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EP4191000B1 - Electromechanical locking device - Google Patents

Electromechanical locking device Download PDF

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Publication number
EP4191000B1
EP4191000B1 EP21212263.4A EP21212263A EP4191000B1 EP 4191000 B1 EP4191000 B1 EP 4191000B1 EP 21212263 A EP21212263 A EP 21212263A EP 4191000 B1 EP4191000 B1 EP 4191000B1
Authority
EP
European Patent Office
Prior art keywords
blocking
locking device
locking
blocking element
extension
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
EP21212263.4A
Other languages
German (de)
French (fr)
Other versions
EP4191000C0 (en
EP4191000A1 (en
Inventor
Franco Di Sario
Markus ZAHNER
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.)
Dormakaba Schweiz AG
Original Assignee
Dormakaba Schweiz AG
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Priority to ES21212263T priority Critical patent/ES2989155T3/en
Application filed by Dormakaba Schweiz AG filed Critical Dormakaba Schweiz AG
Priority to EP21212263.4A priority patent/EP4191000B1/en
Priority to US18/714,964 priority patent/US20240418010A1/en
Priority to CA3238312A priority patent/CA3238312A1/en
Priority to PCT/EP2022/084123 priority patent/WO2023099691A1/en
Priority to CN202280079161.7A priority patent/CN118339350A/en
Priority to AU2022399944A priority patent/AU2022399944B2/en
Publication of EP4191000A1 publication Critical patent/EP4191000A1/en
Application granted granted Critical
Publication of EP4191000C0 publication Critical patent/EP4191000C0/en
Publication of EP4191000B1 publication Critical patent/EP4191000B1/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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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
    • E05B47/06Controlling mechanically-operated bolts by electro-magnetically-operated detents
    • E05B47/0611Cylinder locks with electromagnetic control
    • 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
    • E05B47/06Controlling mechanically-operated bolts by electro-magnetically-operated detents
    • E05B47/0611Cylinder locks with electromagnetic control
    • E05B47/0619Cylinder locks with electromagnetic control by blocking the rotor
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B15/00Other details of locks; Parts for engagement by bolts of fastening devices
    • E05B15/04Spring arrangements in locks
    • 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
    • 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
    • E05B47/06Controlling mechanically-operated bolts by electro-magnetically-operated detents
    • E05B47/0611Cylinder locks with electromagnetic control
    • E05B47/0619Cylinder locks with electromagnetic control by blocking the rotor
    • E05B47/0626Cylinder locks with electromagnetic control by blocking the rotor radially
    • E05B47/063Cylinder locks with electromagnetic control by blocking the rotor radially with a rectilinearly moveable blocking element
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B15/00Other details of locks; Parts for engagement by bolts of fastening devices
    • E05B15/04Spring arrangements in locks
    • E05B2015/0403Wound springs
    • E05B2015/042Wound springs wound in a plane, e.g. spirally
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B15/00Other details of locks; Parts for engagement by bolts of fastening devices
    • E05B15/04Spring arrangements in locks
    • E05B2015/0493Overcenter springs
    • 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
    • E05B2047/0026Clutches, couplings or braking arrangements
    • E05B2047/0028Clutches, couplings or braking arrangements using electromagnetic means
    • 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
    • E05B2047/0048Circuits, feeding, monitoring
    • E05B2047/0057Feeding
    • E05B2047/0063Energy transfer from key to lock, e.g. for emergency opening
    • 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
    • E05B2047/0084Key or electric means; Emergency release
    • E05B2047/0088Key-operated switch

