Last modified by Mengting Qiu on 2025/06/10 18:53

From version 3.7
edited by Xiaoling
on 2022/06/24 10:54
Change comment: There is no comment for this version
To version 2.3
edited by Xiaoling
on 2022/06/24 10:04
Change comment: There is no comment for this version

Summary

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Content
... ... @@ -37,7 +37,7 @@
37 37  
38 38  == 2.1 Installation ==
39 39  
40 -Below is an installation example for the weather station. Field installation example can be found at [[Appendix I: Field Installation Photo.>>path:#Installation_Photo]] 
40 +Below is an installation example for the weather station. Field installation example can be found at [[Appendix I: Field Installation Photo.>>path:#Installation_Photo]]
41 41  
42 42  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image002.png]]
43 43  
... ... @@ -63,6 +63,7 @@
63 63  * WSC1-L has an extra 1000mAh back up battery. So it can work even solar panel and storage battery Fails.
64 64  * Weather sensors won’t work if solar panel and storage battery fails.
65 65  
66 +
66 66  Notice 2:
67 67  
68 68  Due to shipment and importation limitation, user is better to purchase below parts locally:
... ... @@ -76,6 +76,7 @@
76 76  
77 77  
78 78  
80 +
79 79  == 2.2 How it works? ==
80 80  
81 81  Each WSC1-L is shipped with a worldwide unique set of OTAA keys. To use WSC1-L in a LoRaWAN network, user needs to input the OTAA keys in LoRaWAN network server. After finish installation as above. Create WSC1-L in your LoRaWAN server and Power on WSC1-L , it can join the LoRaWAN network and start to transmit sensor data. The default period for each uplink is 20 minutes.
... ... @@ -93,6 +93,7 @@
93 93  
94 94  
95 95  
98 +
96 96  == 2.3 Example to use for LoRaWAN network ==
97 97  
98 98  This section shows an example for how to join the TTN V3 LoRaWAN IoT server. Usages with other LoRaWAN IoT servers are of similar procedure.
... ... @@ -105,7 +105,7 @@
105 105  Assume the DLOS8 is already set to connect to [[TTN V3 network >>url:https://eu1.cloud.thethings.network/]]. We need to add the WSC1-L device in TTN V3:
106 106  
107 107  
108 -(% style="color:blue" %)**Step 1**(%%): Create a device in TTN V3 with the OTAA keys from WSC1-L.
111 +**(% style="color:blue" %)Step 1**(%%): Create a device in TTN V3 with the OTAA keys from WSC1-L.
109 109  
110 110  Each WSC1-L is shipped with a sticker with the default device EUI as below:
111 111  
... ... @@ -140,7 +140,7 @@
140 140  
141 141  
142 142  
143 -(% style="color:blue" %)**Step 2**(%%): Power on WSC1-L, it will start to join TTN server. After join success, it will start to upload sensor data to TTN V3 and user can see in the panel.
146 +**(% style="color:blue" %)Step 2**(%%): Power on WSC1-L, it will start to join TTN server. After join success, it will start to upload sensor data to TTN V3 and user can see in the panel.
144 144  
145 145  
146 146  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image011.png]]
... ... @@ -159,9 +159,8 @@
159 159  
160 160  
161 161  
162 -=== 2.4.1 Uplink FPORT ===
163 163  
164 -5, Device Status ===
166 +=== 2.4.1 Uplink FPORT=5, Device Status ===
165 165  
166 166  Uplink the device configures with FPORT=5. Once WSC1-L Joined the network, it will uplink this message to the server. After first uplink, WSC1-L will uplink Device Status every 12 hours
167 167  
... ... @@ -169,27 +169,25 @@
169 169  User can also use downlink command(0x2301) to ask WSC1-L to resend this uplink
170 170  
171 171  |**Size (bytes)**|**1**|**2**|**1**|**1**|**2**|**3**
172 -|**Value**|[[Sensor Model>>||anchor="HSensorModel:"]]|[[Firmware Version>>||anchor="HFirmwareVersion:"]]|[[Frequency Band>>||anchor="HFrequencyBand:"]]|[[Sub-band>>||anchor="HSub-Band:"]]|[[BAT>>||anchor="HBAT:"]]|[[Weather Sensor Types>>||anchor="HWeatherSensorTypes:"]]
174 +|**Value**|[[Sensor Model>>path:#Sensor_model]]|[[Firmware Version>>path:#Firmware_version]]|[[Frequency Band>>path:#Fre_Band]]|[[Sub-band>>path:#Sub_band]]|[[BAT>>path:#Battery]]|[[Weather Sensor Types>>path:#Sensor_types]]
173 173  
176 +
174 174  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image011.png]]
175 175  
176 176  
177 -Example Payload (FPort=5):  [[image:image-20220624101005-1.png]]
180 +Example Payload (FPort=5):
178 178  
182 +0D 01 00 01 00 0B D6 10 00 FE
179 179  
180 180  
181 -==== (% style="color:#037691" %)**Sensor Model:** ====
185 +**Sensor Model**: For WSC1-L, this value is 0x0D.
