Built to charge and driven to explore, the spirited Atomic Maverick 105 CTI sets the standard for all-mountain, freeride performance across any snow condition. Engineered with a versatile 104.5mm waist width, it features Atomic's Power Woodcore—a dynamic blend of ash and poplar that reduces vibrations and enhances high-speed stability. Reinforced with carbon and Titanal through CTI Powered construction, this ski delivers an ideal balance of agile handling and hard-charging power. An All Mountain Rocker profile paired with a HRZN 3D tip provides exceptional flotation in deep powder and smooth tracking through variable snow, making the Maverick 105 CTI a supreme choice for off-piste exploration and resort charging alike.
Best Use: All-Mountain, Freeride
Ability Level: Advanced - Expert
Flex: Stiff
Profile: All Mountain Rocker (20% Tip Rocker / 65% Camber / 15% Tail Rocker)
Shape: Directional
Dimensions (185 cm): 134.5 - 104.5 - 123.5 mm
Radius (185 cm): 19 m
Weight (185 cm): 2050 g
Base Edge Angle: 1.0°
Side Edge Angle: 87.5°
Steel Edge Type: Standard Edge
Mounting Line Classic: 825 mm
Power Woodcore: A dynamic ash and poplar wood core that maximizes stability, dampens high-speed vibrations, and provides responsive power transfer.
CTI Powered: Integrates a tuned blend of carbon and Titanal to deliver maximum agility, torsional rigidity, and stable edge hold for aggressive skiing.
HRZN 3D Tip: Features a reinforced, 3D-shaped tip with increased surface area to improve floatation in deep snow and smooth out performance in variable conditions.
Dura Cap Sidewall: Full sidewall construction running from base to top sheet delivers exceptional edge grip, combined with a rounded top edge for enhanced impact durability.
All Mountain Rocker: Features tip and tail rocker with traditional camber underfoot, providing versatile performance on and off-piste.
Lower-Impact Design: Engineered using reduced metal, fiberglass, and resin alongside a topsheet made with recycled content, cutting material-based carbon emissions by 24% compared to prior models.