SSMF128 RICH 8x12x2,5 SSMF128 RICH
search
  • SSMF128 RICH 8x12x2,5 SSMF128 RICH

SSMF128 RICH 8x12x2,5

RICH
SSMF128
€1.14
No tax
Quantity
🏠 The Product Is In Our Warehouse And Will Arrive At Your Shipping Address Within 7–10 Business Days.

Rating:
(0)

SSMF128 RICH Single Row Deep Groove Ball Bearing - Flanged - Stainless Steel - 8 x 12 x 2.5 mm


Technical Specifications:

  • Brand: RICH
  • Type: Flanged Deep Groove Ball Bearing
  • Model: SSMF128
  • Inner Diameter (d): 8 mm
  • Outer Diameter (D): 12 mm
  • Width (B): 2.5 mm
  • Material: Stainless Steel
  • Cage: Steel
  • Design Feature: Miniature, Flanged, Extra-Thin Section
  • Weight: 0.001 kg
  • Country of Origin: China

The SSMF128 RICH is a micro-precision Miniature Flanged Deep Groove Ball Bearing manufactured by RICH. This component is defined by its extra-thin dimensions of 8 mm bore, 12 mm outer diameter, and just 2.5 mm width.

Constructed entirely from Stainless Steel (SS), the bearing offers superior resistance to corrosion, rust, and moisture, making it highly reliable in wet or specialized environments. The key feature is the integrated flange, which simplifies mounting and ensures precise axial location within a housing. The SSMF128 RICH is engineered with deep groove geometry and a steel cage to provide smooth, low-friction rotational performance, making it the perfect choice for compact, high-precision drives in medical equipment, optical systems, and robotic assemblies.


Key Performance Advantages:

  • Flanged Design: Integrated flange provides precise axial positioning and easier mounting.
  • Superior Corrosion Resistance: Full stainless steel construction ideal for wet and harsh environments.
  • Extra-Thin Profile: 8 x 12 x 2.5 mm dimensions are crucial for maximum space efficiency.
  • Miniature Precision: Designed for high-speed, low-friction performance in sensitive instrumentation.

Data sheet

Inner Diameter
8
Outer Diameter
12
Width
2,5
Weight
0,001
Clearance
CN (Normal)

16 other products in the same category:

arrow_upward