Allicdata Part #: | 966-1118-ND |
Manufacturer Part#: |
81506025 |
Price: | $ 18.94 |
Product Category: | Industrial Controls |
Manufacturer: | Crouzet |
Short Description: | LOGIC NOT ELEMENT SUB-BASE MOUNT |
More Detail: | LOGIC NOT Logic Element Sub-Base Mount |
DataSheet: | 81506025 Datasheet/PDF |
Quantity: | 1000 |
10 +: | $ 17.21160 |
Specifications
Connection Method: | -- |
Weight: | 0.066 lb (29.94g) |
Approvals: | -- |
Mechanical Life: | 10,000,000 Cycles |
Operating Temperature: | -5°C ~ 50°C |
Ingress Protection: | -- |
Features: | Pressure Indicator |
Mounting Type: | Sub-Base Mount |
For Use With/Related Products: | -- |
Series: | -- |
Fluid Type: | Air, Inert Gas |
Orifice Diameter: | 0.106" (2.70mm) |
Operating Pressure: | 30 ~ 116 PSI (2 ~ 8 bar) |
Actuator Type: | -- |
Function: | LOGIC NOT |
Type: | Logic Element |
Part Status: | Active |
Description
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
Pneumatics
Pneumatics is a branch of engineering dealing with the study and application of pressurized gas to generate, control and transmit motion. It is commonly used as an alternative to hydraulics and provides numerous advantages. The main advantage of pneumatic systems is their cost-effectiveness. They are simpler to maintain, can be utilized in hard-to-reach locations and provide greater cost savings than hydraulic systems.A pneumatic actuator is a device that converts energy into linear or rotary motion. The most common types of pneumatic actuators are cylinders, motors, and valves. Pneumatic cylinders are linear actuators that convert pressurized air into a linear motion, while pneumatic motors are rotary actuators that convert pressurized air into a rotary motion. Pneumatic valves are used to control the direction and speed of air flow through a pneumatic system.The primary components of a pneumatic system are the compressor, which supplies the pressurized air, and the receiving device, which is typically a pneumatic actuator. In a typical pneumatic system, pressurized air is fed into the actuator, which then moves a piston or a rotor. The piston or rotor can then be used to do work, such as powering a device or providing motion.The 81506025 application field in pneumatics is vast. It can be used for a wide range of applications, from simple robotic arms to sophisticated manufacturing processes. In industrial settings, pneumatic systems are commonly used for lifting, clamping, and positioning applications. It can also be used for medical applications such as moving surgical tools, and for controlling the flow of gases and liquids in chemical plants.Hydraulics
Hydraulics is a branch of engineering that deals with the study and application of fluid mechanics, which is the science of using liquids and gases to transmit and control power. Like pneumatics, hydraulics is commonly used as an alternative to pneumatic systems and provides many advantages. The main advantage of hydraulic systems is their reliability, power, and precision. Additionally, they provide greatly increased force over pneumatic systems and are more cost effective than traditional electric and mechanical systems.A hydraulic system is made up of several components, including the hydraulic motor, the pump, and the hydraulic actuator. The hydraulic motor converts hydraulic energy into mechanical energy, while the pump moves the fluid between the motor and actuator. The hydraulic actuator is the device that converts the hydraulic energy into a linear or rotary motion.The 81506025 application field in hydraulics is quite broad. It is commonly used in a variety of industrial settings including manufacturing, material handling, power generation, and construction. It can be used to lift, move, and rotate heavy objects, and can be used in automated machinery and robotic applications. It is also used in cars and trucks for controlling the braking system and power steering.The working principle of hydraulic systems is based on the concept of fluid pressure. Pressure is generated when a liquid is squeezed and can be used to produce force. As the pressure in the hydraulic system increases, the liquid is pushed through a system of pipes, tubes, and valves, which act as a system of levers. When the pressure is released, the liquid is forced back into the system, causing the actuator to move. The speed and force of the device is dependent on the pressure created in the hydraulic system.The specific data is subject to PDF, and the above content is for reference
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