522235639-3.png]]
200 200  
201 201  * Temperature:  (0xF5C6-65536)/100=-26.18℃
202 202  
262 +=== 2.4.4 Built-in Humidity ===
203 203  
204 -=== Built-in Humidity ===
264 +[[image:image-20220522235639-4.png||height="138" width="722"]]
205 205  
206 -[[image:image-20220522235639-4.png]]
207 -
208 208  * Humidity:    0x025C/10=60.4%
209 209  
268 +=== 2.4.5 Ext # ===
210 210  
211 -=== Ext # ===
212 -
213 213  Bytes for External Sensor:
214 214  
215 -(% style="width:624px" %)
216 -|(% style="width:139px" %)**EXT # Value**|(% style="width:484px" %)**External Sensor Type**
217 -|(% style="width:139px" %)0x01|(% style="width:484px" %)Sensor E3, Temperature Sensor
218 -|(% style="width:139px" %)0x09|(% style="width:484px" %)Sensor E3, Temperature Sensor, Datalog Mod
272 +[[image:image-20220523152822-17.png]]
219 219  
274 +=== 2.4.6 Ext value ===
220 220  
221 -=== Ext value ===
276 +==== 2.4.6.1 Ext~=1, E3 Temperature Sensor ====
222 222  
223 -==== Ext~=1, E3 Temperature Sensor ====
224 -
225 225  [[image:image-20220522235639-5.png]]
226 226  
227 -
228 228  * DS18B20 temp=0x0ADD/100=27.81℃
229 229  
230 230  The last 2 bytes of data are meaningless
231 231  
232 -
233 -
234 234  [[image:image-20220522235639-6.png]]
235 235  
236 236  * External temperature= (0xF54F-65536)/100=-27.37℃
237 237  
288 +(((
238 238  The last 2 bytes of data are meaningless
290 +)))
239 239  
240 -
292 +(((
241 241  If the external sensor is 0x01, and there is no external temperature connected. The temperature will be set to 7FFF which is 327.67℃
294 +)))
242 242  
243 243  
244 -==== Ext~=9, E3 sensor with Unix Time stamp ====
297 +==== 2.4.6.2 Ext~=9, E3 sensor with Unix Timestamp ====
245 245  
246 246  Timestamp mode is designed for LHT65N with E3 probe, it will send the uplink payload with Unix timestamp. With the limitation of 11 bytes (max distance of AU915/US915/AS923 band), the time stamp mode will be lack of BAT voltage field, instead, it shows the battery status. The payload is as below:
247 247  
301 +(% border="1" style="background-color:#ffffcc; color:green; width:468px" %)
302 +|(% style="width:96px" %)(((
303 +**Size(bytes)**
304 +)))|(% style="width:71px" %)(((
305 +**2**
306 +)))|(% style="width:99px" %)(((
307 +**2**
308 +)))|(% style="width:132px" %)(((
309 +**2**
310 +)))|(% style="width:54px" %)(((
311 +**1**
312 +)))|(% style="width:64px" %)(((
313 +**4**
314 +)))
315 +|(% style="width:96px" %)(((
316 +**Value**
317 +)))|(% style="width:71px" %)(((
318 +[[External temperature>>http://8.211.40.43/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LHT65N%20LoRaWAN%20Temperature%20%26%20Humidity%20Sensor%20Manual/#H4.2SetExternalSensorMode]]
319 +)))|(% style="width:99px" %)(((
320 +(((
321 +[[Built-In>>http://8.211.40.43/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LHT65N%20LoRaWAN%20Temperature%20%26%20Humidity%20Sensor%20Manual/#H2.4.3Built-inTemperature]]
322 +)))
248 248  
249 -(% style="width:697px" %)
250 -|(% style="width:96px" %)**Size(bytes)**|(% style="width:164px" %)**2**|(% style="width:104px" %)**2**|(% style="width:106px" %)**2**|(% style="width:108px" %)**1**|(% style="width:116px" %)**4**
251 -|(% style="width:96px" %)**Value**|(% style="width:164px" %)[[External temperature>>path:#DS18b20_value]]|(% style="width:104px" %)(((
252 -[[Built-In>>path:#SHT20_Temperature]]
324 +(((
