INA ZKLF2068 2RS PE Angular Contact Thrust Ball Bearing 20x68x28 mm
$664.65
BRAND: INA
ID: ZKLF2068 2RS PE
Description:
INA ZKLF2068-2RS-PE
Double Direction Angular Contact Thrust Ball Bearing
Made in Germany
Specifications
- Country of Origin: Germany
- Brand: INA
- Item Number: ZKLF2068-2RS-PE
- Manufacturer Part Number: 0021709810000
- Also known as:
- BEAM020068-2RS/PE
- BEAM20/68C SQ P60
- EAN: 4012802078657
- Category: Angular Contact Thrust Ball Bearings, Double Direction
Weight & Dimensions
|
Dimension |
Metric |
Inch |
|
Inner Diameter (d) |
20 mm |
0.7874 in |
|
Outer Diameter (D) |
68 mm |
2.6772 in |
|
Width (B) |
28 mm |
1.1024 in |
|
Weight |
0.61 kg |
— |
Product Properties
- Cage Type: P – Plastic Molded Cage
- Precision: P5 (Higher precision than P6)
- Contact Angle: 60°
- Design: Axial angular contact, double direction
Technical Data (Schaeffler Medias)
- Width (b): 28 mm
- Axial Static Load Rating (C0a): 47,000 N
- Axial Dynamic Load Rating (Ca): 26,000 N
- Limiting Speed (Grease): 6,600 RPM
- Thermally Safe Operating Speed: 3,000 RPM
- ECLASS: 23-05-10-02
- Medias Description:
Axial angular contact ball bearing ZKLF..-2RS-PE, double direction, screw mounting
Suffix Description
- 2RS: Lip seal on both sides, axial fitting
- PE: Enlarged diameter tolerance & axial runout to P5 class (radial bearings)
Product Description
The INA ZKLF2068-2RS-PE is a double-direction angular contact thrust ball bearing engineered for screw drives and other precision applications requiring high axial load capacity and excellent running accuracy.
This bearing features:
- A plastic molded cage with a double row of balls
- A thick-walled outer ring with pre-drilled mounting bolt holes, allowing direct installation — no separate cover is needed
- A split inner ring design
- Ability to handle radial loads and high axial loads in both directions thanks to its 60° contact angle
- A groove on the outer ring for easier removal from the housing
The PE version maintains excellent performance while offering more flexible tolerances, making it ideal for applications where ultra-high precision is not required. It reduces machining costs for the adjacent structure while still delivering rigidity and long service life.