MFC10FC Differential Pressure Mass Flow Controller

Product code
MFC10FC
The MFC10FC uses differential pressure-based mass flow measurement, providing stable measurement without thermal drift or response lag. It can measure and display flow rate, total flow, pressure, and temperature simultaneously. An optional proportional solenoid valve and built-in PID control enable precise gas flow regulation. Unlike thermal mass flow meters, it is not affected by specific heat capacity when using gas conversion factors, maintaining reliable accuracy even when the measured gas differs from the factory calibration gas.
Accuracy
±1%F.S
Flow Range
0~(2SCCM...30SLM)
Repeatability
±1%F.S
Maximum withstand voltage
1MPa

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MFC10FC is a differential pressure-based gas mass flow controller designed for accurate and stable measurement and control of gas flow. Unlike thermal mass flow controllers, it does not rely on the specific heat capacity of the gas, helping minimize measurement errors when switching between different gases.

With integrated flow, pressure and temperature measurement, the MFC10FC provides a compact solution for gas process monitoring, laboratory instrumentation, analytical systems and industrial gas control.

Key Features

  • Differential pressure mass flow measurement with no thermal drift
  • ±1.0% F.S. accuracy under standard conditions after zero adjustment
  • 50:1 turndown ratio for the mass flow controller
  • Flow ranges from 100 SCCM to 30 SLM
  • Integrated measurement of flow rate, totalized flow, pressure and temperature
  • Fast response time of approximately 200 ms
  • No long warm-up requirement, with startup time of less than 5 seconds
  • Built-in gas conversion coefficients for multiple gases
  • No additional specific-heat-capacity error associated with thermal mass measurement
  • Available with RS232 or RS485 communication
  • Modbus RTU communication supported
  • 0–5 VDC, 1–5 VDC and 4–20 mA signal options
  • Optional solenoid proportional valve and PID control
  • Stainless steel construction for demanding gas applications
Product Overview

The MFC10FC uses a differential pressure-based mass flow measurement principle. Gas flow is measured through the relationship between differential pressure and gas flow characteristics rather than through the thermal properties of the gas.

This design provides an important advantage when the measured gas differs from the gas used during factory calibration. Since the measurement principle does not depend on the gas’s specific heat capacity, the MFC10FC avoids the additional specific-heat-related error commonly associated with thermal mass flow measurement.

For applications requiring automatic flow regulation, the controller can be equipped with a proportional control valve and integrated PID control to maintain the required gas flow setpoint.

Measurement & Control

The MFC10FC can provide multiple process parameters through its display and communication interfaces:

Parameter Function
Instantaneous Flow Real-time gas flow measurement
Totalized Flow Accumulated gas consumption
Pressure Integrated pressure measurement
Temperature Integrated gas temperature measurement
Setpoint Flow control target
Control Output PID-based gas flow regulation

The integrated measurement of multiple parameters makes the MFC10FC suitable for systems where flow monitoring and gas control need to be handled by a single instrument.

Gas Compatibility

The MFC10FC can be configured for different gases using built-in gas conversion coefficients. This allows one instrument platform to be adapted to a variety of gas measurement and control applications.

Typical applications include:

  • Nitrogen (N₂)
  • Oxygen (O₂)
  • Argon (Ar)
  • Carbon dioxide (CO₂)
  • Air
  • Hydrogen (H₂)
  • Other compatible gases

For special gases or demanding process conditions, please provide the gas type, flow range, pressure, temperature and required connection so we can confirm the appropriate configuration.

Applications
Application Typical Use Why MFC10FC
Gas Mixing & Blending Precise control of multiple gas streams for mixing and blending systems Stable flow measurement and fast response enable accurate gas ratio control
Laboratory & Analytical Equipment Gas supply for analytical instruments, laboratory testing and research equipment Compact design with flow, pressure and temperature monitoring
Industrial Process Control Gas flow measurement and regulation in manufacturing and process equipment ±1% F.S. accuracy and optional PID control support reliable process operation
Semiconductor & Electronics Controlled gas delivery for semiconductor and electronic manufacturing equipment High repeatability and flexible analog/communication interfaces
Gas Analysis Controlled gas flow for gas analyzers and analytical testing systems Multiple gas conversion coefficients simplify gas selection
Calibration & Test Systems Gas flow measurement and control for calibration benches and test equipment Wide turndown ratio and fast response provide flexible flow control
Food & Packaging Controlled gas supply for modified atmosphere packaging and food analysis Accurate gas flow control helps maintain consistent gas composition
Environmental Testing Gas supply and flow regulation for environmental monitoring and testing equipment Integrated measurement and digital communication simplify system integration
Research & Development Gas flow control for experimental setups and prototype systems Configurable flow ranges, signals and connections for different test requirements
MFC10FC vs. Thermal Mass Flow Controllers

A key advantage of the MFC10FC is its differential pressure measurement technology.

Thermal mass flow controllers determine flow based partly on the thermal characteristics of the gas. When the gas composition changes, its thermal properties can introduce additional measurement uncertainty.

The MFC10FC uses differential pressure-based mass flow measurement instead, so it is less dependent on the gas’s specific heat capacity. This makes it particularly useful for applications where different gases may be measured or where stable measurement performance is important.

Specifications

Item MFC10FC
Measurement Principle Differential Pressure Mass Flow
Flow Range 100 SCCM to 30 SLM
Accuracy ±1.0% F.S.
Repeatability ±1.0% F.S.
Controller Turndown Ratio 50:1
Flow Meter Turndown Ratio Up to 100:1
Typical Response Time Approx. 200 ms, adjustable
Startup Time <5 s
Maximum Operating Pressure 1 MPa
Operating Temperature +10 to +50°C
Wetted Material Stainless Steel
Protection Rating IP40
Power Supply 24–30 VDC
Communication RS232 / RS485
Communication Protocol Modbus RTU
Analog Input 0–5 VDC / 1–5 VDC / 4–20 mA
Analog Output 0–5 VDC / 1–5 VDC / 4–20 mA
Electrical Connection DB15
Display Optional LCD

Note: For flow ranges above 1 L/min, the control valve should be installed in the vertical orientation according to the installation requirements.

MFC10FC-L Ordering Code
Parameter Code Description
Series MFC10FC
Product Type C Mass Flow Controller
M Mass Flow Meter
Pressure Rating M 1 MPa
Local Display N Without LCD display
X With LCD display
Flow Range 100C 100 SCCM
200C 200 SCCM
300C 300 SCCM
500C 500 SCCM
001L 1 SLM
002L 2 SLM
003L 3 SLM
005L 5 SLM
010L 10 SLM
020L 20 SLM
030L 30 SLM
Measured Gas Refer to the gas density / gas conversion reference table
Flow Input Signal A1 0–5 VDC
A2 4–20 mA
A3 1–5 VDC
Output Signal B1 0–5 VDC
B2 4–20 mA
B3 1–5 VDC
Power Supply 5 ±15 VDC
4 24 VDC
Communication 8 RS485
2 RS232
Sealing Material P Perfluoroelastomer
V FKM / Fluororubber
N NBR / Nitrile Rubber
E EPDM
Y Other, please contact the manufacturer
Process Connection A Ø3 mm
B Ø6 mm
F 1/8″
G 1/4″
Y Other, please contact the manufacturer
Ordering Example

MFC10FC– C – M – 100C – 007 – A1 – B1 – 5 – 8 – V – A

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