Changes for page WSC1-L-Dragino LoRaWAN Weather Station User Manual
Last modified by Xiaoling on 2025/04/25 09:08
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... ... @@ -3,8 +3,9 @@ 3 3 4 4 5 5 6 - [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image001.png]]6 +**Table of Contents:** 7 7 8 +{{toc/}} 8 8 9 9 10 10 ... ... @@ -19,16 +19,33 @@ 19 19 == 1.1 Overview == 20 20 21 21 22 -Dragino LoRaWAN weather station series products are designed for measuring atmospheric conditions to provide information for weather forecasts and to study the weather and climate. They consist of a main process device (WSC1-L) and various sensors. 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**. 25 +))) 23 23 27 +((( 28 + 29 +))) 24 24 25 -The sensors include various type such as: 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. 31 +((( 32 +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. 33 +))) 26 26 35 +((( 36 + 37 +))) 27 27 28 -Main process device WSC1-L is an outdoor LoRaWAN RS485 end node. It is powered by external 12v solar power and have a 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. 39 +((( 40 +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. 41 +))) 29 29 43 +((( 44 + 45 +))) 30 30 31 -WSC1-L is full compatible with LoRaWAN Class C protocol, it can work with standard LoRaWAN gateway. 47 +((( 48 +WSC1-L is full compatible with(% style="color:#4472c4" %)** LoRaWAN Class C protocol**(%%), it can work with standard LoRaWAN gateway. 49 +))) 32 32 33 33 34 34 ... ... @@ -37,11 +37,11 @@ 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]]58 +Below is an installation example for the weather station. Field installation example can be found at [[Appendix I: Field Installation Photo.>>||anchor="H"]] 41 41 42 42 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image002.png]] 43 43 44 -**Wiring:** 62 +(% style="color:blue" %)** Wiring:** 45 45 46 46 ~1. WSC1-L and sensors all powered by solar power via MPPT 47 47 ... ... @@ -57,13 +57,13 @@ 57 57 58 58 59 59 60 -Notice 1: 78 +(% style="color:red" %) ** Notice 1:** 61 61 62 62 * All weather sensors and WSC1-L are powered by MPPT solar recharge controller. MPPT is connected to solar panel and storage battery. 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 -Notice 2: 84 +(% style="color:red" %)** Notice 2:** 67 67 68 68 Due to shipment and importation limitation, user is better to purchase below parts locally: 69 69 ... ... @@ -73,9 +73,6 @@ 73 73 * Mounting Kit includes pole and mast assembly. Each weather sensor has it’s own mounting assembly, user can check the sensor section in this manual. 74 74 * Cabinet. 75 75 76 - 77 - 78 - 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. ... ... @@ -91,8 +91,6 @@ 91 91 1. WSC1-L will auto scan available weather sensors when power on or reboot. 92 92 1. User can send a downlink command( 增加下发命令的连接) to WSC1-L to do a re-scan on the available sensors. 93 93 94 - 95 - 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. ... ... @@ -155,10 +155,6 @@ 155 155 * Valid Sensor Value: Use FPORT=2 156 156 * Other control command: Use FPORT other than 2. 157 157 158 - 159 - 160 - 161 - 162 162 === 2.4.1 Uplink FPORT === 163 163 164 164 5, Device Status === ... ... @@ -178,17 +178,17 @@ 178 178 179 179 180 180 181 -==== (% style="color:#037691" %)**Sensor Model:** ==== 190 +==== (% style="color:#037691" %)**Sensor Model:**(%%) ==== 182 182 183 183 For WSC1-L, this value is 0x0D. 184 184 185 185 186 -==== (% style="color:#037691" %)**Firmware Version:** ==== 195 +==== (% style="color:#037691" %)**Firmware Version:**(%%) ==== 187 187 188 188 0x0100, Means: v1.0.0 version. 