182 182  
183 -For WSC1-L, this value is 0x0D.
184 184  
188 +**Firmware Version**: 0x0100, Means: v1.0.0 version.
185 185  
186 -==== (% style="color:#037691" %)**Firmware Version:** ====
187 187  
188 -0x0100, Means: v1.0.0 version.
191 +**Frequency Band**:
189 189  
190 -
191 -==== (% style="color:#037691" %)**Frequency Band:** ====
192 -
193 193  *0x01: EU868
194 194  
195 195  *0x02: US915
... ... @@ -211,19 +211,15 @@
211 211  *0x0a: AS923-3
212 212  
213 213  
214 -==== (% style="color:#037691" %)**Sub-Band:** ====
214 +**Sub-Band**: value 0x00 ~~ 0x08(only for CN470, AU915,US915. Others are0x00)
215 215  
216 -value 0x00 ~~ 0x08(only for CN470, AU915,US915. Others are0x00)
217 217  
217 +**BAT**: shows the battery voltage for WSC1-L MCU.
218 218  
219 -==== (% style="color:#037691" %)**BAT:** ====
220 -
221 -shows the battery voltage for WSC1-L MCU.
222 -
223 223  Ex1: 0x0BD6/1000 = 3.03 V
224 224  
225 225  
226 -==== (% style="color:#037691" %)**Weather Sensor Types:** ====
222 +**Weather Sensor Types:**
227 227  
228 228  |Byte3|Byte2|Byte1
229 229  
... ... @@ -256,7 +256,7 @@
256 256  
257 257  User can also use downlink command(0x26 01) to ask WSC1-L to resend this uplink :
258 258  
259 -(% style="color:#037691" %)**Downlink:0x26 01**
255 +**Downlink:0x26 01**
260 260  
261 261  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image012.png||alt="1646898147(1)"]]
262 262  
... ... @@ -263,9 +263,11 @@
263 263  
264 264  
265 265  
266 -=== 2.4.2 Uplink FPORT=2, Real time sensor value ===
262 +1.
263 +11.
264 +111. Uplink FPORT=2, Real time sensor value
267 267  
268 -WSC1-L will send this uplink after Device Config uplink once join LoRaWAN network successfully. And it will periodically send this uplink. Default interval is 20 minutes and [[can be changed>>||anchor="H"]].
266 +WSC1-L will send this uplink after Device Config uplink once join LoRaWAN network successfully. And it will periodically send this uplink. Default interval is 20 minutes and [[can be changed>>path:#Uplink_Interval]].
269 269  
270 270  Uplink uses FPORT=2 and every 20 minutes send one uplink by default.
271 271  
... ... @@ -274,14 +274,16 @@
274 274  
275 275  |Sensor Segment 1|Sensor Segment 2|……|Sensor Segment n
276 276  
277 -**(% style="color:#4472C4" %) Uplink Payload**:
278 278  
276 +**Uplink Payload**:
277 +
279 279  |Type Code|Length (Bytes)|Measured Value
280 280  
281 -**(% style="color:#4472C4" %) Sensor Segment Define**:
282 282  
281 +**Sensor Segment Define**:
283 283  
284 284  
284 +
285 285  Sensor Type Table:
286 286  
287 287  |**Sensor Type**|**Type Code**|**Range**|**Length ( Bytes)**|**Example**
... ... @@ -367,6 +367,7 @@
367 367  (0x4EFE: No Sensor,0x4EFF: Value Error)
368 368  )))
369 369  
370 +
370 370  Below is an example payload:
371 371  
372 372  01 03 00 14 02 02 03 02 C9 03 03 02 11 90 04 02 00 0A 05 02 02 1C 06 02 00 FA 07 02 02 62 08 02 27 63 09 02 00 00 0A 02 00 23 0B 02 00 2D 0C 02 00 B3 0D 02 00 73
... ... @@ -388,7 +388,9 @@
388 388  
389 389  
390 390  
391 -=== 2.4.3 Decoder in TTN V3 ===
392 +1.
393 +11.
394 +111. Decoder in TTN V3
392 392  
393 393  In LoRaWAN platform, user only see HEX payload by default, user needs to use payload formatters to decode the payload to see human-readable value.
394 394  
... ... @@ -403,14 +403,15 @@
403 403  
404 404  
405 405  
406 -== 2.5 Show data on Application Server ==
409 +1.
410 +11. Show data on Application Server
407 407  
408 408  Application 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:
409 409  
410 410  
411 -**(% style="color:blue" %)Step 1**(%%): Be sure that your device is programmed and properly connected to the LoRaWAN network.
415 +**Step 1**: Be sure that your device is programmed and properly connected to the LoRaWAN network.
412 412  
413 -**(% style="color:blue" %)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.
417 +**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.
414 414  
415 415  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image014.png]]
416 416  
... ... @@ -428,13 +428,13 @@
428 428  
429 429  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image017.png]]
430 430  
435 +*
431 431  
437 +1. Configure WSC1-L via AT Command or LoRaWAN Downlink
432 432  
433 -= 3. Configure WSC1-L via AT Command or LoRaWAN Downlink =
434 -
435 435  Use can configure WSC1-L via AT Command or LoRaWAN Downlink.
