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Rosemount 3095MFC Compact Orifice Flow Meter

Rosemount Flowmeter

Rosemount Flowmeter 3095MFC Compact Orifice Flow Meter


  • Ideal for gas & steam, suitable for liquids
  • 1/2 to 12″ pipe size
  • Accuracy: +/- 0.7% of rate for gas and steam
  • 8:1 flow turndown
  • 4-20mA signal based on Hart Communication or FOUNDATION fieldbus
  • Simple installation
  • Reduced straight pipe run
  • Direct mounting capable
  • Centering mechanism
  • Dynamically calculates compensated mass flow

Rosemount Flowmeter

Rosemount Flowmeter 3095MFC Compact Orifice Flow Meter

Compact Orifice Rosemount Flowmeters
3051SFC, 3095MFC, 3051CFC, 2051CFC, 405PIt’s no coincidence that orifice plates are still the most popular flow technology. They provide reliable and accurate flow measurement for gas, liquid and steam applications. Compact Orifice flowmeter installations are straightforward and affordable.

The Rosemount 405P Compact Orifice Flowmeter is designed for closed loop control and general purpose monitoring applications. This design lowers the total installed cost of DP Flow measurement points eliminating the need for fittings, impulse tubing, valves, adapters and manifolds by providing a single device packaged together for simplified installation. By integrating Rosemount pressure transmitters with the 405 Compact Orifice primary element, we deliver the highest performing Flowmeters which arrive assembled, calibrated, pressure tested, and ready to install.

Features of the Rosemount Compact Orifice Flowmeter include:

Available up to ANSI 600# pressure rating
Follows industry standard utilizing ASME and ISO corner tap design
Installation between existing raised-faced flanges
Self centering ring ensure optimal accuracy while improving installation

Applications for the Rosemount 3095MFC Compact Orifice Flowmeter

Oil and Gas Production
Pulp and Paper
Natural Gas

Rosemount 3095MFC Series compact orifice flow meter is ideal for mass flow measurement of gases and steam. The 3095MFC measures differential pressure, static pressure, process temperature (remotely), and dynamically calculates compensated mass flow. Measurements are repeatable and accurate to ±0.70% of mass flow rate. A centering mechanism helps eliminate improper installation which can result in significant errors in readings.