Specification Brand : HARFINGTON BulletPoint1 : Size - Model: 6802-2RS, 15mm inner diameter, 24mm outer diameter, 5mm thickness BulletPoint2 : Material - Rolling Balls are made of chrome steel with excellent surface quality, high hardness, high load capacity, and wear resistance. Cage & Inner Outer Race are both made of stamping steel. BulletPoint3 : Features - Single row, double sealed type. ABEC1 accuracy, Z2 noise level. Rated dynamic load: 1300N; Rated static load: 1300N. They are used to accommodate radial and axial loads in both directions. BulletPoint4 : Applications - Suitable for many kinds of industrial equipment, such as pumps, motors, gearboxes, conveyors, and power tools. BulletPoint5 : Notice - These bearings often feature a simple design, allowing for easy disassembly, lubrication, and maintenance, which contributes to their longevity and overall performance. ItemName : HARFINGTON 10pcs 6802-2RS Deep Groove Ball Bearings 15mm Bore 24mm OD 5mm Thick Chrome Steel Double Sealed Bearing for Motors Pumps Conveyors ItemPackageDimensions_Height : 18.7 centimeters ItemPackageDimensions_Length : 5.1 centimeters ItemPackageDimensions_Width : 10.6 centimeters ItemTypeKeyword : deep-groove-ball-bearings Manufacturer : HARFINGTON NumberOfItems : 10 PartNumber : hta230805hh000171 ProductDescription : This deep groove ball bearing is constructed using chrome steel material, and its sealing type features a double-side dust cover. With low friction and minimal noise levels, this bearing ensures optimal performance. Its precision construction and durability meet industrial standards, making it a good choice for compact space applications across various industries. Such as pumps, motors, gearboxes, conveyors, and power tools. Regular maintenance is essential to ensure the best performance and longevity of the bearing. Clean it using a non-corrosive solvent and thoroughly dry it before applying lubrication. In case of any observed damage or excessive wear, it is important to promptly replace the bearing for continued optimal performance.