436 436  
437 -* AT Command Connection: See [[FAQ>>||anchor="H"]].
441 +* AT Command Connection: See [[FAQ>>path:#AT_COMMAND]].
438 438  * LoRaWAN Downlink instruction for different platforms:
439 439  
440 440  [[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]]
... ... @@ -442,7 +442,7 @@
442 442  
443 443  There are two kinds of commands to configure WSC1-L, they are:
444 444  
445 -* **(% style="color:#4472C4" %)General Commands**.
449 +* **General Commands**.
446 446  
447 447  These commands are to configure:
448 448  
... ... @@ -449,23 +449,24 @@
449 449  * General system settings like: uplink interval.
450 450  * LoRaWAN protocol & radio related command.
451 451  
452 -They are same for all Dragino Device which support DLWS-005 LoRaWAN Stack((% style="color:red" %)Note~*~*)(%%). These commands can be found on the wiki:
456 +They are same for all Dragino Device which support DLWS-005 LoRaWAN Stack(Note~*~*). These commands can be found on the wiki:
453 453  
454 454  [[http:~~/~~/wiki.dragino.com/index.php?title=End_Device_Downlink_Command>>url:http://wiki.dragino.com/index.php?title=End_Device_Downlink_Command]]
455 455  
456 -(% style="color:red" %)Note~*~*: Please check early user manual if you don’t have v1.8.0 firmware.
460 +Note~*~*: Please check early user manual if you don’t have v1.8.0 firmware.
457 457  
458 458  
459 -* **(% style="color:#4472C4" %)Commands special design for WSC1-L**
463 +* **Commands special design for WSC1-L**
460 460  
461 461  These commands only valid for WSC1-L, as below:
462 462  
463 463  
464 -== 3.1 Set Transmit Interval Time ==
468 +1.
469 +11. Set Transmit Interval Time
465 465  
466 466  Feature: Change LoRaWAN End Node Transmit Interval.
467 467  
468 -**(% style="color:#037691" %)AT Command: AT+TDC**
473 +**AT Command: AT+TDC**
469 469  
470 470  |**Command Example**|**Function**|**Response**
471 471  |AT+TDC?|Show current transmit Interval|(((
... ... @@ -481,8 +481,9 @@
481 481  Set transmit interval to 60000ms = 60 seconds
482 482  )))
483 483  
484 -**(% style="color:#037691" %)Downlink Command: 0x01**
485 485  
490 +**Downlink Command: 0x01**
491 +
486 486  Format: Command Code (0x01) followed by 3 bytes time value.
487 487  
488 488  If the downlink payload=0100003C, it means set the END Node’s Transmit Interval to 0x00003C=60(S), while type code is 01.
... ... @@ -493,32 +493,32 @@
493 493  
494 494  
495 495  
502 +1.
503 +11. Set Emergency Mode
496 496  
497 -== 3.2 Set Emergency Mode ==
498 -
499 499  Feature: In emergency mode, WSC1-L will uplink data every 1 minute.
500 500  
501 501  
502 -**(% style="color:#037691" %)AT Command:**
508 +**AT Command:**
503 503  
504 504  |**Command Example**|**Function**|**Response**
505 505  |AT+ALARMMOD=1|Enter emergency mode. Uplink every 1 minute|OK
506 506  |AT+ALARMMOD=0|Exit emergency mode. Uplink base on TDC time|OK
507 507  
508 -**(% style="color:#037691" %)Downlink Command:**
509 509  
515 +**Downlink Command:**
516 +
510 510  * 0xE101     Same as: AT+ALARMMOD=1
511 511  * 0xE100     Same as: AT+ALARMMOD=0
512 512  
513 513  
514 514  
522 +1.
523 +11. Add or Delete RS485 Sensor
515 515  
516 -
517 -== 3.3 Add or Delete RS485 Sensor ==
518 -
519 519  Feature: User can add or delete 3^^rd^^ party sensor as long they are RS485/Modbus interface,baud rate support 9600.Maximum can add 4 sensors.
520 520  
521 -**(% style="color:#037691" %)AT Command: **
527 +**AT Command: **
522 522  
523 523  AT+DYSENSOR=Type_Code, Query_Length, Query_Command , Read_Length , Valid_Data ,has_CRC,timeout
524 524  
... ... @@ -531,6 +531,7 @@
531 531  * timeout: RS485 receive timeout (uint:ms). Device will close receive window after timeout
532 532  
533 533  
540 +
534 534  Example:
535 535  
536 536  User need to change external sensor use the type code as address code.
