EP2964350A1 - Hinterbacken für eine skitourenbindung - Google Patents
Hinterbacken für eine skitourenbindungInfo
- Publication number
- EP2964350A1 EP2964350A1 EP14709246.4A EP14709246A EP2964350A1 EP 2964350 A1 EP2964350 A1 EP 2964350A1 EP 14709246 A EP14709246 A EP 14709246A EP 2964350 A1 EP2964350 A1 EP 2964350A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- adjustment
- adjusting
- piston
- ski
- base body
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
Classifications
-
- A—HUMAN NECESSITIES
- A63—SPORTS; GAMES; AMUSEMENTS
- A63C—SKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
- A63C9/00—Ski bindings
- A63C9/006—Ski bindings with a climbing wedge
-
- A—HUMAN NECESSITIES
- A63—SPORTS; GAMES; AMUSEMENTS
- A63C—SKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
- A63C9/00—Ski bindings
- A63C9/08—Ski bindings yieldable or self-releasing in the event of an accident, i.e. safety bindings
- A63C9/0807—Ski bindings yieldable or self-releasing in the event of an accident, i.e. safety bindings for both towing and downhill skiing
-
- A—HUMAN NECESSITIES
- A63—SPORTS; GAMES; AMUSEMENTS
- A63C—SKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
- A63C9/00—Ski bindings
- A63C9/08—Ski bindings yieldable or self-releasing in the event of an accident, i.e. safety bindings
- A63C9/084—Ski bindings yieldable or self-releasing in the event of an accident, i.e. safety bindings with heel hold-downs, e.g. swingable
- A63C9/0844—Ski bindings yieldable or self-releasing in the event of an accident, i.e. safety bindings with heel hold-downs, e.g. swingable the body pivoting about a transverse axis
Definitions
- the present invention relates to a buttock device for a ski binding, in particular for touring ski binding. Furthermore, the present invention describes a ski binding, in particular a
- ski bindings have a safety release function, so that the ski bindings in certain situations, such as a fall of the skier, automatically open to prevent injury to the skier.
- a ski binding for touring skis has to fulfill a multitude of different functions in addition to the safety release function.
- the ski boot must be freely pivotable about its toe area relative to the ski to allow for skiing along a mountainside.
- the ski binding must secure the ski boot firmly to the surface of the ski so that it is not possible to pivot the ski boot relative to the ski tip.
- the ski binding must secure the ski boot firmly to the surface of the ski so that it is not possible to pivot the ski boot relative to the ski tip.
- ski binding is comfortable to use, so that between the individual modes, eg. B. ski touring and downhill, comfortable and can be changed quickly. Complex modifications to the ski binding during the change between the modes are
- ski touring bindings on the buttocks on a climbing aid which makes a ski touring along a mountainside ergonomic and energy-saving.
- a climbing aid has a plateau or a support area for the heel area of a ski boot.
- the support area is spaced apart from the ski surface, so that the skier does not swing back onto the ski surface when skiing along a steep slope with his heel area, but rests on the support area.
- he can repel the support area in a simple and ergonomic manner while walking with the heel without the heel area having to pivot back onto the ski surface.
- Such climbing aids have an adjustable plateau or support area.
- Support area to support a ski boot should have. This object is achieved with a buttock device for a
- Ski binding especially for a ski touring binding, and a
- Buttock device for a ski binding in particular for a touring ski binding, described.
- the buttock device has a base body, a support element, a setting piston and a
- the main body has a planar base for supporting the main body on a surface of a ski.
- the support element has a support area on which a
- Ski sole of a ski boot can be placed.
- the support element is pivotable relative to the base body about a first axis of rotation on the
- the coupling element is pivotally coupled about a second axis of rotation on the adjusting piston on the one hand and about a third axis of rotation pivotally connected to the support element on the other hand.
- the adjusting piston is so along an adjustment translational (within a plane which is parallel to a
- Base surface level of the base body is formed) slidably disposed on the base body, that a first distance along the adjustment direction between the first axis of rotation and the second
- Rotary axis and a second distance between the support area and the interface are adjustable.
