Allicdata Part #: | 966-1300-ND |
Manufacturer Part#: |
81547001 |
Price: | $ 0.00 |
Product Category: | Industrial Controls |
Manufacturer: | Crouzet |
Short Description: | SOLENOID VALVE 2/2 NC CHASSIS MT |
More Detail: | 2/2 Normally Closed Solenoid Valve Chassis Mount |
DataSheet: | 81547001 Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Specifications
Connection Method: | Threaded M5 |
Weight: | 0.077 lb (34.93g) |
Approvals: | -- |
Mechanical Life: | 1,500,000 Cycles |
Operating Temperature: | -5°C ~ 50°C |
Ingress Protection: | -- |
Features: | Supply Voltage 24VDC |
Mounting Type: | Chassis Mount |
For Use With/Related Products: | -- |
Series: | -- |
Fluid Type: | Air, Inert Gas, Liquid |
Orifice Diameter: | 0.032" (0.80mm) |
Operating Pressure: | 15 ~ 116 PSI (1 ~ 8 bar) |
Actuator Type: | -- |
Function: | 2/2 Normally Closed |
Type: | Solenoid Valve |
Part Status: | Obsolete |
Description
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Pneumatics and hydraulics both have valuable applications in the industrial world. These two fields use different techniques to produce motion or force, but they share similar principles of operation.Pneumatics is the use of pressurized gases to create and transmit mechanical force and motion. Most commonly, compressed air is used in pneumatics systems because it is relatively safe and inexpensive compared to other gases. The basic components of a pneumatic system are a reservoir for the compressed air, actuators to convert the pressure to motion, and connections to route the compressed air from the reservoir to the actuators.When a user of a pneumatic system wants to move an actuator or cylinder, they use a valve to open the flow path of the air. This causes the actuator to move in either direction, depending on the design of the system. When the valve is closed, the air pressure is sent to a second chamber in the actuator, causing the piston to move in the opposite direction. This creates movement of the piston, which imparts power on to other parts of a machine.Hydraulics uses liquids instead of air to create force or motion. The main benefit of using liquids is that they can be easily contained and pressurized. The most common hydraulic system components include a reservoir to constantly supply fluid, actuators to convert the pressure to motion, and pipes and hoses to connect them.The principle behind a hydraulic system is that when pressurized liquid is forced through a series of pipes and cylinders, it will drive an actuator, which will then make a mechanical movement. The actuator can be a piston or a cylinder, depending on the design of the system. Just like with pneumatic systems, when a user of a hydraulic system wants to move an actuator, they use a valve to open the flow path of fluid.When the valve is closed, the fluid pressure is sent to a second chamber within the actuator, causing it to move in the opposite direction. This is a major difference between pneumatic and hydraulic systems, since hydraulic systems are capable of moving both directions, while pneumatics can only move in one direction at a time.These two methods of creating force or motion have a great number of applications in industries such as mining, manufacturing, agriculture, construction, and many more. For example, both systems are used in the automotive and aviation industries to operate brakes, operate doors and hatches, and control movable flaps.In addition, both systems are used in marine control systems to control things such as control surfaces, rudder systems, and transmission systems. In fact, pneumatics and hydraulics are used in nearly every industrial sector to control massive, complex and powerful machines.Pneumatics and hydraulics are both specialized fields that require a great degree of knowledge and expertise. Each system requires a deep understanding of physics, fluid dynamics, engineering, and other relevant disciplines, in order to design, construct, and maintain these systems. Despite their complexity, they have many advantageous features, which make them invaluable in modern industry.
The specific data is subject to PDF, and the above content is for reference
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