
The 7007 ACDTP/HCP4B is a super precision angular contact ball bearing with a 35mm bore and 62mm outer diameter, crafted from durable chrome steel. It features a 25° contact angle and ceramic balls for smooth operation.
This bearing handles radial loads up to 3330 lbf and reaches speeds of 24,000 RPM, making it suitable for high-performance applications. Its phenolic cage ensures stability and reduces friction.
The open design allows easy lubrication, while the P4 tolerance class guarantees precise performance. It works in temperatures from -30°C to 110°C.
Ideal for precision machinery like spindles or CNC equipment where accuracy and speed are crucial. Weighing just 0.13kg, it’s lightweight yet robust for demanding tasks.
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Why Choose 7007 ACDTP/HCP4B Bearing for Precision Tasks?
7007 ACDTP/HCP4B Bearing features a 25° contact angle, ideal for high-precision angular contact applications.
Its ceramic balls and chrome steel rings ensure smooth operation with minimal friction.
The phenolic cage maintains ball alignment, enhancing durability and performance.
With a maximum speed of 24,000 rpm, it excels in high-speed environments.
7007 ACDTP/HCP4B Bearing’s P4 tolerance class guarantees exceptional accuracy for demanding tasks.
Its dynamic radial load capacity of 3330 lbf ensures reliable performance under stress.
Ideal for Precision: 7007 ACDTP/HCP4B Bearing
7007 ACDTP/HCP4B Bearing is widely used in high-speed machine tools, where its angular contact design ensures accurate spindle rotation. The ceramic balls reduce friction, making it suitable for prolonged operation.
In robotics, 7007 ACDTP/HCP4B Bearing provides smooth motion control for articulated arms, thanks to its phenolic cage and P4 tolerance. This precision is key for repetitive tasks in automated assembly lines.
For medical imaging devices, 7007 ACDTP/HCP4B Bearing’s low heat generation and high-speed capability enhance diagnostic accuracy. Its chrome steel rings offer durability in sterile environments.
The bearing also fits well in aerospace applications, where matched sets ensure stability in control systems. Its lightweight design is an added advantage for fuel efficiency.
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