The RN-2×1.3 BF/G3 is a compact needle roller bearing with a 2mm diameter and 1.3mm length, made from durable chrome steel. Its flat ends and high hardness (HRC60-65) ensure reliable performance under load.
This bearing meets G3 precision standards, with tight length tolerances and excellent roundness for smooth operation. It’s interchangeable with INA models, making it a versatile choice for replacements.
Ideal for small, high-precision applications like gear mechanisms or compact machinery. Its robust design and RoHS compliance make it suitable for various industrial uses.
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How Is RN-2×1.3 BF/G3 Bearing Engineered for Reliability?
RN-2×1.3 BF/G3 Bearing is crafted from chrome steel, offering high hardness (HRC60-65) for durability.
Its precision needle rollers (2mm diameter x 1.3mm length) ensure smooth operation in compact spaces.
The flat ends and tight length tolerance (0 to -0.14mm) enhance stability and alignment.
With a roundness of just 0.8um, it delivers consistent performance in demanding applications.
Industrial Uses of RN-2×1.3 BF/G3 Bearing
RN-2×1.3 BF/G3 Bearing is commonly used in compact industrial machinery, such as textile equipment and small gearboxes, where space is limited. Its needle roller design ensures efficient load distribution in tight spaces.
What Makes RN-2×1.3 BF/G3 Bearing a Preferred Choice?
In automotive applications, RN-2×1.3 BF/G3 Bearing fits well in transmission systems and steering mechanisms, thanks to its high hardness and precision. The chrome steel material offers durability under constant friction.
Perfect Fit for Automation: RN-2×1.3 BF/G3 Bearing
For automated systems like robotic arms, RN-2×1.3 BF/G3 Bearing provides smooth motion control due to its low profile and flat ends. The G3 rating ensures consistent performance in repetitive tasks.
Medical vs Industrial: Where RN-2×1.3 BF/G3 Bearing Excels
In medical devices, RN-2×1.3 BF/G3 Bearing is ideal for precision instruments like surgical tools, where its roundness tolerance guarantees accuracy. Industrial applications benefit from its wear resistance in high-load scenarios.
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