Bearings
Angular Contact Bearings
Angular Contact Bearings
Quick Code: BB-503164
7202-B-XL-JP-UO FAG Single Row Angular Contact Ball Bearing 15mm x 35mm x 11mm
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Product Specification
Arrangement
Bearing pair is clearance-free in O- and X-arrangement
Brand
FAG
Cage
Sheet steel cage
Clearance
Normal radial clearance
Contact angle
40 degree
Inside Dia
15mm
Material
Standard bearing steel
Outer ring
Without flange/groove
Outside Dia
35mm
Row Type
Single
Seal
None, open bearing
Temperature range
-20 to +150 °C
Tolerance class
Tolerance class P0/PN2 / ABEC 1
Width
11mm
Reference
7202-B-XL-JP-UO
Additional Reference:
10071515
Quick Order Code
BB-503164
Product Description
7202-B-XL-JP-UO FAG Single Row Angular Contact Ball Bearing
This compact FAG angular contact ball bearing is engineered to handle combined radial and axial loads simultaneously, making it ideal for high-speed, precision applications. As a single row design, it accommodates axial loads in one direction and features a non-separable construction.
Key Features:
- 40° contact angle for optimal load distribution
- Clearance-free bearing pair in O- and X-arrangement configuration
- Sheet steel cage for reliable performance and durability
- Normal radial clearance for standard mounting applications
- Open bearing design (no seals) for applications where minimal friction is essential
- Manufactured by FAG – a leading global bearing manufacturer renowned for quality and reliability
- Extended temperature range capability: -20°C to +150°C
- Tolerance class P0/PN2 (ABEC 1) for precision performance
Specifications:
- Bore Diameter: 15mm
- Outer Diameter: 35mm
- Width: 11mm
- Bearing Type: Single Row Angular Contact Ball Bearing
- Material: Standard bearing steel
- Cage Type: Sheet steel
- Seal Type: None (open bearing)
Applications:
Ideal for compact precision equipment, electric motors, machine tools, spindles, pumps, and other applications where simultaneous radial and axial loads are present. Perfect for high-speed operations requiring minimal friction and reliable performance in variable temperature environments.

