K14020CP0
20mm 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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K14020CP0 Bearing Product Overview & Core Advantages
The K14020CP0 is a metric thin-section bearing from the Reali-Slim mm series, engineered for applications where space and weight savings are critical without compromising performance. This single row ball bearing features an open design and is precision-manufactured to ABEC-1 tolerance class, ensuring reliable operation in radial load applications. Its compact cross-section, with a 140 mm bore and 20 mm width, provides a high load capacity relative to its size, making it ideal for precision machinery requiring high rigidity and dimensional stability.
K14020CP0 Bearing Model Code Explained, Specifications & Naming Convention
| Code Segment | Technical Meaning |
|---|---|
| K | Metric series designation for Reali-Slim bearings |
| 140 | Bore diameter: 140 mm |
| 20 | Cross-section width: 20 mm |
| C | Radial internal clearance specification |
| P0 | Normal precision grade (equivalent to ABEC-1) |
K14020CP0 Bearing Structural Features & Performance Benefits
Constructed from chrome steel rings and balls with a brass cage, the K14020CP0 delivers exceptional durability and smooth operation. The thin-section design minimizes weight and space requirements while maintaining high radial load capacity (dynamic: 4676 lbf, static: 8016 lbf). The precise radial internal clearance (0.0000 – 0.0005") ensures consistent performance with minimal vibration. The open construction allows for custom lubrication schemes, while the ABEC-1 precision guarantees reliable operation in demanding applications. The bearing operates effectively within a temperature range of -30°C to 110°C.
K14020CP0 Bearing Typical Application Areas
- Aerospace components and control systems
- Robotics and automation equipment
- Medical imaging devices and surgical robots
- Semiconductor manufacturing equipment
- Precision rotary tables and indexing mechanisms
- Optical positioning systems