The Tektro Wavy type rotor is a 203mm rotor that is compatible with 6-bolt disc brake hubs.
Bolts included
Rotor Size: 203 mm
Hub/Brake Compatibility: 6-Bolt Disc
TEKTRO AQUILA
Item #: 456937974
Price: 52.00
The Tektro Aquila Disc Brake Caliper features ball bearing actuation with a stainless steel, 6-bolt Wave-type rotor.
Features and Information
Actuated with linear pull brake levers
Melt forged two-piece caliper
Auto-centering caliper (A.C.C.) for ease of installation and adjustment
Dual pad adjusters with floating pad holders, metal ceramic pad compound
Includes one caliper, front and rear adapters, rotor, cable, housing and mounting hardware
Ball bearing actuated with stainless steel, 6-bolt Wave-type rotor
Optional 180mm rotor and adapters available separately
Item Specifications
Hub/Brake Compatibility
6-Bolt Disc
Brake Type
Disc
Brake Lever Actuation
Long Pull
Rotor Size
160 mm
Disc Mount
51mm I.S.
Disc Mount Type
74mm Post Mount,51mm I.S. Rear,51mm I.S. Front
Weight
349 g
Brake Usage F/R
Rear,Front
TEKTRO AQUILA DISC BRAKE ADAPTERS
Item #: 456937999
Price: 6.00
Tektro Disc Brake Adapters
TEKTRO AQUILA MECH DISC BRAKE PARTS
Item #: 456938004
Price: 4.00
Tektro Aquila Mechanical Disc Brake Pads
TEKTRO 160MM DISC ROTOR
Item #: 456938003
Price: 18.00
Tektro 160mm Disc Rotor with bolts
TEKTRO LYRA LIGHT- WAVE ROTOR W/ BOLTS
Item #: 457946242
Price: 22.10
Replacement rotors for use with Tektro disc brakes.
Includes rotor bolts
ROTOR OUTER CHAIN RING FOR ROTOR CRANKSE
Item #: 459722216
Price: 74.40
Rotor chainrings for Rotor mountain cranks only.
Rings for Rotor Cranksets. Not compatible with any other cranksets
ROTOR INNER CHAINRINGS FOR ROTOR CRANKSE
Item #: 459722215
Price: 63.55
Chainrings for Rotor crank arm sets. Not compatible with any other cranks.
Rings for Rotor Cranksets. Not compatible with any other cranksets
HAYES V7 ROTOR
Item #: 456937790
Price: 34.00
Need more braking power than the traditional 6" size offers, but not ready to move up to 8"? Split the difference with hayes new 7" rotor - an ideal compromise between weight and braking power.