Description
SITRANS F VA 250 7ME586 Variable Area Flowmeters
Engineers can use SITRANS F VA 250 7ME586 variable area flowmeters, with their completely metal design, to measure many different types of liquids and gases flowing through closed piping. The robust design of the rotameter enables engineers to use them in harsh conditions. Different types of flanges, liners and float materials satisfy the requirements of the pharmaceutical and chemical industries.
Overview---SITRANS F VA 250 7ME586
SITRANS FVA250 Variable area flowmeter, diameter DN 15 to DN 100 (1/2" to 4"), full metal design. Suitable for volume flow measurement of liquids, gases and steam, for applications in chemical (industry, water, power) generation and distribution.Benefits---SITRANS F VA 250 7ME586
- Standard version available at short notice
- Robust all-metal valve with impact-resistant housing cover
- Can also be used for corrosive and flammable media
- Can be used at high pressures and temperatures
- Product and percentage scales
- Can be optionally fitted with heating and cooling sheaths
- Contamination-resistant guiding for float
Application
The devices are particularly suitable for measuring:
- Water
- Liquids
- Anti-corrosives and lubricants
- Solvents
- Saturated and superheated steam
- Food and beverages
- Industrial gases
Design
The SITRANS F VA 250 variable area meter has a standard length of 250 mm (9.84 inch). Its full metal design allows it to measure many different types of liquids and gases passing through closed piping. The robust design allows users to apply it in harsh conditions. The different types of flange connections, linings and float materials meet the demands of the pharmaceutical and chemical industries.
With the standard version, the device displays the measured value directly on the scale. For process monitoring and control, you can equip the device with a transmitter (MEM) as well as limit switches.
Function
The SITRANS FVA250 performs flow measurement according to the float principle. The flowing medium lifts the conical float in the measuring ring. This causes the ring gap to increase until the buoyant force of the medium and the weight of the float reach an equilibrium. The height of the float is directly proportional to the flow rate. In the display unit outside of the measuring tube, one magnet transmits the movement of the float to another magnet.
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