- the buttock device or its elements are described below by way of example for better understanding with regard to a ski longitudinal direction, a ski direction and a normal direction of the ski surface or the base surface.
- the respective directions are each defined at right angles to each other and form a spatial
- the ski longitudinal direction can be used as the first direction
- the ski direction as the second direction
- the Normal direction be understood as the third direction.
- Buttocks device and their spatial formations are thus clearly defined regardless of the mounting or independent of a relative position to a ski.
- the ski has a ski longitudinal direction, which runs between the ski end and the ski tip. Furthermore, the ski on the Skiqueroplasty which is formed at right angles to the ski longitudinal direction and the
- the ski surface extends in a planar plane, which has, for example, the normal n, which is perpendicular to the
- the first distance defines the distance between the first axis of rotation and the second axis of rotation along the direction of adjustment.
- the second distance defines the distance between the support area of the
- the second distance is dependent on the first distance due to the coupling of the coupling element between the adjustment piston and the support element. For each first distance, a correspondingly dependent second distance is set. It follows that depending on a relative position of the adjusting piston along the adjustment direction
- predetermined first distance and thus a predetermined second distance is adjustable.
- the main body describes a support structure to which the forces between the ski boot and the ski are transferable.
- the base body has, in particular, a (planar) base surface with which the base body can be placed on a ski surface and fastened there, for example by means of screws, to the ski.
- the adjusting piston is arranged (in particular exclusively) so as to be translationally displaceable along an adjustment direction on the base body. The adjustment can in particular parallel to
- Skiober component (or the planar base) or be formed at right angles to a normal of the ski surface (or the planar base).
- the adjusting piston can be such
- Adjustment direction runs parallel to a ski longitudinal direction.
- the adjusting piston may have a polygonal cross-section, a round or an oval cross-section.
- the adjusting piston can be translationally displaced along the adjustment direction and be releasably fixed to the base body at a desired position, for example by means of an adjustment element described in detail below, so that the adjustment piston is selectively spatially fixed to the base body.
- the support element is, for example, a lever or a plate, which is pivotally mounted on an end region with a pivot pin on the base body.
- the pivot pin forms the first axis of rotation about which the support element can rotate.
- the first axis of rotation is thus spatially fixed to the base body, so that no translational displacement of the axis of rotation is possible.
- the support element has a support region on which a ski sole of a ski boot, in particular a heel region of a ski boot, can be placed.
- the support element can be set up so that the support region is at a distance from the main body or to the ski.
- run mode the skier swings his toe around one Rotary axis on a toe device of the ski touring binding.
- advantageous support element can be extended so that the support area has the second distance to the ski surface, at which distance the ski boot sole in
- Ski tip is clamped to a toe of the ski binding.
- the skier can repel ergonomically favorable with his heel area of the support element and does not have to exceed the Achilles Scheme in order to turn back with the heel area on the ski surface during running.
- an ergonomically favorable walking along a mountainside can be achieved by means of the climbing aid or the spacing of the support element from the ski surface.
- the support area can, for example, a low-friction
- the coupling element is for example a coupling lever or a
- Coupling plate which is pivotable about the second axis of rotation on the adjusting piston and about a third axis of rotation with the
- the coupling element thus distances the second axis of rotation from the third axis of rotation. If the adjusting piston moves along the adjustment direction, the second shifts
- Adjustment direction thus shifts the second axis of rotation translationally along the adjustment.
- the first axis of rotation is translational immovable and does not change the relative position with respect to the main body or the support element.
- the third axis of rotation shifts during a displacement of the adjusting piston along a circular path with a radius between the first axis of rotation and the third
- a climbing aid is provided in which a desired height or a desired second distance between the support region and the main body or the ski is set depending on a specific setting position of the adjustment piston can be.
- the adjustment piston has a longitudinal extension direction along the adjustment direction, wherein the adjustment piston along a planar displacement plane, which is parallel to a plane in which the base is formed, is located.
- the adjustment piston can save space in a skinahen area of the
- Support member, the adjusting piston and the coupling element necessary, each of the elements can be made robust and z. B. can be formed by means of formed on the respective axes of rotation pivot bolt a robust rotary joint.
