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Galfer Cubiq Floating Front Brake Rotor

Brake Rotor | SKU #DF070FLQ-392

$320.13

$357.49
Save $37.36 (11.67%)

  • New Part

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IN STOCK

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Specifications

ConditionNew
SKU#DF070FLQ-392
PartBrake Rotor
MaterialStainless Steel
Mounting LocationFront
PositionFront
ColorBlack
FinishBlack, Chrome
Placement on VehicleFront
Position on VehicleFront
FloatingYes
Brake Rotor StyleWave
Base ColorBlack, Chrome
Surface FinishBlack, Chrome
Sold in Units ofEach

Description

Full floating to ensure optimum brake pad-to-rotor contact. Every high-quality, Galfer-patented Cubiq® rotor is made from a proprietary mix of virgin high carbon 420 stainless steel, laser cut (never stamped), double disc-parallel ground to assure perfect parallel flatness and heat treated to each specific application. KBA and TUV approved. Seamlessly replaces stock rotor. Full instructions provided along with any technical help needed! Precision made in our Galfer factory in Spain.

Features

  • Named after the crystal steel molecules, the Cubiq brake rotor combines state-of-the-art technology with modern design
  • Rotor shape promotes uniform brake pad wear the contact surface between the pad and disc every revolution generates regular wear
  • Less unsprung weight (up to 40% lighter than standard round rotors) reduces gyroscopic effect and improves the manueverability of the motorcycle
  • Increased perimeter surface design generates more cooling surface around the rotor for better temperature dissipation


  • Increasing the convection perimeter generates more cooling surface around the brake track and a better temperature dissipation.
  • Increasing the cooling surface optimizes the friction surface and enables a lighter brake track design.
  • The same contact surface between pad and disc during each turn generates regular wear of the pads and homogenous pressure.
  • Having less unsprung mass reduces the gyroscopic effect and improves the maneuverability of the motorcycle.
  • The CUBIQ® brake track design is inspired by the latest modern design and contemporary elements.

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