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EP3029226B1 - Unite de verrouillage electrique - Google Patents

Unite de verrouillage electrique Download PDF

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Publication number
EP3029226B1
EP3029226B1 EP15195620.8A EP15195620A EP3029226B1 EP 3029226 B1 EP3029226 B1 EP 3029226B1 EP 15195620 A EP15195620 A EP 15195620A EP 3029226 B1 EP3029226 B1 EP 3029226B1
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EP
European Patent Office
Prior art keywords
locking
locking bolt
electric
recess
bolt
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.)
Active
Application number
EP15195620.8A
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German (de)
English (en)
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EP3029226A1 (fr
Inventor
Harald Czellary
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Individual
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Individual
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Publication of EP3029226A1 publication Critical patent/EP3029226A1/fr
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Publication of EP3029226B1 publication Critical patent/EP3029226B1/fr
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Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B47/00Operating or controlling locks or other fastening devices by electric or magnetic means
    • E05B47/02Movement of the bolt by electromagnetic means; Adaptation of locks, latches, or parts thereof, for movement of the bolt by electromagnetic means
    • E05B47/026Movement of the bolt by electromagnetic means; Adaptation of locks, latches, or parts thereof, for movement of the bolt by electromagnetic means the bolt moving rectilinearly
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B47/00Operating or controlling locks or other fastening devices by electric or magnetic means
    • E05B47/0001Operating or controlling locks or other fastening devices by electric or magnetic means with electric actuators; Constructional features thereof
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B63/00Locks or fastenings with special structural characteristics
    • E05B63/12Locks or fastenings with special structural characteristics with means carried by the bolt for interlocking with the keeper
    • E05B63/122Locks or fastenings with special structural characteristics with means carried by the bolt for interlocking with the keeper with transverse, i.e. vertically movable bolt or dropbolt
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B47/00Operating or controlling locks or other fastening devices by electric or magnetic means
    • E05B47/0001Operating or controlling locks or other fastening devices by electric or magnetic means with electric actuators; Constructional features thereof
    • E05B2047/0014Constructional features of actuators or power transmissions therefor
    • E05B2047/0018Details of actuator transmissions
    • E05B2047/0024Cams
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B47/00Operating or controlling locks or other fastening devices by electric or magnetic means
    • E05B47/0001Operating or controlling locks or other fastening devices by electric or magnetic means with electric actuators; Constructional features thereof
    • E05B47/0012Operating or controlling locks or other fastening devices by electric or magnetic means with electric actuators; Constructional features thereof with rotary electromotors