189 189 190 190 191 -==== (% style="color:#037691" %)**Frequency Band:** ==== 200 +==== (% style="color:#037691" %)**Frequency Band:**(%%) ==== 192 192 193 193 *0x01: EU868 194 194 ... ... @@ -211,12 +211,12 @@ 211 211 *0x0a: AS923-3 212 212 213 213 214 -==== (% style="color:#037691" %)**Sub-Band:** ==== 223 +==== (% style="color:#037691" %)**Sub-Band:**(%%) ==== 215 215 216 216 value 0x00 ~~ 0x08(only for CN470, AU915,US915. Others are0x00) 217 217 218 218 219 -==== (% style="color:#037691" %)**BAT:** ==== 228 +==== (% style="color:#037691" %)**BAT:**(%%) ==== 220 220 221 221 shows the battery voltage for WSC1-L MCU. 222 222 ... ... @@ -223,7 +223,7 @@ 223 223 Ex1: 0x0BD6/1000 = 3.03 V 224 224 225 225 226 -==== (% style="color:#037691" %)**Weather Sensor Types:** ==== 235 +==== (% style="color:#037691" %)**Weather Sensor Types:**(%%) ==== 227 227 228 228 |Byte3|Byte2|Byte1 229 229 ... ... @@ -263,12 +263,12 @@ 263 263 264 264 265 265 266 -1. 267 -11. 268 -111. Uplink FPORT=2, Real time sensor value 275 +=== 2.4.2 Uplink FPORT === 269 269 270 - WSC1-Lwill send this uplinkafter Device Config uplinkonce join LoRaWAN network successfully. Andit will periodicallysend thisuplink. Default intervalis 20 minutesand [[can be changed>>path:#Uplink_Interval]].277 +2, Real time sensor value === 271 271 279 +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"]]. 280 + 272 272 Uplink uses FPORT=2 and every 20 minutes send one uplink by default. 273 273 274 274 ... ... @@ -276,11 +276,11 @@ 276 276 277 277 |Sensor Segment 1|Sensor Segment 2|……|Sensor Segment n 278 278 279 -**Uplink Payload**: 288 +(% style="color:#4472c4" %)** Uplink Payload**: 280 280 281 281 |Type Code|Length (Bytes)|Measured Value 282 282 283 -**Sensor Segment Define**: 292 +(% style="color:#4472c4" %)** Sensor Segment Define**: 284 284 285 285 286 286 ... ... @@ -390,9 +390,7 @@ 390 390 391 391 392 392 393 -1. 394 -11. 395 -111. Decoder in TTN V3 402 +=== 2.4.3 Decoder in TTN V3 === 396 396 397 397 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. 398 398 ... ... @@ -407,15 +407,14 @@ 407 407 408 408 409 409 410 -1. 411 -11. Show data on Application Server 417 +== 2.5 Show data on Application Server == 412 412 413 413 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: 414 414 415 415 416 -**Step 1**: Be sure that your device is programmed and properly connected to the LoRaWAN network. 422 +(% style="color:blue" %)**Step 1**(%%): Be sure that your device is programmed and properly connected to the LoRaWAN network. 417 417 418 -**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. 424 +(% 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. 419 419 420 420 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image014.png]] 421 421 ... ... @@ -433,13 +433,13 @@ 433 433 434 434 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image017.png]] 435 435 436 -* 437 437 438 -1. Configure WSC1-L via AT Command or LoRaWAN Downlink 439 439 444 += 3. Configure WSC1-L via AT Command or LoRaWAN Downlink = 445 + 440 440 Use can configure WSC1-L via AT Command or LoRaWAN Downlink. 441 441 442 -* AT Command Connection: See [[FAQ>> path:#AT_COMMAND]].448 +* AT Command Connection: See [[FAQ>>||anchor="H"]]. 