... ... @@ -541,6 +541,7 @@
541 541  |0xA1|0x03|0x00|0x00|0x00|0x01|0x9C|0xAA
542 542  | | | | | | | |
543 543  
551 +
544 544  The response frame of the sensor is as follows:
545 545  
546 546  |Address Code|Function Code|(% colspan="2" %)Data Length|(% colspan="2" %)Data|CRC Check Low|CRC Check High
... ... @@ -557,6 +557,7 @@
557 557  * has_CRC: 1
558 558  * timeout: 1500 (Fill in the test according to the actual situation)
559 559  
568 +
560 560  So the input command is:
561 561  
562 562  AT+DYSENSOR=A1,8,A103000000019CAA,8,24,1,1500
... ... @@ -570,6 +570,7 @@
570 570  
571 571  
572 572  
582 +
573 573  Related commands:
574 574  
575 575  AT+DYSENSOR=A1,0 –> Delete 3^^rd^^ party sensor A1.
... ... @@ -577,7 +577,7 @@
577 577  AT+DYSENSOR ~-~-> List All 3^^rd^^ Party Sensor. Like below:
578 578  
579 579  
580 -**(% style="color:#037691" %)Downlink Command:  **
590 +**Downlink Command: **
581 581  
582 582  **delete custom sensor A1:**
583 583  
... ... @@ -589,12 +589,11 @@
589 589  
590 590  
591 591  
602 +1.
603 +11. RS485 Test Command
592 592  
605 +**AT Command:**
593 593  
594 -== 3.4 RS485 Test Command ==
595 -
596 -**(% style="color:#037691" %)AT Command:**
597 -
598 598  |**Command Example**|**Function**|**Response**
599 599  |AT+RSWRITE=xxxxxx|(((
600 600  Send command to 485 sensor
... ... @@ -607,17 +607,19 @@
607 607  AT+RSWRITE=0103000001840A
608 608  
609 609  
610 -**(% style="color:#037691" %)Downlink Command:**
619 +**Downlink Command:**
611 611  
612 612  * 0xE20103000001840A     Same as: AT+RSWRITE=0103000001840A
613 613  
614 614  
615 615  
616 -== 3.5 RS485 response timeout ==
617 617  
626 +1.
627 +11. RS485 response timeout
628 +
618 618  Feature: Set or get extended time to receive 485 sensor data.
619 619  
620 -**(% style="color:#037691" %)AT Command:**
631 +**AT Command:**
621 621  
622 622  |**Command Example**|**Function**|**Response**
623 623  |AT+DTR=1000|(((
... ... @@ -626,8 +626,9 @@
626 626  Range : 0~~10000
627 627  )))|OK
628 628  
629 -**(% style="color:#037691" %)Downlink Command:**
630 630  
641 +**Downlink Command:**
642 +
631 631  Format: Command Code (0xE0) followed by 3 bytes time value.
632 632  
633 633  If the downlink payload=E0000005, it means set the END Node’s Transmit Interval to 0x000005=5(S), while type code is E0.
... ... @@ -638,12 +638,13 @@
638 638  
639 639  
640 640  
653 +1.
654 +11. Set Sensor Type
641 641  
642 -== 3.6 Set Sensor Type ==
643 643  
644 644  Feature: Set sensor in used. If there are 6 sensors, user can set to only send 5 sensors values.
645 645  
646 -See [[definition>>||anchor="H"]] for the sensor type.
659 +See [[definition>>path:#Sensor_types]] for the sensor type.
647 647  
648 648  
649 649  |(% rowspan="2" %)Byte3|Bit23|Bit22|Bit21|Bit20|Bit19|Bit18|Bit17|Bit16
... ... @@ -669,11 +669,13 @@
669 669  Direction
670 670  )))|Wind Speed|BAT
671 671  
672 -**(% style="color:#037691" %)AT Command:**
673 673  
686 +**AT Command:**
687 +
674 674  |**Command Example**|**Function**|**Response**
675 675  |AT+STYPE=80221|Set sensor types|OK
676 676  
691 +
677 677  Eg: The setting command **AT+STYPE=802212** means:
678 678  
679 679  |(% rowspan="2" %)Byte3|Bit23|Bit22|Bit21|Bit20|Bit19|Bit18|Bit17|Bit16
... ... @@ -686,12 +686,13 @@
686 686  So wsc1-L will upload the following data: Custom Sensor A1, Rain Gauge,CO2,BAT.
687 687  
688 688  
689 -**(% style="color:#037691" %)Downlink Command:**
704 +**Downlink Command:**
690 690  
691 691  * 0xE400802212     Same as: AT+STYPE=80221
692 692  
693 -(% style="color:red" %)**Note:**
694 694  
709 +Note:
710 +
695 695  ~1. The sensor type will not be saved to flash, and the value will be updated every time the sensor is restarted or rescanned
696 696  
697 697  
... ... @@ -698,20 +698,21 @@
698 698  
699 699  
700 700  
701 -= 4. Power consumption and battery =
717 +1. Power consumption and battery
718 +11. Total Power Consumption
702 702  
703 -== 4.1 Total Power Consumption ==
704 -
705 705  Dragino Weather Station serial products include the main process unit ( WSC1-L ) and various sensors. The total power consumption equal total power of all above units. The power consumption for main process unit WSC1-L is 18ma @ 12v. and the power consumption of each sensor can be found on the Sensors chapter.