Definitions

  • the present invention relates to an electric locking unit according to the preamble of claim 1 and a cabinet according to claim 13.
  • Various devices are known from the prior art, lock the doors of cabinets and release for opening.
  • mechanical locks or electrically operated locks are known.
  • Disadvantage of the known devices is that the motor-operated electric locks and locking units of the prior art in the de-energized state block the lock or the lock and the door of a cabinet can not be closed. This leads in particular to jewelery cabinets to an increased security risk and facilitates burglars and unauthorized persons access to the stored in the cabinets valuables.
  • the locking pin has a tapered to the closing part bevel
  • the electric locking unit has an engaging the locking pin spring, wherein the locking pin can be pressed or pulled by the spring in the recess of the locking bolt and wherein upon insertion of the closing part in the displacement path of the locking bolt, the bevel of the locking bolt by the closing member is pressurizable and the locking pin against the force of the spring in the open state is displaced.
  • the closing part can also be held in the open state in the displacement of the locking bolt when the electric locking unit comprises a magnet, wherein the magnet is arranged on the locking pin and wherein the closing part consists of a magnetic or ferromagnetic material and by the magnet in the open state of Locking bolt in the closed state, in particular in the displacement of the locking pin, is durable.
  • a preferred embodiment of the invention is provided when the crank disc is arranged eccentrically on the shaft of the electric motor.
  • the locking bolt can be easily adjusted when the cam track is formed as a recess, in particular as a closed groove or groove track, in the link disk, wherein the cam track in particular has an elliptical shape.
  • a preferred embodiment of the invention is provided in that the curved path has two points (A, B), which preferably have the greatest distance to one another on the curved path, wherein the extension and thus the locking bolt can be adjusted linearly and brought into the three states along the curved path , wherein when covering the extension with one of the points (A, B) of the cam track of the locking pin is in the closed state and, preferably maximally, protrudes into the recess of the closing part, wherein when covering the extension with the other of the Points (A, B) of the locking pin is in the open state and out of the recess of the closing part, preferably maximum, is extended.
  • the electric locking unit can be particularly easily brought into the free state when the cam track of the link plate in the direction of the open position of the locking pin has a freewheel recess, wherein the freewheel recess between the two points (A, B) and in a third Point (C) protrudes into the curved path, wherein the extension of the locking bolt in the free state with the third point (C) is brought into coincidence and the freewheel recess along the axis of the locking bolt extends and wherein the extension in the freewheel recess along the axis of the locking bolt with the locking pin in a displacement of the locking pin is mitverschiebbar.
  • the third point (C) is adjustable in the free state in the displacement of the extension upon rotation of the link plate.
  • the electric locking unit comprises a switch, wherein the switch in the free state upon movement of the locking bolt in the direction of the open state is switchable, and wherein the locking pin upon actuation of the switch by the drive in the closed state is slidable or adjustable.
  • a rotation of the locking bolt can be easily prevented if the locking pin has an anti-rotation device to prevent the rotation of the locking bolt about its axis, wherein the rotation is designed in particular as a guided in a guide pin.
  • a preferred embodiment provides that the closing part is designed as an L-shaped or T-shaped profile.
  • the cabinet at least one door and an inner space bounded by the door , wherein the cabinet has an electric locking unit according to one of claims 1 to 12.
  • Fig. 1 shows an exploded view of an embodiment of the inventive electric locking unit 10 for locking cabinets, such as jewelery cabinets, in a perspective view and Fig. 1a a perspective view of the electric locking unit 10.
  • the electric locking unit 10 includes a housing 22 and a closing part 3, which is formed in this embodiment as an L-shaped profile part.
  • the closing part 3 has at its short end a centrally arranged recess 5.
  • the housing 22 is cuboid and has a rectangular closing recess 23 on one of its long sides.
  • the housing 22 is further penetrated by an inserted on a narrow side through hole 24.
  • the through hole 24 extends from this narrow side of the housing 22 to the closing recess 23 and opens vertically into the closing recess 23.
  • a cylindrical locking pin 1 is inserted ( Fig. 1a ).
  • the locking pin 1 has an anti-rotation, which prevents rotation of the locking pin 1 in the through hole 24.
  • the rotation in this embodiment has a formed on the locking pin 1 pin 18 and designed as a slot in the housing of the electric locking unit 10 guide 17. The pin 18 protrudes when inserted locking pin 1 in the guide 17 and is guided in this ( Fig. 9, 11, 13th ).
  • the electric locking unit 10 further comprises a drive, that is, in this embodiment, an electric motor 2 and an adjusting unit.
  • the adjusting unit is used as a link disc 4 ( FIGS. 14 to 18 ) and is seated on the shaft 25 of the electric motor 2.