325 +[[Temperature>>http://8.211.40.43/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LHT65N%20LoRaWAN%20Temperature%20%26%20Humidity%20Sensor%20Manual/#H2.4.3Built-inTemperature]]
326 +)))
327 +)))|(% style="width:132px" %)(((
328 +(((
329 +BAT Status &
330 +)))
253 253  
254 -[[Temperature>>path:#SHT20_Temperature]]
255 -)))|(% style="width:106px" %)(((
256 -[[BAT Status &>>path:#BAT_Humidity]]
257 -
258 -[[Built-in>>path:#BAT_Humidity]]
259 -
260 -[[Humidity>>path:#BAT_Humidity]]
261 -)))|(% style="width:108px" %)[[Status & Ext>>path:#Status_EXT]]|(% style="width:116px" %)(((
262 -[[Unix>>path:#Unix_Time_Stamp]]
263 -
264 -[[Time Stamp>>path:#Unix_Time_Stamp]]
332 +(((
333 +[[Built-in Humidity>>http://8.211.40.43/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LHT65N%20LoRaWAN%20Temperature%20%26%20Humidity%20Sensor%20Manual/#H2.4.4Built-inHumidity]]
265 265  )))
335 +)))|(% style="width:54px" %)(((
336 +Status & Ext
337 +)))|(% style="width:64px" %)(((
338 +(((
339 +[[Unix Time Stamp>>path:http://8.211.40.43/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LHT65N%20LoRaWAN%20Temperature%20%26%20Humidity%20Sensor%20Manual/#H4.1SetTransmitIntervalTime]]
340 +)))
341 +)))
266 266  
267 -* **Battery status & **[[**Built-in Humidity**>>path:#SHT20_Humidity]]
343 +* **Battery status & (% class="wikiinternallink wikiinternallink wikiinternallink wikiinternallink wikiinternallink wikiinternallink wikiinternallink wikiinternallink wikiinternallink wikiinternallink wikiinternallink wikiinternallink wikiinternallink" %)Built-in Humidity(%%)**
268 268  
269 -(% style="width:587px" %)
270 -|Bit(bit)|(% style="width:280px" %)[15:14]|(% style="width:136px" %)[11:0]
271 -|Value|(% style="width:280px" %)(((
345 +(% border="1" style="background-color:#ffffcc; color:green; width:469px" %)
346 +|(% style="width:65px" %)Bit(bit)|(% style="width:267px" %)[15:14]|(% style="width:134px" %)[11:0]
347 +|(% style="width:65px" %)Value|(% style="width:267px" %)(((
272 272  BAT Status
273 273  
274 274  00(b): Ultra Low ( BAT <= 2.50v)
... ... @@ -278,55 +278,329 @@
278 278  10(b): OK   (2.55v <= BAT <=2.65v)
279 279  
280 280  11(b): Good   (BAT >= 2.65v)
281 -)))|(% style="width:136px" %)(((
282 -[[Built-in Humidity>>path:#SHT20_Humidity]]
357 +)))|(% style="width:134px" %)(((
358 +[[Built-in Humidity>>path:http://8.211.40.43/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LHT65N%20LoRaWAN%20Temperature%20%26%20Humidity%20Sensor%20Manual/#H2.4.4Built-inHumidity]]
283 283  
284 284  
285 285  )))
286 286  
287 -
288 288  * **Status & Ext Byte**
289 289  
290 -(% style="width:732px" %)
291 -|(% style="width:128px" %)**Bits**|(% style="width:102px" %)**7**|(% style="width:145px" %)**6**|(% style="width:117px" %)**5**|(% style="width:147px" %)**4**|(% style="width:90px" %)**[3:0]**
292 -|(% style="width:128px" %)**Status & Ext**|(% style="width:102px" %)Not Defined|(% style="width:145px" %)Poll Message Flag|(% style="width:117px" %)Sync time OK|(% style="width:147px" %)Unix Time Request|(% style="width:90px" %)(((
293 -Ext:
365 +[[image:image-20220523152434-16.png]]
294 294  
295 -0b(1001)
296 -)))
297 -
298 298  * Poll Message Flag: 1: This message is a poll message reply, 0: means this is a normal uplink.
299 299  * Sync time OK: 1: Set time ok,0: N/A. After time SYNC request is sent, LHT65N will set this bit to 0 until got the time stamp from the application server.