443 443 * LoRaWAN Downlink instruction for different platforms: 444 444 445 445 [[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]] ... ... @@ -447,7 +447,7 @@ 447 447 448 448 There are two kinds of commands to configure WSC1-L, they are: 449 449 450 -* **General Commands**. 456 +* (% style="color:#4472c4" %)**General Commands**. 451 451 452 452 These commands are to configure: 453 453 ... ... @@ -454,24 +454,23 @@ 454 454 * General system settings like: uplink interval. 455 455 * LoRaWAN protocol & radio related command. 456 456 457 -They are same for all Dragino Device which support DLWS-005 LoRaWAN Stack(Note~*~*). These commands can be found on the wiki: 463 +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: 458 458 459 459 [[http:~~/~~/wiki.dragino.com/index.php?title=End_Device_Downlink_Command>>url:http://wiki.dragino.com/index.php?title=End_Device_Downlink_Command]] 460 460 461 -Note~*~*: Please check early user manual if you don’t have v1.8.0 firmware. 467 +(% style="color:red" %)Note~*~*: Please check early user manual if you don’t have v1.8.0 firmware. 462 462 463 463 464 -* **Commands special design for WSC1-L** 470 +* (% style="color:#4472c4" %)**Commands special design for WSC1-L** 465 465 466 466 These commands only valid for WSC1-L, as below: 467 467 468 468 469 -1. 470 -11. Set Transmit Interval Time 475 +== 3.1 Set Transmit Interval Time == 471 471 472 472 Feature: Change LoRaWAN End Node Transmit Interval. 473 473 474 -**AT Command: AT+TDC** 479 +(% style="color:#037691" %)**AT Command: AT+TDC** 475 475 476 476 |**Command Example**|**Function**|**Response** 477 477 |AT+TDC?|Show current transmit Interval|((( ... ... @@ -487,7 +487,7 @@ 487 487 Set transmit interval to 60000ms = 60 seconds 488 488 ))) 489 489 490 -**Downlink Command: 0x01** 495 +(% style="color:#037691" %)**Downlink Command: 0x01** 491 491 492 492 Format: Command Code (0x01) followed by 3 bytes time value. 493 493 ... ... @@ -497,31 +497,28 @@ 497 497 * Example 2: Downlink Payload: 0100003C ~/~/ Set Transmit Interval (TDC) = 60 seconds 498 498 499 499 505 +== 3.2 Set Emergency Mode == 500 500 501 -1. 502 -11. Set Emergency Mode 503 - 504 504 Feature: In emergency mode, WSC1-L will uplink data every 1 minute. 505 505 506 506 507 -**AT Command:** 510 +(% style="color:#037691" %)**AT Command:** 508 508 509 509 |**Command Example**|**Function**|**Response** 510 510 |AT+ALARMMOD=1|Enter emergency mode. Uplink every 1 minute|OK 511 511 |AT+ALARMMOD=0|Exit emergency mode. Uplink base on TDC time|OK 512 512 513 -**Downlink Command:** 516 +(% style="color:#037691" %)**Downlink Command:** 514 514 515 515 * 0xE101 Same as: AT+ALARMMOD=1 516 516 * 0xE100 Same as: AT+ALARMMOD=0 517 517 518 518 519 -1. 520 -11. Add or Delete RS485 Sensor 522 +== 3.3 Add or Delete RS485 Sensor == 521 521 522 522 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. 523 523 524 -**AT Command: ** 526 +(% style="color:#037691" %)**AT Command: ** 525 525 526 526 AT+DYSENSOR=Type_Code, Query_Length, Query_Command , Read_Length , Valid_Data ,has_CRC,timeout 527 527 ... ... @@ -533,7 +533,6 @@ 533 533 * has_CRC: RS485 Response crc check (0: no verification required 1: verification required). If CRC=1 and CRC error, valid data will be set to 0. 