  • the link plate 4 is arranged eccentrically on the shaft 25 of the electric motor 2 and is formed as a circular disc.
  • a curved path 12 is formed ( Fig. 8, 10, 12th and 14 ).
  • the cam track 12 is formed as a recess and forms a closed and elliptical groove path.
  • the curved path 12 is in the Fig. 8, 10, 12th and 14 shown in more detail.
  • the locking pin 1 comprises on the circumference of an extension 11 which projects into the cam groove 12 formed as a recess.
  • the diameter of the extension 11 is slightly smaller than the width of the cam track 12, so that the extension 11 can slide in the cam track 12.
  • the shape of the cam track 12 allows the adjustment of the locking pin 1 by the rotation of the crank plate 4 in three states, ie in an open ( 10 and 11 ), a closed ( 8 and 9 ) and a free state ( FIGS. 12 and 13 ).
  • the extension 11 is thereby along the curved path 23 with three arranged on the curved path 23 points A, B and C ( Fig. 14 ).
  • the points A and B have the greatest distance on the cam track 12 and mark the maximum opening and the maximum closed state of the locking bolt 1 and the electro-Verrieglungsaku 10th
  • the locking pin 1 is in the front position and is fully extended.
  • the locking bolt 1 is introduced into the recess 5 of the closing part 3 and blocks it, so that leakage of the closing part 3 from the electric locking unit 10 is prevented ( Fig. 9 ).
  • the extension 11 of the locking pin 1 is brought into coincidence with the point A.
  • the extension 11 of the locking pin 1 is held by the link plate 4 in the extended position, since the cam track 12 fixes the extension 11 in this position by a support on the wall of the cam track 12 of the crank plate 4.
  • the locking pin 1 is in the open, retracted, rear state and is maximally extended from the recess 5 of the closing part 3.
  • the extension 11 blocks a further displacement of the locking bolt 1 along its axis 21 by the support of the extension 11 on the wall of the cam track 12 of the crank plate 4.
  • the closing part 3 is released and can be discharged from the closing recess 23.
  • the locking pin 1 has a magnet 8, which is arranged on the closing part 3 facing the end of the locking bolt 1.
  • the magnet 8 holds the existing of a magnetic or ferromagnetic material closing part 3 within the closing recess 23 and prevents falling out or accidental leakage of the closing part 3 from the Sch concentratedausströmung 23.
  • the magnet 8 is so matched to the closing part 3, that an automatic opening the closing part 3 is not possible, but by the action of a tensile force on the closing part 3 in the direction of the closing recess 23, For example, by a user, the closing part 3 can be opened, that is, discharged from the closing recess 23 or led out.
  • FIGS. 12 and 13 show sectional views of the electric locking unit 10 in the free state of the extension 11 is with the point C in coverage.
  • the link plate 4 has in this position a along the axis 21 of the latch bolt 1 extending freewheel recess 13.
  • the freewheel recess 13 extends from the point C parallel to the axis 21 of the locking pin 1 in the direction of the pivot point or center of the crank plate 4.
  • the width of the freewheel recess 13 corresponds at least to the width of the cam track 12, so that the extension 11 in the freewheel Can slide recess 13 along and the locking pin 1 can be moved freely.
  • the length of the freewheel recess 13 corresponds at least to the minimum displacement of the locking bolt 1, ie the displacement of the locking bolt along its axis 21 is required to extend completely out of the recess 5 of the closing part 3. In the free state of the locking pin 1 is thus independent of the rotational movement of the crank plate 4 along its axis 21 freely adjustable.
  • the locking pin 1 has at one of its ends a tapered bevel 7.
  • the locking pin 1 is hollow and has a spring opening 26.
  • a spring 6 is inserted in this embodiment, which is supported at one end in the locking bolt 1 and at the other end to a housing cover 27 of the housing 22.
  • the spring 6 is a spiral compression spring.
  • the closing part 3 can be introduced again in the free state of the locking bolt 1, for example, after previous removal from the closing recess 23 in this.
  • the closing part 3 strikes the bevel 7 of the locking bolt 1 and exerts a compressive force on it, as a result of which the locking bolt 1 is moved counter to the spring force of the spring 6 and tensions the spring 6.
  • the extension 11 of the locking pin 1 dips into the freewheel recess 13 and the locking pin 1 gives the closing part 3 the way into the closing recess 23 free.
  • the electric locking unit 10 is thus without actuation of the crank plate 4, for example in a power failure or a manipulation of the lock, closed and can only be reopened again when the control and the adjustment to the open state.
  • the electric locking unit 10 further includes a board 28 and a cable 29 connected to the board 28.
  • the board 28 controls the electric motor 2 and is powered by the cable 29 with power.
  • a switch 14 is disposed in the region close to the locking bolt. The switch 14 is actuated upon displacement of the locking pin 1 in the open state and outputs to the board 28, an electrical signal.
  • the switch 14 is mechanically actuated by a control pin 30 which is fixed to the locking pin 1, as the control pin 30 slides past the switch 14.
  • the electric locking unit 10 is used according to the invention for locking and locking cabinets.
  • the installation of jewelery cabinets has proven to be particularly advantageous.
  • the housing 22 of the electric locking unit 10 is mounted in the interior of the cabinet.