300 300  * Unix Time Request:1: Request server downlink Unix time, 0 : N/A. In this mode, LHT65N will set this bit to 1 every 10 days to request a time SYNC. (AT+SYNCMOD to set this)
301 301  
371 +== 2.5 Show data on Datacake ==
302 302  
373 +Datacake IoT platform provides a human-friendly interface to show the sensor data, once we have sensor data in TTN V3, we can use Datacake to connect to TTN V3 and see the data in Datacake. Below are the steps:
303 303  
304 -== LED Indicator ==
375 +(((
376 +**Step 1**: Be sure that your device is programmed and properly connected to the LoRaWAN network.
377 +)))
305 305  
379 +(((
380 +**Step 2**: Configure your Application to forward data to Datacake you will need to add integration. Go to TTN V3 Console ~-~-> Applications ~-~-> Integrations ~-~-> Add Integrations.
381 +)))
382 +
383 +(((
384 +Add Datacake:
385 +)))
386 +
387 +[[image:image-20220523000825-7.png||height="262" width="583"]]
388 +
389 +
390 +Select default key as Access Key:
391 +
392 +[[image:image-20220523000825-8.png||height="453" width="406"]]
393 +
394 +In Datacake console ([[https:~~/~~/datacake.co/>>url:https://datacake.co/]]) , add LHT65 device.
395 +
396 +[[image:image-20220523000825-9.png||height="366" width="392"]]
397 +
398 +[[image:image-20220523000825-10.png||height="413" width="728"]]
399 +
400 +== 2.6 Datalog Feature ==
401 +
402 +This feature is always enabled. When user wants to retrieve the sensor value, he can send a poll command from the IoT platform to ask LHT65N to send the value in the required time slot.
403 +
404 +=== 2.6.1 Unix TimeStamp ===
405 +
406 +LHT65N uses Unix TimeStamp format based on
407 +
408 +[[image:image-20220523001219-11.png||height="97" width="627"]]
409 +
410 +
411 +(((
412 +User can get this time from link:  [[https:~~/~~/www.epochconverter.com/>>url:https://www.epochconverter.com/]] :
413 +)))
414 +
415 +(((
416 +Below is the converter example
417 +)))
418 +
419 +[[image:image-20220523001219-12.png||height="298" width="720"]]
420 +
421 +So, we can use AT+TIMESTAMP=1611889405 or downlink 3060137afd00 to set the current time 2021 – Jan ~-~- 29 Friday 03:03:25
422 +
423 +=== 2.6.2 Set Device Time ===
424 +
425 +(((
426 +There are two ways to set device’s time:
427 +)))
428 +
429 +(((
430 +**~1. Through LoRaWAN MAC Command (Default settings)**
431 +)))
432 +
433 +(((
434 +User need to set SYNCMOD=1 to enable sync time via MAC command.
435 +)))
436 +
437 +(((
438 +Once LHT65N Joined LoRaWAN network, it will send the MAC command (DeviceTimeReq) and the server will reply with (DeviceTimeAns) to send the current time to LHT65N. If LHT65N fails to get the time from the server, LHT65N will use the internal time and wait for next time request (AT+SYNCTDC to set the time request period, default is 10 days).
439 +)))
440 +
441 +(((
442 +Note: LoRaWAN Server need to support LoRaWAN v1.0.3(MAC v1.0.3) or higher to support this MAC command feature, Chirpstack,TTN V3 v3 and loriot support but TTN V3 v2 doesn’t support. If server doesn’t support this command, it will through away uplink packet with this command, so user will lose the packet with time request for TTN V3 v2 if SYNCMOD=1.
443 +)))
444 +
445 +(((
446 +
447 +)))
448 +
449 +(((
450 +**2. Manually Set Time**
451 +)))
452 +
453 +(((
454 +User needs to set SYNCMOD=0 to manual time, otherwise, the user set time will be overwritten by the time set by the server.
455 +)))
456 +
457 +=== 2.6.3 Poll sensor value ===
458 +
459 +User can poll sensor value based on timestamps from the server. Below is the downlink command.
460 +
461 +[[image:image-20220523152302-15.png]]
462 +
463 +(((
464 +Timestamp start and Timestamp end use Unix TimeStamp format as mentioned above. Devices will reply with all data log during this time period, use the uplink interval.
