How to obtain reliable differential pressure measurements under high static pressure?

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how to obtain reliable hps differential measurements

As an oil, gas and hydrogen industrialist, you know that you have to maintain high safety standards.
Measuring with a differentialpressure transmitter is one of the most important aspects of pressure measurement technology.

The precision of these pressure transmitters guarantees theefficiency and safety of your process. If you're a field instrumentation engineer or production manager, protect your field installations from the risks associated with high-pressure operation, and take reliable measurements every time.


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What static pressure can your field instruments be exposed to?

Field instruments used in the oil, gas and hydrogen sectors can be exposed to static pressures of up to 20,000 Psi g.


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How does static pressure affect your pressure transmitter ?

Static pressure adversely affects the accuracy and repeatability of your differential pressure transmitter .

This can lead to inaccurate measurements and potentially catastrophic results.


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What are the consequences of incorrect differential pressure measurement on your installations?

Incorrect differential pressure measurement has many negative repercussions on your processes. It poses major risks for your plant and personnel.
Installing the wrong sensor not only leads to unfavorable results, but can also cause major safety problems.

  • Inaccurate flow measurement
  • Sudden critical pump shutdown
  • Reservoir overflows
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FCX differential pressure transmitter provides reliable measurement under very high static pressure

Thanks to its unique structure, the FCX differential pressure transmitter guarantees reliable measurement even under high static pressures, making it an ideal tool for your industries.

The FCX differentialpressure transmitter for high static pressure is the only transmitter with 4D Gyration™ technology to provide you with the most reliable and repeatable measurements under high static pressure applications.

This pressure transmitter minimizes errors over time while providing the highest pressure protection on the market, even in unstable or harsh environments.

It features extensive protection against high static pressure and damping of its influence.
By choosing the FCX differential pressure transmitter, you can avoid costly plant downtime.


Discover high statnt pressure transmitter


What are the unique advantages of the FCX differential pressure transmitter for measuring your process?

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Protection against high pressure

The FCX differential pressure transmitter features extensive protection against high pressures and damping of their influence.

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Eliminates the influence of static pressure

Thanks to its unique structure, the FCX differential pressure transmitter guarantees reliable measurements even under high static pressures, making it ideal for use in your industries.

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Giration 4D™ characterization for optimum precision

The pressure transmitter FCX is the only differential pressure transmitter featuring 4D Giration™ technology ensuring the most reliable and repeatable measurements in high static pressure applications, in accordance with IEC 62828-2 static pressure influence tests.

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Extended test protocol for the most repeatable results on the market

This pressure transmitter minimizes errors over time while providing the highest level of protection against static pressure on the market, even in unstable or harsh environments.

By choosing the FCX differential pressure transmitter, you can avoid costly plant downtime.


Do you want to protect your assets and oil production facilities?

You need reliable, high-performance, safe instruments for your applications.

By selecting an instrument that guarantees reliable measurements, even under high static pressure, you protect your oil, gas, petrochemical and chemical processes.

The FCX high-static differential pressure transmitter will maintain the integrity of these processes throughout the various stages of operation. This includes plant start-up, normal operations, and when your plant is operating at maximum capacity. So static pressure won't adversely affect your processes and productivity.