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Super Precision Angular Contact Ball Bearings 7202 CD/HCP4ADGA
Super Precision Angular Contact Ball Bearings 7202 CD/HCP4ADGA

Super Precision Angular Contact Ball Bearings 7202 CD/HCP4ADGA

The 7202 CD/HCP4ADGA is a super precision angular contact ball bearing with a compact size of 15mm by 35mm by 22mm, crafted from chrome steel and ceramic balls for durability. It handles radial loads up to 2722 lbf and spins smoothly at speeds up to 95000 RPM.

Its 15° contact angle and extra light preload ensure precise performance, while the phenolic cage reduces friction. The open design allows for easy lubrication, extending its lifespan.

This bearing is universally matched, making it versatile for back-to-back, face-to-face, or tandem arrangements. Ideal for high-speed applications like machine tool spindles or precision instruments.

Weighing just 0.074kg, it’s lightweight yet robust. Compliant with P4A tolerance class, it offers reliable accuracy in temperatures from -30°C to 110°C.

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Product Parameters

  • Part Number 7202 CD/HCP4ADGA
  • Brand TFL
  • Interchangeable SKF
  • Bore Dia 15 mm
  • Bore Dia Tolerance -0.004mm to 0
  • Outer Dia 35 mm
  • Outer Dia Tolerance -0.004mm to 0
  • Width 22 mm
  • Width Tolerance -0.2mm to 0
  • Ball Dia 6.35 mm
  • Ball Qty 10
  • Contact Angle 15°
  • Tolerance Class P4A
  • System of Measurement Metric
  • Seal Type Open
  • Matched Arrangement Universal matching
  • Number Of Bearings In Matched Set 2
  • Universal Matching Bearing Yes, back-to-back (<>), face-to-face (><) or tandem (>>)
  • Preload Extra light / Class A
  • For Load Direction Angular Contact
  • Ring Material Chrome Steel
  • Ball Material Ceramic
  • Cage Material Phenolic
  • Dynamic Radial Load 2722 lbf
  • Static Radial Load 1474 lbf
  • Lubrication Lubricated
  • Temperature Range - 30°C to 110 °C
  • Max Speed 95000 rpm
  • Weight 0.074 kg

Features

Performance Features of 7202 CD/HCP4ADGA Bearing

7202 CD/HCP4ADGA Bearing is crafted with chrome steel rings and ceramic balls, ensuring high precision and durability.
Its 15° contact angle allows for efficient handling of combined radial and axial loads.

The phenolic cage maintains ball alignment, reducing friction and enhancing performance.
With a dynamic radial load capacity of 2722 lbf, it excels in demanding applications.

7202 CD/HCP4ADGA Bearing operates smoothly at speeds up to 95,000 rpm, thanks to its ceramic balls.
The universal matching design offers flexibility in mounting configurations for various needs.

Designed for extra light preload, 7202 CD/HCP4ADGA Bearing ensures minimal energy loss and optimal efficiency.
Its temperature range of -30°C to 110°C makes it suitable for diverse operating conditions.

The P4A tolerance class guarantees high precision, making 7202 CD/HCP4ADGA Bearing ideal for critical applications.
Its lubricated design reduces maintenance needs while ensuring long-lasting performance.

Application

How Does 7202 CD/HCP4ADGA Bearing Improve Performance?
7202 CD/HCP4ADGA Bearing is a go-to choice for high-speed machine spindles, where its ceramic balls and phenolic cage reduce friction and heat buildup. The P4A tolerance ensures exceptional accuracy for precision machining tasks.

In robotics, 7202 CD/HCP4ADGA Bearing excels in articulated arms, providing smooth motion control thanks to its 15° contact angle. The universal matching design allows flexible mounting in tight spaces.

For dental drill handpieces, 7202 CD/HCP4ADGA Bearing’s lubricated design maintains quiet operation at up to 95,000 rpm. Its chrome steel rings withstand frequent sterilisation cycles without compromising performance.

Where Is 7202 CD/HCP4ADGA Bearing Used?
You’ll often find 7202 CD/HCP4ADGA Bearing in 3D printer extruders, where its extra light preload minimises vibration during fine detail work. The metric sizing fits most European-made precision equipment.

In optical lens positioning systems, 7202 CD/HCP4ADGA Bearing’s thermal stability maintains alignment accuracy. The open design allows for easy relubrication during routine maintenance checks.

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