摘要:
A steering system for a snowboard includes two binding interface pods, one of which may be active and one of which may be passive. Rotation or tilting of a top plate of the active binding interface pod in response to rotation or tilting of the rider's steering foot causes counter-rotation of a steering fin under the rider's steering foot. The passive binding interface pod is responsive via a linkage between the active and passive binding interface pods to cause rotation of a steering fin under the rider's non-steering foot. Coordinated counter-rotation of the steering fins causes the board to turn in the direction of rotation of the rider's steering foot when the steering fins are unaligned. Optionally, both binding pods may be active in steering, i.e. enabling two footed steering.
摘要:
Some embodiments disclosed herein provide an apparatus for joining two skis to form a splitboard. The apparatus can comprise a first attachment portion configured to attach to a first ski and a second attachment portion configured to attach to a second ski. The first attachment portion and the second attachment portion can be configured to engage to prevent splitboard skis from moving up and down relative to each other, from moving apart in a direction perpendicular to a seam of the splitboard, from sliding relative to each other in a direction parallel to the seam, and from rotating about the seam of the splitboard.
摘要:
Some embodiments disclosed herein provide an apparatus for joining two skis to form a splitboard. The apparatus can comprise a first attachment portion configured to attach to a first ski and a second attachment portion configured to attach to a second ski. The first attachment portion and the second attachment portion can be configured to engage to prevent splitboard skis from moving up and down relative to each other, from moving apart in a direction perpendicular to a seam of the splitboard, from sliding relative to each other in a direction parallel to the seam, and from rotating about the seam of the splitboard.
摘要:
Sliding device (1) for sliding on snow, whereby the sliding device (1) includes at least two skis (2) that extend in a longitudinal direction (L), whereby the at least two skis (2) are mounted next to one another and parallel to one another, whereby the at least two skis (2) are tiltable around separate horizontal axes of rotation (H) that are parallel to the longitudinal direction of the skis (2), whereby the sliding device (1) includes at least one support (7) that is rotatable around a vertical shaft (9), whereby the sliding device (1) is provided with a transmission (10, 11, 12) to convert a rotation movement of the support (7) around the vertical shaft (9) into a tilting movement of the skis (2) around their respective axes of rotation (H).
摘要:
A piece of snow sports equipment comprises a sliding board with a sheetlike central part (110) which extends in a longitudinal direction, and two sheetlike side parts (120, 130) which are fastened to the central part (110) on both sides. The central part (110) has a sliding coating (115) on a lower side. The side parts (120, 130) can be folded over from a first position, in which a first main surface of the side parts (120, 130) is substantially co-planar with the lower side of the central part (110), into a second position, in which the side parts (120, 130) are folded under the central part (110) such that the first main surfaces of the side parts (120, 130) are supported on the lower side of the central part (110). Second main surfaces of the side parts (120, 130), which second main surfaces lie opposite the first main surfaces, have a climbing skin (125, 135).
摘要:
A first component and a second component of a sports board may be controlled to configure the sports board. The first component may be coupled with a plurality of layers of the sports board. The second component may also be coupled with the plurality of layers of the sports board.
摘要:
A rotatable snowboard binding system allows the front binding to rotate from the riding mode to the skating mode freely, so that a rider can skate and rotate back to the riding mode. When in the skating mode, a fin member protrudes beneath the bottom of the snowboard. This acts on the snow to maintain the rider's direction of travel. The system allows both goofy foot and regular foot riders to safely and easily negotiate lifts and lift lines, and traverse flats by allowing the front binding to rotate between 0° (riding) and 90° (skating) positions. While in the riding mode, bindings and board will function as normal. When the system is utilized in the skating mode, the front binding rotates, allowing the rider to operate the snowboard much like a skateboard. In this rotated position, the fin member protrudes from the bottom of the board.
摘要:
A wireless hierarchical heterogonous pico-net providing communication between smart-phone based analysis and control application and multiplicity of sensors and actuators embedded in the ski equipment is described. The topology of this pico-net comprises two layers of hierarch, where the first layer is configured as a Bluetooth wireless network using a Round-Robin scheduling method and consisting of a single master and up-to seven slaves, and the second layer of the hierarchy is configured as a sub-nets consisting of multiplicity of sensors and actuators and communicating internally using ANT personal area network (PAN) wireless interface, or via a digital wire interface. Such network topology provides deterministic latency of a hierarchy a single-hop Bluetooth network, irrespective of the numbers of sensors and actuators embedded within each sub-net of the second layer of hierarchy. The network latency is upper-bounded by the number of slaves in the first layer of hierarch, Furthermore, the Round-Robin scheduling method is supplemented with the gating-off the slave RF transmission when the slave has no data to send, or when the difference between current sensor samples and the previous sensor sample is smaller then predefined threshold. Such discontinued transmission lowers slave power consumption system interference.
摘要:
Exemplary embodiments of the present invention would provide a rotatable footplate integrated with a corresponding bearing and well assembly that is imbedded into, screwed into, or otherwise, integrally a part of, a single-board sports board, such as a snowboard.
摘要:
A method and apparatus for controlling of ski vibration consisting an accelerator/actuator sub-system attached to the ski and a adaptive vibration control application residing in the user smart-phone and communicating with the accelerometer/actuator sub-system over Bluetooth radio interface is disclosed. The adaptive vibration control application extracts vibration frequencies and amplitudes from signal received from an accelerometer, separates such frequencies according to their types—bending or torsional, and after thresholding and scaling by the ski calibration parameters and by the user desired ski response, apply such signal to the control loop and consequently to the actuators to provide vibration dampening force. In one embodiment, such actuators are attached to the ski, while in another embodiment such actuators are embedded into the ski.