Bearings
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Dunlop & Budget Ball Bearings
Quick Code: BB-517652
SMR106-2Z ZEN Stainless Shielded Deep Groove Ball Bearing 6mm x 10mm x 3mm
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Product Specification
Ball rows
Single row bearing
Bore
Cylindrical bore
Brand
ZEN
Cage
Sheet steel cage
Clearance
Normal radial clearance
Current insulation
No current insulation
Inside Dia
6mm
Material
Stainless steel
Material of rolling elements
Stainless steel
Outer ring
Without flange/groove
Outside Dia
10mm
Sealing
Shielded
Temperature range
-20 to +120 °C
Tolerance class
Tolerance class P0/PN2 / ABEC 1
Width
3mm
Reference
SMR106-2Z
Additional Reference:
10128324
Quick Order Code
BB-517652
Product Description
The SMR106-2Z ZEN Stainless Shielded Deep Groove Ball Bearing is a precision miniature bearing designed for high-performance applications requiring compact, corrosion-resistant solutions. Crafted from premium stainless steel, this small yet robust bearing offers exceptional reliability in demanding environments.
Key Technical Specifications:
- Dimensions: 6mm x 10mm x 3mm
- Material: Stainless steel construction
- Bearing Type: Single row, shielded design
- Temperature Range: -20°C to +120°C
- Tolerance Class: P0/PN2 / ABEC 1
Detailed Product Characteristics:
- Bore Diameter: 6mm
- Outer Diameter: 10mm
- Width: 3mm
- Bore Type: Cylindrical
- Cage Material: Sheet steel
- Radial Clearance: Normal
- Current Insulation: None
- Sealing: Shielded (2Z)
- Rolling Elements: Stainless steel
- Outer Ring: Without flange/groove
Typical Applications:
- Precision medical equipment
- Miniature robotics
- Small electrical motors
- Dental and surgical instruments
- Aerospace instrumentation
- Compact mechanical systems
Performance Benefits:
- Corrosion-resistant stainless steel material
- Compact and lightweight design
- Smooth and quiet operation
- Shielded configuration prevents contamination
- Suitable for precise and delicate applications
The SMR106-2Z ZEN bearing provides reliable performance in compact spaces, offering excellent rotational characteristics and durability in challenging environments where standard bearings might fail.


