DRAGINO Ultrasonic Distance and Level Sensor
DRAGINO Ultrasonic Distance and Level Sensor is designed for remote distance and level monitoring. It uses laser ranging technology to measure the distance between the sensor and a target surface, then transmits measurement data over a LoRaWAN network. Suitable for applications such as tank level monitoring, waste management and general distance measurement, it provides a wireless option for locations where regular manual checking is inconvenient.
The DRAGINO Ultrasonic Distance and Level Sensor is designed to measure the distance between the sensor and a target using LiDAR technology. The measured data can be transmitted wirelessly through a LoRaWAN network for remote monitoring and system integration.
The sensor can be used where direct wiring is difficult or where measurement points need to be monitored remotely. Depending on the installation and target being measured, it can support applications involving level measurement, distance monitoring and object detection.
How it works
- The sensor uses LiDAR technology to measure the distance to a target surface.
- Distance measurements are collected by the device and prepared for wireless transmission.
- The LDS40-LB-LS communicates through a LoRaWAN network, allowing data to be sent to a compatible gateway and monitoring platform.
- In level monitoring applications, the measured distance between the sensor and the material surface can be used by the monitoring system to determine the level.
Why choose this product
- Supports wireless distance monitoring through LoRaWAN connectivity.
- Uses LiDAR technology for non-contact distance measurement.
- Suitable for remote monitoring locations where regular manual inspection may be impractical.
- Can be integrated into LoRaWAN-based IoT monitoring systems.
- Suitable for a range of distance and level measurement applications, depending on installation requirements.
Benefits
- Reduces the need for manual measurement at remote monitoring points.
- Allows measurement data to be collected through a wireless network.
- Supports non-contact monitoring, which can be useful where physical contact with the measured material is undesirable.
- Can be used as part of a broader IoT monitoring and data collection system.
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