LEDAER UCS Series
Non-Contact Ultrasonic Level Meter: Precision Liquid Level & Open-Channel Flow Measurement
📌 Overview
The UCS Series provides a versatile, non-contact solution for liquid level and open-channel flow measurement. By emitting high-frequency ultrasonic pulses and measuring the time of flight for the echo to return, it calculates the precise distance to the material surface. With its intelligent echo-processing technology, the UCS series delivers reliable data even in environments with minor obstructions or surface turbulence.
✨ Key Features & Advantages
Non-Contact Precision
Eliminates sensor corrosion or clogging, extending life in wastewater and chemical apps.
Intelligent Echo Analysis
Advanced “False Echo Learning” filters out interference from agitators or tank structures.
Auto-Temp Compensation
Built-in sensor adjusts for speed of sound changes across varying climates.
Open Channel Mode
Built-in formulas for Parshall, triangular weirs, and other flumes for flow monitoring.
📊 Technical Specifications
| Parameter | Value |
|---|---|
| Measuring Range | Standard 0-10m; Extended up to 30m |
| Accuracy | ±0.2% FS or ±5mm |
| Signal Output | 4-20mA, RS485 Modbus, Optional relay alarms |
| Housing Material | Robust ABS or PVDF (for chemical resistance) |
| Protection Rating | IP65 (Standard) / IP68 (Submersible sensor) |
| Design Options | Integrated (Compact) or Split (Remote Display) |
🏭 Ideal Applications
Pump stations, sludge tanks, and dosing basins.
River level tracking and open-channel flow measurement.
Storage tanks for acids, alkalis, and oils in non-pressurized settings.
Non-contact monitoring of ingredient silos and liquid vats.
Why Choose LEDAER UCS?
Non-contact technology ensures the sensor never touches aggressive or sticky media.
Seamlessly switch between level and open-channel flow monitoring with built-in weir formulas.
IP68 submersible sensor options and PVDF housing provide ultimate environmental resilience.
High-Accuracy Ultrasonic Sensing for Global Environmental & Industrial Safety.





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