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The NC110XP0 is a thin-section bearing measuring 11″ by 11.75″ with a slim 0.375″ width, ideal for space-saving designs. Made from chrome steel with brass cage, it handles radial loads up to 2496 lbf and thrust loads up to 4180 lbf.
Its four-point contact design ensures smooth rotation under combined loads, while the chromium plating adds corrosion resistance. The open seal allows easy lubrication and maintenance.
This bearing suits applications requiring precise movement in tight spaces, such as robotics or medical equipment. It’s interchangeable with KAYDON models, making replacements straightforward.
With a temperature range of -30°C to 110°C and RoHS compliance, it’s a reliable choice for various industrial uses. Weighing just 1.16 lbs, it’s lightweight yet durable.
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How Does NC110XP0 Bearing Handle Heavy Loads?
NC110XP0 Bearing features a four-point contact design, making it suitable for handling heavy radial and thrust loads.
Its chrome steel construction ensures durability, while the brass cage maintains ball alignment for smooth operation.
With a static thrust load capacity of 13,680 lbf, it performs reliably in demanding applications.
The chromium plating adds an extra layer of protection against wear and corrosion.
Why Choose NC110XP0 Bearing for Precision Tasks?
NC110XP0 Bearing is designed with ABEC-1 tolerance, ensuring precise performance in critical applications.
The thin-section design saves space without compromising load capacity or reliability.
Its chromium-plated surface enhances corrosion resistance, extending service life.
The brass cage reduces friction, contributing to smoother operation and lower maintenance needs.
Engineered for Precision: NC110XP0 Bearing
NC110XP0 Bearing’s four-point contact design provides excellent load distribution and stability.
The chrome steel rings and balls offer high strength, suitable for both radial and moment loads.
With a dynamic thrust load rating of 4,180 lbf, it handles varied operational demands efficiently.
Its compact width of 0.375″ makes it ideal for space-constrained installations.
Material Composition of NC110XP0 Bearing
NC110XP0 Bearing uses chrome steel for rings and balls, ensuring high strength and wear resistance.
The brass cage enhances durability and reduces friction during operation.
Chromium plating on the surface provides additional protection against corrosion.
This combination of materials ensures reliable performance in diverse environments.
Operational Limits of NC110XP0 Bearing
NC110XP0 Bearing operates effectively within a temperature range of -30°C to 110°C.
Its dynamic radial load capacity of 2,496 lbf makes it suitable for various industrial applications.
The bearing’s chromium-plated surface ensures long-term performance even in harsh conditions.
With a static moment rating of 31,110 lbf, it handles complex load scenarios with ease.
Industrial Uses of NC110XP0 Bearing
NC110XP0 Bearing is commonly used in robotics and automation systems, where its thin section design saves space without compromising load capacity. The chromium plating adds extra protection against wear in high-movement applications.
Where Is NC110XP0 Bearing Used?
You’ll often find NC110XP0 Bearing in medical imaging equipment, where its precise tolerances ensure smooth rotation. The brass cage helps reduce friction, making it ideal for sensitive devices.
Built for Heavy-Duty Use: NC110XP0 Bearing
NC110XP0 Bearing handles heavy loads in industrial machinery like conveyor systems, thanks to its four-point contact design. The chrome steel construction ensures long-lasting performance even in demanding environments.
Automotive vs Aerospace: Applications of NC110XP0 Bearing
In automotive steering systems, NC110XP0 Bearing provides reliable support for rotational movements. For aerospace applications, its lightweight design and high load capacity make it a practical choice.
Perfect Fit for Automation: NC110XP0 Bearing
NC110XP0 Bearing works well in 3D printers and robotic arms, where its slim profile and smooth operation are key. The ABEC-1 tolerance ensures consistent performance in precision tasks.
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