lianxidianhua +86 15806631151 send-sms info@sdtflbearing.com
/
/
Constant Section (CS) Bearings K09020XP0
Constant Section (CS) Bearings K09020XP0

Constant Section (CS) Bearings K09020XP0

The K09020XP0 is a constant section ball bearing measuring 90mm by 130mm by 20mm, crafted from durable chrome steel with a brass cage. It handles radial loads up to 4989 lbf and thrust loads up to 7123 lbf, making it versatile for various applications.

Its slim design and four-point contact construction provide stability and smooth operation, even under moment loads. The open seal type allows for easy lubrication and maintenance.

This bearing is interchangeable with KAYDON models, offering a reliable replacement option. Ideal for machinery requiring precise movement and space-saving designs, such as robotics or medical equipment.

Weighing just 0.08kg, it’s lightweight yet robust, with a temperature range of -30°C to 110°C. Compliant with RoHS standards for safe use.

Get A Free Quote

"*" indicates required fields

This field is for validation purposes and should be left unchanged.

Product Parameters

  • Part Number K09020XP0
  • Brand TFL
  • Interchangeable KAYDON
  • System of Measurement Metric
  • Bearing Type Ball
  • For Load Direction Four Point Contact
  • Construction Single Row
  • Seal Type Open
  • Bore Dia 90 mm
  • Bore Dia Tolerance -0.02mm to 0
  • Outer Dia 130 mm
  • Outer Dia Tolerance -0.015mm to 0
  • Width 20 mm
  • Width Tolerance +.000 –.127mm
  • Thin Section Bearings Type Reali-Slim mm Metric Bearings
  • Series 20 mm
  • Tolerance Class ABEC-1
  • Radial Clearance 0.0000 – 0.0005"
  • External Diameter On Inner Ring 105 mm
  • Internal Diameter On Outer Ring (Small Side Face) 115 mm
  • Ring Material Chrome Steel
  • Ball Material Chrome Steel
  • Cage Material Brass
  • Dynamic Radial Load 4989 lbf
  • Static Radial Load 5452 lbf
  • Static Thrust Load 13626 lbf
  • Static Moment 300 lbf
  • Temperature Range -30°C to 110 °C
  • Moment Load Rating 916 lbf
  • Dynamic Thrust Load 7123 lbf
  • Lubrication Lubricated
  • RoHS Compliant
  • Weight 0.08 Kg
  • price($) 80.13

Features

Performance Features of K09020XP0 Bearing

K09020XP0 Bearing is built with chrome steel rings and balls, offering strong resistance to heavy loads.
Its dynamic radial load capacity reaches 4989 lbf, making it suitable for demanding applications.

The brass cage ensures smooth operation by keeping the balls aligned and reducing friction.
With a width of just 20 mm, K09020XP0 Bearing fits into compact spaces without sacrificing performance.

K09020XP0 Bearing operates efficiently in temperatures ranging from -30°C to 110°C.
Its open design allows for easy lubrication, ensuring long-term reliability.

Application

Common Applications of K09020XP0 Bearing
K09020XP0 Bearing is widely used in industrial machinery, especially in applications where space is limited but high load capacity is needed, such as robotic arms and conveyor systems. Its thin-section design makes it ideal for compact setups without compromising performance.

In the automotive sector, K09020XP0 Bearing is often found in steering mechanisms and gearboxes, where its four-point contact design ensures smooth handling of radial and thrust loads. The chrome steel construction adds durability for long-term use.

For automation equipment, K09020XP0 Bearing provides reliable performance in precision components like CNC machines and 3D printers. The brass cage enhances stability, making it suitable for high-speed operations.

In medical devices, K09020XP0 Bearing’s precise tolerances and smooth operation make it a good fit for imaging equipment and surgical tools. The lubricated design ensures quiet and efficient performance in sensitive environments.

Around the home, K09020XP0 Bearing can be found in appliances like washing machines and fans, where its durability and low maintenance are appreciated. The metric sizing ensures compatibility with a variety of household devices.

Q&A

SEND INQUIRY

"*" indicates required fields

This field is for validation purposes and should be left unchanged.