Pressure Transmitter 4-20ma Calculator

Pressure Transmitter 4-20mA Calculator

How it works:

This calculator uses the following formula to convert pressure to a 4-20mA signal:

mA output = 4 + ((Current Pressure – Min Pressure) * (20 – 4) / (Max Pressure – Min Pressure))

Where:

  • 4mA corresponds to the minimum pressure
  • 20mA corresponds to the maximum pressure
  • The current pressure determines the mA output between 4 and 20

Based on the search results, I’ve created a comprehensive table summarizing key information about 4-20mA Pressure Transmitters:

AspectDetails
DefinitionA device that converts pressure measurements into a standardized 4-20mA current output signal
Operating PrincipleUses a sensing element to measure pressure and converts it to a proportional 4-20mA current
Signal Range4mA represents 0% of measured pressure, 20mA represents 100%
Power SupplyTypically 24V DC (loop-powered)
Wiring Configuration2-wire loop-powered (most common)
Pressure TypesGauge, Absolute, Differential, Vacuum/Suction, Compound
Typical Pressure Ranges0-50mbar to 0-6000bar (varies by model)
Advantages– Long distance signal transmission
– Low electromagnetic interference
– Simple 2-wire connection
– Fault detection (below 4mA indicates fault)
Disadvantages– Higher power consumption than voltage output
– Non-isolated supply and output
ApplicationsIndustrial process control, Oil & gas, Aerospace, HVAC, Water treatment
Key Features– Accuracy (typically 0.25% to 1% full scale)
– Temperature compensation
– Various material options for different media
Output CalculationmA output = 4 + ((Measured Pressure – Min Pressure) × 16) / (Max Pressure – Min Pressure)
IntegrationCompatible with most PLCs, DCS, and industrial control systems
Additional ProtocolsSome models support HART protocol for digital communication
CalibrationUsually requires applying known pressures and adjusting output
Installation ConsiderationsProper sealing, orientation, and electrical connections are crucial

This table provides a comprehensive overview of 4-20mA pressure transmitters, covering their basic principles, advantages, applications, and key considerations for use in industrial settings.

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