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Thin Section Four point Contact Ball Bearing (X type) RA025XP0

The RA025XP0 bearing (X type) is optimized for stability and longevity in automation and aerospace applications. With a bore diameter of 2.5 inches and an outer diameter of 3.0 inches, it meets the precision standards for modern engineering needs.

Product Number: RA025XP0

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  • Description
  • Features
  • Application
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Product Number RA025XP0
Manufacturers TFL, OEM
Type Thin Section Four point Contact Ball Bearing (X type)
Bore Diameter 2.5 inch
Outside Diameter 3 inch
Width 0.25 inch
Land Diameter Inner Ring 2.688 inch
Land Diameter Outer Ring 2.813 inch
Housing Fillet 0.025 inch
Ball Diameter 45665
Weight 0.13 lbs.
Radial Static Load 830 lbs.
Radial Dynamic Load 583 lbs.
Thrust Static Load 2090 lbs.
Thrust Dynamic Load 910 lbs.
Moment Static Load 1150 lbs.
Moment Dynamic Load 601 lbs.
Limiting Speed 1600 RPM
Speed Axial 4400 RPM
Material 52100BearingSteel

Distinctive Features of RA025XP0 Thin Section Four point Contact Ball Bearing (X type)

  • With a 2.5 inch bore and 3 inch outer diameter, this Thin Section Four point Contact Ball Bearing (X type) is optimized for compact applications requiring stability.
  • Advanced engineering ensures that the RA025XP0 offers minimal friction and increased lifespan, even under continuous use.
  • The RA025XP0 is built with a four-point contact design, allowing it to efficiently handle both axial and radial loads.
  • Designed for durability, the RA025XP0 features a specialized ball contact structure that improves load distribution.

Applications of RA025XP0 Thin Section Four point Contact Ball Bearing (X type)

  • Ideal for CNC machinery and precision tools, offering stable support for demanding industrial operations.
  • Commonly found in high-speed medical devices, the RA025XP0 ensures smooth rotation with minimal noise.
  • Used in robotic arms and automation systems, the RA025XP0 provides precise motion with reduced backlash.
  • This bearing is widely utilized in aerospace mechanisms, ensuring reliable performance in weight-sensitive environments.

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