Allicdata Part #: | 966-1143-ND |
Manufacturer Part#: |
81519035 |
Price: | $ 80.23 |
Product Category: | Industrial Controls |
Manufacturer: | Crouzet |
Short Description: | SOLENOID VALVE 3/2 NC SUBBASE MT |
More Detail: | 3/2 Normally Closed Solenoid Valve Sub-Base Mount |
DataSheet: | 81519035 Datasheet/PDF |
Quantity: | 6 |
1 +: | $ 72.94140 |
Connection Method: | -- |
Weight: | 0.077 lb (34.93g) |
Approvals: | ATEX, CE |
Mechanical Life: | 15,000,000 Cycles |
Operating Temperature: | -10°C ~ 50°C |
Ingress Protection: | IP20 |
Features: | Supply Voltage 24VDC |
Mounting Type: | Sub-Base Mount |
For Use With/Related Products: | -- |
Series: | -- |
Fluid Type: | Air, Inert Gas |
Orifice Diameter: | 0.020" (0.50mm) |
Operating Pressure: | 15 ~ 116 PSI (1 ~ 8 bar) |
Actuator Type: | -- |
Function: | 3/2 Normally Closed |
Type: | Solenoid Valve |
Part Status: | Active |
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Pneumatics
Pneumatics is a technology that uses pressurised gas, or air, to mechanically generate power or operate machinery. It can be used in many different circumstances but is mainly used in industrial and engineering applications to produce mechanical force and motion. Pressurised gas can be used to power tools, compress and move air for production processes, and power hydraulic systems. It is a useful and versatile system that is widely used to operate machines and machinery.
Hydraulics
Hydraulics is a technology that uses pressurized liquid, or fluid, to mechanically generate power or operate machinery. The hydraulic system is based on the principle of Pascal\'s law, which states that the pressure applied to a confined fluid is transmitted undiminished in all directions throughout that confined space. The hydraulic system works by forcing pressurized fluid through pipes and tubes to a receptacle where it can generate mechanical force to move an object or machine. It is commonly used in automotive, crane, and construction industries and is one of the most efficient ways of generating and using mechanical energy.
81519035 Application Field and Working Principle
Pneumatics and hydraulics are widely used in a variety of industries and applications. In industrial and engineering applications, pneumatics is commonly used for the operation of actuators, pumps, valves, and motors, as well as to generate force. It is also used in many production processes and automated systems, and can be used to control the movement of components in a machine. Hydraulics is typically used to generate force, power, and motion in applications where high torque and relatively low speed are required, such as in construction, mining, and agricultural equipment. It is also used in industrial and engineering applications to power hydraulic systems, to control valves or actuators, and to move components in automated systems.
Pneumatics and hydraulics work on very similar principles. In both systems, pressurized gas or liquid is used to generate mechanical force. In pneumatics, the pressurised gas is used to expand and contract an air chamber, which then causes a piston or actuator to move. In hydraulics, pressurised fluid is used to cause a piston to move, which in turn produces mechanical force. In both systems, the piston, actuator, or valve is connected to a control system, which is used to regulate the pressure, direction, and speed of the movement.
The difference between pneumatics and hydraulics is mainly in the types of fluids they use and the way in which they are used. Pneumatics uses a gas, usually air, to expand an air chamber, while hydraulics uses a liquid, usually hydraulic fluid, to move a piston. Additionally, pneumatics is often used to generate relatively low levels of force with high speeds, while hydraulics is typically used to generate higher amounts of force with relatively low speeds.
Pneumatics and hydraulics are both versatile and reliable technologies that are widely used in many different industries. They are an essential part of industrial and engineering applications and are used to power, move, and control machines and systems. It is important to know the differences between the two systems and understand their working principles in order to accurately apply them in a given situation.
The specific data is subject to PDF, and the above content is for reference
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