K36013CP0
13mm Constant Section Bearings
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Basic Information
Main Dimensions
Inner Ring Dimensions
Outer Ring Dimensions
Performance
Materials
Environment & Compliance
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K36013CP0 Bearing Product Overview & Core Advantages
The K36013CP0 is a thin section metric ball bearing designed for applications requiring high precision and space optimization. As part of the Reali-Slim mm Metric series, this single row, open-type bearing excels in handling radial loads with a compact cross-section, offering a superior strength-to-size ratio. Its ABEC-1 precision class ensures reliable performance in systems where dimensional accuracy and smooth operation are critical. The bearing comes pre-lubricated for immediate use, contributing to its ease of installation and initial operational readiness.
K36013CP0 Bearing Model Code Explained, Specifications & Naming Convention
- K: Designates a metric series thin section bearing.
- 360: Indicates the bore diameter of 360 mm.
- 13: Specifies the width of 13 mm.
- C: Refers to the radial internal clearance group.
- P0: Denotes the tolerance class (equivalent to ABEC-1 / Normal).
K36013CP0 Bearing Structural Features & Performance Benefits
- Compact & Lightweight Design: The thin section profile (13mm width) with a 360mm bore minimizes weight and space requirements, making it ideal for robotic arms, aerospace mechanisms, and medical equipment.
- High Load Capacity: Constructed from chrome steel rings and balls, the bearing offers a substantial radial dynamic load rating of 4308 lbf and a radial static load rating of 12539 lbf for its compact size.
- Precision & Smooth Operation: The ABEC-1 tolerance class and brass cage contribute to low noise, low vibration, and consistent rotational accuracy.
- Broad Temperature Range: Suitable for operation from -30°C to 110°C, accommodating various industrial environments.
- Optimized Internal Geometry: The specified shoulder diameters ensure proper fit and alignment, enhancing overall system rigidity.
K36013CP0 Bearing Typical Application Areas
- Robotics: Joint and actuator bearings in articulated arms.
- Aerospace & Defense: Control mechanisms, gimbal systems, and instrumentation.
- Medical Equipment: Scanning devices (CT/MRI), surgical robots, and diagnostic apparatus.
- Semiconductor Manufacturing: Precision stages and wafer handling equipment.
- Optical & Positioning Systems: Rotary tables and mirror mounts requiring minimal friction and high accuracy.