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Current to Pressure (I/P) Converter

Item# IP210-X120

Current to Pressure (I/P) Converter Current to Pressure (I/P) Converter
A “current to pressure” converter (I/P) converts an analog signal (4 to 20 mA) to a proportional linear pneumatic output (3 to 15 psig). Its purpose is to translate the analog output from a control system into a precise, repeatable pressure value to control pneumatic actuators/operators, pneumatic valves, dampers, vanes, etc. The IP210 is a loop-powered instrument, which eliminates the need for an external power supply (except for IP210-X120).

Principle of Operation
OMEGA's IP210 converts an analog signal (4 to 20 mA) to a proportional linear pneumatic output (3 to 15 psig). Its uncomplicated design and proven electromagnetic force balance deliver consistently high performance.

The IP210 provides a reliable, repeatable, accurate means of converting an electrical signal into pneumatic pressure. Its force balance principle is a coil suspended in a magnetic field on a flexible mount. At the lower end of the coil is a flapper valve that operates against a precision ground nozzle to create a backpressure on the servo diaphragm of a booster relay.

The input current flows in the coil and produces a force between the coil and the flapper valve, which controls the servo pressure and the output pressure.

Zero adjustment of the unit is made by turning a screw that regulates the distance between the flapper valve and the air nozzle. Span adjustment is made by varying a potentiometer, which shunts input current past the coil. An integral volume flow booster provides adequate flow capacity, resulting in fast response time and accurate control.
IP210-X120
  • Loop Power
  • Ideal for Pneumatic Control Systems
  • IP65 Sealed Case
  • Zero and Span Adjustments for Field Calibration
  • Rugged Zinc Cast Housing
Descirption
Output Range
Input Range
Connection
Flow Rate
 This item is available for quick shipping
See All Options
Quantity Price each
1-9 $665.00
10-24 $631.75
25-49 $618.45
50-99 $591.85
100-199 $578.55
200+ $565.25

In stock

Lead Time ( If not in Stock): 8 weeks

Product Specs

  • Accuracy Value 0.5% FS
  • Air Consumption 0.03 scfm
  • Diaphragm Material Nitrile
  • Flapper Material stainless steel/nylon
  • Housing Material Rugged Zinc Cast Housing
  • Input Resistance <300 Ω
  • Input Type Current
  • Maximum Ambient Temperature 70 {C} (160 {F})
  • Maximum Compensation Temperature 60 {C} (140 {F})
  • Maximum Supply Pressure 80 psig
  • Minimum Ambient Temperature -20 {C} (-5 {F})
  • Media Type Oil-free
  • Minimum Compensation Temperature -10 {C} (15 {F})
  • Minimum Supply Pressure 10 psi above maximum output pressure
  • Output Type Pressure
  • Power Source Loop Power
  • Port Type 1/4 FNPT
  • Recommended Supply Pressure 25 to 30 psig (filtered air)
  • Response Time less than 0.5 s (10 to 90% step)
  • Span Adjustment 20% FS
  • Supply Sensitivity 0.025% span per % supply pressure change
  • Thermal Effects <0.1%/°C over operating range
  • Zero Adjustment 5% FS

A “current to pressure” converter (I/P) converts an analog signal (4 to 20 mA) to a proportional linear pneumatic output (3 to 15 psig). Its purpose is to translate the analog output from a control system into a precise, repeatable pressure value to control pneumatic actuators/operators, pneumatic valves, dampers, vanes, etc. The IP210 is a loop-powered instrument, which eliminates the need for an external power supply (except for IP210-X120).

Principle of Operation
OMEGA's IP210 converts an analog signal (4 to 20 mA) to a proportional linear pneumatic output (3 to 15 psig). Its uncomplicated design and proven electromagnetic force balance deliver consistently high performance.

The IP210 provides a reliable, repeatable, accurate means of converting an electrical signal into pneumatic pressure. Its force balance principle is a coil suspended in a magnetic field on a flexible mount. At the lower end of the coil is a flapper valve that operates against a precision ground nozzle to create a backpressure on the servo diaphragm of a booster relay.

The input current flows in the coil and produces a force between the coil and the flapper valve, which controls the servo pressure and the output pressure.

Zero adjustment of the unit is made by turning a screw that regulates the distance between the flapper valve and the air nozzle. Span adjustment is made by varying a potentiometer, which shunts input current past the coil. An integral volume flow booster provides adequate flow capacity, resulting in fast response time and accurate control.

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