Pressure

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

1 - 29 of 29 Products
Pressure sensor Cerabar PMC21
Endress+Hauser
Pressure sensor Cerabar PMC21
Fundamental Fundamental
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Pressure sensor Cerabar PMP21
Endress+Hauser
Pressure sensor Cerabar PMP21
Fundamental Fundamental
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Pressure switch Ceraphant PTC31B
Endress+Hauser
Pressure switch Ceraphant PTC31B
Fundamental Fundamental
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Deltabar Evo 2 PMD75B/78B PMD78B
Endress+Hauser
Deltabar Evo 2 PMD75B/78B PMD78B
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Hydrostatic level sensor Deltapilot FMB70
Endress+Hauser
Hydrostatic level sensor Deltapilot FMB70
Extended Extended
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Pressure sensor Cerabar PMP11
Endress+Hauser
Pressure sensor Cerabar PMP11
Fundamental Fundamental
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Deltabar FMD71/72
Endress+Hauser
Deltabar FMD71/72
Extended Extended
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Pressure sensor Cerabar PMC11
Endress+Hauser
Pressure sensor Cerabar PMC11
Fundamental Fundamental
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Hydrostatic level sensor Deltapilot FMB52
Endress+Hauser
Hydrostatic level sensor Deltapilot FMB52
Lean Lean
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Cerabar PMP71B
Endress+Hauser
Cerabar PMP71B
Extended Extended
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Deltabar FMD71/72 FMD72
Endress+Hauser
Deltabar FMD71/72 FMD72
Extended Extended
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Hydrostatic level sensor Waterpilot FMX21
Endress+Hauser
Hydrostatic level sensor Waterpilot FMX21
Fundamental Fundamental
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Hydrostatic level sensor Waterpilot FMX11
Endress+Hauser
Hydrostatic level sensor Waterpilot FMX11
Fundamental Fundamental
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Pressure sensor Cerabar SIT PMP50
Endress+Hauser
Pressure sensor Cerabar SIT PMP50
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Hydrostatic level sensor Deltapilot FMB53
Endress+Hauser
Hydrostatic level sensor Deltapilot FMB53
Lean Lean
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Pressure sensor Cerabar PMP23
Endress+Hauser
Pressure sensor Cerabar PMP23
Fundamental Fundamental
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Differential pressure transmitter Deltabar Evo 2 PMD55B
Endress+Hauser
Differential pressure transmitter Deltabar Evo 2 PMD55B
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Pressure switch Ceraphant PTP31B
Endress+Hauser
Pressure switch Ceraphant PTP31B
Fundamental Fundamental
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Pressure sensor Cerabar Evo 2 PMx51B PMC51B
Endress+Hauser
Pressure sensor Cerabar Evo 2 PMx51B PMC51B
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Hydrostatic level sensor Deltapilot FMB51
Endress+Hauser
Hydrostatic level sensor Deltapilot FMB51
Lean Lean
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Hydrostatic level sensor Deltapilot FMB50
Endress+Hauser
Hydrostatic level sensor Deltapilot FMB50
Lean Lean
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Differential pressure transmitter Deltabar SIT PMD50
Endress+Hauser
Differential pressure transmitter Deltabar SIT PMD50
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Pressure sensor Cerabar PMP63B
Endress+Hauser
Pressure sensor Cerabar PMP63B
Extended Extended
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Pressure sensor Cerabar Evo 2 PMx51B PMP51B
Endress+Hauser
Pressure sensor Cerabar Evo 2 PMx51B PMP51B
Lean Lean
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Differential pressure transmitter Deltabar PMD63B
Endress+Hauser
Differential pressure transmitter Deltabar PMD63B
Extended Extended
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Pressure sensor Cerabar PMP43
Endress+Hauser
Pressure sensor Cerabar PMP43
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Cerabar PMC71B
Endress+Hauser
Cerabar PMC71B
Extended Extended
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Deltabar Evo 2 PMD75B/78B
Endress+Hauser
Deltabar Evo 2 PMD75B/78B
Extended Extended
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Pressure switch Ceraphant PTP33B
Endress+Hauser
Pressure switch Ceraphant PTP33B
Fundamental Fundamental
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Pressure

Pressure measurement comprises transmitters and sensing elements that quantify absolute, gauge, and differential pressure in liquids, pastes, and gases. Because pressure is directly tied to equipment protection and process stability, it is one of the most widely applied measurements in process automation. Beyond direct pressure indication, the same technology is commonly used to infer level (hydrostatic head) and flow (differential-pressure flow measurement) when appropriate primary elements are used.

Absolute and gauge pressure instruments address sealed, vented, and vacuum-related applications, while differential pressure measurement targets filters, pumps, heat exchangers, and flow elements where ΔP is the critical variable. Selecting sensor technology and process isolation concepts is driven by temperature, overpressure potential, corrosion and abrasion, hygienic requirements, and the need for hazardous-area or safety approvals.

Benefits include improved process safety through reliable alarming, protection of rotating equipment via suction/discharge monitoring, and tighter control of reactors, columns, and utility systems. Differential pressure across strainers and filters provides early indication of fouling, while stable pressure measurement supports consistent flow and temperature control performance. Where digital communication and diagnostics are available, device health information can shorten troubleshooting cycles and support proactive maintenance.

Typical applications span chemical and petrochemical processing (reactors, distillation, transfer lines), water and wastewater (pump stations, distribution pressure, filter monitoring), power and utilities (steam systems and condensate return), and hygienic production (vessels, skids, and clean utilities). Pressure-based level measurement is widely used in tanks and sumps where density is stable, and differential pressure is applied to measure interface or density under defined conditions.

Long-term accuracy and reliability depend on correct selection of wetted materials, impulse line or capillary design where used, mounting location, and protection against vibration, thermal cycling, and pressure spikes. Standardized configuration, calibration documentation, and integration into control and asset-management systems help maintain consistent performance over the instrument lifecycle. 
Endress+Hauser

Miller Mechanical Specialties, an exclusive authorized representative of sales and service for Endress+Hauser.