EP1702658B1 - Bindung mit einem doppelten Betätigungssystem - Google Patents

Bindung mit einem doppelten Betätigungssystem Download PDF

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Publication number
EP1702658B1
EP1702658B1 EP06004072A EP06004072A EP1702658B1 EP 1702658 B1 EP1702658 B1 EP 1702658B1 EP 06004072 A EP06004072 A EP 06004072A EP 06004072 A EP06004072 A EP 06004072A EP 1702658 B1 EP1702658 B1 EP 1702658B1
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EP
European Patent Office
Prior art keywords
opening
lever
manipulation
locking mechanism
rocker
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.)
Not-in-force
Application number
EP06004072A
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English (en)
French (fr)
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EP1702658A1 (de
Inventor
Francois Girard
Eddy Yelovina
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Salomon SAS
Original Assignee
Salomon SAS
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Publication date
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Publication of EP1702658A1 publication Critical patent/EP1702658A1/de
Application granted granted Critical
Publication of EP1702658B1 publication Critical patent/EP1702658B1/de
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63CSKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
    • A63C9/00Ski bindings
    • A63C9/20Non-self-releasing bindings with special sole edge holders instead of toe-straps

Definitions

  • the invention relates to the field of fastening devices of an article of footwear on a gliding machine.
  • the invention will be more particularly described in its application to a device for attaching a shoe to a gliding device (skiing, snowboarding, snowshoeing, ice skating or roller skating, etc ...), even more particularly in its application to a ski boot binding device on the ski corresponding.
  • a gliding device skiing, snowboarding, snowshoeing, ice skating or roller skating, etc .
  • such a fastener comprises a locking mechanism intended to cooperate with a connecting member of the footwear, and an opening system manipulable by a user to control the opening of the mechanism.
  • the locking mechanism may be of very varied types, as well as the corresponding connecting member of the footwear.
  • the binding member of the shoe consists of a connecting pin which is intended to be trapped in a jaw.
  • a connecting pin which is intended to be trapped in a jaw.
  • Such a system is for example described in the patent applications FR-2638974 , FR-2645764 , FR-2834473 , FR-2742060 , FR-2856312 , FR-2738158 , EP-551 899 , EP-904 139 .
  • the binding member of the shoe consists of two parts: two parallel connecting axes ( EP-679 415 , FR-2853253 , FR-2843310 , WO-01/93963 ), a forward stop is a rear hooking spout ( FR-2776200 , FR-2733159 , EP-1100601 , DE-10.2004.018.296 ).
  • All these devices comprise a locking mechanism, which is provided with at least one moving part which is intended to cooperate with the binding member of the boot.
  • This movable piece can be moved between an active position, in which it ensures the locking between the connecting member and the fixing device, and an unlocking position in which it allows the connecting member, and therefore also to the shoe, to be separated from the fixing device.
  • Some of the known fastening devices are of the "step-in” type, (also called semi-automatic or automatically locking), insofar as they allow the locking of the connecting member on the fixing device to be done without other intervention of the user than to approach the connecting member of the fixing device, and that to exert a certain effort to cause locking. In most cases, it is the interaction of the connecting member (or another part of the shoe), with a corresponding element of the fixing device that causes this automatic locking. In some devices, it is necessary to bring the attachment into an open state (by a separate operation, usually manual), the interaction causing only the closing of the locking mechanism (cf, for example EP-1100601 ). In other devices, the mechanism of locking is in a closed state and the interaction causes the opening of the mechanism which then closes automatically, usually under the effect of an elastic member (cf, for example FR-2645764 ).
  • the user In other devices, the user must perform a specific operation of opening and closing for both the boot and the heaving.
  • the locking mechanisms include an opening system that allows the user to control the mechanism to its open (or unlocked) state, in order to allow the user to release, at will and without excessive stress, the footwear article of the fastening device.
  • the opening system (usually a lever, a zipper or a button) must thus be brought from a first position to a second position to cause the unlocking.
  • the user manipulates this system either by hand or with the aid of an accessory, for example a ski pole.
  • this manipulation can be a two-step manipulation, with a pre-opening (consisting for example of causing the lifting of a gripping member), then an actual opening (by manipulating the previously updated gripping member ).
  • the open position is always the same and the handling direction of the opening system to cause the unlocking is always the same.
