FAG 6000-C-2HRS-C3>V 1 Row Ball Bearing - 10 mm ID, 26 mm OD
- RS Stock No.:
- 260-0880
- Mfr. Part No.:
- 6000-C-2HRS-C3>V
- Manufacturer:
- FAG
Subtotal (1 pack of 10 units)*
PHP4,221.39
(exc. VAT)
PHP4,727.96
(inc. VAT)
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In Stock
- Plus 70 unit(s) shipping from April 27, 2026
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Units | Per Unit | Per Pack* |
|---|---|---|
| 10 + | PHP422.139 | PHP4,221.39 |
*price indicative
- RS Stock No.:
- 260-0880
- Mfr. Part No.:
- 6000-C-2HRS-C3>V
- Manufacturer:
- FAG
Specifications
Technical data sheets
Legislation and Compliance
Product Details
Find similar products by selecting one or more attributes.
Select all | Attribute | Value |
|---|---|---|
| Brand | FAG | |
| Inside Diameter | 10mm | |
| Product Type | Ball Bearing | |
| Outside Diameter | 26mm | |
| Race Width | 8mm | |
| Cage Material | Steel | |
| Ball Material | Steel | |
| End Type | Closed | |
| Number of Rows | 1 | |
| Internal Clearance | C3 | |
| Static Load Rating | 1.97kN | |
| Dynamic Load Rating | 5.3kN | |
| Bore Type | Parallel | |
| Standards/Approvals | No | |
| Series | 0 Extra Light | |
| Limiting Speed | 28500rpm | |
| Bearing Type | Single Row Deep Groove Ball | |
| Race Type | Plain | |
| Select all | ||
|---|---|---|
Brand FAG | ||
Inside Diameter 10mm | ||
Product Type Ball Bearing | ||
Outside Diameter 26mm | ||
Race Width 8mm | ||
Cage Material Steel | ||
Ball Material Steel | ||
End Type Closed | ||
Number of Rows 1 | ||
Internal Clearance C3 | ||
Static Load Rating 1.97kN | ||
Dynamic Load Rating 5.3kN | ||
Bore Type Parallel | ||
Standards/Approvals No | ||
Series 0 Extra Light | ||
Limiting Speed 28500rpm | ||
Bearing Type Single Row Deep Groove Ball | ||
Race Type Plain | ||
RoHS Status: Exempt
- COO (Country of Origin):
- PT
Schaeffler Generation C Series Ball Bearing, 10mm Inside Diameter, 26mm Outside Diameter - 6000-C-2HRS-C3 >V
This ball bearing is a sealed, single-row deep-groove unit designed to support radial loads in compact, high-speed assemblies. It is intended for applications where a closed-end configuration and small form factor are required, operating across a typical industrial temperature span and suited to precision rotating components in automation and electronics contexts.
Features & Benefits
• High permissible speed 28,500 r/min enabling Rapid spindle rotation
• Dynamic load capacity 5.3 kN sustaining cyclic radial stresses
• Static load rating 1.97 kN resisting shock and standstill loads
• Steel-sheet cage reduces inertia for Faster response
• C3 internal clearance accommodates thermal expansion
• Sealed ends protect internal components from contamination
• Dynamic load capacity 5.3 kN sustaining cyclic radial stresses
• Static load rating 1.97 kN resisting shock and standstill loads
• Steel-sheet cage reduces inertia for Faster response
• C3 internal clearance accommodates thermal expansion
• Sealed ends protect internal components from contamination
Applications
• Suitable for miniature motor shafts in automation drives
• Ideal for precision fans and blowers in electronics cooling
• Used with rotary encoders and small servomotors
• Can be used for gearbox idler shafts in Compact machinery
• Used for medical device rotary joints requiring sealed bearings
• Ideal for precision fans and blowers in electronics cooling
• Used with rotary encoders and small servomotors
• Can be used for gearbox idler shafts in Compact machinery
• Used for medical device rotary joints requiring sealed bearings
What shaft and housing features are necessary for correct mounting?
The inner ring requires a 10 mm bore seating
ensure the shaft shoulder diameter and housing shoulder clearances meet the minimum and maximum fillet and shoulder dimensions to avoid ring interference.
How does temperature affect operating performance?
The bearing functions reliably from −20 °C to 100 °C
above this range material properties and clearance can alter, so avoid sustained operation outside these limits.
What maintenance considerations apply for sealed miniature bearings?
Sealed units are pre-lubricated and generally maintenance-free
monitor for vibration or noise that indicates contamination or end-of-life rather than routine lubrication needs.
How should users interpret fatigue limit and calculation factor for life predictions?
Use the provided fatigue load limit and the calculation factor in standard bearing life formulas to estimate service life under specific load/speed conditions for system design.
