INA KH30-B Bearing with 30 mm ID 40 mm OD 3300 N 3100 N

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299,71 kr

(exkl. moms)

374,64 kr

(inkl. moms)

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RS-artikelnummer:
172-1285
Tillv. art.nr:
KH30-B
Tillverkare / varumärke:
INA
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Brand

INA

Product Type

Bearing

Outside Diameter

40 mm

Length

50mm

Inside Diameter

30 mm

Dynamic Load Rating

3300N

Static Load Rating

3100N

Base to Bore Centerline

20mm

Closure Type

Closed

Standards/Approvals

No

Schaeffler Bearing, 30mm Inside Diameter, 40mm Outside Diameter - KH30-B


This bearing is designed for precision applications in the automation, electronics, and mechanical industries. With an inner diameter measuring 30mm and an outer diameter of 40mm, it provides stability and effective load distribution. The closed linear ball bearing type ensures enhanced function in environments requiring robust design and efficient operation.

Features & Benefits


• High dynamic load rating of 3300N for enhanced durability

• Static load rating of 3100N supports heavy loads

• Designed without seals to reduce friction

• Closed configuration prevents contamination from external elements

• Reliable performance in demanding industrial settings

• Compact dimensions suited for various machinery requirements

Applications


• Used for direct in automated machinery

• Suitable for use in linear motion systems

• Ideal for assembly line processes requiring precise movement

• Recommended for robotics and material handling equipment

What is the significance of a closed design in this bearing?


The closed design offers protection against debris and contaminants, maintaining performance and increasing the lifespan in industrial environments.

How does the load rating affect the bearing's performance?


The dynamic load rating indicates the maximum load it can handle during movement, while the static load rating shows its capacity when stationary. Both ratings ensure reliable operation under various conditions.

In which situations would the lack of seals be beneficial?


A design without seals reduces frictional losses, allowing for smoother operation, which can be advantageous in high-speed applications where heat generation needs to be minimised.

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