Definitions

  • the invention relates to an electromechanical locking device according to the preamble of claim 1.
  • a locking device essentially has a stator and a rotor, the rotor being rotatably mounted in the stator.
  • a locking element and a blocking element are provided, the locking element being movable between a first position and a second position, and a starting position and a release position being occupable by the blocking element, in the starting position the blocking element preventing movement of the locking element into the second position and in the release position the blocking element enabling movement of the locking element into the second position.
  • the invention also relates to a locking device equipped with a locking device according to claim 15. Locking devices are available in numerous designs, for example in the form of a locking cylinder for doors, gates or windows, for example.
  • the EP 1 904 702 B1 discloses a locking device with a locking disk as a blocking element.
  • the locking disk is rotated by an electric actuator and can enable a movement of a locking element.
  • a spring-loaded rotary element is provided in the locking device, which prevents a locking disk from rotating into an unlocking position when the key is not inserted and, when the key is removed, restores the starting position of the locking disk by rotating the rotary element if this is not possible with the electric actuator.
  • the disadvantage is that rotating the rotary element, e.g. with a key without locking authorization, releases the rotation of the locking disk, so that the locking disk can be manipulated to reach a release position of the locking disk.
  • the object of the invention is therefore to further develop a generic locking device in such a way that the locking device, in particular the blocking element, is provided with very good protection against manipulation.
  • a locking effect of, for example, a door, a gate or a window or the like can be achieved.
  • a locking device is provided with a stator and with a rotor, a locking element and a blocking element.
  • the rotor is rotatably mounted in the stator.
  • the locking element is mounted in a first component, in particular linearly movable, and can be moved between the first position and the second position.
  • a starting position and a release position can be assumed by the blocking element, wherein in the starting position the blocking element prevents a movement of the locking element into the second position and in the release position the blocking element enables a movement of the blocking element into the second position.
  • the locking device comprises a spring element, wherein the spring element interacts with the blocking element in such a way that when the blocking element moves from the starting position into the release position, the spring element is at least temporarily tensioned in such a way that the spring element pushes the blocking element back towards the starting position.
  • the core idea of the invention is the use of a spring element to apply force to the blocking element, whereby the spring element exerts a lower force on the blocking element in the starting position than in the release position and/or on the way to the release position.
  • the expression "lower force” includes “no force”.
  • An advantage of the locking device according to the invention is that in the event of mechanical manipulation, the spring element pushes the blocking element back into its starting position. This prevents the blocking element from reaching the release position without authorization for the blocking element.
  • the spring element acts directly on the blocking element.
  • the locking device in particular the rotor, can be connected or connectable to a knob or a key in order to transmit a mechanical torque to the rotor.
  • the locking device can comprise a key channel to accommodate a key.
  • the blocking element and/or the spring element is arranged behind the key channel. "Behind” is to be understood here from the perspective of the user who operates the locking device.
  • a wall limits the key channel to the rear. "Rear” is to be understood from the perspective of the user who operates the locking device. In other words, the end of the key channel is limited by a wall.
  • the blocking element, the spring element and/or the locking element are arranged behind the wall.
  • the wall is thus arranged between the blocking element, the spring element and/or the locking element on the one hand and the key channel on the other. The wall protects the blocking element and/or the locking element from manipulation.
  • the blocking element is preferably pre-tensioned in the release position into the starting position.
  • the release position can, for example, be a temporary position that pre-tensions the spring element more than in the starting position.
  • the starting position can be viewed as a monostable position or as one of bistable positions of the blocking element.
  • the spring element can be used to mechanically move the blocking element back to its starting position by means of the spring force of the spring element after the release position has been assumed.
  • the electromechanical locking device can comprise an electromechanical actuator.
  • the actuator can in particular be designed as an electric motor.
  • the actuator serves to enable the blocking element to be moved, in particular rotated, from the starting position to the release position.
  • the actuator can move the blocking element into the release position and/or tension the spring element so that the spring element moves the blocking element into the release position.
  • the actuator serves to enable the locking element to be moved to the second position.
  • the actuator can be used to enable a driver to move when the rotor rotates. To do this, a lock can be released and/or a clutch can be adjusted.
  • the locking element prevents rotation of the rotor in the stator and in the second position, the locking element enables rotation of the rotor in the stator.
  • the movement of the locking element preferably corresponds to a lifting movement towards and away from the blocking element.
  • the movement of the blocking element is preferably a rotational movement in a rotational axis towards which the movement of the locking element runs or away from it.
  • the blocking element is arranged on the output shaft of the actuator designed as an electric motor.
  • the actuator preferably enables the blocking element to rotate from the starting position to the release position.
  • the actuator preferably rotates the blocking element from the starting position to the release position. This allows for a very space-saving design.
  • the blocking element preferably comprises a recess in which the locking element is arranged in the second position. In the first position, however, the locking element is located outside the recess. In the release position, the blocking element is arranged such that the recess is opposite the locking element, so that the locking element can move into the recess. In the starting position, however, the recess is arranged such that the recess points away from the locking element, so that the locking element cannot move into the recess.
  • the blocking element can assume positions between the release position and the starting position in which the blocking element cannot move into the recess. Positions in which the blocking element cannot move into the recess are called blocking positions.
  • the starting position can be regarded as one of the blocking positions.
  • the blocking element can, for example, be disc-shaped.
  • the blocking element is arranged in the rotor. It may be that the actuator is arranged in the rotor. It may be that the locking element is arranged in the rotor in the second position.
  • the stator preferably comprises a locking element recess in which the locking element is arranged in the first position.
  • the rotation of the rotor is prevented in particular by the engagement of the locking element in the locking element recess in the first position of the locking element.
  • the locking element In the second position, the locking element is located outside the locking element recess.
  • the blocking element can be moved from the starting position in a first direction, in particular in a first direction of rotation, and in a second direction, in particular in a second direction of rotation.
  • the spring element and the blocking element preferably interact in such a way that the spring element is at least temporarily tensioned both during a movement in the first direction and during a movement in the second direction. This makes mechanical manipulation more difficult.
  • the blocking element may comprise a pin for tensioning the spring element.
  • the spring element can be designed as a torsion spring.
  • the spring element can have a torsion leg and a contact leg angled from the latter, wherein the contact leg can be preloaded against a pin of the blocking element.
  • the position of the pin relative to the spring element can determine an increase in the spring tension, i.e. a characteristic curve of the spring element tension.
  • the pin has a non-circular outer contour, which influences an increase in the spring tension, i.e. the characteristic curve of the spring element tension.
  • the pin can be elliptical, kidney-shaped or pin-shaped.
  • the blocking element is rotatable in a first direction of rotation from the starting position into the release position by a first angle of rotation and the blocking element is rotatable in a second direction of rotation from the starting position into the release position by a second angle of rotation.
  • the second angle of rotation is preferably smaller than the first angle of rotation.
  • the restoring force of the spring is temporarily stronger when rotating in the second direction of rotation than at least when rotating in the first direction of rotation.
  • an increasing tension of the spring element results in a characteristic curve of the spring element tension, the further the blocking element moves from the starting position.
  • the characteristic curve can increase more sharply in the second direction of rotation in particular.
  • the locking device preferably comprises the electromechanical actuator.
  • the actuator can be designed to move, in particular to rotate, the blocking element in the direction of the release position against the force of the spring element.
  • the spring element is preferably tensioned in such a way that the spring element can rotate the blocking element back to the starting position. Consequently, the spring element is designed in such a way that the blocking element is moved, in particular rotated, from the release position to a blocking position and then to the starting position.
  • the actuator can thereby tension the spring element in such a way that a mechanical return to the starting position of the blocking element takes place.
  • the locking device can comprise a stop.
  • the blocking element rests against the stop in the release position. In this case, the
  • Spring element presses the blocking element against the stop. Additionally or alternatively, the blocking element can be prevented or reduced from bouncing back from the stop during movement into the release position. The spring element thus stabilizes the blocking element in its rotational position in the system against the stop.
  • the stop is arranged behind the key channel.
  • the wall is arranged between the stop and the key channel.
  • the blocking element can come into contact with a retaining cam of the blocking element on the stop, at which the release position of the blocking element is reached.
  • the spring element presses the blocking element with the retaining cam against the stop in order to maintain the release position.
  • An additional advantage of arranging a spring element in interaction with the blocking element, in particular pressing the blocking element against the stop in the release position, can be that the electromechanical actuator only needs to be controlled in a simple manner, for example with only temporary energization. This allows the blocking element to be rotated and the spring element ensures that the desired release position of the blocking element is assumed and maintained, in particular that a corresponding rotational position of the blocking element is maintained. As soon as the spring element can bring the blocking element into the desired release position, in particular rotate it, or has brought it, in particular rotated it, the energization of the electromechanical actuator can be stopped and the spring element ensures that the release position of the blocking element is maintained.
  • the stop is moved out of its position of the blocking element, preferably by a mechanical movement of a user, particularly preferably in operative connection with a key, so that the blocking element is moved back into the starting position.
  • the blocking element when the retaining cam of the blocking element no longer rests against the stop, for example by the stop being retracted and the retaining cam being released from the stop and being able to rotate freely, the blocking element is moved from the release position into a blocking position, in particular into the starting position.
  • the actuator rotates the blocking element starting from the starting position under increasing tension of the spring element in the direction of the release position until it reaches a dead center, wherein after a dead center is exceeded, the spring element moves the blocking element into the release position or moves it along with it.
  • the spring force of the spring element passes through a dead center when the blocking element is rotated from the starting position to the release position. Before the dead center, the spring element presses the blocking element into the starting position and after the dead center, the spring element presses the blocking element into the release position. In this way, the blocking element can rest in the starting position just as it can in the release position against the stop.
  • Activation of the actuator is only absolutely necessary in order to rotate the blocking element from the first starting position past the dead center.
  • the spring element enables or supports further rotations. The actuator therefore only has to rotate the blocking element past the dead center while the spring element is tensioned, with the final rotation of the blocking element into the release position ultimately being caused or co-caused by the spring element. This makes it possible to control the actuator less precisely.
  • a further advantage is achieved in that the rotational movement of the blocking element from the starting position to the release position and from the release position back to the starting position of the blocking element takes place in the same direction of rotation.
  • the advantage is in particular a simple control of the electromechanical actuator, which can be designed as a motor and which is always activated for rotation in the same direction of movement, in particular the same direction of rotation.
  • the locking device further comprises an extension element, wherein the extension element is movable between an insertion position and a withdrawal position.
  • the extension element assumes the insertion position, particularly when a key is inserted, and when the key is removed again, the extension element is returned to the removal position.
  • the range of action of the key is thus extended by the extension element.
  • the extension element preferably extends through the wall. The extension element can therefore interact with the key on the one hand and with components protected by the wall on the other, in particular the blocking element.
  • the extension element remains in the locking device after the key is removed.
  • the extension element is preferably designed to be moved in the axial direction between the withdrawal position and the insertion position, in particular to be displaced linearly.
  • the rotor can comprise a guide for the extension element.
  • extension element moves linearly
  • extension element can alternatively be referred to as a slider.
  • the extension element and the blocking element can be designed such that the extension element in the inserted position prevents a movement of the blocking element from the release position into a blocking position, in particular into the starting position, wherein in particular the extension element blocks the blocking element from being moved from the release position into a blocking position by the force of the spring element.
  • the extension element preferably has the stop, while the blocking element comprises the retaining cam, which is held against the stop in the release position by the spring element.
  • the extension element and the blocking element are designed such that the extension element in the trigger position enables a movement of the blocking element from the release position into a blocking position, in particular into the starting position.
  • the extension element is preferably not operatively connected to the blocking element in the trigger position, so that a movement of the blocking element from the release position into the blocking position occurs due to the force of the spring element.
  • the holding cam In the insertion position, the holding cam can come into contact with the stop, whereas in the withdrawal position of the extension element, the holding cam can rotate freely so that the blocking element cannot be held by the stop and the blocking element cannot maintain the release position.
  • the blocking element preferably rotates over a partial circle as part of a full rotation in one direction of rotation each time the actuator is activated, whereby the spring element only creates the exact alignment of the blocking element in the release position when the retaining cam hits the stop. If the stop is missing, especially if the extension element is guided out of the movement area of the retaining cam, the force of the spring element causes the starting position to be assumed, which is achieved by the spring element as a stable position.
  • the electromechanical actuator is activated during electrical manipulation without the key being inserted and the extension element with the stop is moved into the movement space in the holding cam, the blocking element is set in rotation, but the starting position is always reached again, in which the blocking element cannot be moved out of the blocking position. can be guided and the locking starting position is maintained by the spring element under the influence of the blocking element.
  • the blocking element is preferably pressed against the extension element by the spring element with at least one force component perpendicular to the axial direction, while the extension element blocks a movement of the blocking element from the release position to a blocking position.
  • the retaining cam of the blocking element is preferably in contact with the stop. This makes it possible for the insertion position to have an error tolerance.
  • the extension element In the inserted position, the extension element preferably blocks a movement of the blocking element from the starting position to the release position in at least one direction of rotation, in particular at least in the second direction of rotation. This provides additional protection against manipulation.
  • the extension element also serves to move a coupling part into an operative connection with a driver.
  • the coupling part can remain in the operative connection with the driver when the extension element moves from the insertion position to the withdrawal position. Additionally or alternatively, the extension element can move the coupling part in the axial direction without positive locking.
  • the extension element can be designed and/or can interact with the coupling part in such a way that the extension element prevents a movement of a coupling part out of the operative connection with the driver in the inserted position and allows the operative connection of a coupling part with the driver to be canceled in the extended position.
  • a torque can be transmitted from the rotor to the coupling part without the extension element transmitting the torque. This makes it possible to design the extension element in a filigree manner and to save installation space.
  • the locking device can comprise an electronic control device, in particular a processor and/or a controller, to control the actuator.
  • the control device can further comprise an electronic memory.
  • the locking device further comprises a transmission device for transmitting data and/or electrical energy from a key to the locking device.
  • the transmission device can be designed as a transmitting and receiving unit, as a biometric sensor, as a keypad for PIN entry and/or as a contact element for electrically contacting a key, in particular an electronic key.
  • the transmitting and receiving unit can be designed to communicate with a mobile unit, in particular a mobile phone or a card, by wireless short-range communication, in particular RFID or Bluetooth Low Energy.
  • the transmission device can be used to send and/or receive electronic data that make it possible to determine whether a user is authorized to unlock the spatial area.
  • the transmission device can receive an authorization code and/or an authorization time window that is checked by the control device. If the check is completed with a positive result, the actuator can be controlled to enable movement of the blocking element. This allows the locking element to move into the second position.
  • the transmission device can transmit an opening command.
  • the actuator can be controlled to enable movement of the blocking element.
  • the blocking element can be moved electromechanically into the second position or the movement into the second position can be released electromechanically.
  • the transmission device serves in particular additionally or alternatively to transmit electrical energy to the locking device.
  • the electrical energy can be provided for operating the actuator and/or for the control device.
  • the locking device is free of mechanical coding. This means that the locking authorization is based solely on the electronic data that is sent and/or received from the locking device via the transmission device.
  • the transmission of data and/or electrical energy is interrupted.
  • the actuator cannot be activated.
  • the blocking element is mechanically returned to the starting position by the spring element.
  • the extension element engages the key in a form-fitting manner, so that when the key is removed, the extension element always moves from the insertion position to the withdrawal position. This ensures that the extension element is moved from the insertion position to the withdrawal position each time the key is removed. This ensures that the extension element supports the movement of the Blocking element from the release position into a blocking position, in particular into the starting position, by the spring element.
  • the locking device is preferably used to lock a spatial area.
  • the spatial area is in particular fixed.
  • the spatial area can be a room in a building, for example an office, an apartment or a house, or a storage room, for example a cupboard, a mailbox, a chest, a box, a safe or a drawer.
  • the locking device is used to be used in a particularly door-like locking element, for example a front door, an apartment door, a room door, a cupboard door, a mailbox flap or the front of a drawer, or to be attached to a locking element.
  • the stator of the locking device is preferably connected at least indirectly to the locking element in a rotationally fixed manner.
  • the locking device can have a driver or can be connectable to a driver.
  • a rotation of the rotor of the locking device serves to rotate the driver.
  • the driver is preferably designed as an eccentric.
  • the driver can be designed as a locking nose. It can be that a rotation of the driver in a first direction serves to transfer the locking element from an unlocked state to a locked state. It can also be that a rotation of the driver in a second direction serves to transfer the locking element from a locked state to an unlocked state.
  • the locking device can be used at least indirectly in a mortise lock.
  • a rotation of the driver can cause the bolt of the mortise lock to move.
  • the rotation of the driver in a first direction can cause the bolt to extend and thus bring about the locked state of the locking element.
  • a rotation of the driver in a second direction can, for example, cause the bolt to retract and thus bring about the unlocked state of the locking element.
  • the driver itself can act as a latch. For example, rotating the driver in a first direction can cause the driver to assume a locking position. Rotating the driver in a second direction can cause the driver to assume an unlocking position.
  • the locking device is designed as a built-in device.
  • the built-in device is designed to be inserted into a locking device housing of a locking device.
  • the built-in device is fixed in the locking device housing in a rotationally fixed manner by means of a fastening element.
  • the locking device housing is used in particular for insertion into or attachment to the locking element.
  • the locking device can be designed, for example, as a locking cylinder, in particular as a double cylinder or half cylinder, as a knob cylinder, as a furniture cylinder or as a padlock.
  • the locking device is designed as a built-in device, it is preferably provided that the locking device comprises a connecting section in order to be connected to a driver.
  • the locking device itself can be designed as a locking cylinder, in particular as a double cylinder or half cylinder, as a knob cylinder, as a furniture cylinder or as a padlock.
  • the stator also serves as a housing for insertion into or attachment to the locking element.
  • the locking device can be provided for a switching element.
  • the switching element can only be operated by authorized users.
  • a driver of the switching element can be used to operate a switch or button.
  • the locking device can therefore be used in a switching element, in particular in a key switch, or can correspond to a key switch.
  • the rotation of the rotor enables, in particular causes, a movement of the blocking element into the second position.
  • a first contact surface of the stator pushes the blocking element into the second position.
  • a second contact surface of the stator is designed in particular such that the locking element is spaced apart from the blocking element by the contact with the second contact surface. This can prevent damage to the locking device.
  • the blocking element and the locking element can be spaced apart from one another in the first position of the locking element, in particular when the locking element is unloaded and/or when the locking element rests against the second contact surface.
  • the second contact surface separates the locking element from the blocking element, it is possible to mount the blocking element on one side. This means that the output shaft can only be mounted on one side in the actuator.
  • the locking element in order to space the blocking element and the locking element when they rest on the second contact surface, can comprise a projecting head surface.
  • the second contact surface can be designed to correspond to this.
  • the head surface and the second contact surface are designed such that when the locking element rests on the second contact surface, the second contact surface is located between the head surface and the blocking element.
  • the movement of the locking element between the first and the second position defines a direction of movement, wherein the head surface and the second contact surface are formed inclined to the direction of movement of the locking element.
  • the stator preferably comprises a stator element which has the first contact surface and is movably mounted in the rest of the stator. In particular, this can ensure that the locking element comes to rest against the second contact surface through a movement of the stator element.
  • the stator element preferably has no fixed connection or mounting to the rotor.
  • stator element and the locking element move relative to one another when the rotor rotates.
  • the locking element moves from the first position to the second position.
  • the stator element moves so that the locking element comes to rest on the second contact surface.
  • the stator element is movable between a first position and a second position.
  • the first contact surface rests on the locking element in such a way that when the rotor rotates, the locking element is moved from the first position to the second position.
  • the locking element rests on the second contact surface in such a way that the locking element remains in the first position. This means that the stator element must first be moved to the desired second position during the aforementioned rotation so that the second contact surface can become effective.
  • the first contact surface In the first position of the stator element, the first contact surface is closer to the locking element than the second contact surface. In the second position of the stator element, the second contact surface protrudes further into the locking element recess than the first contact surface.
  • the movement of the stator element between the first position and the second position preferably comprises a perpendicular component to the movement of the locking element between the first position and the second position.
  • the movement of the stator element between the first and the second position occurs perpendicular to the movement of the locking element from the first position to the second position.
  • the stator can comprise at least a first spring which urges the stator element into the first position. This automatically returns the stator element to the first position, which enables easier movement control.
  • the locking element is pre-tensioned into the first position by a second spring.
  • the force acting on the locking element through the second spring is smaller than the force acting on the stator element through the first spring.
  • the spring constant of the second spring may be smaller than the spring constant of the first spring. This allows the first spring to keep the stator element in the first position when the locking element can move into the second position.
  • the locking element is arranged between at least one first stator element and at least one second stator element.
  • the locking element is moved into the second position by the first contact surface, provided that the blocking element allows the movement into the second position.
  • the locking element is arranged between two second contact surfaces.
  • the locking element is moved against a second contact surface if movement of the locking element into the second position is prevented in particular by the blocking element.
  • the rotor comprises at least a first axial section, in particular a first rotor element, and a second axial section, in particular a second rotor element.
  • the second section has a smaller diameter than the first section.
  • the locking element is arranged in the second axial section. This provides sufficient installation space in the stator to provide the first and second contact surfaces. Preferably, this provides sufficient installation space in the stator to accommodate the stator element or elements.
  • the locking device can comprise a locking element for locking in at least one position of the rotor relative to the stator.
  • the locking element holds the rotor in a position in which the locking element is not forced by the first contact surface towards the blocking element. As a result, the locking element is securely held in this position and cannot leave this position unintentionally.
  • a locking device is provided, wherein the locking device is provided with a locking device housing and a locking device is designed as shown above, wherein the locking device is incorporated in the locking device housing.
  • Fig. 1 and Fig. 2 show a locking device 100 in the form of a locking cylinder, as is known to be used in mortise locks, in order to unlock a building door as a locking element or to lock it by means of a bolt.
  • the locking device 100 has a housing 101 with a recess in which a
  • Driver 103 which is designed as a locking nose, is arranged so as to be rotatable.
  • the driver 103 serves to move a bolt in the locking or unlocking direction.
  • a locking device 1 designed as an installation device is inserted according to an embodiment of the invention.
  • the installation device 1 comprises a stator 10 arranged on the outside, in which a rotor 30 of the installation device 1 is inserted so as to be rotatable about a rotor axis 35, which coincides, for example, with the axis of rotation of the driver 103.
  • the rotor 30 comprises a key channel 36 on its front side 37 facing away from the driver 103 for inserting a shaft of a key 200.
  • the key 200 carries an electronic locking secret in the form of electronic data.
  • the locking secret can be used to determine whether a user is authorized to unlock the door.
  • the key 200 is preferably designed without mechanical coding. Thus, it is only possible to determine whether the user has authorization or not based on the electronic locking secret.
  • the keys and the locking devices can be designed to be identical to one another in terms of their external shape and thus also mechanically. It is also possible to design a key channel 36 as short as possible and thus increase the protection against manipulation.
  • the key 200 also includes a battery to supply the locking device 1 with electrical energy.
  • Fig.2 shows the locking device 100 in a partially disassembled state.
  • the housing 101 has, for example in both halves of the recess for the driver 103 in the lower area, recesses 104, of which the right-hand recess is provided with a reference number.
  • the recesses 104 shown here extend perpendicular to the axis of rotation of the driver 103.
  • the driver 103 has, for example, an inner contour that is not circular in cross-section, for example in the form of an internal toothing, into which an insert 105 preferably engages in a form-fitting manner.
  • the insert 105 has an outer contour that is complementary to the inner contour of the driver 103, here in the form of an external toothing, so that both parts 103, 105 are arranged in a rotationally fixed manner relative to one another.
  • a connecting section 38 of the installation device 1 projects into the insert 105.
  • a coupling part 41 is arranged displaceably in a guide 42.
  • the coupling part 41 is designed in several parts and, depending on the position of the coupling part 41, can establish or release an operative connection between the rotor 30 and the driver 103, in particular via the insert 105.
  • the coupling part 41 of the locking device 100 can be positively inserted into a not shown Inner contour of the insert 105.
  • the guide 42 preferably forms a linear guide for the coupling part 41, so that the coupling part 41 is arranged to be guided and movable along the rotor axis 35 of the rotor 30.
  • the installation device 1 has a casing 14 with which the installation device 1 is inserted into an associated insertion opening 106 of the housing 101.
  • a fastening element 102 in the form of a screw is screwed through the recess 104 on the right here from the underside of the housing 101 and into an opening 21 on the left here of the casing 14 of the stator 10 and of a stator body 11 of the stator 10, which will be explained in more detail later.
  • the screw 102 thus fixes the stator 10 in the housing 101.
  • the key channel 36 for inserting the key 200 which is formed in a first rotor element 32 of the rotor 30, is designated here.
  • Fig.3 shows the installation device 1 without the casing 14.
  • the stator body 11 is also designed as a type of sleeve and has functional structures on the inside.
  • the stator body 11 has a recess 19 into which a stator insert element 13 is inserted.
  • Stator elements 12, which will be explained in more detail later, are attached or arranged on a side of the stator insert element 13 facing the interior of the stator body 11.
  • the stator elements 12 are movably mounted on the stator insert element 13 and the stator body 11. The stator elements 12 remain in the rest of the stator 10 when the rotor 30 rotates.
  • the rotor 30 comprises the first rotor element 32 and a second rotor element 33.
  • the rotor 30 is rotatable in the stator body 11 of the stator 10, but is mounted in a fixed position in the direction of its rotor axis 35, which runs parallel to the direction of insertion of the key 200 into the key channel 36.
  • the coupling part 41 is arranged in a rotationally fixed manner on the second rotor element 33 of the rotor 30 of the installation device 1. Both rotor elements 32, 33 are reversibly detachably attached to one another.
  • the second rotor element 33 has the guide 42, into which the coupling part 41 engages and is thus arranged in a rotationally fixed manner to the second rotor element 33.
  • the second rotor element 33 is inserted into the stator body 11 from a base side 23 of the stator 10, and during assembly preferably without the first rotor element 32.
  • Fig.4 shows the installation device 1 without casing 14, stator body 11 and coupling part 41 in a partially disassembled state.
  • An extension element 40 is shown, which is designed to interact mechanically with the key 200. If the key 200 is inserted into the key channel 36, it moves the extension element 40 axially or parallel to the rotor axis 35 in the direction of the second rotor element 33 upon contact. The extension part 40 moves the coupling part 41 away from the rotor 30 in the direction of
  • a passage 39 is provided in the connecting section 38 so that the extension element 40 comes to rest against the coupling part 41. In this case, either the extension element 40 or the coupling part 41 can protrude through the passage 39.
  • a transmission element 44 here for example in the form of contact elements, is spring-mounted on a housing 46 in order to establish a data and/or energy transmission connection with the key 200.
  • An electronic control device 53 is coupled to the transmission element 44 in order to read the data and evaluate it if necessary. If the check of the control device 53 shows that the user of the key 200 is authorized to open the associated door and/or if the control device 53 has an opening command, an electromechanical actuator assembly 50 is activated.
  • the actuator assembly 50 comprises an electromechanical actuator 52, here in the form of an electric motor, on whose output shaft a blocking element 51 is arranged in a rotationally fixed manner.
  • the locking device 1 comprises a locking element 31 which is mounted in the rotor 30 so as to be linearly movable.
  • the locking element 31 is preferably mounted so as to be movable perpendicular to the rotor axis 35 towards and away from the blocking element 51.
  • the locking element 31 In the first position shown here, the locking element 31 is located in a locking element recess 15 which is formed by the stator 10, in particular by the stator insert element 13 and the stator elements 12. This prevents the rotor 30 and thus the coupling part 41 from being rotated. The turning of the inserted key 200 to unlock the associated lock is thus prevented.
  • a second position of the locking element 31 (not shown), it comes out of engagement with the locking element recess 15 of the stator 10. This makes it possible to rotate the rotor 30 in the stator 10 and thus the driver 103 in order to actuate the locking device and to release the locking mechanism.
  • the blocking element 51 comprises a recess 54.
  • the blocking element 51 is rotatable between a release position (not shown) in which the recess 54 is opposite the locking element 31 so that the locking element 31 can move into the recess 54 and a blocking position in which the recess 54 is not opposite the locking element 31 so that the locking element 31 is prevented from moving into the recess 54.
  • the recess 54 takes up only a small part of the peripheral surface of the blocking element 51, so that the majority of the positions that can be assumed by the blocking element 51 are blocking positions.
  • the blocking position in which the blocking element 51 is located in the unactuated state of the locking device is referred to as the starting position.
  • the actuator assembly 50 with the electromechanical actuator 52 in the form of the electric motor and with the blocking element 51 on its output shaft has a spring element 80.
  • the spring element 80 interacts with the blocking element 51 in such a way that when the blocking element 51 moves from the starting position to the release position, i.e. when the blocking element 51 is rotated, the spring element 80 is at least temporarily tensioned in such a way that the spring element 80 pushes the blocking element 51 back towards the starting position, i.e. rotates it back to a certain rotational position. This provides protection against manipulation.
  • the blocking element 51 can be movable in a first direction, in particular a first direction of rotation 81, and in a second direction, in particular in a second direction of rotation 82 (see Fig.5 ). At least the second direction of rotation 82 is conceivable by mechanical manipulation.
  • the spring element 80 and the blocking element 51 interact in such a way that the spring element 80 is at least temporarily tensioned both during a movement in the first direction 81 and during a movement in the second direction 82.
  • the blocking element 51 is forced back into the starting position.
  • the spring element 80 is designed as a torsion spring. With regard to Figure 5 the spring element 80 according to the invention is shown, which surrounds the blocking element 51 and the electromechanical actuator 52.
  • the spring element 80 is rigidly clamped on the rear side with its end section there, and the spring element 80 has a torsion leg 80a, which merges into a contact leg 80b, which is angled at about 90° from this and is pre-tensioned against a pin 51b of the blocking element 51.
  • the pin 51b is round in this embodiment, but deviations from this are possible.
  • the preload of the contact leg 80b against the pin 51b is achieved by the torsion of the torsion leg 80a such that the blocking element 51 is preloaded rotationally into the starting position shown here, in which the blocking element 51 prevents movement of the locking element 31 and the rotor 30 cannot rotate in the stator 10. In this position, the recess 54 is not aligned with the locking element 31.
  • the torsion leg 80a is rigidly attached to a cover 52a of the actuator 52 (see Fig.7 ).
  • the spring element 80 In the initial position, the spring element 80 is not tensioned. Rather, in the first direction of rotation 81 as well as in the second direction of rotation 82, the blocking element 51 with the pin 51b must first be moved before the spring element 80 is tensioned.
  • the blocking element In the first direction of rotation 81, the blocking element must rotate by more than 180° to reach the release position from the starting position, while in the second direction of rotation 82, a rotation of less than 180° is sufficient to reach the release position from the starting position.
  • a manipulative rotation in the second direction of rotation 82 is made more difficult by a steeper increase in the spring tension than in the first direction of rotation 81.
  • the blocking element 51 is rotated anticlockwise according to the arrow 81 in the view shown here, so that this rotation increases the preload in the torsion leg 80a of the spring element 80 up to a dead center.
  • the spring element 80 presses the pin 51b in the direction of the output shaft.
  • the spring tension of the spring element 80 is reduced again.
  • the spring tension of the spring element 80 forces the blocking element 51 into the release position.
  • the spring element 80 can thus move the blocking element 51 into the release position or move it along with it.
  • Fig.9 shows a blocking position of the blocking element shortly after passing through the dead center and shortly before reaching the release position. As a result, an exact switching off of the actuator 52 is not necessary in order to reach the release position.
  • the recess 54 can be turned into the corresponding position with the locking element 31.
  • a stop 83 is provided, which in conjunction with Figure 7 is explained in more detail and against which a retaining cam 51a of the blocking element 51 can come into contact.
  • the blocking element with the holding cam 51a is pressed against the stop 83 by the spring element 80, so that the release position is precisely defined to a particular extent.
  • a rebound of the holding cam 51a from the stop 83 at the end of the rotation in the direction of rotation 81 is reduced or prevented.
  • the blocking element 51 is moved back to the starting position by the force of the spring element 80.
  • the direction of rotation 81 is maintained.
  • the blocking element 51 is always only moved in one direction of rotation when used as intended, in this example in the direction of rotation 81.
  • the retaining cam 51a and/or the pin 51b are rigid, preferably integral, particularly preferably monolithic with the remaining blocking element 51.
  • FIGS 5 and 6 show selected elements of the locking device 1 from Fig.4 .
  • Fig.5 the arrangement of the locking element 31 in relation to the blocking element 51 and the stator insert element 13 together with stator elements 12.
  • Blocking positions of the blocking element 51 are shown.
  • the locking element 31 is designed at its contact section 63 facing the blocking element 51 to be able to move into the recess 54 when the blocking element 51 is in the release position and the recess 54 is opposite the contact section 63 of the locking element 31, in Figure 5 i.e. points upwards. This makes it possible for the locking element 31 to move into the second position.
  • a first contact surface 16 of the stator elements 12 facing the locking element 31 is designed to push the locking element 31 towards the blocking element 51 when the rotor 30 continues to rotate, i.e. into the second position in which the rotor 30 can rotate freely relative to the stator 10.
  • the first contact surface 16 is designed as an inclined surface that pushes the locking element 31 into the second position.
  • the stator elements 12 are movably mounted on the stator insert element 13 between a first position and a second position.
  • the stator elements 12 are urged into the first position by means of first springs 18.
  • the first springs 18 are mounted in the stator 10. The movement of the stator elements 12 from the first position to the second position according to the direction of movement 71 is perpendicular to the direction of movement 70 of the locking element 31.
  • the locking element 31 is initially located in the locking element recess 15.
  • the locking element 31 is guided in the rotor 30.
  • the locking element 31 rests against the first contact surfaces 16 of the stator elements 12. This centers the locking element 31.
  • This position of the locking element 31 is referred to as the rest position. In the rest position, the locking element 31 is preferably arranged at a distance from the blocking element 51.
  • the control device 53 controls the actuator 52.
  • the actuator 52 designed as an electric motor, rotates the blocking element 51 into the release position in which the recess 54 is opposite the locking element 31. If the rotor 30 is now set in rotation using the key 200, the locking element 31 slides along one of the first contact surfaces 16 into the second position in which the locking element 31 engages in the recess 54, the locking element 31 being pre-tensioned into the locking element recess 15 by second springs (not shown). The locking element 31 then moves in the direction of movement 70 due to the rotation of the rotor 30.
  • stator elements 12 remain in the first position. This is made possible by the fact that the first springs 18 exert a higher force on the stator element 12, along which the locking element 31 slides, than the second springs (not shown), which push the locking element 31 upwards into the locking element recess 15.
  • the rotor 30 can now rotate freely.
  • the locking element 31 slides along that of the first contact surfaces 16 into which the locking element 31 is rotated.
  • the locking element 31 is surrounded by the first contact surfaces 16 in both directions of rotation, so that rotation in both directions when it contacts one of the first contact surfaces 16 allows the locking element 31 to move into the second position. So that first contact surfaces 16 are present in both directions of rotation, the locking element recess 15 is surrounded on both sides by stator elements 12.
  • the stator 10 has as in Figure 6 shown second contact surfaces 17, which leave the locking element 31 in the first position.
  • the second contact surfaces 17 are used functionally when the user is not authorized to unlock the door.
  • the second contact surfaces are formed in or on the stator insert element 13. If the Locking element 31 in the rest position, the second contact surfaces 17 are further away from the locking element 31 than the first contact surfaces 16.
  • the second contact surfaces 17 are also inclined, but opposite to the first contact surfaces 16 with respect to the direction of movement 70 of the locking element 31.
  • the second contact surfaces 17 thus form an obtuse angle to the direction of movement 70 of the locking element 31.
  • the locking element 31 has, as seen along the rotation axis of the blocking element 51 and/or the rotor axis 35, a cross section which has the shape of a symmetrical trapezoid tapering in the direction of the blocking element 51.
  • the legs of this trapezoid form head surfaces 60 on the outside in relation to the locking element 31.
  • the head surface 60 and the corresponding contact surface 17 are inclined to the direction of movement of the locking element 31.
  • the locking element 31 is initially in the rest position.
  • a key 200 without locking authorization is inserted into the key channel 36.
  • the electronic data exchange shows that there is no authorization to unlock the door. Therefore, the actuator 52 is not activated and the blocking element 51 remains in a blocking position in which the recess 54 is not opposite the locking element 31, as in Figure 4 and 5 shown, in particular in the starting position. Rather, an outer circumference of the blocking element 51 is opposite the locking element 31.
  • the locking element 31 attempts to slide along the first contact surface 16. However, this does not succeed because the locking element 31 rests on an outer circumference of the blocking element 31. Thus, the locking element 31 cannot be pushed into the second position against the force of the second springs (not shown).
  • stator element 12 which is located in the direction of rotation of the locking element 31, is pushed back by the locking element 31 against the force of the first spring 18 until the locking element 31 rests against the second contact surface 17.
  • the stator element 12 is now in the second position.
  • the head surface 60 of the locking element 31 comes into contact with the corresponding second contact surface 17 opposite one of the legs of the trapezoid. If an attempt is made to turn the rotor 30 with force using the key 200, the arrangement shown does not generate a higher force from the locking element 31 on the blocking element 51.
  • the contact surface 17 is designed such that the contact surface 17 holds the locking element 31 in the first position.
  • the rotor 30 thus remains blocked by the locking element 31, so that the door cannot be unlocked.
  • Each of the contact surfaces 17 corresponds to a respective side of the facing head surface 60 of the locking element 31.
  • the surface 60 and the respective corresponding contact surface 17 are designed such that the contact surface 17 is located between the surface 60 and the blocking element 51 when the locking element 31 rests against the contact surface 17.
  • the locking element 31 slides away from the blocking element 51 in the opposite direction of movement 70. This is achieved by the slope of the second contact surface 17.
  • the locking element 31 can slide along the second contact surface 17 with the head surface 60.
  • the locking element 31 and the blocking element 51 can thus be spaced apart from one another when they rest on the second contact surface 17.
  • the forces that act on the locking element 31 when the rotor 30 is attempted to rotate further are diverted to the second contact surface 17. This is helped by the fact that the head surfaces 60 correspond to the second contact surfaces and thus the locking element 31 rests flat against the second contact surface.
  • Fig.6 shows the arrangement of Fig.5 seen from one end of the locking element 31, only without blocking element 51.
  • the stator elements 12 are in the second position.
  • the same reference numerals in Figure 6 are considered by the description of the Figure 5 than in Figure 6 with described.
  • the extension element 40 is movable between an insertion position, which the extension element 40 assumes when the key 200 is inserted, and a withdrawal position, which the extension element assumes when the key 200 is removed, linearly in parallel to the rotor axis 35, ie in and against the direction of the arrow 79 (see. Fig.10 ), movable.
  • the extension element 40 is urged into the withdrawal position of the key 200 by means of a spring 49.
  • the extension element 40 is guided in a guide 65 of the rotor 30 (see Fig.4 ).
  • the extension element 40 can serve to bridge the distance between the key 200 and the coupling part 41.
  • the locking element 31 is shown on the side of the extension element 40.
  • the extension element 40 On the rear side, the extension element 40 has a section 86 for pushing the coupling part 41, to which the stop 83 is attached on the underside.
  • the extension element 40 is angled.
  • a first part of the extension element 40 which is intended for interaction with the key 200, runs radially further outward than a second section 86 of the extension element 40, which is intended for interaction with the coupling part 41.
  • the section 86 can be arranged more centrally in order to be able to push the coupling part 41 better.
  • the extension element 40 is designed to push the coupling part 41, but without being in positive engagement with the coupling part 41. This allows the extension element to be designed in a filigree manner.
  • the extension element 40 If the extension element 40 is brought into the withdrawal position, the coupling part 41 remains connected to the driver 103 due to the lack of positive locking. In the withdrawal position, however, the extension element 40 allows the coupling part 41 to come out of the operative connection with the driver 103, e.g. by a movement of the coupling part 41 from the other side of the door. In the insertion position, however, the extension element 40 blocks the movement of the coupling part 41 out of the operative connection with the driver 103.
  • the extension element 40 serves to mechanically hold the blocking element 51 in the release position. If the extension element 40 is in the insertion position, the stop 83 of the extension element 40 lies in the rotation path of the holding cam 51a. The blocking element 51 with the holding cam 51a thus lies against the stop 83 of the extension element 40 in the release position.
  • the retaining cam 51a presses perpendicular to the direction of movement of the extension element 40.
  • the extension element 40 serves to mechanically return the blocking element 51 from the release position to the starting position.
  • the extension element 40 can be moved back to the withdrawal position when the key is removed.
  • a movement of the blocking element 51 to the blocking position can be caused or permitted.
  • the stop 83 of the extension element 40 in the withdrawal position is located outside the rotation path of the retaining cam 51a.
  • the stop 83 can no longer prevent a movement of the blocking element 51 by the pre-tensioned spring element 80 into the starting position. Rather, the stop 83 is located further forward with respect to the rotor axis 35.
  • the retaining cam 51a is located between the stop 83 and the connecting section 38 in the axial direction.
  • the stop 83 is located between the front side 37 and the retaining cam 51a in the axial direction.
  • the Figures 7 and 8 show the trigger position.
  • the stop 83 and the retaining cam 51a are axially equidistant from the connecting section 38 and/or the side face 37.
  • the extension element 40 In the insertion position, the extension element 40, in particular the stop 83, prevents the blocking element 51 from reaching the release position in the second direction of rotation. Rather, before reaching the release position, the retaining cam 51a would be pushed against a (in Figure 8 lower) area 83a of the stop 83.
  • the first direction of rotation is particularly protected against manipulation due to the longer angle of rotation range for reaching the release position.
  • the coupling part 41 In the withdrawal position, however, the coupling part 41 is not engaged or would move out of operative connection with the driver 103 if the rotor 30 rotated.
  • the extension element 40 When the key is inserted, the extension element 40 holds the blocking element 51 in the release position and allows the blocking element 51 to move back to the starting position when the extension element 40 with the key 200 moves in the direction of the front side 37 when the key is removed.
  • the blocking element 51 When the electromechanical actuator 52 is activated, the blocking element 51 is rotated counterclockwise in the view shown here, so that this rotation, under pre-tension of the spring element 80, moves the retaining cam 51a to rest against the stop 83 of the extension element 40. This rotation of the blocking element 51 allows the recess 54 to be rotated into the corresponding position with the locking element 31.
  • the stop 83 moves out of the range of movement of the holding cam 51a, and the blocking element 51 rotates back into the starting position by the spring element 80, in which the locking element is pressed back into the locking element recess 15 by the second springs and the locking device 1 is locked again.
  • the stop 83 moves back into the range of motion of the holding cam 51a, and when the electromechanical actuator 52 is activated again, the holding cam 51a comes back into contact with the stop 83.
  • the blocking element 51 can always be turned by the electromechanical actuator 52 in the same direction of rotation and always over the same angle of rotation until the spring element 80 turns the blocking element 51 over the last angle section into the release position. If the key 200 is removed, the electromechanical actuator 52 does not have to be activated again, since the spring element 80 causes the blocking element 51 to be turned back to the starting position.
  • An engagement element 74 of the extension element 40 serves to engage with a key 200. This ensures that the key 200 pulls the extension element 40 along when the key is removed.
  • An annular projection 22 is shown as two parts, in particular half-shell-like parts, whose inner surfaces 26 facing each other interact with the key 200 in the manner of a bayonet lock.
  • the parts are inserted into a circumferential groove 45 of the first rotor element 32, see Fig.4 .
  • Outwardly projecting projections 25 of the annular projection 22 fix the parts of the projection 22 in the stator body 11 in their relative position to one another and to the stator body 11.
  • the annular projection 22 cooperates with the inserted key 200, preferably in a bayonet-like manner, as a key withdrawal lock.
  • the projection 22 prevents the key 200 from being pressed by the spring 49 of the locking device 1 when the key 200 is inserted, so that the extension element 40 prematurely reaches the withdrawal position and thus the blocking element 51 reaches the blocking position or at least pushes the blocking element 31 out of the second position.
  • a locking element 61 is provided which holds the rotor 30 in position with respect to the stator 10 by engaging in a notch 69 (see Fig.4 ). In this case, rotation of the rotor 30 is inhibited by the locking element 61 in the stator such that the locking element 31 can assume the rest position.
  • the key channel 36 ends with a wall 36a.
  • the wall 36a is essentially closed except for a section that is necessary for the extension element 40 to project into the key channel. Because the extension element 40 is designed to be filigree, at least with the part of the extension element 40 that projects into the key channel 36, the wall 36a can Close the key channel 36 and protect the components located behind it, namely the locking element 31, the blocking element 51, the spring element 80, the actuator 52 and the control device 53.
  • the key channel 36 can be designed to be correspondingly short.
  • the contact elements 44 are spring-mounted on a housing 46.
  • the housing 46 also serves to axially fasten the rotor elements 32, 33 to one another.
  • the housing 46 comprises a first locking element 47, which locks into the first rotor element 32.
  • the first rotor element 32 comprises an edge 78.
  • the housing 46 comprises a second locking element 48, which locks into the second rotor element 33.
  • the second rotor element 33 comprises a groove (not shown).
  • the housing 46 provides the wall 36a.
  • the installation device 1 can also be used in other locking devices, for example in a half cylinder, a knob cylinder, a furniture cylinder or a padlock.
  • the coupling part 41 is missing.
  • locking devices according to the invention can be provided in which the driver 103 is rigidly attached to the rotor 30.
  • the driver 103 can also itself serve as a latch, e.g. in a furniture lock. If the coupling part 41 is missing, the extension element 40 continues to serve to hold the blocking element 51 against the spring force of the spring element 80 in the release position.
  • the driver 103 and the insert 105 can be formed integrally with each other.
  • stator insert element 13 and the stator body 11 can be formed in one piece. It is also conceivable that the casing 14 is missing and the stator body is fastened directly in the locking device housing 101.
  • the locking device 1 is not designed as a built-in device 1. Rather, the stator 10 is designed as a locking device housing 101. The rotor 30 can thus be designed to be inserted directly into a locking cylinder housing 101. The locking device housing 101 then takes over the function of the stator 10.
  • the locking element 31 and/or the actuator assembly can also be mounted in the stator 10 so that the locking element 31 is pressed against the rotor 30.
  • the transmission device 44 can, for example, be designed as a contactless coil.
  • the rotor 30 does not have to have multiple rotor elements 32, 33. Nevertheless, the rotor 30 can have sections with different diameters.

