EP2652228A1 - Kombinierter mechanischer und elektronischer schlüssel für ein kraftfahrzeug mit einem mitnehmer, der als flügel wirkt - Google Patents
Kombinierter mechanischer und elektronischer schlüssel für ein kraftfahrzeug mit einem mitnehmer, der als flügel wirktInfo
- Publication number
- EP2652228A1 EP2652228A1 EP11788514.5A EP11788514A EP2652228A1 EP 2652228 A1 EP2652228 A1 EP 2652228A1 EP 11788514 A EP11788514 A EP 11788514A EP 2652228 A1 EP2652228 A1 EP 2652228A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- grooves
- key
- wings
- driver
- key part
- 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
-
- E—FIXED CONSTRUCTIONS
- E05—LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
- E05B—LOCKS; ACCESSORIES THEREFOR; HANDCUFFS
- E05B19/00—Keys; Accessories therefor
- E05B19/04—Construction of the bow or head of the key; Attaching the bow to the shank
- E05B19/043—Construction of the bow or head of the key; Attaching the bow to the shank the shank being pivotably mounted on the bow, e.g. for storage
-
- G—PHYSICS
- G07—CHECKING-DEVICES
- G07C—TIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
- G07C9/00—Individual registration on entry or exit
- G07C9/00174—Electronically operated locks; Circuits therefor; Nonmechanical keys therefor, e.g. passive or active electrical keys or other data carriers without mechanical keys
- G07C9/00944—Details of construction or manufacture
- G07C2009/00952—Electronic keys comprising a mechanical key within their housing, e.g. extractable or retractable emergency key
Definitions
- the invention relates to a combined mechanical and electronic key for a motor vehicle, having a housing which has at the edge region a running with a plurality of grooves backdrop, arranged in the housing electronics, a key part having a bearing point which is rotatable about an axis is mounted along the gate, an activation element, which is accommodated in the bearing and has at least two radially projecting wings and a radially projecting driver, wherein the activation element between a passive and in an active position is movable, the key part between a rest position and a use position is movable, in the rest position and in the position of use of the key part, in which the activation element occupies the passive position, each wing is in each case a groove, and during movement between the rest position and the use position, wherein the activation element occupies the active position, the wings are detached from the grooves and the driver engages in a contour of the bearing.
- the object of the present invention is to avoid the above-mentioned disadvantages, in particular to provide a combined mechanical and electronic key, in which larger forces that can act on the key part can be better absorbed by the housing.
- the driver is designed such that in the passive position of the activation element, the wings are engaged together with the driver in grooves of the link, whereby high forces from the key part to the housing can be accommodated.
- the essential essence of the invention is that in the passive position of the activation element and thus in the rest position and the position of use of the key part at least three elements of the activation element, that is, at least two wings and the driver are in grooves of the backdrop, so a large number of Contact surfaces are created on the grooves with the wings and the driver. If now an improper use of the key part by the user, so that increased forces on the key part and the contour of the bearing act, these increased loads on the contact surfaces are reliably absorbed into the bearing without material destruction of the housing arise.
- the driver acts according to the invention in the passive position of the activation element as a wing, so that engage at least three wings in the rest position and in the position of use of the key part in the respective grooves of the backdrop.
- the driver and the wings may each have a depth which is aligned parallel to the direction of the axis of rotation of the key part, in particular, the depth of the driver is greater than the depth of the wings.
- the wings of the activation element and the driver of the activation element may have different lengths (L) and different widths (B) to each other.
- This geometric design of the wings and the driver causes in the position of use and / or the rest position of the key part a larger contact surface between the wings, the driver and the scenes, in particular the grooves is created, whereby larger forces are absorbed by the backdrop of the housing may be introduced via the unfolded key part in the ID transmitter or in the combined key.
- About the geometric variation of the wings and the driver also the angle of rotation of the key part can be determined.
- the rotation angle ⁇ between the rest position and the use position a is> 180 ° and / or the rotation angle ⁇ between the rest position and the use position a ⁇ 180 °, in particular at a rotation angle of a> 180 °, the activation element has two wings and / or at a rotational angle of a ⁇ 180 °, the activation element has three wings.
- the grooves are composed at least of a first pair of grooves and a second pair of grooves, wherein in the rest position of the key part, the wings are at least partially engaged in the first pair of grooves and in the position of use of the key part, the wings at least partially engaged in the second pair of grooves, in particular, the gate is designed such that the second pair of grooves is aligned with the inner region of the housing.
