Titanium Pedals With Quick Release- R-TPD-01

Mateiral Aluminum body (Black) + Titanium Axle (Ti)
Quick Release Quick Release of MKS EZY System (Ti)
Weight 235g/Pair
Size 11 x 9.5cm
SKU R-TPD-01-001 Category

Titanium Pedals With Quick Release Specs

Boby Material Titanium Alloy Quick Release MKS EZY System (Ti) Size 11 x 9.5cm Logo Can Be Customized
Axle Material Titanium Alloy Bearing 3 Sealed Bearings Each Side Weight 235g/Pair Color Can Be Customized

Features

1.Materials
Aluminum body (Black) combined with a Titanium Axle (Ti) and MKS EZY System Quick Release (Ti) for a robust yet lightweight construction.

2.Quick Release System Integration
Engineered with the MKS quick release mechanism and enriched by our expertise in titanium spindle design, ensuring swift and secure attachment.

3.Aluminum CNC Machined Platform
The pedal platform is precision crafted from aluminum using CNC technology, then fully anodized for color durability and corrosion resistance.

4.Dirt and Moisture Protection
Both ends of the pedal feature seals that effectively repel dirt and moisture, safeguarding the pedal’s performance and longevity.

5.Triple Sealed Bearings on Each Side
Each side of the pedal is equipped with three sealed bearings, contributing to its exceptional smoothness and reliability.

6.Lightweight and Cost-Effective
Among pedals of comparable price, this model stands out as one of the lightest, blending performance with affordability.

Why Titanium Pedals?

1. Enhanced Pedal Surface
The widened pedal surface of the Titanium Pedals is designed to increase comfort while cycling. This expanded area allows for a more stable and relaxed foot position, reducing strain on the feet and legs during prolonged rides.

2. Improved Cycling Experience
By providing a more comfortable pedaling experience, these pedals contribute to making cycling easier overall. Cyclists can enjoy smoother pedaling, which can translate to longer rides without fatigue.

3. Weight Reduction Mechanism
The Titanium pedals incorporate a hollow design combined with a dynamic motion structure. This innovative approach allows for a reduction in the weight that is transferred through the pedals during cycling. By minimizing the effort required to pedal, the design ensures that cyclists can maintain their speed and momentum with less physical exertion.

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