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Bearings Needle Roller Bearings Drawn Cup Bearings TLA Series Drawn Cup Needle Bearings
Quick Code: BB-126336

TLA3026Z IKO Drawn Cup Needle Bearing

£6.39 exc VAT (£7.67 inc VAT)
In Stock   Free Delivery over £100   Next Day Order by 4pm
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Product Specification
Brand
IKO
Inside Dia (Fw)
30mm
Interchangeable With:
HK3026
Outside Dia (D)
37mm
Width (C)
26mm
Quick Order Code
BB-126336
Product Description

The TLA3026Z IKO Drawn Cup Needle Bearing is a precision-engineered solution designed for high-performance mechanical applications that demand compact, reliable, and efficient bearing technology. This advanced needle bearing offers exceptional protection and functionality across various industrial and mechanical systems.

Key Features:

  • Advanced protective design prevents grease leakage and contaminant entry
  • Lightweight construction with superior load-carrying capabilities
  • Low sectional height for space-efficient integration
  • Shell-type outer ring manufactured through precise drawing, carburizing, and quenching processes

Technical Specifications:

  • Inside Diameter: 30mm
  • Outside Diameter: 37mm
  • Width: 26mm
  • Interchangeable with HK3026 bearing

Benefits:

  • No axial positioning fixtures required, simplifying installation
  • Compact design enables integration into tight spaces
  • Economical solution ideal for mass production
  • Versatile compatibility across multiple application domains

Potential Applications:

  • Automotive transmission systems
  • Industrial machinery
  • Robotics and precision mechanical assemblies
  • Agricultural and construction equipment
  • Small motor and gear drive mechanisms
  • Precision mechanical systems requiring compact bearing solutions

The TLA3026Z represents IKO's commitment to delivering high-performance needle roller bearings that combine durability, efficiency, and precision engineering. Designed to withstand challenging operational environments, this bearing provides reliable performance with minimal external interference and maximum operational efficiency.