  • the closing part 3 is fixed to the door of the cabinet and bolted to the holes 31 on the door.
  • the closing part 3 is fastened to the door in such a way that when closing the door, the closing part 3 is introduced into the closing recess 23 of the electric locking unit 10 and can be brought into the adjusting path of the locking bolt 1.
  • this has a magnetic detector 32 ( Fig. 1 and 2 ).
  • a magnet is attached in the effective range of the magnetic detector. When the door is closed, the magnetic detector 32 indicates the closed state of the door.
  • FIG. 19 shows a further embodiment of the electric locking unit 10 according to the invention, the closing part 3, instead of the magnet 8 described above, held in this embodiment by a spring 31 in the closing recess 23.
  • the spring 31 is designed as a pair of pliers with two opposing tong arms 35.
  • the pliers arms 35 have spiral shape and consist of a Spring wire.
  • the pliers arms 35 comprise the closing part 3 at the end inserted into the closing recess 23 and clamp it, whereby the closing part 3 is held in the closing recess.
  • Fig. 20 to 25 show a further embodiment of the electric locking unit 10 according to the invention.
  • the locking pin 1 has a recess 33.
  • the recess 33 is arranged on the cam plate 4 facing peripheral portion.
  • the link plate 4 in this embodiment, an eccentric pin 34, which projects into the recess 33 of the locking pin 1.
  • FIGS. 20 and 21 the electric lock unit 10 is shown in the closed state.
  • the eccentric pin 34 lies in the axis of the locking bolt 1 and has the maximum smallest distance to the closing opening 5.
  • the locking pin 1 is pressed by the spring 8 in the recess 5 of the closing part 3, wherein the extension path is limited by the eccentric pin 34 and the size of the recess 33 of the locking bolt 1.
  • FIGS. 22 and 23 shows the electric lock unit 10 in the open state.
  • the link disc is rotated in relation to the closed state by 180 ° about its own axis.
  • the eccentric pin 34 is located at a maximum distance from the recess 5 of the closing part. 3
  • FIGS. 24 and 25 show the electric lock unit 10 in the free state.
  • the link plate 4 is rotated by 90 ° degrees to the open or closed state, the eccentric pin 34 is in an intermediate position.
  • the closing part 3 may also be T-shaped and thus achieve better load distribution.
  • the electric locking unit 10 is located as in 8 and 9 shown in the closed state.
  • the extension 11 is in coincidence with the point A and the extension 11 is locked by the wall of the cam track 12, whereby the locking pin 1 is not adjustable.
  • the locking pin 1 is in the maximum extended state and is introduced into the recess 5 of the closing part 3. If an attempt is then made to open the door, an attempt is made to remove the closing part 3 from the door Apply locking recess 23, this blocks the locking pin 1, thus preventing the door from opening.
  • a signal is transmitted to the board 28 by the user via a switch or a remote control, this controls the electric motor 2 in the open state ( 10 and 11 ).
  • the electric motor 3 rotates the link plate 4, in this embodiment, in a clockwise direction until the extension 11 is brought into coincidence with the point B.
  • the extension 11 is adjusted parallel to the axis 21 of the locking bolt 1 and the locking pin 1 is guided in the rear open position, the open state, and is then in the open state.
  • the locking pin 1 is fully extended from the recess 5 of the closing part 3 and the spring 6 stretched.
  • the magnet 8, alternatively the spring ( Fig. 19 ) keeps the closing part 3 still in the closed state. If now the door with the closing part 3 attached thereto is opened against the holding force of the magnet 8, the closing part 3 exits the closing opening 23 and the door is open.
  • a signal is output, for example, from the magnetic detector 32 to the board 28, which carries a switching unit. Since the magnet attached to the door is no longer detected and adjusted the electric motor 2, the crank plate 4 in the free state.
  • the extension 11 is brought into coincidence with the point C and the locking pin 1 is pushed by the spring 6 in the closed state.
  • the closing part 3 is again introduced into the closing recess 23, ie the door is closed, the closing part 3 strikes the bevel 7, presses the locking bolt against the spring force into the open position and the locking bolt 1 gives the closing part 3 the way into the closing recess 23 completely free.
  • the recess 5 is brought into the displacement of the locking bolt 1 and this moves off again.
  • the spring 6 moves the locking pin 1 in the recess 5 and blocks a renewed escape of the closing part 3 from the electric lock 10.
  • the magnetic detector 32 again signals the presence of the magnet on the door and the switching unit of the board 28 gives a control command to the Electric engine 2 off.
  • the electric motor 2 rotates the link plate 4 again in the closed state, the extension 11 is brought into coincidence with the point A and the locking pin 1 blocks and fixes the closing part 3 until the board 28 again gives the signal to open.
  • the board 28 and the electric motor 2 can also be actuated by a signal of the switch 14. If the locking pin 1 is moved from the closed to the open state, actuates the Control pin 30 when driving past the switch 14, which then transmits a signal to the board 28 and adjusted after a time delay, the locking pin 1 in the free state. If the locking bolt 1 is adjusted again by inserting the closing part 3 into the closing opening 23, the switch 14 again outputs a signal and the board 28 gives the command to move the locking bolt 1 into the closed state.