  • the opening systems are not always perfectly ergonomic. Or, they are relatively ergonomic in most situations, but not enough in other situations in which the user is.
  • the object of the invention is to propose a new design of a fixing device whose handling is even easier in all cases.
  • the invention proposes a device for fixing an article of footwear on a sports article, of the type comprising a locking mechanism intended to cooperate with a connecting member of the footwear, and of the type comprising a system aperture manipulable by a user for controlling the opening of the mechanism, characterized in that the opening system is capable of being manipulated, directly or indirectly, indifferently in at least two distinct directions of manipulation to control the opening opening of the mechanism.
  • the opening system comprises at least two distinct control members which can each be manipulated in one of at least two directions of manipulation, thus favoring the possibility of better adapting the geometry of the control member to each of the two modes of manipulation.
  • the opening system comprises a first control member which, when manipulated in a first direction, directly controls the opening of the locking mechanism, and a second control member which, when it is manipulated in a second direction of manipulation, controls the opening of the mechanism via the first control member
  • the opening system may comprise a single control member which is manipulable in the at least two different handling direction, thus favoring simplicity, low cost, and reliable operation of the device.
  • the invention will be described here in its application to fixing devices for cross-country skiing.
  • the first embodiment of a fixing device 10 illustrated on the Figures 1 to 6 comprises a base 12 which is intended to be fixed on a sports article 11, in the occurrence therefore a ski, but that could also be directly integrated in the latter.
  • the base 12 could also be made of several parts, some or none of these parts being optionally integrated in the sport article 11.
  • the device is intended to ensure the attachment of a shoe 14 having two-part connection means.
  • the shoe comprises two connecting bars 16, 18 which are arranged in the sole of the shoe so as to be flush with it below.
  • Link strips 16, 18 of this type are described in the patent applications EP-A-913102 and EP-A-913103 which will be usefully referred to for more details.
  • EP-A-913102 and EP-A-913103 which will be usefully referred to for more details.
  • it is here two cylindrical bars of revolution arranged across a longitudinal groove in the underside of the sole.
  • the front bar 16 is for example located in the vicinity of the front end of the sole and the rear bar 18 is shifted rearwardly by a distance defined to be arranged at or in front of an area of the corresponding shoe to the metatarsophalangeal flexion zone of the user's foot.
  • connection members having another geometry or another configuration, for example non-circular section bars, hooks, nozzles or grooves formed directly in the material of the sole, etc ...
  • the front bar 16 is intended to cooperate, in a manner known per se, with a locking mechanism 19 comprising a mobile jaw 20, hook-shaped, and a transverse edge 22 of the base constituting a fixed jaw, for the rotary locking of the shoe on the article of sport. Once locked in the locking system, the front link 16 can pivot freely inside the jaw, thus providing an articulated attachment of the front end of the shoe.
  • the rear bar 18 is intended to allow the attachment of an elastic return system integrated in a guide edge 24 of the device.
  • an elastic return system is for example described in the document EP-768 103 in the name of the plaintiff. It thus comprises a connecting rod 26 having a hook-shaped front end 28 (intended to hook onto the rear bar 18), and a rear end connected to the base 12 so as to be able to slide longitudinally and pivot around it. a transverse axis.
  • Elastic return means (not visible) tend to return the link 26 to the rest position illustrated in FIG. figure 1 . In this way, when the heel of the boot is raised, by pivoting the boot around its front bar 16, the rod 26, hooked on the rear bar 18, can follow the upward and forward movement of the shoe. rear bar 18, while exerting on it a return force which tends to bring the sole of the shoe towards the upper face of the ski.
  • the invention may also be implemented for devices comprising other elastic return means, for example having, in front of the fixing device, a elastic buffer against which the front end of the shoe bears when its heel lifts.
  • the shoe may then comprise only a link bar.
  • FIGS. 2 to 6 illustrate more particularly the locking mechanism 19 of the front bar 16 of the shoe.
  • the strip 16 of the shoe is illustrated on the figures 3 , 5 and 6 .
  • the principle of operation of the locking mechanism is here perfectly known from the prior art (as for example in the systems marketed by the applicant under the trade name "SNS Profil Auto"), and it is described here only as a indicative, knowing that the invention can be implemented with other types of locking mechanisms.
