Series 50 Model 53 - Exhaust to Atmosphere


3-Way Normally Closed Valve (Exhaust to Atmosphere)


Our original mini — engineered for space economy without sacrificing performance. Typical applications include medical, analytical instrumentation. Air, water, and other fluids compatible with standard Buna seals. Hot water, steam, gasoline, and many oils require special seal materials.

  • Tough with options to use in hazardous location environments or low watt applications.
  • High quality engineering.
Valve specifications — Series 50 Model 53 - Exhaust to Atmosphere
MAX. OPER.
PRESS. DIFF.
ORIFICE SIZECV FACTORVALVE NUMBER
GROMMET HOUSING
CONDUIT HOUSING
ACDCINLETEXHINLETEXH1/8 NPT PORTS1/8 NPT PORTS
2002001/321/32.022.02053GG8DGM53GG8DCM
1501503/643/64.055.04853HH8DGM53HH8DCM
1501503/641/16.055.07553HJ8DGM53HJ8DCM
1001001/161/16.075.07553JJ8DGM53JJ8DCM
60603/321/16.156.07553KJ8DGM53KJ8DCM
50503/323/32.156.15053KK8DGM53KK8DCM
30301/81/16.230.07553NJ8DGM53NJ8DCM
30301/83/32.230.15053NK8DGM53NK8DCM

Ordering Information:

When ordering valves or repair packs add voltage and frequency to complete valve number. for examples: valve (53JJ8DGM 120/60) repair pack (K53JJD AC)

When ordering operators add the letter “O” to the front of the valve number, replace body port number with the letter “D”: example: operator (O53JJDDGM 120/60)


Operating Conditions

Media
Air, water, and other fluids compatible with standard Buna seals. Hot water, steam, gasoline, and many oils require special seal materials. (Series 50 pressure ratings may change due to the viscosity of the liquid.)*
Valve Temperature Range
Standard Valves – 0°F (-18°C) to 104°F (40°C) ambient; 0°F (-18°C) to 150°F (65°C) media. Optional Valves – can tolerate much higher or much lower ambient and media temperatures.*
Maximum Operating Pressure Differentials
See table above.
Burst Pressure
5000 PSI
Leakage
Bubble tight for standard valves.
Vacuum
To 5 Microns*

Electrical Characteristics

Coil Voltage
12/DC, 24/DC, 48/DC, 125/DC, 120/60-110/50, 240/60, and 24/60.
Nominal Power
AC — 6.0 Watts, DC — 7.0 Watts
Coil Construction
Molded and potted Class F. (Class H optional)
Typical Response Time on Air
4 - 16 Milliseconds
Operating Speed
Up to 600 CPM
Duty Cycle
Continuous

Mechanical Characteristics

Body
Stainless Steel (Std.), Brass (Opt.) or Aluminum (Opt.)
Internal Components
Stainless Steel. Copper – AC Only.
Elastomers
Nitrile (Buna) (Std.). Many other elastomers available.*
Orifice Diameter
See table above.
Porting
Standard 1/8" NPT (other ports available).*
Housing
Grommet and 1/2" NPT conduit - many options available.*
Listings
Most valves are UL and CSA listed.*
Life Expectancy
Millions of cycles, depending on application, lubrication, etc.
Valve Weight
Grommet Valve: 0.38 lb Conduit Valve: 0.44 lb
Repair Packs
See table above.
Options
Alternate Port Locations, Metering, Alternate Elastomers, Low Wattage, Spade Terminal Coil and Explosion Proof

SERIES 50 STACKING BODIES COMMON OUTLET GROMMET WITH LEADS EXHAUST TO ATMOSPHERE

Technical drawing — MODEL 53 3WNC TACKING BODIES COMMON OUTLET GROMMET WITH LEADS EXHAUST TO ATMOSPHERE
MODEL 53 3WNC TACKING BODIES COMMON OUTLET GROMMET WITH LEADS EXHAUST TO ATMOSPHERE
 

SERIES 50 STACKING BODIES COMMON OUTLET SPADE COIL WITH YOKE EXHAUST TO ATMOSPHERE

Technical drawing — MODEL 53 3WNC STACKING BODIES COMMON OUTLET SPADE COIL WITH YOKE EXHAUST TO ATMOSPHERE
MODEL 53 3WNC STACKING BODIES COMMON OUTLET SPADE COIL WITH YOKE EXHAUST TO ATMOSPHERE
 

