摘要:
An exoskeleton (E) for connecting footwear to sporting equipment. The exoskeleton has an underfoot base (7), an ankle cuff (3) connected to a heel portion of the underfoot base, a first restraining brace (2a) having an anterior end connected to the medial side of a forefoot portion of the underfoot base (7), and extending rearwardly and diagonally at least to the lateral side of the ankle cuff, and a second restraining brace (2b) having an anterior end connected to the lateral side of the forefoot portion of the underfoot base (7), and extending rearwardly and diagonally at least to the medial side of the ankle cuff. The first and second restraining braces (2a, 2b) are configured such that when an item of footwear is enclosed by the exoskeleton (E), the restraining braces extend over and support a portion of the item of footwear.
摘要:
A snowboard binding includes a base plate and a heel support attached directly or indirectly to this base plate so that it can pivot. Intermediate elements mount the heel support and can be adjusted in the longitudinal direction of the snowboard binding. Thus, the effective length of the snowboard binding can be adapted to the respective boot. Also, through different positioning of the intermediate elements, the heel support can be arranged diagonally relative to the longitudinal axis of the snowboard binding.
摘要:
A geometry-shifting strap for a binding having a baseplate is disclosed. The geometry-shifting strap is shiftable between a closed position wherein the distal end of the geometry-shifting strap is biased or disposed over the baseplate, and an open position wherein the distal end of the strap is not over the baseplate. The strap includes at least one arcuate element that biases the strap to the closed position when the arcuate element is in a concave configuration, and biases the strap to the open position when the arcuate element is in a convex configuration.
摘要:
The present invention is directed generally towards closing a snowboard binding locking lever with a pull cable that protrudes forward, upward, or upward and forward from the highback of the binding. One aspect of the invention provides a pull cable with a cable guide and a grip. Another aspect includes a semi-rigid bendable guide to act as an additional guide for the pull cable. Another aspect includes a magnet or notch to fasten the grip towards the front of the binding.
摘要:
A binding for a sports boot on a gliding board, comprising a base intended to be fixed on a gliding board, means for binding the boot and a rear stop or spoiler, wherein, on each lateral part of the base (1), the spoiler (3) is on the one hand mounted so as to move about a pin (4) mounted so as to move relative to the base (1) and on the other hand connected to the base (1) by a second means for guiding its movement relative to the base (1).
摘要:
A resilient biasing element for a snowboard binding is disclosed. The biasing element provides a means of biasing an ankle or toe strap for a conventional snowboard binding towards an open position when the strap is unsecured, easing the insertion and removal of a boot from the binding. The binding may be used in combination with a conventional snowboard, or a snowboard incorporating impact plates to distribute loads and increase the structural integrity and life of the snowboard.
摘要:
An adjustable binding system includes a frame and a highback pivotally coupled thereto. The highback includes a wing adjustably connected to a heel loop. The frame is adjustable via at least one length adjuster to provide adjustment of the toe to heel length of the frame so that the binding system can better accommodate varying sizes of boots. Additionally, the binding system is adjustable at the connection interface of the heel loop and the frame via forward lean adjusters to provide an adjustment of an angle of forward inclination between the highback and the frame. The binding system is further adjustable between the connection of the wing and the heel loop via a wing position adjuster to provide an adjustment of the height and medial to lateral positioning of the wing with respect to the heel loop. Each adjustment mechanism may be hand operated without the use of tools.
摘要:
An adjustable binding system includes a frame and a highback pivotally coupled thereto. The highback includes a wing adjustably connected to a heel loop. The frame is adjustable via at least one length adjuster to provide adjustment of the toe to heel length of the frame so that the binding system can better accommodate varying sizes of boots. Additionally, the binding system is adjustable at the connection interface of the heel loop and the frame via forward lean adjusters to provide an adjustment of an angle of forward inclination between the highback and the frame. The binding system is further adjustable between the connection of the wing and the heel loop via a wing position adjuster to provide an adjustment of the height and medial to lateral positioning of the wing with respect to the heel loop. Each adjustment mechanism may be hand operated without the use of tools.
摘要:
A binding for snowboards has a back plate 2 at the rear of a base plate 1, and the back plate 2 is moved back and forth to vertically move side plates 3 which are provided with an ankle strap 32 and a toe strap 33.
摘要:
A device for retaining a boot on a gliding board. The device includes in particular a dorsal support element and a base, the dorsal support element being journalled on the base along a substantially transverse Y-Y' axis of the device, wherein at least one control device generates a journal movement of the dorsal support element with respect to the base along the Y-Y' axis, from an opening position toward a closing position in a rear-to-front direction, when the sole of the boot is displaced toward the board during affixation of the boot, wherein an elastic element biases the dorsal support element along the Y-Y' axis in a front-to-rear direction, wherein a stop limits the movement of the dorsal support element in the front-to-rear direction, and wherein the dorsal support element has a scallop at the level of the heel of the boot.