- Adjusting piston is coupled such that the adjusting piston at a certain position relative to the main body along the
- Adjustment direction selectively (that is, optionally) is fixable or is solvable.
- the adjustment z. B. represent a lever element or a spacer.
- a desired position of the adjustment piston can be adjusted relative to the main body.
- a specific position of the second axis of rotation relative to the first axis of rotation along the adjustment direction can be adjusted, thereby setting a height or second distance between the support element and the base body (or its base area) depending on this first distance can be.
- Adjusting piston on a first paragraph and the main body on a second paragraph can be displaced along the adjustment direction such that the first shoulder contacts the second shoulder and thus prevents further displacement of the adjusting piston.
- the adjusting element is selectively clamped between the first shoulder and the second shoulder such that a displacement of the adjusting piston relative to the base body along the
- Adjustment can be blocked by means of the adjustment.
- Adjustment element itself may be variable in size, so that due to the size (thickness) of the adjustment, a distance between the first paragraph and the second paragraph is selectively adjustable and thereby turn a certain setting height or a certain second distance of the support area by means of a set position of the adjustment piston is adjustable.
- Adjustment piston a latching area with at least a first
- Locking position and a second locking position Locking position and a second locking position.
- the first detent position and the second detent position are arranged spaced apart from one another along the adjustment direction on the adjustment piston.
- the insert element is selectively coupled to the first detent position or the second detent position such that a displacement of the adjustment piston relative to the base body along the adjustment by means of the adjustment is blockable.
- the corresponding detent positions for example, by means of spaced depressions, such as notches on a
- the corresponding detent positions may be formed via detent teeth extending from the surface of the adjustment piston.
- the adjusting piston can be formed with only one locking position.
- the adjusting element is on the one hand attached to the base body and on the other hand can selectively engage in one of the locking positions, thus blocking a further displacement of the adjusting piston or to set a desired position of the adjusting piston relative to the base body and thus the first distance.
- the adjustment may be a slider or a rod-shaped or rod-shaped element.
- Adjustment can be moved, for example, in a first position in which the adjusting piston is freely displaceable along the adjustment.
- the adjusting element can be arranged to be translationally displaceable on the base body such that the adjusting element can be displaced from the first position into a latching position in order to engage in one of the latching positions of the latching position
- Adjusting piston to block a relative displacement of the adjusting piston may in this case be biased, for example by means of a spring, so that the adjusting element permanently in
- a gripping area of the adjusting element can be the operation of the
- Adjusting piston is pivotable and that a shift of
- Adjusting piston relative to the base body along the adjustment direction by means of the adjusting element in a specific pivotal position of the adjustment is blocked.
- Adjustment be designed as a rotatable lever, wherein the
- Blocking position can be solved.
- the adjustment can also be biased by a spring, so that the adjusting member is biased with a torque which presses the adjustment in the locking position.
- a spring so that the adjusting member is biased with a torque which presses the adjustment in the locking position.
- the pivotal position of the adjustment member may be manually adjustable.
- an automatic adjustment means an automatic adjustment of the adjusting element without actively influencing the skier, at which setting the adjusting element automatically engages in a desired detent position of the adjusting piston, about a specific position of the supporting element or a specific second distance of the supporting region from the
- the second distance is set such that the shoe sole, which is clamped in a front region on a toe of the ski binding and with a
- the automatic adjustment for example, by means of a
- hydraulic, pneumatic or electrical adjusting mechanism which are the adjustment according to taxes implemented.
- position sensors can be used which measure the spatial position or orientation of the base surface and then set a desired position of the adjustment piston in an adjustment direction, for example via a servo motor as an adjustment.
- servomotors instead of the servomotors also hydraulic adjusting means can be used.
- the adjusting element is designed such that a center of gravity of the adjusting element spaced from the fourth
- Rotary axis of the adjustment is present. Due to the design of the adjusting element, the center of gravity is arranged relative to the fourth axis of rotation in such a way that the pivoting position of the adjusting element can be adjusted by gravity so that the adjusting element assumes the specific pivoting position as a function of the spatial orientation of the basic body. Changes the spatial orientation or position of the body, for example, due to a changing slope of a slope on which rests the ski, a distance or lever between the fourth axis of rotation and the center of gravity arise.