- at least one wing and a driver in the position of use of the key part in the second pair of grooves are engaged.
- the main advantage of this embodiment is that in the position of use of the key part two wings or a wing and a driver are received in the inner second pair of grooves.
- the gate webs between the grooves which serve as sliding surfaces for the wings during the movement of the key part, wherein at least one groove of the first pair of grooves separates two webs from each other and that at least one groove of the second pair of grooves separates two webs from each other. It is conceivable that the webs extend in a circle around the axis of rotation of the key part and / or that the webs are designed as circular arc-shaped segments which run together about the axis of rotation of the key part.
- the activation element is mounted axially displaceable to the axis of rotation of the key part in the bearing.
- the activation element is advantageously an externally accessible button, pushbutton, etc., which the user can actuate to effect movement of the key part between the rest position and the use position.
- the wings move out of the detent position of the grooves, so that a movement of the key part about the axis of rotation is possible.
- the activation element can have two spaced wings and a driver, wherein the gate is designed with two further grooves for the driver, so that the link has a total of at least six grooves, in particular in the first and the second pair of grooves only the wings in dependence engage from the position of the key part and engages in the two further grooves only the driver in response to the position of the key part.
- the activation element has three spaced apart wings and a driver, so that the link has a total of at least four grooves, in particular in three grooves, the wings and engage in a groove of the driver, depending on the position of the key part in a groove of the backdrop on the one hand a wing and on the other a catch engages snap.
- four elements ie three wings and a dog, act in four grooves when the rest position and / or the position of use of the key part is reached.
- the electronics is completed by a wall from the outside of the key, at the same time the wall separates the backdrop of the electronics.
- the electronics may for example have transmitting and / or receiving units, which provide for a data communication between the combined key - also called ID transmitter - and the motor vehicle, in particular its locking device and / or central locking device.
- a code preferably via electromagnetic waves are exchanged, so that after positive evaluation of the code, for example, the doors, the trunk lid of the motor vehicle etc. remote controlled unlocked and / or locked and other functions can be triggered.
- the wall provides adequate protection.
- the housing consists of at least two housing circuits, which are brought to each other and at the same time seal the electronics sealingly and at the same time provide a corresponding hold of the key part at the bearing point.
- the housing has at least one probe element in order to start data communication between the ID transmitter and the motor vehicle by actuation of the probe element and to trigger corresponding functions.
- the bearing is spaced from the wall which encapsulates the electronics.
- the key part can be reliably moved at the bearing between its two positions, being ensured in each position of the key part that the electronics are protected from the outside.
- the wings and / or a wing and the driver in the position of use of the key part facing the wall, in particular the driver or a wing is directed to the outside of the key part.
- the protective wall is spaced from the bearing point, wherein the wall between the gate of the housing and the inner region of the housing is arranged.
- the housing can absorb larger forces from the key part, since the wings are directed in the position of use of the key part to the interior of the housing and thus to the protective wall. Since in this position, the wings are locked within the second pair of grooves, the housing provides a large mass of material against which the wings can be supported without material damage to the housing can arise.
- the contour of the bearing point has at least two levels, wherein a first level has a recess in which the driver is received during the movement of the key part between its positions.
- the activation element can exert a stroke within the bearing to move between the passive and the active position.
- the driver is located in the recess of the first level when the activation element is in its active position.
- the activation element In the active position, the activation element is at the same time detached with its wings and / or spaced from the backdrop of the housing, so that a corresponding rotational movement of the key part with its bearing point about the axis is possible.
- the vanes also rotate about the axis during movement of the key part, with the follower held firmly in the recess of the first plane.
- the recess of the bearing is designed such that in the rest position and in the position of use of the driver is also held in the recess.
- the contour of the bearing point may have a second plane, in which two recesses are provided, in which the wings are in the rest position and the position of use of the key part.
- the key part In the passive position of the activation element, the key part is either in the rest position or in the position of use.
- the second level may be above or below the lie first level within the bearing of the key part.
- Each wing is in the passive position of the activation element in each case a recess of the contour of the bearing and is held there latching and / or form-fitting, wherein at the same time each wing is within a groove of the backdrop of the housing.
- the activation element preferably exerts a linear lifting movement between its passive and its active position, wherein the wings and the driver between the first and the second plane to move and occupy the corresponding position within the contour of the bearing.
