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NSK Ceramic-Coated Insulated Ball Bearings 6320HDY2C3
NSK Ceramic-Coated Insulated Ball Bearings 6320HDY2C3

NSK Ceramic-Coated Insulated Ball Bearings 6320HDY2C3

The NSK 6320HDY2C3 is a ceramic-coated insulated ball bearing with a 100mm bore and 215mm outer diameter, designed to handle high loads and speeds. Its outer ring features a durable ceramic coating, providing excellent electrical insulation.

This bearing can manage dynamic loads up to 182kN and spins smoothly at speeds up to 6700 RPM. The sheet metal cage ensures stability, while the C3 radial clearance allows for thermal expansion.

The ceramic coating offers a breakdown voltage of 1000V and electrical resistance of 50-200 MΩ, making it ideal for electric motors or generators. It’s also RoHS compliant for safe use in various industries.

Weighing 7.916kg, it’s a robust choice for heavy-duty applications where electrical insulation is crucial. The coating thickness ranges from 100 to 500µm for reliable performance.

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Product Parameters

  • Model 6320HDY2C3
  • Product Category Ceramic-Coated Insulated Ball Bearings
  • Coating Suffix HDY2
  • Insulating Coating Types Outer ring ceramic coated
  • Manufacturers NSK
  • Bore Diameter 100.0 mm
  • Outside Diameter 215.0 mm
  • Width 47.0 mm
  • Net Weight 7.916 kg
  • Basic Dynamic Load Rating 182.0 kN
  • Basic Static Load Rating 140.0 kN
  • Reference Speed 6700.0 r/min
  • Breakdown Voltage (DC) Breakdown Voltage 1000v
  • Layer Thickness 100~500 µm
  • Electrical Resistance 50~200 MΩ
  • Cage Material Sheet metal
  • Radial Internal Clearance C3
  • ROHS Compliant
  • REACH Compliant

Features

How Is 6320HDY2C3 Bearing Engineered for Reliability?

6320HDY2C3 Bearing features a ceramic-coated outer ring, providing excellent insulation against electrical currents.
The coating ensures breakdown voltage up to 1000v, making it suitable for high-voltage environments.

With a dynamic load rating of 182.0 kN, 6320HDY2C3 Bearing handles heavy loads efficiently.
Its C3 radial internal clearance allows for thermal expansion, ensuring stable performance.

The sheet metal cage maintains ball alignment, reducing friction and wear.
This design extends the bearing’s service life even in demanding conditions.

6320HDY2C3 Bearing operates smoothly at speeds up to 6700 r/min.
Its ceramic coating also offers resistance to corrosion, enhancing durability.

Application

Industrial Uses of 6320HDY2C3 Bearing
The 6320HDY2C3 Bearing is commonly used in electric motors and generators, where its ceramic coating prevents electrical arcing. This makes it ideal for industries relying on high-voltage equipment.

In wind turbine applications, 6320HDY2C3 Bearing handles heavy loads while maintaining electrical insulation. Its C3 clearance ensures reliable performance under varying temperatures.

For railway systems, 6320HDY2C3 Bearing’s durable construction supports traction motors. The ceramic coating extends service life by reducing wear from electrical currents.

Where Is 6320HDY2C3 Bearing Used?
You’ll find 6320HDY2C3 Bearing in industrial pumps, where its insulation properties prevent damage from stray currents. The sheet metal cage adds stability during high-speed operation.

In manufacturing equipment, 6320HDY2C3 Bearing reduces downtime caused by electrical pitting. Its breakdown voltage rating makes it suitable for harsh electrical environments.

Built for Heavy-Duty Use: 6320HDY2C3 Bearing
The 6320HDY2C3 Bearing works well in steel mill machinery, handling both radial and axial loads. Its ceramic-coated outer ring resists corrosion in demanding conditions.

For mining equipment, 6320HDY2C3 Bearing offers reliable performance in dusty environments. The C3 clearance accommodates thermal expansion during continuous operation.

Automotive vs Aerospace: Applications of 6320HDY2C3 Bearing
In electric vehicles, 6320HDY2C3 Bearing protects drivetrain components from electrical damage. Its high dynamic load rating suits frequent start-stop cycles.

For aircraft systems, 6320HDY2C3 Bearing’s lightweight design and insulation are valuable. The ceramic coating prevents current-induced failures in avionics.

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