  • the locking mechanism 19 essentially comprises a carriage 30 which is movable longitudinally between a rear locking position (illustrated in FIG. figure 3 ), and an advanced unlocking position ( Figures 5 and 6 ).
  • the carriage for example made of molded plastic material has an upper hook 32 curved upwardly and rearwardly.
  • the carriage may comprise a metal reinforcement 34 which protects the inner face of the hook 32, which is intended to form a housing for the front bar of the boot. Indeed, when the carriage 30 is in the retracted position, the hook 32 is facing the transverse edge 22 of the base 12 to delimit with it a housing, open transversely at both ends, adapted to receive the bar 16.
  • the bar 16 When the bar 16 is received in the housing and the carriage is in the retracted position, the bar is locked there and can only pivot about its axis. On the contrary, when the carriage 30 is brought to its advanced position, the housing opens upwards, allowing the output of the bar out of the housing, or its introduction into the housing.
  • fasteners 10 to be described are provided with self-locking mechanisms.
  • the locking mechanism comprises a compression spring 36 which is supported on the one hand on the base 12 and on the other hand on the carriage 30 to push the latter to its rear locking position.
  • the hook 32 of the carriage and the transverse edge 22 comprise portions of ramps forming a V-shaped profile. A user can thus engage the front bar 16 of his shoe resting on the ramps of the hook and the edge. transverse of the base and, by simple vertical support, cause, thanks to the ramps, the advance of the hook, against the action of the spring 36.
  • the bar 16 can engage inside the housing, and the spring 36 can cause the carriage 30 to return to its locking position in which the hook 32 prevents the bar can go out of the housing.
  • Such an automatic engagement locking mechanism is advantageous because it allows the locking of the boot on the fastening device without particular intervention of the user, unlike other mechanisms where the locking of the shoe requires one or more manual operations of the user.
  • the fixing device comprises a system that can be manipulated by a user in order to control the opening of the locking mechanism.
  • the opening system that will be described is capable of being manipulated, directly or indirectly, indifferently in at least two distinct directions of manipulation to control the opening of the mechanism.
  • the opening of the locking mechanism requires causing the carriage 30 to move longitudinally forward of its locking rear position to its open forward position.
  • the opening control could require to control other movements of the moving part (translation, rotation or combination of both), and / or the same type of movement but with a different meaning .
  • the opening mechanism is arranged at the front end of the fixing device, and it comprises two separate control members which are each manipulable in one of at least two directions of manipulation.
  • the first control member is a lever 38 which is articulated by its hinge front end on the base 12 about a transverse axis A1.
  • the lever is extended by a gripping pallet 40 which, in its rest position illustrated in FIGS. Figures 2 to 4 , it extends substantially horizontally rearwardly above the base 12.
  • the latter is provided on its lateral faces, recesses 42 which make it very accessible to the user's hand the lateral edges of the gripping pallet 40 of the lever 38.
  • the second control member is a drawer 44 whose rear end is connected to the carriage 30 by a hinge pin 46 of transverse axis A2.
  • the hinge pin 46 makes the slide 44 integral with the carriage 30 in translation.
  • the front end of the slide 44 is connected to the lever 38 by a connecting rod 48 of transverse axis A3.
  • the rod 48 passes through the front end of the slide 44 transversely from one end and has two transverse end portions which are received in slots 50 formed in parallel flanges 52 of the lever 38, which flanges extend vertically and longitudinally under the gripping pallet 40.
  • the front of the drawer 44 is transversely framed by the two flanges 52 and the two lights 50 are inclined at an angle of about 45 degrees forward and downward.
  • the connecting rod 48 thus connects the slide 44 to the lever 38, allowing the two elements to have relative displacements in translation and in rotation.
  • the drawer 44 comprises, in its front part, a head 54 which extends upwardly so as to project outwardly through an opening 56 arranged in the center of the gripping pallet 40 of the lever 38.
  • the user can cause the opening of the locking mechanism by two separate actions.
  • the user can exert on the head 54 of the drawer 44 a substantially vertical pressure from the top to the bottom, for example with the hand or with the end of a ski pole (the use of a stick allowing him to 'open the device without having to bend down).
  • the connecting rod 48 which is connected to the slide 44 will slide in the slots 50 of the lever 38. Indeed, the latter then remains stationary because it is in abutment on the base 12.
