Coriolis Mass Flow Meter

TCMF Series

The TCMF Series Coriolis Mass Flow Meter provides highly accurate direct mass flow measurement for liquids and gases in industrial processes. Based on the Coriolis force principle, the meter measures mass flow by detecting phase shifts in vibrating flow tubes when fluid passes through them. The system also measures density, temperature, and water cut, making it a multi-parameter solution for advanced process monitoring in industries such as chemical processing, oil & gas, and pharmaceuticals.

  • Direct mass flow measurement without external compensation
  • Extremely high accuracy for critical industrial processes
  • Simultaneous measurement of mass flow, density, and temperature
  • Reliable performance even with changing process conditions
  • Suitable for both liquid and gas measurement
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  • Coriolis force measurement principle for direct mass flow detection
  • High measurement accuracy up to ±0.1%
  • Integrated DSP chip for improved signal processing and stability
  • Integrated DSP chip for improved signal processing and stability
  • Fast response time for dynamic process conditions
  • Multiple sensor designs including U-shape, micro-bend, and super-bend
  • Wide temperature range with integrated or separated transmitter options
  • Supports RS485 Modbus and HART communication protocols
  • Pulse output and 4–20 mA analog output options
  • High protection grade suitable for industrial environments
  • Chemical processing industries
  • Oil and gas production and transfer
  • Food and beverage manufacturing
  • Food and beverage manufacturing
  • Pharmaceutical process measurement
  • Custody transfer and batch processing systems
  • Density measurement and concentration monitoring
  • Measurement Principle: Coriolis Mass Flow
  • Pipe Size Range: DN3 – DN300
  • Accuracy: ±0.1%, ±0.2%, ±0.5%
  • Measured Parameters: Mass Flow, Density, Temperature, Water Cut
  • Density Measurement Range: 0.2 – 3.0 g/cm³
  • Density Accuracy: ±0.002 g/cm³
  • Power Supply: 18–36 VDC or 85–265 VAC
  • Signal Output: Pulse Output / 4–20 mA
  • Communication: RS485 (Modbus) / HART
  • Operating Temperature: −50°C to +125°C (integrated)
  • Extended Temperature Range: −50°C to +300°C depending on configuration
  • Protection Rating: IP67
  • Power Consumption: 10–15 W
  • Process Connection: DIN / ANSI

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    Comprehensive Services Using This Product

    From installation to ongoing support, we’re with you every step of the way.

    What Customers Say About Us

    Trusted Engineering Support

    The team provided clear technical guidance and practical solutions. Execution was smooth and well coordinated throughout.

    Mr. Vivek Nair
    Mr. Vivek NairGeneral Manager – Operations, Cement Industry
    Dependable Technical Partner

    Their approach was systematic and aligned with our plant needs. Overall experience with product and service has been positive.

    Ms. Kavita Rao
    Ms. Kavita RaoSenior Manager – Maintenance, Steel Sector
    Application-Focused Solutions

    They understood our process conditions before recommending equipment. Support during installation was handled professionally.

    Mr. Rohan Mehta
    Mr. Rohan MehtaProject Lead – Power Plant
    Consistent Service Delivery

    Product performance has been stable in regular operations. The support team responds in a timely manner.

    Mr. Anil Deshmukh
    Mr. Anil DeshmukhInstrumentation Head, Process Manufacturing

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    Frequently Asked Questions About This Product

    A Coriolis mass flow meter measures mass flow directly by detecting the Coriolis force generated when fluid flows through vibrating tubes.
    The TCMF series can measure mass flow, fluid density, temperature, and water content simultaneously.
    Industries include oil & gas, chemical processing, food and beverage, pharmaceuticals, and marine fuel systems.
    Yes. The TCMF series supports both liquid and gas flow measurement depending on configuration.
    The meter supports RS485 Modbus communication and HART protocol, along with analog and pulse outputs.

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