
MET Trenta 3K Carbon Bike Helmet - White/Glossy
Price incl. VAT excl. shipping
Performace Cycling Helmet for Road, Gravel & Cross Country The MET Trenta 3K Carbon Mips® is a high performance road helmet designed with elite cyclists and worn to victory at Le Tour de France, Giro d'Italia, Liège-Bastogne-Liège, Il Lombardia and Le Strade Bianche. Engineered to keep your head fresh and save you energy with every pedal stroke, the MET Trenta 3K Carbon Mips® is the most advanced road cycling helmet MET has ever made, now upgraded with the addition of Mips AIR®, the lightest and most advanced rotational management system. Features 3K Carbon Technology, embedded carbon fibre cage to enhance the performance of the shell Mips AIR® rotational management system engineered to add protection and save weight Exceptionally comfortable and secure on the head thanks to refined internal shape In-mould polycarbonate shell with EPS liner MET Safe-T Orbital Fit System 360° Head belt, vertical and occipital adjustments leave you with an individual fit Air Lite straps with adjustable divider to maximise aerodynamic and comfort 19 Vents, engineered internal air channeling system to improve ventilation and comfort Sunglasses ports to securely dock sunglasses when climbing or resting Tube-shaped Kamm virtual foil tail to improve aerodynamics Rear deflector to enable a constant airflow in riding position Limited head contact surface to maximise ventilation Reflective rear decals to enhance visibility in low-light conditions Helmet soft bag included MIPS AIR ® - Brain Protection System MET never compromises on safety or performance. By adding Mips AIR®, MET have integrated into the padding, the lightest and most advanced rotational management system. Mips AIR® was specifically developed and designed to be the lightest system possible to reduce rotational energies transferred to the head during specific angular impacts. Unlike traditional Mips cages, Mips AIR® is integrated into the padding of the Trenta 3k Carbon and enables 10-15mm of relative movement between the energy absorbing layer and the padding.











