<
From version < 104.11 >
edited by Xiaoling
on 2023/04/28 17:38
To version < 105.26 >
edited by Xiaoling
on 2023/06/16 09:42
>
Change comment: There is no comment for this version

Summary

Details

Page properties
Content
... ... @@ -21,19 +21,19 @@
21 21  
22 22  
23 23  (((
24 -Dragino LoRaWAN weather station series products are designed for measuring atmospheric conditions to provide information for weather forecasts and to study the (% style="color:#4472c4" %)**weather and climate**(%%). They consist of a (% style="color:#4472c4" %)**main process device (WSC1-L) and various sensors**.
24 +Dragino LoRaWAN weather station series products are designed for measuring atmospheric conditions to provide information for weather forecasts and to study the (% style="color:blue" %)**weather and climate**(%%). They consist of a (% style="color:blue" %)**main process device (WSC1-L) and various sensors**.
25 25  )))
26 26  
27 27  (((
28 -The sensors include various type such as: (% style="color:#4472c4" %)**Rain Gauge**, **Temperature/Humidity/Pressure sensor**, **Wind Speed/direction sensor**, **Illumination sensor**, **CO2 sensor**, **Rain/Snow sensor**,** PM2.5/10 sensor**, **PAR(Photosynthetically Available Radiation) sensor, Total Solar Radiation sensor**(%%) and so on.
28 +The sensors include various type such as: (% style="color:blue" %)**Rain Gauge**, **Temperature/Humidity/Pressure sensor**, **Wind Speed/direction sensor**, **Illumination sensor**, **CO2 sensor**, **Rain/Snow sensor**,** PM2.5/10 sensor**, **PAR(Photosynthetically Available Radiation) sensor, Total Solar Radiation sensor**(%%) and so on.
29 29  )))
30 30  
31 31  (((
32 -Main process device WSC1-L is an outdoor LoRaWAN RS485 end node. It is powered by external (% style="color:#4472c4" %)**12v solar power**(%%) and have a (% style="color:#4472c4" %)**built-in li-on backup battery**(%%). WSC1-L reads value from various sensors and upload these sensor data to IoT server via LoRaWAN wireless protocol.
32 +Main process device WSC1-L is an outdoor LoRaWAN RS485 end node. It is powered by external (% style="color:blue" %)**12v solar power**(%%) and have a (% style="color:blue" %)**built-in li-on backup battery**(%%). WSC1-L reads value from various sensors and upload these sensor data to IoT server via LoRaWAN wireless protocol.
33 33  )))
34 34  
35 35  (((
36 -WSC1-L is full compatible with(% style="color:#4472c4" %)** LoRaWAN Class C protocol**(%%), it can work with standard LoRaWAN gateway.
36 +WSC1-L is full compatible with(% style="color:blue" %)** LoRaWAN Class C protocol**(%%), it can work with standard LoRaWAN gateway.
37 37  )))
38 38  
39 39  
... ... @@ -171,7 +171,7 @@
171 171  User can also use downlink command**(0x2301)** to ask WSC1-L to resend this uplink
172 172  )))
173 173  
174 -(% border="1" cellspacing="8" style="background-color:#f2f2f2; width:500px" %)
174 +(% border="1" cellspacing="5" style="background-color:#f2f2f2; width:500px" %)
175 175  |=(% style="width: 70px;background-color:#D9E2F3" %)**Size(**bytes)|=(% style="width: 60px;background-color:#D9E2F3" %)1|=(% style="width: 80px;background-color:#D9E2F3" %)**2**|=(% style="width: 80px;background-color:#D9E2F3" %)**1**|=(% style="width: 60px;background-color:#D9E2F3" %)**1**|=(% style="width: 50px;background-color:#D9E2F3" %)**2**|=(% style="width: 100px;background-color:#D9E2F3" %)**3**
