The FAG 6322-M-J20AA-C3 is a current-insulated bearing with a 110mm bore and 240mm outer diameter, designed to prevent electrical damage. Its outer ring features a ceramic coating, providing insulation up to 3000V.
This robust unit handles dynamic loads up to 201kN and spins smoothly at speeds up to 4950 RPM. The brass cage ensures durability, while the C3 radial clearance allows for thermal expansion.
The coating offers high electrical resistance, even in damp conditions (10MΩ), making it reliable in harsh environments. Weighing 11.23kg, it’s sturdy yet manageable for its size.
Ideal for electric motors or generators where stray currents are a concern. Compliant with RoHS and REACH standards for safe industrial use.
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How Is 6322-M-J20AA-C3 Bearing Engineered for Reliability?
6322-M-J20AA-C3 Bearing features an outer ring ceramic coating, providing excellent electrical insulation.
Its breakdown voltage reaches up to 3000 V, making it suitable for applications with electrical currents.
The brass cage ensures smooth operation and reduces friction, even at high speeds.
With a dynamic load rating of 201 kN, it delivers reliable performance under heavy loads.
What Makes 6322-M-J20AA-C3 Bearing Suitable for High-Temperature Applications?
6322-M-J20AA-C3 Bearing’s ceramic coating withstands high temperatures, maintaining insulation properties.
The C3 radial clearance allows for thermal expansion, ensuring stable operation in varying conditions.
Its brass cage is durable, reducing wear and extending the bearing’s service life.
With a reference speed of 4950 r/min, it balances speed and reliability.
Designed for Durability: 6322-M-J20AA-C3 Bearing
6322-M-J20AA-C3 Bearing’s ceramic coating resists wear, even in demanding environments.
The brass cage keeps the balls aligned, minimising friction and noise during operation.
Its static load rating of 165 kN ensures stability under heavy loads.
The coating’s electrical resistance remains effective, even in damp conditions.
Steel vs Ceramic Bearings: Strengths of 6322-M-J20AA-C3 Bearing
6322-M-J20AA-C3 Bearing’s ceramic coating offers superior insulation compared to standard steel bearings.
The brass cage enhances durability, making it ideal for high-speed applications.
With a layer thickness of 200 µm, the coating provides reliable electrical resistance.
Its compliance with ROHS and REACH standards ensures environmental safety.
Why Choose 6322-M-J20AA-C3 Bearing for Precision Tasks?
6322-M-J20AA-C3 Bearing’s precise design ensures smooth operation in electrically sensitive applications.
The ceramic coating prevents current passage, protecting machinery from damage.
Its high dynamic load rating of 201 kN supports heavy-duty performance.
The bearing’s compact design fits seamlessly into various industrial setups.
Industrial Uses of 6322-M-J20AA-C3 Bearing
6322-M-J20AA-C3 Bearing is commonly used in electric motors and generators, where its current-insulating properties prevent electrical damage. The ceramic coating on the outer ring ensures reliable performance in high-voltage environments.
Where Is 6322-M-J20AA-C3 Bearing Used?
You’ll often find 6322-M-J20AA-C3 Bearing in wind turbines and industrial drives, where electrical insulation is crucial. Its brass cage and C3 clearance make it suitable for applications with varying thermal expansion.
Built for Heavy-Duty Use: 6322-M-J20AA-C3 Bearing
This bearing handles heavy loads in machinery like pumps and compressors, thanks to its robust dynamic load rating of 201 kN. The 200 µm ceramic layer provides long-lasting insulation even in damp conditions.
Automotive vs Aerospace: Applications of 6322-M-J20AA-C3 Bearing
In automotive systems, 6322-M-J20AA-C3 Bearing is used in hybrid vehicle motors, while aerospace applications benefit from its high-speed capabilities. The breakdown voltage of ≤3000 V makes it versatile across industries.
Perfect Fit for Automation: 6322-M-J20AA-C3 Bearing
6322-M-J20AA-C3 Bearing works well in automated production lines, where electrical interference can disrupt operations. Its 50MΩ dry resistance ensures consistent performance in sensitive electronic environments.
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