BRAKING Front Right Brake Rotor EPR090R for Kawasaki | High-Performance Disc

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Brake Rotor - Front Right - Kawasaki

The BRAKING EPR090R front right brake rotor is engineered for optimal braking performance on Kawasaki motorcycles. Crafted with induction-hardened stainless steel, this rotor offers exceptional durability and resistance to wear under demanding riding conditions. The hard anodized aluminum hub enhances heat dissipation, ensuring consistent braking response during extended use. Featuring an innovative EPTA disc flotation mechanism, it provides smooth engagement and reduces vibration, contributing to improved rider control and comfort. The rotor's design incorporates grooves with ventilation holes that facilitate better cooling of the interface zone, helping to prevent overheating and maintain braking efficiency. Optimized lightening holes are strategically placed to decrease weight without compromising structural integrity, reducing unsprung mass for enhanced handling and agility. The wave-shaped disc features 3 mm thick crests that extend outward, creating a radiating area that remains untouched by the brake pads. This design improves thermal inertia, enabling the rotor to absorb and dissipate heat more effectively, thus maintaining performance during intense riding conditions. The combination of advanced materials and meticulous engineering makes the BRAKING EPR090R a reliable choice for riders seeking consistent, high-performance braking on their Kawasaki. Whether for sport riding or aggressive street use, this rotor delivers durability, heat management, and precise braking control, contributing to safer and more confident riding experiences.

Features:

  • Induction-hardened stainless steel rotor for exceptional durability
  • Hard anodized aluminum hub enhances heat dissipation
  • EPTA disc flotation mechanism provides smooth engagement
  • Grooves with ventilation holes improve cooling of the interface zone
  • Optimized lightening holes reduce weight and vibration
  • Wave-shaped design with 3 mm thick crests for increased thermal inertia