176 176  |(% style="width:99px" %)**Value**|(% style="width:112px" %)[[Sensor Model>>||anchor="HSensorModel:"]]|(% style="width:135px" %)[[Firmware Version>>||anchor="HFirmwareVersion:"]]|(% style="width:126px" %)[[Frequency Band>>||anchor="HFrequencyBand:"]]|(% style="width:85px" %)[[Sub-band>>||anchor="HSub-Band:"]]|(% style="width:46px" %)[[BAT>>||anchor="HBAT:"]]|(% style="width:166px" %)[[Weather Sensor Types>>||anchor="HWeatherSensorTypes:"]]
177 177  
... ... @@ -193,25 +193,25 @@
193 193  
194 194  ==== (% style="color:#037691" %)**Frequency Band:**(%%) ====
195 195  
196 -*0x01: EU868
196 +0x01: EU868
197 197  
198 -*0x02: US915
198 +0x02: US915
199 199  
200 -*0x03: IN865
200 +0x03: IN865
201 201  
202 -*0x04: AU915
202 +0x04: AU915
203 203  
204 -*0x05: KZ865
204 +0x05: KZ865
205 205  
206 -*0x06: RU864
206 +0x06: RU864
207 207  
208 -*0x07: AS923
208 +0x07: AS923
209 209  
210 -*0x08: AS923-1
210 +0x08: AS923-1
211 211  
212 -*0x09: AS923-2
212 +0x09: AS923-2
213 213  
214 -*0x0a: AS923-3
214 +0x0a: AS923-3
215 215  
216 216  
217 217  ==== (% style="color:#037691" %)**Sub-Band:**(%%) ====
... ... @@ -296,17 +296,11 @@
296 296  
297 297  (% style="color:#4472c4" %)**Sensor Type Table:**
298 298  
299 -
300 -(% border="1" cellspacing="5" style="background-color:#f2f2f2; width:520px" %)
301 -|(% style="background-color:#d9e2f3; color:#0070c0; width:103px" %)**Sensor Type**|(% style="background-color:#d9e2f3; color:#0070c0; width:91px" %)**Type Code**|(% style="background-color:#d9e2f3; color:#0070c0; width:116px" %)**Range**|(% style="background-color:#d9e2f3; color:#0070c0; width:90px" %)**Length( Bytes)**|(% style="background-color:#d9e2f3; color:#0070c0; width:120px" %)**Example**
299 +(% border="1" cellspacing="5" style="background-color:#f2f2f2; width:510px" %)
300 +|(% style="background-color:#d9e2f3; color:#0070c0; width:80px" %)**Sensor Type**|(% style="background-color:#d9e2f3; color:#0070c0; width:65px" %)**Type Code**|(% style="background-color:#d9e2f3; color:#0070c0; width:97px" %)**Range**|(% style="background-color:#d9e2f3; color:#0070c0; width:78px" %)**Length( Bytes)**|(% style="background-color:#d9e2f3; color:#0070c0; width:190px" %)**Example**
302 302  |(% style="width:103px" %)Wind Speed|(% style="width:91px" %)0x01|(% style="width:158px" %)(((
303 -(((
304 -Speed: 0~60m/s
305 -)))
306 -
307 -(((
308 -Level: 0~17
309 -)))
302 +Speed: 0 ~~ 60m/s
303 +Level: 0 ~~ 17
310 310  )))|(% style="width:122px" %)0x03 |(% style="width:904px" %)(((
311 311  (((
312 312  0x0024/10=3.6m/s (0x02FE: No Sensor, 0x02EE: Value Error)
... ... @@ -317,13 +317,8 @@
317 317  )))
318 318  )))
319 319  |(% style="width:103px" %)Wind Direction|(% style="width:91px" %)0x02|(% style="width:158px" %)(((
320 -(((
321 -Angel: 0~360°
322 -)))
323 -
324 -(((
314 +Angel: 0 ~~ 360°
325 325  Direction: 16 positions
326 -)))
327 327  )))|(% style="width:122px" %)0x03|(% style="width:904px" %)(((
328 328  (((
329 329  0x02C9/10=66.6°(0x0EFE: No Sensor,0x0EFF: Value Error)
... ... @@ -380,9 +380,7 @@
380 380  0x00B3=179μmol/m^^2^^•s (0x09FE: No Sensor,0x09FF: Value Error)
381 381  )))
382 382  |(% style="width:103px" %)(((
383 -Total Solar
384 -
385 -Radiation
372 +Total Solar Radiation
386 386  )))|(% style="width:91px" %)0x0D|(% style="width:158px" %)0~2000W/m^^2^^|(% style="width:122px" %)0x02|(% style="width:904px" %)(((
387 387  0x0073/10=11.5W/m^^2^^(0x4EFE: No Sensor,0x4EFF: Value Error)
388 388  )))
... ... @@ -391,9 +391,6 @@
391 391  Below is an example payload:  [[image:image-20220624140615-3.png]]
392 392  )))
393 393  
394 -(((
395 -
396 -)))
397 397  
398 398  (((
399 399  When sending this payload to LoRaWAN server. WSC1-L will send this in one uplink or several uplinks according to LoRaWAN spec requirement. For example, total length of Payload is 54 bytes.
