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Rear Rotor - Cubiq™ 2008 - 2022

SKU: 1710-4015
$278.69
This product is vehicle specific

Select a vehicle to ensure fitment.

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PRODUCT DETAILS

Description

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

Specification

Color/Finish Chrome
Model Cubiq
Mounting Position Rear
Outside Diameter 260 mm (10-1 / 4\") / 10-1 / 4\" / 260 mm
Product Name Brake Rotor
Riding Style Street
Type Full-Floating
Units Each

Fitment

MakeModelYear
Harley-DavidsonForty-Eight XLX2010-2022
Harley-DavidsonForty-Eight Special XLXS2018-2019
Harley-DavidsonSuperLow 1200 XLT2014-2017
Harley-DavidsonIron 1200 XLNS2018-2020
Harley-Davidson1200 Custom EFI XLC2008-2019
Harley-DavidsonSportster 1200 X XR2011-2012
Harley-Davidson1200 XLCP2011-2017
Harley-Davidson883 SuperLow XLL2011-2019
Harley-DavidsonIron 883 XLN2011-2020
Harley-Davidson1200 Roadster XLCX2016-2020
Harley-Davidson1200 Nightster XLN2011-2012
Harley-Davidson1200 Low EFI XLL2008-2011
Harley-DavidsonSportster 1200 XR2009-2012

Package Info

PropertyValue
Weight2.95
Height0.05
Length10
Width10

GALFER

Rear Rotor - Cubiq™ 2008 - 2022

$278.69

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

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