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FAG 6307RSR.C3 deep groove ball bearing with 35mm bore. Double sealed (RSR) for contamination protection, C3 internal clearance for thermal expansion. Ball guided cage. Suitable for high-speed applications requiring reduced maintenance.
MODEL 6307RSR.C3
$28.73 Each
Prices are subject to change
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Returnable:No
Bore Type
Straight
Cage
Ball Guided
Cage Material
Steel
Closure Type
Single Sealed
Fillet Radius
1.5 mm
Finish Coating
Uncoated
I.D.
1 3/8 in
Internal Clearance
C3
O.D.
80 mm
Operating Temperature Range
-30 to +110°C
Overall Width
21 mm
Precision Rating
ABEC 1 (ISO Class Normal)
Product Type
Radial & Deep Groove Ball Bearings
Radial Dynamic Load Capacity
35500 N
Radial Static Load Capacity
19100 N
Row Type Fill Slot
Single Row Non-Fill Slot
Series
63
Snap Ring Included
Without Snap Ring
Standards Met
DIN 625-1
FAG 6307RSR.C3 Radial Deep Groove Ball Bearings FAG 6307RSR.C3 Radial Deep Groove Ball Bearings are engineered for precision and reliability, making them the ideal choice for a wide range of automotive and industrial applications. These bearings are designed to accommodate radial loads and moderate axial loads in both directions, ensuring optimal performance in demanding environments.
Key Features
- X-life Technology: Enhanced design for improved performance and extended service life, reducing the need for frequent replacements.
- Sealing Solutions: Equipped with robust rubber seals (RS) to protect against contaminants and retain lubricant, ensuring durability in harsh conditions.
- C3 Internal Clearance: Designed with greater internal clearance to accommodate thermal expansion, enhancing operational reliability under variable temperature conditions.
- High Load Capacity: Capable of handling heavy radial loads, making them suitable for various mechanical applications.
- Versatile Applications: Compatible with a wide range of machinery, including electric motors, gearboxes, and automotive components.
Applications
- Automotive Industry: Ideal for use in wheel hubs, transmissions, and engine components where precision and reliability are critical.
- Industrial Machinery: Perfect for applications in conveyor systems, pumps, and compressors, ensuring smooth operation under load.
- Aerospace and Railway: Suitable for use in high-performance environments requiring dependable bearings for safety and efficiency.
Benefits
- Performance Advantage: The innovative design and materials contribute to lower friction and heat generation, resulting in energy savings during operation.
- Reliability Factor: With superior sealing and lubrication features, these bearings offer enhanced reliability, reducing maintenance costs and downtime.
- Efficiency: The combination of high load capacity and low noise operation leads to improved efficiency in machinery performance. --- Product information compiled with AI assistance for reference purposes.
How do I choose the right type of bearing for my application?
Start with the load and how it’s applied. You need to know if you’re dealing with radial loads, axial loads, or a mix of both. Then look at speed, operating environment, and space constraints. For example, ball bearings are great for high speed and lighter loads, while roller bearings handle heavier loads but usually at lower speeds. If there’s contamination, moisture, or heat involved, you may need sealed bearings or specific materials. In most cases, the right choice comes down to matching load type, speed, and environment to the bearing design.
What is the difference between deep groove and angular contact ball bearings?
Deep groove ball bearings are the most common type. They’re designed to handle mainly radial loads, but they can also take some axial load in both directions. They’re simple, versatile, and used in everything from motors to conveyors. Angular contact ball bearings are built for combined loads, especially where there’s significant axial force in one direction. They’re often used in pairs and are common in higher precision or higher load applications like pumps and gearboxes. If your load is mostly radial, go deep groove. If axial load matters more, angular contact is usually the better choice.
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