electromagnetic flowmeter measuring tap water

FMC240 Electromagnetic Flowmeter Measuring Tap Water

FMC240 Electromagnetic meters are a leading choice to deliver the performance and precision your applications require. These meters are applicable for all conductive liquids, such as water, acids, alkalis, slurries and many others. Typical applications are monitoring of liquids, filling, dosing and precise measurement in custody transfer.


  • Wide measuring range

    It can be applied to water mains of various calibers and flow rates.

  • High precision

    It can meet the accuracy requirements of tap water flow metering.

  • Good stability

    It can be operated stably for a long time without being affected by changes in water quality.

  • Easy maintenance

    Online calibration and maintenance are possible.

 Product  Electromagnetic flowmeter
 Model  FMC240 
 Diameter nominal  DN15~DN1000
 Nominal pressure DN15 - DN250, PN ≤1.6MPa
DN300 - DN1000, PN ≤1.0MPa
 Accuracy ±0.5% F.S. (Flow speed > 0.5m/s); ±0.5% F.S.±2mm/s(Flow speed <0.5m/s)
 Repetitiveness 0.16%
 Liner material Neoprene (CR), Polyurethane (PU), PTFE (F4), PFEP (F46), PFA
 Electrode material 316L Stainless Steel, Hastelloy C, Hastelloy B, Ti, Ta, Pt
 Medium temperature Neoprene: -10…+70℃ Polyurethane: -10…+60℃ PTFE/FEP: -10…+120℃ PFA: -10…+120℃
 Power supply 220VAC, 24VDC
 Structure type  Compact type, Remote type
 Ingress protection  IP65, IP68(remote type only)
 Product standard  JB/T 9248-2015

electromagnetic flowmeter measuring tap water

TheFMC240 electromagnetic flow meter is an ideal solution for measuring the flow of tap water. This type of flow meter uses Faraday's law of electromagnetic induction to measure the flow rate. The principle is based on the fact that when a conductive fluid flows through a magnetic field, a voltage is induced in the fluid, which is proportional to the velocity of the fluid. The flow meter consists of a flow tube, a pair of electrodes, and a magnetic field generator. The flow tube is made up of a non-conductive material, and the electrodes are placed on opposite sides of the tube. The magnetic field generator produces a magnetic field that is perpendicular to the direction of flow. When tap water flows through the tube, it generates a voltage that is measured by the electrodes. The voltage is then converted into a flow rate using a signal converter.

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