... ... @@ -536,6 +536,9 @@
536 536  * Example 1: Downlink Payload: 0100001E  ~/~/  Set Transmit Interval (TDC) = 30 seconds
537 537  * Example 2: Downlink Payload: 0100003C  ~/~/  Set Transmit Interval (TDC) = 60 seconds
538 538  
523 +
524 +
525 +
539 539  == 3.2 Set Emergency Mode ==
540 540  
541 541  
... ... @@ -543,8 +543,8 @@
543 543  
544 544  (% style="color:#037691" %)**AT Command:**
545 545  
546 -(% border="1" cellspacing="5" style="background-color:#f2f2f2; width:465.818px" %)
547 -|(% style="background-color:#d9e2f3; color:#0070c0; width:155px" %)**Command Example**|(% style="background-color:#d9e2f3; color:#0070c0; width:224px" %)**Function**|(% style="background-color:#d9e2f3; color:#0070c0; width:84px" %)**Response**
533 +(% border="1" cellspacing="5" style="background-color:#f2f2f2; width:466px" %)
534 +|(% style="background-color:#d9e2f3; color:#0070c0; width:156px" %)**Command Example**|(% style="background-color:#d9e2f3; color:#0070c0; width:225px" %)**Function**|(% style="background-color:#d9e2f3; color:#0070c0; width:85px" %)**Response**
548 548  |(% style="width:155px" %)AT+ALARMMOD=1|(% style="width:224px" %)Enter emergency mode. Uplink every 1 minute|(% style="width:84px" %)(((
549 549  OK
550 550  
... ... @@ -558,6 +558,9 @@
558 558  * 0xE101     Same as: AT+ALARMMOD=1
559 559  * 0xE100     Same as: AT+ALARMMOD=0
560 560  
548 +
549 +
550 +
561 561  == 3.3 Add or Delete RS485 Sensor ==
562 562  
563 563  
... ... @@ -653,21 +653,19 @@
653 653  
654 654  * 0xE5FF  
655 655  
646 +
647 +
648 +
649 +
656 656  == 3.4 RS485 Test Command ==
657 657  
658 658  
659 659  (% style="color:#037691" %)**AT Command:**
660 660  
661 -(% border="1" cellspacing="5" style="background-color:#f2f2f2; width:474px" %)
662 -|=(% style="width: 160px;background-color:#D9E2F3;color:#0070C0" %)**Command Example**|=(% style="width: 228px;background-color:#D9E2F3;color:#0070C0" %)**Function**|=(% style="width: 86px;background-color:#D9E2F3;color:#0070C0" %)**Response**
655 +(% border="1" cellspacing="5" style="background-color:#f2f2f2; width:494px" %)
656 +|=(% style="width: 160px;background-color:#D9E2F3;color:#0070C0" %)**Command Example**|=(% style="width: 248px;background-color:#D9E2F3;color:#0070C0" %)**Function**|=(% style="width: 86px;background-color:#D9E2F3;color:#0070C0" %)**Response**
663 663  |(% style="width:159px" %)AT+RSWRITE=xxxxxx|(% style="width:227px" %)(((
664 -(((
665 -Send command to 485 sensor
666 -)))
667 -
668 -(((
669 -Range : no more than 10 bytes
670 -)))
658 +Send command to 485 sensor. Range : no more than 10 bytes
671 671  )))|(% style="width:85px" %)OK
672 672  
673 673  Eg: Send command **01 03 00 00 00 01 84 0A** to 485 sensor
... ... @@ -679,6 +679,10 @@
679 679  
680 680  * 0xE20103000001840A     Same as: AT+RSWRITE=0103000001840A
681 681  
670 +
671 +
672 +
673 +
682 682  == 3.5 RS485 response timeout ==
683 683  
684 684  
... ... @@ -689,13 +689,7 @@
689 689  (% border="1" cellspacing="5" style="background-color:#f2f2f2; width:433px" %)