- the activation element may have a cylindrical main body whose lateral surface has the wings and the driver, which extend in particular in a star shape from the lateral surface.
- the activation element is spring-loaded, in particular that the activation element is designed like a sleeve and has a cavity in which a spring element is arranged, which acts on the activation element.
- the spring element is a spiral spring, which exerts a force on the activation element in the rest position of the key part in the direction of the axis and at the same time exerts a torque on the activation element. If the user actuates the activation element, the activation element exerts a lifting movement within the bearing of the key part. The wings and the driver leave the grooves of the backdrop and thus cancel the locking position. At the same time, the driver moves into the recess of the bearing of the key part.
- the driver is in each position of the key part in the recess of the bearing.
- the user For a corresponding lifting movement of the activation element can be exercised, the user must exert a greater force on the activation element, as the force exerted by the spring element in the direction of the axis of rotation of the key part on the activation element. Is the activation element outside the detent position to the backdrop of the housing, that is, the wings and the driver of the activation element are detached from each groove of the backdrop, causes the torque exerted by the spring element on the activation element, a movement of the key part from its rest position the Use position.
- an "automatic" unfolding of the key part to the position of use can be effected in a simple manner.
- the activation element must be re-actuated and at the same time a manual force directed to the key part
- the spring element advantageously exerts a corresponding force in the direction of the axis of rotation on the activating element
- the projection-like vanes and the driver slide on sliding surfaces which are to be found between the pairs of grooves of the link are, from, until the wings are arrived at and / or above the grooves, so that the spring presses the activating element with its wings and the driver in the grooves on their pressing force, whereby the latching connection is restored.
- the bearing point may comprise a guide cam which extends in a recess extending around the axis of rotation of the key part.
- This guide cam can have the function within the overall construction that a reliable rotational movement of the key part is ensured about its axis of rotation.
- the around the axis of rotation of the key part extending recess in which the guide cam moves during the movement of the key part, is arranged in the housing spaced from the backdrop.
- the recess may have a first and / or a second stop against which the guide cam of the bearing can drive.
- the housing may consist of two housing shells and / or housing halves with a sealing element, wherein in particular the housing with the sealing element may be a 2K injection-molded part.
- the sealing element may be positively and / or non-positively and / or materially secured to one of the housing shells and / or the protective wall.
- the housing and / or the scenery with their sliding surfaces can be made of a glass fiber reinforced polyamide.
- the material of the housing and / or the scenery may comprise glass fibers and / or carbon fibers and / or aramid fibers.
- the key part and the bearing point can in a further embodiment of the invention of a metallic material exist, in an advantageous embodiment of the invention, the bearing point and the key part form a common component, in particular a monolithic component.
- the contour of the bearing with the two recesses for the wings and the recess for the driver can form a common component with the key part.
- the housing and / or a housing half with the link and / or the wall, including the pairs of grooves form a material-uniform component, in particular of plastic.
- FIG. 2 shows the combined key according to FIG. 1, wherein the key part is in the rest position
- FIG. 3 shows a further simplified representation of the combined key according to FIG. 1,
- FIG. 4 shows a further simplified representation of the combined key according to FIG. 2, FIG.
- FIG. 6 shows another embodiment of a combined key, wherein the key part is in the position of use
- FIG. 7 shows the combined key according to FIG. 6, the key part being in the rest position
- FIG. Fig. 8 is a further simplified representation of the combined key according to Figure 6 and
- FIG. 9 shows a further simplified representation of the combined key according to FIG. 7.
- FIGS. 1 to 9 show two exemplary embodiments of a combined mechanical and electronic key 1-referred to below as a combined key-that has a key part 20 that can be moved between a rest position 4 and a use position 5.
- the combined key 1 which can also be referred to as an ID transmitter, comprises a housing 10 which has a link 13 at its edge region 11.
- the gate 13 includes a plurality of grooves 12 which lie in a plane. In the exemplary embodiment according to FIGS. 6 to 9, four grooves 12 are provided, between which sliding surfaces 24 run. In the exemplary embodiment according to FIGS. 1 to 4, six grooves 12 are made in the slot 13.
- the housing 10 which may for example consist of two superimposed housing shells or housing halves 10a, 10b, not explicitly shown electronics arranged.
- This electronics serves to create a data communication between the motor vehicle 7 and the key 1.
