Changes for page LMDS200 -- LoRaWAN Microwave Radar Distance Sensor User Manual
Last modified by Xiaoling on 2025/04/27 16:45
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... ... @@ -1,1 +1,1 @@ 1 -LDDS 75- LoRaWANDistanceDetectionSensor User Manual1 +LDDS20 - LoRaWAN Ultrasonic Liquid Level Sensor User Manual - Content
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... ... @@ -1,11 +1,10 @@ 1 1 (% style="text-align:center" %) 2 -[[image:1654 846127817-788.png]]2 +[[image:1655254599445-662.png]] 3 3 4 -**Contents:** 5 5 6 -{{toc/}} 7 7 8 8 7 +**Table of Contents:** 9 9 10 10 11 11 ... ... @@ -12,9 +12,11 @@ 12 12 13 13 14 14 14 + 15 + 15 15 = 1. Introduction = 16 16 17 -== 1.1 What is LoRaWAN DistanceDetectionSensor ==18 +== 1.1 What is LoRaWAN Ultrasonic liquid level Sensor == 18 18 19 19 ((( 20 20 ... ... @@ -21,7 +21,8 @@ 21 21 22 22 ((( 23 23 ((( 24 -The Dragino LDDS75 is a (% style="color:#4472c4" %)** LoRaWAN Distance Detection Sensor**(%%) for Internet of Things solution. It is used to measure the distance between the sensor and a flat object. The distance detection sensor is a module that uses (% style="color:#4472c4" %)** ultrasonic sensing** (%%)technology for distance measurement, and (% style="color:#4472c4" %)** temperature compensation**(%%) is performed internally to improve the reliability of data. The LDDS75 can be applied to scenarios such as horizontal distance measurement, liquid level measurement, parking management system, object proximity and presence detection, intelligent trash can management system, robot obstacle avoidance, automatic control, sewer, bottom water level monitoring, etc. 25 +((( 26 +The Dragino LDDS20 is a (% style="color:#4472c4" %)**LoRaWAN Ultrasonic liquid level sensor**(%%) for Internet of Things solution. It uses (% style="color:#4472c4" %)**none-contact method **(%%)to measure the height of liquid in a container without opening the container, and send the value via LoRaWAN network to IoT Server 25 25 ))) 26 26 27 27 ((( ... ... @@ -29,7 +29,7 @@ 29 29 ))) 30 30 31 31 ((( 32 - It detectsthedistance**(% style="color:#4472c4" %)between the measured object and thesensor(%%)**,anduploadsthe valuevia wirelesstoLoRaWAN IoT Server.34 +The LDDS20 sensor is installed directly below the container to detect the height of the liquid level. User doesn’t need to open a hole on the container to be tested. The (% style="color:#4472c4" %)**none-contact measurement makes the measurement safety, easier and possible for some strict situation**. 33 33 ))) 34 34 35 35 ((( ... ... @@ -37,7 +37,7 @@ 37 37 ))) 38 38 39 39 ((( 40 - TheLoRawireless technologyusedin LDDS75allowsdeviceto senddataandreachextremelylongrangesatlow data-rates.Itprovidesultra-longrangespread spectrumcommunicationandhighinterferenceimmunitywhilstminimizingcurrent consumption.42 +LDDS20 uses ultrasonic sensing technology for distance measurement. LDDS20 is of high accuracy to measure various liquid such as: (% style="color:#4472c4" %)**toxic substances**(%%), (% style="color:#4472c4" %)**strong acids**(%%), (% style="color:#4472c4" %)**strong alkalis**(%%) and (% style="color:#4472c4" %)**various pure liquids**(%%) in high-temperature and high-pressure airtight containers. 41 41 ))) 42 42 43 43 ((( ... ... @@ -45,7 +45,7 @@ 45 45 ))) 46 46 47 47 ((( 48 -L DDS75ispoweredby(%style="color:#4472c4"%)** 4000mAor8500mAhLi-SOCI2battery**(%%);It isdesignedforlong term use upto10years*.50 +The LoRa wireless technology used in LDDS20 allows device to send data and reach extremely long ranges at low data-rates. It provides ultra-long range spread spectrum communication and high interference immunity whilst minimizing current consumption. 49 49 ))) 50 50 51 51 ((( ... ... @@ -53,7 +53,7 @@ 53 53 ))) 54 54 55 55 ((( 56 - EachLDDS75pre-loadswithasetof unique keys forLoRaWANregistrations, register thesekeystolocal LoRaWAN serverand it will autoconnectifthereisnetworkcoverage,afterpower on.58 +LDDS20 is powered by (% style="color:#4472c4" %)**8500mA Li-SOCI2 battery**(%%); It is designed for long term use up to 10 years*. 57 57 ))) 58 58 59 59 ((( ... ... @@ -61,10 +61,21 @@ 61 61 ))) 62 62 63 63 ((( 66 +Each LDDS20 pre-loads with a set of unique keys for LoRaWAN registrations, register these keys to local LoRaWAN server and it will auto connect if there is network coverage, after power on. 67 +))) 68 + 69 +((( 70 + 71 +))) 72 +))) 73 + 74 +((( 75 +((( 64 64 (% style="color:#4472c4" %) * (%%)Actually lifetime depends on network coverage and uplink interval and other factors. 