2023 Yamaha YZF-R1Motorcycle/ATV2023 Yamaha YZF-R1
2023 Yamaha YZF-R1
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Featuring next-generation R-Series styling, sophisticated electronic control, supersport braking and suspension performance and a high-performance crossplane engine.
Features may include:
MotoGP®-Derived Crossplane Crankshaft Engine
The 998cc inline-four-cylinder engine features Yamaha’s exclusive crossplane crankshaft technology derived from Yamaha's YZR-M1 MotoGP® race bike. Every aspect of this unique engine is built to thrill.
Cutting-Edge CP4® Engine
The R1’s 998cc inline-four-cylinder engine features Yamaha’s exclusive crossplane crankshaft technology derived from Yamaha's YZR-M1 MotoGP® race bike. By equalizing inertial forces at the crankshaft, the CP4 motor delivers a direct feeling of linear torque, giving the rider the ultimate connection between throttle grip and the rear wheel.
High-Output Engine Technology
Titanium connecting rods use Yamaha’s precision fracture-split method to ensure maximum reliability with minimal weight. Combined with titanium intake valves and forged pistons, these lightweight parts help achieve the CP4’s high redline and over-rev capability. The cylinder block is also offset from the crankshaft, reducing friction loads on the pistons and bores.
Brake Control (BC) System with ABS
Developed on racetracks around the world, Yamaha’s Brake Control (BC) System works with an Anti-lock Braking System (ABS) to minimize brake slip under aggressive braking or on less than ideal surfaces. The adjustable BC System uses the IMU to provide progressive brake force intervention as lean angle increases which boosts rider confidence when braking mid-corner.
The YZF-R1 features beautifully integrated bodywork and sleek, stylish lines which create an unmistakably aggressive, aerodynamic profile.
Ride-by-Wire Throttle System
The R1 features a ride-by-wire Yamaha Chip Controlled Throttle (YCC-T®) system built around the Accelerator Position Sensor with Grip (APSG), which eliminates the throttle cables. As before, YCC-T precisely senses throttle input by the rider and actuates the throttle valves to actively control intake volume, allowing for cutting-edge computerized engine management but in a lighter package.