Bearings
Angular Contact Bearings
Angular Contact Bearings
Quick Code: BB-505205
7210-B-XL-TVP-P5-UO FAG Single Row Angular Contact Ball Bearing 50mm x 90mm x 20mm
7210-B-XL-TVP-P5-UO FAG Single Row Angular Contact Ball Bearing
This premium single row angular contact ball bearing from FAG is engineered to handle combined radial and axial loads in one direction, making it ideal for high-speed precision applications. The open design and polyamide cage provide excellent performance characteristics, while the P5 tolerance class ensures exceptional precision and reliability for demanding industrial environments.
Key Specifications:
- Bore diameter: 50mm
- Outside diameter: 90mm
- Width: 20mm
- Contact angle: 40°
- Row type: Single row
- Tolerance class: P5 / ABEC 5
- Dynamic load rating optimised for precision applications
- Brand: FAG
- Reference: 7210-B-XL-TVP-P5-UO
Key Features:
- 40° contact angle for optimal load distribution and combined load handling
- Polyamide cage for reduced friction and smooth operation
- Open bearing design for flexibility in lubrication strategies
- Normal radial clearance with clearance-free capability in O- and X-arrangement configurations
- Standard bearing steel construction for durability and reliability
- Without flange or groove for standard mounting applications
- Operating temperature range: -20°C to +120°C
- P5 precision class (ABEC 5) for high-accuracy applications
Applications:
This FAG angular contact bearing is particularly well-suited for:
- High-speed rotating machinery
- Precision machine tool spindles
- Electric motors and generators
- Gearboxes and transmission systems
- Pumps and compressors
- Industrial automation equipment
- Heavy-duty industrial applications requiring combined load handling
The bearing pair arrangement offers clearance-free configuration in both O- and X-arrangement, providing flexibility for back-to-back or face-to-face mounting with controlled preload. The P5 tolerance class makes this bearing ideal for precision applications where tight tolerances and minimal runout are essential for optimal performance.

