Claims
- 1) A snowboard system, comprising, in combination:
a) at least one first ski lying substantially in a first plane and having a first longitudinal axis; b) at least one second ski lying substantially in a second plane and having a second longitudinal axis; c) at least one mounting assembly structured and arranged to mount at least one boot binding; and d) at least one linkage structured and arranged to link said at least one mounting assembly to and between said at least one first ski and said at least one second ski; e) said at least one mounting assembly lying normally in a substantially horizontal third plane above the first and second planes and having a third longitudinal axis; f) wherein said at least one linkage is structured and arranged to
i) maintain the first and second planes normally substantially parallel to the third plane, ii) maintain the first, second and third planes to be never simultaneously collectively co-planar, iii) maintain substantially parallel alignment among the first longitudinal axis, second longitudinal axis and third longitudinal axis; iv) control vertical motion among the first longitudinal axis, second longitudinal axis and third longitudinal axis; v) maintain substantially fixed horizontal separation among the first longitudinal axis, second longitudinal axis and third longitudinal axis; vi) permit rotation of said at least one first ski and said at least one second ski about an axis of rotation transverse to the third longitudinal axis; and vii) permit cant between said at least one first ski relative to said at least one second ski.
- 2) The snowboard system according to claim 1 wherein said at least one linkage is structured and arranged to control vertical motion among the first longitudinal axis, second longitudinal axis and third longitudinal axis so that vertical motion of the first longitudinal axis is approximately equal and opposite to vertical motion of the second longitudinal axis relative to the third longitudinal axis.
- 3) The snowboard system according to claim 1 wherein said at least one linkage is structured and arranged to impart motion to said at least one mounting assembly along the third longitudinal axis in response to vertical motion among the first longitudinal axis, second longitudinal axis and third longitudinal axis.
- 4) The snowboard system according to claim 1 wherein said at least one linkage comprises:
a) at least one double throw crank, each said at least one double throw crank having
i) at least one substantially co-linear shaft, ii) a first free end parallel with said at least one substantially co-linear shaft and having a first offset from said at least one substantially co-linear shaft, and iii) a second free end parallel with said at least one substantially co-linear shaft and having a second offset from said at least one substantially co-linear shaft; b) at least one first journal box structured and arranged to attach to said at least one first ski, said at least one first journal box being structured and arranged to receive said first free end of said at least one double throw crank; c) at least one second journal box structured and arranged to attach to said at least one second ski, said at least one second journal box being structured and arranged to receive said second free end of said at least one double throw crank; and d) at least one crank support box structured and arranged to attach to said at least one mounting assembly, said at least one crank support box being structured and arranged to receive said at least one substantially co-linear shaft in a position substantially transverse to the third longitudinal axis.
- 5) The snowboard system according to claim 1 wherein each said at least one linkage comprises:
a) a solid double throw crank, said solid double throw crank having
i) a shaft, ii) a first free end parallel with said shaft and having a first offset from said shaft, and iii) a second free end parallel with said shaft and having a second offset from said shaft; b) at least one first journal box structured and arranged to attach to said at least one first ski, said at least one first journal box being structured and arranged to receive said first free end of said solid double throw crank; c) at least one second journal box structured and arranged to attach to said at least one second ski, said second journal box being structured and arranged to receive said second free end of said solid double throw crank; and d) at least one bearing box structured and arranged to attach to said at least one mounting assembly, said at least one bearing box being structured and arranged to receive said shaft in a position substantially transverse to the third longitudinal axis.
- 6) The snowboard system according to claim 5 wherein said at least one linkage comprises at least two said linkages.
- 7) The snowboard system according to claim 5 wherein said at least one linkage is structured and arranged to impart motion to said at least one mounting assembly along the third longitudinal axis in response to vertical motion among the first longitudinal axis, second longitudinal axis and third longitudinal axis.
- 8) The snowboard system according to claim 5 wherein said at least one mounting assembly is structured and arranged to mount two boot bindings.
- 9) The snowboard system according to claim 8 wherein said at least one bearing box is structured and arranged to attach to said at least one mounting assembly between locations for the two boot bindings.
- 10) The snowboard system according to claim 1 wherein each said at least one linkage comprises:
a) an articulated double throw crank, said articulated double throw crank having
i) a first shaft comprising a first gear, ii) a first free end parallel with said first shaft and having a first offset from said first shaft, iii) a second shaft comprising a second gear, iv) a second free end parallel with said second shaft and having a second offset from said second shaft; b) at least one first journal box structured and arranged to attach to said at least one first ski, said at least one first journal box being structured and arranged to receive said first free end of said articulated double throw crank; c) at least one second journal box structured and arranged to attach to said at least one second ski, said second journal box being structured and arranged to receive said second free end of said articulated double throw crank; and d) at least one gearbox structured and arranged to attach to said at least one mounting assembly, said at least one gearbox being further structured and arranged to receive and house said first gear and said second gear in meshing relationship, with said first and second shafts in positions substantially transverse to the third longitudinal axis, so that said first free end and said second free end rotate about said gearbox in opposite directions.