65 65 ))) 66 66 ))) 67 67 ))) 80 +))) 68 68 69 69 70 70 [[image:1654847051249-359.png]] ... ... @@ -93,7 +93,9 @@ 93 93 [[image:image-20220610154839-1.png]] 94 94 95 95 ((( 96 -**Remarks: (1) a. When the ambient temperature is 0-39 ℃, the maximum humidity is 90% (non-condensing); b. When the ambient temperature is 40-50 ℃, the highest humidity is the highest humidity in the natural world at the current temperature (no condensation)** 109 +**Remarks: (1) a. When the ambient temperature is 0-39 ℃, the maximum humidity is 90% (non-condensing); ** 110 + 111 +**~ b. When the ambient temperature is 40-50 ℃, the highest humidity is the highest humidity in the natural world at the current temperature (no condensation)** 97 97 ))) 98 98 99 99 ... ... @@ -129,7 +129,6 @@ 129 129 * Sewer 130 130 * Bottom water level monitoring 131 131 132 - 133 133 == 1.6 Pin mapping and power on == 134 134 135 135 ... ... @@ -166,6 +166,8 @@ 166 166 ))) 167 167 168 168 ((( 183 + 184 + 169 169 (% style="color:blue" %)**Step 1**(%%): Create a device in TTN with the OTAA keys from LDDS75. 170 170 ))) 171 171 ... ... @@ -185,6 +185,8 @@ 185 185 ))) 186 186 187 187 ((( 204 + 205 + 188 188 **Add APP EUI in the application** 189 189 ))) 190 190 ... ... @@ -284,8 +284,6 @@ 284 284 * If the sensor value is 0x0000, it means system doesn’t detect ultrasonic sensor. 285 285 * If the sensor value lower than 0x0118 (280mm), the sensor value will be invalid. Since v1.1.4, all value lower than 280mm will be set to 0x0014(20mm) which means the value is invalid. 286 286 287 - 288 - 289 289 === 2.3.3 Interrupt Pin === 290 290 291 291 This data field shows if this packet is generated by interrupt or not. [[Click here>>||anchor="H3.3A0SetInterruptMode"]] for the hardware and software set up. ... ... @@ -333,7 +333,9 @@ 333 333 334 334 The payload decoder function for TTN V3 is here: 335 335 352 +((( 336 336 LDDS75 TTN V3 Payload Decoder: [[http:~~/~~/www.dragino.com/downloads/index.php?dir=LoRa_End_Node/LDDS75/Payload_Decoder/>>url:http://www.dragino.com/downloads/index.php?dir=LoRa_End_Node/LSE01/Payload_Decoder/]] 354 +))) 337 337 338 338 339 339 ... ... @@ -862,10 +862,17 @@ 862 862 == 2.8 Firmware Change Log == 863 863 864 864 883 +((( 865 865 **Firmware download link: **[[http:~~/~~/www.dragino.com/downloads/index.php?dir=LoRa_End_Node/LSE01/Firmware/>>url:http://www.dragino.com/downloads/index.php?dir=LoRa_End_Node/LSE01/Firmware/]] 885 +))) 866 866 887 +((( 888 + 889 +))) 867 867 891 +((( 868 868 **Firmware Upgrade Method: **[[Firmware Upgrade Instruction>>doc:Main.Firmware Upgrade Instruction for STM32 base products.WebHome]] 893 +))) 869 869 870 870 871 871 ... ... @@ -1009,7 +1009,9 @@ 1009 1009 [[image:image-20220610172924-5.png]] 1010 1010 1011 1011 1037 +((( 1012 1012 In the PC, you need to set the serial baud rate to (% style="color:green" %)**9600**(%%) to access the serial console for LDDS75. LDDS75 will output system info once power on as below: 1039 +))) 1013 1013 1014 1014 1015 1015 [[image:image-20220610172924-6.png||height="601" width="860"]] ... ... @@ -1033,16 +1033,19 @@ 1033 1033 ((( 1034 1034 Format: Command Code (0x01) followed by 3 bytes time value. 1035 1035 1063 +((( 1036 1036 If the downlink payload=0100003C, it means set the END Node’s Transmit Interval to 0x00003C=60(S), while type code is 01. 1065 +))) 1037 1037 1038 1038 * Example 1: Downlink Payload: 0100001E ~/~/ Set Transmit Interval (TDC) = 30 seconds 1039 1039 * Example 2: Downlink Payload: 0100003C ~/~/ Set Transmit Interval (TDC) = 60 seconds 1040 1040 ))) 1070 +))) 1041 1041 1042 1042 1043 - 1044 -))) 1045 1045 1074 + 1075 + 1046 1046 == 3.3 Set Interrupt Mode == 1047 1047 1048 1048 Feature, Set Interrupt mode for GPIO_EXIT. ... ... @@ -1056,7 +1056,9 @@ 1056 1056 1057 1057 Format: Command Code (0x06) followed by 3 bytes. 1058 1058 1089 +((( 1059 1059 This means that the interrupt mode of the end node is set to 0x000003=3 (rising edge trigger), and the type code is 06. 1091 +))) 1060 1060 1061 1061 * Example 1: Downlink Payload: 06000000 ~/~/ Turn off interrupt mode 1062 1062 * Example 2: Downlink Payload: 06000003 ~/~/ Set the interrupt mode to rising edge trigger
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