465 +)))
466 +
467 +(((
468 +For example, downlink command **31 5FC5F350 5FC6 0160 05**
469 +)))
470 +
471 +(((
472 +Is to check 2020/12/1 07:40:00 to 2020/12/1 08:40:00’s data
473 +)))
474 +
475 +(((
476 +Uplink Internal =5s,means LHT65N will send one packet every 5s. range 5~~255s.
477 +)))
478 +
479 +
480 +=== 2.6.4 Datalog Uplink payload ===
481 +
482 +The Datalog poll reply uplink will use below payload format.
483 +
484 +(((
485 +**Retrieval data payload**
486 +)))
487 +
488 +(% border="1" style="background-color:#ffffcc; color:green; width:545px" %)
489 +|(% style="width:93px" %)(((
490 +**Size(bytes)**
491 +)))|(% style="width:71px" %)(((
492 +**2**
493 +)))|(% style="width:102px" %)(((
494 +**2**
495 +)))|(% style="width:86px" %)(((
496 +**2**
497 +)))|(% style="width:90px" %)(((
498 +**1**
499 +)))|(% style="width:85px" %)(((
500 +**4**
501 +)))
502 +|(% style="width:93px" %)(((
503 +**Value**
504 +)))|(% style="width:71px" %)(((
505 +[[External sensor data>>path:http://8.211.40.43/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LHT65N%20LoRaWAN%20Temperature%20%26%20Humidity%20Sensor%20Manual/#H2.4.6Extvalue]]
506 +)))|(% style="width:102px" %)(((
507 +(((
508 +[[Built In>>http://8.211.40.43/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LHT65N%20LoRaWAN%20Temperature%20%26%20Humidity%20Sensor%20Manual/#H2.4.3Built-inTemperature]]
509 +)))
510 +
511 +(((
512 +[[Temperature>>http://8.211.40.43/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LHT65N%20LoRaWAN%20Temperature%20%26%20Humidity%20Sensor%20Manual/#H2.4.3Built-inTemperature]]
513 +)))
514 +)))|(% style="width:86px" %)(((
515 +(((
516 +[[Built-in>>path:http://8.211.40.43/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LHT65N%20LoRaWAN%20Temperature%20%26%20Humidity%20Sensor%20Manual/#H2.4.4Built-inHumidity]]
517 +)))
518 +
519 +(((
520 +[[Humidity>>http://8.211.40.43/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LHT65N%20LoRaWAN%20Temperature%20%26%20Humidity%20Sensor%20Manual/#H2.4.4Built-inHumidity]]
521 +)))
522 +)))|(% style="width:90px" %)(((
523 +[[Poll message flag & Ext>>path:http://8.211.40.43/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LHT65N%20LoRaWAN%20Temperature%20%26%20Humidity%20Sensor%20Manual/#H2.6.4DatalogUplinkpayload]]
524 +)))|(% style="width:85px" %)(((
525 +(((
526 +[[Unix Time Stamp>>path:http://8.211.40.43/xwiki/bin/view/Main/User%20Manual%20for%20LoRaWAN%20End%20Nodes/LHT65N%20LoRaWAN%20Temperature%20%26%20Humidity%20Sensor%20Manual/#H2.6.1UnixTimeStamp]]
527 +)))
528 +
529 +(((
530 +
531 +)))
532 +)))
533 +
534 +**Poll message flag & Ext**
535 +
536 +[[image:image-20220523152208-14.png]]
537 +
538 +(((
539 +(((
540 +Poll Message Flag: 1: This message is a poll message reply.
541 +)))
542 +)))
543 +
544 +* (((
545 +(((
546 +Poll Message Flag is set to 1.
547 +)))
548 +)))
549 +* (((
550 +(((
551 +Each data entry is 11 bytes, to save airtime and battery, devices will send max bytes according to the current DR and Frequency bands.
552 +)))
553 +)))
554 +
555 +(((
556 +(((
557 +For example, in US915 band, the max payload for different DR is:
558 +)))
559 +)))
560 +
561 +(((
562 +(((
563 +a) DR0: max is 11 bytes so one entry of data
564 +)))
565 +)))
566 +
567 +(((
568 +(((
569 +b) DR1: max is 53 bytes so devices will upload 4 entries of data (total 44 bytes)
570 +)))
571 +)))
572 +
573 +(((
574 +(((
575 +c) DR2: total payload includes 11 entries of data
576 +)))
577 +)))
578 +
579 +(((
580 +(((
581 +d) DR3: total payload includes 22 entries of data.