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  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Lock And Its Accessories (AREA)

Description

Die Erfindung betrifft eine elektromechanische Sperrvorrichtung gemäß dem Oberbegriff des Anspruches 1. Eine solche Sperrvorrichtung weist im Wesentlichen einen Stator und einen Rotor auf, wobei der Rotor im Stator drehbar gelagert ist. Weiterhin sind ein Sperrelement und ein Blockierelement vorgesehen, wobei das Sperrelement zwischen einer ersten Stellung und einer zweiten Stellung bewegbar ist, und wobei eine Ausgangsposition und eine Freigabeposition durch das Blockierelement einnehmbar ist, wobei in der Ausgangsposition das Blockierelement eine Bewegung des Sperrelements in die zweite Stellung verhindert und in der Freigabeposition das Blockierelement eine Bewegung des Sperrelements in die zweite Stellung ermöglicht. Ferner betrifft die Erfindung eine mit einer Sperrvorrichtung ausgestattete Schließvorrichtung gemäß Anspruch 15. Schließvorrichtungen gibt es in zahlreicher Ausführung beispielsweise in Form eines Schließzylinders für Türen, Tore oder beispielsweise Fenster.The invention relates to an electromechanical locking device according to the preamble of claim 1. Such a locking device essentially has a stator and a rotor, the rotor being rotatably mounted in the stator. Furthermore, a locking element and a blocking element are provided, the locking element being movable between a first position and a second position, and a starting position and a release position being occupable by the blocking element, in the starting position the blocking element preventing movement of the locking element into the second position and in the release position the blocking element enabling movement of the locking element into the second position. The invention also relates to a locking device equipped with a locking device according to claim 15. Locking devices are available in numerous designs, for example in the form of a locking cylinder for doors, gates or windows, for example.

Die EP 1 904 702 B1 offenbart eine Sperrvorrichtung mit einer Sperrscheibe als Blockierelement. Die Sperrscheibe wird von einem elektrischen Aktuator gedreht und kann eine Bewegung eines Sperrelements ermöglichen. Ein federbelastetes Drehelement ist in der Sperrvorrichtung vorgesehen, das bei einem nicht eingesteckten Schlüssel eine Drehung einer Sperrscheibe in eine Entsperrstellung verhindert und bei einem abziehenden Schlüssel durch eine Drehung des Drehelements die Ausgangsposition der Sperrscheibe wieder herstellt, wenn dieses nicht durch den elektrischen Aktuator möglich ist. Nachteilig ist, dass durch eine Drehung des Drehelements, z. B. durch einen Schlüssel ohne Schließberechtigung, die Drehung der Sperrscheibe freigegeben wird, so dass manipulativ die Sperrscheibe so gedreht werden kann, dass eine Freigabeposition der Sperrscheibe erreicht wird.The EP 1 904 702 B1 discloses a locking device with a locking disk as a blocking element. The locking disk is rotated by an electric actuator and can enable a movement of a locking element. A spring-loaded rotary element is provided in the locking device, which prevents a locking disk from rotating into an unlocking position when the key is not inserted and, when the key is removed, restores the starting position of the locking disk by rotating the rotary element if this is not possible with the electric actuator. The disadvantage is that rotating the rotary element, e.g. with a key without locking authorization, releases the rotation of the locking disk, so that the locking disk can be manipulated to reach a release position of the locking disk.

Aufgabe der Erfindung ist es daher, eine gattungsgemäße Sperrvorrichtung so weiterzuentwickeln, dass die Sperrvorrichtung, insbesondere das Blockierelement, mit einem sehr guten Manipulationsschutz versehen ist.The object of the invention is therefore to further develop a generic locking device in such a way that the locking device, in particular the blocking element, is provided with very good protection against manipulation.

Die Aufgabe wird gelöst durch den unabhängigen Anspruch 1. Vorteilhafte Weiterbildungen der Vorrichtung sind in den abhängigen Vorrichtungsansprüchen, der Beschreibung und in den Figuren angegeben. Ferner wird die Aufgabe auch durch eine Schließvorrichtung gemäß dem Anspruch 15 gelöst. Vorteilhafte Weiterbildungen der Schließvorrichtung sind in der Beschreibung und in den Figuren angegeben. Merkmale und Details, die in Zusammenhang mit der erfindungsgemäßen Sperrvorrichtung beschrieben sind, gelten dabei auch im Zusammenhang mit der erfindungsgemäßen Schließvorrichtung und umgekehrt.The object is achieved by independent claim 1. Advantageous further developments of the device are specified in the dependent device claims, the description and in the figures. Furthermore, the object is also achieved by a locking device according to claim 15. Advantageous further developments of the locking device are specified in the description and in the figures. Features and details that are described in connection with the locking device according to the invention also apply in connection with the locking device according to the invention and vice versa.

Mit der erfindungsgemäßen Sperrvorrichtung kann eine Sperrwirkung beispielsweise einer Tür, eines Tores oder eines Fensters oder dergleichen erzielbar sein.With the locking device according to the invention, a locking effect of, for example, a door, a gate or a window or the like can be achieved.

Erfindungsgemäß ist eine Sperrvorrichtung mit einem Stator und mit einem Rotor, einem Sperrelement und einem Blockierelement vorgesehen. Der Rotor ist in dem Stator drehbar gelagert. Das Sperrelement ist in einem ersten Bauteil, insbesondere linear beweglich, gelagert und zwischen der ersten Stellung und der zweiten Stellung bewegbar. Dabei ist eine Ausgangsposition und eine Freigabeposition durch das Blockierelement einnehmbar, wobei in der Ausgangsposition das Blockierelement eine Bewegung des Sperrelementes in die zweite Stellung verhindert und in der Freigabeposition das Blockierelement eine Bewegung des Blockierelementes in die zweite Stellung ermöglicht. Zur Lösung der der Erfindung zugrunde liegenden Aufgabe ist dabei vorgesehen, dass die Sperrvorrichtung ein Federelement umfasst, wobei das Federelement mit dem Blockierelement derart zusammenwirkt, dass bei einer Bewegung des Blockierelementes aus der Ausgangsposition in die Freigabeposition das Federelement zumindest zeitweise derart gespannt wird, dass das Federelement das Blockierelement in Richtung der Ausgangsposition zurückdrängt.According to the invention, a locking device is provided with a stator and with a rotor, a locking element and a blocking element. The rotor is rotatably mounted in the stator. The locking element is mounted in a first component, in particular linearly movable, and can be moved between the first position and the second position. A starting position and a release position can be assumed by the blocking element, wherein in the starting position the blocking element prevents a movement of the locking element into the second position and in the release position the blocking element enables a movement of the blocking element into the second position. To solve the problem underlying the invention, it is provided that the locking device comprises a spring element, wherein the spring element interacts with the blocking element in such a way that when the blocking element moves from the starting position into the release position, the spring element is at least temporarily tensioned in such a way that the spring element pushes the blocking element back towards the starting position.

Kerngedanke der Erfindung ist die Verwendung eines Federelementes zur Kraftbeaufschlagung des Blockierelementes, wobei das Federelement in der Ausgangsposition eine geringere Kraft auf das Blockierelement ausübt als in der Freigabeposition und/oder auf dem Weg in die Freigabeposition. Der Ausdruck "geringere Kraft" schließt "keine Kraft" mit ein.The core idea of the invention is the use of a spring element to apply force to the blocking element, whereby the spring element exerts a lower force on the blocking element in the starting position than in the release position and/or on the way to the release position. The expression "lower force" includes "no force".

Ein Vorteil der erfindungsgemäßen Sperrvorrichtung liegt darin, dass bei mechanischen Manipulationen, das Federelement das Blockierelement in die Ausgangsposition zurückdrängt. Hierdurch wird vermieden, dass das Blockierelement in die Freigabeposition gelangt, ohne dass eine Berechtigung für das Sperrelement vorliegt.An advantage of the locking device according to the invention is that in the event of mechanical manipulation, the spring element pushes the blocking element back into its starting position. This prevents the blocking element from reaching the release position without authorization for the blocking element.

Es kann vorgesehen sein, dass das Federelement unmittelbar an dem Blockierelement angreift.It can be provided that the spring element acts directly on the blocking element.

Die Sperrvorrichtung, insbesondere der Rotor, können mit einem Knauf oder mit einem Schlüssel verbunden oder verbindbar sein, um ein mechanisches Drehmoment auf den Rotor zu übertragen.The locking device, in particular the rotor, can be connected or connectable to a knob or a key in order to transmit a mechanical torque to the rotor.

Die Sperrvorrichtung kann einen Schlüsselkanal umfassen, um einen Schlüssel aufzunehmen. Bevorzugt ist das Blockierelement und/oder das Federelement hinter dem Schlüsselkanal angeordnet. "Hinter" ist hierbei aus Sicht des Benutzers, der die Sperrvorrichtung bedient, zu verstehen.The locking device can comprise a key channel to accommodate a key. Preferably, the blocking element and/or the spring element is arranged behind the key channel. "Behind" is to be understood here from the perspective of the user who operates the locking device.

Es ist denkbar, dass eine Wandung den Schlüsselkanal nach hinten begrenzt. "Hinten" ist hierbei aus Sicht des Benutzers, der die Sperrvorrichtung bedient, zu verstehen. Anders ausgedrückt wird das Ende des Schlüsselkanals durch eine Wandung begrenzt. Hinter der Wandung sind das Blockierelement, das Federelement und/oder das Sperrelement angeordnet. Die Wandung ist somit zwischen dem Blockierelement, dem Federelement und/oder dem Sperrelement einerseits und dem Schlüsselkanal andererseits angeordnet. Durch die Wandung sind das Blockierelement und/oder das Sperrelement vor Manipulationen geschützt.It is conceivable that a wall limits the key channel to the rear. "Rear" is to be understood from the perspective of the user who operates the locking device. In other words, the end of the key channel is limited by a wall. The blocking element, the spring element and/or the locking element are arranged behind the wall. The wall is thus arranged between the blocking element, the spring element and/or the locking element on the one hand and the key channel on the other. The wall protects the blocking element and/or the locking element from manipulation.

Das Blockierelement wird bevorzugt in der Freigabesposition in die Ausgangsposition vorgespannt. Die Freigabeposition kann beispielsweise als vorübergehende Position das Federelement stärker vorspannen als in der Ausgangsposition. Insbesondere kann die Ausgangsposition als monostabile Position oder als eine von bistabilen Positionen des Blockierelementes angesehen werden.The blocking element is preferably pre-tensioned in the release position into the starting position. The release position can, for example, be a temporary position that pre-tensions the spring element more than in the starting position. In particular, the starting position can be viewed as a monostable position or as one of bistable positions of the blocking element.

Vorteilhaft ist ferner, dass das Federelement dazu verwendet werden kann, nach einer Einnahme der Freigabeposition das Blockierelement mechanisch durch die Federkraft des Federelements wieder in die Ausgangsposition zurückzubewegen.It is also advantageous that the spring element can be used to mechanically move the blocking element back to its starting position by means of the spring force of the spring element after the release position has been assumed.

Die elektromechanische Sperrvorrichtung kann einen elektromechanischen Aktuator umfassen. Der Aktuator kann insbesondere als ein Elektromotor ausgebildet sein.The electromechanical locking device can comprise an electromechanical actuator. The actuator can in particular be designed as an electric motor.

Vorzugsweise dient der Aktuator dazu, es zu ermöglichen, dass das Blockierelement von der Ausgangsposition in die Freigabeposition bewegt, insbesondere gedreht wird. Hierbei kann der Aktuator das Blockierelement in die Freigabeposition bewegen und/oder das Federelement zu spannen, so dass das Federelement das Blockierelement in die Freigabeposition bewegt.Preferably, the actuator serves to enable the blocking element to be moved, in particular rotated, from the starting position to the release position. In this case, the actuator can move the blocking element into the release position and/or tension the spring element so that the spring element moves the blocking element into the release position.

Der Aktuator dient dazu, es zu ermöglichen, dass das Sperrelement in die zweite Stellung bewegt wird.The actuator serves to enable the locking element to be moved to the second position.

Der Aktuator kann dazu dienen, es zu ermöglichen, dass bei einer Rotation des Rotors ein Mitnehmer bewegbar ist. Hierzu kann eine Sperrung aufgehoben und/oder eine Kupplung eingestellt werden.The actuator can be used to enable a driver to move when the rotor rotates. To do this, a lock can be released and/or a clutch can be adjusted.

Vorzugsweise ist vorgesehen, dass in der ersten Stellung das Sperrelement eine Drehung des Rotors in dem Stator verhindert und in der zweiten Stellung das Sperrelement eine Drehung des Rotors in dem Stator ermöglicht.Preferably, in the first position, the locking element prevents rotation of the rotor in the stator and in the second position, the locking element enables rotation of the rotor in the stator.