534 534 * timeout: RS485 receive timeout (uint:ms). Device will close receive window after timeout 535 535 536 - 537 537 Example: 538 538 539 539 User need to change external sensor use the type code as address code. ... ... @@ -570,9 +570,6 @@ 570 570 |Type Code|Length (Bytes)|Measured Value 571 571 |A1|2|0x000A 572 572 573 - 574 - 575 - 576 576 Related commands: 577 577 578 578 AT+DYSENSOR=A1,0 –> Delete 3^^rd^^ party sensor A1. ... ... @@ -580,7 +580,7 @@ 580 580 AT+DYSENSOR ~-~-> List All 3^^rd^^ Party Sensor. Like below: 581 581 582 582 583 -**Downlink Command: ** 581 +(% style="color:#037691" %)**Downlink Command: ** 584 584 585 585 **delete custom sensor A1:** 586 586 ... ... @@ -591,10 +591,9 @@ 591 591 * 0xE5FF 592 592 593 593 594 -1. 595 -11. RS485 Test Command 592 +== 3.4 RS485 Test Command == 596 596 597 -**AT Command:** 594 +(% style="color:#037691" %)**AT Command:** 598 598 599 599 |**Command Example**|**Function**|**Response** 600 600 |AT+RSWRITE=xxxxxx|((( ... ... @@ -608,18 +608,16 @@ 608 608 AT+RSWRITE=0103000001840A 609 609 610 610 611 -**Downlink Command:** 608 +(% style="color:#037691" %)**Downlink Command:** 612 612 613 613 * 0xE20103000001840A Same as: AT+RSWRITE=0103000001840A 614 614 615 615 613 +== 3.5 RS485 response timeout == 616 616 617 -1. 618 -11. RS485 response timeout 619 - 620 620 Feature: Set or get extended time to receive 485 sensor data. 621 621 622 -**AT Command:** 617 +(% style="color:#037691" %)**AT Command:** 623 623 624 624 |**Command Example**|**Function**|**Response** 625 625 |AT+DTR=1000|((( ... ... @@ -628,7 +628,7 @@ 628 628 Range : 0~~10000 629 629 )))|OK 630 630 631 -**Downlink Command:** 626 +(% style="color:#037691" %)**Downlink Command:** 632 632 633 633 Format: Command Code (0xE0) followed by 3 bytes time value. 634 634 ... ... @@ -638,13 +638,11 @@ 638 638 * Example 2: Downlink Payload: E000000A ~/~/ Set Transmit Interval (DTR) = 10 seconds 639 639 640 640 636 +== 3.6 Set Sensor Type == 641 641 642 -1. 643 -11. Set Sensor Type 644 - 645 645 Feature: Set sensor in used. If there are 6 sensors, user can set to only send 5 sensors values. 646 646 647 -See [[definition>> path:#Sensor_types]] for the sensor type.640 +See [[definition>>||anchor="H"]] for the sensor type. 648 648 649 649 650 650 |(% rowspan="2" %)Byte3|Bit23|Bit22|Bit21|Bit20|Bit19|Bit18|Bit17|Bit16 ... ... @@ -670,7 +670,7 @@ 670 670 Direction 671 671 )))|Wind Speed|BAT 672 672 673 -**AT Command:** 666 +(% style="color:#037691" %)**AT Command:** 674 674 675 675 |**Command Example**|**Function**|**Response** 676 676 |AT+STYPE=80221|Set sensor types|OK ... ... @@ -687,11 +687,11 @@ 687 687 So wsc1-L will upload the following data: Custom Sensor A1, Rain Gauge,CO2,BAT. 688 688 689 689 690 -**Downlink Command:** 683 +(% style="color:#037691" %)**Downlink Command:** 691 691 692 692 * 0xE400802212 Same as: AT+STYPE=80221 693 693 694 -Note: 687 +(% style="color:red" %)**Note:** 695 695 696 696 ~1. The sensor type will not be saved to flash, and the value will be updated every time the sensor is restarted or rescanned 697 697 ... ... @@ -699,21 +699,20 @@ 699 699 700 700 701 701 702 -1. Power consumption and battery 703 -11. Total Power Consumption 695 += 4. Power consumption and battery = 704 704 697 +== 4.1 Total Power Consumption == 698 + 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 -1. 709 -11. Reduce power consumption 702 +== 4.2 Reduce power consumption == 710 710 711 711 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. 712 712 713 713 714 714 715 -1. 