706 706  
707 707  
708 -== 4.2 Reduce power consumption ==
723 +1.
724 +11. Reduce power consumption
709 709  
710 710  The main process unit WSC1-L is set to LoRaWAN Class C by default. If user want to reduce the power consumption of this unit, user can set it to run in Class A. In Class A mode, WSC1-L will not be to get real-time downlink command from IoT Server.
711 711  
712 712  
713 713  
714 -== 4.3 Battery ==
730 +1.
731 +11. Battery
715 715  
716 716  All sensors are only power by external power source. If external power source is off. All sensor won’t work.
717 717  
... ... @@ -720,10 +720,13 @@
720 720  
721 721  
722 722  
723 -= 5. Main Process Unit WSC1-L =
724 724  
725 -== 5.1 Features ==
726 726  
742 +
743 +
744 +1. Main Process Unit WSC1-L
745 +11. Features
746 +
727 727  * Wall Attachable.
728 728  * LoRaWAN v1.0.3 Class A protocol.
729 729  * RS485 / Modbus protocol
... ... @@ -739,24 +739,27 @@
739 739  
740 740  
741 741  
762 +1.
763 +11. Power Consumption
742 742  
743 -== 5.2 Power Consumption ==
744 -
745 745  WSC1-L (without external sensor): Idle: 4mA, Transmit: max 40mA
746 746  
747 747  
748 748  
749 -== 5.3 Storage & Operation Temperature ==
769 +1.
770 +11. Storage & Operation Temperature
750 750  
751 751  -20°C to +60°C
752 752  
753 753  
754 -== 5.4 Pin Mapping ==
775 +1.
776 +11. Pin Mapping
755 755  
756 756  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image004.png]]
757 757  
758 758  
759 -== 5.5 Mechanical ==
781 +1.
782 +11. Mechanical
760 760  
761 761  Refer LSn50v2 enclosure drawing in: [[https:~~/~~/www.dragino.com/downloads/index.php?dir=LSN50-LoRaST/Mechanical_Drawing/>>url:https://www.dragino.com/downloads/index.php?dir=LSN50-LoRaST/Mechanical_Drawing/]]
762 762  
... ... @@ -763,7 +763,8 @@
763 763  
764 764  
765 765  
766 -== 5.6 Connect to RS485 Sensors ==
789 +1.
790 +11. Connect to RS485 Sensors
767 767  
768 768  WSC1-L includes a RS485 converter PCB. Which help it easy to connect multiply RS485 sensors. Below is the photo for reference.
769 769  
... ... @@ -779,10 +779,9 @@
779 779  
780 780  
781 781  
782 -= 6. Weather Sensors =
806 +1. Weather Sensors
807 +11. Rain Gauge ~-~- WSS-01
783 783  
784 -== 6.1 Rain Gauge ~-~- WSS-01 ==
785 -
786 786  WSS-01 RS485 Rain Gauge is used in meteorology and hydrology to gather and measure the amount of liquid precipitation (mainly rainfall) over an area.
787 787  
788 788  
... ... @@ -807,7 +807,9 @@
807 807  
808 808  
809 809  
810 -=== 6.1.1 Feature ===
833 +*
834 +*1.
835 +*11. Feature
811 811  * RS485 Rain Gauge
812 812  * Small dimension, easy to install
813 813  * Vents under funnel, avoid leaf or other things to avoid rain flow.
... ... @@ -815,10 +815,9 @@
815 815  * Horizontal adjustable.
816 816  
817 817  
818 -
819 -
820 -
821 -=== 6.1.2 Specification ===
843 +*
844 +*1.
845 +*11. Specification
822 822  * Resolution: 0.2mm
823 823  * Accuracy: ±3%
824 824  * Rainfall strength: 0mm~4mm/min (max 8mm/min)
... ... @@ -831,13 +831,14 @@
831 831  
832 832  
833 833  
858 +1.
859 +11.
860 +111. Dimension
834 834  
835 -=== 6.1.3 Dimension ===
836 -
837 837   [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image019.jpg||alt="c2d3aee592ccc873bea6dd891451df2"]]
838 838  
839 -1.
840 -11.
864 +1.
865 +11.
841 841  111. Pin Mapping
842 842  
843 843  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image020.png]]
... ... @@ -845,7 +845,9 @@
845 845  
846 846  
847 847  
848 -=== 6.1.5 Installation Notice ===
873 +1.
874 +11.
875 +111. Installation Notice
849 849  
850 850  Do not power on while connect the cables. Double check the wiring before power on.
851 851  
... ... @@ -852,14 +852,14 @@
852 852  Installation Photo as reference:
853 853  
854 854  
855 -**(% style="color:#4472C4" %) Install on Ground:**
882 +**Install on Ground:**
856 856  
857 857  WSS-01 Rain Gauge include screws so can install in ground directly .