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  • Engineering & Computer Science (AREA)
  • Structural Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Lock And Its Accessories (AREA)

Claims (15)

  1. Unité de verrouillage électrique, notamment pour le blocage d'armoires de bijoutiers, comprenant un boulon de fermeture (1) pouvant être inséré dans un évidement (5) d'une pièce de fermeture (3), un entraînement électrique et une unité de réglage se mettant en prise avec le boulon de fermeture (1), le boulon de fermeture (1) pouvant être réglé, par le biais de l'entraînement, via l'unité de réglage, de manière linéaire le long de l'axe (21) du boulon de fermeture (1) dans au moins trois configurations, une fermée, une ouverte et une libre, le boulon de fermeture (1), dans la configuration fermée, faisant saillie dans l'évidement (5) de la pièce de fermeture (3) au moins partiellement, le boulon de fermeture (1), dans la configuration ouverte, étant sorti de l'évidement (5) de la pièce de fermeture (3) et le boulon de fermeture (1), dans la configuration libre, pouvant être réglé ou amené à coulisser librement, au moins partiellement indépendamment de l'unité de réglage, afin d'introduire de nouveau la pièce de fermeture (3) dans l'unité de verrouillage électrique (10), l'entraînement électrique étant un moteur électrique (2) ;
    caractérisée en ce
    que l'unité de réglage est formée comme une rondelle à coulisse (4), la rondelle à coulisse (4) étant disposée sur l'arbre du moteur électrique (2), le boulon de fermeture (1) présentant un prolongement (11), qui fait saillie dans une trajectoire courbe (12) ménagée sur la rondelle à coulisse (4) et le boulon de fermeture (1) pouvant être réglé en faisant tourner la rondelle à coulisse (4) le long de son axe (21) par le réglage du prolongement (11) le long de la trajectoire courbe (12) de la rondelle à coulisse (4) et en ce que, dans la position fermée, le prolongement (11) du boulon de fermeture (1) est maintenu dans la position sortie par le biais de la rondelle à coulisse (4).
  2. Unité de verrouillage électrique selon la revendication 1, caractérisée en ce que le boulon de fermeture (1) présente un chanfrein (7) pointu vers la pièce de fermeture (3), l'unité de verrouillage électrique (10) présentant un ressort (6) venant en prise sur le boulon de fermeture (1), le boulon de fermeture (1) pouvant être enfoncé par pression ou tiré par le ressort (6) dans l'évidement (5) du boulon de fermeture (1) et, lors de l'introduction de la pièce de fermeture (3) dans le trajet de déplacement du boulon de fermeture (1), le chanfrein (7) du boulon de fermeture (1) pouvant être sollicité par la pièce de fermeture (3) et le boulon de fermeture (1) pouvant être déplacé contre l'action de la force du ressort (6) dans la configuration ouverte.
  3. Unité de verrouillage électrique selon une des revendications 1 ou 2, caractérisée en ce que l'unité de verrouillage électrique (10) présente un aimant (8), l'aimant (8) étant disposé sur le boulon de fermeture (1) et la pièce de fermeture (3) étant constituée d'un matériau magnétique ou ferromagnétique et pouvant être maintenue, par le biais de l'aimant (8) en configuration ouverte du boulon de fermeture (1) en configuration fermée, notamment dans le trajet de déplacement du boulon de fermeture (1).
  4. Unité de verrouillage électrique selon une des revendications précédentes, caractérisée en ce que la rondelle à coulisse (4) est disposée de manière excentrique sur l'arbre du moteur électrique (2).
  5. Unité de verrouillage électrique selon la revendication 4, caractérisée en ce que la trajectoire courbe (12) est conçue comme cavité, notamment comme une rainure fermée ou trajectoire de rainure, dans la rondelle à coulisse (4), la trajectoire courbe (12) présentant notamment une forme elliptique.
  6. Unité de verrouillage électrique selon la revendication 4 ou 5, caractérisé en ce que la trajectoire courbe (12) présente deux points (A, B), qui présentent de préférence la plus grande distance entre eux sur la trajectoire courbe (12), le prolongement (11) et ainsi le boulon de fermeture (1) pouvant être réglés le long de la trajectoire courbe (12) de manière linéaire et pouvant être amenés dans les trois configurations, en recouvrant le prolongement (11) avec un des points (A,B) de la trajectoire courbe (12), le boulon de fermeture (1) se trouvant dans la configuration fermée et faisant saillie, de préférence au maximum, dans l'évidement (5) de la pièce de fermeture (3) et, en recouvrant le prolongement (11) avec l'autre des points (A, B), le boulon de fermeture (1) se trouvant dans la configuration ouverte et sortant, de préférence au maximum, de l'évidement (5) de la pièce de fermeture (3).