582 +)))
583 +)))
584 +
585 +(((
586 +(((
587 +If devise doesn’t have any data in the polling time. Device will uplink 11 bytes of 0   
588 +)))
589 +)))
590 +
591 +
592 +**Example:**
593 +
594 +If LHT65N has below data inside Flash:
595 +
596 +[[image:image-20220523144455-1.png||height="335" width="735"]]
597 +
598 +If user sends below downlink command: (% style="background-color:yellow" %)3160065F9760066DA705
599 +
600 + Where : Start time: 60065F97 = time 21/1/19 04:27:03
601 +
602 + Stop time 60066DA7= time 21/1/19 05:27:03
603 +
604 +
605 +LHT65N will uplink this payload.
606 +
607 +[[image:image-20220523001219-13.png||height="421" width="727"]]
608 +
609 +7FFF089801464160065F977FFF088E014B41600660097FFF0885014E41600660667FFF0875015141600662BE7FFF086B015541600665167FFF08660155416006676E7FFF085F015A41600669C67FFF0857015D4160066C1E
610 +
611 +Where the first 11 bytes is for the first entry:
612 +
613 +7FFF089801464160065F97
614 +
615 +Ext sensor data=0x7FFF/100=327.67
616 +
617 +Temp=0x0898/100=22.00
618 +
619 +Hum=0x0146/10=32.6
620 +
621 +poll message flag & Ext=0x41,means reply data,Ext=1
622 +
623 +Unix time is 0x60065F97=1611030423s=21/1/19 04:27:03
624 +
625 +== 2.7 Alarm Mode ==
626 +
627 +Alarm mode feature is added since firmware v1.5. When device is in Alarm mode, it will check the built-in sensor temperature in a short interval. If the temperature exceeds the pre-configure range, it will send an uplink immediately.
628 +
629 +(% style="color:red" %)Note: Alarm mode will increase a little big the power consumption, we recommend extending the normal reading time when enabling this feature.
630 +
631 +**AT Commands for Alarm mode:**
632 +
633 +(% class="box infomessage" %)
634 +(((
635 +**AT+WMOD=1**: Enable/Disable Alarm Mode. (0:Disable, 1: Enable)
636 +)))
637 +
638 +(% class="box infomessage" %)
639 +(((
640 +**AT+CITEMP=1**: The interval to check the temperature for Alarm. (Unit: minute)
641 +)))
642 +
643 +== 2.8 LED Indicator ==
644 +
645 +(((
306 306  The LHT65N has a triple color LED which for easy shows different stage.
647 +)))
307 307  
649 +(((
308 308  While pressing ACT button, the LED will work as per LED status with ACT button.
651 +)))
309 309  
653 +(((
310 310  In a normal working state:
655 +)))
311 311  
312 -* For each uplink, the BLUE LED or RED LED will blink once.
313 -* BLUE LED when an external sensor is connected
314 -* RED LED when an external sensor is not connected
315 -* For each success downlink, the PURPLE LED will blink once
657 +* (((
658 +For each uplink, the BLUE LED or RED LED will blink once.
659 +)))
660 +* (((
661 +BLUE LED when an external sensor is connected
662 +)))
663 +* (((
664 +RED LED when an external sensor is not connected
665 +)))
666 +* (((
667 +For each success downlink, the PURPLE LED will blink once
668 +)))
316 316  
317 317  ----
318 318  
319 -== Installation ==
672 +== 2.9 Installation ==
320 320  
321 -[[image:image-20220516231650-1.png||height="632" width="620"]]
674 +[[image:image-20220516231650-1.png||height="436" width="428"]]
322 322  
676 += 3. Sensors & Accessories =
323 323  
678 +== 3.1 E3 Temperature Probe ==
324 324  
325 -
326 -= Sensors & Accessories =
327 -
328 -== E3 Temperature Probe ==
329 -
330 330  [[image:image-20220515080154-4.png||height="182" width="161"]] [[image:image-20220515080330-5.png||height="201" width="195"]]
331 331  
332 332  
... ... @@ -338,72 +338,313 @@
338 338  * Operating Range: -40 ~~ 125 °C
339 339  * -55°C to 125°C
340 340  * Working voltage 2.35v ~~ 5v
341 -
342 342  
343 -= Battery & How to replace =
692 += 4. Configure LHT65N via AT Command or LoRaWAN Downlink =
344 344  
345 -== Battery Type ==
694 +Use can configure LHT65N via AT Command or LoRaWAN Downlink.