716 -11. Battery 708 +== 4.3 Battery == 717 717 718 718 All sensors are only power by external power source. If external power source is off. All sensor won’t work. 719 719 ... ... @@ -722,13 +722,10 @@ 722 722 723 723 724 724 717 += 5. Main Process Unit WSC1-L = 725 725 719 +== 5.1 Features == 726 726 727 - 728 - 729 -1. Main Process Unit WSC1-L 730 -11. Features 731 - 732 732 * Wall Attachable. 733 733 * LoRaWAN v1.0.3 Class A protocol. 734 734 * RS485 / Modbus protocol ... ... @@ -742,28 +742,23 @@ 742 742 * Support default sensors or 3rd party RS485 sensors 743 743 744 744 734 +== 5.2 Power Consumption == 745 745 746 -1. 747 -11. Power Consumption 748 - 749 749 WSC1-L (without external sensor): Idle: 4mA, Transmit: max 40mA 750 750 751 751 752 752 753 -1. 754 -11. Storage & Operation Temperature 740 +== 5.3 Storage & Operation Temperature == 755 755 756 756 -20°C to +60°C 757 757 758 758 759 -1. 760 -11. Pin Mapping 745 +== 5.4 Pin Mapping == 761 761 762 762 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image004.png]] 763 763 764 764 765 -1. 766 -11. Mechanical 750 +== 5.5 Mechanical == 767 767 768 768 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/]] 769 769 ... ... @@ -770,8 +770,7 @@ 770 770 771 771 772 772 773 -1. 774 -11. Connect to RS485 Sensors 757 +== 5.6 Connect to RS485 Sensors == 775 775 776 776 WSC1-L includes a RS485 converter PCB. Which help it easy to connect multiply RS485 sensors. Below is the photo for reference. 777 777 ... ... @@ -787,9 +787,10 @@ 787 787 788 788 789 789 790 -1. Weather Sensors 791 -11. Rain Gauge ~-~- WSS-01 773 += 6. Weather Sensors = 792 792 775 +== 6.1 Rain Gauge ~-~- WSS-01 == 776 + 793 793 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. 794 794 795 795 ... ... @@ -814,9 +814,8 @@ 814 814 815 815 816 816 817 -* 818 -*1. 819 -*11. Feature 801 +=== 6.1.1 Feature === 802 + 820 820 * RS485 Rain Gauge 821 821 * Small dimension, easy to install 822 822 * Vents under funnel, avoid leaf or other things to avoid rain flow. ... ... @@ -823,9 +823,8 @@ 823 823 * ABS enclosure. 824 824 * Horizontal adjustable. 825 825 826 -* 827 -*1. 828 -*11. Specification 809 +=== 6.1.2 Specification === 810 + 829 829 * Resolution: 0.2mm 830 830 * Accuracy: ±3% 831 831 * Rainfall strength: 0mm~4mm/min (max 8mm/min) ... ... @@ -835,26 +835,19 @@ 835 835 * Working Humidity: <100% (no dewing) 836 836 * Power Consumption: 4mA @ 12v. 837 837 820 +=== 6.1.3 Dimension === 838 838 839 - 840 -1. 841 -11. 842 -111. Dimension 843 - 844 844 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image019.jpg||alt="c2d3aee592ccc873bea6dd891451df2"]] 845 845 846 -1. 847 -11. 848 -111. Pin Mapping 849 849 825 +=== 6.1.4 Pin Mapping === 826 + 850 850 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image020.png]] 851 851 852 852 853 853 854 854 855 -1. 856 -11. 857 -111. Installation Notice 832 +=== 6.1.5 Installation Notice === 858 858 859 859 Do not power on while connect the cables. Double check the wiring before power on. 860 860 ... ... @@ -861,14 +861,14 @@ 861 861 Installation Photo as reference: 862 862 863 863 864 -**Install on Ground:** 839 +(% style="color:#4472c4" %)** Install on Ground:** 865 865 866 866 WSS-01 Rain Gauge include screws so can install in ground directly . 867 867 868 868 869 -**Install on pole:** 844 +(% style="color:#4472c4" %)** Install on pole:** 870 870 871 -If user want to install on pole, they can purchase the **WS-K2 : Bracket Kit for Pole installation**, and install as below: 846 +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: 872 872 873 873 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image021.png]] 874 874 ... ... @@ -883,8 +883,7 @@ 883 883 884 884 885 885 886 -1. 