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4V310-10

5 year ago
148 0
Product details

4V310-10 Pneumatic Solenoid Valve 5 Way 2 Position


4V series solenoid valve includes 4V310-08, 4V320-08, 4V330C-08, 4V330E-08, 4V330P-08, 4V310-10, 4V320-10, 4V330C-10, 4V330E-10, 4V330P-10. 4V310-10 solenoid valve adopts overall acceleration structure. Valve holes are treated with special high-precision finishing technology. This product has good performance and long service life and is widely used in pneumatic systems. It can form an integrated valve group with the base to save installation space. Equipped with attached manual equipment for easy installation and commissioning. Several standard voltage levels are optional.


Overall Dimension of 4V310-10 G3/8'' 5/2 Way Pneumatic Solenoid Valve:

4V310-10


Details of 4V310-10 AirTAC Type 5/2 Way Pneumatic Solenoid Valve:



Specifications of 4V300 Series Directional Control Solenoid Valves:

Model
4V310-08
4V320-08
4V330C-08
4V330E-08
4V330P-08
4V310-10
4V320-10
4V330C-10
4V330E-10
4V330P-10
Fluid
Air(to be filtered by 40 μ m filter element)
Acting
Internal pilot or external pilot
Port Size
In=Out=Exhaust=1/4''
In=Out=3/8'' Exhaust=1/4''
Orifice Size
25.00 mm2 (Cv=1.40)
18.00 mm2 (Cv=1.00)
30.00 mm2 (Cv=1.68)
18.00 mm2 (Cv=1.00)
Valve Type
5 port 2 position
5 port 3 position
5 port 2 position
5 port 3 position
Operating Pressure
0.15~0.8MPa(21~114psi)
Proof Pressure
1.5MPa(215psi)
Working Temperature
5~50
Material of Body
Aluminum alloy
Max. frequency
4 cycle/sec
4 cycle/sec
4 cycle/sec
4 cycle/sec

Factory Production of 4V Series 5/2 Way Pneumatic Solenoid Valve:



Function of 4V series 5/2 Way Pneumatic Solenoid Valve in pneumatic system:

Pneumatic valves are among the collection of gears responsible for controlling the pressure, speed, and quantity of air as it passes through a pneumatic system. These systems depend on the strength of dense air to send out power; can be found in innumerable industrial purposes, from pneumatic pressure control gear to diesel engines.

 

In double working cylinders, air stress is supplied off and on to the comparative surface of the pressure supplier, creating a drivingpower and a withdrawing force. As the active part of the pressure provider is trivial, the drive formed through the withdrawal is comparatively weak.


Pneumatic valves moves air all through a bigger pneumatic system by either permitting or restraining the stream of condensed air, whose power is then meant to control a device. Because valves can contain different areas of entrance for air, generating diverse flow models, valves are categorized on the basis of the amount of ports they own and the flow-paths they generate.

 

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