346 346  
696 +* AT Command Connection: See [[FAQ>>path:#AT_COMMAND]].
697 +* LoRaWAN Downlink instruction for different platforms:
698 +
699 +[[http:~~/~~/wiki.dragino.com/index.php?title=Main_Page#Use_Note_for_Server>>url:http://wiki.dragino.com/index.php?title=Main_Page#Use_Note_for_Server]]
700 +
701 +There are two kinds of commands to configure LHT65N, they are:
702 +
703 +(% style="color:#4f81bd" %)* **General Commands**.
704 +
705 +These commands are to configure:
706 +
707 +* General system settings like: uplink interval.
708 +* LoRaWAN protocol & radio-related commands.
709 +
710 +They are the same for all Dragino Devices which supports DLWS-005 LoRaWAN Stack(Note~*~*). These commands can be found on the wiki:
711 +
712 +[[http:~~/~~/wiki.dragino.com/index.php?title=End_Device_Downlink_Command>>url:http://wiki.dragino.com/index.php?title=End_Device_Downlink_Command]]
713 +
714 +(% style="color:#4f81bd" %)* **Commands special design for LHT65N**
715 +
716 +These commands are only valid for LHT65N, as below:
717 +
718 +== 4.1 Set Transmit Interval Time ==
719 +
720 +Feature: Change LoRaWAN End Node Transmit Interval.
721 +
722 +**AT Command: AT+TDC**
723 +
724 +[[image:image-20220523150701-2.png]]
725 +
726 +**Downlink Command: 0x01**
727 +
728 +Format: Command Code (0x01) followed by 3 bytes time value.
729 +
730 +If the downlink payload=0100003C, it means set the END Node’s Transmit Interval to 0x00003C=60(S), while type code is 01.
731 +
732 +* **Example 1**: Downlink Payload: 0100001E ~/~/ Set Transmit Interval (TDC) = 30 seconds
733 +* **Example 2**: Downlink Payload: 0100003C ~/~/ Set Transmit Interval (TDC) = 60 seconds
734 +
735 +== 4.2 Set External Sensor Mode ==
736 +
737 +Feature: Change External Sensor Mode.
738 +
739 +**AT Command: AT+EXT**
740 +
741 +[[image:image-20220523150759-3.png]]
742 +
743 +**Downlink Command: 0xA2**
744 +
745 +Total bytes: 2 ~~ 5 bytes
746 +
747 +**Example:**
748 +
749 +* 0xA201: Set external sensor type to E1
750 +* 0xA209: Same as AT+EXT=9
751 +* 0xA20702003c,Same as AT+SETCNT=60
752 +
753 +== 4.3 Enable/Disable uplink Temperature probe ID ==
754 +
755 +Feature: If PID is enabled, device will send the temperature probe ID on:
756 +
757 +* First Packet after OTAA Join
758 +* Every 24 hours since the first packet.
759 +
760 +PID is default set to disable (0)
761 +
762 +**AT Command:**
763 +
764 +[[image:image-20220523150928-4.png]]
765 +
766 +**Downlink Command:**
767 +
768 +* 0xA800  **~-~->** AT+PID=0
769 +* 0xA801     **~-~->** AT+PID=1
770 +
771 +== 4.4 Set Password ==
772 +
773 +Feature: Set device password, max 9 digits
774 +
775 +**AT Command: AT+PWORD**
776 +
777 +[[image:image-20220523151052-5.png]]
778 +
779 +**Downlink Command:**
780 +
781 +No downlink command for this feature.
782 +
783 +== 4.5 Quit AT Command ==
784 +
785 +Feature: Quit AT Command mode, so user needs to input password again before use AT Commands.
786 +
787 +**AT Command: AT+DISAT**
788 +
789 +[[image:image-20220523151132-6.png]]
790 +
791 +**Downlink Command:**
792 +
793 +No downlink command for this feature.