858 858  
859 859  
860 -**(% style="color:#4472C4" %) Install on pole:**
887 +**Install on pole:**
861 861  
862 -If user want to install on pole, they can purchase the **(% style="color:#4472C4" %) WS-K2 :  Bracket Kit for Pole installation**(%%), and install as below:
889 +If user want to install on pole, they can purchase the **WS-K2 :  Bracket Kit for Pole installation**, and install as below:
863 863  
864 864  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image021.png]]
865 865  
... ... @@ -870,11 +870,12 @@
870 870  
871 871  WSSC-K2 dimension document, please see:
872 872  
873 -https:~/~/www.dragino.com/downloads/index.php?dir=LoRa_End_Node/Weather_Station/ 
900 +https:~/~/www.dragino.com/downloads/index.php?dir=LoRa_End_Node/Weather_Station/
874 874  
875 875  
876 876  
877 -== 6.2 Wind Speed/Direction ~-~- WSS-02 ==
904 +1.
905 +11. Wind Speed/Direction ~-~- WSS-02
878 878  
879 879  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image023.png]]
880 880  
... ... @@ -889,15 +889,16 @@
889 889  processor WSC1-L can detect and upload the wind speed and direction to the IoT Server via wireless LoRaWAN protocol.
890 890  
891 891  
892 -=== 6.2.1 Feature ===
920 +*
921 +*1.
922 +*11. Feature
893 893  * RS485 wind speed / direction sensor
894 894  * PC enclosure, resist corrosion
895 895  
896 896  
897 -
898 -
899 -
900 -=== 6.2.2 Specification ===
927 +*
928 +*1.
929 +*11. Specification
901 901  * Wind speed range: 0 ~~ 30m/s, (always show 30m/s for higher speed)
902 902  * Wind direction range: 0 ~~ 360°
903 903  * Start wind speed: ≤0.3m/s
... ... @@ -910,25 +910,31 @@
910 910  * Cable Length: 2 meters
911 911  
912 912  
942 +1.
943 +11.
944 +111. Dimension
913 913  
914 914  
915 -
916 -=== 6.2.3 Dimension ===
917 -
918 918  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image024.jpg]][[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image025.jpg]]
919 919  
920 920  
921 -=== 6.2.4 Pin Mapping ===
950 +1.
951 +11.
952 +111. Pin Mapping
922 922  
923 923  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image020.png]]
924 924  
925 925  
926 -=== 6.2.4 Angle Mapping ===
957 +1.
958 +11.
959 +111. Angle Mapping
927 927  
928 928  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image026.png]]
929 929  
930 930  
931 -=== 6.2.5 Installation Notice ===
964 +1.
965 +11.
966 +111. Installation Notice
932 932  
933 933  Do not power on while connect the cables. Double check the wiring before power on.
934 934  
... ... @@ -949,7 +949,8 @@
949 949  
950 950  
951 951  
952 -== 6.3 CO2/PM2.5/PM10 ~-~- WSS-03 ==
987 +1.
988 +11. CO2/PM2.5/PM10 ~-~- WSS-03
953 953  
954 954  WSS-03 is a RS485 Air Quality sensor. It can monitor CO2, PM2.5 and PM10 at the same time.
955 955  
... ... @@ -964,16 +964,17 @@
964 964  processor WSC1-L can detect and upload the environment CO2, PM2.5 and PM10 to the IoT Server via wireless LoRaWAN protocol.
965 965  
966 966  
967 -=== 6.3.1 Feature ===
1003 +*
1004 +*1.
1005 +*11. Feature
968 968  * RS485 CO2, PM2.5, PM10 sensor
969 969  * NDIR to measure CO2 with Internal Temperature Compensation
970 970  * Laser Beam Scattering to PM2.5 and PM10
971 971  
972 972  
973 -
974 -
975 -
976 -=== 6.3.2 Specification ===
1011 +*
1012 +*1.
1013 +*11. Specification
977 977  * CO2 Range: 0~5000ppm, accuracy: ±3%F•S(25℃)
978 978  * CO2 resolution: 1ppm
979 979  * PM2.5/PM10 Range: 0~1000μg/m3 , accuracy ±3%F•S(25℃)
... ... @@ -988,22 +988,22 @@
988 988  ** PM2.5/PM10: 15~80%RH (no dewing)
989 989  ** CO2: 0~95%RH
990 990  * Power Consumption: 50mA@ 12v.
1028 +*1.
1029 +*11. Dimension
991 991  
992 -
993 -
994 -
995 -
996 -=== 6.3.3 Dimension ===
997 -
998 998  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image028.png]]
999 999  
1000 1000  
1001 -=== 6.3.4 Pin Mapping ===
1034 +1.
1035 +11.
1036 +111. Pin Mapping
1002 1002  
1003 1003  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image020.png]]
1004 1004  
1005 1005  
1006 -=== 6.3.5 Installation Notice ===
1041 +1.
1042 +11.
1043 +111. Installation Notice
1007 1007  
1008 1008  Do not power on while connect the cables. Double check the wiring before power on.
1009 1009  
... ... @@ -1016,8 +1016,10 @@
1016 1016  
1017 1017  
1018 1018  
1019 -== 6.4 Rain/Snow Detect ~-~- WSS-04 ==
1056 +1.