- the lever is a virtual connection of a line which is orthogonal to the
- Gravity direction or weight force direction is oriented and defines the distance between the resulting weight of the adjusting member and the fourth axis of rotation. Due to the lever between the resulting weight of the adjustment and the fourth
- Rotary axis torque is formed about the fourth axis of rotation, which rotates the adjusting until the center of gravity of the adjusting member is in a line of gravity with the axis of rotation, so that the gravity acting on the center of gravity or
- Weight of the adjusting member has no lever to the rotation axis, so that no torque is generated and the adjustment is aligned.
- a predetermined detent position of the adjustment piston is engaged be set so that depending on the gravity-based orientation of the adjusting a certain position of the adjusting piston.
- Support area and the ski surface are set automatically.
- a spring between the piston and the base body can be arranged, which in relief of the support area the adjusting piston in a
- the spring may bias the adjustment piston such that a
- the spring is arranged such that a weight force which acts under load of the support area counteracts the spring force or the biasing force on the adjustment piston and the adjustment moves against the direction of the biasing force along the adjustment until the engagement element locked in a desired detent position and the adjustment piston is blocked along this adjustment.
- the adjusting element for example, as described above, directly engage, for example, in locking grooves of the adjusting piston to the
- the adjustment may be configured to instead a latching connection a clamping connection between the
- the adjusting element may in this regard, for example, have jaws which surround the adjusting piston and which can be released manually or via a control device or jammed with the adjusting piston.
- the adjustment member may make contact directly with the adjustment piston to thereby fix the entry piston due to a catch or jamming.
- the adjusting element can also be indirectly coupled to the adjusting piston.
- a coupling element such as a pin, can be arranged between the adjusting element and the adjusting piston, wherein a fixing force can be transmitted from the adjusting element via the coupling element to the adjusting piston.
- Setting element increase a pressure on a coupling element, in which case the coupling element can retract into a screening of the adjusting piston and can lock.
- Main body to a chamber in which at least portions of the adjusting element and / or the adjusting piston are arranged.
- a coupling region between the adjusting element and the adjusting piston can be arranged in the chamber, so that no contamination from the outside disturbs the coupling in this region.
- snow between the adjusting element and the adjusting piston is interposed and prevents a coupling of the two elements.
- the chamber may for example be filled with a liquid, wherein the liquid is provided with a predetermined viscosity. The tougher or the more viscous the liquid, the slower it reacts
- Adjustment element which is for example arranged rotatably on the base body, to changes in the orientation of the base body. If, for example, the adjusting element is adjusted by gravity as described above, the adjusting element pivots more slowly through the viscose liquid until it reaches its neutral position, in which the axis of rotation and the center of gravity of the adjusting element lie in a gravitational line and no gravitational torque acts on the adjusting element. Furthermore, by the liquid
- Vibrations are damped, so that unintentional release of the adjustment of one of the locking positions due to
- Coupling element and the adjusting piston coupled such that a position of the second axis of rotation along the adjusting piston and / or along the coupling element is selectively adjustable.
- the adjusting piston may have a slot and the
- Coupling element and the support element coupled such that a position of the first axis of rotation along the support element and / or along the coupling element is selectively adjustable.
- a pre-adjustment of the relative positions of the different axes of rotation can be made to each other, so that the maximum achievable second distance, for example, is adjustable in advance, the z. B. the fine adjustment by means of
- the buttock device has a buttock device. Furthermore, the ski binding on a toe device.
- the buttock device is mountable on the ski such that between the toe device and the buttock device in at least one operating state
- the buttock device for example, a
- Fig. 1 shows a schematic sectional view of a
- a buttock device according to an exemplary embodiment of the present invention
- Fig. 2 shows a schematic sectional view of
- Butt device of FIG. 1 in a perspective view
- Fig. 3 shows a schematic sectional view of a
- a butt device according to an exemplary embodiment of the present invention, wherein an energy harvesting device is arranged.
