NC100XP0

3/8" Constant Section Bearings

NC100XP0 3/8" Constant Section Bearings
NC100XP0 3/8" Constant Section Bearings

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Part No.
Part No. NC100XP0

Basic Information

Bearing type Ball
System of measurement Inch
Thin section bearings type Endura-kote Plated
Construction Single Row
Weight 1.06 lbs
Tolerance class ABEC-1
Seal type Open
For load direction Four Point Contact

Main Dimensions

Bore diameter 10"
Bore diameter tolerance -0.0014"– 0"
Outside diameter 10.75"
Outside diameter tolerance -0.0014"– 0"
Width 0.375"
Width tolerance +.000 –.005"

Inner Ring Dimensions

Shoulder diameter inner ring 10.277"

Outer Ring Dimensions

Outer ring small-side face inner diameter 10.473"

Performance

Temperature range -30°C to 110 °C
Radial dynamic load rating 2364 lbf
Radial static load rating 4990 lbf
Axial dynamic load rating 3930 lbf
Axial static load rating 12470 lbf
Dynamic load moment 9201 lbf
Static load moment 25880 lbf
Rated load moment 9 ft-lbf
Lubrication Lubricated
Radial internal clearance 0.0000 – 0.0005"

Materials

Ring material Chrome Steel
Ball material Chrome Steel
Cage material Brass
Coating Chromium Plating

Environment & Compliance

ROHS Compliant
Technical Drawings No drawings available at the moment, will be launched soon
Price: $ 226.97 / each
In Stock

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NC100XP0 Bearing Product Overview & Core Advantages

The NC100XP0 is a thin section bearing designed for applications requiring high precision and compact design. Featuring a Four Point Contact construction, this single-row ball bearing can simultaneously support combined radial and axial loads from any direction, making it exceptionally versatile. Its Endura-kote plating provides superior corrosion resistance, while the inch-dimension design ensures compatibility with specialized machinery. With an ABEC-1 precision class and optimized internal geometry, it delivers reliable performance in space-constrained, high-rigidity applications.

NC100XP0 Bearing Model Code Explained, Specifications & Naming Convention

Code Segment Technical Meaning Performance Benefit
NC100 Bearing series designation with 10" bore diameter Standardized sizing for interchangeability
XP0 Specific variant identifier Defines unique performance characteristics
Endura-kote Chromium plating coating system Enhanced corrosion resistance and durability
Four Point Contact Ball-raceway contact geometry Superior load capacity in all directions

NC100XP0 Bearing Structural Features & Performance Benefits

Four Point Contact Design: The unique ball-to-raceway contact geometry enables the bearing to handle combined radial and axial loads efficiently, providing exceptional moment load capacity (9 ft-lbf rated load moment) in a compact envelope.

Thin Section Construction: With only 0.375" width and optimized cross-section, this bearing maximizes space utilization while maintaining high rigidity and precision performance.

Premium Material Selection: Chrome steel rings and balls combined with a brass cage ensure dimensional stability, reduced wear, and reliable operation under dynamic loading conditions (2364 lbf radial dynamic, 3930 lbf axial dynamic).

Corrosion-Resistant Coating: The Endura-kote chromium plating provides superior protection against environmental factors, extending service life in challenging operating conditions.

Precision Engineering: Manufactured to ABEC-1 tolerance standards with controlled radial internal clearance (0.0000 – 0.0005"), ensuring consistent performance and smooth operation.

NC100XP0 Bearing Typical Application Areas

  • Robotics and Automation: Articulated joints, rotary tables, and precision positioning systems
  • Aerospace Equipment: Control mechanisms, actuator systems, and satellite components
  • Medical Devices: Imaging systems, surgical robots, and diagnostic equipment
  • Semiconductor Manufacturing: Wafer handling robots, precision stages, and processing equipment
  • Military and Defense Systems: Radar antennas, targeting systems, and guidance mechanisms
  • Industrial Machinery: Rotary unions, indexing devices, and precision spindles where space constraints and high load capacity are critical requirements
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