- 11) The snowboard system according to claim 10 wherein said at least one linkage comprises two said linkages.
- 12) The snowboard system according to claim 10 wherein said at least one linkage is structured and arranged to impart motion to said at least one mounting assembly along the third longitudinal axis in response to vertical motion among the first longitudinal axis, second longitudinal axis and third longitudinal axis.
- 13) The snowboard system according to claim 10 wherein said at least one mounting assembly is structured and arranged to mount two boot bindings.
- 14) The snowboard system according to claim 13 wherein said at least one gearbox is structured and arranged to attach to said at least one mounting assembly between locations for the two boot bindings.
- 15) The snowboard system according to claim 1 wherein said at least one mounting assembly comprises, in combination:
a) at least one sub-assembly structured and arranged to attach to said at least one linkage; b) attached to said sub-assembly, at least one rider assembly structured and arranged to provide at least one mounting for at least one boot binding; c) at least one connection bar structured and arranged to rotatably attach between said at least one rider assembly and said at least one sub-assembly, wherein said at least one rider assembly is permitted to rotate about an axis of rotation transverse to the third longitudinal axis; and d) at least one expansion system structured and arranged to apply separation force between said at least one rider assembly and said at least one sub-assembly.
- 16) The snowboard system according to claim 15, wherein said at least one expansion system is structured and arranged to be adjustable.
- 17) The snowboard system according to claim 4 wherein said at least one mounting assembly comprises, in combination:
a) at least one sub-assembly structured and arranged to attach to said at least one linkage; b) attached to said sub-assembly, at least one rider assembly structured and arranged to provide at least one mounting for at least one boot binding; c) at least one connection bar structured and arranged to rotatably attach between said at least one rider assembly and said at least one sub-assembly, wherein said at least one rider assembly is permitted to rotate about an axis of rotation transverse to the third longitudinal axis; and d) at least one expansion system structured and arranged to apply separation force between said at least one rider assembly and said at least one sub-assembly.
- 18) An apparatus, for linking at least one first ski lying substantially in a first plane and having a first longitudinal axis to at least one second ski lying substantially in a second plane and having a second longitudinal axis, comprising, in combination:
a) at least one mounting assembly structured and arranged to mount at least one boot binding; and b) at least one linkage structured and arranged to link said at least one mounting assembly to and between said at least one first ski and said at least one second ski; c) said at least one mounting assembly lying normally in a substantially horizontal third plane above the first and second planes and having a third longitudinal axis; d) wherein said at least one linkage is structured and arranged to
i) maintain the first and second planes normally substantially parallel to the third plane, ii) maintain the first, second and third planes to be never simultaneously collectively co-planar, iii) maintain substantially parallel alignment among the first longitudinal axis, second longitudinal axis and third longitudinal axis; iv) control vertical motion among the first longitudinal axis, second longitudinal axis and third longitudinal axis; v) maintain substantially fixed horizontal separation among the first longitudinal axis, second longitudinal axis and third longitudinal axis; vi) permit rotation of said at least one first ski and said at least one second ski about an axis of rotation transverse to the third longitudinal axis; vii) permit cant between said at least one first ski relative to said at least one second ski.
- 19) The apparatus according to claim 18 wherein said at least one linkage is structured and arranged to control vertical motion among the first longitudinal axis, second longitudinal axis and third longitudinal axis so that vertical motion of the first longitudinal axis is approximately equal and opposite to vertical motion of the second longitudinal axis relative to the third longitudinal axis.
- 20) The apparatus according to claim 18 wherein said at least one linkage is structured and arranged to impart motion to said at least one mounting assembly along the third longitudinal axis in response to vertical motion among the first longitudinal axis, second longitudinal axis and third longitudinal axis.
- 21) The apparatus according to claim 18 wherein said at least one linkage comprises:
a) at least one double throw crank, each said at least one double throw crank having
i) at least one substantially co-linear shaft, ii) a first free end parallel with said at least one substantially co-linear shaft and having a first offset from said at least one substantially co-linear shaft, and iii) a second free end parallel with said at least one substantially co-linear shaft and having a second offset from said at least one substantially co-linear shaft; b) at least one first journal box structured and arranged to attach to the at least one first ski, said at least one first journal box being structured and arranged to receive said first free end of said at least one double throw crank; c) at least one second journal box structured and arranged to attach to the at least one second ski, said at least one second journal box being structured and arranged to receive said second free end of said at least one double throw crank; and d) at least one crank support box structured and arranged to attach to said at least one mounting assembly, said at least one crank support box being structured and arranged to receive said at least one substantially co-linear shaft in a position substantially transverse to the third longitudinal axis.