  • the connecting rod 48 will cause a transformation of the vertical force exerted by the user in a combined movement of the slide 44 (as in a cam system), this movement being the combination of a translation longitudinal forward and rotation about the axis A2 (anti-clockwise in the figures). Because the slide 44 and the carriage 30 are connected by a pivot connection, the longitudinal translational component of the movement of the slide 44 is directly transmitted to the carriage 30, which is thus controlled to its position before opening. Of course, as soon as the user releases his effort on the head 54 of the drawer 44, the spring 36 returns the slide 44 to its rest position, and, at the same time, the carriage 30 to its locking rear position.
  • the user can grasp the handle pad 40 of the lever 38 and lift it upward, thereby causing the lever to rotate about the axis A1 (counter-clockwise in the figures).
  • the slots 52 of the flanges 54 of the lever 38 drive with them the connecting rod 48 which is integral with the slide 44.
  • the slide 44 is thus driven forward, taking with it the carriage 30 to its position before unlocking.
  • the spring 36 returns the carriage 30 and the slide 44 to their rest position, and the latter brings back, via the connecting rod 48, the lever 38 to its initial position.
  • the opening system can therefore be manipulated in two ways.
  • the first way is a pressure exerted essentially down.
  • the second way is essentially pulling upwards.
  • the user can choose how to control the opening of the mechanism that will be most convenient for him.
  • the slide 44 when it is handled downwards, directly controls the opening of the locking mechanism, and the lever 38, when it is handled upwards, controls the opening of the mechanism. through the drawer 44, so indirectly.
  • the two control members move in different natures movements.
  • the locking mechanism and its opening system share a single elastic return member, in this case the spring 36.
  • the second embodiment of the invention illustrated in Figures 7 to 9 it also comprises two distinct opening control members, but, unlike the first embodiment, these two members are animated, when manipulated by the user, of a movement of the same nature, in the occurrence a rotational movement.
  • the carriage 30 of the locking mechanism comprises a forward extension which terminates in a raised beak 58 having a bearing face 60 substantially vertical and facing rearwardly.
  • the opening system comprises a lever 38 which is articulated on the base 12 about a transverse axis A4.
  • a rocker 62 is articulated on the lever and / or on the base around the same axis A4. It could possibly be articulated on an axis offset from the axis A4.
  • the rocker 62 comprises two substantially perpendicular arms which extend substantially radially from the axis A4.
  • An upper arm 66 extends in a substantially horizontal direction towards the rear and has an upper face 68 on which a user can come to exert a vertical pressure directed downwards, for example with a ski pole.
  • a lower arm 70 extends substantially downwardly and comprises a control finger 72 which bears forwards against the bearing face 60 of the raised beak 58 of the carriage 30.
  • a stop 74 is provided to limit the rotation of the rocker 62 in one of two directions. The stop is carried by the lever 38.
  • the lever 38 When the user grasps the front end of the lever 38 and lifts it upwards (cf. figure 9 ), it causes a rotation of the lever 38 around the axis A4, but it also causes, via the stop 74, the rotation of the rocker 62, which, as seen above, causes the displacement forward of the carriage 30.
  • the lever 38 has a lift pull 76 which facilitates the gripping and manipulation of the lever.
  • this pull tab 76 is optional; it could be replaced by a flexible cord or by a particular geometry of the lever or be omitted, and it is not a control member separate from the lever.
  • the opening system comprises two control members: the rocker 62 which directly controls the opening of the locking mechanism, independently of any displacement of the second control member, the lever 38 which controls the mechanism indirectly via the rocker 62.
  • FIG. 10 to 12 A third embodiment of the invention is illustrated in Figures 10 to 12 , wherein the opening system of the locking mechanism comprises only one control member.
  • the system is identical to the previous one, with the difference that the lever and the rocker are combined in one and the same piece: the rocker 78 which is articulated on the base 12 about the axis A4 and which comprises on the one hand an upper bearing surface 68 arranged behind the axis A4, and on the other hand front gripping means (in this case the pull tab 76) arranged in front of the axis A4, so that, to cause the same rocking movement of the rocker 78, the user can either press down on the rear surface 68 or pull up the front gripping means 76.
  • the rocker rotates about the axis A4 and, by means of a control finger 72, controls a translation towards the front of the carriage 30.
  • the fourth and fifth embodiments of the invention respectively described in Figures 13 to 15 and to Figures 16 to 18 they also comprise a single control member of the opening of the locking mechanism, which is, according to the invention, capable of being handled indifferently in two different directions of manipulation to control the opening of the mechanism.
