The Air Torque Pneumatic Actuator Rack And Pinion 90 Degrees Anodised Aluminium SIL 3 AT501U-S10-A F10 F12-N-27DS is a high-performance actuator designed for industrial applications requiring precise and reliable operation. This actuator features a rack and pinion mechanism that provides a 90-degree rotation, making it suitable for quarter-turn valve operations, damper control, and other applications requiring angular movement.
Constructed from anodised aluminum, this actuator offers exceptional durability and resistance to corrosion, ensuring long-lasting performance in demanding environments. It is certified to SIL 3 (Safety Integrity Level 3), ensuring a high level of safety and reliability in critical applications.
Key Features:
Rack and Pinion Mechanism: The actuator employs a robust rack and pinion mechanism for precise and reliable 90-degree rotation.
Anodised Aluminum Construction: The actuator is made from anodised aluminum, providing excellent corrosion resistance and durability.
SIL 3 Certification: Certified to SIL 3 (Safety Integrity Level 3) for enhanced safety and reliability in critical applications.
Pneumatic Operation: Powered by compressed air, ensuring efficient and cost-effective operation.
Wide Temperature Range: Designed to operate in a wide range of temperatures, ensuring reliable performance in various environmental conditions.
Easy Installation and Maintenance: The actuator features a user-friendly design for simple installation and straightforward maintenance procedures.
Specifications:
Model |
AT501U-S10-A F10 F12-N-27DS |
Ambient Temperature Range |
-40°C to +80°C |
Rotation Angle |
90 degrees (quarter-turn) |
Certification |
SIL 3 (Safety Integrity Level 3) |
Operation |
Spring Return |
Housing Material |
Anodised Aluminum |
The Air Torque Pneumatic Actuator Rack And Pinion 90 Degrees Anodised Aluminium SIL 3 AT501U-S10-A F10 F12-N-27DS is an ideal choice for industries such as oil and gas, chemical processing, power generation, and others that demand reliable and safe operation in demanding environments.