887 -11. Wind Speed/Direction ~-~- WSS-02 861 +== 6.2 Wind Speed/Direction ~-~- WSS-02 == 888 888 889 889 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image023.png]] 890 890 ... ... @@ -899,15 +899,13 @@ 899 899 processor WSC1-L can detect and upload the wind speed and direction to the IoT Server via wireless LoRaWAN protocol. 900 900 901 901 902 -* 903 -*1. 904 -*11. Feature 876 +=== 6.2.1 Feature === 877 + 905 905 * RS485 wind speed / direction sensor 906 906 * PC enclosure, resist corrosion 907 907 908 -* 909 -*1. 910 -*11. Specification 881 +=== 6.2.2 Specification === 882 + 911 911 * Wind speed range: 0 ~~ 30m/s, (always show 30m/s for higher speed) 912 912 * Wind direction range: 0 ~~ 360° 913 913 * Start wind speed: ≤0.3m/s ... ... @@ -919,30 +919,22 @@ 919 919 * Power Consumption: 13mA ~~ 12v. 920 920 * Cable Length: 2 meters 921 921 922 -1. 923 -11. 924 -111. Dimension 894 +=== 6.2.3 Dimension === 925 925 926 926 [[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]] 927 927 928 928 929 -1. 930 -11. 931 -111. Pin Mapping 899 +=== 6.2.4 Pin Mapping === 932 932 933 933 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image020.png]] 934 934 935 935 936 -1. 937 -11. 938 -111. Angle Mapping 904 +=== 6.2.4 Angle Mapping === 939 939 940 940 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image026.png]] 941 941 942 942 943 -1. 944 -11. 945 -111. Installation Notice 909 +=== 6.2.5 Installation Notice === 946 946 947 947 Do not power on while connect the cables. Double check the wiring before power on. 948 948 ... ... @@ -963,8 +963,7 @@ 963 963 964 964 965 965 966 -1. 967 -11. CO2/PM2.5/PM10 ~-~- WSS-03 930 +== 6.3 CO2/PM2.5/PM10 ~-~- WSS-03 == 968 968 969 969 WSS-03 is a RS485 Air Quality sensor. It can monitor CO2, PM2.5 and PM10 at the same time. 970 970 ... ... @@ -979,16 +979,14 @@ 979 979 processor WSC1-L can detect and upload the environment CO2, PM2.5 and PM10 to the IoT Server via wireless LoRaWAN protocol. 980 980 981 981 982 -* 983 -*1. 984 -*11. Feature 945 +=== 6.3.1 Feature === 946 + 985 985 * RS485 CO2, PM2.5, PM10 sensor 986 986 * NDIR to measure CO2 with Internal Temperature Compensation 987 987 * Laser Beam Scattering to PM2.5 and PM10 988 988 989 -* 990 -*1. 991 -*11. Specification 951 +=== 6.3.2 Specification === 952 + 992 992 * CO2 Range: 0~5000ppm, accuracy: ±3%F•S(25℃) 993 993 * CO2 resolution: 1ppm 994 994 * PM2.5/PM10 Range: 0~1000μg/m3 , accuracy ±3%F•S(25℃) ... ... @@ -1003,22 +1003,18 @@ 1003 1003 ** PM2.5/PM10: 15~80%RH (no dewing) 1004 1004 ** CO2: 0~95%RH 1005 1005 * Power Consumption: 50mA@ 12v. 1006 -*1. 1007 -*11. Dimension 1008 1008 968 +=== 6.3.3 Dimension === 969 + 1009 1009 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image028.png]] 1010 1010 1011 1011 1012 -1. 1013 -11. 1014 -111. Pin Mapping 973 +=== 6.3.4 Pin Mapping === 1015 1015 1016 1016 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image020.png]] 1017 1017 1018 1018 1019 -1. 1020 -11. 1021 -111. Installation Notice 978 +=== 6.3.5 Installation Notice === 1022 1022 1023 1023 Do not power on while connect the cables. Double check the wiring before power on. 1024 1024 ... ... @@ -1031,8 +1031,7 @@ 1031 1031 1032 1032 1033 1033 1034 -1. 