-Bearings-SB070XP0-Dimensions.webp)
The SB070XP0 is a slim stainless steel bearing measuring 7″ in bore and 7.625″ in outer diameter, with a compact width of just 0.3125″. Its four-point contact design handles both radial and thrust loads efficiently.
Made from durable stainless steel with a brass cage, it offers smooth operation and resists corrosion. The open seal design allows for easy lubrication and maintenance.
This bearing can manage dynamic radial loads up to 1498 lbf and static thrust loads up to 7420 lbf. It performs well in temperatures ranging from -30°C to 110°C.
Ideal for applications requiring thin-section bearings, such as robotics or precision machinery. It’s interchangeable with KAYDON models, making it a versatile choice for replacements. Weighing only 0.5 lbs, it’s lightweight yet robust.
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How Does SB070XP0 Bearing Handle Heavy Loads?
SB070XP0 Bearing is crafted with stainless steel rings and balls, offering strong resistance to heavy loads.
Its dynamic radial load capacity reaches 1498 lbf, ensuring reliable performance in demanding applications.
The brass cage maintains ball alignment, reducing wear and extending service life.
With a static thrust load of 7420 lbf, it provides durability and efficiency in various conditions.
Where Is SB070XP0 Bearing Used?
SB070XP0 Bearing is commonly found in robotics, where its thin section design saves space without compromising load capacity. The stainless steel construction ensures durability in high-movement applications like robotic arms.
In aerospace systems, SB070XP0 Bearing handles precise movements in control mechanisms, thanks to its ABEC-1 tolerance. The brass cage adds stability, making it reliable under varying temperatures.
For medical imaging devices, SB070XP0 Bearing’s smooth operation reduces vibration, ensuring clear scans. Its open design allows for easy lubrication, extending service life in critical environments.
In packaging machinery, SB070XP0 Bearing supports high-speed conveyor belts with minimal friction. The four-point contact design distributes loads evenly, preventing premature wear.
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