BRAKING Front Left Brake Rotor EPR098L for Honda - Enhanced Cooling and Durability

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  • Regular price $448.95
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Brake Rotor - Front Left - Honda

The BRAKING EPR098L front left brake rotor is engineered for optimal braking performance and longevity on Honda motorcycles. Crafted from induction-hardened stainless steel, this rotor offers superior resistance to wear and heat, ensuring consistent stopping power under demanding conditions.
Its hard anodized aluminum hub enhances durability while reducing overall weight, contributing to improved handling and responsiveness. The rotor features an EPTA disc floatation mechanism that allows for thermal expansion and contraction, minimizing warping and maintaining even contact with brake pads.
Designed with grooves and ventilation holes, this rotor facilitates better cooling of the interface zone, reducing heat buildup during intense braking sessions. The optimized lightening holes are strategically placed to prevent vibration onset, promoting a smooth and stable braking experience. The wave-shaped design incorporates straight 3 mm thick crests that extend from the wave shape to the outer diameter, creating a radiating area untouched by the pads. This area boasts higher thermal inertia, aiding in heat dissipation and preventing overheating during prolonged use.
Suitable for riders seeking a high-performance replacement, the BRAKING EPR098L rotor combines advanced engineering with durable materials to enhance braking efficiency, stability, and lifespan. Installation is straightforward, making it an excellent choice for both everyday riding and competitive scenarios where consistent brake performance is critical.

Features:

  • Induction-hardened stainless steel construction for wear resistance and heat management
  • Hard anodized aluminum hub for durability and weight reduction
  • EPTA disc floatation mechanism for improved thermal expansion handling
  • Grooves and ventilation holes for enhanced cooling and heat dissipation
  • Optimized lightening holes to prevent vibration and maintain stability
  • Wave-shaped design with 3 mm thick crests for higher thermal inertia and effective heat spreading