SKF 6012/C3 1 Row Ball Bearing - 60 mm ID, 95 mm OD
- RS Stock No.:
- 505-899
- Mfr. Part No.:
- 6012/C3
- Manufacturer:
- SKF
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Subtotal (1 unit)*
PHP2,542.06
(exc. VAT)
PHP2,847.11
(inc. VAT)
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- Shipping from May 25, 2026
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Units | Per Unit |
|---|---|
| 1 - 5 | PHP2,542.06 |
| 6 - 24 | PHP2,465.82 |
| 25 + | PHP2,391.84 |
*price indicative
- RS Stock No.:
- 505-899
- Mfr. Part No.:
- 6012/C3
- Manufacturer:
- SKF
Specifications
Technical data sheets
Legislation and Compliance
Product Details
Find similar products by selecting one or more attributes.
Select all | Attribute | Value |
|---|---|---|
| Brand | SKF | |
| Product Type | Ball Bearing | |
| Inside Diameter | 60mm | |
| Outside Diameter | 95mm | |
| Race Width | 18mm | |
| Cage Material | Sheet Metal | |
| Ball Material | Steel | |
| End Type | Open | |
| Number of Rows | 1 | |
| Internal Clearance | C3 | |
| Static Load Rating | 23.2kN | |
| Dynamic Load Rating | 30.7kN | |
| Series | 6012 | |
| Standards/Approvals | No | |
| Bore Type | Parallel | |
| Limiting Speed | 9500rpm | |
| Bearing Type | Single Row Deep Groove Ball | |
| Race Type | Plain | |
| Select all | ||
|---|---|---|
Brand SKF | ||
Product Type Ball Bearing | ||
Inside Diameter 60mm | ||
Outside Diameter 95mm | ||
Race Width 18mm | ||
Cage Material Sheet Metal | ||
Ball Material Steel | ||
End Type Open | ||
Number of Rows 1 | ||
Internal Clearance C3 | ||
Static Load Rating 23.2kN | ||
Dynamic Load Rating 30.7kN | ||
Series 6012 | ||
Standards/Approvals No | ||
Bore Type Parallel | ||
Limiting Speed 9500rpm | ||
Bearing Type Single Row Deep Groove Ball | ||
Race Type Plain | ||
RoHS Status: Exempt
- COO (Country of Origin):
- FR
SKF 6012 Series Deep Groove Ball Bearing, 60mm Inside Diameter, 95mm Outside Diameter - 6012/C3
This deep groove ball bearing is designed to support radial and limited axial loads in rotating equipment across automation, electronics and mechanical systems. It is an open-end, single-row bearing with a cylindrical bore and steel balls, intended for installations where straightforward, continual rotation is required. The cage is formed from sheet metal to maintain ball spacing and aid stable operation in typical industrial environments.
Features and Benefits:
• High dynamic capacity enables handling of heavy operational loads
• Elevated static capacity supports sustained preload conditions
• C3 internal clearance permits thermal expansion during prolonged runs
• Limiting speed rating allows high-speed applications up to specified rpm
• Plain raceways reduce friction and simplify shaft alignment
• Single-row layout provides compactness for constrained assemblies
• Elevated static capacity supports sustained preload conditions
• C3 internal clearance permits thermal expansion during prolonged runs
• Limiting speed rating allows high-speed applications up to specified rpm
• Plain raceways reduce friction and simplify shaft alignment
• Single-row layout provides compactness for constrained assemblies
Applications
• Suitable for spindle and motor shafts in automation equipment
• Ideal for bearing housings in electrical drive systems
• Used with precision rollers in electronics manufacturing machines
• Can be used for gearbox intermediate shafts in mechanical assemblies
• Suitable for replacement in industrial rotating components
• Ideal for bearing housings in electrical drive systems
• Used with precision rollers in electronics manufacturing machines
• Can be used for gearbox intermediate shafts in mechanical assemblies
• Suitable for replacement in industrial rotating components
What mounting considerations apply for this type of bearing?
It requires a cylindrical shaft journal and appropriate seating tolerance to ensure correct radial location
light interference fit on the inner ring and a floating fit on the outer ring are commonly employed depending on thermal and load conditions.
How does the cage material affect maintenance intervals?
The sheet‑metal cage offers good dimensional stability and low wear
lubrication regime and operating environment mainly determine relubrication frequency rather than cage composition.
What operational behaviour should be expected at high speeds?
At elevated rotational rates, internal clearance and a precise lubrication regime control heat build-up and running accuracy
the specified limiting speed defines the practical upper boundary for continuous operation.
How does the open-end design influence contamination control?
Absence of Seals or shields simplifies heat dissipation but requires external protection or maintenance plans to prevent ingress of debris in exposed installations.