  • the two manipulation directions correspond to movements of the locking member which are not of the same nature.
  • the control member is a lever 80 which is connected to the base 12 by a connecting rod 82.
  • This link rod 82 of transverse axis A5 is integral with the rear end of the lever. 80 and it is received in a slot 84 of the base 12 (or several parallel lights).
  • the lumen 84 is substantially rectilinear and elongate in the longitudinal direction so that the connection between the lever 80 and the base 12 allows the lever to pivot about the axis A5 and to translate longitudinally.
  • the lever 80 is supported by its front end on an inclined portion 86 of the base.
  • the inclined face 86 is a face facing upwards and forwards, whose profile is thus inclined downwards and forwards.
  • the lever has, for example, a peg or a roll 88 which is in contact with the inclined face 86. Furthermore, the lever 80 has, at its front end, an upper bearing surface 68, on which the user can exert an substantially vertical downward force, and side edges 90 forming gripping means to allow a user to grasp the front end of the lever to lift upwardly. Note therefore that the lever 80 is connected to the base 12 by a connection to at least two degrees of freedom.
  • the lever comprises, at its rear end, an eccentric cam 92 which is arranged around the axis A5 and which is intended to bear against the rear bearing face 60 of the raised beak 58 arranged in front of the trolley 30.
  • This cam 92 has an eccentricity such that, when the user causes the lifting of the lever 80 by pulling its front end upwards, the lever 80 then rotating about the axis A5 of the connecting rod 82, the cam surface 92 pushes the carriage 30 forwards (cf. figure 15 ).
  • the lever 80 can not then translate backward relative to the base 12 because the connecting rod 82 is locked back against the rear end of the light 84. The movement of the lever is then a pure rotation.
  • the pin 88 tends to slide on the inclined face 86 so that it causes (by a camming system effect) a translation towards the before the lever 80.
  • This translation is enabled by the fact that the connecting rod 82 can then translate forward in the light 84.
  • the translation of the lever 80 is accompanied by a slight rotation of the lever around A5 axis of the rod, but it is essentially the overall translation of the lever that it carries with it the carriage 30, through the cam surface 92.
  • the fifth embodiment illustrated in Figures 16 to 18 differs from the previous only in that the rod 82 is in contact with the rear face 60 of the raised beak 58 of the carriage 30, and in that the lever has a rear face forming cam 94 which is intended to bear against face corresponding contact 96 of the base 12.
  • the cam 94 causes, as a function of the lifting angle, a horizontal translation towards the front of the rear end of the lever. This translation is then directly transmitted to the carriage 30 by the connecting rod 82.
  • the movement of the lever here is a combined movement of rotation and translation.
  • the opening system comprises a single control member which is a slider 100 mounted to move in translation in the vertical direction in the base 12.
  • the slider 100 has a central locking position ( figure 19 ) and two low and high opening positions ( Figures 20 and 21 ).
  • the slider 100 is connected to the carriage 30 by a connecting element 102 which is mounted in the base 12 so as to be able to slide only longitudinally.
  • the front end of the connecting element 102 comprises a transverse pin 104 which is received in a slot 106 formed in the slider 100.
  • the light 106 has two branches: an upper branch 106a oriented upwards and forwards, and a lower branch 106b oriented downward and forward.
  • the light 106 thus has a V-shaped profile whose tip is directed longitudinally backwards.
  • the pin 104 of the connecting element is engaged in the light 106 at the intersection of the two branches, at the tip of V.
  • the slider 100 For the handling of the slider 100, for example, it has been provided that it comprises an upper bearing face 68 and a folding pull-piece 76.
  • Each of the embodiments of the invention makes it possible to design a fixing device that is particularly ergonomic in all circumstances.
  • preference is given to the convenience of use, having the ability to better adapt the geometry of the control member to each of the two modes of manipulation.
  • the control member is to be pulled or pushed, for example, it is possible to better specify the control surfaces for, for example, facilitating manual gripping or support with an accessory.
  • control members having lever arm effects adapted to the effort that the user can provide according to the corresponding manipulation direction, in order to control with an equivalent facility the locking mechanism according to the two handling directions.
  • simplicity, low cost, and reliability of operation are preferred.
  • one can thus choose one or the other of the embodiments, or even other embodiments derived from those illustrated or described.