Series 50 General Purpose Valves Conduit

Technical drawing — MODEL 53 3WNC EXHAUST TO ATMOSPHERE CONDUIT CONNECTION
MODEL 53 3WNC EXHAUST TO ATMOSPHERE CONDUIT CONNECTION
Technical drawing — MODEL 53 STUD MOUNT BODY 3WNC EXHAUST TO ATMOSPHERE CONDUIT CONNECTION
MODEL 53 STUD MOUNT BODY 3WNC EXHAUST TO ATMOSPHERE CONDUIT CONNECTION
 

Series 50 General Purpose Valves Grommet

Technical drawing — MODEL 53 3WNC EXHAUST TO ATMOSPHERE GROMMET WITH LEADS
MODEL 53 3WNC EXHAUST TO ATMOSPHERE GROMMET WITH LEADS
Technical drawing — MODEL 53 STUD MOUNT BODY 3WNC EXHAUST TO ATMOSPHERE GROMMET WITH LEADS
MODEL 53 STUD MOUNT BODY 3WNC EXHAUST TO ATMOSPHERE GROMMET WITH LEADS
 

Series 50 General Purpose Valves Yoke Leads

Technical drawing — MODEL 53 3WNC EXHAUST TO ATMOSPHERE YOKE WITH LEADS
MODEL 53 3WNC EXHAUST TO ATMOSPHERE YOKE WITH LEADS
Technical drawing — MODEL 53 STUD MOUNT BODY 3WNC EXHAUST TO ATMOSPHERE YOKE WITH LEADS
MODEL 53 STUD MOUNT BODY 3WNC EXHAUST TO ATMOSPHERE YOKE WITH LEADS
 

Series 50 General Purpose Valves Yoke Spades

Technical drawing — MODEL 53 3WNC EXHAUST TO ATMOSPHERE YOKE WITH SPADE TERMINALS
MODEL 53 3WNC EXHAUST TO ATMOSPHERE YOKE WITH SPADE TERMINALS
Technical drawing — MODEL 53 STUD MOUNT BODY 3WNC EXHAUST TO ATMOSPHERE YOKE WITH SPADE TERMINALS
MODEL 53 STUD MOUNT BODY 3WNC EXHAUST TO ATMOSPHERE YOKE WITH SPADE TERMINALS
 

SERIES 50 STACKING BODIES COMMON OUTLET CONDUIT CONNECTION EXHAUST TO ATMOSPHERE

Technical drawing — MODEL 53 3WNC STACKING BODIES COMMON OUTLET CONDUIT CONNECTION EXHAUST TO ATMOSPHERE
MODEL 53 3WNC STACKING BODIES COMMON OUTLET CONDUIT CONNECTION EXHAUST TO ATMOSPHERE
 
Nomenclature, all valve series except 58

Cv Flow Formulae

PeterPaul has created this page for you so you can calculate the flow or Cv (flow coefficient) to make the relationship visible between the pressure drop (the difference in pressure between two points of a liquid/gas carrying network) and the flow rate.

The use of this flow coefficient (Cv) calculator offers a standard calculation to compare valve capacities and sizing for a wide range of applications. The type and sizing of a valve or regulator can have a large impact on the performance of the assembly for transferring gas or liquids in the system.

Our sales department is ready to answer questions and to solve your valve needs. Please feel free to call, chat or email us.

Liquid Flow

Calculate Flow in GPM
PSI
GPM
Calculate Cv
GPM
PSI
Calculate P1−P2
GPM
PSI

Gas Flow P2 > 53% of P1 (subsonic)

Calculate Flow in CFM
PSIA
PSIA
°R
CFM
Calculate Cv
CFM
PSIA
PSIA
°R
Calculate P1 (approx.)
CFM
PSIA
°R
PSIA
Calculate P2 (approx.)
CFM
PSIA
°R
PSIA

Gas Flow P2 < 53% of P1 (sonic)

Calculate Flow in CFM
PSIA
°R
CFM
Calculate Cv
CFM
PSIA
°R
Calculate P1
CFM
°R
PSIA

DISCLAIMER: Gas flow is only an approximation using Cv.