  7. Unité de verrouillage électrique selon la revendication 6, caractérisée en ce que la trajectoire courbe (12) de la rondelle à coulisse (4) présente, en direction de la position ouverte du boulon de fermeture, un évidement à trajet libre (13), l'évidement à trajet libre (13) étant situé entre les deux points (A, B) et faisant saillie dans un troisième point (C) dans la trajectoire courbe (12), le prolongement (11) du boulon de fermeture (1) étant amené, dans la configuration libre, en recouvrement avec le troisième point (C) et l'évidement à trajet libre (13) s'étendant le long de l'axe (21) du boulon de fermeture (1) et le prolongement (11) pouvant être déplacé dans l'évidement à trajet libre (13) le long de l'axe (21) du boulon de fermeture (1) conjointement avec le boulon de fermeture (1) en cas de déplacement du boulon de fermeture (1).
  8. Unité de verrouillage électrique selon la revendication 7, caractérisée en ce que le troisième point (C) peut être réglé en faisant tourner la rondelle à coulisse (4) dans la configuration libre dans le trajet de déplacement du prolongement (11).
  9. Unité de verrouillage électrique selon une des revendications précédentes, l'unité de verrouillage électrique (10) présentant un commutateur (14), le commutateur (14) pouvant être basculé dans la configuration libre par déplacement du boulon de fermeture (1) en direction de la configuration ouverte, le boulon de fermeture (1) pouvant être déplacé ou réglé par actionnement du commutateur (14) via l'entraînement, dans la configuration fermée.
  10. Unité de verrouillage électrique selon une des revendications précédentes, caractérisée en ce que le boulon de fermeture (1) présente une sécurité anti-rotation pour empêcher la rotation du boulon de fermeture (1) autour de son axe (21), la sécurité anti-rotation étant notamment conçue comme un tenon (18) guidé dans un guide (17).
  11. Unité de verrouillage électrique selon une des revendications précédentes, caractérisée en ce que la pièce de fermeture (3) est formée comme un profilé en forme de L ou en forme de T.
  12. Unité de verrouillage électrique selon une des revendications précédentes, caractérisée en ce que la rondelle à coulisse (4) présente un boulon excentrique (34), qui est disposé de façon excentrique par rapport à l'axe de rotation de l'entraînement, le boulon de fermeture (1) présentant un évidement (33), le boulon excentrique (34) faisant saillie dans l'évidement (33) du boulon de fermeture (1) et le boulon de fermeture (1) pouvant être réglé en faisant tourner la rondelle à coulisse (4) le long de son axe (21) par réglage du boulon excentrique (34) dans l'évidement (34) du boulon de fermeture (1).
  13. Armoire, notamment coffre-fort, avec au moins une porte et un espace interne délimité par la porte, caractérisée en ce que l'armoire présente une unité de verrouillage électrique (10) selon une des revendications 1 à 12.
  14. Armoire selon la revendication 13, caractérisée en ce que l'unité de verrouillage électrique (10) est disposée dans l'espace interne de l'armoire et la pièce de fermeture (3) est disposée sur la porte de l'armoire, dans la configuration ouverte de l'unité de verrouillage électrique (10), la pièce de fermeture (3) pouvant être sortie de l'unité de verrouillage électrique (10) et la porte pouvant être ouverte.
  15. Armoire selon la revendication 13 ou 14, caractérisée en ce que l'armoire présente un détecteur, notamment un capteur de proximité, la configuration fermée de la porte pouvant être détectée grâce au détecteur, le détecteur présentant notamment un aimant fixé sur la porte et un détecteur magnétique (32) disposé dans l'espace interne de l'armoire (20), notamment dans l'unité de verrouillage électrique (10).
EP15195620.8A 2014-12-03 2015-11-20 Unite de verrouillage electrique Active EP3029226B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
ATA50880/2014A AT516392B1 (de) 2014-12-03 2014-12-03 Elektro-Verriegelungseinheit, dessen Schließbolzen in zumindest drei Zustände verstellbar ist