- the rear jaw device 100 has in particular a main body 105, which has a planar base surface 106 for supporting the main body 105 on a
- Ski surface 151 of a ski 150 has. Furthermore, the rear jaw device 100 has a support element 120 with a support region 121. A ski sole of a ski boot can be placed on the support area, in particular in a running mode of the ski boot
- the support element 120 is arranged pivotably relative to the main body 105 about a first axis of rotation 101 on the main body 105.
- the first axis of rotation 101 is fixed (translational immovable and immovable) arranged on the base body 105.
- a bolt is formed on the main body 105, for example, on which the support element 120 is pivotably arranged by means of a receiving opening.
- the support element 120 may comprise a pivot pin and in a
- the rear jaw device 100 has a setting piston 110.
- a coupling element 130 is pivotally coupled about a second axis of rotation 102 on the adjustment piston 110 on the one hand and about a third axis of rotation 103 pivotally connected to the support element 120 on the other.
- the second axis of rotation 102 is translationally movable during a movement of the adjusting piston 110 along the adjustment direction 107.
- the third axis of rotation 103 is translationally movable in at least two spatial directions.
- the adjusting piston is so along the adjustment direction 107th
- a first distance II along the adjustment direction 107 between the first axis of rotation 101 and the second axis of rotation 102 and a second distance 12 is adjustable between the support portion 121 and the base 106.
- the adjusting piston 110 is in particular exclusively translationally along the adjustment direction 107, ie. one-dimensional, slidably disposed on the base 105.
- the adjustment direction 107 describes a direction along the base surface 106 or along a direction which is orthogonal to a normal of the planar base surface 106 of the main body 105.
- the adjustment direction 107 is aligned such that the adjustment direction 107 is formed along a ski longitudinal axis or parallel to a ski longitudinal axis.
- the adjusting piston 110 has, for example, a central axis, which is formed parallel to the adjustment direction 107.
- the adjusting piston 110 can be selectively displaced along the displacement direction 107 and fixed at a certain position.
- the first distance II is adjustable by means of the adjusting piston 110, wherein
- the second distance L2 is adjustable.
- the support region 121 is set, which forms a support region for a heel region of the ski boot.
- the second distance 12 can be adjusted so that the support area 121 is formed so that when a heel area of the ski boot on the support area 121 and when clamping the ski boot tip in a toe of the ski binding, the ski boot sole is substantially aligned horizontally when a ski on which the base 105 is mounted rests.
- efficient and ergonomic one Climbing aid be provided during a touring mode of a touring ski binding.
- a touring ski binding has a downhill mode in which the ski boot is firmly clamped between the toe device and the buttock device 100 and the ski boot sole rests on the ski surface 151 or is aligned parallel thereto.
- Rear jaw device 100 having a pivotally mounted on the base body 105 heel lever 160 which can be selectively adjusted in a downhill mode to the ski boot with the
- Fig. 1 the heel lever 160 is pivoted to a position in which a running mode of ski touring binding is set.
- an adjusting element 140 is used, which in the exemplary embodiment in FIG. 1 as a lever element pivotable about a fourth axis of rotation 104 on the
- Main body 105 is attached.
- the adjusting element 140 can also be arranged translationally displaceably on the main body 105, for example.
- the in Fig. 1 has, for example, an engagement tip, which can engage in a corresponding first detent position 113 or second detent position 114 in a latching region 112 of the adjustment piston 110.
- the engaged position of the Adjustment element 140 in a certain detent position 113, 114 can be done manually, for example.
- the adjustment member 140 gravity-based and automatically, that is, without the action of the skier, engage in a certain detent position 113, 114 of the adjusting piston 110.
- Gravity-based adjustment is based on a relative position of the center of gravity S of the adjustment member 140 relative to the fourth
- Main body 105 and the ski 150 which rests on a slope. Depending on the slope, the center of gravity S has a different
- a lever (distance) between the center of gravity S and the fourth axis of rotation 104 may be present.
- a torque is generated and the adjusting member 140 pivoted to a position in which the center of gravity S and on a
- Gravity line to the fourth axis of rotation 104 is located or in which the center of gravity S is exactly below the fourth axis of rotation 104.