690 690  |=(% style="width: 157px;background-color:#D9E2F3;color:#0070C0" %)**Command Example**|=(% style="width: 190px;background-color:#D9E2F3;color:#0070C0" %)**Function**|=(% style="width: 86px;background-color:#D9E2F3;color:#0070C0" %)**Response**
691 691  |(% style="width:157px" %)AT+DTR=1000|(% style="width:188px" %)(((
692 -(((
693 -Set response timeout to:
694 -)))
695 -
696 -(((
697 -Range : 0~~10000
698 -)))
684 +Set response timeout to: Range : 0~~10000
699 699  )))|(% style="width:85px" %)OK
700 700  
701 701  (% style="color:#037691" %)**Downlink Command:**
... ... @@ -707,6 +707,10 @@
707 707  * Example 1: Downlink Payload: E0000005  ~/~/  Set Transmit Interval (DTR) = 5 seconds
708 708  * Example 2: Downlink Payload: E000000A  ~/~/  Set Transmit Interval (DTR) = 10 seconds
709 709  
696 +
697 +
698 +
699 +
710 710  == 3.6 Set Sensor Type ==
711 711  
712 712  
... ... @@ -739,7 +739,6 @@
739 739  )))
740 740  
741 741  
742 -
743 743  (% style="color:#037691" %)**AT Command:**
744 744  
745 745  (% border="1" cellspacing="5" style="background-color:#f2f2f2; width:377px" %)
... ... @@ -768,6 +768,25 @@
768 768  ~1. The sensor type will not be saved to flash, and the value will be updated every time the sensor is restarted or rescanned.
769 769  
770 770  
760 +== 3.7  Set the registers read by the rain gauge(Since firmware V1.3) ==
761 +
762 +
763 +(% style="color:#037691" %)**AT Command:**
764 +
765 +(% border="1" cellspacing="5" style="background-color:#f2f2f2; width:433px" %)
766 +|=(% style="width: 172px; background-color:#D9E2F3;color:#0070C0" %)**Command Example**|=(% style="width: 175px; background-color:#D9E2F3;color:#0070C0" %)**Function**|=(% style="width: 86px;background-color:#D9E2F3;color:#0070C0" %)**Response**
767 +|(% style="width:161px" %)(((
768 +AT+RAINFALLSWITCH=1(Range: 1~~10)
769 +)))|(% style="width:184px" %)(((
770 +Set the registers read by the rain gauge
771 +)))|(% style="width:85px" %)OK
772 +
773 +(% style="color:#037691" %)**Downlink Command:**
774 +
775 +* 0x1701  Same as: AT+RAINFALLSWITCH=1
776 +
777 +
778 +
771 771  = 4. Power consumption and battery =
772 772  
773 773  == 4.1 Total Power Consumption ==
... ... @@ -811,6 +811,10 @@
811 811  * IP Rating: IP65
812 812  * Support default sensors or 3rd party RS485 sensors
813 813  
822 +
823 +
824 +
825 +
814 814  == 5.2 Power Consumption ==
815 815  
816 816  
... ... @@ -884,6 +884,10 @@
884 884  * ABS enclosure.
885 885  * Horizontal adjustable.
886 886  
899 +
900 +
901 +
902 +
887 887  === 6.1.2 Specification ===
888 888  
889 889  
... ... @@ -891,12 +891,15 @@
891 891  * Accuracy: ±3%
892 892  * Range: 0 ~~ 100mm
893 893  * Rainfall strength: 0mm~4mm/min (max 8mm/min)
894 -* Input Power: DC 5~~24v
910 +* Input Power: DC 5 ~~ 24v
895 895  * Interface: RS485
896 -* Working Temperature: 0℃70℃ ( incorrect below 0 degree, because water become ICE)
912 +* Working Temperature: 0℃ ~~ 70℃ ( incorrect below 0 degree, because water become ICE)
897 897  * Working Humidity: <100% (no dewing)
898 898  * Power Consumption: 4mA @ 12v.