- 22) The apparatus system according to claim 18 wherein each said at least one linkage comprises:
a) a solid double throw crank, said solid double throw crank having
i) a shaft, ii) a first free end parallel with said shaft and having a first offset from said shaft, and iii) a second free end parallel with said shaft and having a second offset from said shaft; b) at least one first journal box structured and arranged to attach to the at least one first ski, said at least one first journal box being structured and arranged to receive said first free end of said solid double throw crank; c) at least one second journal box structured and arranged to attach to the at least one second ski, said second journal box being structured and arranged to receive said second free end of said solid double throw crank; and d) at least one bearing box structured and arranged to attach to said at least one mounting assembly, said at least one bearing box being structured and arranged to receive said shaft in a position substantially transverse to the third longitudinal axis.
- 23) The apparatus according to claim 22 wherein said at least one linkage comprises at least two said linkages.
- 24) The apparatus according to claim 22 wherein said at least one linkage is structured and arranged to impart motion to said at least one mounting assembly along the third longitudinal axis in response to vertical motion among the first longitudinal axis, second longitudinal axis and third longitudinal axis.
- 25) The apparatus according to claim 22 wherein said at least one mounting assembly is structured and arranged to mount two boot bindings.
- 26) The apparatus according to claim 25 wherein said at least one bearing box is structured and arranged to attach to said at least one mounting assembly between locations for the two boot bindings.
- 27) The apparatus according to claim 18 wherein each said at least one linkage comprises:
a) an articulated double throw crank, said articulated double throw crank having
i) a first shaft comprising a first gear, ii) a first free end parallel with said first shaft and having a first offset from said first shaft, iii) a second shaft comprising a second gear, iv) a second free end parallel with said second shaft and having a second offset from said second shaft; b) at least one first journal box structured and arranged to attach to the at least one first ski, said at least one first journal box being structured and arranged to receive said first free end of said articulated double throw crank; c) at least one second journal box structured and arranged to attach to the at least one second ski, said second journal box being structured and arranged to receive said second free end of said articulated double throw crank; and d) at least one gearbox structured and arranged to attach to said at least one mounting assembly, said at least one gearbox being further structured and arranged to receive and house said first gear and said second gear in meshing relationship, with said first and second shafts in positions substantially transverse to the third longitudinal axis, so that said first free end and said second free end rotate about said gearbox in opposite directions.
- 28) The apparatus according to claim 27 wherein said at least one linkage comprises two said linkages.
- 29) The apparatus according to claim 27 wherein said at least one linkage is structured and arranged to impart motion to said at least one mounting assembly along the third longitudinal axis in response to vertical motion among the first longitudinal axis, second longitudinal axis and third longitudinal axis.
- 30) The apparatus according to claim 27 wherein said at least one mounting assembly is structured and arranged to mount two boot bindings.
- 31) The apparatus according to claim 30 wherein said at least one gearbox is structured and arranged to attach to said at least one mounting assembly between locations for the two boot bindings.
- 32) The apparatus according to claim 18 wherein said at least one mounting assembly comprises, in combination:
a) at least one sub-assembly structured and arranged to attach to said at least one linkage; b) attached to said sub-assembly, at least one rider assembly structured and arranged to provide at least one mounting for at least one boot binding; c) at least one connection bar structured and arranged to rotatably attach between said at least one rider assembly and said at least one sub-assembly, wherein said at least one rider assembly is permitted to rotate about an axis of rotation transverse to the third longitudinal axis; and d) at least one expansion system structured and arranged to apply separation force between said at least one rider assembly and said at least one sub-assembly.
- 33) The apparatus according to claim 32, wherein said at least one expansion system is structured and arranged to be adjustable.
- 34) The apparatus according to claim 21 wherein said at least one mounting assembly comprises, in combination:
a) at least one sub-assembly structured and arranged to attach to said at least one linkage; b) attached to said sub-assembly, at least one rider assembly structured and arranged to provide at least one mounting for at least one boot binding; c) at least one connection bar structured and arranged to rotatably attach between said at least one rider assembly and said at least one sub-assembly, wherein said at least one rider assembly is permitted to rotate about an axis of rotation transverse to the third longitudinal axis; and d) at least one expansion system structured and arranged to apply separation force between said at least one rider assembly and said at least one sub-assembly.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] The present application is related to Application Serial No. 60/271,476, filed Feb. 26, 2001, entitled “DYNAMIC VARIABLE GEOMETRY SNOWBOARD”, which is incorporated herein by this reference, and which is not admitted to be prior art with respect to the present invention by the mention in this cross-reference section.
Provisional Applications (1)
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Number |
Date |
Country |
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60271476 |
Jun 2001 |
US |