EAD Timer Controlled Condensate Drain – 230 psi

The EAD has been designed for general-purpose applications. It is a mass produced, no options drain, though still incorporating the flexibility to be widely applied and has quality benefits over competitor products such as a large discharge orifice and FPM seals for systems where synthetic lubricants are used.

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  • Timer Manual TEST switch- Yes, micro switch
  • Timer Environmental protection- IP 65, NEMA 4 when installed properly
  • Valve Insulation- H grade
  • Valve Environmental protection- IP 65 (NEMA 4)
  • Valve Body- Forged brass, orifice 4mm
  • Mounting in any position – Yes
  • Bright LED for clearer indication of operating status
Item #
Item Name
Valve In/Out Port (NPT Female)
Working Pressure (Max)
Timer Working Voltage
2301 EAD 1/4″ 230 PSI 230 VAC
2321 EAD 1/4″ 230 PSI 115 VAC
2302 EAD 3/8″ 230 PSI 230 VAC
2322 EAD 3/8″ 230 PSI 115 VAC
2303 EAD 1/2″ 230 PSI 230 VAC
2323 EAD 1/2″ 230 PSI 115 VAC
Specifications
Product Name
EAD Timer Controlled Condensate Drain- 1/4 inch, 1/2 inch
Valve In/Out Port (NPT Female)
1/4 Inch
Working Pressure (Max)
230 psi
Working Pressure Range (Min-Max)
0 – 230 psi
Orifice Size
4.0 mm
Timer Working Voltage
230 VAC
Timer Voltage Options ± 10%
24—240 V AC/DC 50/60 Hz
Body Material
Brass
Timer Adjustable Interval Time
0.5 – 45 Minutes
Timer Adjustable Discharge Time
0.5 – 10 Seconds
Max. Timer Current Consumption
4 mA
Timer Operating Temperature
-40 to +140 °F
Timer Housing Material
ABS Plastic FR Grade
Timer Connection
DIN 43650A, ISO 440/6952
Timer Indicators
1 LED (yellow) indicating ON, 1 LED (yellow) indicating OFF
Valve Type
2/2 Way Direct Acting
Valve Ambient Temperature (Min/Max)
35 – 130 °F
Max. Valve Media Temperature
190 °F
Valve Voltage ± 10%
230 VAC or 115 VAC
Note for Valve Voltage
See coil for correct voltage.
Note: Float drains and manual drains are no longer accepted as reliable drains. Downstream processes can be seriously disrupted, simply because an unreliable drain has been applied. Float drains are notoriously known for their failure rate and are widely recognized.