899 899  
916 +
917 +
918 +
900 900  === 6.1.3 Dimension ===
901 901  
902 902  
... ... @@ -967,7 +967,6 @@
967 967  )))
968 968  
969 969  
970 -
971 971  === 6.2.1 Feature ===
972 972  
973 973  
... ... @@ -974,20 +974,28 @@
974 974  * RS485 wind speed / direction sensor
975 975  * PC enclosure, resist corrosion
976 976  
995 +
996 +
997 +
998 +
977 977  === 6.2.2 Specification ===
978 978  
979 979  
980 980  * Wind speed range: 0 ~~ 60m/s
981 981  * Wind direction range: 0 ~~ 360°
982 -* Start wind speed: ≤0.3m/s
983 -* Accuracy: ±0.3+0.03Vm/s , ±1°
984 -* Input Power: DC 5~~24v
1004 +* Start wind speed: ≤0.3 m/s
1005 +* Accuracy: ±(0.3+0.03V) m/s , ±1°
1006 +* Input Power: DC 5 ~~ 24v
985 985  * Interface: RS485
986 -* Working Temperature: -30℃70℃
1008 +* Working Temperature: -30℃ ~~ 70℃
987 987  * Working Humidity: <100% (no dewing)
988 988  * Power Consumption: 13mA ~~ 12v.
989 989  * Cable Length: 2 meters
990 990  
1013 +
1014 +
1015 +
1016 +
991 991  === 6.2.3 Dimension ===
992 992  
993 993  
... ... @@ -1045,24 +1045,31 @@
1045 1045  * NDIR to measure CO2 with Internal Temperature Compensation
1046 1046  * Laser Beam Scattering to PM2.5 and PM10
1047 1047  
1074 +
1075 +
1076 +
1048 1048  === 6.3.2 Specification ===
1049 1049  
1050 1050  
1051 -* CO2 Range: 05000ppm, accuracy: ±3%F•S25℃
1080 +* CO2 Range: 0 ~~ 5000ppm, accuracy: ±3%F•S(25℃)
1052 1052  * CO2 resolution: 1ppm
1053 -* PM2.5/PM10 Range: 01000μg/m3 , accuracy ±3%F•S25℃
1082 +* PM2.5/PM10 Range: 0 ~~ 1000μg/m3 , accuracy ±3%F•S(25℃)
1054 1054  * PM2.5/PM10 resolution: 1μg/m3
1055 1055  * Input Power: DC 7 ~~ 24v
1056 1056  * Preheat time: 3min
1057 1057  * Interface: RS485
1058 1058  * Working Temperature:
1059 -** CO2: 0℃50℃;
1088 +** CO2: 0℃ ~~ 50℃;
1060 1060  ** PM2.5/PM10: -30 ~~ 50℃
1061 1061  * Working Humidity:
1062 -** PM2.5/PM10: 1580%RH (no dewing)
1063 -** CO2: 095%RH
1091 +** PM2.5/PM10: 15 ~~ 80%RH (no dewing)
1092 +** CO2: 0 ~~ 95%RH
1064 1064  * Power Consumption: 50mA@ 12v.
1065 1065  
1095 +
1096 +
1097 +
1098 +
1066 1066  === 6.3.3 Dimension ===
1067 1067  
1068 1068  
... ... @@ -1110,6 +1110,9 @@
1110 1110  * Surface heating to dry
1111 1111  * grid electrode uses Electroless Nickel/Immersion Gold design for resist corrosion
1112 1112  
1146 +
1147 +
1148 +
1113 1113  === 6.4.2 Specification ===
1114 1114  
1115 1115  
... ... @@ -1116,12 +1116,15 @@
1116 1116  * Detect if there is rain or snow
1117 1117  * Input Power: DC 12 ~~ 24v
1118 1118  * Interface: RS485
1119 -* Working Temperature: -30℃70℃
1120 -* Working Humidity: 1090%RH
1155 +* Working Temperature: -30℃ ~~ 70℃
1156 +* Working Humidity: 10 ~~ 90%RH
1121 1121  * Power Consumption:
1122 1122  ** No heating: 12mA @ 12v,
1123 1123  ** heating: 94ma @ 12v.