- the electronics are sealed within the housing 10 and thus reliably encapsulated, so that no moisture, dirt, particles, etc. can get from the outside area 6 into the area of the electronics.
- the bearing 30 has a contour 35 which is composed of two planes 21, 22. In the first plane 21, a recess 36 is provided and in the second plane 22, which lies below the first plane 21, two recesses 37 are formed.
- the contour 35 of the bearing 30 has a central opening in which an activation element 32 is inserted. This activation element 32 is mounted axially displaceable below the central opening to the axis of rotation 31 of the key part 20. The means that the activation element 32 in the direction of the drawing plane within the bearing 30 can perform a lifting movement, which will be discussed below.
- the bearing 30 has a contour 35 which is likewise composed of two planes 21, 22.
- first plane 21 is a recess 36 and in the second plane 22, which is below the first plane 21, three recesses 37 are formed.
- the contour 35 of the bearing 30 has a central opening in which an activation element 32 is inserted.
- This activation element 32 is mounted axially displaceable below the central opening to the axis of rotation 31 of the key part 20. This means that the activation element 32 -as in the exemplary embodiment according to FIGS. 1 to 4 -can execute a lifting movement in the direction of the drawing plane within the bearing 30.
- the activation element 32 is thus movably received in the bearing 30 and, in the first exemplary embodiment according to FIGS. 1 to 4, has radially protruding wings 33 which are located in the recesses 37 of the bearing 30. Furthermore, the activation element 32 has a radially protruding driver 34, which is positioned below the recess 36 according to FIGS. 1 and 2 and thus is not located within the recess 36 of the bearing 30.
- the three protruding wings 33 are located within the recesses 37 of the bearing 30.
- the activating element 32 has a radially projecting driver 34, which is positioned below the recess 36 and thus not within the recess 36 the bearing 30 is located.
- the wings 33 according to FIGS. 3 and 4 as well as FIGS. 8 and 9, depending on the position 4, 5 of the key part 20, engage in the grooves 12 of the guide 13.
- Fig. 3 the position of use 5 of the key part 20 is shown.
- the grooves 12 are composed according to the embodiment of a first pair of grooves 12a and a second pair of grooves 12b.
- the pairs of grooves 12a, 12b are below the bearing 30 of FIG. 1 and FIG. 2.
- the driver 34 engages in a further groove 12c of the link 13.
- the groove 12c is located between the grooves 12 of the first pair of grooves 12a.
- the wings 33 and the driver 34 in the second pair of grooves 12b and the groove 12c are engaged, so that a movement of the key member 20 in the rest position 4 shown in FIG. 2 and FIG. 4 is blocked. Since the second pair of grooves 12b is aligned with the inner region 14 of the housing 10, high forces can be absorbed starting from the key part 20 on the housing 10, in particular in the grooves 12.
- Fig. 6 the position of use 5 of the key part 20 is shown.
- the grooves 12 are composed of four grooves 12a, 12b, in contrast to the embodiment of FIG. 3 and FIG. 4, in which the link 13 has six grooves 12a, 12b, 12c, 12d.
- the pairs of grooves 12a, 12b are below the bearing 30 as in Fig. 3 and Fig. 4.
- the three wings 33 are engaged in the second pair of grooves 12b.
- the further wing 33 in the 6 o'clock position is located in a groove 12 of the first groove pair 12a.
- the driver 34 which is located in the 2 o'clock position, is located in the further groove 12 of the first pair of grooves 12 a. In this position, the three wings 33 and the driver 34 is a movement of the key member 20 in the direction of rest position 4 shown in FIG. 7 and FIG. 9 blocked.
- a wall 15 is provided on the housing 10, which closes the electronics not explicitly shown from the outer region 6 of the key 1. At the same time the wall 15 separates the backdrop 13 of the electronics.
- the activation element 32 has different levels, wherein in the lower level, the wings 33 and the driver 34 are located and up to the upper level, only the driver 34 extends.
- both wings 33 are in the first pair of grooves 12 a, which is aligned with the outer region 6.
- the driver 34 engages in the groove 12d, which lies between the grooves 12 of the second pair of grooves 12b.
- the three wings 33 are in the first pair of grooves 12 a, wherein the third wing (12 o'clock position) in the second pair of grooves 12 b is located.
- the driver 34 extends into the groove 12 of the second groove pair 12b.