1035 -11. Rain/Snow Detect ~-~- WSS-04 991 +== 6.4 Rain/Snow Detect ~-~- WSS-04 == 1036 1036 1037 1037 WSS-04 is a RS485 rain / snow detect sensor. It can monitor Rain or Snow event. 1038 1038 ... ... @@ -1048,16 +1048,14 @@ 1048 1048 1049 1049 1050 1050 1051 -* 1052 -*1. 1053 -*11. Feature 1007 +=== 6.4.1 Feature === 1008 + 1054 1054 * RS485 Rain/Snow detect sensor 1055 1055 * Surface heating to dry 1056 1056 * grid electrode uses Electroless Nickel/Immersion Gold design for resist corrosion 1057 1057 1058 -* 1059 -*1. 1060 -*11. Specification 1013 +=== 6.4.2 Specification === 1014 + 1061 1061 * Detect if there is rain or snow 1062 1062 * Input Power: DC 12 ~~ 24v 1063 1063 * Interface: RS485 ... ... @@ -1067,23 +1067,17 @@ 1067 1067 ** No heating: 12mA @ 12v, 1068 1068 ** heating: 94ma @ 12v. 1069 1069 1070 -1. 1071 -11. 1072 -111. Dimension 1024 +=== 6.4.3 Dimension === 1073 1073 1074 1074 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image031.png]] 1075 1075 1076 1076 1077 -1. 1078 -11. 1079 -111. Pin Mapping 1029 +=== 6.4.4 Pin Mapping === 1080 1080 1081 1081 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image020.png]] 1082 1082 1083 1083 1084 -1. 1085 -11. 1086 -111. Installation Notice 1034 +=== 6.4.5 Installation Notice === 1087 1087 1088 1088 Do not power on while connect the cables. Double check the wiring before power on. 1089 1089 ... ... @@ -1097,10 +1097,9 @@ 1097 1097 1098 1098 1099 1099 1100 -1. 1101 -11. 1102 -111. Heating 1048 +=== 6.4.6 Heating === 1103 1103 1050 + 1104 1104 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℃). 1105 1105 1106 1106 ... ... @@ -1107,8 +1107,7 @@ 1107 1107 1108 1108 1109 1109 1110 -1. 1111 -11. Temperature, Humidity, Illuminance, Pressure ~-~- WSS-05 1057 +== 6.5 Temperature, Humidity, Illuminance, Pressure ~-~- WSS-05 == 1112 1112 1113 1113 WSS-05 is a 4 in 1 RS485 sensor which can monitor Temperature, Humidity, Illuminance and Pressure at the same time. 1114 1114 ... ... @@ -1120,14 +1120,12 @@ 1120 1120 processor WSC1-L can detect and upload environment Temperature, Humidity, Illuminance, Pressure to the IoT Server via wireless LoRaWAN protocol. 1121 1121 1122 1122 1123 -* 1124 -*1. 1125 -*11. Feature 1069 +=== 6.5.1 Feature === 1070 + 1126 1126 * RS485 Temperature, Humidity, Illuminance, Pressure sensor 1127 1127 1128 -* 1129 -*1. 1130 -*11. Specification 1073 +=== 6.5.2 Specification === 1074 + 1131 1131 * Input Power: DC 12 ~~ 24v 1132 1132 * Interface: RS485 1133 1133 * Temperature Sensor Spec: ... ... @@ -1150,24 +1150,18 @@ 1150 1150 * Working Humidity: 10~90%RH 1151 1151 * Power Consumption: 4mA @ 12v 1152 1152 1097 +=== 6.5.3 Dimension === 1153 1153 1154 -1. 1155 -11. 1156 -111. Dimension 1157 - 1158 1158 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image034.jpg]] 1159 1159 1160 1160 1161 -1. 1162 -11. 1163 -111. Pin Mapping 1102 +=== 6.5.4 Pin Mapping === 1164 1164 1165 1165 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image020.png]] 1166 1166 1167 -1. 1168 -11. 1169 -111. Installation Notice 1170 1170 1107 +=== 6.5.5 Installation Notice === 1108 + 1171 1171 Do not power on while connect the cables. Double check the wiring before power on. 1172 1172 1173 1173 ... ... @@ -1178,8 +1178,7 @@ 1178 1178 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image030.png]] 1179 1179 1180 1180 1181 -1. 1182 -11. Total Solar Radiation sensor ~-~- WSS-06 1119 +== 6.6 Total Solar Radiation sensor ~-~- WSS-06 == 1183 1183 1184 1184 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. 