794 +
795 +== 4.6 Set to sleep mode ==
796 +
797 +Feature: Set device to sleep mode
798 +
799 +**AT Command: AT+SLEEP**
800 +
801 +[[image:image-20220523151218-7.png]]
802 +
803 +**Downlink Command:**
804 +
805 +* There is no downlink command to set to Sleep mode.
806 +
807 +== 4.7 Set system time ==
808 +
809 +Feature: Set system time, unix format. [[See here for format detail.>>path:#TimeStamp]]
810 +
811 +**AT Command:**
812 +
813 +[[image:image-20220523151253-8.png]]
814 +
815 +**Downlink Command:**
816 +
817 +0x306007806000 ~/~/ Set timestamp to 0x(6007806000),Same as AT+TIMESTAMP=1611104352
818 +
819 +== 4.8 Set Time Sync Mode ==
820 +
821 +Feature: Enable/Disable Sync system time via LoRaWAN MAC Command (DeviceTimeReq), LoRaWAN server must support v1.0.3 protocol to reply this command.
822 +
823 +SYNCMOD is set to 1 by default. If user want to set a different time from LoRaWAN server, user need to set this to 0.
824 +
825 +**AT Command:**
826 +
827 +[[image:image-20220523151336-9.png]]
828 +
829 +**Downlink Command:**
830 +
831 +0x28 01 ~/~/ Same As AT+SYNCMOD=1
832 +
833 +0x28 00 ~/~/ Same As AT+SYNCMOD=0
834 +
835 +== 4.9 Set Time Sync Interval ==
836 +
837 +Feature: Define System time sync interval. SYNCTDC default value: 10 days.
838 +
839 +**AT Command:**
840 +
841 +[[image:image-20220523151411-10.png]]
842 +
843 +**Downlink Command:**
844 +
845 +0x29 0A ~/~/ Same as AT+SYNCTDC=0x0A
846 +
847 +== 4.10 Print data entries base on page. ==
848 +
849 +Feature: Print the sector data from start page to stop page (max is 416 pages).
850 +
851 +**AT Command: AT+PDTA**
852 +
853 +[[image:image-20220523151450-11.png]]
854 +
855 +**Downlink Command:**
856 +
857 +No downlink commands for feature
858 +
859 +== 4.11 Print last few data entries. ==
860 +
861 +Feature: Print the last few data entries
862 +
863 +**AT Command: AT+PLDTA**
864 +
865 +[[image:image-20220523151524-12.png]]
866 +
867 +**Downlink Command:**
868 +
869 +No downlink commands for feature
870 +
871 +== 4.12 Clear Flash Record ==
872 +
873 +Feature: Clear flash storage for data log feature.
874 +
875 +**AT Command: AT+CLRDTA**
876 +
877 +[[image:image-20220523151556-13.png]]
878 +
879 +**Downlink Command: 0xA3**
880 +
881 +* Example: 0xA301 ~/~/Same as AT+CLRDTA
882 +
883 += 5. Battery & How to replace =
884 +
885 +== 5.1 Battery Type ==
886 +
347 347  LHT65N is equipped with a 2400mAH Li-MnO2 (CR17505) battery . The battery is an un-rechargeable battery with low discharge rate targeting for up to 8~~10 years use. This type of battery is commonly used in IoT devices for long-term running, such as water meters.
348 348  
889 +(((
349 349  The discharge curve is not linear so can’t simply use percentage to show the battery level. Below is the battery performance.
350 350  [[image:image-20220515075034-1.png||height="208" width="644"]]
892 +)))
351 351  
352 -
894 +(((
353 353  The minimum Working Voltage for the LHT65N is ~~ 2.5v. When battery is lower than 2.6v, it is time to change the battery.
354 354  
897 +)))
355 355  
356 -== Replace Battery ==
899 +== 5.2 Replace Battery ==
357 357  
358 358  LHT65N has two screws on the back, Unscrew them, and changing the battery inside is ok. The battery is a general CR17450 battery. Any brand should be ok.
