Pressure

Powerful instruments for process pressure, differential pressure, level and flow.

1 - 27 of 27 Products
Absolute and Gauge Pressure Cerabar PMC21
Endress+Hauser
Absolute and gauge pressure Cerabar PMC21
Fundamental Fundamental
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Absolute and Gauge Pressure Ceraphant PTC31B
Endress+Hauser
Absolute and gauge pressure Ceraphant PTC31B
Fundamental Fundamental
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Deltabar PMD75B Differential Pressure Transmitter
Endress+Hauser
Deltabar PMD75B - differential pressure transmitter
Extended Extended
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Electronic Differential Pressure Deltabar FMD71
Endress+Hauser
Electronic differential pressure Deltabar FMD71
Extended Extended
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Absolute and Gauge Pressure Cerabar PMP21
Endress+Hauser
Absolute and gauge pressure Cerabar PMP21
Fundamental Fundamental
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Cerabar PMP51B Pressure Transmitter
Endress+Hauser
Cerabar PMP51B - pressure transmitter
Lean Lean
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Absolute and Gauge Pressure Ceraphant PTP31B
Endress+Hauser
Absolute and gauge pressure Ceraphant PTP31B
Fundamental Fundamental
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Hydrostatic Level Measurement Deltapilot FMB53
Endress+Hauser
Hydrostatic Level measurement Deltapilot FMB53
Lean Lean
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Absolute and Gauge Pressure Ceraphant PTP33B
Endress+Hauser
Absolute and gauge pressure Ceraphant PTP33B
Fundamental Fundamental
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Cerabar PMP71B Pressure Transmitter
Endress+Hauser
Cerabar PMP71B - pressure transmitter
Extended Extended
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Cerabar PMP50 Pressure Transmitter
Endress+Hauser
Cerabar PMP50 – pressure transmitter
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Hydrostatic Level Measurement Waterpilot FMX11
Endress+Hauser
Hydrostatic Level measurement Waterpilot FMX11
Fundamental Fundamental
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Absolute and Gauge Pressure Cerabar PMP23
Endress+Hauser
Absolute and gauge pressure Cerabar PMP23
Fundamental Fundamental
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Gauge Pressure Cerabar PMC11
Endress+Hauser
Gauge pressure Cerabar PMC11
Fundamental Fundamental
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Hydrostatic Level Measurement Deltapilot FMB51
Endress+Hauser
Hydrostatic Level measurement Deltapilot FMB51
Lean Lean
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Cerabar PMC51B Pressure Transmitter
Endress+Hauser
Cerabar PMC51B - pressure transmitter
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Deltabar PMD78B Differential Pressure Transmitter
Endress+Hauser
Deltabar PMD78B - differential pressure transmitter
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Hydrostatic Level Measurement Deltapilot FMB50
Endress+Hauser
Hydrostatic Level measurement Deltapilot FMB50
Lean Lean
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Deltabar PMD55B Differential Pressure Transmitter
Endress+Hauser
Deltabar PMD55B - differential pressure transmitter
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Cerabar PMP43 Hygienic Pressure Transmitter
Endress+Hauser
Cerabar PMP43 – hygienic pressure transmitter
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Gauge Pressure Cerabar PMP11
Endress+Hauser
Gauge pressure Cerabar PMP11
Fundamental Fundamental
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Cerabar PMC71B Pressure Transmitter
Endress+Hauser
Cerabar PMC71B - pressure transmitter
Extended Extended
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Deltabar PMD50 Differential Pressure Transmitter
Endress+Hauser
Deltabar PMD50 - differential pressure transmitter
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Hydrostatic Level Measurement Deltapilot FMB70
Endress+Hauser
Hydrostatic Level measurement Deltapilot FMB70
Extended Extended
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Hydrostatic Level Measurement Waterpilot FMX21
Endress+Hauser
Hydrostatic Level measurement Waterpilot FMX21
Fundamental Fundamental
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Hydrostatic Level Measurement Deltapilot FMB52
Endress+Hauser
Hydrostatic Level measurement Deltapilot FMB52
Lean Lean
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Electronic Differential Pressure Deltabar FMD72
Endress+Hauser
Electronic differential pressure Deltabar FMD72
Extended Extended
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Pressure

Pressure measurement covers absolute, gauge, and differential pressure—and it is frequently leveraged indirectly for level and flow applications via hydrostatic and differential-pressure flow methods. Endress+Hauser frames pressure technology as broadly applicable to liquids, pastes, and gases, with a wide range of sensor technologies intended to fit diverse applications. The product categorization explicitly ties pressure to absolute/gauge measurement as well as hydrostatic level and differential-pressure flow measurement. 

Modern pressure instrumentation typically integrates sensing, temperature compensation, signal processing, and communication in compact, field-ready assemblies. Selection commonly considers measurement range and turndown, overload capability, wetted material compatibility, diaphragm and seal options for corrosive or hygienic service, and the impact of impulse-line dynamics in differential applications. Integration and configuration features can also be important, especially where standardization is required across a large installed base.

Benefits include stable control of reactors and utilities, improved equipment protection, and earlier detection of abnormal conditions such as plugged impulse lines, filter loading, pump cavitation risk, or heat-exchanger fouling indicated by shifting differential pressures. Digital communications and common industrial protocols enable streamlined commissioning, device diagnostics, and consistent integration into automation and asset management practices; Endress+Hauser lists common interfaces including analog 0/4–20 mA, HART, FOUNDATION Fieldbus H1, PROFIBUS PA, and PROFINET over Ethernet-APL, among others.

Typical applications include pump discharge and suction monitoring, compressor and gas header control, vessel pressure control, boiler and steam systems, custody and process DP flow elements, and hydrostatic tank level in open or vented vessels. Differential pressure is also widely used for filter monitoring, HVAC/process ventilation control, and flow verification where primary elements are already installed.

High-performance results depend on installation details: proper impulse line routing and heat tracing where needed, avoiding trapped gas in liquid lines (or liquid in gas lines), and managing condensation in steam service. For sealed or remote diaphragm installations, capillary routing and temperature gradients must be considered as part of the measurement uncertainty. Proof testing, calibration strategy, and safety instrumented function alignment should be defined with the same rigor as the measurement range selection.

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