Die Bewegung des Sperrelementes entspricht vorzugsweise einer Hubbewegung auf das Blockierelement zu und von diesem weg.The movement of the locking element preferably corresponds to a lifting movement towards and away from the blocking element.

Die Bewegung des Blockerielementes ist vorzugsweise eine Drehbewegung in einer Drehachse, auf die die Bewegung des Sperrelementes zu läuft beziehungsweise von dieser wegläuft.The movement of the blocking element is preferably a rotational movement in a rotational axis towards which the movement of the locking element runs or away from it.

Es kann vorgesehen sein, dass das Blockierelement auf der Ausgangswelle des als Elektromotor ausgebildeten Aktuators angeordnet ist. Vorzugsweise ermöglicht der Aktuator eine Drehung des Blockierelements von der Ausgangsposition in die Freigabeposition. Bevorzugt dreht der Aktuator das Blockierelement von der Ausgangsposition in die Freigabeposition. Dies erlaubt eine sehr raumsparende Ausführung.It can be provided that the blocking element is arranged on the output shaft of the actuator designed as an electric motor. The actuator preferably enables the blocking element to rotate from the starting position to the release position. The actuator preferably rotates the blocking element from the starting position to the release position. This allows for a very space-saving design.

Bevorzugt umfasst das Blockierelement eine Aussparung, in der das Sperrelement in der zweiten Stellung angeordnet ist. In der ersten Stellung hingegen befindet sich das Sperrelement außerhalb der Aussparung. In der Freigabeposition ist das Blockierelement so angeordnet, dass die Aussparung dem Sperrelement gegenüberliegt, so dass das Sperrelement in die Aussparung einfahren kann. In der Ausgangsposition ist die Aussparung hingegen so angeordnet, dass die Aussparung von dem Sperrelement wegzeigt, so dass das Sperrelement nicht in die Aussparung einfahren kann.The blocking element preferably comprises a recess in which the locking element is arranged in the second position. In the first position, however, the locking element is located outside the recess. In the release position, the blocking element is arranged such that the recess is opposite the locking element, so that the locking element can move into the recess. In the starting position, however, the recess is arranged such that the recess points away from the locking element, so that the locking element cannot move into the recess.

Vorzugsweise kann das Blockierelement Positionen zwischen der Freigabeposition und der Ausgangsposition einnehmen, in denen das Sperrelement nicht in die Aussparung einfahren kann. Positionen, in denen das Sperrelement nicht in die Aussparung einfahren kann, werden Blockierpositionen genannt. Die Ausgangsposition kann hierbei als eine der Blockierpositionen angesehen werden.Preferably, the blocking element can assume positions between the release position and the starting position in which the blocking element cannot move into the recess. Positions in which the blocking element cannot move into the recess are called blocking positions. The starting position can be regarded as one of the blocking positions.

Das Blockierelement kann beispielsweise scheibenförmig ausgebildet sein.The blocking element can, for example, be disc-shaped.

Es kann sein, dass das Blockierelement in dem Rotor angeordnet ist. Es kann sein, dass der Aktuator in dem Rotor angeordnet ist. Es kann sein, dass das Sperrelement in der zweiten Stellung in dem Rotor angeordnet ist.It may be that the blocking element is arranged in the rotor. It may be that the actuator is arranged in the rotor. It may be that the locking element is arranged in the rotor in the second position.

Der Stator umfasst bevorzugt eine Sperrelement-Ausnehmung, in der das Sperrelement in der ersten Stellung angeordnet ist. Die Rotation des Rotors wird insbesondere durch Eingriff des Sperrelements in die Sperrelement-Ausnehmung in der ersten Stellung des Sperrelements verhindert. In der zweiten Stellung befindet sich das Sperrelement außerhalb der Sperrelement-Ausnehmung.The stator preferably comprises a locking element recess in which the locking element is arranged in the first position. The rotation of the rotor is prevented in particular by the engagement of the locking element in the locking element recess in the first position of the locking element. In the second position, the locking element is located outside the locking element recess.

Vorzugsweise ist das Blockierelement ausgehend von der Ausgangsposition in eine erste Richtung, insbesondere in ein erste Drehrichtung, und in eine zweite Richtung, insbesondere in eine zweite Drehrichtung, bewegbar. Das Federelement und das Blockierelement wirken bevorzugt derart zusammen, dass das Federelement sowohl bei einer Bewegung in die erste Richtung als auch bei einer Bewegung in die zweite Richtung zumindest zeitweise gespannt wird. Hierdurch wird die mechanische Manipulation erschwert.Preferably, the blocking element can be moved from the starting position in a first direction, in particular in a first direction of rotation, and in a second direction, in particular in a second direction of rotation. The spring element and the blocking element preferably interact in such a way that the spring element is at least temporarily tensioned both during a movement in the first direction and during a movement in the second direction. This makes mechanical manipulation more difficult.

Das Blockierelement kann einen Zapfen zum Spannen des Federelements umfassen.The blocking element may comprise a pin for tensioning the spring element.

Das Federelement kann als eine Torsionsfeder ausgebildet sein.The spring element can be designed as a torsion spring.

Das Federelement kann einen Torsionsschenkel und einen von diesem abgewinkelten Anlageschenkel aufweisen, wobei der Anlageschenkel gegen einen Zapfen des Blockierelements vorspannbar ist.The spring element can have a torsion leg and a contact leg angled from the latter, wherein the contact leg can be preloaded against a pin of the blocking element.

Durch die Lage des Zapfens relativ zum Federelement kann ein Anstieg der Federspannung, d. h. eine Kennlinie der Federelementspannung, vorgegeben sein.The position of the pin relative to the spring element can determine an increase in the spring tension, i.e. a characteristic curve of the spring element tension.

Es kann vorgesehen sein, dass der Zapfen eine unrunde Außenkontur hat, durch die ein Anstieg der Federspannung, d.h. die Kennlinie der Federelementspannung, beeinflusst ist. Beispielsweise kann der Zapfen elliptisch, nierenförmig oder zapfenförmig ausgebildet sein.It can be provided that the pin has a non-circular outer contour, which influences an increase in the spring tension, i.e. the characteristic curve of the spring element tension. For example, the pin can be elliptical, kidney-shaped or pin-shaped.

Vorzugsweise ist vorgesehen, dass das Blockierelement in einer ersten Drehrichtung von der Ausgangsposition in die Freigabeposition um einen ersten Drehwinkel drehbar und das Blockierelement ist in einer zweiten Drehrichtung von der Ausgangsposition in die Freigabeposition um einen zweiten Drehwinkel drehbar ist. Der zweite Drehwinkel ist bevorzugt kleiner als der erste Drehwinkel.Preferably, it is provided that the blocking element is rotatable in a first direction of rotation from the starting position into the release position by a first angle of rotation and the blocking element is rotatable in a second direction of rotation from the starting position into the release position by a second angle of rotation. The second angle of rotation is preferably smaller than the first angle of rotation.

Es kann vorgesehen sein, dass die Rückstellkraft der Feder bei einer Drehung in die zweite Drehrichtung zeitweise stärker ist als zumindest bei einer Drehung in die erste Drehrichtung. Hierdurch wird in der zweiten Drehrichtung, in der durch mechanische Manipulation schneller die Freigabeposition erreichbar wäre, durch die stark ansteigende Federspannung die Manipulation erschwert.It can be provided that the restoring force of the spring is temporarily stronger when rotating in the second direction of rotation than at least when rotating in the first direction of rotation. As a result, in the second direction of rotation, in which the release position could be reached more quickly by mechanical manipulation, manipulation is made more difficult by the sharply increasing spring tension.

Bevorzugt ergibt sich eine zunehmende Spannung des Federelementes in einer Kennlinie der Federelementspannung, je weiter sich das Blockierelement aus der Ausgangsposition bewegt. Die Kennlinie kann insbesondere in der zweiten Drehrichtung stärker ansteigen.Preferably, an increasing tension of the spring element results in a characteristic curve of the spring element tension, the further the blocking element moves from the starting position. The characteristic curve can increase more sharply in the second direction of rotation in particular.

Vorzugsweise umfasst die Sperrvorrichtung den elektromechanischen Aktuator. Der Aktuator kann ausgebildet sein, das Blockierelement in Richtung der Freigabeposition entgegen der Kraft des Federelements zu bewegen, insbesondere zu drehen. Bevorzugt wird dabei das Federelement derart gespannt, dass das Federelement das Blockierelement in die Ausgangsposition zurückdrehen kann. Folglich ist das Federelement so ausgebildet, dass das Blockierelement von der Freigabeposition in eine Blockierposition und danach in die Ausgangsposition bewegt, insbesondere gedreht, wird. Hierdurch kann der Aktuator das Federelement so spannen, dass eine mechanische Rückstellung in die Ausgangsposition des Blockierelements erfolgt.The locking device preferably comprises the electromechanical actuator. The actuator can be designed to move, in particular to rotate, the blocking element in the direction of the release position against the force of the spring element. The spring element is preferably tensioned in such a way that the spring element can rotate the blocking element back to the starting position. Consequently, the spring element is designed in such a way that the blocking element is moved, in particular rotated, from the release position to a blocking position and then to the starting position. The actuator can thereby tension the spring element in such a way that a mechanical return to the starting position of the blocking element takes place.

Die Sperrvorrichtung kann einen Anschlag umfassen. Mit weiterem Vorteil liegt das Blockierelement in der Freigabeposition an dem Anschlag an. Hierbei kann dasThe locking device can comprise a stop. With further advantage, the blocking element rests against the stop in the release position. In this case, the

Federelement das Blockierelement gegen den Anschlag drücken. Zusätzlich oder alternativ kann ein Zurückprellen des Blockierelementes von dem Anschlag während der Bewegung in die Freigabeposition verhindert oder reduziert werden. Das Federelement stabilisiert insofern das Blockierelement in seiner Drehposition in der Anlage gegen den Anschlag.Spring element presses the blocking element against the stop. Additionally or alternatively, the blocking element can be prevented or reduced from bouncing back from the stop during movement into the release position. The spring element thus stabilizes the blocking element in its rotational position in the system against the stop.

Bevorzugt ist vorgesehen, dass der Anschlag hinter dem Schlüsselkanal angeordnet ist. Die Wandung ist zwischen dem Anschlag und dem Schlüsselkanal angeordnet.Preferably, the stop is arranged behind the key channel. The wall is arranged between the stop and the key channel.

Das Blockierelement kann mit einer Haltenocke des Blockierelements an dem Anschlag zur Anlage gelangen, bei der die Freigabeposition des Blockierelementes erreicht ist. Das Federelement drückt das Blockierelement mit der Haltenocke gegen den Anschlag, um die Freigabeposition aufrecht zu erhalten.The blocking element can come into contact with a retaining cam of the blocking element on the stop, at which the release position of the blocking element is reached. The spring element presses the blocking element with the retaining cam against the stop in order to maintain the release position.

Ein zusätzlicher Vorteil der Anordnung eines Federelementes in Wechselwirkung mit dem Blockierelement, insbesondere des Drückens des Blockierelements gegen den Anschlag in der Freigabesposition, kann darin liegen, dass der elektromechanische Aktuator auf lediglich einfache Weise angesteuert werden muss, beispielsweise mit einer nur zeitweisen Bestromung. Dadurch kann das Blockierelement verdreht werden, und das Federelement sorgt für die Einnahme und Aufrechterhaltung der gewünschten Freigabeposition des Blockierelementes, insbesondere also für die Aufrechterhaltung einer entsprechenden Drehposition des Blockierelementes. Sobald das Federelement das Blockierelement in die gewünschte Freigabeposition bringen, insbesondere verdrehen kann oder gebracht, insbesondere verdreht, hat, kann die Bestromung des elektromechanischen Aktuators beendet werden, und das Federelement sorgt für die Aufrechterhaltung der Freigabeposition des Blockierelements.An additional advantage of arranging a spring element in interaction with the blocking element, in particular pressing the blocking element against the stop in the release position, can be that the electromechanical actuator only needs to be controlled in a simple manner, for example with only temporary energization. This allows the blocking element to be rotated and the spring element ensures that the desired release position of the blocking element is assumed and maintained, in particular that a corresponding rotational position of the blocking element is maintained. As soon as the spring element can bring the blocking element into the desired release position, in particular rotate it, or has brought it, in particular rotated it, the energization of the electromechanical actuator can be stopped and the spring element ensures that the release position of the blocking element is maintained.

Bevorzugt ist vorgesehen, dass der Anschlag, bevorzugt durch eine mechanische Bewegung eines Benutzers, besonders bevorzugt in Wirkverbindung mit einem Schlüssel, aus seiner Position der Anlage des Blockierelementes herausbewegt wird, so dass das Blockierelement wieder in die Ausgangsposition zurückbewegt wird.It is preferably provided that the stop is moved out of its position of the blocking element, preferably by a mechanical movement of a user, particularly preferably in operative connection with a key, so that the blocking element is moved back into the starting position.

Es kann vorgesehen sein, dass dann, wenn die Haltenocke des Blockierelements nicht mehr gegen den Anschlag anliegt, indem der Anschlag beispielsweise zurückgezogen wird und die Anlage der Haltenocke vom Anschlag gelöst wird und frei drehen kann, das Blockierelement von der Freigabeposition in eine Blockierposition, insbesondere in die Ausgangsposition, bewegt wird.It can be provided that when the retaining cam of the blocking element no longer rests against the stop, for example by the stop being retracted and the retaining cam being released from the stop and being able to rotate freely, the blocking element is moved from the release position into a blocking position, in particular into the starting position.

Vorzugsweise ist vorgesehen, dass der Aktuator das Blockierelement ausgehend von der Ausgangsposition unter zunehmender Spannung des Federelements in Richtung der Freigabeposition bis über einen Totpunkt dreht, wobei nach Überschreiten eines Totpunkts das Federelement das Blockierelement in die Freigabeposition bewegt oder mitbewegt.Preferably, it is provided that the actuator rotates the blocking element starting from the starting position under increasing tension of the spring element in the direction of the release position until it reaches a dead center, wherein after a dead center is exceeded, the spring element moves the blocking element into the release position or moves it along with it.

Es kann vorgesehen sein, dass die Federkraft des Federelementes bei der Verdrehung des Blockierelements von der Ausgangsposition in die Freigabestellung einen Totpunkt durchläuft. Vor dem Totpunkt drückt das Federelement das Blockierelement in die Ausgangsposition und nach dem Totpunkt drückt das Federelement das Blockierelement in die Freigabeposition. So kann das Blockierelement in der Ausgangsposition ebenso ruhen wie in der Freigabeposition gegen den Anschlag. Die Aktivierung des Aktuators ist nur zwingend notwendig, um das Blockierelement von der ersten Ausgangsposition über den Totpunkt zu verdrehen. Die weiteren Verdrehungen ermöglicht oder unterstützt das Federelement. Der Aktuator muss daher das Blockierelement nur bis über den Totpunkt vordrehen, während das Federelement gespannt wird, wobei die endgültige Drehung des Blockierelementes in die Freigabeposition schließlich vom Federelement bewirkt oder mitbewirkt wird. Hierdurch ist es möglich, den Aktuator weniger genau ansteuern zu müssen.It can be provided that the spring force of the spring element passes through a dead center when the blocking element is rotated from the starting position to the release position. Before the dead center, the spring element presses the blocking element into the starting position and after the dead center, the spring element presses the blocking element into the release position. In this way, the blocking element can rest in the starting position just as it can in the release position against the stop. Activation of the actuator is only absolutely necessary in order to rotate the blocking element from the first starting position past the dead center. The spring element enables or supports further rotations. The actuator therefore only has to rotate the blocking element past the dead center while the spring element is tensioned, with the final rotation of the blocking element into the release position ultimately being caused or co-caused by the spring element. This makes it possible to control the actuator less precisely.

Ein weiterer Vorteil wird erreicht, indem die Drehbewegung des Blockierelementes von der Ausgangsposition in die Freigabeposition und von der Freigabeposition zurück in die Ausgangsposition des Blockierelementes in derselben Drehrichtung erfolgt. Der Vorteil ist insbesondere eine einfache Ansteuerung des elektromechanischen Aktors, der als Motor ausgeführt sein kann und der immer in die gleiche Bewegungsrichtung, insbesondere die gleiche Drehrichtung, zur Drehbewegung aktiviert wird.A further advantage is achieved in that the rotational movement of the blocking element from the starting position to the release position and from the release position back to the starting position of the blocking element takes place in the same direction of rotation. The advantage is in particular a simple control of the electromechanical actuator, which can be designed as a motor and which is always activated for rotation in the same direction of movement, in particular the same direction of rotation.

Die Sperrvorrichtung umfasst ferner ein Verlängerungselement, wobei das Verlängerungselement zwischen einer Einschubposition und einer Abzugsposition bewegbar ist.The locking device further comprises an extension element, wherein the extension element is movable between an insertion position and a withdrawal position.

Das Verlängerungselement nimmt die Einschubposition insbesondere bei einem eingesteckten Schlüssel ein, und wird der Schlüssel wieder abgezogen, so wird das Verlängerungselement in die Abzugsposition zurückgeführt. Somit der Wirkungskreis des Schlüssels durch das Verlängerungselement verlängert. Bevorzugt durchragt das Verlängerungselement die Wandung. Somit kann das Verlängerungselement einerseits mit dem Schlüssel, andererseits mit durch die Wandung geschützten Komponenten, insbesondere dem Blockierelement, wechselwirken.The extension element assumes the insertion position, particularly when a key is inserted, and when the key is removed again, the extension element is returned to the removal position. The range of action of the key is thus extended by the extension element. The extension element preferably extends through the wall. The extension element can therefore interact with the key on the one hand and with components protected by the wall on the other, in particular the blocking element.

Das Verlängerungselement verbleibt nach einem Schlüsselabzug in der Sperrvorrichtung.The extension element remains in the locking device after the key is removed.

Das Verlängerungselement ist bevorzugt dazu ausgebildet, in axialer Richtung zwischen der Abzugsposition und der Einschubposition bewegt zu werden, insbesondere linear verschoben zu werden. Beispielsweise kann der Rotor eine Führung für das Verlängerungselement umfassen.The extension element is preferably designed to be moved in the axial direction between the withdrawal position and the insertion position, in particular to be displaced linearly. For example, the rotor can comprise a guide for the extension element.

Wenn sich das Verlängerungselement linear bewegt, kann das Verlängerungselement alternativ als Schieber bezeichnet werden.If the extension element moves linearly, the extension element can alternatively be referred to as a slider.

Das Verlängerungselement und das Blockierelement können so ausgebildet sein, dass das Verlängerungselement in der Einschubposition eine Bewegung des Blockierelements aus der Freigabeposition in eine Blockierposition, insbesondere in die Ausgangsposition, verhindert, wobei insbesondere das Verlängerungselement blockiert, dass das Blockierelement aus der Freigabeposition in eine Blockierposition durch die Kraft des Federelements bewegt wird.The extension element and the blocking element can be designed such that the extension element in the inserted position prevents a movement of the blocking element from the release position into a blocking position, in particular into the starting position, wherein in particular the extension element blocks the blocking element from being moved from the release position into a blocking position by the force of the spring element.

Hierzu weist das Verlängerungselement vorzugsweise den Anschlag auf, während das Blockierelement die Haltenocke umfasst, die in der Freigabeposition durch das Federelement gegen den Anschlag gehalten wird.For this purpose, the extension element preferably has the stop, while the blocking element comprises the retaining cam, which is held against the stop in the release position by the spring element.

Vorzugsweise sind das Verlängerungselement und das Blockierelement so ausgebildet, dass das Verlängerungselement in der Abzugsposition eine Bewegung des Blockierelements aus der Freigabeposition in eine Blockierposition, insbesondere in die Ausgangsposition, freigibt. Das Verlängerungselement befindet sich bevorzugt in der Abzugsposition außer Wirkverbindung mit dem Blockierelement, so dass eine Bewegung des Blockierelements aus der Freigabeposition in die Blockierposition durch die Kraft des Federelements erfolgt.Preferably, the extension element and the blocking element are designed such that the extension element in the trigger position enables a movement of the blocking element from the release position into a blocking position, in particular into the starting position. The extension element is preferably not operatively connected to the blocking element in the trigger position, so that a movement of the blocking element from the release position into the blocking position occurs due to the force of the spring element.

In der Einschubposition kann die Haltenocke gegen den Anschlag zur Anlage gelangen, wohingegen in der Abzugsposition des Verlängerungselementes die Haltenocke frei rotieren kann, so dass das Blockierelement nicht durch den Anschlag gehalten werden kann, und das Blockierelement nicht die Freigabeposition innehalten kann.In the insertion position, the holding cam can come into contact with the stop, whereas in the withdrawal position of the extension element, the holding cam can rotate freely so that the blocking element cannot be held by the stop and the blocking element cannot maintain the release position.

Dadurch wird insbesondere sichergestellt, dass die Freigabeposition des Blockierelementes nur dann eingenommen werden kann, wenn das Verlängerungselement in der Einschubposition angeordnet ist, insbesondere wenn ein Schlüssel eingesteckt ist.This ensures in particular that the release position of the blocking element can only be assumed when the extension element is arranged in the insertion position, in particular when a key is inserted.

