-Bearings-KC100CP0-Dimensions.webp)
The KC100CP0 is a thin-section radial ball bearing with a 10-inch bore and 10.75-inch outer diameter, crafted from durable chrome steel. Its slim 0.375-inch width makes it ideal for space-constrained applications while handling radial loads up to 1781 lbf.
Designed as a single-row open bearing, it features a brass cage for smooth operation and is lubricated for long-term performance. With ABEC-1 tolerance, it ensures reliable precision in motion control systems.
This model is interchangeable with KAYDON bearings, offering a practical replacement option. Suitable for use in robotics or medical equipment where compact design and radial load capacity are key.
Weighing 1.06 lbs, it operates efficiently in temperatures from -30°C to 110°C. Compliant with RoHS standards, it’s a safe choice for various industrial uses.
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How Does KC100CP0 Bearing Reduce Friction?
KC100CP0 Bearing features chrome steel rings and balls, ensuring smooth operation with minimal friction.
Its brass cage maintains proper ball alignment, reducing wear and enhancing efficiency.
The ABEC-1 tolerance class guarantees consistent performance in radial load applications.
With a dynamic radial load capacity of 1781 lbf, it handles demanding tasks reliably.
Where Is KC100CP0 Bearing Used?
KC100CP0 Bearing is commonly found in industrial automation setups, particularly in robotic arms and precision machinery where its thin-section design saves space without compromising strength. The open seal allows for easy lubrication, ensuring smooth operation in high-speed applications.
In aerospace equipment, KC100CP0 Bearing provides reliable radial load support for components like satellite positioning systems. Its chrome steel construction ensures durability even in demanding environments with temperature fluctuations.
For medical imaging devices, KC100CP0 Bearing’s brass cage reduces friction, making it ideal for sensitive equipment requiring quiet and precise movement. The ABEC-1 tolerance guarantees consistent performance in critical applications.
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