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Characteristics of Thin Section Ball Bearing S07403AF0
2023-01-05Characteristics of Thin Section Ball Bearing S07403AF0
Size: The bore diameter is 74 mm, the outer diameter is 80 mm, and its width is 2.5 mm.
Material: Material: The ring and balls of S07403AF0 are made of AISI 440C stainless steel.
Cage: No cage, full complement design
Characteristics
- Thin Section Design: It features a thin cross-section, allowing for a larger bore diameter within a limited space, and is ideal for applications with stringent space requirements.
- High Precision: S07403AF0 can reach precision levels such as P0, P5, and P6, with high running accuracy, which can meet the requirements of high-precision equipment.
- Good Corrosion Resistance: AISI 440C stainless steel, made it has good corrosion resistance and can be used in some environments with certain corrosion risks.
Applications
- Industrial Automation Equipment Industry
In industrial automation production lines, this bearing can be used in precision conveyor belt drive mechanisms and rotating components of small servo motors. The S07403AF0 can effectively reduce equipment volume, improve transmission stability, and prevent jamming or malfunctions caused by corrosion.
- Security Monitoring Equipment Industry
It is suitable for the pan-tilt rotating components of high-definition dome surveillance cameras. Surveillance cameras need to achieve 360° flexible rotation within a limited spherical housing, and the cage-free full-complement design of the S07403AF0bearing can also improve load-bearing capacity, adapting to the force requirements of long-term suspended operation of the cameras.
- Semiconductor Manufacturing Equipment Industry
It can be used in the joint parts of wafer handling robotic arms and precision transmission components of lithography equipment. The thin-section design helps the robotic arms achieve a more compact structure, adapting to the limited equipment installation space in wafer factories.
- New Energy Vehicle Electronic Equipment Industry
It is suitable for the rotating scanning components of on-board lidar and the precision fixture transmission mechanisms of battery testing equipment. The on-board lidar needs to achieve high-speed rotating scanning within the narrow space of the vehicle body; the corrosion resistance improves the service life of the components, and the cage-free full-complement design can also enhance the impact resistance of the bearing, adapting to the vibration environment during vehicle operation.