Publications (2)

Publication Number Publication Date
EP3029226A1 EP3029226A1 (fr) 2016-06-08
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EP15195620.8A Active EP3029226B1 (fr) 2014-12-03 2015-11-20 Unite de verrouillage electrique

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ES2784375T3 (es) * 2017-03-17 2020-09-24 Euchner Gmbh Co Kg Dispositivo de bloqueo
US10689046B1 (en) * 2019-04-19 2020-06-23 Lyft, Inc. Apparatus, systems, and methods for single-sided locks
AT527067A1 (de) 2023-03-29 2024-10-15 Memo Beteiligungs Und Verwaltungs Gmbh Verfahren zur Überwachung der Verriegelung bei einer Elektro-Verriegelungseinheit

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DE8710404U1 (de) * 1987-07-29 1987-12-03 Berg, Hartmut, 2427 Malente Verriegelungsvorrichtung
DE19728273C1 (de) * 1997-07-02 1998-12-10 Fuss Fritz Gmbh & Co Verriegelungseinrichtung für Möbel
GB0029058D0 (en) * 2000-11-29 2001-01-10 Meritor Light Vehicle Sys Ltd Actuator
US7183903B2 (en) * 2004-04-15 2007-02-27 Peter Nicolson Security storage locker for a vehicle
US7455335B2 (en) * 2005-05-29 2008-11-25 Southco, Inc. Electromechanical push to close latch
KR100926467B1 (ko) * 2008-04-17 2009-11-13 주식회사 수퍼락 전기정 스트라이커
US9777512B2 (en) * 2011-04-14 2017-10-03 Janus International Group, Llc Locking apparatus for a rollup door or other movable object
CA2836004C (fr) * 2012-12-05 2021-06-01 United States Postal Service Mecanisme de verrouillage pour securiser un volume verrouillable

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AT516392A4 (de) 2016-05-15
AT516392B1 (de) 2016-05-15

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