Electromagnetic flow sensor / magmeter for sanitary and hygienic applications.
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The OPTIFLUX 6000 is an electromagnetic flow sensor for hygienic applications. Combined with the IFC 050, IFC 100 or IFC 300 signal converters it forms the OPTIFLUX 6050, OPTIFLUX 6100 and OPTIFLUX 6300 electromagnetic flowmeters.
The KROHNE OPTIFLUX 6000 electromagnetic flow sensor is the solution for sanitary and hygienic applications. The KROHNE OPTIFLUX 6000 electromagnetic flow sensor has an improved design with calculated stress points and superior mesh support, making it ideal for use in large-scale production plants.
The KROHNE OPTIFLUX 6000 electromagnetic flow sensor overcomes the drawbacks of some SIL2-certified equipment:
The 3×100% diagnostics in the KROHNE OPTIFLUX 6000 electromagnetic flow sensor is, therefore, much better for you than a normal SIL2 certified meter.
With just one signal converter and the widest range of flow sensors, the KROHNE OPTIFLUX 6000 electromagnetic flow sensor covers all applications, from a simple water measurement to corrosive or abrasive products or even pulp in the paper industry. Simplified engineering, procurement, and inventory lead to cost-savings for the user.
Using brand new technology has enabled us to increase the measuring performance of the KROHNE OPTIFLUX 6000 electromagnetic flow sensor even further. These improvements are particularly useful where today's product changes with corresponding changes in pH, or the measurement of pulp in the paper industry. This increase in performance was possible by a 30-fold improvement in the measuring technology components.
Magnetic flow meters are intended to measure the flow of electrically conductive liquids in full pipes. The pressure drop through the meter is minimal, (equal in magnitude to a piece of pipe of the same diameter and length) making it an excellent choice for low pressure systems. There are no moving parts or obstructions in the fluid stream so the meter is virtually maintenance free and suitable for fluids containing abrasives. Modern pulsed DC excitation eliminates problems with zero shift often found in other designs.
The detection of flow is accomplished using the principle of electromagnetic induction. As a conductor passes through a magnetic field, a voltage is generated that is proportional to the velocity of the conductor moving through the field. In the case of the magnetic flow meter, the conductor is a conducting liquid. The higher the flow rate the greater the generated voltage.
For process flow measurement reasons the product must be grounded. Such a grounding system is lacking in pipes upstream and downstream of the primary head which feature a corrosion-resistant internal coating or liner, or are made entirely of plastics material. In such cases, grounding rings must be fitted on both sides of the primary head. Consult us for further information.
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