Aeroad CF SLX 7 Di2 CANYON US

Aeroad Cf Slx 7 Di2. Canyon Aeroad CF SLX 7 Di2 used in XS buycycle USA Canyon Aeroad CF SLX, Fourth-generation Aeroad frame uniting peloton-leading aerodynamics with an improved carbon layup for added robustness., Axle dimension: 12x142 mm, Front derailleur hanger: removable, Tyre clearance: 32 mm, Material: Carbon (CF), Weight: 1.05 kg Remember that these sizes are a general guide and bike sizes can vary between riders and bikes.

Canyon Aeroad CF SLX 7 Di2 used in XS buycycle USA
Canyon Aeroad CF SLX 7 Di2 used in XS buycycle USA from buycycle.com

A carbon frame aero bike with upper mid-range components and shimano hydraulic disc brakes. Shaped by extensive supercomputer analysis, validated in the wind tunnel., Axle dimension: 12x142 mm, Tyre clearance: 31 mm, Material: Carbon (CF), Weight: 2.54 lbs.

Canyon Aeroad CF SLX 7 Di2 used in XS buycycle USA

Shaped by extensive supercomputer analysis, validated in the wind tunnel., Axle dimension: 12x142 mm, Tyre clearance: 31 mm, Material: Carbon (CF), Weight: 2.54 lbs. A carbon frame aero bike with upper mid-range components and shimano 105 hydraulic disc brakes Canyon Aeroad CF SLX, Fourth-generation Aeroad frame uniting peloton-leading aerodynamics with an improved carbon layup for added robustness., Axle dimension.

Aeroad CF SLX 7 Di2 CANYON DE. Shaped by extensive supercomputer analysis, validated in the wind tunnel., Axle dimension: 12x142 mm, Tyre clearance: 31 mm, Material: Carbon (CF), Weight: 2.54 lbs. With the same peloton-leading aerodynamics as the flagship Aeroad CFR, the Aeroad CF SLX is one of the world's most efficient race bikes and a true aerodynamic masterpiece

Aeroad CF SLX 7 Di2 CANYON US. Canyon Aeroad CF SLX, Fourth-generation Aeroad frame uniting peloton-leading aerodynamics with an improved carbon layup for added robustness., Axle dimension: 12x142 mm, Front derailleur hanger: removable, Tyre clearance: 32 mm, Material: Carbon (CF), Weight: 1.05 kg The Canyon Aeroad CF SLX 7 Di2 is where cutting-edge technology meets aerodynamic efficiency