81580504 Allicdata Electronics
Allicdata Part #:

966-1311-ND

Manufacturer Part#:

81580504

Price: $ 445.93
Product Category:

Industrial Controls

Manufacturer: Crouzet
Short Description: CONTROL RELAY 2-HAND START CHAS
More Detail: 2-Hand Start Control Relay Pushbutton, Dual Chassi...
DataSheet: 81580504 datasheet81580504 Datasheet/PDF
Quantity: 3
1 +: $ 405.38600
10 +: $ 386.33700
Stock 3Can Ship Immediately
$ 445.93
Specifications
Weight: 2.2 lbs (997.9g)
Series: --
Part Status: Active
Type: Control Relay
Function: 2-Hand Start
Actuator Type: Pushbutton, Dual
Operating Pressure: 30 ~ 116 PSI (2 ~ 8 bar)
Orifice Diameter: 0.098" (2.50mm)
Fluid Type: Air, Inert Gas
Connection Method: Push-In Connection for Tubing 5/32" (4.00mm) Dia
For Use With/Related Products: --
Mounting Type: Chassis Mount
Features: --
Ingress Protection: --
Operating Temperature: -5°C ~ 50°C
Mechanical Life: 1,500,000 Cycles
Approvals: --
Description

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Pneumatics

Pneumatics refers to the use of pressurized gas to generate mechanical motion or power. It is one of the three oldest branches of engineering technology alongside hydraulic and electrical engineering. It involves the use of a variety of technologies and components such as vacuum, pressure, air cylinders, valves, compressors, regulators, actuators, and many more.A compressed air system consists of an air compressor, air filters that keep the air clean of particles, storage tanks that allow the air to be compressed and stored, regulators that allow for the controlled release of the stored air, and a variety of components (like valves, air cylinders, etc.) that distribute and control the flow of the air throughout the system. When a compressed air system is used to generate motion or power, it works in much the same way as hydraulic systems. That is, the compressed air enters a cylinder and exerts a pressure on a piston, causing it to move. This movement is then translated into rotational motion using gears, cams, or other mechanical devices. The rotational motion is then converted into mechanical power, which can then be used to drive shafts, generate electricity, or perform a variety of other functions.Using pneumatics is advantageous in many ways. It is a relatively noise-free process, as the air used is often released slowly and does not cause as much vibration or shock as some other power sources. Furthermore, it is relatively inexpensive, as air is readily available and can be stored for long periods in tanks, and components such as valves, cylinders, and regulators are fairly cheap and easy to maintain. Additionally, pneumatics is a very efficient form of power, as there is no energy loss in the conversion of air pressure into mechanical power, and it is easily adjustable. Despite its advantages, however, pneumatics also has some limitations. It is not as powerful as other types of power sources, as the air pressure isn’t as strong as in hydraulic systems. Furthermore, air compressors require a large amount of energy to run, and air leaks can significantly reduce the effectiveness of the system. Additionally, the components involved in pneumatics are more easily damaged than those used in hydraulic systems, meaning that regular maintenance and upkeep are a necessity.

Hydraulics

Hydraulics is the use of a liquid to generate mechanical motion or power. It is also one of the three oldest branches of engineering technology alongside pneumatic and electrical engineering. It involves the use of a variety of technologies and components such as pumps, cylinders, valves, pressure rams, accumulators, filters, and many more.A hydraulic system consists of a pump that generates a pressure in a liquid, a reservoir of fluid, valves and piping that direct the fluid flow, and a variety of components (like cylinders, accumulators, etc.) that distribute and control the flow of the fluid throughout the system. When a hydraulic system is used to generate motion or power, it works by having the fluid enter a cylinder and exert a pressure on a piston, causing it to move, which in turn is translated into rotational motion. This rotational motion is then converted into mechanical power, which can then be used to drive shafts, generate electricity, or perform a variety of other functions.Using hydraulics is advantageous in many ways. It is much more powerful than pneumatics due to the fact that hydraulic fluid can have higher pressures than compressed air, making it possible to generate greater amounts of power. Furthermore, the transmissions and components involved in hydraulics have a long lifespan, making them fairly low-maintenance, and the pumps used to generate pressure can also be adjusted to suit the application. Despite its advantages, however, there are some drawbacks to using hydraulics. It is not as energy-efficient as other power sources, as there is always some degree of energy loss due to fluid leakage and other factors. Additionally, the components involved can be expensive and difficult to maintain, and regular upkeep is a necessity in order to ensure efficient operation. Additionally, when hydraulic fluid is exposed to extreme temperatures or different forms of chemical contamination, it can degrade and cause catastrophic failure.

The specific data is subject to PDF, and the above content is for reference

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