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  • Footwear And Its Accessory, Manufacturing Method And Apparatuses (AREA)
  • Seal Device For Vehicle (AREA)
  • Iron Core Of Rotating Electric Machines (AREA)
  • Pressure Welding/Diffusion-Bonding (AREA)
  • Preparation Of Compounds By Using Micro-Organisms (AREA)
  • Mechanical Control Devices (AREA)
  • Paper (AREA)
  • Basic Packing Technique (AREA)
  • Sheet Holders (AREA)

Claims (18)

  1. Befestigungsvorrichtung eines Anschnallartikels (14) auf einem Gleitgerät (11), vom Typ, welcher einen Sperrmechanismus (19) umfasst, welcher dazu vorgesehen ist, um mit einem Verbindungsorgan (16, 18) des Anschnallmechanismus zusammenzuwirken, und welcher von dem Typ ist, welcher ein durch den Benutzer bedienbares Öffnungssystem mit dem Ziel, die Öffnung des Mechanismus zu steuern, umfasst, dadurch gekennzeichnet, dass das Öffnungssystem direkt oder indirekt, unterschiedslos entlang zumindest zweier verschiedener Bedienungsrichtungen bedienbar ist, um die Öffnung des Mechanismus zu steuern.
  2. Vorrichtung nach Anspruch 1, dadurch gekennzeichnet, dass das Öffnungssystem zumindest zwei verschiedene Steuerorgane umfasst, welche jedes entlang einer der zumindest zwei Bedienungsrichtungen bedienbar sind.
  3. Vorrichtung nach Anspruch 2, dadurch gekennzeichnet, dass das Öffnungssystem ein erstes Steuerorgan, welches entlang einer ersten Bedienungsrichtung bedienbar ist, für welche es direkt die Öffnung des Verriegelungsmechanismus steuert, und ein zweites Steuerungsorgan, welches beweglich entlang einer ersten Bedienungsrichtung ist, für welche es die Öffnung des Mechanismus durch das Zwischenmittel des ersten Steuerungsorgans steuert, umfasst.
  4. Vorrichtung nach irgendeinem der Ansprüche 2 oder 3, dadurch gekennzeichnet, dass die zwei Steuerorgane entlang der Bewegung gleicher Art beweglich sind.
  5. Vorrichtung nach Anspruch 4, dadurch gekennzeichnet, dass das Öffnungssystem einen Hebel (38) und einen Kipper (62) umfasst, welche sich gemäß einer Schwenkbewegung bewegen, dadurch gekennzeichnet, dass der Kipper mit einem beweglichen Teil (58, 60, 30) des Verriegelungsmechanismus verbunden ist, um direkt dessen Öffnung zu steuern, und dadurch gekennzeichnet, dass der Hebel (38) und der Kipper (62) durch einen Anschlag (74) in der Weise verbunden sind, dass ein Schwenken des Hebels ein entsprechendes Schwenken des Kippers verursacht, welcher die Öffnung des Verriegelungsmechanismus steuert.
  6. Vorrichtung nach Anspruch 5, dadurch gekennzeichnet, dass der Kipper (62) unabhängig vom Hebel (38) schwenkt.
  7. Vorrichtung nach einem der Ansprüche 5 oder 6, dadurch gekennzeichnet, dass der Hebel (38) und der Kipper (62) um dieselbe Achse schwenken.
  8. Vorrichtung nach irgendeinem der Ansprüche 2 oder 3, dadurch gekennzeichnet, dass die zwei Steuerorgane beweglich gemäß der Bewegungen von verschiedener Art sind.
  9. Vorrichtung nach Anspruch 8, dadurch gekennzeichnet, dass das Öffnungssystem einen Hebel (38), welcher beweglich zum Schwenken ist, und einen Einschub (44)-Kipper, welcher mit einem beweglichen Teil (30) des Verriegelungsmechanismus verbunden ist, um direkt die Öffnung dessen zu steuern, umfasst, und dadurch gekennzeichnet, dass der Hebel (38) und der Kipper (62) in der Weise verbunden (48) sind, dass ein Schwenken des Hebels eine entsprechende Bewegung des Kippers verursacht, wobei diese Bewegung zumindest eine Translationskomponente umfasst, welche die Öffnung des Verriegelungsmechanismus verursacht.
  10. Vorrichtung nach Anspruch 1, dadurch gekennzeichnet, dass das Öffnungssystem ein einzigartiges Steuerorgan (78, 80) umfasst, welches entlang der zumindest zwei verschiedenen Bedienungsrichtungen bedienbar ist.
  11. Vorrichtung nach Anspruch 10, dadurch gekennzeichnet, dass die beiden Bedienungsrichtungen deutlich gegeneinander gerichtet sind.
  12. Vorrichtung nach einem der Ansprüche 10 oder 11, dadurch gekennzeichnet, dass die beiden Bedienungsrichtungen Bewegungen des Steuerungsorgans (78) gleicher Art entsprechen.
  13. Vorrichtung nach einem der Ansprüche 10 bis 12, dadurch gekennzeichnet, dass das Steuerorgan ein Kipper (78) ist, welcher sich gemäß einer Schwenkbewegung um seine Achse (A4) bewegt, und welcher zumindest zwei Bedienoberflächen (68, 76) umfasst, welche beiderseits der Schwenkachse (A4) angeordnet sind.
  14. Vorrichtung nach einem der Ansprüche 10 oder 11, dadurch gekennzeichnet, dass die beiden Bedienungsrichtungen Bewegungen des Steuerorgans (80) verschiedener Art entsprechen.
  15. Vorrichtung nach Anspruch 14, dadurch gekennzeichnet, dass das Steuerorgan (80) mit einem Sockel der Vorrichtung durch eine Verbindung mit zumindest zwei Freiheitsgraden verbunden ist.
  16. Vorrichtung nach irgendeinem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass das Steuerorgan (80) zumindest ein System von Nockenart (48, 50, 86, 88, 92, 60, 94, 96) umfasst, um eine Bewegung des Steuerorgans in eine Öffnungsbewegung des Verriegelungsmechanismus umzuwandeln.
  17. Vorrichtung nach irgendeinem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der Verriegelungsmechanismus vom Typ automatischer Verriegelung ist.
  18. Vorrichtung nach Anspruch 17, dadurch gekennzeichnet, dass der Verriegelungsmechanismus elastische Rückstellmittel (36) umfasst, welche auch auf das Öffnungssystem wirken.
EP06004072A 2005-03-07 2006-03-02 Bindung mit einem doppelten Betätigungssystem Not-in-force EP1702658B1 (de)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
FR0502235A FR2882658B1 (fr) 2005-03-07 2005-03-07 Dispositif de fixation a double commande

