Bearings
Linear Bearings & Shaft
Ball Bushings
LME Ball Bushing
Quick Code: BB-535683
LME16 UUOP Samick Open Sealed Linear Ball Bearing 16x26x36mm
The LME16UUOP Samick Open Sealed Linear Ball Bearing is a precision-engineered linear bearing component designed for smooth, reliable linear motion in compact industrial applications. This sealed ball bearing bushing features robust construction with a solid steel outer cylinder combined with precision ball bearings, delivering consistent performance while protecting against dust and debris contamination.
Construction & Design:
- Solid outer cylinder housing constructed from standard bearing steel for structural strength and durability
- Precision ball bearings for smooth, low-friction linear motion
- Sealed design on all sides protects against dust, debris, and environmental contamination
- Open version configuration for versatile installation flexibility
- Compact design ideal for space-constrained applications
Technical Specifications:
- Inside Diameter (Bore): 16mm
- Outside Diameter: 26mm
- Width: 36mm
- Type: Sealed Design (All sides)
- Version: Open
- Material: Standard bearing steel
- Temperature Range: -20°C to +80°C
- Angle Compensation: Without misalignment compensation
- Series: LM series
- Brand: Samick
- Reference: LME16UUOP
Ideal Applications:
- Compact industrial automation and precision machinery
- CNC equipment and precision machine tools with smaller shaft requirements
- Printing and packaging machinery with space limitations
- Precision positioning and guidance systems
- Medical and laboratory equipment requiring precise linear motion
- Applications operating in contaminated or harsh environments
- Light to medium-load linear motion guidance with reliable performance
The LME16UUOP combines Samick's renowned precision engineering with compact capability, making it an excellent choice for small to medium-diameter shaft applications where reliable linear motion guidance, contamination protection, consistent performance, and space efficiency are essential.


