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Super Precision Angular Contact Ball Bearings S7009 CE/HCP4BVG275
Super Precision Angular Contact Ball Bearings S7009 CE/HCP4BVG275

Super Precision Angular Contact Ball Bearings S7009 CE/HCP4BVG275

The S7009 CE/HCP4BVG275 is a super precision angular contact ball bearing with a 45mm bore and 75mm outer diameter, crafted from chrome steel for durability. It handles radial loads up to 2925 lbf and spins smoothly at speeds up to 32,000 RPM.

Its 15° contact angle and ceramic balls reduce friction, while the phenolic cage ensures quiet operation. The sealed design keeps lubrication in and contaminants out, ideal for long-term use.

This bearing is available with preload and matched arrangements, offering flexibility for high-precision setups. It works well in temperatures from -30°C to 110°C.

Perfect for applications like machine tool spindles or high-speed robotics, where accuracy and reliability are key. Weighing just 0.23kg, it’s lightweight yet robust for its size. Compliant with P4 tolerance standards for precision performance.

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Product Parameters

  • Part Number S7009 CE/HCP4BVG275
  • Brand TFL
  • Interchangeable SKF
  • Bore Dia 45 mm
  • Bore Dia Tolerance -0.006mm to 0
  • Outer Dia 75 mm
  • Outer Dia Tolerance -0.007mm to 0
  • Width 16 mm
  • Width Tolerance -0.2mm to 0
  • Ball Dia 7.144 mm
  • Ball Qty 21
  • Contact Angle 15°
  • Tolerance Class P4 (ABEC-7)
  • System of Measurement Metric
  • Seal Type Sealed
  • Matched Arrangement Available
  • Preload Available
  • For Load Direction Angular Contact
  • Ring Material Chrome Steel
  • Ball Material Ceramic
  • Cage Material Phenolic
  • Dynamic Radial Load 2925 lbf
  • Static Radial Load 1912 lbf
  • Lubrication Lubricated
  • Temperature Range -30° to 110 °C
  • Max Speed 32000 rpm
  • Weight 0.23 kg
  • Price($) 276.669

Features

Performance Features of S7009 CE/HCP4BVG275 Bearing

S7009 CE/HCP4BVG275 Bearing is designed with a 15° contact angle, optimising load distribution for angular contact applications.
Its ceramic balls and chrome steel rings enhance durability while reducing friction.

The phenolic cage ensures smooth operation, even at high speeds up to 32,000 rpm.
This bearing is preloaded and available in matched arrangements for precise performance.

S7009 CE/HCP4BVG275 Bearing handles dynamic radial loads up to 2925 lbf, making it suitable for demanding tasks.
Its sealed design and lubrication extend service life while minimising maintenance needs.

With a temperature range of -30° to 110°C, S7009 CE/HCP4BVG275 Bearing performs reliably in various conditions.
Its P4 tolerance class ensures high precision for critical applications.

Application

Industrial Uses of S7009 CE/HCP4BVG275 Bearing
S7009 CE/HCP4BVG275 Bearing is commonly used in high-speed machine tools, where its precision and angular contact design ensure accurate performance. The sealed construction helps maintain lubrication, reducing maintenance needs in demanding environments.

What Makes S7009 CE/HCP4BVG275 Bearing a Preferred Choice?
In robotics, S7009 CE/HCP4BVG275 Bearing provides smooth motion control for articulated arms, thanks to its ceramic balls and phenolic cage. Its lightweight design also contributes to energy efficiency in automated systems.

Perfect Fit for Automation: S7009 CE/HCP4BVG275 Bearing
S7009 CE/HCP4BVG275 Bearing works well in 3D printers, offering reliable support for high-speed print heads. The P4 tolerance class ensures minimal vibration, which is crucial for detailed print quality.

Automotive vs Aerospace: Applications of S7009 CE/HCP4BVG275 Bearing
In automotive applications, S7009 CE/HCP4BVG275 Bearing supports electric motor shafts, handling both radial and axial loads efficiently. For aerospace, its ceramic balls reduce weight while maintaining durability in critical systems.

Medical vs Industrial: Where S7009 CE/HCP4BVG275 Bearing Excels
S7009 CE/HCP4BVG275 Bearing is ideal for medical imaging devices, where its precision and low friction enhance performance. In industrial settings, it’s used in spindle drives, offering long service life even under continuous operation.

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