Endress+Hauser Levelflex FMP50 – Reliable Guided Radar for Basic Liquid Level Applications
The Levelflex FMP50 is a guided radar level transmitter designed for continuous level measurement of liquids, pastes and slurries in basic process applications. Based on the time-of-flight guided radar principle, it provides stable and accurate measurement even when process conditions change.
Designed as a cost-effective solution for storage tanks, supply systems and utility processes, the FMP50 combines proven Endress+Hauser radar technology with simple installation and reliable operation.
Guided Radar Measurement for Stable Level Monitoring
Unlike contact measurement technologies that rely on mechanical movement, the Levelflex FMP50 measures level through electromagnetic pulses transmitted along a probe.
The guided radar signal travels along the probe and reflects from the medium surface. The measured travel time is converted into an accurate level value.
Key performance:
Measuring principle: Guided radar (Time-of-Flight)
Application: Continuous liquid level measurement
Probe options: Rod probe / Rope probe
Accuracy: ±2 mm
Maximum measuring range:
Rod probe: up to 4 m
Rope probe: up to 12 m
Process temperature: –20 to +80 °C
Process pressure: Vacuum to +6 bar
Wetted materials: 316L, PPS, Viton
Communication: HART, PROFIBUS PA, FOUNDATION Fieldbus
Safety functions: SIL, WHG overfill prevention available
Reliable Measurement Even with Changing Process Conditions
One of the major advantages of guided radar technology is its ability to maintain reliable measurement performance under changing process conditions.
The FMP50 measurement is not significantly affected by:
Changing dielectric constant
Temperature variations
Gas blankets
Vapor formation above the medium
This makes it a dependable choice for storage and utility applications where stable level information is required.
Designed for Basic Liquid Applications
The Levelflex FMP50 is optimized for applications that do not require extreme temperature, pressure or chemical resistance.
Typical applications include:
Storage tanks
Buffer tanks
Water and utility systems
Chemical supply tanks
Process liquid vessels
Pumps and supply systems
Its compact design and flexible probe selection make it suitable for many standard industrial level measurement tasks.
Rod and Rope Probe Options for Different Tank Conditions
The FMP50 offers different probe configurations to match installation requirements.
Rod Probe
Suitable for:
Short measuring distances
Small tanks
Stable liquid surfaces
Maximum measuring range:
Rope Probe
Suitable for:
Taller tanks
Longer measuring distances
Applications requiring flexible installation
Maximum measuring range:
Easy Commissioning and Smart Device Management
The Levelflex FMP50 integrates Endress+Hauser digital technologies to simplify installation, commissioning and maintenance.
Available features include:
Bluetooth commissioning
SmartBlue App operation
Heartbeat Technology
HistoROM data storage
RFID TAG identification
These functions help reduce setup time and improve device management throughout the instrument lifecycle.
Compact Design with Reliable Industrial Performance
The FMP50 is designed for users who need dependable level measurement without unnecessary complexity.
Its advantages include:
Non-invasive signal processing
Factory calibration
Reliable measurement for changing media
Compact installation concept
Long-term operational stability
For standard liquid level applications, the Levelflex FMP50 provides an efficient alternative to traditional level measurement technologies.
Frequently Asked Questions
What is the Endress+Hauser Levelflex FMP50 used for?
The FMP50 is used for continuous level measurement of liquids, pastes and slurries, especially in storage and utility applications.
What is the measuring range of the FMP50?
The rod probe version measures up to 4 m, while the rope probe version supports measurement up to 12 m.
Does the FMP50 measurement depend on media changes?
The guided radar measurement is designed to remain reliable despite changing media properties, temperature variations and vapor conditions.
What is the difference between guided radar and ultrasonic level measurement?
Guided radar uses electromagnetic pulses along a probe, while ultrasonic measurement uses sound waves reflected from the medium surface. Guided radar is often preferred when vapor, foam or changing conditions may affect ultrasonic signals.
Can the FMP50 be used in hazardous areas?
Yes. The FMP50 is available with international explosion protection approvals depending on configuration.
Which communication protocols are supported by the FMP50?
The FMP50 supports options including HART, PROFIBUS PA and FOUNDATION Fieldbus depending on device configuration.