The K25X33X24 is a needle roller and cage assembly with a 25mm bore and 33mm outer diameter, built from sturdy steel. It handles radial loads up to 7650 lbf and spins smoothly at speeds up to 16900 RPM.
Its single-row design with a steel cage ensures reliable performance under high stress. The compact width of 24mm makes it suitable for tight spaces.
This assembly works well in temperatures from -30°C to 110°C and is interchangeable with INA bearings. Ideal for applications like gearboxes or automotive components where space and load capacity matter.
Weighing just 39g, it’s lightweight yet durable. Compliant with RoHS standards for safe use.
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Why Choose K25X33X24 Bearing for Precision Tasks?
K25X33X24 Bearing features a steel cage and needles, ensuring precise alignment and smooth operation.
Its dynamic radial load capacity of 7650 lbf makes it suitable for high-performance applications.
The compact design with a 25 mm bore and 33 mm outer diameter fits well in tight spaces.
With a maximum speed of 16,900 rpm, it delivers reliable performance under demanding conditions.
K25X33X24 Bearing operates efficiently within a temperature range of -30° to 110°C.
Its lightweight construction at just 39 g reduces overall system weight without compromising strength.
Key Fields for K25X33X24 Bearing
K25X33X24 Bearing is commonly used in industrial gearboxes, where its compact design and high load capacity make it ideal for space-constrained applications. The steel construction ensures durability even in demanding environments.
In automotive transmissions, K25X33X24 Bearing provides smooth operation under high radial loads, enhancing performance and longevity. Its metric sizing makes it a versatile choice for various vehicle models.
For automation systems, K25X33X24 Bearing’s high-speed capability suits robotic arms and conveyor mechanisms. The single-row design simplifies installation while maintaining reliability.
In household appliances like washing machines, K25X33X24 Bearing offers quiet and efficient performance. Its lightweight design contributes to energy savings without compromising strength.
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