S06003XF0

S06003XF0 Constant Section (CS) Bearings
$285.20 /Each    info

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Overview

Part Number S06003XF0
Brand: LILY Brand: LILY Interchangeable With: KAYDON
Other Part Number Variant Models

Characteristics

System of Measurement Metric
Bearing Type Ball
Seal Type Open
Thin Section Bearings Type UltraSlim Bearings
For Load Direction Four Point Contact
Construction Single Row
Tolerance Class ABEC-1
Series 2.5 mm

Dimensions

Bore Dia 60 mm
Bore Dia Tolerance -0.013mm to 0
Outer Dia 66 mm
Outer Dia Tolerance -0.013mm to 0
Width 2.5 mm
Width Tolerance -.127mm- 0mm
External Diameter On Inner Ring 62.2 mm
Internal Diameter On Outer Ring (Small Side Face) 63.8 mm
Radial Clearance 0.0000 – 0.0005"

Material

Ring Material Stainless Steel
Ball Material Stainless Steel
Cage Material NO CAGE

Performance

Dynamic Radial Load 190 lbf
Static Radial Load 272 lbf
Static Thrust Load 210 lbf
Static Moment 3 lbf
Moment Load Rating 11.8 ft-lbf
Temperature Range -30°C to 110 °C

Properties

Lubrication Lubricated
RoHS Compliant
Weight 9 g
S06003XF0 Constant Section (CS) Bearings data sheet
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CAD1
INTERCHANGE
The LILY Bearing part series S06003XF0 is a potential replacement for these common bearing part numbers.
LILY
S06003XF0
KAYDON
S06003XF0

NOTE:All other trademarks are the property of their respective owners.

All other trademarks mentioned herein are used for the purpose of compatibility description and product identification only. Lily Bearing is not affiliated with, endorsed by, or sponsored by the holders of these trademarks.

Variant Models

Derived models are generated by adding 7-9 suffix characters to the base model.You can search for the model you need!

This series of models is also available for sale on our website. For detailed information, please feel free to contact us!

Position 7 - Bearing Type
Position 8 - Cage
Position 9 - Tolerance
Position 10 - Bearing internal clearance or preload
X
Position 7 - Bearing Type
A Angular contact ball bearing (not ground for universal matching)
C Radial contact ball bearing
X Four-point contact ball bearing
Position 8 - Cage
P One-piece, snap-type, stamped brass or non-metallic composite cage
R One-piece, circular pocket, stamped brass or non-metallic composite cage
Position 9 - Tolerances (ABEC specifications are in accordance with ABMA standard 26.2)
0 Tolerance to Kaydon class 1 (ABEC 1F)
Position 10 - Bearing internal clearance or preload
Radial clearance or preload for radial contact and four-point contact ball bearings
Axial clearance or preload for matched angular contact ball bearings
Values below are valid for unmounted bearings under zero measuring load
- Standard internal clearance or preload
A Clearance 0 to 127 µm
K Preload 0 to 127 µm
L Preload 0 to 254 µm
Z Other inernal clearance or preload not specified above

Constant Section (CS) bearings manufactured from Stainless Steel maintain a uniform cross-sectional height regardless of bore diameter, making them exceptionally compact and space-efficient. Their AISI 440C alloy composition, hardened to HRC 58–62, provides inherent corrosion resistance that eliminates the need for surface coatings, sustaining reliable performance in humid, washdown, or chemically aggressive environments. This combination of slim profile and environmental durability makes them a go-to choice in robotics, medical, and semiconductor applications.

 

Constant Section (CS) bearings with four-point contact geometry are uniquely capable of carrying radial loads, axial loads in both directions, and moment loads simultaneously within a single row — a combined load capacity that neither a standard radial bearing nor a single-row angular contact bearing can match alone. The four-point contact is achieved through a gothic arch raceway profile, where each ball contacts both the inner and outer rings at two distinct points, effectively replicating the function of a back-to-back angular contact pair in a fraction of the axial space. This makes them the preferred choice where multi-directional loading and spatial compactness must be achieved together, such as in robotic joints, rotary tables, and slewing applications.

 

Constant Section (CS) bearings with Stainless Steel balls utilize AISI 440C alloy spheres hardened to HRC 58–62, providing inherent corrosion resistance that eliminates the need for surface coatings while maintaining adequate load capacity and contact fatigue life within the same compact cross-sectional envelope. The high chromium composition forms a stable passive oxide layer on the ball surface, enabling reliable performance in humid, washdown, and chemically aggressive environments where Chrome Steel balls would require additional protection. This makes them the preferred choice in food processing, medical, and marine applications where environmental exposure and hygiene requirements take precedence over maximum load capacity.

 

Why are Stainless Steel rings a preferred choice for Constant Section (CS) bearings in demanding environments?

Constant Section (CS) bearings with Stainless Steel rings use AISI 440C alloy hardened to HRC 58–62, delivering inherent corrosion resistance and sustained performance in humid, washdown, and chemically aggressive conditions without the need for additional surface protection. This makes them the most reliable option for applications where environmental exposure and hygiene requirements are the primary design constraints.

 

What load directions can Constant Section (CS) bearings with four-point contact geometry handle?

Constant Section (CS) bearings with four-point contact geometry are uniquely capable of carrying radial loads, axial loads in both directions, and moment loads simultaneously within a single row — a combined load capacity that neither a standard radial bearing nor a single-row angular contact bearing can match alone.

 

Why are Stainless Steel balls the most common choice for Constant Section (CS) bearings in demanding environments?

Constant Section (CS) bearings with Stainless Steel balls utilize AISI 440C alloy spheres hardened to HRC 58–62, delivering inherent corrosion resistance and adequate load capacity without the need for additional surface protection. This makes them the most dependable option for applications where environmental exposure and hygiene requirements are the primary design constraints.

 

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