INA BK0609-B 6 mm I.D Roller Bearing Drawn Cup Needle, 10 mm O.D

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RS Stock No.:
174-1052
Mfr. Part No.:
BK0609-B
Brand:
INA
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Brand

INA

Product Type

Roller Bearing

Inside Diameter

6 mm

Race Width

9mm

Bore Type

Parallel

Cage Material

Steel

Static Load Rating

2.6kN

Outside Diameter

10 mm

Dynamic Load Rating

2.85kN

End Type

Open

Standards/Approvals

No

Limiting Speed

36500rpm

Bearing Type

Drawn Cup Needle

Schaeffler Needle Roller Bearing, 6mm Inside Diameter, 10mm Outside Diameter - BK0609-B


This needle roller bearing is designed to provide efficient support for applications within the automation, electronics, and mechanical industries. With an inside diameter of 6mm and an outside diameter of 10mm, this compact roller bearing effectively accommodates high-speed applications, featuring a robust drawn cup needle design and a race width of 9mm.

Features & Benefits


• Capable of sustaining static loads up to 2600N

• Handles dynamic loads reaching 2850N for enhanced performance

• Designed for high-speed usage with a reference speed of 30500 rpm

• Ideal for various configurations with its closed end type

• Offers a fatigue limit load of 320N for reliable operation

Applications


• Used in precision machinery for automation systems

• Suitable for demanding high rotational speeds

• Ideal for integration into compact electronic devices

• Effective in industrial machinery requiring efficient load distribution

What are the implications of the static and dynamic load ratings?


Static load ratings indicate the maximum load the component can support when stationary, while dynamic load ratings reflect the maximum load during movement, ensuring safety and longevity in operational settings.

How does the sheet steel cage contribute to performance?


The sheet steel cage enhances durability and resilience against wear, promoting smooth operation and extending the lifespan of the bearing in various applications.

What factors should be considered to ensure optimal performance?


Consider the specific load requirements, rotational speeds, and operating environment to select a suitable layout that maximises the performance of this component without exceeding its specifications.

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