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Industrial Liquid Flow Monitoring Solution

The EPT thermal flow meter is designed for accurate liquid flow monitoring in industrial pipelines. Using advanced thermal sensing technology, it measures both temperature and flow rate in real time, ensuring efficient process control. Its durable design supports demanding environments while maintaining consistent measurement performance. Ideal for water systems, chemical processing, and industrial manufacturing, this solution helps optimize operations, improve monitoring accuracy, and support reliable automation.

Category Flow Measurement
Brand Finetek
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Technical details and application highlights

Review the complete description, feature set, and specification details before sending your inquiry.

The EPT Thermal Flow Meter is engineered for precise liquid flow monitoring in industrial pipelines where reliable measurement and process efficiency are essential. Using advanced thermal sensing technology, this device continuously measures the cooling effect of moving liquid on a heated probe to determine the flow velocity and temperature simultaneously. This dual-measurement capability makes it a valuable solution for industries requiring accurate flow monitoring, process optimization, and operational safety.

Designed for modern manufacturing environments, the EPT flow monitoring solution supports automation systems and industrial control platforms. It delivers dependable flow data that helps maintain production stability while improving energy efficiency across process lines.

Key Features

• Simultaneous liquid flow and temperature measurement
• Digital communication support for industrial automation systems
• Durable enclosure suitable for demanding environments
• Protection against electrical surge disturbances
• No moving mechanical components for long service life
• Capable of detecting liquids containing impurities
• Flexible probe length design for various pipeline sizes
• Stable measurement performance for continuous monitoring

Design & Functionality

The EPT system operates based on thermal dispersion measurement principles. A heated sensing probe is installed inside the pipeline where flowing liquid passes across the probe surface. As the liquid flows, it removes heat from the probe. By analyzing the temperature difference between the heated sensor and the surrounding liquid, the device calculates the flow velocity.

This method ensures highly responsive measurements while eliminating mechanical wear. Because the sensor contains no moving parts, the instrument provides long-term reliability with minimal maintenance requirements.

The sensor is typically installed through a threaded adapter, allowing easy integration with existing industrial pipelines. Once installed, the sensing probe is positioned within the fluid stream to monitor flow conditions in real time.

Total Crossed Beams

The internal sensing configuration allows the device to detect changes in thermal transfer across the liquid flow path. This ensures stable signal detection across a wide range of operating conditions while maintaining measurement consistency.

Beam Pitch Options

Probe length and installation depth can be customized according to pipeline diameter. This flexibility allows accurate measurement across different pipe sizes and ensures that the sensing element remains positioned within the optimal flow region.

Intrinsic Synchronism

The device integrates flow velocity monitoring and temperature sensing within a single probe assembly. This synchronized measurement approach allows process engineers to monitor thermal behavior and fluid movement simultaneously, improving system diagnostics and operational efficiency.

Operational Advantages

The EPT thermal flow meter offers significant benefits for industrial facilities requiring dependable liquid flow monitoring.

Because it contains no rotating components, the device eliminates mechanical wear and reduces maintenance requirements. Its ability to measure liquids containing suspended particles makes it suitable for challenging industrial applications.

With digital communication support and analog signal output, the instrument integrates easily with distributed control systems and automation platforms. The rugged design ensures stable operation even in harsh process environments, making it an ideal choice for water treatment systems, chemical processing plants, manufacturing utilities, and industrial cooling circuits.

Parameter

Specification

Measurement PrincipleThermal dispersion
Measured MediumLiquids (water and similar fluids)
Measurement Range10 – 400 cm/s
Measurement Accuracy< 2% under standard conditions
Temperature Measurement Range-25°C to 150°C
Medium Temperature0°C to 125°C
Ambient Temperature-25°C to 80°C
Process PressureUp to 100 bar
Analog Output4–20 mA
CommunicationRS-485
Power Supply12–32 VDC
Current Consumption<100 mA @ 24V
Response Time2 – 5 seconds
Electrical ConnectionM12 × 1 (6-pin)
Housing Material316L Stainless Steel
Protection RatingIP68 / IP69K
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