1057 +11. Rain/Snow Detect ~-~- WSS-04
1020 1020  
1059 +
1021 1021  WSS-04 is a RS485 rain / snow detect sensor. It can monitor Rain or Snow event.
1022 1022  
1023 1023  
... ... @@ -1032,16 +1032,17 @@
1032 1032  
1033 1033  
1034 1034  
1035 -=== 6.4.1 Feature ===
1074 +*
1075 +*1.
1076 +*11. Feature
1036 1036  * RS485 Rain/Snow detect sensor
1037 1037  * Surface heating to dry
1038 1038  * grid electrode uses Electroless Nickel/Immersion Gold design for resist corrosion
1039 1039  
1040 1040  
1041 -
1042 -
1043 -
1044 -=== 6.4.2 Specification ===
1082 +*
1083 +*1.
1084 +*11. Specification
1045 1045  * Detect if there is rain or snow
1046 1046  * Input Power: DC 12 ~~ 24v
1047 1047  * Interface: RS485
... ... @@ -1052,20 +1052,25 @@
1052 1052  ** heating: 94ma @ 12v.
1053 1053  
1054 1054  
1095 +1.
1096 +11.
1097 +111. Dimension
1055 1055  
1056 1056  
1057 -
1058 -=== 6.4.3 Dimension ===
1059 -
1060 1060  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image031.png]]
1061 1061  
1062 1062  
1063 -=== 6.4.4 Pin Mapping ===
1103 +1.
1104 +11.
1105 +111. Pin Mapping
1064 1064  
1107 +
1065 1065  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image020.png]]
1066 1066  
1067 1067  
1068 -=== 6.4.5 Installation Notice ===
1111 +1.
1112 +11.
1113 +111. Installation Notice
1069 1069  
1070 1070  Do not power on while connect the cables. Double check the wiring before power on.
1071 1071  
... ... @@ -1079,7 +1079,9 @@
1079 1079  
1080 1080  
1081 1081  
1082 -=== 6.4.6 Heating === 
1127 +1.
1128 +11.
1129 +111. Heating
1083 1083  
1084 1084  WSS-04 supports auto-heat feature. When the temperature is below the heat start temperature 15℃, WSS-04 starts to heat and stop at stop temperature (default is 25℃).
1085 1085  
... ... @@ -1087,8 +1087,10 @@
1087 1087  
1088 1088  
1089 1089  
1090 -== 6.5 Temperature, Humidity, Illuminance, Pressure ~-~- WSS-05 ==
1137 +1.
1138 +11. Temperature, Humidity, Illuminance, Pressure ~-~- WSS-05
1091 1091  
1140 +
1092 1092  WSS-05 is a 4 in 1 RS485 sensor which can monitor Temperature, Humidity, Illuminance and Pressure at the same time.
1093 1093  
1094 1094  
... ... @@ -1099,16 +1099,15 @@
1099 1099  processor WSC1-L can detect and upload environment Temperature, Humidity, Illuminance, Pressure to the IoT Server via wireless LoRaWAN protocol.
1100 1100  
1101 1101  
1102 -=== 6.5.1 Feature ===
1103 -
1151 +*
1152 +*1.
1153 +*11. Feature
1104 1104  * RS485 Temperature, Humidity, Illuminance, Pressure sensor
1105 1105  
1106 1106  
1107 -
1108 -
1109 -
1110 -=== 6.5.2 Specification ===
1111 -
1157 +*
1158 +*1.
1159 +*11. Specification
1112 1112  * Input Power: DC 12 ~~ 24v
1113 1113  * Interface: RS485
1114 1114  * Temperature Sensor Spec:
... ... @@ -1133,20 +1133,24 @@
1133 1133  
1134 1134  
1135 1135  
1184 +1.
1185 +11.
1186 +111. Dimension
1136 1136  
1137 1137  
1138 -=== 6.5.3 Dimension ===
1139 -
1140 1140  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image034.jpg]]
1141 1141  
1142 1142  
1143 -=== 6.5.4 Pin Mapping ===
1192 +1.
1193 +11.
1194 +111. Pin Mapping
1144 1144  
1145 1145  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image020.png]]
1146 1146  
1198 +1.
1199 +11.
1200 +111. Installation Notice
1147 1147  
1148 -=== 6.5.5 Installation Notice ===
1149 -
1150 1150  Do not power on while connect the cables. Double check the wiring before power on.
1151 1151  
1152 1152  
... ... @@ -1157,8 +1157,10 @@
1157 1157  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image030.png]]
1158 1158  
1159 1159  
1160 -== 6.6 Total Solar Radiation sensor ~-~- WSS-06 ==
1212 +1.
1213 +11. Total Solar Radiation sensor ~-~- WSS-06
1161 1161  
1215 +
1162 1162  WSS-06 is Total Radiation Sensor can be used to measure the total solar radiation in the spectral range of 0.3 to 3 μm (300 to 3000 nm). If the sensor face is down, the reflected radiation can be measured, and the shading ring can also be used to measure the scattered radiation.
