DRAGINO LoRaWAN UVC Radiation Sensor
DRAGINO LoRaWAN UVC Radiation Sensor is a LoRaWAN UVC radiation sensor for monitoring ultraviolet lamp intensity and operating effectiveness. It measures UVC radiation across a 254 nm ±5 nm response spectrum, with a measurement range of 0 to 5 mW/cm². The sensor transmits readings over LoRaWAN and supports Bluetooth v5.1 configuration, remote configuration and wireless OTA firmware updates.
The DRAGINO LoRaWAN UVC Radiation Sensor provides wireless monitoring of UVC radiation from ultraviolet lamps. It is designed for applications where UVC lamp performance needs to be monitored over time rather than relying solely on manual inspection.
The sensor measures UVC intensity and converts the measurement into LoRaWAN wireless data. The data can then be forwarded through a LoRaWAN gateway to an IoT platform for monitoring and analysis.
Dragino identifies the sensor's peak response at 254 nm, with a response spectrum of 254 nm ±5 nm. The specified measurement range is 0 to 5 mW/cm².
How it works
- The DRAGINO LoRaWAN UVC Radiation Sensor detects UVC radiation produced by an ultraviolet lamp.
- It measures UVC intensity within its specified 254 nm response spectrum.
- The measured data is converted into LoRaWAN wireless data.
- Data is transmitted through a LoRaWAN gateway to an IoT platform.
- Periodic uplinks can be used to report measurements, while downlink commands can be used to change configuration.
Why choose this product
- Purpose-built for UVC monitoring - Dragino specifically describes the UV254-LB as a sensor for detecting ultraviolet lamp intensity.
- Wireless LoRaWAN communication - Measurement data can be transmitted to an IoT platform without requiring a wired data connection.
- 254 nm response - The sensor is designed around the 254 nm UVC wavelength.
- Remote management - Bluetooth v5.1 and LoRaWAN remote configuration are supported.
- OTA firmware updates - Firmware can be updated wirelessly.
Benefits
The DRAGINO LoRaWAN UVC Radiation Sensor provides a way to continuously monitor UVC lamp performance rather than relying only on periodic manual checks. This can help operators identify reduced UVC output and determine when a lamp may no longer be operating at its expected effectiveness.