Das Blockierelement dreht bevorzugt bei jeder Aktivierung des Akuators über einen Teilkreis als Teil einer Volldrehung in einer Drehrichtung, wobei erst das Federelement die exakte Ausrichtung des Blockierelementes in die Freigabestellung schafft, wenn die Haltenocke am Anschlag anschlägt. Fehlt der Anschlag, insbesondere wenn das Verlängerungselement aus dem Bewegungsraum der Haltenocke herausgeführt wird, so wird durch die Kraft des Federelements die Ausgangsposition eingenommen, die vom Federelement als stabile Lage erreicht wird.The blocking element preferably rotates over a partial circle as part of a full rotation in one direction of rotation each time the actuator is activated, whereby the spring element only creates the exact alignment of the blocking element in the release position when the retaining cam hits the stop. If the stop is missing, especially if the extension element is guided out of the movement area of the retaining cam, the force of the spring element causes the starting position to be assumed, which is achieved by the spring element as a stable position.

Wird also beispielsweise bei einer elektrischen Manipulation der elektromechanische Aktor aktiviert, ohne dass der Schlüssel eingesteckt ist und das Verlängerungselement mit dem Anschlag in den Bewegungsraum in der Haltenocke gefahren wird, so wird das Blockierelement zwar in Drehbewegung versetzt, jedoch wird stets immer wieder die Ausgangsposition erreicht, in der das Sperrelement nicht aus der Sperrstellung heraus geführt werden kann und die sperrende Ausgangsposition wird vom Federelement unter Einwirkung auf das Blockierelement aufrecht erhalten.If, for example, the electromechanical actuator is activated during electrical manipulation without the key being inserted and the extension element with the stop is moved into the movement space in the holding cam, the blocking element is set in rotation, but the starting position is always reached again, in which the blocking element cannot be moved out of the blocking position. can be guided and the locking starting position is maintained by the spring element under the influence of the blocking element.

Das Blockierelement wird vorzugsweise durch das Federelement zumindest mit einer Kraftkomponente senkrecht zur axialen Richtung gegen das Verlängerungselement gedrückt, während das Verlängerungselement eine Bewegung des Blockierelements von der Freigabeposition in eine Blockierposition blockiert. In dieser Stellung befindet sich bevorzugt die Haltenocke des Blockierelementes in Anlage gegen den Anschlag. Hierdurch ist es möglich, dass die Einschubposition eine Fehlertoleranz aufweisen kann.The blocking element is preferably pressed against the extension element by the spring element with at least one force component perpendicular to the axial direction, while the extension element blocks a movement of the blocking element from the release position to a blocking position. In this position, the retaining cam of the blocking element is preferably in contact with the stop. This makes it possible for the insertion position to have an error tolerance.

Das Verlängerungselement blockiert bevorzugt in der Einschubposition eine Bewegung des Blockierelementes aus der Ausgangsposition in die Freigabeposition in zumindest einer Drehrichtung, insbesondere zumindest in der zweiten Drehrichtung. Hierdurch wird ein zusätzlicher Manipulationsschutz erreicht.In the inserted position, the extension element preferably blocks a movement of the blocking element from the starting position to the release position in at least one direction of rotation, in particular at least in the second direction of rotation. This provides additional protection against manipulation.

Das Verlängerungselement dient weiterhin dazu, ein Kupplungsteil in eine Wirkverbindung mit einem Mitnehmer zu bewegen.The extension element also serves to move a coupling part into an operative connection with a driver.

Insbesondere kann das Kupplungsteil bei einer Bewegung des Verlängerungselements von der Einschubposition in die Abzugsposition in der Wirkverbindung mit dem Mitnehmer verbleiben. Zusätzlich oder alternativ kann das Verlängerungselement das Kupplungsteil ohne Formschluss in axialer Richtung bewegen.In particular, the coupling part can remain in the operative connection with the driver when the extension element moves from the insertion position to the withdrawal position. Additionally or alternatively, the extension element can move the coupling part in the axial direction without positive locking.

Das Verlängerungselement kann so ausgebildet sein und/oder kann mit dem Kupplungsteil so zusammenwirken, dass das Verlängerungselement in der Einschubposition eine Bewegung eines Kupplungsteils aus der Wirkverbindung mit dem Mitnehmer verhindert und in der Auszugsposition ein Aufheben der Wirkverbindung eines Kupplungsteils mit dem Mitnehmer zulässt.The extension element can be designed and/or can interact with the coupling part in such a way that the extension element prevents a movement of a coupling part out of the operative connection with the driver in the inserted position and allows the operative connection of a coupling part with the driver to be canceled in the extended position.

Vorzugsweise ist vorgesehen, dass ein Drehmoment von dem Rotor auf das Kupplungsteil übertragbar ist, ohne dass das Verlängerungselement das Drehmoment überträgt. Hierdurch ist es möglich, das Verlängerungselement filigran auszubilden und Bauraum zu sparen.Preferably, it is provided that a torque can be transmitted from the rotor to the coupling part without the extension element transmitting the torque. This makes it possible to design the extension element in a filigree manner and to save installation space.

Die Sperrvorrichtung kann eine elektronische Steuerungsvorrichtung, insbesondere einen Prozessor und/oder einen Controller, umfassen, um den Aktuator anzusteuern. Die Steuerungsvorrichtung kann ferner einen elektronischen Speicher umfassen.The locking device can comprise an electronic control device, in particular a processor and/or a controller, to control the actuator. The control device can further comprise an electronic memory.

Die Sperrvorrichtung umfasst ferner eine Übertragungsvorrichtung zur Übertragung von Daten und/oder elektrischer Energie von einem Schlüssel auf die Sperrvorrichtung.The locking device further comprises a transmission device for transmitting data and/or electrical energy from a key to the locking device.

Die Übertragungsvorrichtung kann als eine Sende- und Empfangseinheit, als ein biometrischer Sensor, als ein Tastenfeld zur PIN-Eingabe und/oder als ein Kontaktelement zur elektrischen Kontaktierung eines insbesondere elektronischen Schlüssels ausgebildet sein. Die Sende- und Empfangseinheit kann ausgebildet sein, mit einer mobilen Einheit, insbesondere einem Mobiltelefon oder einer Karte, durch kabellose Nahbereichskommunikation, insbesondere RFID oder Bluetooth Low Energy, zu kommunizieren.The transmission device can be designed as a transmitting and receiving unit, as a biometric sensor, as a keypad for PIN entry and/or as a contact element for electrically contacting a key, in particular an electronic key. The transmitting and receiving unit can be designed to communicate with a mobile unit, in particular a mobile phone or a card, by wireless short-range communication, in particular RFID or Bluetooth Low Energy.

Die Übertragungsvorrichtung kann dazu dienen, elektronische Daten zu senden und/oder zu empfangen, die es ermöglichen, eine Berechtigung eines Benutzers zum Entriegeln des räumlichen Bereichs festzustellen. Beispielsweise kann die Übertragungsvorrichtung einen Berechtigungscode und/oder ein Berechtigungszeitfenster empfangen, der von der Steuerungsvorrichtung überprüft wird. Ist die Überprüfung mit einem positiven Ergebnis abgeschlossen, kann der Aktuator angesteuert werden, um eine Bewegung des Blockierelements zu ermöglichen. Hierdurch kann das Sperrelement in die zweite Stellung gelangen.The transmission device can be used to send and/or receive electronic data that make it possible to determine whether a user is authorized to unlock the spatial area. For example, the transmission device can receive an authorization code and/or an authorization time window that is checked by the control device. If the check is completed with a positive result, the actuator can be controlled to enable movement of the blocking element. This allows the locking element to move into the second position.

Alternativ kann die Übertragungsvorrichtung einen Öffnungsbefehl übertragen. Aufgrund des Öffnungsbefehls kann der Aktuator angesteuert werden, um eine Bewegung des Blockierelements zu ermöglichen. Beispielsweise kann aufgrund des Öffnungsbefehls das Sperrelement elektromechanisch in die zweite Stellung bewegt werden oder elektromechanisch die Bewegung in die zweite Stellung freigegeben werden.Alternatively, the transmission device can transmit an opening command. Based on the opening command, the actuator can be controlled to enable movement of the blocking element. For example, based on the opening command, the blocking element can be moved electromechanically into the second position or the movement into the second position can be released electromechanically.

Die Übertragungsvorrichtung dient insbesondere zusätzlich oder alternativ dazu, elektrische Energie auf die Sperrvorrichtung zu übertragen. Die elektrische Energie kann zur Betätigung des Aktuators und/oder für die Steuerungsvorrichtung vorgesehen sein.The transmission device serves in particular additionally or alternatively to transmit electrical energy to the locking device. The electrical energy can be provided for operating the actuator and/or for the control device.

Vorzugsweise ist die Sperrvorrichtung frei von einer mechanischen Codierung. D. h. die Schließberechtigung ergibt sich ausschließlich durch die elektronischen Daten, die mittels der Übertragungsvorrichtung von der Sperrvorrichtung gesendet und/oder empfangen werden.Preferably, the locking device is free of mechanical coding. This means that the locking authorization is based solely on the electronic data that is sent and/or received from the locking device via the transmission device.

Vorzugsweise ist bei abgezogenem Schlüssel die Übertragung von Daten und/oder elektrischer Energie unterbrochen. Es kann damit auch keine Aktivierung des Aktuators erfolgen. Dadurch dass die Übertragung von elektrischer Energie unterbrochen ist, ist vorzugsweise vorgesehen, das Blockierelement durch das Federelement mechanisch in die Ausgangsposition zuüruckzustellen.Preferably, when the key is removed, the transmission of data and/or electrical energy is interrupted. This means that the actuator cannot be activated. Because the transmission of electrical energy is interrupted, it is preferably provided that the blocking element is mechanically returned to the starting position by the spring element.

Zusätzlich oder alternativ kann vorgesehen sein, dass das Verlängerungselement formschlüssig in den Schlüssel eingreift, so dass bei einem Schlüsselabzug stets eine Bewegung des Verlängerungselements von der Einschubposition in die Abzugsposition erfolgt. Hierdurch ist sichergestellt, dass das Verlängerungselement bei jedem Schlüsselabzug von der Einschubposition in die Abzugsposition bewegt zu werden. Hierdurch wird sichergestellt, dass das Verlängerungselement die Bewegung des Blockierelements aus der Freigabeposition in eine Blockierposition, insbesondere in die Ausgangsposition, durch das Federelement freigibt.Additionally or alternatively, it can be provided that the extension element engages the key in a form-fitting manner, so that when the key is removed, the extension element always moves from the insertion position to the withdrawal position. This ensures that the extension element is moved from the insertion position to the withdrawal position each time the key is removed. This ensures that the extension element supports the movement of the Blocking element from the release position into a blocking position, in particular into the starting position, by the spring element.

Die Sperrvorrichtung dient bevorzugt zum Verriegeln eines räumlichen Bereichs. Der räumliche Bereich ist insbesondere feststehend. Beispielsweise kann es sich bei dem räumlichen Bereich um einen Gebäuderaum, beispielsweise um ein Büro, eine Wohnung oder ein Haus oder um einen Aufbewahrungsraum, beispielsweise einen Schrank, einen Briefkasten, eine Truhe, einen Kasten, einen Tresor oder eine Schublade, handeln. Insbesondere dient die Sperrvorrichtung dazu, in einem insbesondere türenartigen Verschlusselement, beispielsweise einer Haustür, einer Wohnungstür, einer Zimmertür, einer Schranktür, einer Briefkastenklappe oder der Vorderseite einer Schublade eingesetzt zu werden oder an einem Verschlusselement angebracht zu werden. Bevorzugt ist der Stator der Sperrvorrichtung hierbei zumindest mittelbar mit dem Verschlusselement drehfest verbunden.The locking device is preferably used to lock a spatial area. The spatial area is in particular fixed. For example, the spatial area can be a room in a building, for example an office, an apartment or a house, or a storage room, for example a cupboard, a mailbox, a chest, a box, a safe or a drawer. In particular, the locking device is used to be used in a particularly door-like locking element, for example a front door, an apartment door, a room door, a cupboard door, a mailbox flap or the front of a drawer, or to be attached to a locking element. The stator of the locking device is preferably connected at least indirectly to the locking element in a rotationally fixed manner.

Die Sperrvorrichtung kann einen Mitnehmer aufweisen oder mit einem Mitnehmer verbindbar sein. Eine Drehung des Rotors der Sperrvorrichtung dient dazu, den Mitnehmer zu drehen.The locking device can have a driver or can be connectable to a driver. A rotation of the rotor of the locking device serves to rotate the driver.

Der Mitnehmer ist vorzugsweise als Exzenter ausgebildet. Der Mitnehmer kann als Schließnase ausgebildet sein. Es kann sein, dass eine Drehung des Mitnehmers in einer ersten Richtung dazu dient, das Verschlusselement von einem entriegelten Zustand in einen verriegelten Zustand zu überführen. Es kann auch sein, dass eine Drehung des Mitnehmers in eine zweite Richtung dazu dient, das Verschlusselement von einem verriegelten in einen entriegelten Zustand zu überführen. Beispielsweise kann die Sperrvorrichtung zumindest mittelbar in ein Einsteckschloss eingesetzt werden. Eine Drehung des Mitnehmers kann in diesem Fall eine Bewegung des Riegels des Einsteckschlosses bewirken. So kann die Drehung des Mitnehmers in eine erste Richtung z. B. ein Ausfahren des Riegels und damit ein Herbeiführen des verriegelten Zustands des Verschlusselements bewirken. Eine Drehung des Mitnehmers in eine zweite Richtung kann z.B. ein Einfahren des Riegels und damit ein Herbeiführen des entriegelten Zustands des Verschlusselements bewirken.The driver is preferably designed as an eccentric. The driver can be designed as a locking nose. It can be that a rotation of the driver in a first direction serves to transfer the locking element from an unlocked state to a locked state. It can also be that a rotation of the driver in a second direction serves to transfer the locking element from a locked state to an unlocked state. For example, the locking device can be used at least indirectly in a mortise lock. In this case, a rotation of the driver can cause the bolt of the mortise lock to move. For example, the rotation of the driver in a first direction can cause the bolt to extend and thus bring about the locked state of the locking element. A rotation of the driver in a second direction can, for example, cause the bolt to retract and thus bring about the unlocked state of the locking element.

Alternativ kann der Mitnehmer selbst als Riegel wirken. So kann die Drehung des Mitnehmers in eine erste Richtung z.B. die Einnahme einer Verriegelungsposition des Mitnehmers bewirken. Die Drehung des Mitnehmers in eine zweite Richtung z.B. kann die Einnahme einer Entriegelungsposition des Mitnehmers bewirken.Alternatively, the driver itself can act as a latch. For example, rotating the driver in a first direction can cause the driver to assume a locking position. Rotating the driver in a second direction can cause the driver to assume an unlocking position.

In einer bevorzugten Ausführungsform ist die Sperrvorrichtung als eine Einbauvorrichtung ausgebildet. Die Einbauvorrichtung ist ausgebildet, in ein Schließvorrichtungsgehäuse einer Schließvorrichtung eingesetzt zu werden. Bevorzugt wird die Einbauvorrichtung in dem Schließvorrichtungsgehäuse mittels eines Befestigungselements drehfest befestigt. Somit bilden im montierten Zustand der Schließvorrichtung der Stator der Sperrvorrichtung und das Schließvorrichtungsgehäuse eine gemeinsame feststehende Einheit. Das Schließvorrichtungsgehäuse dient insbesondere zum Einsetzen in oder Anbringen an dem Verschlusselement. Die Schließvorrichtung kann beispielsweise als Schließzylinder, insbesondere als Doppelzylinder oder Halbzylinder, als Knaufzylinder, als Möbelzylinder oder als Hängeschloss ausgebildet sein.In a preferred embodiment, the locking device is designed as a built-in device. The built-in device is designed to be inserted into a locking device housing of a locking device. Preferably, the built-in device is fixed in the locking device housing in a rotationally fixed manner by means of a fastening element. Thus When the locking device is assembled, the stator of the locking device and the locking device housing form a common fixed unit. The locking device housing is used in particular for insertion into or attachment to the locking element. The locking device can be designed, for example, as a locking cylinder, in particular as a double cylinder or half cylinder, as a knob cylinder, as a furniture cylinder or as a padlock.

Ist die Sperrvorrichtung als Einbauvorrichtung ausgebildet, so ist vorzugsweise vorgesehen, dass die Sperrvorrichtung einen Verbindungsabschnitt umfasst, um mit einem Mitnehmer verbunden zu werden.If the locking device is designed as a built-in device, it is preferably provided that the locking device comprises a connecting section in order to be connected to a driver.

Alternativ kann es vorgesehen sein, dass die Sperrvorrichtung selbst als Schließzylinder, insbesondere als Doppelzylinder oder Halbzylinder, als Knaufzylinder, als Möbelzylinder oder als Hängeschloss ausgebildet ist. Hierbei dient der Stator zugleich als Gehäuse zum Einsetzen in oder Anbringen an dem Verschlusselement.Alternatively, the locking device itself can be designed as a locking cylinder, in particular as a double cylinder or half cylinder, as a knob cylinder, as a furniture cylinder or as a padlock. In this case, the stator also serves as a housing for insertion into or attachment to the locking element.

Alternativ kann die Sperrvorrichtung für ein Schaltelement vorgesehen sein. So kann das Schaltelement nur von berechtigten Benutzern bedient werden. Ein Mitnehmer des Schaltelements kann hierbei dazu dienen, einen Schalter oder Taster zu betätigen. Somit kann die Sperrvorrichtung in einem Schaltelement, insbesondere in einem Schlüsselschalter, eingesetzt sein oder einem Schlüsselschalter entsprechen.Alternatively, the locking device can be provided for a switching element. This means that the switching element can only be operated by authorized users. A driver of the switching element can be used to operate a switch or button. The locking device can therefore be used in a switching element, in particular in a key switch, or can correspond to a key switch.

Insbesondere kann vorgesehen sein, dass, wenn sich das Blockierelement in der Freigabeposition befindet, die Drehung des Rotors eine Bewegung des Sperrelements in die zweite Stellung ermöglicht, insbesondere hervorruft. Hierbei drängt insbesondere eine erste Anlagefläche des Stators das Sperrelement in die zweite Stellung.In particular, it can be provided that when the blocking element is in the release position, the rotation of the rotor enables, in particular causes, a movement of the blocking element into the second position. In this case, in particular a first contact surface of the stator pushes the blocking element into the second position.

Eine zweite Anlagefläche des Stators ist derart insbesondere ausgebildet, dass das Sperrelement durch die Anlage an der zweiten Anlagefläche von dem Blockierelement beabstandet ist. Hierdurch kann eine Beschädigung der Sperrvorrichtung verhindert werden.A second contact surface of the stator is designed in particular such that the locking element is spaced apart from the blocking element by the contact with the second contact surface. This can prevent damage to the locking device.

Das Blockierelement und das Sperrelement können in der ersten Stellung des Sperrelements beabstandet voneinander sein, insbesondere wenn das Sperrelement unbelastet ist und/oder wenn das Sperrelement an der zweiten Anlagefläche anliegt.The blocking element and the locking element can be spaced apart from one another in the first position of the locking element, in particular when the locking element is unloaded and/or when the locking element rests against the second contact surface.

Insbesondere dadurch, dass die zweite Anlagefläche das Sperrelement von dem Blockierelement beanstandet, ist es möglich, das Blockierelement einseitig zu lagern. So kann die Ausgangswelle nur einseitig in dem Aktuator gelagert sein.In particular, because the second contact surface separates the locking element from the blocking element, it is possible to mount the blocking element on one side. This means that the output shaft can only be mounted on one side in the actuator.

Insbesondere, um das Blockierelement und das Sperrelement bei Anlage an der zweiten Anlagefläche zu beabstanden, kann das Sperrelement eine vorspringende Kopffläche umfassen. Die zweite Anlagefläche kann dazu korrespondierend ausgebildet sein. Die Kopffläche und die zweite Anlagefläche sind derart ausgebildet, dass sich bei Anlage des Sperrelements an der zweiten Anlagefläche die zweite Anlagefläche zwischen der Kopffläche und dem Blockierelement befindet.In particular, in order to space the blocking element and the locking element when they rest on the second contact surface, the locking element can comprise a projecting head surface. The second contact surface can be designed to correspond to this. The The head surface and the second contact surface are designed such that when the locking element rests on the second contact surface, the second contact surface is located between the head surface and the blocking element.

Alternativ oder zusätzlich definiert die Bewegung des Sperrelements zwischen der ersten und der zweiten Stellung eine Bewegungsrichtung, wobei die Kopffläche und die zweite Anlagefläche geneigt zu der Bewegungsrichtung des Sperrelements ausgebildet sind. Hierdurch können Kräfte, die auf das Sperrelement wirken, in den Stator geleitet werden.Alternatively or additionally, the movement of the locking element between the first and the second position defines a direction of movement, wherein the head surface and the second contact surface are formed inclined to the direction of movement of the locking element. As a result, forces acting on the locking element can be directed into the stator.