- a distance or lever between the fourth axis of rotation 104 and the center of gravity S can arise.
- the lever is a virtual connecting line which is orthogonal to the
- Gravity direction or weight force direction is oriented and defines the distance between the resulting weight (center of gravity S) of the adjusting element 140 and the fourth axis of rotation 104. Due to the lever between the center of gravity S of the adjusting member 140 and the fourth rotation axis 104 is a torque about the fourth
- Rotation axis 104 is formed, which rotates the adjusting member 140 until the center of gravity S of the adjusting member 140 is in a line of gravity with the axis of rotation 104, so that the force acting on the center of gravity S gravitational force or weight of the adjusting member has no lever to the rotation axis 104, so that no torque is generated and the adjusting element 140 is aligned.
- Alignment of the adjustment member 140 may be a predetermined
- Detent position 113, 114 of the adjusting piston 110 are engaged so that a certain position of the adjusting piston 110 is adjusted depending on the gravity-based orientation of the adjusting member 140.
- Main body 105 or the ski resting on the slope 150, and a certain detent position 113, 114, in which the adjusting element 140 engages, are produced.
- Ski surface 151 can be adjusted automatically.
- the main body 105 has a second shoulder 108, in which a first shoulder 111 of the adjusting piston 110 abuts relative to the main body 105 at a specific adjustment position of the adjusting piston 110. Between the first shoulder 111 and the second shoulder 108, a spacer may be inserted as an adjustment member (not shown) to provide a relative position of the
- Adjustment piston 110 and thus to set a dependent amount of the second distance 12.
- the adjusting piston 110 may be biased by a spring, so that when a relief of the support portion 121 and thus a relief of the entire mechanical system, the adjusting piston 110 is moved to an initial position.
- the spring force would counteract the adjustment direction 107 and move the adjusting piston 110 to the right, that is, in the direction of the ski tip until the
- Adjusting piston 110 has reached the initial position.
- the coupling region between the adjusting element 140 and the adjusting piston 110 is therefore likewise located within the chamber 109, so that this coupling region is protected from external influences such as snow.
- the chamber 109 may thus be filled with a liquid having a desired viscosity.
- the chamber 109 has two openings through which the adjusting piston 110 is slidably performed.
- seals may be arranged in the region of the openings, so that the interior of the chamber 109 is protected from contamination or leakage of a possibly filled liquid is sealed.
- the coupling element 130 and the adjusting piston 110 may be coupled such that a position of the second axis of rotation 102 along the adjusting piston 110 and / or along the coupling element 130 is selectively adjustable.
- the adjusting piston 110 may have a slot 115 which extends along the
- Adjusting direction 107 extends.
- the coupling element 130 has a pivot pin 131, which is rotatably coupled in the slot 115.
- the pivot pin 131 may within the slot 115 in a desired position to be moved and secured, for example by means of clamping screws in this position against further slipping within the slot 115.
- Adjusting piston 110 are formed, wherein the pivot pin 131 of the coupling element 130 can be selectively introduced into a desired bore.
- an adjustment or a ratio of the second distance 12 as a function of the first distance II can be preset.
- FIG. 2 shows the butt cheek device 100 from FIG. 1 in a perspective view.
- the butt-end device 100 in FIG. 2 has the same features as the butt-end device 100 of FIG. 1.
- FIG. 3 shows a butt cheek device according to an exemplary embodiment of the present invention, wherein a
- the Energy recovery device is arranged.
- Energy recovery device has a coil assembly 302, which is arranged in the main body 105.
- the coil arrangement 302 surrounds the adjustment piston 110.
- the adjustment piston 110 has a magnetizable or (permanently magnetically) magnetized region 303. Due to the displacement of the adjusting piston 110 and corresponding to the magnetized region 303 relative to the
- Coil assembly 302 electrical voltage is generated.
- tension can be used to operate a sensor in the butt-end device 100 or the climbing aid.
- actuators corresponding to the release of, for example, the binding can be operated in the middle by means of the generated voltage.
- a compression spring 301 is disposed between the second axis of rotation 102 and a shoulder of the base 105.
