Sliding elements guide pins laterally to enable automatic unhooking when transverse forces exceed safety thresholds.
Segmented front retaining mechanisms resolve weight trade-offs by deploying a dedicated sole clamp for descent while stowing it beneath the boot during ascent.
Segmented heel holder paths reduce snow accumulation and bulkiness while maintaining secure holding.
Raised platform with smooth slopes and stumbling barriers prevents exits while maintaining spectator visibility.
Segmented ascending and curved platforms provide diverse stunt options while maintaining simple modular construction.
A detachable snowboard stop device clips onto the board edge and uses ground-contacting protrusions to generate friction.
A pivoting shoe holder housing releases ski boots upward against spring force.
A ski boot uses a tensioned traction element to connect the shaft and sole, enhancing pressure distribution.
Object-tracking control apparatus triggers temporary color changes at precise impact zones, resolving line call accuracy issues without complex camera systems.
A ski binding toe-piece lever integrates blocking and braking functions into a single mechanism.
A one-piece climbing aid reduces component count and assembly costs while providing adjustable support heights for touring bindings.
Rotating jaws linked by connecting rods release automatically during twisting falls to prevent injury.
Segmented skate frame design combines metal lower and composite upper portions to reduce weight while improving vibration damping.
An electric motor drives the binding device along the sliding member to resolve grip reliability issues across varying snow conditions.