Vorzugsweise umfasst der Stator ein Statorelement, das die erste Anlagefläche aufweist und in dem übrigen Stator beweglich gelagert ist. Insbesondere kann hierdurch erreicht werden, dass durch eine Bewegung des Statorelements das Sperrelement zur Anlage an die zweiten Anlagefläche gelangt. Das Statorelement weist vorzugsweise keine feste Verbindung oder Lagerung zu dem Rotor auf.The stator preferably comprises a stator element which has the first contact surface and is movably mounted in the rest of the stator. In particular, this can ensure that the locking element comes to rest against the second contact surface through a movement of the stator element. The stator element preferably has no fixed connection or mounting to the rotor.

Es kann vorgesehen sein, dass sich das Statorelement und das Sperrelement bei einer Drehung des Rotors relativ zueinander bewegen. In der Freigabeposition des Blockierelements bewegt sich das Sperrelement von der ersten Stellung in die zweite Stellung. In der Blockierposition des Blockierelements bewegt sich das Statorelement, so dass das Sperrelement zur Anlage an die zweite Anlagefläche gelangt.It can be provided that the stator element and the locking element move relative to one another when the rotor rotates. In the release position of the blocking element, the locking element moves from the first position to the second position. In the blocking position of the blocking element, the stator element moves so that the locking element comes to rest on the second contact surface.

Es kann vorgesehen sein, dass das Statorelement zwischen einer ersten Position und einer zweiten Position bewegbar ist. In der ersten Position liegt die erste Anlagefläche an dem Sperrelement derart an, dass bei einer Drehung des Rotors das Sperrelement von der ersten Stellung in die zweite Stellung bewegt wird. In der zweiten Position des Statorelements kommt das Sperrelement derart an der zweiten Anlagefläche zur Anlage, dass das Sperrelement in der ersten Stellung verbleibt. D.h., das Statorelement muss bei der vorgenannten Rotation zunächst in die gewünschte zweite Position bewegt werden, damit die zweite Anlagefläche wirksam werden kann.It can be provided that the stator element is movable between a first position and a second position. In the first position, the first contact surface rests on the locking element in such a way that when the rotor rotates, the locking element is moved from the first position to the second position. In the second position of the stator element, the locking element rests on the second contact surface in such a way that the locking element remains in the first position. This means that the stator element must first be moved to the desired second position during the aforementioned rotation so that the second contact surface can become effective.

Die erste Anlagefläche befinden sich in der ersten Position des Statorelements näher an dem Sperrelement als die zweite Anlagefläche. In der zweiten Position des Statorelements ragt die zweite Anlagefläche mehr in die Sperrelement-Ausnehmung hinein als die erste Anlagefläche.In the first position of the stator element, the first contact surface is closer to the locking element than the second contact surface. In the second position of the stator element, the second contact surface protrudes further into the locking element recess than the first contact surface.

Die Bewegung des Statorelements zwischen der ersten Position und der zweiten Position umfasst bevorzugt eine senkrechte Komponente zur Bewegung des Sperrelements zwischen der ersten Stellung und der zweiten Stellung. Insbesondere erfolgt die Bewegung des Statorelements zwischen der ersten und der zweiten Position senkrecht zu der Bewegung des Sperrelements von der ersten Stellung in die zweite Stellung.The movement of the stator element between the first position and the second position preferably comprises a perpendicular component to the movement of the locking element between the first position and the second position. In particular, the movement of the stator element between the first and the second position occurs perpendicular to the movement of the locking element from the first position to the second position.

Der Stator kann zumindest eine erste Feder umfassen, die das Statorelement in die erste Position drängt. Dadurch erfolgt eine Rückstellung des Statorelements in die erste Position automatisch, was eine einfachere Bewegungssteuerung ermöglicht. Vorzugsweise ist das Sperrelement durch eine zweite Feder in die erste Stellung vorgespannt.The stator can comprise at least a first spring which urges the stator element into the first position. This automatically returns the stator element to the first position, which enables easier movement control. Preferably, the locking element is pre-tensioned into the first position by a second spring.

Bevorzugt ist vorgesehen, dass die Kraft, die durch die zweite Feder auf das Sperrelement wirkt, kleiner ist als die Kraft, die durch die erste Feder auf das Statorelement wirkt. Es kann sein, dass die Federkonstante der zweiten Feder kleiner als die Federkonstante der ersten Feder. Dadurch ist es der ersten Feder möglich, dass das Statorelement in der ersten Position verbleibt, wenn das Sperrelement in die zweite Stellung ausweichen kann.Preferably, the force acting on the locking element through the second spring is smaller than the force acting on the stator element through the first spring. The spring constant of the second spring may be smaller than the spring constant of the first spring. This allows the first spring to keep the stator element in the first position when the locking element can move into the second position.

Bevorzugt ist das Sperrelement zwischen zumindest einem ersten Statorelement und zumindest einem zweiten Statorelement angeordnet. Somit wird sowohl bei einer Drehung des Rotors im Uhrzeigersinn als auch gegen den Uhrzeigersinn das Sperrelement durch die erste Anlagefläche in die zweite Stellung bewegt, sofern das Blockierelement die Bewegung in die zweite Stellung zulässt.Preferably, the locking element is arranged between at least one first stator element and at least one second stator element. Thus, when the rotor rotates clockwise or counterclockwise, the locking element is moved into the second position by the first contact surface, provided that the blocking element allows the movement into the second position.

Bevorzugt ist das Sperrelement zwischen zwei zweiten Anlageflächen angeordnet. Somit wird sowohl bei einer Drehung des Rotors im Uhrzeigersinn als auch gegen den Uhrzeigersinn das Sperrelement gegen eine zweite Anlagefläche bewegt, wenn eine Bewegung des Sperrelements in die zweite Stellung insbesondere durch das Blockierelement verhindert ist.Preferably, the locking element is arranged between two second contact surfaces. Thus, when the rotor rotates clockwise or counterclockwise, the locking element is moved against a second contact surface if movement of the locking element into the second position is prevented in particular by the blocking element.

Es kann ferner vorgesehen sein, dass der Rotor zumindest einen ersten axialen Abschnitt, insbesondere eine erstes Rotorelement, und einen zweiten axialen Abschnitt, insbesondere ein zweites Rotorelement, umfasst. Der zweite Abschnitt weist einen geringeren Durchmesser auf als der erste Abschnitt.It can further be provided that the rotor comprises at least a first axial section, in particular a first rotor element, and a second axial section, in particular a second rotor element. The second section has a smaller diameter than the first section.

Es kann vorgesehen sein, dass das Sperrelement in dem zweiten axialen Abschnitt angeordnet ist. Hierdurch ist genügend Bauraum im Stator vorhanden, um die erste und die zweite Anlagefläche vorzusehen. Bevorzugt ist hierdurch genügend Bauraum im Stator vorgesehen, um das Statorelement oder die Statorelemente aufzunehmen.It can be provided that the locking element is arranged in the second axial section. This provides sufficient installation space in the stator to provide the first and second contact surfaces. Preferably, this provides sufficient installation space in the stator to accommodate the stator element or elements.

Insbesondere kann die Sperrvorrichtung ein Rastelement zum Rasten in zumindest einer Position des Rotors gegenüber dem Stator umfassen. Das Rastelement hält den Rotor in einer Position, in der das Sperrelement nicht von der ersten Anlagefläche zum Blockierelement gedrängt wird. Dadurch wird das Sperrelement sicher in dieser Position gehalten und kann diese Position nicht ungewollt verlassen.In particular, the locking device can comprise a locking element for locking in at least one position of the rotor relative to the stator. The locking element holds the rotor in a position in which the locking element is not forced by the first contact surface towards the blocking element. As a result, the locking element is securely held in this position and cannot leave this position unintentionally.

Ferner ist erfindungsgemäß eine Schließvorrichtung vorgesehen, wobei die Schließvorrichtung mit einem Schließvorrichtungsgehäuse und einer Sperrvorrichtung ausgeführt ist, wie obenstehend dargestellt, wobei die Sperrrichtung in das Schließvorrichtungsgehäuse aufgenommen ist.Furthermore, according to the invention, a locking device is provided, wherein the locking device is provided with a locking device housing and a locking device is designed as shown above, wherein the locking device is incorporated in the locking device housing.

Bevorzugtes Ausführungsbeispiel der ErfindungPreferred embodiment of the invention

Die Erfindung wird nachfolgend anhand eines Ausführungsbeispiels näher erläutert. Technische Merkmale mit gleicher Funktion sind in den Figuren mit identischen Bezugszeichen versehen. Es zeigen:

Fig.1
eine erfindungsgemäße Schließvorrichtung und einen Schlüssel,
Fig. 2
die Schließvorrichtung aus Figur 1 im teilweise auseinander gebauten Zustand, mit einer perspektivischen Sicht auf eine erfindungsgemäße Sperrvorrichtung, die als Einbauvorrichtung ausgebildet ist,
Fig. 3
die erfindungsgemäße Sperrvorrichtung aus Figur 2 ohne Hülle,
Fig. 4
die Sperrvorrichtung aus Figur 3 ohne Hülle und Statorkörper in einer Explosionsdarstellung mit der Darstellung des erfindungsgemäßen Federelementes,
Fig. 5
ausgewählte Elemente der Sperrvorrichtung aus Figur 4 mit dem erfindungsgemäßen Federelement,
Fig. 6
ausgewählte Elemente der Sperrvorrichtung aus Figur 4 in einer Seitenansicht,
Fig, 7
eine weitere Darstellung mit dem Blockierelement in Verbindung mit dem Federelement und mit dem Verlängerungselement in benachbarter Anordnung zum Blockierelement, die ausgewählten Elemente gehören zu der erfindungsgemäßen Sperrvorrichtung der vorhergehenden Figuren,
Fig. 8
eine Detaildarstellung der Aktuatorbaugruppe und des Verlängerungselementes aus Figur 7,
Fig. 9
ausgewählte Elemente der erfindungsgemäßen Sperrvorrichtung der Figuren 1 bis 8, wobei die Position des Blockierelements verändert wurde und
Fig. 10
eine Schnittdarstellung durch die Sperrvorrichtung mit der Darstellung des erfindungsgemäßen Verlängerungselementes.
The invention is explained in more detail below using an exemplary embodiment. Technical features with the same function are provided with identical reference numerals in the figures. They show:
Fig.1
a locking device according to the invention and a key,
Fig.2
the locking device Figure 1 in the partially disassembled state, with a perspective view of a locking device according to the invention, which is designed as a built-in device,
Fig.3
the locking device according to the invention Figure 2 without cover,
Fig.4
the locking device Figure 3 without casing and stator body in an exploded view showing the spring element according to the invention,
Fig.5
selected elements of the locking device Figure 4 with the spring element according to the invention,
Fig.6
selected elements of the locking device Figure 4 in a side view,
Fig. 7
a further representation with the blocking element in connection with the spring element and with the extension element in an adjacent arrangement to the blocking element, the selected elements belong to the locking device according to the invention of the preceding figures,
Fig.8
a detailed view of the actuator assembly and the extension element from Figure 7 ,
Fig.9
selected elements of the locking device according to the invention of Figures 1 to 8 , whereby the position of the blocking element was changed and
Fig.10
a sectional view through the locking device showing the extension element according to the invention.

Fig. 1 und Fig. 2 zeigen eine Schließvorrichtung 100 in Form eines Schließzylinders, wie er bekanntermaßen in Einsteckschlössern Verwendung findet, um eine Gebäudetür als Verschlusselement zu entriegeln oder mittels eines Riegels verriegeln zu können. Dazu weist die Schließvorrichtung 100 ein Gehäuse 101 mit einer Ausnehmung auf, in der ein Fig. 1 and Fig. 2 show a locking device 100 in the form of a locking cylinder, as is known to be used in mortise locks, in order to unlock a building door as a locking element or to lock it by means of a bolt. For this purpose, the locking device 100 has a housing 101 with a recess in which a

Mitnehmer 103, der als Schließnase ausgebildet ist, drehbar angeordnet ist. Der Mitnehmer 103 dient dazu, einen Riegel in Ver- oder in Entriegelungsrichtung zu bewegen.Driver 103, which is designed as a locking nose, is arranged so as to be rotatable. The driver 103 serves to move a bolt in the locking or unlocking direction.

In der hier rechten Hälfte des Gehäuses 101 ist eine als Einbauvorrichtung ausgebildete Sperrvorrichtung 1 gemäß einem Ausführungsbeispiel der Erfindung eingesetzt. Die Einbauvorrichtung 1 umfasst einen außenumfänglich angeordneten Stator 10, in dem ein Rotor 30 der Einbauvorrichtung 1 um eine Rotorachse 35 rotierbar eingesetzt ist, die exemplarisch mit der Rotationsachse des Mitnehmers 103 übereinstimmt. Der Rotor 30 umfasst an seiner dem Mitnehmer 103 abgewandten Frontseite 37 einen Schlüsselkanal 36 zum Einschieben eines Schafts eines Schlüssels 200.In the right half of the housing 101 here, a locking device 1 designed as an installation device is inserted according to an embodiment of the invention. The installation device 1 comprises a stator 10 arranged on the outside, in which a rotor 30 of the installation device 1 is inserted so as to be rotatable about a rotor axis 35, which coincides, for example, with the axis of rotation of the driver 103. The rotor 30 comprises a key channel 36 on its front side 37 facing away from the driver 103 for inserting a shaft of a key 200.

Der Schlüssel 200 trägt ein elektronisches Schließgeheimnis in Form von elektronischen Daten. Anhand des Schließgeheimnisses lässt sich die Berechtigung eines Benutzers zum Entriegeln der Tür feststellen. Der Schlüssel 200 ist bevorzugt ohne eine mechanische Codierung ausgebildet. Somit ist nur anhand des elektronischen Schließgeheimnisses feststellbar, ob der Benutzer eine Berechtigung besitzt oder nicht. Hierbei können die Schlüssel und die Sperrvorrichtungen von der äußeren Form und damit auch mechanisch identisch zueinander ausgebildet sein. Zudem ist es möglich, einen Schlüsselkanal 36 möglichst kurz auszubilden und damit den Manipulationsschutz zu erhöhen.The key 200 carries an electronic locking secret in the form of electronic data. The locking secret can be used to determine whether a user is authorized to unlock the door. The key 200 is preferably designed without mechanical coding. Thus, it is only possible to determine whether the user has authorization or not based on the electronic locking secret. The keys and the locking devices can be designed to be identical to one another in terms of their external shape and thus also mechanically. It is also possible to design a key channel 36 as short as possible and thus increase the protection against manipulation.

Der Schlüssel 200 umfasst zudem eine Batterie, um die Sperrvorrichtung 1 mit elektrischer Energie zu versorgen.The key 200 also includes a battery to supply the locking device 1 with electrical energy.

Fig. 2 zeigt die Schließvorrichtung 100 im teilweise auseinandergebauten Zustand. Das Gehäuse 101 weist, beispielsweise in beiden Hälften der Ausnehmung für den Mitnehmer 103 im unteren Bereich Ausnehmungen 104 auf, von denen die rechte Ausnehmung mit einem Bezugszeichen versehen ist. Die hier gezeigten Ausnehmungen 104 erstrecken sich senkrecht zur Rotationsachse des Mitnehmers 103. Der Mitnehmer 103 weist exemplarisch inwendig eine im Querschnitt nicht kreisförmige Innenkontur beispielhaft in Form einer Innenverzahnung auf, in die ein Einsatz 105 vorzugsweise formschlüssig eingreift. Dazu weist der Einsatz 105 eine zur Innenkontur des Mitnehmers 103 komplementär gestaltete Außenkontur hier in Form einer Außenverzahnung auf, sodass beide Teile 103, 105 drehfest zueinander angeordnet sind. Fig.2 shows the locking device 100 in a partially disassembled state. The housing 101 has, for example in both halves of the recess for the driver 103 in the lower area, recesses 104, of which the right-hand recess is provided with a reference number. The recesses 104 shown here extend perpendicular to the axis of rotation of the driver 103. The driver 103 has, for example, an inner contour that is not circular in cross-section, for example in the form of an internal toothing, into which an insert 105 preferably engages in a form-fitting manner. For this purpose, the insert 105 has an outer contour that is complementary to the inner contour of the driver 103, here in the form of an external toothing, so that both parts 103, 105 are arranged in a rotationally fixed manner relative to one another.

In den Einsatz 105 ragt ein Verbindungsabschnitt 38 der Einbauvorrichtung 1 hinein. In dem Verbindungsabschnitt 38 ist ein Kupplungsteil 41 verschiebbar in einer Führung 42 angeordnet. Das Kupplungsteil 41 ist mehrteilig ausgebildet und kann je nach Position des Kupplungsteils 41 eine Wirkverbindung zwischen dem Rotor 30 und dem Mitnehmer 103, insbesondere über den Einsatz 105, herstellen oder freigeben. Hierzu kann das Kupplungsteil 41 der Schließvorrichtung 100 formschlüssig in eine nicht dargestellte Innenkontur des Einsatzes 105 eingreifen. Die Führung 42 bildet vorzugsweise eine Linearführung für das Kupplungsteil 41, sodass das Kupplungsteil 41 entlang der Rotorachse 35 des Rotors 30 geführt bewegbar angeordnet ist.A connecting section 38 of the installation device 1 projects into the insert 105. In the connecting section 38, a coupling part 41 is arranged displaceably in a guide 42. The coupling part 41 is designed in several parts and, depending on the position of the coupling part 41, can establish or release an operative connection between the rotor 30 and the driver 103, in particular via the insert 105. For this purpose, the coupling part 41 of the locking device 100 can be positively inserted into a not shown Inner contour of the insert 105. The guide 42 preferably forms a linear guide for the coupling part 41, so that the coupling part 41 is arranged to be guided and movable along the rotor axis 35 of the rotor 30.

Die Einbauvorrichtung 1 weist eine Hülle 14 auf, mit der die Einbauvorrichtung 1 in eine zugehörige Einschuböffnung 106 des Gehäuses 101 eingeschoben ist. Eine Befestigungselement 102 in Form einer Schraube ist durch die hier rechte Ausnehmung 104 von der Unterseite des Gehäuses 101 her und in eine hier linke Öffnung 21 der Hülle 14 des Stators 10 und eines später näher erläuterten Statorkörpers 11 des Stators 10 eingeschraubt. Damit fixiert die Schraube 102 den Stator 10 im Gehäuse 101. Ferner ist hier der Schlüsselkanal 36 zum Einführen des Schlüssels 200 bezeichnet, der in einem ersten Rotorelement 32 des Rotors 30 ausgebildet ist.The installation device 1 has a casing 14 with which the installation device 1 is inserted into an associated insertion opening 106 of the housing 101. A fastening element 102 in the form of a screw is screwed through the recess 104 on the right here from the underside of the housing 101 and into an opening 21 on the left here of the casing 14 of the stator 10 and of a stator body 11 of the stator 10, which will be explained in more detail later. The screw 102 thus fixes the stator 10 in the housing 101. Furthermore, the key channel 36 for inserting the key 200, which is formed in a first rotor element 32 of the rotor 30, is designated here.

Fig. 3 zeigt die Einbauvorrichtung 1 ohne die Hülle 14. Der Statorkörper 11 ist ebenfalls als eine Art Hülse ausgebildet und weist innenseitig funktionale Strukturen auf. Der Statorkörper 11 weist eine Aussparung 19 auf, in die ein Statoreinsatzelement 13 eingesetzt ist. An einer dem Inneren des Statorkörpers 11 zugewandten Seite des Statoreinsatzelements 13 sind später näher erläuterte Statorelemente 12 angebracht bzw. angeordnet. Die Statorelemente 12 sind an dem Statoreinsatzelement 13 und dem Statorkörper 11 beweglich gelagert. Die Statorelemente 12 verbleiben bei einer Drehung des Rotors 30 in dem übrigen Stator 10. Fig.3 shows the installation device 1 without the casing 14. The stator body 11 is also designed as a type of sleeve and has functional structures on the inside. The stator body 11 has a recess 19 into which a stator insert element 13 is inserted. Stator elements 12, which will be explained in more detail later, are attached or arranged on a side of the stator insert element 13 facing the interior of the stator body 11. The stator elements 12 are movably mounted on the stator insert element 13 and the stator body 11. The stator elements 12 remain in the rest of the stator 10 when the rotor 30 rotates.

Der Rotor 30 umfasst das erste Rotorelement 32 und ein zweites Rotorelement 33.The rotor 30 comprises the first rotor element 32 and a second rotor element 33.