359 359  
360 360  [[image:image-20220515075440-2.png||height="338" width="272"]][[image:image-20220515075625-3.png||height="193" width="257"]]
361 361  
905 +== 5.3 Battery Life Analyze ==
362 362  
363 -== Battery Life Analyze ==
364 -
907 +(((
365 365  Dragino battery-powered products are all run in Low Power mode. User can check the guideline from this link to calculate the estimated battery life:
366 366  https:~/~/www.dragino.com/downloads/downloads/LoRa_End_Node/Battery_Analyze/DRAGINO_Battery_Life_Guide.pdf
910 +)))
367 367  
912 += 6. Order Info =
368 368  
369 -= Order Info =
914 +(((
915 +Part Number: (% style="color:#4f81bd" %)** LHT65N-XX**
916 +)))
370 370  
371 -Part Number: (% class="mark" %)**LHT65N-XX**
918 +(((
919 +(% style="color:#4f81bd" %)**XX **(%%): The default frequency band
920 +)))
372 372  
373 -**XX**: The default frequency band
922 +* (((
923 +(% style="color:#4f81bd" %)** AS923**(%%): LoRaWAN AS923 band
924 +)))
925 +* (((
926 +(% style="color:#4f81bd" %)** AU915**(%%): LoRaWAN AU915 band
927 +)))
928 +* (((
929 +(% style="color:#4f81bd" %)** EU433**(%%): LoRaWAN EU433 band
930 +)))
931 +* (((
932 +(% style="color:#4f81bd" %)** EU868**(%%): LoRaWAN EU868 band
933 +)))
934 +* (((
935 +(% style="color:#4f81bd" %)** KR920**(%%): LoRaWAN KR920 band
936 +)))
937 +* (((
938 +(% style="color:#4f81bd" %)** US915**(%%): LoRaWAN US915 band
939 +)))
940 +* (((
941 +(% style="color:#4f81bd" %)** IN865**(%%): LoRaWAN IN865 band
942 +)))
943 +* (((
944 +(% style="color:#4f81bd" %)** CN470**(%%): LoRaWAN CN470 band
945 +)))
374 374  
375 -* **AS923**: LoRaWAN AS923 band
376 -* **AU915**: LoRaWAN AU915 band
377 -* **EU433**: LoRaWAN EU433 band
378 -* **EU868**: LoRaWAN EU868 band
379 -* **KR920**: LoRaWAN KR920 band
380 -* **US915**: LoRaWAN US915 band
381 -* **IN865**: LoRaWAN IN865 band
382 -* **CN470**: LoRaWAN CN470 band
947 +(((
948 +(% style="color:#4f81bd" %)**YY**(%%): Sensor Accessories
949 +)))
383 383  
384 -**YY**: Sensor Accessories
951 +* (((
952 +(% style="color:#4f81bd" %)**E3**(%%): External Temperature Probe
953 +)))
385 385  
386 -* **E3**: External Temperature Probe
955 += 7. Packing Info =
387 387  
388 -= Packing Info =
389 -
957 +(((
390 390  **Package Includes**:
959 +)))
391 391  
392 -* LHT65N Temperature & Humidity Sensor x 1
393 -* Program cable x 1
394 -* Optional external sensor
961 +* (((
962 +LHT65N Temperature & Humidity Sensor x 1
963 +)))
964 +* (((
965 +Program cable x 1
966 +)))
967 +* (((
968 +Optional external sensor
969 +)))
395 395  
971 +(((
396 396  **Dimension and weight**:
973 +)))
397 397  
398 -* Device Size:  13.5 x 7 x 3 cm
399 -* Device Weight: 105g
400 -* Package Size / pcs : 14.5 x 8 x 5 cm
401 -* Weight / pcs : 170g
975 +* (((
976 +Device Size:  13.5 x 7 x 3 cm
977 +)))
978 +* (((
979 +Device Weight: 105g
980 +)))
981 +* (((
982 +Package Size / pcs : 14.5 x 8 x 5 cm
983 +)))
984 +* (((
985 +Weight / pcs : 170g
986 +)))
402 402  
403 -= FCC Warning =
988 += 8. FCC Warning =
404 404  
990 +(((
405 405  This device complies with part 15 of the FCC Rules.Operation is subject to the following two conditions:
992 +)))
406 406  
407 -(1) This device may not cause harmful interference, and
994 +(((
995 +(1) This device may not cause harmful interference;
996 +)))
408 408  
409 -(2) this device must accept any interference received, including interference that may cause undesired operation
998 +(((
999 +(2) this device must accept any interference received, including interference that may cause undesired operation.
1000 +)))
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