1185 1185 ... ... @@ -1196,16 +1196,14 @@ 1196 1196 1197 1197 1198 1198 1199 -* 1200 -*1. 1201 -*11. Feature 1136 +=== 6.6.1 Feature === 1137 + 1202 1202 * RS485 Total Solar Radiation sensor 1203 1203 * Measure Total Radiation between 0.3~3μm(300~3000nm) 1204 1204 * Measure Reflected Radiation if sense area towards ground. 1205 1205 1206 -* 1207 -*1. 1208 -*11. Specification 1142 +=== 6.6.2 Specification === 1143 + 1209 1209 * Input Power: DC 5 ~~ 24v 1210 1210 * Interface: RS485 1211 1211 * Detect spectrum: 0.3~3μm(300~3000nm) ... ... @@ -1219,24 +1219,17 @@ 1219 1219 * Working Humidity: 10~90%RH 1220 1220 * Power Consumption: 4mA @ 12v 1221 1221 1157 +=== 6.6.3 Dimension === 1222 1222 1223 -1. 1224 -11. 1225 -111. Dimension 1226 - 1227 1227 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image036.png]] 1228 1228 1229 1229 1230 -1. 1231 -11. 1232 -111. Pin Mapping 1162 +=== 6.6.4 Pin Mapping === 1233 1233 1234 1234 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image020.png]] 1235 1235 1236 1236 1237 -1. 1238 -11. 1239 -111. Installation Notice 1167 +=== 6.6.5 Installation Notice === 1240 1240 1241 1241 Do not power on while connect the cables. Double check the wiring before power on. 1242 1242 ... ... @@ -1244,9 +1244,9 @@ 1244 1244 1245 1245 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image038.png]] 1246 1246 1247 -1. 1248 -11. PAR (Photosynthetically Available Radiation) ~-~- WSS-07 1249 1249 1176 +== 6.7 PAR (Photosynthetically Available Radiation) ~-~- WSS-07 == 1177 + 1250 1250 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. 1251 1251 1252 1252 ... ... @@ -1262,9 +1262,7 @@ 1262 1262 processor WSC1-L can detect and upload Photosynthetically Available Radiation to the IoT Server via wireless LoRaWAN protocol. 1263 1263 1264 1264 1265 -1. 1266 -11. 1267 -111. Feature 1193 +=== 6.7.1 Feature === 1268 1268 1269 1269 PAR (Photosynthetically Available Radiation) sensor measure 400 ~~ 700nm wavelength nature light’s Photosynthetically Available Radiation. 1270 1270 ... ... @@ -1272,9 +1272,8 @@ 1272 1272 When nature light shine on the sense area, it will generate a signal base on the incidence radiation strength. 1273 1273 1274 1274 1275 -* 1276 -*1. 1277 -*11. Specification 1201 +=== 6.7.2 Specification === 1202 + 1278 1278 * Input Power: DC 5 ~~ 24v 1279 1279 * Interface: RS485 1280 1280 * Response Spectrum: 400~700nm ... ... @@ -1286,23 +1286,17 @@ 1286 1286 * Working Humidity: 10~90%RH 1287 1287 * Power Consumption: 3mA @ 12v 1288 1288 1214 +=== 6.7.3 Dimension === 1289 1289 1290 -1. 1291 -11. 1292 -111. Dimension 1293 - 1294 1294 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image036.png]] 1295 1295 1296 -1. 1297 -11. 1298 -111. Pin Mapping 1299 1299 1219 +=== 6.7.4 Pin Mapping === 1220 + 1300 1300 [[image:file:///C:/Users/93456/AppData/Local/Temp/msohtmlclip1/01/clip_image020.png]] 1301 1301 1302 1302 1303 -1. 1304 -11. 1305 -111. Installation Notice 1224 +=== 6.7.5 Installation Notice === 1306 1306 1307 1307 Do not power on while connect the cables. Double check the wiring before power on. 1308 1308 ... ... @@ -1386,7 +1386,6 @@ 1386 1386 |**Total Solar Radiation Sensor**|WSS-06 1387 1387 |**PAR (Photosynthetically Available Radiation)**|WSS-07 1388 1388 1389 - 1390 1390 = 10. Support = 1391 1391 1392 1392 * 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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