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Dunlop & Budget Ball Bearings
Quick Code: BB-524379
MF117-2Z ZEN Shielded Deep Groove Ball Bearing 7mm x 11mm 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
7mm
Material
Standard bearing steel
Material of rolling elements
Standard bearing steel
Outer ring
Flange on outer ring
Outside Dia
11mm
Sealing
Shielded
Temperature range
-30 to +150 °C
Tolerance class
Tolerance class P0/PN2 / ABEC 1
Width
3mm
Reference
MF117-2Z
Additional Reference:
10148811
Quick Order Code
BB-524379
Product Description
The MF117-2Z ZEN Shielded Deep Groove Ball Bearing is a precision miniature bearing designed for compact and high-performance applications requiring exceptional reliability and dimensional accuracy. Featuring a robust construction and advanced engineering, this bearing offers optimal performance in demanding mechanical environments.
Key Features:
- Single row deep groove configuration
- Compact miniature dimensions: 7mm x 11mm x 3mm
- Shielded design for enhanced contamination protection
- Sheet steel cage for structural integrity
- Cylindrical bore for precise fitting
- Standard bearing steel construction
Technical Specifications:
- Inside Diameter: 7mm
- Outside Diameter: 11mm
- Width: 3mm
- Brand: ZEN
- Tolerance Class: P0/PN2 / ABEC 1
- Operating Temperature Range: -30°C to +150°C
- Sealing Type: Shielded (2Z)
- Radial Clearance: Normal
- Current Insulation: No
Typical Applications:
- Precision micro-machinery
- Small electric motors
- Robotics and miniature mechanisms
- Instrumentation and measurement equipment
- Model engineering
- Automotive sensors and small components
- Medical device mechanisms
The MF117-2Z bearing's shielded configuration provides excellent protection against dust and contaminants while maintaining low friction and smooth operation. Its compact size and high-quality ZEN manufacturing make it ideal for applications requiring precise, reliable rotational performance in space-constrained environments.