- the activation element 32 has a cylindrical base body 38, the lateral surface 40 of which has the wings 33 and the driver 36.
- the wings 33 and the driver 34 extend in a star shape from the lateral surface 40 to the outside.
- On the activation element 32 acts a spring element 23, which is indicated only schematically in the drawings.
- the spring element 23 may be, for example, a spiral spring.
- the activation element 32 has a sleeve-like shape with a cavity 39, in which the spring element 23 is arranged and acts on the activation element 32.
- the spring element 23 acts with a force in the direction of the axis 31 on the activation element 32 when the key part 20 is in the rest position 4 or 5 in the position of use. At the same time, the spring element 23 exerts a torque on the activation element 32 when the key part 20 is in the use position 5 and / or in the rest position 4.
- the activation element 32 serves as a kind of push button to be actuated by the user when it is desired to move the key part 20 from the rest position 4 into the use position 5 about the axis 31. Via a corresponding actuation on the activation element 32 in the direction of the axis 31, the wings 33 and the driver are lifted out of the grooves 12, at the same time the driver 34 moves into the recess 36 of the bearing 30. During this lifting movement of the activation element 32, the wings 33 move within the recesses 37 of the bearing 30.
- the activation element 32 When the activation element 32 is actuated by the user, it is from its passive position 2, wherein the wings 33 and the driver 34 are within the grooves 12th are moved to the active position 3, in which the driver 34 is located in the recess 36 of the bearing 30 itself.
- the wings 33 have left the grooves 12
- the torque acting on the activating element 32 caused by the spring element 23 causes the activating element 32 to be pivoted about the axis 31 in the counterclockwise direction.
- the key part 20 rotates from its rest position 4 according to FIG. 4 and FIG. 9 into its position of use 5, which is shown in FIG. 3 and FIG. 8.
- the wings 33 and the Driver 34 along the sliding surfaces 24 of the contour 35 from.
- the force acting by the spring element 23 spring force acting in the direction of the axis 31 causes the activation element 32nd Moves back to the passive position 2 via a lifting movement.
- the spring element 23 presses the wings 33 and the driver 34, the grooves 12 in the plane, whereby a latching connection of the bearing 30 is formed in the gate 13.
- the recess 36 and / or the driver 34 may be designed so that in each position 2, 3 of the activation element 32 of the driver 34 is located in the recess 36.
- the activation element 32 leaves again via a lifting movement its passive position 2 in the direction of active position 3, in which the wings 33 and the driver 34, the second groove pair 12b and the groove 12c (FIG. 3) or the second pair of grooves 12b and the first pair of grooves 12a Leave (Fig. 8) and simultaneously moves the driver 34 in the AufEnglishung 36 of the bearing 30.
- FIG. 3 and FIG. 3 show a lifting movement its passive position 2 in the direction of active position 3, in which the wings 33 and the driver 34, the second groove pair 12b and the groove 12c (FIG. 3) or the second pair of grooves 12b and the first pair of grooves 12a Leave (Fig. 8) and simultaneously moves the driver 34 in the AufEnglishung 36 of the bearing 30.
- the spring element 23 exerts a counterclockwise torque on the activation element 32, it is necessary that the user exerts a corresponding force (greater than the counteracting torque) on the key part 20, so that this from the Use position 5 is pivoted in the direction of rest position 4 about the axis 31.
- the wings 33 and the driver 34 move on the sliding surfaces 24 until the wings 33 and the driver 34 are above the corresponding grooves 12.
- the spring force acting on the activation element 32 in the direction of the axis 31 ensures that the activation element 32 with the wings 33 is pressed into the grooves 12 according to FIGS. 4 and 9 in a latching manner.
- FIGS. 1 to 9 schematically show a guide cam 25 which extends in a recess which extends around the rotation axis 31 of the key part 20 and which is not explicitly shown, of the housing 10.
- the guide cam 25 causes the key member 20 can exert a satisfactory rotational movement about the axis 31.
- the guide cam 25 can move in the not explicitly illustrated recess against a first and / or a second stop, whereby the use position 5 and the rest position 4 of the key part 20 is defined.
- the wings 33 and the driver 34 may have a different width B and / or different lengths L to each other, so that in a larger contact surface between the wings 33, the driver 34 and the grooves 12 is formed. As a result, the link 13 and the housing 10 receive larger forces starting from the key part 20.
