BRAKING Front Right EPR073R Brake Rotor - High-Performance Stainless Steel Design

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  • Regular price $448.95
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Brake Rotor - Front Right

Upgrade your motorcycle's braking system with the BRAKING EPR073R front right brake rotor, engineered for durability and optimal performance. Crafted from induction-hardened stainless steel, this rotor offers exceptional resistance to wear and heat buildup, ensuring reliable stopping power under demanding riding conditions. The hard anodized aluminum hub reduces weight while maintaining structural integrity, contributing to improved handling and responsiveness.

The EPTA disc floatation mechanism allows for thermal expansion and contraction, minimizing warping and maintaining consistent braking feel. Grooves with ventilation holes are precisely machined to enhance cooling of the interface zone, preventing overheating during aggressive riding sessions. Optimized lightening holes reduce rotational mass, helping to decrease vibration and improve overall stability. The rotor features straight 3mm thick crests that protrude from the wave-shaped disc, forming a radiating area that remains untouched by the brake pads. This design provides higher thermal inertia, aiding in heat dissipation and reducing the risk of brake fade.

Engineered for performance motorcycles, the BRAKING EPR073R rotor combines advanced materials and innovative design features to deliver superior braking efficiency, durability, and heat management. Whether for racing or everyday riding, this rotor ensures you experience consistent, reliable stopping power in a variety of conditions. It is the ideal upgrade for riders seeking enhanced braking performance with long-lasting durability and precise control.

Features:

  • Induction hardened stainless steel rotor for exceptional wear resistance
  • Hard anodized aluminum hub reduces weight and maintains strength
  • EPTA disc floatation mechanism for thermal expansion management
  • Grooves with ventilation holes improve cooling of the interface zone
  • Optimized lightening holes decrease vibration and rotational mass
  • Straight 3mm thick crests protrude from wave-shaped disc for higher thermal inertia