SIZE | COLOR |
M,L | Black,White,Olive |
BINDING FOOTBED | BINDING CHASSIS |
Canted | A-Series Aluminum |
BINDING BASEPAD | BINDING SERIES |
A-Series Diecut | A - Series |
BINDING ANKLE STRAP | BINDING HIGHBACK |
Two-Piece Strap |
Slimeback™ (Urethane) |
BINDING RATCHET | BINDING TOE STRAP |
Linkage Ratchet | Minimalist |
BINDING DISCS | FEEL |
Plastic Disc | 6 |
A-Series Chassis is built with a forged aluminum heel-cup (all new construction) bonded with a new stamped aluminum tray.
This is for the customer that prefers the precise feel of aluminum (current Ride binding customers).
— Optimized feel of aluminum
- Reactive flex power transfer without rigidity
- Precise feel
- Light weight
- Durable
— Less heavy hardware/overlapping metal that makes the bindings stiff
— Ability for more torsional roll in the heel
— Eliminates slipping heelcups
The A-Series Chassis provides the reactive flex and power transfer of aluminum underfoot. The extruded aluminum heel-cup provides ultimate toe heel response. The A-Series Chassis was designed to be less rigid that previous designs allowing the aluminum to flex more under the rider’s weight allowing for a much more reactive ride. Because the Chassis is 100% aluminum, it is narrower than nylon or plastic chassis allowing the board to flex more freely from tip to tail.
Highbacks utilize urethane similar to our Slimewalls™ technology. The Slimeback™ material absorbs shock and damps vibrations to help smooth the ride while providing fluid support.
Designed to perfectly contour to your boot and provide long lasting support.
Designed to improve ladder durability and eliminate ratchet wag, resulting in a smoother user experience with the same hold you expect.
An ultra-light footbed that uses subtle angles to align the ankles and knees to a more natural and comfortable position. The angle also gives leverage to press the board for huge pop, without affecting your preferred stance width.
The plastic disc offers more lateral flex than aluminum for the rider that is focused on comfort and flex over hard charging performance
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