1124 1124  
1161 +
1162 +
1163 +
1125 1125  === 6.4.3 Dimension ===
1126 1126  
1127 1127  
... ... @@ -1139,7 +1139,6 @@
1139 1139  
1140 1140  Do not power on while connect the cables. Double check the wiring before power on.
1141 1141  
1142 -
1143 1143  (((
1144 1144  Install with 15°degree.
1145 1145  )))
... ... @@ -1175,6 +1175,9 @@
1175 1175  
1176 1176  * RS485 Temperature, Humidity, Illuminance, Pressure sensor
1177 1177  
1216 +
1217 +
1218 +
1178 1178  === 6.5.2 Specification ===
1179 1179  
1180 1180  
... ... @@ -1189,17 +1189,20 @@
1189 1189  ** resolution 0.1 %RH
1190 1190  ** Accuracy: 3% RH
1191 1191  * Pressure Sensor Spec:
1192 -** Range: 101100hPa
1233 +** Range: 10 ~~ 1100hPa
1193 1193  ** Resolution: 0.1hPa
1194 1194  ** Accuracy: ±0.1hPa
1195 1195  * Illuminate sensor:
1196 -** Range: 02/20/200kLux
1237 +** Range: 0~~2/20/200kLux
1197 1197  ** Resolution: 10 Lux
1198 -** Accuracy: ±3FS
1199 -* Working Temperature: -30℃70℃
1200 -* Working Humidity: 1090%RH
1239 +** Accuracy: ±3%FS
1240 +* Working Temperature: -30℃ ~~ 70℃
1241 +* Working Humidity: 10 ~~ 90%RH
1201 1201  * Power Consumption: 4mA @ 12v
1202 1202  
1244 +
1245 +
1246 +
1203 1203  === 6.5.3 Dimension ===
1204 1204  
1205 1205  
... ... @@ -1243,25 +1243,33 @@
1243 1243  
1244 1244  
1245 1245  * RS485 Total Solar Radiation sensor
1246 -* Measure Total Radiation between 0.3~3μm300~3000nm
1290 +* Measure Total Radiation between 0.3~3μm(300~3000nm)
1247 1247  * Measure Reflected Radiation if sense area towards ground.
1248 1248  
1293 +
1294 +
1295 +
1296 +
1249 1249  === 6.6.2 Specification ===
1250 1250  
1251 1251  
1252 1252  * Input Power: DC 5 ~~ 24v
1253 1253  * Interface: RS485
1254 -* Detect spectrum: 0.33μm300~3000nm
1255 -* Measure strength range: 02000W/m2
1302 +* Detect spectrum: 0.3 ~~ 3μm(300~3000nm)
1303 +* Measure strength range: 0 ~~ 2000W/m2
1256 1256  * Resolution: 0.1W/m2
1257 1257  * Accuracy: ±3%
1258 -* Yearly Stability: ≤±2
1259 -* Cosine response: ≤7 (@ Sun angle 10°)
1260 -* Temperature Effect: ±2%(-10℃40℃
1261 -* Working Temperature: -40℃70℃
1262 -* Working Humidity: 1090%RH
1306 +* Yearly Stability: ≤±2%
1307 +* Cosine response: ≤7% (@ Sun angle 10°)
1308 +* Temperature Effect: ±2%(-10℃ ~~ 40℃)
1309 +* Working Temperature: -40℃ ~~ 70℃
1310 +* Working Humidity: 10 ~~ 90%RH
1263 1263  * Power Consumption: 4mA @ 12v
1264 1264  
1313 +
1314 +
1315 +
1316 +
1265 1265  === 6.6.3 Dimension ===
1266 1266  
1267 1267  
... ... @@ -1319,15 +1319,18 @@
1319 1319  
1320 1320  * Input Power: DC 5 ~~ 24v
1321 1321  * Interface: RS485
1322 -* Response Spectrum: 400700nm
1323 -* Measure range: 02500μmol/m2•s
1374 +* Response Spectrum: 400~~700nm
1375 +* Measure range: 0 ~~ 2500μmol/m2•s
1324 1324  * Resolution: 1μmol/m2•s
1325 1325  * Accuracy: ±2%
1326 -* Yearly Stability: ≤±2
1327 -* Working Temperature: -30℃75℃
1328 -* Working Humidity: 1090%RH
1378 +* Yearly Stability: ≤ ±2%
1379 +* Working Temperature: -30℃ ~~ 75℃
1380 +* Working Humidity: 10 ~~ 90%RH
1329 1329  * Power Consumption: 3mA @ 12v
1330 1330  
1383 +
1384 +
1385 +
1331 1331  === 6.7.3 Dimension ===
1332 1332  
1333 1333  
... ... @@ -1395,6 +1395,7 @@
1395 1395  
1396 1396  == 7.5 Where can i find the modbus command for the WSS sensors? ==
1397 1397  
1453 +
1398 1398  See this link for the [[modbus command set>>https://www.dropbox.com/s/rw90apbar029a4w/Weather_Sensors_Modbus_Command_List.xlsx?dl=0]].
