This item is now discontinued. We recommend the following as suggested replacements: EW-68826-28

NEMA 4X I/P Transducer, 6 to 30 psi

Representative image only.
Item # EW-68827-18
Field selectable direct and reverse modes
  • Accuracies of ±0.15% and ±0.25% of span
  • Intrinsically safe input on all models
  • Explosion-proof enclosure (STD6000 models only)
  • Rugged NEMA 4X and IP65 enclosures on all models

SPECS & DESCRIPTION

Specifications & Description

  • Max Inlet Pressure (PSI)35
  • Forward Flow Capacity (SCFM)4
  • Min Operating Temperature (° F)-40
  • Max Operating Temperature (° F)150
  • Min Operating Temperature (° C)-40
  • Max Operating Temperature (° C)66
  • Control Range (low) (PSI)6
  • Control Range (high) (PSI)30
  • Process Connection NPT(F) (in)1/4
  • Electrical Connections2½\" NPT(F) conduit terminals for 12-22 AWG wire
  • ApprovalNEMA 4X/IP65
  • Inlet Gauge Range (PSI)35
  • DescriptionNEMA 4X I/P Transducer, 6 to 30 psi
Conformite EuropeenneCanadian Standards AssociationIP 65

Key Features

  • Accuracies of ±0.15% and ±0.25% of span
  • Intrinsically safe input on all models
  • Explosion-proof enclosure (STD6000 models only)
  • Rugged NEMA 4X and IP65 enclosures on all models

More About this Item

Immune to shock and vibration, the Brandt current-to-pressure (I/P) transducer is built for rugged, industrial environments. The field-proven E-Pi transducer technology is a revolutionary breakthrough that provided the industry with its first “solid state” I/P transducer.

This advanced E-Pi technology uses a minimal amount of electrical energy and air consumption to convert a 4 to 20 input signal to a proportional pneumatic output signal. This pneumatic (backpressure) output is precisely modulated by a virtually weightless, low-mass membrane that is held in a continuously balanced position. The output of the E-Pi is fed into an integral volume booster to deliver a pneumatic output signal with an output capacity of 4.0 scfm. Overall performance, accuracy and repeatability are further enhanced via an internal feedback network that allows the transducer to quickly respond to input changes. These balanced supply and exhaust dynamics enhance stability while delivering accuracy of ±0.15% of span for superior process control.

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