S71907 ACD/HCP4ADGA

Hybrid Ceramic Super Precision Bearings

S71907 ACD/HCP4ADGA Hybrid Ceramic Super Precision Bearings
S71907 ACD/HCP4ADGA Hybrid Ceramic Super Precision Bearings

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Part No.
Part No. S71907 ACD/HCP4ADGA

Basic Information

System of measurement Metric
Weight 0.14 kg
Tolerance class P4A
Seal type Sealed
For load direction Angular Contact

Main Dimensions

Bore diameter 35 mm
Bore diameter tolerance -0.004mm to 0
Outside diameter 55 mm
Outside diameter tolerance -0.004mm to 0
Width 20 mm
Width tolerance -0.2mm to 0
Contact angle 25 °

Ball & Washer Dimensions

Ball diameter 5.556 mm
Ball quantity 21

Performance

Temperature range - 30°C to 110 °C
Radial dynamic load rating 3330 lbf
Radial static load rating 2812 lbf
Limiting speed 56 X 1000 rpm
Lubrication Grease
Matched arrangement Universal Matchable (SU)
Number of bearings in matched set 2
Universal matching bearing Universal Matchable (SU)
Preload Extra light / Class A

Materials

Ring material Chrome Steel
Ball material Ceramic
Cage material Phenolic
Technical Drawings No drawings available at the moment, will be launched soon
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S71907 ACD/HCP4ADGA Bearing Product Overview & Core Advantages

The S71907 ACD/HCP4ADGA is a precision angular contact ball bearing designed for demanding applications requiring exceptional accuracy and performance. This matched set of two bearings features a 25° contact angle and ceramic balls, enabling superior high-speed capability and rigidity. Its P4A tolerance class ensures ultra-precise running accuracy, making it ideal for applications where minimal runout and high rotational accuracy are critical. The combination of a phenolic cage and grease lubrication further enhances its performance in high-velocity scenarios.

S71907 ACD/HCP4ADGA Bearing Model Code Explained, Specifications & Naming Convention

The model number S71907 ACD/HCP4ADGA decodes as follows:
  • S7: High-precision bearing series with specific design enhancements for stiffness and speed.
  • 1907: Standard size designation (Bore: 35mm, OD: 55mm, Width: 20mm).
  • ACD: Angular Contact, 25° contact angle, Universal Matchable (SU) design. The "D" indicates a specific internal design for optimal load distribution.
  • HCP4ADGA: A composite suffix denoting:
    • HC: Hybrid Ceramic balls (Silicon Nitride).
    • P4A: Super Precision tolerance class, exceeding ABEC 7 standards.
    • DGA: Indicates a specific grease lubrication and sealing specification for high-speed operation.

S71907 ACD/HCP4ADGA Bearing Structural Features & Performance Benefits

  • Hybrid Ceramic Construction: The use of ceramic balls with a steel ring significantly reduces centrifugal forces, lowers operating temperature, and permits much higher limiting speeds (56,000 rpm) compared to all-steel equivalents. This also enhances durability and provides electrical insulation.
  • High Rigidity and Load Capacity: The 25° contact angle and universal matchable (SU) design allow the bearing set to accommodate combined loads (radial and axial) simultaneously. When mounted face-to-face or back-to-back, the set provides high system rigidity and precise shaft positioning.
  • Optimized High-Speed Performance: The lightweight phenolic resin cage ensures excellent dimensional stability and low friction at high speeds, contributing to smooth operation and extended service life.
  • Precision and Reliability: Manufactured to a P4A super precision tolerance class, this bearing guarantees minimal vibration and exceptional running accuracy, which is paramount in high-precision machinery.

S71907 ACD/HCP4ADGA Bearing Typical Application Areas

This bearing is engineered for the most demanding high-speed and high-precision applications, including:
  • Machine Tool Spindles: High-speed milling, grinding, and turning centers.
  • Precision Robotics: Arm joints and high-accuracy rotary axes.
  • Aerospace & Defense Systems: Gyroscopes, radar systems, and auxiliary power units.
  • Medical Equipment: High-speed dental handpieces and laboratory centrifuges.
  • Semiconductor Manufacturing: Wafer handling robots and precision stages.
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