Part Number | CRBS 1408 V UU |
System of Measurement | Metric |
Roller Bearing Type | Crossed |
Bearing Type | Roller |
For Load Direction | Combined |
Construction | Single Row |
Seal Type | Double Seal |
Bore Dia | 140 mm |
Outer Dia | 156 mm |
Width | 8 mm |
R(min) | 0.4 mm |
Holes | Without Holes |
Ring Material | Steel |
Roller Material | Steel |
Mounting Dimensions(da) | 144 mm |
Mounting Dimensions(Da) | 151 mm |
Basic Load Rating C | 11.700 kN |
Basic Load Rating Co | 26.800 kN |
Lubrication | Required |
Shaft Mount Type | Press Fit |
Temperature Range | 0 -230 °F |
ABEC Rating | ABEC5(Available in ABEC7/9) |
RoHS | Compliant |
REACH | Compliant |
Weight | 0.205 Kg |

CRBS 1408 V UU
Design Features of CRBS 1408 V UU Bearing
CRBS 1408 V UU features a thin, lightweight design while maintaining high rigidity and precision. CRBS 1408 V UU outer dia is 156 mm. Its bore dia is 140 mm. Its crossed roller arrangement allows it to support radial, axial, and moment loads, ensuring smooth rotation and reliable performance in space-constrained applications.
What Benefits Can CRBS 1408 V UU Bearing Provide?
- Space-Saving Design: Its slim and lightweight structure is ideal for applications with limited space, reducing the overall size and weight of the equipment.
- High Load Capacity: Despite its compact design, it can handle radial, axial, and moment loads simultaneously, providing excellent performance in demanding conditions.
- Precision and Stability: The crossed roller arrangement ensures high rigidity and precise motion control, making it suitable for applications that require accurate positioning.
- Smooth Operation: Reduced friction within the bearing allows for smooth and efficient rotation, improving the overall efficiency and lifespan of the equipment.
- Versatility: It can be used in a variety of precision applications, including robotics, medical equipment, and aerospace, where compactness and precision are critical.
What Can CRBS 1408 V UU Bearing Be Used for?
- Robotics: For robotic arms and joints, where space is limited, but high precision and load capacity are necessary.
- Medical Equipment: In devices like surgical robots, imaging systems, and patient beds, providing stable and accurate movement in compact spaces.
- Aerospace: Used in satellite mechanisms, gimbals, and flight control systems that demand high precision and minimal weight.
- Semiconductor Manufacturing: Employed in precision equipment for wafer handling and positioning, where accuracy and space efficiency are key.
- Optical Equipment: In telescopes, cameras, and other devices that require stable and precise rotational movement in tight spaces.