Meters, sensors and controllers, and how each connects to Edge.
136 device pages · 37 manufacturers with device pages ·
293 devices
Device database results
293 devices
DecentlabDL-PR26
Temperature sensorLoRaWAN
Enables remote monitoring of water level in open water, fill level of tanks, groundwater level and various other applications. It measures the pressure at the sensor head relative to the pressure at the cable end.
Enables high-precision remote monitoring of water level in open water, fill level of tanks, groundwater level and various other applications. It measures the pressure at the sensor head relative to the pressure at the cable end.
The Decentlab DL-PR36CTD includes pressure, temperature, and electrical conductivity sensors. It is suitable for measuring water levels and monitoring water quality, salinity, and chloride.
The Decentlab DL-PYR consists of a solar radiation sensor for measuring solar radiation. It is suitable for measuring radiations in solar panel arrays, smart agriculture, and building automation.
The Decentlab DL-RAD is a radar distance/level sensor for measuring distance. It is suitable for monitoring generic ranging, proximity, level, water level, flood monitoring, etc.
The Decentlab DL-RCH is equipped with high-precision air temperature and humidity sensors for environmental monitoring. Suitable for smart agriculture, urban heat islands, greenhouses, frost alarming, and building automation.
The Decentlab DL-SDD includes 6 soil moisture, temperature and salinity sensors for LoRaWAN®. Suitable for applications such as outdoor remote monitoring, irrigation control, smart agriculture, greenhouse and soil-less plantations, parks, and golf courses.
Air temperature and humidity sensor with radiation shield. Can be used for example for smart agriculture, urban heat islands, greenhouses, frost alarming or building automatione.
The Decentlab DL-TP comes with temperature profiling sensors that can be used in monitoring of glaciers, lakes, ocean, permafrost, dike, dam and soils.
The Decentlab DL-TRS11 includes a volumetric water content (VWC), temperature, and dielectric permittivity sensor. It is suitable for irrigation control, smart agriculture, greenhouse and soilless plantations, parks, and golf courses.
The Decentlab DL-TRS12 includes a volumetric water content (VWC), temperature, and dielectric permittivity sensor. It is suitable for irrigation control, smart agriculture, greenhouse and soilless plantations, parks, and golf courses.
The Decentlab DL-TRS21 is a soil water potential and temperature sensor for LoRaWAN®. Suitable for applications such as irrigation control, smart agriculture, parks, and golf courses.
The Decentlab DL-WRM includes an infrared pyrometer, temperature, and humidity sensors. It is suitable for use in winter road maintenance, frost alarming, ice alerting, and smart agriculture.
The Decentlab DL-ZN1 comes with a linear position dendrometer that can measure the growth of plants and trees. It is suitable for use in irrigation control, smart agriculture, forestry, plantation, and ecophysiology applications.
The Decentlab DL-ZN2 comes with a linear position dendrometer that can measure the growth of plants and trees. It is suitable for use in irrigation control, smart agriculture, forestry, plantation, and ecophysiology.
Tiny, lightweight and ultra-rugged battery-powered geolocation tag for affordable indoor and outdoor asset monitoring on LoRaWAN® networks. Reports temperature.
The Dragino LDDS20 is a LoRaWAN Ultrasonic liquid level sensor for Internet of Things solution. It uses non 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.
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How this directory works
Built from public Zigbee, LoRaWAN and Modbus device definitions and manufacturer documents. Exact manufacturer and model identities are joined; similar names are never assumed to be the same device.
Compatibility
A device that documents Zigbee 3.0, LoRaWAN or Modbus support connects to EpiSensor Edge through that protocol. A device page lists what the device reports, how to set it up and, where one exists, the Edge template for it.
Sources and images
Every page cites its sources. Zigbee device photographs come from the Zigbee2MQTT project and are credited under each photograph. We never run code from these sources, and register maps are for reading: never write to a meter from a map on this site.
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