Series 20 Model H24


3-WAY NORMALLY OPEN Valve


Using the heart of the highly successful model H22, Peter Paul Electronics Co., Inc., has a valve that allows the same media control as a three way normally open valve but at much higher pressure ratings than previously available. Pressure applied to the "IN" port must always be equal to or greater than the pressure in "CYL" port. Air and other non-corrosive gases, water and oil.

  • Made for higher pressure ratings.
  • Precision stainless steel plunger.
  • Kel-F pin and elastomeric sealing elements.
  • Orifice guides the sealing pin for near perfect alignment.
  • Simple construction...only three moving parts.
MAX. OPER.
PRESS. DIFF.
ORIFICE SIZECV FACTORVALVE NUMBER
GROMMET HOUSING
CONDUIT HOUSING
DCINLETEXH.INLETEXH.1/8 NPT PORTS1/4 NPT PORTS1/8 NPT PORTS1/4 NPT PORTS

1000*0.6 mm1/32.010.022H24MG7XGMH24MG9ZGMH24MG7XCMH24MG9ZCM

* FKM seals not recommended for pressure above 500 psi.

Ordering Information:

When ordering valves or repair packs add voltage and frequency to complete valve number. for examples: valve (H24MG7XGM 120/60) repair pack (KH24MGX 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 (OH24MGDDGM 120/60)


Operating Conditions

Media
Air and other non-corrosive gases, water and oil.
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
10,000 PSI
Leakage
Bubble tight.
Filtration
Down to 60 microns or less is recommended.

Electrical Characteristics

Coil Voltage
6, 12, 24, 125/DC
Nominal Power
DC — 9.5 Watts
Coil Construction
Molded Class F (Std.), Potted and Class H Option
Typical Response Time on Air
4 - 16 Milliseconds
Operating Speed
Up to 600 CPM with gas media
Duty Cycle
Continuous

Mechanical Characteristics

Internal Components
Stainless Steel
Elastomers
Nitrile (Buna) (Std.). Many other elastomers available.*
Sealing Pin
Kel-F (Std.), Delrin®, PEEK
Orifice Diameter
See table above.
Porting
1/8" and 1/4" NPT (other ports available).*
Mounting
Must be mounted within 30° of vertical.
Housing
Grommet and 1/2" NPT conduit - many options available.
Life Expectancy
Millions of cycles, depending on application, lubrication, etc.
Valve Weight
1.17 lbs
Repair Packs
See table above.
Options
Alternate Port Locations, Alternate Elastomers, Alternate Sealing Pin Materials, Spade Terminal Coil, and European Style DIN Coil*
 

Series 20 High Pressure Valves Conduit Connection


1/4 NPT, CONDUIT
 


1/8 NPT, CONDUIT
 

 

Series 20 High Pressure Valves DIN Connection


1/4 NPT, DIN 43650
 


1/8 NPT, DIN 43650
 

 

Series 20 High Pressure Valves Grommet Connection


1/4 NPT, GROMMET
 


1/8 NPT, GROMMET
 

 

Series 20 High Pressure Valves Yoke Leads


3WNC HIGH PRESSURE
1/4 NPT
YOKE & LEADS COIL
 


3WNC HIGH PRESSURE
1/8 NPT
YOKE & LEADS COIL
 

 

Series 20 High Pressure Valves Yoke Spades


3WNC HIGH PRESSURE
1/4 NPT
YOKE & SPADES COIL
 


3WNC HIGH PRESSURE
1/8 NPT
YOKE & SPADES COIL
 

 
Nomenclature, all valve series except 58

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


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Calculate P1-P2


Gas Flow P2 > 53% of P1 subsonic

Calculate Flow in CFM


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Approx. Calculate P1


Approx. Calculate P2


Gas Flow P2 < 53% of P1 sonic

Calculate Flow in CFM


Calculate Cv


Calculate P1