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Constant Section (CS) Bearings KD047CP0
Constant Section (CS) Bearings KD047CP0

Constant Section (CS) Bearings KD047CP0

The KD047CP0 is a slim, open-type ball bearing measuring 4.75″ by 5.75″ with a width of just 0.5″. Made from chrome steel with a brass cage, it’s designed for radial loads up to 1892 lbf.

Its thin-section design saves space while maintaining strength, ideal for compact machinery. The ABEC-1 tolerance ensures reliable performance without excessive precision demands.

This bearing suits applications like robotics or medical equipment where space is limited. It’s interchangeable with KAYDON models, simplifying replacements.

Weighing 0.94 lbs, it operates smoothly in temperatures from -30°C to 110°C. RoHS compliance guarantees safe use in various industries.

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Product Parameters

  • Part Number KD047CP0
  • Brand TFL
  • Interchangeable KAYDON
  • System of Measurement Inch
  • Bearing Type Ball
  • For Load Direction Radial
  • Construction Single Row
  • Seal Type Open
  • Bore Dia 4.75"
  • Bore Dia Tolerance -0.0010"– 0"
  • Outer Dia 5.75"
  • Outer Dia Tolerance -0.0008"– 0"
  • Width 0.5"
  • Width Tolerance +.000 –.005"
  • Thin Section Bearings Type Reali-Slim Open Bearings
  • Series KD 1/2" x 1/2"
  • Tolerance Class ABEC-1
  • Radial Clearance 0.0000 – 0.0005"
  • External Diameter On Inner Ring 5.120"
  • Internal Diameter On Outer Ring (Small Side Face) 5.380"
  • Ring Material Chrome Steel
  • Ball Material Chrome Steel
  • Cage Material Brass
  • Dynamic Radial Load 1892 lbf
  • Static Radial Load 3530 lbf
  • Temperature Range -30°C to 110 °C
  • ISO Radial 3701 lbf
  • Lubrication Lubricated
  • RoHS Compliant
  • Weight 0.94 lbs
  • price($) 112.91

Features

Performance Features of KD047CP0 Bearing

KD047CP0 Bearing is built with chrome steel rings and balls, offering strong radial load capacity up to 1892 lbf.
Its brass cage ensures smooth ball movement, reducing friction and enhancing durability.
The thin-section design makes it ideal for applications where space is limited.
With a temperature range of -30°C to 110°C, it performs reliably in various environments.

Application

Key Fields for KD047CP0 Bearing
KD047CP0 Bearing is widely used in industrial automation, particularly in robotic arms and precision machinery where its thin-section design saves space without compromising load capacity. The open seal allows for easy lubrication adjustments in high-speed operations.

In aerospace applications, KD047CP0 Bearing’s inch sizing and ABEC-1 tolerance make it suitable for navigation systems and control mechanisms. Its brass cage ensures smooth rotation even under varying temperatures.

For medical imaging devices, KD047CP0 Bearing’s chrome steel construction provides reliable performance in sensitive equipment. The consistent radial clearance helps maintain accuracy in diagnostic tools.

Where Is KD047CP0 Bearing Used?
You’ll often find KD047CP0 Bearing in packaging machinery, where its slim profile fits into tight spaces while handling radial loads efficiently. The lubricated design reduces friction during continuous operation.

In semiconductor manufacturing, KD047CP0 Bearing supports wafer handling systems with its precise tolerances. The chrome steel rings offer durability in cleanroom environments.

Built for Heavy-Duty Use: KD047CP0 Bearing
KD047CP0 Bearing excels in construction equipment like compact cranes, where its static radial load capacity handles heavy weights. The brass cage minimises wear during repetitive movements.

For textile machinery, KD047CP0 Bearing’s thin section allows seamless integration into spinning frames. Its temperature range suits both heated and cooled production areas.

Automotive vs Aerospace: Applications of KD047CP0 Bearing
In automotive steering systems, KD047CP0 Bearing provides smooth rotation with its low-friction brass cage. The inch measurements align with North American vehicle standards.

For aircraft landing gear mechanisms, KD047CP0 Bearing’s lightweight design reduces overall system weight. The ABEC-1 tolerance ensures reliability during critical operations.

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