
Allicdata Part #: | 81502141-ND |
Manufacturer Part#: |
81502141 |
Price: | $ 268.77 |
Product Category: | Industrial Controls |
Manufacturer: | Crouzet |
Short Description: | SWITCH NEG OUTPUT SUB-BASE MNT |
More Detail: | Negative Output Pressure Switch Sub-Base Mount |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | $ 244.33900 |
Connection Method: | -- |
Weight: | 0.353 lb (160.12g) |
Approvals: | ATEX |
Mechanical Life: | 3,000,000 Cycles |
Operating Temperature: | -5°C ~ 50°C |
Ingress Protection: | -- |
Features: | -- |
Mounting Type: | Sub-Base Mount |
For Use With/Related Products: | -- |
Series: | -- |
Fluid Type: | Air, Inert Gas |
Orifice Diameter: | -- |
Operating Pressure: | 0.7 ~ 7 PSI (0.05 ~ 0.5 bar) |
Actuator Type: | -- |
Function: | Negative Output |
Type: | Pressure Switch |
Part Status: | Active |
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Pneumatics and Hydraulics are both engineering disciplines that use fluids — usually either air or a liquid — to power machines and equipment. In order to understand how both systems operate, it is important to break down the 81502141 application field and working principle into its fundamental elements.
Fundamentally, pneumatics rely on air and hydraulic systems on a liquid in order to transmit force and energy from one part of a machine to another. In order to do this, either compressed air or a liquid is used to drive a piston or a similar device. This force is then used to create movement in other components, such as valves, actuators, and cylinders. In some applications, the compressed air or liquid may be used to rotate a shaft, which is then used to drive some kind of machinery.
In a pneumatic system, air pressure is generated by a compressor or a system of compressors. This air pressure is then stored in tanks, and is released as needed in order to power various components. The compressed air is typically sent to the actuator or the cylinder via a series of pipes and couplings.
The basic working principle of a hydraulic system is similar to a pneumatic system in that the same piston or actuator is used. However, instead of using air pressure, hydraulic systems rely on a liquid — typically some kind of oil. The liquid is sent to the actuator or cylinder through high-pressure pipes, with the force of the liquid used to power the motion of the actuator or cylinder.
One of the major benefits of using pneumatic and hydraulic systems in machine design is that they are very efficient in terms of energy consumption. In most cases, the energy used by the system is proportional to the amount of force or speed needed to complete the desired task. This means that it is possible to achieve a high level of power without consuming a large amount of energy.
In addition, the use of pneumatic and hydraulic systems also enables machines to be more responsive, since a great deal of force can be generated very quickly and reliably. This makes them well suited for applications in which speed is of primary importance.
Finally, pneumatics and hydraulics are relatively easy to maintain compared to other types of machines which use motors and gears. This is because the force is transmitted through pipes and couplings which require minimal maintenance, and there are relatively few moving parts in the system.
In summary, pneumatic and hydraulic systems are both engineering disciplines that use either air or a liquid to power machines. They both use a variety of components — including compressors, cylinders, and actuators — powered by the force of a compressed air or liquid. The 81502141 application field and working principle may be broken down into its fundamental elements in order to understand how the system works. Pneumatic and hydraulic systems offer a number of advantages, including high efficiency, responsiveness, and easy maintenance.
The specific data is subject to PDF, and the above content is for reference
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