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R6zz
Part Number | R6zz |
System of Measurement | Inch |
R6ZZA3MC3SRL | |
Bearing Type | Ball |
For Load Direction | Radial |
Construction | Single Row |
Inner Ring Type | Standard |
Seal Type | Shielded |
Bore Dia | 0.375" |
Bore Dia Tolerance | -0.0003" to 0" |
Outer Dia | 0.875" |
Outer Dia Tolerance | -0.0003" to 0" |
Width | 0.2812" |
Width Tolerance | -0.005" to 0" |
Ring Material | Chrome Steel |
Ball Material | Chrome Steel |
Cage Material | Stainless Steel |
Shield Material | 300 Series Stainless Steel |
Dynamic Radial Load | 638 lbf |
Static Radial Load | 256 lbf |
Max Speed (X1000 rpm) | 32 |
Lubrication | Required |
Shaft Mount Type | Press Fit |
Temperature Range | -86 to 230 °F |
ABEC Rating | ABEC1 |
Radial Clearance Trade No | MC3 |
Radial Clearance | 0.00008" to 0.0005" |
RoHS | Compliant |
REACH | Compliant |
Ball Dia | 0.15630" |
Ball Qty | 7 |
Weight | 11.7 g |
Design Features of R6zz Bearing
R6zz Bearing offers dependable and efficient performance in industrial applications where space is at a premium. R6zz bore dia is 0.375". Its out dia is 0.875". R6zz ball material is Chrome Steel. Its seal type is Shielded. This bearing boasts high-speed capabilities, low friction, and minimal noise levels, ensuring optimal performance. Built to meet industry standards for precision and durability, it is an ideal choice for a variety of compact-space applications in diverse industries.
Applications of R6zz Bearing
R6zz Bearing finds applications in various industries that require high precision and compact design, such as medical devices, robotics, and aerospace technology. It is also used in computer hard drives, motors, and instrumentation equipment. Its small size and efficient performance make it a popular choice for industries where space is limited but high precision is essential.
Maintenance and Troubleshooting Tips of R6zz Bearing
To ensure optimal performance and longevity of R6zz Bearing, regular maintenance is necessary. Inspect the bearing frequently for any signs of damage, wear, or contamination. Clean it with a non-corrosive solvent and dry it thoroughly before lubrication. If any damage or excessive wear is detected, replace the bearing immediately. In case of any issues with the application, troubleshoot to ensure the bearing is being used within its designed parameters.