Bearings
Ball Bearings
Dunlop & Budget Ball Bearings
Quick Code: BB-517665
SMR83-2Z ZEN Stainless Shielded Deep Groove Ball Bearing 3mm x 8mm x 3mm
Help Articles
Buy Now
Qty:
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
3mm
Material
Stainless steel
Material of rolling elements
Stainless steel
Outer ring
Without flange/groove
Outside Dia
8mm
Sealing
Shielded
Temperature range
-20 to +120 °C
Tolerance class
Tolerance class P0/PN2 / ABEC 1
Width
3mm
Reference
SMR83-2Z
Additional Reference:
10128344
Quick Order Code
BB-517665
Product Description
The SMR83-2Z ZEN Stainless Shielded Deep Groove Ball Bearing is a precision miniature bearing designed for applications requiring compact, high-performance rotational components. Crafted entirely from corrosion-resistant stainless steel, this bearing offers exceptional durability and performance in small-scale mechanical systems.
Key Features:
- Compact miniature bearing (3mm x 8mm x 3mm)
- Single row deep groove design
- Stainless steel construction for superior corrosion resistance
- Shielded (2Z) configuration for enhanced protection
- Sheet steel cage for stable ball retention
- Normal radial clearance for optimal performance
Technical Specifications:
- Inside Diameter: 3mm
- Outside Diameter: 8mm
- Width: 3mm
- Material: Stainless steel (both rings and rolling elements)
- Sealing: Shielded
- Temperature Range: -20°C to +120°C
- Tolerance Class: P0/PN2 / ABEC 1
- Bore Type: Cylindrical
- Current Insulation: No
Typical Applications:
- Precision medical devices
- Miniature robotics
- Small electronic equipment
- Dental and surgical instruments
- Micro-mechanics
- Compact measuring instruments
- Model making and hobby applications
The ZEN SMR83-2Z is ideal for environments requiring a small, robust bearing with excellent corrosion resistance. Its stainless steel construction and shielded design provide protection against contamination while ensuring smooth, reliable rotation in challenging miniature mechanical systems.


