The D/W R0 R is a compact flanged deep groove ball bearing, measuring just 0.04689″ in bore diameter and 0.20299″ in outer diameter. Made entirely from stainless steel, it offers good resistance to corrosion and wear.
This bearing handles radial loads up to 14 lbf and can spin at speeds up to 140,000 RPM, making it suitable for high-speed applications. Its open design allows for easy lubrication when needed.
The built-in flange provides secure mounting, helping the bearing stay in place during operation. With a temperature range of -30°C to 120°C, it works well in various environments.
Ideal for small precision instruments or miniature machinery where space is limited. Compliant with RoHS and REACH standards, it’s a safe choice for various industries. Weighing only 0.0001kg, it’s incredibly lightweight yet durable.
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How Is D/W R0 R Bearing Engineered for Reliability?
D/W R0 R Bearing features stainless steel rings and balls, ensuring resistance to corrosion and wear.
Its dynamic radial load capacity of 14 lbf makes it suitable for light to moderate radial loads.
The open design allows for easy lubrication, enhancing performance in various conditions.
With a maximum speed of 140,000 rpm, it is ideal for high-speed applications.
Common Applications of D/W R0 R Bearing
D/W R0 R Bearing is commonly used in small electric motors, where its compact size and stainless steel construction ensure reliable performance. The open design allows for easy lubrication, making it suitable for high-speed applications.
In consumer electronics like printers and small fans, D/W R0 R Bearing provides smooth rotation with minimal noise. Its inch sizing makes it a good fit for devices designed to US standards.
For automation systems, D/W R0 R Bearing works well in robotic arms and precision mechanisms. The flange design helps with secure mounting, reducing alignment issues during assembly.
Medical devices such as dental tools benefit from D/W R0 R Bearing’s corrosion-resistant materials. The stainless steel components ensure hygiene and longevity in sterile environments.
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