1399 1399  
1400 1400  
... ... @@ -1429,16 +1429,16 @@
1429 1429  == 9.2 Sensors ==
1430 1430  
1431 1431  
1432 -(% border="1" cellspacing="10" style="background-color:#ffffcc; color:green; width:500px" %)
1433 -|=(% style="width: 300px;" %)**Sensor Model**|=(% style="width: 200px;" %)**Part Number**
1434 -|(% style="width:462px" %)**Rain Gauge**|(% style="width:120px" %)WSS-01
1435 -|(% style="width:462px" %)**Rain Gauge installation Bracket for Pole**|(% style="width:120px" %)WS-K2
1436 -|(% style="width:462px" %)**Wind Speed Direction 2 in 1 Sensor**|(% style="width:120px" %)WSS-02
1437 -|(% style="width:462px" %)**CO2/PM2.5/PM10 3 in 1 Sensor**|(% style="width:120px" %)WSS-03
1438 -|(% style="width:462px" %)**Rain/Snow Detect Sensor**|(% style="width:120px" %)WSS-04
1439 -|(% style="width:462px" %)**Temperature, Humidity, illuminance and Pressure 4 in 1 sensor**|(% style="width:120px" %)WSS-05
1440 -|(% style="width:462px" %)**Total Solar Radiation Sensor**|(% style="width:120px" %)WSS-06
1441 -|(% style="width:462px" %)**PAR (Photosynthetically Available Radiation)**|(% style="width:120px" %)WSS-07
1488 +(% border="1" cellspacing="10" style="background-color:#f2f2f2; width:500px" %)
1489 +|=(% style="width: 300px;background-color:#D9E2F3;color:#0070C0" %)**Sensor Model**|=(% style="width: 200px;background-color:#D9E2F3;color:#0070C0" %)**Part Number**
1490 +|(% style="width:462px" %)Rain Gauge|(% style="width:120px" %)WSS-01
1491 +|(% style="width:462px" %)Rain Gauge installation Bracket for Pole|(% style="width:120px" %)WS-K2
1492 +|(% style="width:462px" %)Wind Speed Direction 2 in 1 Sensor|(% style="width:120px" %)WSS-02
1493 +|(% style="width:462px" %)CO2/PM2.5/PM10 3 in 1 Sensor|(% style="width:120px" %)WSS-03
1494 +|(% style="width:462px" %)Rain/Snow Detect Sensor|(% style="width:120px" %)WSS-04
1495 +|(% style="width:462px" %)Temperature, Humidity, illuminance and Pressure 4 in 1 sensor|(% style="width:120px" %)WSS-05
1496 +|(% style="width:462px" %)Total Solar Radiation Sensor|(% style="width:120px" %)WSS-06
1497 +|(% style="width:462px" %)PAR (Photosynthetically Available Radiation)|(% style="width:120px" %)WSS-07
1442 1442  
1443 1443  = 10. Support =
1444 1444  
Copyright ©2010-2024 Dragino Technology Co., LTD. All rights reserved
Dragino Wiki v2.0