INA HF0306-KF-L564 Sprag Clutch Bearing 3mm I.D., 6.5mm O.D., 6mm Race Width

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£10.88

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£13.06

(inc. VAT)

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RS Stock No.:
174-1068
Mfr. Part No.:
HF0306-KF-L564
Brand:
INA
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Brand

INA

Inside Diameter

3mm

Outside Diameter

6.5mm

Torque

0.18Nm

Race Width

6mm

Series

HF

Over-running Speed

8000 rpm, 45000rpm

Schaeffler Series HF Sprag Clutch Bearing, 3mm Inside Diameter, 6.5mm Outside Diameter - HF0306-KF-L564


This sprag clutch bearing is designed for precision applications requiring reliable performance. With an inside diameter of 3mm and an outside diameter of 6.5mm, it provides compatibility with various mechanical assemblies. The bearing accommodates torque specifications of 0.18 Nm and operates efficiently at over-running speeds of 8000 rpm and 45000 rpm, making it suitable for high-speed applications.

Features & Benefits


• Precision design ensures accurate engagement and efficient operation
• Minimal inside diameter allows for use in compact requirements
• High over-running speeds enhance performance in dynamic systems
• Durable construction supports reliable torque transmission
• Efficient operation reduces energy consumption overall

Applications


• Used for automation systems for smooth power transmission
• Suitable for miniaturised machinery requiring compact components
• Ideal for robotics for enhanced motion control
• Recommended for electrical devices needing high-speed performance
• Essential for mechanical assemblies where reliability is critical

What is the maximum speed at which this component can operate?


This component can operate efficiently at an over-running speed of up to 45000 rpm, allowing for high-speed applications without performance loss.

How does this product facilitate torque management in machinery?


With a torque specification of 0.18 Nm, it is designed to handle precise torque requirements, ensuring optimal engagement during operation.

In what scenarios would the small inside diameter be advantageous?


The smaller inside diameter makes it ideal for applications with limited space, enabling integration into compact assemblies or devices without compromising functionality.

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