SKF W 625-2Z 1 Row Deep Groove Ball Bearing - 5 mm ID, 16 mm OD

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£14.35

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£17.22

(inc. VAT)

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RS Stock No.:
208-0488
Mfr. Part No.:
W 625-2Z
Brand:
SKF
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Brand

SKF

Product Type

Deep Groove Ball Bearing

Inside Diameter

5 mm

Outside Diameter

16 mm

Race Width

5mm

Ball Material

Stainless Steel

Cage Material

Sheet Metal

End Type

Shielded

Number of Rows

1

Static Load Rating

0.63kN

Internal Clearance

CN

Dynamic Load Rating

1.43kN

Series

W 625-2Z

Bore Type

Parallel

Standards/Approvals

No

Limiting Speed

50000rpm

Bearing Type

Single Row Deep Groove Ball

SKF Deep Groove Ball Bearing, 16mm Outside Diameter, 1.43 kN Dynamic Load Rating - W 625-2Z


This deep groove ball bearing is crucial for various mechanical applications. Designed for durability and consistent performance, it is well-suited for scenarios demanding high load-bearing capabilities. Its stainless steel construction enhances longevity and dependability, making it appropriate for both industrial and automation environments.

Features & Benefits


• Made from stainless steel for improved corrosion resistance

• Single row design simplifies load distribution and installation

• Shielded on both sides to protect against contaminants

• High static and dynamic load ratings provide performance under pressure

• Precision design ensures smooth and efficient rotation

Applications


• Utilised in compact machinery requiring high load capacity

• Ideal for precision assembly in electronic devices

• Appropriate for automation equipment to ensure dependable movement

• Suitable for gear boxes where space is limited

What is the typical installation process for this component?


The installation typically involves aligning the bearing with the shaft to ensure a snug fit for optimal performance.

How can I determine if this bearing is suitable for my application?


Evaluate the load requirements along with the operating environment, ensuring its ratings align with your needs.

Is this bearing designed for high-temperature applications?


While it performs reliably under normal temperature conditions, its specific tolerance to heat should be evaluated based on the operating environment.

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