- the driver 34 is designed such that engage in the passive position 2 of the activation element 32, the wings 33 together with the driver 34 in all grooves 12 of the link 13, whereby high forces from the key part 20 the housing 10 can be accommodated.
- the driver 34 and the wings 33 may have a depth T, which is aligned parallel to the direction of the axis of rotation 31 of the key part 20.
- the link 13 also has webs 24 which extend between the grooves 12. The webs 24 are sliding surfaces 24 for the wings 33 and the driver 34 during the movement of the key part 20.
- the grooves 12a, 12b, 12c, 12d separate two webs 24 from each other.
- the webs 24 are circular segments which run together about the axis of rotation 31 of the key part 20.
- the link 13 has six grooves 12a, 12b, 12c, 12d, wherein the first 12a and the second pair of grooves 12b engage only the wings 33 in dependence on the position 4, 5 of the key part 20 leaves and in the two further grooves 12c, 12d only the driver 34 in response to the position 4, 5 of the key part 20 engages.
- the slotted link 13 has four grooves 12, wherein in three grooves 12 a, 12 b the wings 33 and in a groove 12 a, 12 b of the driver 34 engages.
- 5 of the key part 20 engages in a groove 12a, 12b of the gate 13 on the one hand a wing 33 and on the other hand, a driver 34 latching a.
Landscapes
- Lock And Its Accessories (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE201010061333 DE102010061333A1 (de) | 2010-12-17 | 2010-12-17 | Kombinierter mechanischer und elektronischer Schlüssel für ein Kraftfahrzeug mit einem Mitnehmer, der als Flügel wirkt |
PCT/EP2011/071352 WO2012079981A1 (de) | 2010-12-17 | 2011-11-30 | Kombinierter mechanischer und elektronischer schlüssel für ein kraftfahrzeug mit einem mitnehmer, der als flügel wirkt |
Publications (2)
Publication Number | Publication Date |
---|---|
EP2652228A1 true EP2652228A1 (de) | 2013-10-23 |
EP2652228B1 EP2652228B1 (de) | 2015-01-07 |
Family
ID=45047828
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP11788514.5A Not-in-force EP2652228B1 (de) | 2010-12-17 | 2011-11-30 | Kombinierter mechanischer und elektronischer schlüssel für ein kraftfahrzeug mit einem mitnehmer, der als flügel wirkt |
Country Status (4)
Country | Link |
---|---|
EP (1) | EP2652228B1 (de) |
CN (1) | CN103380255B (de) |
DE (1) | DE102010061333A1 (de) |
WO (1) | WO2012079981A1 (de) |
Families Citing this family (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110901584B (zh) * | 2019-10-14 | 2021-12-17 | 浙江合众新能源汽车有限公司 | 一种智能peps陀螺钥匙 |
Family Cites Families (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2004353404A (ja) * | 2003-05-30 | 2004-12-16 | Denso Corp | 電子キーシステムの携帯機 |
US8866639B2 (en) * | 2006-07-13 | 2014-10-21 | Volkswagen Ag | Key unit for a lock system of a vehicle |
DE102006036503B4 (de) | 2006-08-04 | 2015-09-17 | Hella Kgaa Hueck & Co. | Kombinierter mechanischer und elektronischer Schlüssel |
ATE430240T1 (de) * | 2006-08-18 | 2009-05-15 | Delphi Tech Inc | Einklappbarer schlüssel |
FR2935419B1 (fr) * | 2008-09-01 | 2010-10-15 | Valeo Securite Habitacle | Dispositif de telecommande a cle escamotable, en particulier de vehicule automobile. |
-
2010
- 2010-12-17 DE DE201010061333 patent/DE102010061333A1/de not_active Ceased
-
2011
- 2011-11-30 CN CN201180067285.5A patent/CN103380255B/zh not_active Expired - Fee Related
- 2011-11-30 WO PCT/EP2011/071352 patent/WO2012079981A1/de active Application Filing
- 2011-11-30 EP EP11788514.5A patent/EP2652228B1/de not_active Not-in-force
Non-Patent Citations (1)
Title |
---|
See references of WO2012079981A1 * |
Also Published As
Publication number | Publication date |
---|---|
CN103380255A (zh) | 2013-10-30 |
CN103380255B (zh) | 2016-01-20 |
DE102010061333A1 (de) | 2012-06-21 |
WO2012079981A1 (de) | 2012-06-21 |
EP2652228B1 (de) | 2015-01-07 |
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