Publications (2)

Publication Number Publication Date
EP1702658A1 EP1702658A1 (de) 2006-09-20
EP1702658B1 true EP1702658B1 (de) 2008-11-26

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EP06004072A Not-in-force EP1702658B1 (de) 2005-03-07 2006-03-02 Bindung mit einem doppelten Betätigungssystem

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US (1) US7832754B2 (de)
EP (1) EP1702658B1 (de)
AT (1) ATE415189T1 (de)
DE (1) DE602006003786D1 (de)
FR (1) FR2882658B1 (de)
NO (1) NO330832B1 (de)
RU (1) RU2394621C2 (de)

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US9604122B2 (en) 2015-04-27 2017-03-28 Bryce M. Kloster Splitboard joining device
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RU197293U1 (ru) * 2020-02-03 2020-04-20 Роман Владимирович Шамов Фиксирующий механизм с перекрытием паза, в котором в рабочем состоянии располагается шпилька ботинка
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WO2022265531A1 (ru) * 2021-06-18 2022-12-22 Дмитрий Михайлович ЛИ Крепление для сноуборда с экстренным расстегиванием
CN113519964B (zh) * 2021-07-20 2022-10-11 中国人民解放军陆军军医大学第二附属医院 一种基于神经网络信号的跌倒预警***
USD1008611S1 (en) 2022-03-23 2023-12-26 Mountain Origins Design LLC Footwear
USD1007826S1 (en) 2022-03-23 2023-12-19 Mountain Origins Design LLC Footwear
USD1007825S1 (en) 2022-03-23 2023-12-19 Mountain Origins Design LLC Footwear
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Also Published As

Publication number Publication date
EP1702658A1 (de) 2006-09-20
ATE415189T1 (de) 2008-12-15
US7832754B2 (en) 2010-11-16
RU2006106878A (ru) 2007-09-27
US20060197312A1 (en) 2006-09-07
DE602006003786D1 (de) 2009-01-08
NO20061096L (no) 2006-09-07
FR2882658A1 (fr) 2006-09-08
RU2394621C2 (ru) 2010-07-20
FR2882658B1 (fr) 2007-05-04
NO330832B1 (no) 2011-07-25

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