
The 7200 ACDGB/HCP4A is a super precision angular contact ball bearing with a 10mm bore and 30mm outer diameter, measuring just 9mm wide. Made from chrome steel with ceramic balls, it offers smooth operation and durability.
It handles radial loads up to 981 lbf and spins at speeds up to 185,000 RPM, ideal for high-performance applications. The phenolic cage ensures stability, while the 25° contact angle provides excellent load distribution.
This bearing comes pre-lubricated and operates in temperatures from -30°C to 110°C. It can be used in matched sets for back-to-back, face-to-face, or tandem arrangements, offering flexibility in design.
With a P4A tolerance class, it’s suited for precision machinery like spindles or CNC equipment. Weighing only 0.029kg, it’s lightweight yet robust for its size.
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Performance Features of 7200 ACDGB/HCP4A Bearing
7200 ACDGB/HCP4A Bearing is crafted with chrome steel rings and ceramic balls, offering high precision and durability.
Its 25° contact angle ensures 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 981 lbf, 7200 ACDGB/HCP4A Bearing excels in demanding applications.
It supports speeds up to 185,000 rpm, making it suitable for high-speed operations.
The P4A tolerance class guarantees exceptional accuracy and smooth operation.
7200 ACDGB/HCP4A Bearing operates reliably in temperatures from -30°C to 110°C.
Its open design allows for easy lubrication, ensuring consistent performance.
The lightweight construction at 0.029 kg reduces overall system weight.
The universal matching feature enables versatile configurations like back-to-back or face-to-face arrangements.
This flexibility makes 7200 ACDGB/HCP4A Bearing ideal for complex machinery.
Its ceramic balls contribute to lower friction and longer service life.
7200 ACDGB/HCP4A Bearing’s precision engineering ensures minimal noise and vibration.
The light preload class B enhances stability without excessive rigidity.
This balance makes it perfect for applications requiring both accuracy and smooth operation.
Common Applications of 7200 ACDGB/HCP4A Bearing
7200 ACDGB/HCP4A Bearing is widely used in high-speed machine tools, where its ceramic balls and phenolic cage reduce friction and heat buildup. The 25° contact angle ensures stable performance under combined radial and axial loads.
In robotics, 7200 ACDGB/HCP4A Bearing provides precise motion control for articulated arms and joints. Its P4A tolerance class makes it suitable for applications demanding tight rotational accuracy.
For dental handpieces, 7200 ACDGB/HCP4A Bearing’s lightweight design and high-speed capability contribute to smooth operation. The chrome steel rings offer durability in sterilisation cycles.
Where Is 7200 ACDGB/HCP4A Bearing Used?
7200 ACDGB/HCP4A Bearing can be found in optical alignment systems, where its low vibration characteristics improve measurement consistency. The open design allows for custom lubrication to suit specific environmental conditions.
In semiconductor manufacturing, 7200 ACDGB/HCP4A Bearing supports wafer handling equipment with reliable performance. Its universal matching feature simplifies installation in back-to-back or tandem configurations.
Built for Heavy-Duty Use: 7200 ACDGB/HCP4A Bearing
7200 ACDGB/HCP4A Bearing handles demanding loads in textile machinery spindles, maintaining precision over long operating hours. The light preload ensures smooth rotation without excessive rigidity.
For packaging equipment, 7200 ACDGB/HCP4A Bearing’s ceramic balls resist wear in high-cycle applications. Its compact 10mm bore fits space-constrained designs while delivering angular contact performance.
Automotive vs Aerospace: Applications of 7200 ACDGB/HCP4A Bearing
In automotive turbochargers, 7200 ACDGB/HCP4A Bearing withstands extreme rotational speeds with minimal lubrication requirements. The phenolic cage dampens vibrations for quieter operation.
For aerospace instrumentation, 7200 ACDGB/HCP4A Bearing’s temperature stability ensures reliability across flight conditions. The metric dimensions facilitate integration with international component standards.
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