Lee Controls, LLC Datasheets for Linear Bearings

Linear bearings are used in applications where a component needs to be moved along a straight line with high accuracy.
Linear Bearings: Learn more

Product Name Notes
Composite Linear Twin Bearing Pillow Blocks from LEE LINEAR are for applications that are double the dynamic load carried by a regular composite pillow block. Composite construction is ideal for...
LEE LINEAR® composite bearings are offered in Self Lubricated and Ceramic composites, in sleeve bearings and pillow block models. The Self Lubricating bearing is manufactured with Teflon® and polyimide filler,...
LEE LINEAR® composite bearings are offered in Self Lubricated and Ceramic composites, in sleeve bearings and pillow block models. The Self Lubricating bearing is manufactured with Teflon® and polyimide filler,...
Precision Linear Ball Bearings are superior to standard linear ball bearings due to their accuracy, travel life, and high load handling. With a lower coefficient of friction, LEE LINEAR's Precision...
Precision Plus Linear Ball Bearing Pillow Blocks from LEE LINEAR have all the advantages of Precision Plus Linear Ball Bearings, with the added bonus of mountability. They are available in...
Precision Plus Linear Ball Bearings from LEE LINEAR provide superior life with superb accuracy, while maintaining high load capabilities. Precision Plus Linear Ball Bearings are self-aligning with integral seals. They...
The superiority of LEE LINEAR® Roller Bearing Pillow Blocks is inherent in the design. Available in single, double, and twin options. Features Easy Clearance Adjustment Self-Aligning Corrosion Resistant Operate at...
The unique design of the patented Roller Bearing Pillow Block incorporates a larger "rolling" diameter than conventional linear ball bearing pillow blocks. The larger rolling diameter enables the bearing to...
With a relatively low coefficient of friction, LEE LINEAR® Composite Pillow Blocks are available in Ceramic and Self Lubricating models with or without the self aligning feature.