7200C Angular Contact Ball Bearing for High Axial Load Applications | 10 mm Bore

The 7200C Series is a precision-engineered Angular Contact Ball Bearing designed to efficiently handle significant combined radial and axial loads. Featuring a 15° contact angle (C suffix), it delivers enhanced axial rigidity, high running accuracy, and reliable performance in demanding high-speed and high-load applications such as machine tool spindles, gearboxes, and robust industrial drives.



7200C Series Angular Contact Ball Bearing Single Row | 10x30x9 mm | 15° Contact Angle | Options: Open, ZZ Shields, or 2RS Seals

The 7200C Series is engineered to provide superior axial load capacity and rotational stability within a versatile 10mm bore design. Its optimized internal geometry and precision manufacturing ensure smooth operation under substantial combined loads, making it a critical component for systems where stiffness, accuracy, and durability are paramount.

7200C Series Precision-engineered Angular Contact Ball Bearing Single Row For High Axial Loads

Comprehensive Applications

Designed for robust mechanical systems across industries:

Machine Tools & Precision Spindles
  • Grinding Machine Spindles
  • Lathe & Milling Machine Spindles
  • Small Machining Center Spindles
  • High-Speed Drilling Heads
Power Transmission & Gearboxes
  • Industrial Gearbox Input/Output Shafts
  • Power Take-Off (PTO) Units
  • Agricultural Driveline Transmissions
  • Electric Vehicle Reduction Gear Sets
Industrial Pumps & Compressors
  • Multistage Centrifugal Pumps
  • Screw Compressor Rotor Supports
  • High-Pressure Hydraulic Pump Ends
  • Fan & Blower Motor Shafts
Material Handling & Robotics
  • Robotic Arm Heavy-Duty Wrist Joints
  • High-Load Linear Actuator Screws
  • Palletizer & Conveyor Drive Units
  • Automated Welding Turn Tables

Key Performance Features

01. Superior Axial Rigidity & Load Capacity

With its 15° contact angle (C), the 7200C offers significantly higher axial load capacity and shaft rigidity compared to deep groove ball bearings of similar size. This design is essential for applications requiring precise axial positioning and resistance to thrust forces.

02. Stable High-Speed Performance

Precision-ground raceways and high-quality balls contribute to low friction and heat generation, enabling stable performance at speeds up to 18,000 r/min (oil lubricated). Suitable for continuous operation in demanding industrial environments.

03. Versatile Mounting & Protection

Designed for paired mounting (DB, DF, DT arrangements) to accommodate combined loads from any direction. Available in open, shielded (ZZ), or sealed (2RS) configurations to suit environments ranging from clean, lubricated spindles to contaminated industrial settings.

Technical Specifications

Bearing Type Single Row Angular Contact Ball Bearing
ISO Dimension Series Standard Series
Basic Designation 7200
Suffix C (15° Contact Angle) [Open, ZZ (steel shields), 2RS (rubber seals)]
Bore Diameter (d) 10 mm
Outer Diameter (D) 30 mm
Width (B) 9 mm
Material (Races & Balls) Chrome Steel (GCr15 / SAE 52100)
Precision Class Standard / P5 Grade Available
Cage Material Pressed Steel (Standard), Machined Brass (High-Speed)
Dynamic Load Rating (Cʳ) 8.30 kN
Static Load Rating (C₀ʳ) 4.75 kN
Limiting Speed (Grease) 14,000 r/min
Limiting Speed (Oil) 18,000 r/min
Weight (approx.) 38.0 g

Interchange Part Numbers

Direct replacement for major brand equivalents:

  • SKF: 7200 C
  • NSK: 7200C
  • FAG: 7200 C
  • NTN: 7200C
  • KOYO: 7200C

Design & Configuration

The standard 7200C bearing is supplied as an open type for custom lubrication or paired mounting adjustments. For basic protection, the ZZ suffix adds non-contact steel shields. For fully sealed applications, the 2RS version with contact rubber seals is available. It is commonly paired in back-to-back (DB) or face-to-face (DF) arrangements to optimize axial and moment load handling.

"In machine tool spindles and heavy-duty gearboxes, the 7200C paired in a back-to-back (DB) configuration provides the critical axial stiffness and load capacity needed for precision and reliability under demanding conditions."

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