Der Rotor 30 ist im Statorkörper 11 des Stators 10 rotierbar, aber ortsfest in Richtung seiner Rotorachse 35 gelagert, die parallel zur Einschubrichtung des Schlüssels 200 in den Schlüsselkanal 36 verläuft. Das Kupplungsteil 41 ist auf dem zweiten Rotorelement 33 des Rotors 30 der Einbauvorrichtung 1 drehfest angeordnet. Beide Rotorelemente 32, 33 sind reversibel lösbar aneinander befestigt.The rotor 30 is rotatable in the stator body 11 of the stator 10, but is mounted in a fixed position in the direction of its rotor axis 35, which runs parallel to the direction of insertion of the key 200 into the key channel 36. The coupling part 41 is arranged in a rotationally fixed manner on the second rotor element 33 of the rotor 30 of the installation device 1. Both rotor elements 32, 33 are reversibly detachably attached to one another.

Das zweite Rotorelement 33 weist die Führung 42 auf, in die das Kupplungsteil 41 eingreift und somit drehfest zum zweiten Rotorelement 33 angeordnet ist. Das zweite Rotorelement 33 ist von einer Grundseite 23 des Stators 10 her in den Statorkörper 11 eingesetzt, und zwar bei der Montage vorzugsweise ohne das erste Rotorelement 32.The second rotor element 33 has the guide 42, into which the coupling part 41 engages and is thus arranged in a rotationally fixed manner to the second rotor element 33. The second rotor element 33 is inserted into the stator body 11 from a base side 23 of the stator 10, and during assembly preferably without the first rotor element 32.

Fig. 4 zeigt die Einbauvorrichtung 1 ohne Hülle 14, Statorkörper 11 und Kupplungsteil 41 im teilweise demontierten Zustand. Gezeigt ist ein Verlängerungselement 40, das ausgebildet ist, mit dem Schlüssel 200 mechanisch zu interagieren. Wird der Schlüssel 200 in den Schlüsselkanal 36 eingeschoben, bewegt dieser bei Kontakt das Verlängerungselement 40 axial bzw. parallel zu der Rotorachse 35 in Richtung zum zweiten Rotorelement 33. Dabei bewegt das Verlängerungsteil 40 das Kupplungsteil 41 vom Rotor 30 weg in Richtung Fig.4 shows the installation device 1 without casing 14, stator body 11 and coupling part 41 in a partially disassembled state. An extension element 40 is shown, which is designed to interact mechanically with the key 200. If the key 200 is inserted into the key channel 36, it moves the extension element 40 axially or parallel to the rotor axis 35 in the direction of the second rotor element 33 upon contact. The extension part 40 moves the coupling part 41 away from the rotor 30 in the direction of

Mitnehmer 103, sodass das Kupplungsteil 41 mit dem Mitnehmer 103 in Rotationseingriff gelangen kann. Eine Durchgang 39 ist in dem Verbindungsabschnitt 38 vorgesehen, damit das Verlängerungselement 40 zur Anlage an das Kupplungsteil 41 gelangt. Hierbei kann entweder das Verlängerungselement 40 oder das Kupplungsteil 41 den Durchgang 39 durchragen.Driver 103 so that the coupling part 41 can come into rotational engagement with the driver 103. A passage 39 is provided in the connecting section 38 so that the extension element 40 comes to rest against the coupling part 41. In this case, either the extension element 40 or the coupling part 41 can protrude through the passage 39.

Ein Übertragungselement 44, hier beispielsweise in Form von Kontaktelementen, ist an einem Gehäuse 46 federnd befestigt, um mit dem Schlüssel 200 eine Daten- und/oder Energieübertragungsverbindung herzustellen. Dadurch ist es möglich, elektronische Daten, beispielsweise eine Authentifizierungsinformation oder einen Öffnungsbefehl, aus dem Schlüssel 200 auszulesen oder von dem Schlüssel 200 zu empfangen. Eine elektronische Steuerungsvorrichtung 53 ist mit dem Übertragungselement 44 gekoppelt, um die Daten auszulesen und ggf. auszuwerten. Ergibt die Prüfung der Steuerungsvorrichtung 53, dass der Benutzer des Schlüssels 200 berechtigt ist, die zugehörige Tür zu öffnen, und/oder liegt der Steuerungsvorrichtung 53 ein Öffnungsbefehl vor, so wird eine elektromechanische Aktuatorbaugruppe 50 aktiviert.A transmission element 44, here for example in the form of contact elements, is spring-mounted on a housing 46 in order to establish a data and/or energy transmission connection with the key 200. This makes it possible to read electronic data, for example authentication information or an opening command, from the key 200 or to receive it from the key 200. An electronic control device 53 is coupled to the transmission element 44 in order to read the data and evaluate it if necessary. If the check of the control device 53 shows that the user of the key 200 is authorized to open the associated door and/or if the control device 53 has an opening command, an electromechanical actuator assembly 50 is activated.

Dabei umfasst die Aktuatorbaugruppe 50 einen elektromechanischen Aktuator 52 hier in Form eines Elektromotors, an dessen Abtriebswelle ein Blockierelement 51 drehfest angeordnet ist.The actuator assembly 50 comprises an electromechanical actuator 52, here in the form of an electric motor, on whose output shaft a blocking element 51 is arranged in a rotationally fixed manner.

Die erfindungsgemäße Sperrvorrichtung 1 umfasst ein Sperrelement 31, das im Rotor 30 linear beweglich gelagert ist. Das Sperrelement 31 ist vorzugsweise senkrecht zur Rotorachse 35 auf das Blockierelement 51 zu und von diesem weg bewegbar gelagert. In der hier gezeigten ersten Stellung befindet sich das Sperrelement 31 in einer Sperrelement-Ausnehmung 15, die vom Stator 10, insbesondere vom Statoreinsatzelement 13 und den Statorelementen 12, gebildet ist. Damit sind der Rotor 30 und damit das Kupplungsteil 41 daran gehindert, gedreht zu werden. Das Drehen des eingeschobenen Schlüssels 200 zum Entriegeln des zugehörigen Schlosses ist somit verhindert. In einer nicht dargestellten zweiten Stellung des Sperrelements 31 gelangt dieses außer Eingriff mit der Sperrelement-Ausnehmung 15 des Stators 10. Hierdurch ist es möglich, den Rotor 30 in dem Stator 10 und damit den Mitnehmer 103 zu drehen, um die Schließvorrichtung zu betätigen und eine Freigabe der Schließung zu bewirken.The locking device 1 according to the invention comprises a locking element 31 which is mounted in the rotor 30 so as to be linearly movable. The locking element 31 is preferably mounted so as to be movable perpendicular to the rotor axis 35 towards and away from the blocking element 51. In the first position shown here, the locking element 31 is located in a locking element recess 15 which is formed by the stator 10, in particular by the stator insert element 13 and the stator elements 12. This prevents the rotor 30 and thus the coupling part 41 from being rotated. The turning of the inserted key 200 to unlock the associated lock is thus prevented. In a second position of the locking element 31 (not shown), it comes out of engagement with the locking element recess 15 of the stator 10. This makes it possible to rotate the rotor 30 in the stator 10 and thus the driver 103 in order to actuate the locking device and to release the locking mechanism.

Das Blockierelement 51 umfasst eine Aussparung 54. Das Blockierelement 51 ist zwischen einer nicht dargestellten Freigabeposition, in der die Aussparung 54 dem Sperrelement 31 gegenüberliegt, so dass das Sperrelement 31 in die Aussparung 54 einfahren kann, und einer Blockierposition, in der die Aussparung 54 dem Sperrelement 31 nicht gegenüberliegt, so dass das Sperrelement 31 gehindert ist, in die Aussparung 54 einzufahren, drehbar.The blocking element 51 comprises a recess 54. The blocking element 51 is rotatable between a release position (not shown) in which the recess 54 is opposite the locking element 31 so that the locking element 31 can move into the recess 54 and a blocking position in which the recess 54 is not opposite the locking element 31 so that the locking element 31 is prevented from moving into the recess 54.

Die Aussparung 54 nimmt nur einen geringen Teil der Umfangsfläche des Blockierelements 51 ein, so dass es sich bei einem überwiegenden Teil der durch das Blockierelement 51 einnehmbaren Positionen um Blockierpositionen handelt. Die Blockierposition, in der das Blockierelement 51 im unbetätigten Zustand der Spervorrichtung sich befindet, wird als Ausgangsposition bezeichnet.The recess 54 takes up only a small part of the peripheral surface of the blocking element 51, so that the majority of the positions that can be assumed by the blocking element 51 are blocking positions. The blocking position in which the blocking element 51 is located in the unactuated state of the locking device is referred to as the starting position.

Die Aktuatorbaugruppe 50 mit dem elektromechanischen Aktuator 52 in Form des Elektromotors und mit dem Blockierelement 51 an dessen Abtriebswelle weist erfindungsgemäß ein Federelement 80 auf. Das Federelement 80 wirkt mit dem Blockierelement 51 derart zusammen, dass bei einer Bewegung des Blockierelements 51 aus der Ausgangsposition in die Freigabeposition, mithin also eine Verdrehung des Blockierelementes 51, das Federelement 80 zumindest zeitweise derart gespannt wird, dass das Federelement 80 das Blockierelement 51 in Richtung der Ausgangsposition zurückdrängt, insofern also in eine bestimmte Rotationsposition zurückdreht. Hierdurch wird ein Manipulationsschutz erreicht.According to the invention, the actuator assembly 50 with the electromechanical actuator 52 in the form of the electric motor and with the blocking element 51 on its output shaft has a spring element 80. The spring element 80 interacts with the blocking element 51 in such a way that when the blocking element 51 moves from the starting position to the release position, i.e. when the blocking element 51 is rotated, the spring element 80 is at least temporarily tensioned in such a way that the spring element 80 pushes the blocking element 51 back towards the starting position, i.e. rotates it back to a certain rotational position. This provides protection against manipulation.

Das Blockierelement 51 kann ausgehend von der Ausgangsposition in eine erste Richtung, insbesondere ein erste Drehrichtung 81, und in eine zweite Richtung, insbesondere in eine zweite Drehrichtung 82, bewegbar sein (s. Fig. 5). Zumindest ist die zweite Drehrichtung 82 durch mechanische Manipulation denkbar. Das Federelement 80 und das Blockierelement 51 wirken derart zusammenwirken, dass das Federelement 80 sowohl bei einer Bewegung in die erste Richtung 81 als auch bei einer Bewegung in die zweite Richtung 82 zumindest zeitweise gespannt wird. Somit wird bei jedem mechanischen Manipulationsversuch das Blockierelement 51 in die Ausgangsposition zurückgedrängt.Starting from the starting position, the blocking element 51 can be movable in a first direction, in particular a first direction of rotation 81, and in a second direction, in particular in a second direction of rotation 82 (see Fig.5 ). At least the second direction of rotation 82 is conceivable by mechanical manipulation. The spring element 80 and the blocking element 51 interact in such a way that the spring element 80 is at least temporarily tensioned both during a movement in the first direction 81 and during a movement in the second direction 82. Thus, with every mechanical manipulation attempt, the blocking element 51 is forced back into the starting position.

Das Federelement 80 ist als eine Torsionsfeder ausgebildet. Mit Blick auf Figur 5 das erfindungsgemäße Federelement 80 gezeigt, das das Blockierelement 51 und den elektromechanischen Aktuator 52 umspannt. Das Federelement 80 ist auf der hier hinteren Seite mit seinem dortigen Endabschnitt starr eingespannt, und das Federelement 80 weist einen Torsionsschenkel 80a auf, der in einen etwa 90° von diesem abgewinkelten Anlageschenkel 80b übergeht, der gegen einen Zapfen 51b des Blockierelements 51 vorspannt ist. Der Zapfen 51b ist in diesem Ausführungsbeispiel rund ausgebildet, jedoch sind Abweichungen hiervon möglich.The spring element 80 is designed as a torsion spring. With regard to Figure 5 the spring element 80 according to the invention is shown, which surrounds the blocking element 51 and the electromechanical actuator 52. The spring element 80 is rigidly clamped on the rear side with its end section there, and the spring element 80 has a torsion leg 80a, which merges into a contact leg 80b, which is angled at about 90° from this and is pre-tensioned against a pin 51b of the blocking element 51. The pin 51b is round in this embodiment, but deviations from this are possible.

Die Vorspannung des Anlageschenkels 80b gegen den Zapfen 51b erfolgt über die Torsion des Torsionsschenkels 80a so, dass das Blockierelement 51 rotatorisch in die hier gezeigte Ausgangsposition vorgespannt wird, in der das Blockierelement 51 eine Bewegung des Sperrelementes 31 verhindert und der Rotor 30 im Stator 10 nicht drehbar ist. In dieser Position ist die Aussparung 54 nicht fluchtend mit dem Sperrelement 31 ausgerichtet. Die starre Befestigung des Torsionsschenkels 80a erfolgt an einer Abdeckung 52a des Aktuators 52 (s. Fig. 7).The preload of the contact leg 80b against the pin 51b is achieved by the torsion of the torsion leg 80a such that the blocking element 51 is preloaded rotationally into the starting position shown here, in which the blocking element 51 prevents movement of the locking element 31 and the rotor 30 cannot rotate in the stator 10. In this position, the recess 54 is not aligned with the locking element 31. The The torsion leg 80a is rigidly attached to a cover 52a of the actuator 52 (see Fig.7 ).

In der Ausgangsposition ist das Federelement 80 nicht gespannt. Vielmehr muss in der ersten Drehrichtung 81 als auch in der zweiten Drehrichtung 82 das Blockierelement 51 mit dem Zapfen 51b zunächst bewegt werden, bevor sich das Federelement 80 spannt.In the initial position, the spring element 80 is not tensioned. Rather, in the first direction of rotation 81 as well as in the second direction of rotation 82, the blocking element 51 with the pin 51b must first be moved before the spring element 80 is tensioned.

In der ersten Drehrichtung 81 muss das Blockierelement sich um über 180° drehen, um von der Ausgangsposition die Freigabeposition zu erreichen, während in der zweiten Drehrichtung 82 eine Drehung von unter 180° ausreicht, um von der Ausgangsposition in die Freigabeposition zu gelangen. Eine manipulative Drehung in die zweite Drehrichtung 82 ist jedoch durch einen steileren Anstieg der Federspannung als in der ersten Drehrichtung 81 erschwert.In the first direction of rotation 81, the blocking element must rotate by more than 180° to reach the release position from the starting position, while in the second direction of rotation 82, a rotation of less than 180° is sufficient to reach the release position from the starting position. However, a manipulative rotation in the second direction of rotation 82 is made more difficult by a steeper increase in the spring tension than in the first direction of rotation 81.

Wird der elektromechanische Aktuator 52 bestromt, so wird das Blockierelement 51 in der hier dargestellten Ansicht entgegen dem Uhrzeigersinn gemäß dem Pfeil 81 verdreht, so dass sich durch diese Verdrehung die Vorspannung im Torsionsschenkel 80a des Federelementes 80 erhöht bis zu einem Totpunkt. Im Totpunkt drückt das Federelement 80 den Zapfen 51b in Richtung der Abtriebswelle. Nach dem Durchlaufen des Totpunktes wird die Federspannung des Federelements 80 wieder verringert. Hierdurch wird ab Durchlaufen des Totpunktes durch die Federspannung des Federelements 80 das Blockierelement 51 in die Freigabeposition gedrängt. Somit kann das Federelement 80 das Blockierelement 51 in die Freigabeposition bewegen oder mitbewegen. Fig. 9 zeigt eine Blockierposition des Blockierelements kurz nach Durchlaufen des Totpunkts und kurz vor Erreichen der Freigabeposition. Hierdurch ist ein exaktes Abschalten des Aktuators 52 nicht notwendig, um die Freigabeposition zu erreichen.If the electromechanical actuator 52 is energized, the blocking element 51 is rotated anticlockwise according to the arrow 81 in the view shown here, so that this rotation increases the preload in the torsion leg 80a of the spring element 80 up to a dead center. At the dead center, the spring element 80 presses the pin 51b in the direction of the output shaft. After passing through the dead center, the spring tension of the spring element 80 is reduced again. As a result, after passing through the dead center, the spring tension of the spring element 80 forces the blocking element 51 into the release position. The spring element 80 can thus move the blocking element 51 into the release position or move it along with it. Fig.9 shows a blocking position of the blocking element shortly after passing through the dead center and shortly before reaching the release position. As a result, an exact switching off of the actuator 52 is not necessary in order to reach the release position.

Durch die Verdrehung des Blockierelementes 51 in die Freigabeposition kann die Aussparung 54 in die korrespondierende Stellung mit dem Sperrelement 31 verdreht werden. Um die Position der Aussparung 54 korrespondierend zum Sperrelement 31, d. h. in der Freigabeposition, zu arretieren, ist ein Anschlag 83 vorgesehen, der in Verbindung mit Figur 7 näher erläutert wird und gegen den eine Haltenocke 51a des Blockierelementes 51 zur Anlage gelangen kann.By turning the blocking element 51 into the release position, the recess 54 can be turned into the corresponding position with the locking element 31. In order to lock the position of the recess 54 corresponding to the locking element 31, ie in the release position, a stop 83 is provided, which in conjunction with Figure 7 is explained in more detail and against which a retaining cam 51a of the blocking element 51 can come into contact.

In der Freigabeposition wird das Blockierelement mit der Haltenocke 51a durch das Federelement 80 gegen den Anschlag 83 gedrückt, so dass im besonderen Maße die Freigabeposition genau definiert ist. Zudem wird ein Zurückprallen des Haltenockens 51a von dem Anschlag 83 zum Ende der Drehung in die Drehrichtung 81 vermindert oder verhindert.In the release position, the blocking element with the holding cam 51a is pressed against the stop 83 by the spring element 80, so that the release position is precisely defined to a particular extent. In addition, a rebound of the holding cam 51a from the stop 83 at the end of the rotation in the direction of rotation 81 is reduced or prevented.

Wird der Anschlag 83 aus dem Wirkungsbereich der Haltenocke 51a wegbewegt, wie im Zusammenhang mit den Figuren 7 und 8 beschrieben wird, so wird das Blockierelement 51 durch die Kraft des Federelements 80 in die Ausgangsposition zurückbewegt. Hierbei wird die Drehrichtung 81 beibehalten. Hierdurch wird das Blockierelement 51 bei bestimmungsgemäßen Gebrauch stets nur in eine Drehrichtung, in diesem Beispiel in die Drehrichtung 81, bewegt.If the stop 83 is moved away from the effective range of the holding cam 51a, as in connection with the Figures 7 and 8 is described, the blocking element 51 is moved back to the starting position by the force of the spring element 80. The direction of rotation 81 is maintained. As a result, the blocking element 51 is always only moved in one direction of rotation when used as intended, in this example in the direction of rotation 81.

Bei einem Abzug des Schlüssels 200 bricht der Kontakt zu dem Übertragungselement 44 ab. Hierdurch ist es nicht möglich, mittels der elektrischen Energie des Schlüssels 200 eine Rückbewegung des Blockierelements 51 von der Freigabeposition in die Ausgangsposition durch den Aktuator 52 zu ermöglichen. Dieses ist in der erfindungsgemäßen Sperrvorrichtung 1 auch nicht nötig. Vielmehr übernimmt das Federelement 80 die Rückführung des Blockierelements 51 aus der Freigabeposition in die Ausgangsposition durch die mechanische Spannung des Federelements 80.When the key 200 is removed, the contact with the transmission element 44 is broken. This makes it impossible to enable the blocking element 51 to move back from the release position to the starting position by means of the actuator 52 using the electrical energy of the key 200. This is also not necessary in the locking device 1 according to the invention. Instead, the spring element 80 takes over the return of the blocking element 51 from the release position to the starting position by means of the mechanical tension of the spring element 80.

Die Haltenocke 51a und/oder der Zapfen 51b sind starr, bevorzugt einstückig, besonders bevorzugt monolithisch mit dem übrigen Blockierelement 51 ausgebildet.The retaining cam 51a and/or the pin 51b are rigid, preferably integral, particularly preferably monolithic with the remaining blocking element 51.

Die Figuren 5 und 6 zeigen ausgewählte Elemente der Sperrvorrichtung 1 aus Fig. 4. Dabei zeigt Fig. 5 die Anordnung des Sperrelementes 31 in Bezug auf das Blockierelement 51 und das Statoreinsatzelement 13 nebst Statorelementen 12. In den Figuren 4 und 5 sind Blockierpositionen des Blockierelements 51 dargestellt.The Figures 5 and 6 show selected elements of the locking device 1 from Fig.4 . Fig.5 the arrangement of the locking element 31 in relation to the blocking element 51 and the stator insert element 13 together with stator elements 12. In the Figures 4 and 5 Blocking positions of the blocking element 51 are shown.

Das Sperrelement 31 ist an seinem dem Blockierelement 51 zugewandten Anlageabschnitt 63 gestaltet, in die Aussparung 54 einfahren zu können, wenn sich das Blockierelement 51 in der Freigabeposition befindet und die Aussparung 54 dem Anlageabschnitt 63 des Sperrelements 31 gegenüberliegt, in Figur 5 also nach oben weist. Hierdurch ist es möglich, dass das Sperrelement 31 in die zweite Stellung gelangt.The locking element 31 is designed at its contact section 63 facing the blocking element 51 to be able to move into the recess 54 when the blocking element 51 is in the release position and the recess 54 is opposite the contact section 63 of the locking element 31, in Figure 5 i.e. points upwards. This makes it possible for the locking element 31 to move into the second position.

