KD200CP0
1/2" 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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KD200CP0 Bearing Product Overview & Core Advantages
The KD200CP0 is a high-performance thin section bearing designed for applications requiring exceptional space efficiency and precision. As a Reali-Slim Open Bearing with single row construction, it delivers reliable radial load capacity while maintaining an extremely compact cross-section. Manufactured to ABEC-1 precision standards, this bearing is engineered for high rigidity and smooth operation in precision machinery where weight and space are critical constraints.
KD200CP0 Bearing Model Code Explained, Specifications & Naming Convention
| Code Segment | Technical Meaning |
|---|---|
| KD | Kaydon Reali-Slim bearing series designation |
| 200 | Bore diameter: 20 inches |
| C | Cross-section: 0.5 inches (Type C) |
| P | ABEC-1 precision class |
| 0 | Open design (no seals or shields) |
KD200CP0 Bearing Structural Features & Performance Benefits
Ultra-Thin Design: With a minimal cross-section of only 0.5" between 20" bore and 21" outside diameter, this bearing provides maximum space savings while maintaining structural integrity.
High Load Capacity: The optimized single row ball bearing configuration delivers a radial dynamic load rating of 4,164 lbf and radial static load rating of 14,020 lbf, ensuring reliable performance under demanding conditions.
Precision Engineering: Manufactured to ABEC-1 tolerance standards with tight dimensional control (bore tolerance: -0.0020" to 0") for smooth, precise operation in critical applications.
Premium Materials: Constructed with chrome steel rings and balls, combined with a brass cage for optimal performance, durability, and corrosion resistance.
Optimized Clearance: Features controlled radial internal clearance (0.0000 - 0.0005") for precise fitment and reduced vibration in precision assemblies.
KD200CP0 Bearing Typical Application Areas
- Robotics and Automation: Rotary joints, robotic arms, and positioning systems
- Aerospace and Defense: Radar systems, gimbal mechanisms, and satellite components
- Medical Equipment: CT scanners, MRI machines, and surgical robotics
- Semiconductor Manufacturing: Wafer handling equipment and precision positioning stages
- Industrial Machinery: Rotary tables, indexing devices, and precision gearboxes