Vortex flow meter is an instrument that can measure the flow of various fluids (such as liquids, gases, steam), can measure saturated steam and superheated steam, the highest measuring temperature up to 400°C, very wide range of uses. According to the process connection, it can be divided into wafer type, clamp type and flange type.
Pipe diameter: DN15-DN300
Accuracy: ±1.0% ±1.5%
Medium temperature: -30°C~150°C; -50°C~250°C; -200°C~400°C
Power supply: 12-32VDC
Protection grade: IP678/IP68
Model | Aitex F |
Product | Vortex Steam flow Meter |
Diameter nominal | DN15~DN300 |
Applications | Gas, Liquid, Steam |
Nominal Pressure | PN10~250 |
Process Temperture | -200°C~400°C |
Process Pressure | Flange:GB, ANSI, DIN, JIS |
Output | 4~20mA/Frequency/Pulse/Switched output |
Communication | HART, Modbus RS485, PROFIBUS DP |
Current Input | 4~20mA |
Protection Grade | IP66/67 |
Accuracy | Volume flow(liquid):±1% |
Volume flow(steam,gas):±1% | |
Mass flow rate(liquid):±1% | |
Mass flow rate(steam,gas):±1% |
The vortex steam flow meter from ARTang feature advanced sensor technology that delivers real-time, highly accurate flow data. Built to withstand demanding industrial conditions, our meters are constructed from durable materials such as stainless steel, ensuring long-lasting performance with minimal maintenance.
Liquids: Achieve high accuracy when measuring water, chemicals, and other fluids.
Gases: Monitor gases like air, nitrogen, and natural gas with precision.
Steam: Maintain consistent and reliable measurements even in high-temperature steam applications.
Our vortex flow meters are designed to offer superior accuracy across a wide range of flow rates and process conditions, ensuring optimal performance in both routine and complex operations.
One of the standout features of ARTang vortex steam flow meters is their ability to compensate for temperature and pressure variations. When measuring gases and steam, fluctuations in temperature and pressure can lead to inaccurate flow readings. Our vortex meters automatically adjust for these changes, providing a true representation of the mass flow rate. This ensures you get the most accurate measurements possible, regardless of process conditions.
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