Landscapes
- Footwear And Its Accessory, Manufacturing Method And Apparatuses (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE201310204064 DE102013204064B4 (de) | 2013-03-08 | 2013-03-08 | Hinterbacken für eine Skitourenbindung |
| PCT/EP2014/054488 WO2014135693A1 (de) | 2013-03-08 | 2014-03-07 | Hinterbacken für eine skitourenbindung |
Publications (3)
| Publication Number | Publication Date |
|---|---|
| EP2964350A1 true EP2964350A1 (de) | 2016-01-13 |
| EP2964350B1 EP2964350B1 (de) | 2018-12-19 |
| EP2964350B8 EP2964350B8 (de) | 2019-03-27 |
Family
ID=50241402
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP14709246.4A Active EP2964350B8 (de) | 2013-03-08 | 2014-03-07 | Hinterbacken für eine skitourenbindung |
Country Status (3)
| Country | Link |
|---|---|
| EP (1) | EP2964350B8 (de) |
| DE (1) | DE102013204064B4 (de) |
| WO (1) | WO2014135693A1 (de) |
Families Citing this family (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE102016000609B4 (de) | 2016-01-23 | 2019-03-28 | Markus Steinke | Hinterbackenvorrichtung für eine Tourenskibindung |
| DE102016000608B4 (de) | 2016-01-23 | 2017-08-31 | Markus Steinke | Hinterbackenvorrichtung für eine Tourenskibindung, umfassend eine Stopperplatte |
| AT524097A1 (de) * | 2020-07-17 | 2022-02-15 | Christoph Beisteiner | Steighilfe für eine Tourenschibindung |
| EP3995185B1 (de) * | 2020-11-06 | 2025-01-08 | Qwicklane IP-UG (haftungsbeschränkt) | Ferseneinheit für tourenbindung mit automatischer steighilfenverstellung sowie verfahren zum positionieren von schuhauflagen |
| DE102021001052A1 (de) | 2020-11-06 | 2022-05-12 | Lukas Ernst | Ferseneinheit für Tourenbindung mit automatischer Steighilfenverstellung sowie Verfahren zum Positionieren von Schuhauflagen |
| AT526681B1 (de) * | 2023-02-13 | 2024-06-15 | Robert Gahr | Steighilfe für eine Skibindung |
Family Cites Families (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2008083511A1 (de) * | 2007-01-11 | 2008-07-17 | Fritschi Ag - Swiss Bindings | Vorrichtung als steighilfe |
| EP2396091B1 (de) * | 2009-01-30 | 2015-09-30 | Micado Cad-Solutions GmbH | Fersenhebevorrichtung für einen ski |
| EP2556866B1 (de) * | 2009-07-10 | 2014-03-26 | Fritschi AG - Swiss Bindings | Steighilfe für einen Ski |
| DE102009036244A1 (de) * | 2009-08-05 | 2011-02-17 | Salewa Sport Ag | Steighilfe, Tourenskibindung und Skiausrüstung |
| DE102009036245A1 (de) * | 2009-08-05 | 2011-02-10 | Salewa Sport Ag | Gleitbrettausrüstung und Bindung für ein Gleitbrett |
| EP2368608B1 (de) * | 2010-03-23 | 2014-03-05 | Fritschi AG - Swiss Bindings | Steighilfe |
-
2013
- 2013-03-08 DE DE201310204064 patent/DE102013204064B4/de not_active Expired - Fee Related
-
2014
- 2014-03-07 WO PCT/EP2014/054488 patent/WO2014135693A1/de not_active Ceased
- 2014-03-07 EP EP14709246.4A patent/EP2964350B8/de active Active
Non-Patent Citations (2)
| Title |
|---|
| None * |
| See also references of WO2014135693A1 * |
Also Published As
| Publication number | Publication date |
|---|---|
| WO2014135693A1 (de) | 2014-09-12 |
| DE102013204064B4 (de) | 2015-01-22 |
| EP2964350B1 (de) | 2018-12-19 |
| DE102013204064A1 (de) | 2014-09-11 |
| EP2964350B8 (de) | 2019-03-27 |
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