1163 1163  
1164 1164  
... ... @@ -1174,18 +1174,17 @@
1174 1174  
1175 1175  
1176 1176  
1177 -=== 6.6.1 Feature ===
1178 -
1231 +*
1232 +*1.
1233 +*11. Feature
1179 1179  * RS485 Total Solar Radiation sensor
1180 1180  * Measure Total Radiation between 0.3~3μm(300~3000nm)
1181 1181  * Measure Reflected Radiation if sense area towards ground.
1182 1182  
1183 1183  
1184 -
1185 -
1186 -
1187 -=== 6.6.2 Specification ===
1188 -
1239 +*
1240 +*1.
1241 +*11. Specification
1189 1189  * Input Power: DC 5 ~~ 24v
1190 1190  * Interface: RS485
1191 1191  * Detect spectrum: 0.3~3μm(300~3000nm)
... ... @@ -1201,19 +1201,23 @@
1201 1201  
1202 1202  
1203 1203  
1257 +1.
1258 +11.
1259 +111. Dimension
1204 1204  
1205 -
1206 -=== 6.6.3 Dimension ===
1207 -
1208 1208  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image036.png]]
1209 1209  
1210 1210  
1211 -=== 6.6.4 Pin Mapping ===
1264 +1.
1265 +11.
1266 +111. Pin Mapping
1212 1212  
1213 1213  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image020.png]]
1214 1214  
1215 1215  
1216 -=== 6.6.5 Installation Notice ===
1271 +1.
1272 +11.
1273 +111. Installation Notice
1217 1217  
1218 1218  Do not power on while connect the cables. Double check the wiring before power on.
1219 1219  
... ... @@ -1221,8 +1221,9 @@
1221 1221  
1222 1222  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image038.png]]
1223 1223  
1281 +1.
1282 +11. PAR (Photosynthetically Available Radiation) ~-~- WSS-07
1224 1224  
1225 -== 6.7 PAR (Photosynthetically Available Radiation) ~-~- WSS-07 ==
1226 1226  
1227 1227  WSS-07 photosynthetically active radiation sensor is mainly used to measure the photosynthetically active radiation of natural light in the wavelength range of 400-700nm.
1228 1228  
... ... @@ -1239,7 +1239,9 @@
1239 1239  processor WSC1-L can detect and upload Photosynthetically Available Radiation to the IoT Server via wireless LoRaWAN protocol.
1240 1240  
1241 1241  
1242 -=== 6.7.1 Feature ===
1300 +1.
1301 +11.
1302 +111. Feature
1243 1243  
1244 1244  PAR (Photosynthetically Available Radiation) sensor measure 400 ~~ 700nm wavelength nature light’s Photosynthetically Available Radiation.
1245 1245  
... ... @@ -1247,8 +1247,9 @@
1247 1247  When nature light shine on the sense area, it will generate a signal base on the incidence radiation strength.
1248 1248  
1249 1249  
1250 -=== 6.7.2 Specification ===
1251 -
1310 +*
1311 +*1.
1312 +*11. Specification
1252 1252  * Input Power: DC 5 ~~ 24v
1253 1253  * Interface: RS485
1254 1254  * Response Spectrum: 400~700nm
... ... @@ -1262,19 +1262,23 @@
1262 1262  
1263 1263  
1264 1264  
1326 +1.
1327 +11.
1328 +111. Dimension
1265 1265  
1266 1266  
1267 -=== 6.7.3 Dimension ===
1268 -
1269 1269  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image036.png]]
1270 1270  
1333 +1.
1334 +11.
1335 +111. Pin Mapping
1271 1271  
1272 -=== 6.7.4 Pin Mapping ===
1273 -
1274 1274  [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image020.png]]
1275 1275  
1276 1276  
1277 -=== 6.7.5 Installation Notice ===
1340 +1.
1341 +11.
1342 +111. Installation Notice
1278 1278  
1279 1279  Do not power on while connect the cables. Double check the wiring before power on.
1280 1280  
... ... @@ -1321,13 +1321,12 @@
1321 1321  Yes, connect the sensor to RS485 bus and see instruction: [[add sensors.>>path:#Add_sensor]]
1322 1322  
1323 1323  
1324 -= 8. Trouble Shooting =
1389 += 8. Trouble Shooting =  
1325 1325  
1326 1326  
1327 1327  
1328 1328  
1329 1329  
1330 -
1331 1331  = 9. Order Info =
1332 1332  
1333 1333  
... ... @@ -1346,6 +1346,7 @@
1346 1346  * **IN865**: LoRaWAN IN865 band
1347 1347  * **CN470**: LoRaWAN CN470 band
1348 1348  
1413 +
1349 1349  == 9.2 Sensors ==
1350 1350  
1351 1351  |**Sensor Model**|**Part Number**
... ... @@ -1359,6 +1359,7 @@
1359 1359  |**PAR (Photosynthetically Available Radiation)**|WSS-07
1360 1360  
1361 1361  
1427 +
1362 1362  = 10. Support =
1363 1363  
1364 1364  * 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.
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