The 6203/VW514 is a single-row deep groove ball bearing with a 17mm bore and 40mm outer diameter, crafted from sturdy chrome steel for durability. It handles radial loads up to 2147 lbf and spins smoothly at speeds up to 17,000 RPM.
Its open design allows for easy lubrication and maintenance, while the chrome steel cage ensures reliable performance. The bearing operates well in temperatures ranging from -30°C to 120°C.
This model is interchangeable with SKF bearings, making it a practical choice for replacements. It’s ideal for applications like electric motors or small machinery where radial loads are common.
Weighing just 65g, it’s lightweight yet robust. Compliant with RoHS and REACH standards for safe and eco-friendly use.
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Performance Features of 6203/VW514 Bearing
6203/VW514 Bearing is built with chrome steel rings and balls, offering strong resistance to radial loads.
Its dynamic radial load capacity reaches 2147 lbf, ensuring reliable performance in various applications.
The chrome steel cage maintains ball alignment, reducing friction and extending service life.
With a maximum speed of 17,000 rpm, it delivers a balance of durability and efficiency.
How Does 6203/VW514 Bearing Reduce Friction?
6203/VW514 Bearing features a deep groove design that minimises friction during operation.
The chrome steel construction ensures smooth movement, even under significant radial loads.
Its open seal type allows for easy lubrication, further reducing wear and tear.
This design makes it suitable for high-speed applications up to 17,000 rpm.
Engineered for Precision: 6203/VW514 Bearing
6203/VW514 Bearing is precision-crafted to meet ABEC 1 and ISO P0 tolerance standards.
Its single-row deep groove design ensures accurate performance in radial load applications.
The chrome steel components provide durability, while the open seal simplifies maintenance.
Operating within a temperature range of -30° to 120°C, it adapts to various environments.
Chrome Steel vs Stainless Steel: Strengths of 6203/VW514 Bearing
6203/VW514 Bearing uses chrome steel for all its components, enhancing durability and load capacity.
This material choice ensures better resistance to wear compared to standard stainless steel.
The bearing’s design supports high-speed operations up to 17,000 rpm without compromising performance.
Its compliance with RoHS and REACH standards makes it an environmentally friendly choice.
Why Choose 6203/VW514 Bearing for Precision Tasks?
6203/VW514 Bearing is designed for precision tasks with its ABEC 1 and ISO P0 tolerance ratings.
The deep groove construction ensures smooth operation under radial loads up to 2147 lbf.
Its chrome steel components provide long-lasting performance in temperatures from -30° to 120°C.
The open seal design allows for easy maintenance, reducing downtime and operational costs.
Common Applications of 6203/VW514 Bearing
In industrial settings, 6203/VW514 Bearing is widely used in electric motors and pumps, thanks to its reliable radial load capacity and smooth operation. The open design simplifies lubrication, making it suitable for continuous-duty machinery.
Where Is 6203/VW514 Bearing Used?
You’ll often spot 6203/VW514 Bearing in automotive applications like alternators and water pumps, where its compact size and durability shine. Its metric dimensions ensure easy integration with most European and Asian vehicle designs.
Ideal for Precision: 6203/VW514 Bearing
For medical devices like centrifuges, 6203/VW514 Bearing offers consistent performance due to its chrome steel construction. The ABEC 1 tolerance ensures smooth rotation, critical for sensitive lab equipment.
Automotive vs Industrial: Applications of 6203/VW514 Bearing
In cars, 6203/VW514 Bearing handles radial loads in wheel hubs, while in factories, it keeps conveyor belts running smoothly. Its versatility makes it a go-to choice for both sectors.
Perfect Fit for Automation: 6203/VW514 Bearing
Robotic arms and small machinery benefit from 6203/VW514 Bearing’s lightweight design and high-speed capability. The chrome steel cage adds durability for repetitive motions in automated systems.
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