VXB

KA020XP0 Thin Section X Four-Point Contact Bearing 2" x 2-1/2" x 1/4" inch

 
190,34 $ CAD 256,94 CADVous économisez 66,60 $ CAD
SKU: KA020XP0
UPC: 00193019204245
Item: KA020XP0
Type: Thin Section X Four-Point Contact Bearing
Size : 2"x2 1/2"x1/4" inch
Brand : VXB Bearing
Quantity : One Bearing
 

KA020XP0 Thin Section Bearing - X-Type (Four-Point Contact)
✔️ 2" x 2.5" x 0.25" - Open, Compact, All-Directional Load Support

The KA020XP0 is a precision-engineered thin-section bearing with a four-point contact (X-type) design, enabling it to handle radial, axial, and moment loads in both directions. With a slim 1/4" cross-section and open style, it’s ideal for space-sensitive, high-performance applications like robotics, rotary actuators, and precision mechanisms.

âś… Size: 2" ID x 2.5" OD x 0.25" width
âś… Type: Four-point contact (X-type) thin section bearing
âś… Material: Chrome steel
âś… Cage: Metal ball retainer
âś… Enclosure: Open
âś… Lubrication: Oil preserved
âś… Dynamic load rating: 1,486 N
âś… Static load rating: 3,523 N
âś… Quantity: 1 bearing
âś… Brand: VXB

💡 What’s the advantage of four-point contact bearings?
X-type bearings handle loads from every direction - radial, axial, and moment - in one compact row. They eliminate the need for separate bearings in complex systems, saving space and weight.

Perfect for multi-axis motion, gimbal rings, and rotary stages under dynamic load conditions.

🔍 Comparison Table: KA020XP0 vs. KA020CP0

Caractéristique KA020XP0 (X-Type) KA020CP0 (C-Type)
Diamètre intérieur 2" 2"
Diamètre extérieur 2.5" 2.5"
Largeur 0.25" 0.25"
Contact Style Contact Ă  quatre points Deep groove (radial load)
Support de charge Radial + axial + moment Principalement radial
Capacité de charge dynamique 1,486 N 2,471 N
Charge statique nominale 3,523 N 6,186 N
Enceinte Ouvre Ouvre
Meilleure utilisation Balanced multi-load apps High radial load conditions

Choose KA020XP0 when you need compact support for all-directional loads. Select KA020CP0 if your focus is on higher radial load capacity in a slim profile.