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Super Precision Angular Contact Ball Bearings 71906 CDTP/HCP4B
Super Precision Angular Contact Ball Bearings 71906 CDTP/HCP4B

Super Precision Angular Contact Ball Bearings 71906 CDTP/HCP4B

The 71906 CDTP/HCP4B is a super precision angular contact ball bearing with a 30mm bore and 47mm outer diameter, designed for high-speed applications. Its 15° contact angle and ceramic balls ensure smooth operation at up to 40,000 RPM.

The chrome steel rings and phenolic cage provide durability, while the open design allows for easy lubrication. It handles radial loads up to 1609 lbf, making it suitable for precision machinery.

This bearing comes with preload options and matched arrangements for better performance. Ideal for use in spindles or high-speed tools where accuracy is crucial.

Weighing just 0.045kg, it’s lightweight yet robust. Compliant with P4 tolerance standards for reliable performance in temperatures from -30°C to 110°C.

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Product Parameters

  • Part Number 71906 CDTP/HCP4B
  • Brand TFL
  • Interchangeable SKF
  • Bore Dia 30 mm
  • Bore Dia Tolerance -0.005mm to 0
  • Outer Dia 47 mm
  • Outer Dia Tolerance -0.006mm to 0
  • Width 9 mm
  • Width Tolerance -0.2mm to 0
  • Ball Dia 4.762 mm
  • Ball Qty 20
  • Contact Angle 15°
  • Tolerance Class P4 (ABEC-7)
  • System of Measurement Metric
  • Seal Type Open
  • Matched Arrangement Available
  • Preload Available
  • For Load Direction Angular Contact
  • Ring Material Chrome Steel
  • Ball Material Ceramic
  • Cage Material Phenolic
  • Dynamic Radial Load 1609 lbf
  • Static Radial Load 1024 lbf
  • Lubrication Lubricated
  • Temperature Range -30° to 110 °C
  • Max Speed 40000 rpm
  • Weight 0.045 kg
  • Price($) 216.882

Features

Why Choose 71906 CDTP/HCP4B Bearing for Precision Tasks?

71906 CDTP/HCP4B Bearing features a 15° contact angle, ideal for high-precision angular contact applications.
Its ceramic balls and chrome steel rings ensure smooth operation with minimal friction.

The phenolic cage in 71906 CDTP/HCP4B Bearing enhances durability while maintaining lightweight performance.
With a dynamic radial load capacity of 1609 lbf, it handles demanding tasks with ease.

71906 CDTP/HCP4B Bearing operates at speeds up to 40,000 rpm, making it suitable for high-speed machinery.
Its P4 tolerance class guarantees exceptional precision in every rotation.

The open design of 71906 CDTP/HCP4B Bearing allows for easy lubrication, extending its service life.
It performs reliably within a temperature range of -30° to 110°C.

Application

Key Fields for 71906 CDTP/HCP4B Bearing
71906 CDTP/HCP4B Bearing is commonly used in high-speed machine spindles, where its 15° contact angle ensures smooth rotation under radial and axial loads. The ceramic balls reduce friction, making it ideal for precision applications.

In robotics, 71906 CDTP/HCP4B Bearing provides reliable performance in articulated arms, thanks to its phenolic cage and P4 tolerance class. Its compact size fits well in space-constrained designs.

For dental drills and surgical tools, 71906 CDTP/HCP4B Bearing’s high-speed capability and low heat generation are crucial. The open design allows for easy lubrication, extending service life in demanding medical environments.

Automotive vs Aerospace: Applications of 71906 CDTP/HCP4B Bearing
In automotive systems, 71906 CDTP/HCP4B Bearing is often found in turbochargers, where its high-speed tolerance improves efficiency. The matched arrangement option ensures consistent performance under varying loads.

Aerospace applications benefit from 71906 CDTP/HCP4B Bearing’s lightweight design and precision. Its ceramic balls and phenolic cage withstand extreme conditions while maintaining accuracy.

What Makes 71906 CDTP/HCP4B Bearing a Preferred Choice?
71906 CDTP/HCP4B Bearing is a go-to for CNC machining centres due to its P4 tolerance and high dynamic load capacity. The open seal type simplifies maintenance without compromising performance.

In 3D printers, 71906 CDTP/HCP4B Bearing’s low friction and high-speed capability ensure precise layer alignment. Its compact dimensions make it suitable for small-scale automated systems.

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