Eine dem Sperrelement 31 zugewandte, erste Anlagefläche 16 der Statorelemente 12 ist gestaltet, das Sperrelement 31 beim Weiterdrehen des Rotors 30 in Richtung Blockierelement 51, also in die zweite Stellung, zu drängen, in der der Rotor 30 gegenüber dem Stator 10 frei rotierbar ist. Die erste Anlagefläche 16 ist als schräge Fläche ausgebildet, die das Sperrelement 31 in die zweite Stellung drängt.A first contact surface 16 of the stator elements 12 facing the locking element 31 is designed to push the locking element 31 towards the blocking element 51 when the rotor 30 continues to rotate, i.e. into the second position in which the rotor 30 can rotate freely relative to the stator 10. The first contact surface 16 is designed as an inclined surface that pushes the locking element 31 into the second position.

Die Statorelemente 12 sind zwischen einer ersten Position und einer zweiten Position beweglich an dem Statoreinsatzelement 13 gelagert. Die Statorelemente 12 werden mittels ersten Federn 18 in die erste Position gedrängt. Die ersten Federn 18 sind im Stator 10 gelagert. Die Bewegung der Statorelemente 12 von der ersten Position in die zweite Position gemäß der Bewegungsrichtung 71 ist senkrecht zu der Bewegungsrichtung 70 des Sperrelements 31.The stator elements 12 are movably mounted on the stator insert element 13 between a first position and a second position. The stator elements 12 are urged into the first position by means of first springs 18. The first springs 18 are mounted in the stator 10. The movement of the stator elements 12 from the first position to the second position according to the direction of movement 71 is perpendicular to the direction of movement 70 of the locking element 31.

Bei einem Ablauf zum Entsperren des Rotors 30 gegenüber dem Stator 10 befindet sich zunächst das Sperrelement 31 in der Sperrelement-Ausnehmung 15. Hierbei ist das Sperrelement 31 in dem Rotor 30 geführt. Zusätzlich liegt das Sperrelement 31 an den ersten Anlageflächen 16 der Statorelemente 12 an. Hierdurch wird das Sperrelement 31 zentriert. Diese Stellung des Sperrelements 31 wird als Ruheposition bezeichnet. In der Ruheposition ist das Sperrelement 31 bevorzugt beabstandet von dem Blockierelement 51 angeordnet.During a process for unlocking the rotor 30 relative to the stator 10, the locking element 31 is initially located in the locking element recess 15. The locking element 31 is guided in the rotor 30. In addition, the locking element 31 rests against the first contact surfaces 16 of the stator elements 12. This centers the locking element 31. This position of the locking element 31 is referred to as the rest position. In the rest position, the locking element 31 is preferably arranged at a distance from the blocking element 51.

Ein Benutzer möchte nun die Tür entriegeln und steckt den Schlüssel 200 in den Schlüsselkanal 36. Hierdurch wird eine elektronische Kommunikation des Schlüssels mit der Steuerungsvorrichtung 53 gestartet, bei der elektronisch festgestellt wird, ob der Benutzer berechtigt ist.A user now wants to unlock the door and inserts the key 200 into the key channel 36. This starts an electronic communication between the key and the control device 53, which electronically determines whether the user is authorized.

Ist der Benutzer zum Entriegeln der Tür berechtigt, so steuert die Steuerungsvorrichtung 53 den Aktuator 52 an. Der als Elektromotor ausgebildete Aktuator 52 dreht das Blockierelement 51 in die Freigabeposition, in der die Aussparung 54 dem Sperrelement 31 gegenüber liegt. Wird nun mittels des Schlüssels 200 der Rotor 30 in Drehbewegung versetzt, so gleitet das Sperrelement 31 an einer der ersten Anlageflächen 16 entlang in die zweite Stellung, in der das Sperrelement 31 in die Aussparung 54 eingreift, wobei das Sperrelement 31 mit nicht dargestellten zweiten Federn in die Sperrelement-Ausnehmung 15 hinein vorgespannt ist. Das Sperrelement 31 bewegt sich sodann durch die Rotation des Rotors 30 in die Bewegungsrichtung 70.If the user is authorized to unlock the door, the control device 53 controls the actuator 52. The actuator 52, designed as an electric motor, rotates the blocking element 51 into the release position in which the recess 54 is opposite the locking element 31. If the rotor 30 is now set in rotation using the key 200, the locking element 31 slides along one of the first contact surfaces 16 into the second position in which the locking element 31 engages in the recess 54, the locking element 31 being pre-tensioned into the locking element recess 15 by second springs (not shown). The locking element 31 then moves in the direction of movement 70 due to the rotation of the rotor 30.

Die Statorelemente 12 verbleiben hierbei in der ersten Position. Dies wird dadurch ermöglicht, dass die ersten Federn 18 eine höhere Kraft auf das Statorelement 12, an dem das Sperrelement 31 entlanggleitet, ausüben als die nicht dargestellten zweiten Federn, die das Sperrelement 31 nach oben in die Sperrelement-Ausnehmung 15 drängen.The stator elements 12 remain in the first position. This is made possible by the fact that the first springs 18 exert a higher force on the stator element 12, along which the locking element 31 slides, than the second springs (not shown), which push the locking element 31 upwards into the locking element recess 15.

Der Rotor 30 ist nun frei drehbar. Das Entlanggleiten des Sperrelements 31 erfolgt an derjenigen der ersten Anlageflächen 16, in die das Sperrelement 31 gedreht wird. Das Sperrelement 31 ist in beiden Drehrichtungen von den ersten Anlageflächen 16 umgeben, so dass die Drehung in beide Richtungen bei Anlage an einer der ersten Anlageflächen 16 das Sperrelement 31 in die zweite Stellung bewegen lässt. Damit in beide Drehrichtungen erste Anlageflächen 16 vorhanden sind, ist die Sperrelement-Ausnehmung 15 beidseitig von Statorelementen 12 umgeben.The rotor 30 can now rotate freely. The locking element 31 slides along that of the first contact surfaces 16 into which the locking element 31 is rotated. The locking element 31 is surrounded by the first contact surfaces 16 in both directions of rotation, so that rotation in both directions when it contacts one of the first contact surfaces 16 allows the locking element 31 to move into the second position. So that first contact surfaces 16 are present in both directions of rotation, the locking element recess 15 is surrounded on both sides by stator elements 12.

Der Stator 10 weist wie in Figur 6 gezeigt zweite Anlageflächen 17 auf, die das Sperrelement 31 in der ersten Stellung belässt. Die zweiten Anlageflächen 17 kommen funktional zum Einsatz, wenn der Benutzer nicht berechtigt ist, die Tür zu entriegeln. Die zweiten Anlageflächen sind in dem oder am Statoreinsatzelement 13 ausgebildet. Befindet sich das Sperrelement 31 in der Ruheposition, so sind die zweiten Anlageflächen 17 weiter von dem Sperrelement 31 beanstandet als die ersten Anlageflächen 16.The stator 10 has as in Figure 6 shown second contact surfaces 17, which leave the locking element 31 in the first position. The second contact surfaces 17 are used functionally when the user is not authorized to unlock the door. The second contact surfaces are formed in or on the stator insert element 13. If the Locking element 31 in the rest position, the second contact surfaces 17 are further away from the locking element 31 than the first contact surfaces 16.

Bevorzugt sind die zweiten Anlageflächen 17 ebenfalls geneigt, jedoch bezogen auf die Bewegungsrichtung 70 des Sperrelements 31 entgegengesetzt den ersten Anlagenflächen 16. Die zweiten Anlagenflächen 17 bilden somit einen stumpfen Winkel zur Bewegungsrichtung 70 des Sperrelements 31.Preferably, the second contact surfaces 17 are also inclined, but opposite to the first contact surfaces 16 with respect to the direction of movement 70 of the locking element 31. The second contact surfaces 17 thus form an obtuse angle to the direction of movement 70 of the locking element 31.

An seinem dem Statoreinsatzelement 13 zugewandten Ende weist das Sperrelement 31, entlang der Rotationsachse des Blockierelements 51 und/oder der Rotorachse 35 gesehen, einen Querschnitt auf, der die Form eines sich in Richtung Blockierelement 51 verjüngenden, symmetrischen Trapezes hat. Die Schenkel dieses Trapezes bilden nach außen in Bezug auf das Sperrelement 31 Kopfflächen 60. Die Kopffläche 60 und die korrespondierende Anlagefläche 17 sind zu der Bewegungsrichtung des Sperrelements 31 ausgebildet geneigt.At its end facing the stator insert element 13, the locking element 31 has, as seen along the rotation axis of the blocking element 51 and/or the rotor axis 35, a cross section which has the shape of a symmetrical trapezoid tapering in the direction of the blocking element 51. The legs of this trapezoid form head surfaces 60 on the outside in relation to the locking element 31. The head surface 60 and the corresponding contact surface 17 are inclined to the direction of movement of the locking element 31.

Ist der Benutzer nicht zum Entriegeln der Tür berechtigt, so ergibt sich folgender Ablauf. Das Sperrelement 31 befindet sich zunächst in der Ruheposition. Ein Schlüssel 200 ohne eine Schließberechtigung wird in den Schlüsselkanal 36 eingesteckt. Der elektronische Datenaustausch ergibt, dass keine Berechtigung zum Entriegeln der Tür vorliegt. Daher wird der Aktuator 52 nicht angesteuert und das Blockierelement 51 verbleibt in einer Blockierposition, in der die Aussparung 54 dem Sperrelement 31 nicht gegenüberliegt, wie in Figur 4 und 5 dargestellt, insbesondere in der Ausgangsposition. Vielmehr liegt ein Außenumfang des Blockierelements 51 dem Sperrelement 31 gegenüber.If the user is not authorized to unlock the door, the following sequence occurs. The locking element 31 is initially in the rest position. A key 200 without locking authorization is inserted into the key channel 36. The electronic data exchange shows that there is no authorization to unlock the door. Therefore, the actuator 52 is not activated and the blocking element 51 remains in a blocking position in which the recess 54 is not opposite the locking element 31, as in Figure 4 and 5 shown, in particular in the starting position. Rather, an outer circumference of the blocking element 51 is opposite the locking element 31.

Wird der Rotor 30 gedreht, so versucht das Sperrelement 31 an der ersten Anlagefläche 16 entlangzugleiten. Dieses gelingt jedoch nicht, da das Sperrelement 31 auf einem Außenumfang des Blockierelements 31 aufsteht. Somit lässt sich das Sperrelement 31 nicht entgegen der Kraft der zweiten Federn (nicht gezeigt) in die zweite Stellung drängen.If the rotor 30 is rotated, the locking element 31 attempts to slide along the first contact surface 16. However, this does not succeed because the locking element 31 rests on an outer circumference of the blocking element 31. Thus, the locking element 31 cannot be pushed into the second position against the force of the second springs (not shown).

Stattdessen wird das Statorelement 12, das sich in Drehrichtung des Sperrelements 31 befindet, von dem Sperrelement 31 entgegen der Kraft der ersten Feder 18 zurückgedrängt, bis das Sperrelement 31 an der zweiten Anlagefläche 17 anliegt. Das Statorelement 12 befindet sich nun in der zweiten Position. Hierbei kommt die Kopffläche 60 des Sperrelements 31 mit der der korrespondierenden, einem der Schenkel des Trapezes gegenüberliegenden, zweiten Anlagefläche 17 zur Anlage. Wird versucht, den Rotor 30 über den Schlüssel 200 mit Kraft zu drehen, so erzeugt die gezeigte Anordnung keine höhere Kraft vom Sperrelement 31 auf das Blockierelement 51.Instead, the stator element 12, which is located in the direction of rotation of the locking element 31, is pushed back by the locking element 31 against the force of the first spring 18 until the locking element 31 rests against the second contact surface 17. The stator element 12 is now in the second position. The head surface 60 of the locking element 31 comes into contact with the corresponding second contact surface 17 opposite one of the legs of the trapezoid. If an attempt is made to turn the rotor 30 with force using the key 200, the arrangement shown does not generate a higher force from the locking element 31 on the blocking element 51.

Die Anlagefläche 17 ist derart ausgebildet, dass die Anlagefläche 17 das Sperrelement 31 in der ersten Stellung hält. Somit bleibt der Rotor 30 durch das Sperrelement 31 blockiert, so dass eine Entriegelung der Tür unterbleibt.The contact surface 17 is designed such that the contact surface 17 holds the locking element 31 in the first position. The rotor 30 thus remains blocked by the locking element 31, so that the door cannot be unlocked.

Jede der Anlageflächen 17 korrespondiert zu einer jeweiligen Seite der zugewandten Kopffläche 60 des Sperrelements 31. Die Fläche 60 und die jeweils korrespondierende Anlagefläche 17 sind derart ausgebildet, dass sich die Anlagenfläche 17 zwischen der Fläche 60 und dem Blockierelement 51 befindet, wenn das Sperrelement 31 an der Anlagefläche 17 anliegt.Each of the contact surfaces 17 corresponds to a respective side of the facing head surface 60 of the locking element 31. The surface 60 and the respective corresponding contact surface 17 are designed such that the contact surface 17 is located between the surface 60 and the blocking element 51 when the locking element 31 rests against the contact surface 17.

Wird versucht, den Rotor 30 weiter zu drehen, so gleitet das Sperrelement 31 entgegen der Bewegungsrichtung 70 von dem Blockierelement 51 weg. Dieses wird durch die Schräge der zweiten Anlagefläche 17 erreicht. Das Sperrelement 31 kann mit der Kopffläche 60 auf der zweiten Anlagefläche 17 entlanggleiten. Somit können das Sperrelement 31 und das Blockierelement 51 bei der Anlage an der zweiten Anlagefläche 17 voneinander beabstandet sein. Zusätzlich oder alternativ werden die Kräfte, die auf das Sperrelement 31 bei einer weiteren versuchten Drehung des Rotors 30 wirken, in die zweite Anlagefläche 17 abgeleitet. Hierzu trägt bei, dass die Kopfflächen 60 zu den zweiten Anlageflächen korrespondieren und somit das Sperrelement 31 flächig an der zweiten Anlagenfläche anliegt.If an attempt is made to rotate the rotor 30 further, the locking element 31 slides away from the blocking element 51 in the opposite direction of movement 70. This is achieved by the slope of the second contact surface 17. The locking element 31 can slide along the second contact surface 17 with the head surface 60. The locking element 31 and the blocking element 51 can thus be spaced apart from one another when they rest on the second contact surface 17. Additionally or alternatively, the forces that act on the locking element 31 when the rotor 30 is attempted to rotate further are diverted to the second contact surface 17. This is helped by the fact that the head surfaces 60 correspond to the second contact surfaces and thus the locking element 31 rests flat against the second contact surface.

Hierdurch wird eine Beschädigung des Blockierelements 51 vermieden, und dieses nimmt nicht die Kräfte auf, die entstehen, wenn mit Gewalt versucht wird, den Rotor 30 im Stator 10 zu verdrehen. Insbesondere ist es hierdurch möglich, das Blockierelement 51 filigran auszuführen und beispielsweise nur einseitig zu lagern oder auf einer dünnen Welle des als Motor ausgeführten elektromechanischen Aktuators 52 aufzunehmen.This prevents damage to the blocking element 51, and it does not absorb the forces that arise when an attempt is made to use force to rotate the rotor 30 in the stator 10. In particular, this makes it possible to make the blocking element 51 delicate and, for example, to mount it only on one side or to mount it on a thin shaft of the electromechanical actuator 52 designed as a motor.

Die Sperrelement-Aussparung ist mit dem Bezugszeichen 15 versehen. Fig. 6 zeigt die Anordnung von Fig. 5 von einer Stirnseite des Sperrelements 31 gesehen, nur ohne Blockierelement 51. Hierbei befinden sich die Statorelemente 12 in der zweiten Position. Gleiche Bezugszeichen in Figur 6 gelten dabei durch die Beschreibung der Figur 5 als in Figur 6 mit beschrieben.The locking element recess is provided with the reference number 15. Fig.6 shows the arrangement of Fig.5 seen from one end of the locking element 31, only without blocking element 51. Here, the stator elements 12 are in the second position. The same reference numerals in Figure 6 are considered by the description of the Figure 5 than in Figure 6 with described.

In Figur 7 und Figur 8 sind ausgewählte Komponenten wie das Verlängerungselement 40, die elektromagnetische Aktuatorbaugruppe 50 mit dem elektromagnetischen Aktuator 52 und mit dem durch dieses drehbaren Blockierelement 51 dargestellt.In Figure 7 and Figure 8 selected components such as the extension element 40, the electromagnetic actuator assembly 50 with the electromagnetic actuator 52 and with the blocking element 51 rotatable by this are shown.

Das Verlängerungselement 40 ist zwischen einer Einschubposition, die das Verlängerungselement 40 bei eingestecktem Schlüssel 200 einnimmt, und einer Abzugsposition, die das Verlängerungselement bei abgezogenem Schlüssel 200 einnimmt, linear in parallel zur Rotorachse 35, d. h. in und gegen die Pfeilrichtung 79 (s. Fig. 10), bewegbar. Das Verlängerungselement 40 wird mittels einer Feder 49 in die Abzugsposition des Schlüssels 200 gedrängt. Das Verlängerungselement 40 ist in einer Führung 65 des Rotors 30 geführt (s. Fig. 4).The extension element 40 is movable between an insertion position, which the extension element 40 assumes when the key 200 is inserted, and a withdrawal position, which the extension element assumes when the key 200 is removed, linearly in parallel to the rotor axis 35, ie in and against the direction of the arrow 79 (see. Fig.10 ), movable. The extension element 40 is urged into the withdrawal position of the key 200 by means of a spring 49. The extension element 40 is guided in a guide 65 of the rotor 30 (see Fig.4 ).

Das Verlängerungselement 40 kann dazu dienen, den Abstand zwischen dem Schlüssel 200 und dem Kupplungsteil 41 zu überbrücken.The extension element 40 can serve to bridge the distance between the key 200 and the coupling part 41.

In Figur 7 ist seitlich des Verlängerungselements 40 das Sperrelement 31 gezeigt. Auf der Hinterseite weist das Verlängerungselement 40 einen Abschnitt 86 zum Schieben des Kupplungsteils 41 auf, an dem unterseitig der Anschlag 83 angebracht ist.In Figure 7 the locking element 31 is shown on the side of the extension element 40. On the rear side, the extension element 40 has a section 86 for pushing the coupling part 41, to which the stop 83 is attached on the underside.

Das Verlängerungselement 40 ist im gezeigten Beispiel gewinkelt ausgebildet. Dabei verläuft ein erster Teil des Verlängerungselements 40, der zur Wechselwirkung mit dem Schlüssel 200 bestimmt ist, radial weiter außen als ein zweiter Abschnitt 86 des Verlängerungselements 40, der zur Wechselwirkung mit dem Kupplungsteil 41 bestimmt ist. Dadurch kann der Abschnitt 86 mehr mittig angeordnet werden, um das Kupplungsteil 41 besser schieben zu können.In the example shown, the extension element 40 is angled. A first part of the extension element 40, which is intended for interaction with the key 200, runs radially further outward than a second section 86 of the extension element 40, which is intended for interaction with the coupling part 41. As a result, the section 86 can be arranged more centrally in order to be able to push the coupling part 41 better.

Das Verlängerungselement 40 ist ausgebildet, das Kupplungsteil 41 zu schieben, jedoch ohne mit dem Kupplungsteil 41 formschlüssig in Eingriff zu stehen. Dieses ermöglicht, dass das Verlängerungselement filigran ausgebildet sein kann.The extension element 40 is designed to push the coupling part 41, but without being in positive engagement with the coupling part 41. This allows the extension element to be designed in a filigree manner.

Wird das Verlängerungselement 40 in die Abzugsposition gebracht, so verbleibt durch den fehlenden Formschluss das Kupplungsteil 41 in Verbindung mit dem Mitnehmer 103. In der Abzugsposition jedoch lässt das Verlängerungselement 40 zu, dass das Kupplungsteil 41 aus der Wirkverbindung mit dem Mitnehmer 103 gelangt, z. B. durch eine Bewegung des Kupplungsteils 41 von der anderen Seite der Tür her.. In der Einschubposition hingegen blockiert das Verlängerungselement 40 die Bewegung des Kupplungsteils 41 aus der Wirkverbindung mit dem Mitnehmer 103.If the extension element 40 is brought into the withdrawal position, the coupling part 41 remains connected to the driver 103 due to the lack of positive locking. In the withdrawal position, however, the extension element 40 allows the coupling part 41 to come out of the operative connection with the driver 103, e.g. by a movement of the coupling part 41 from the other side of the door. In the insertion position, however, the extension element 40 blocks the movement of the coupling part 41 out of the operative connection with the driver 103.

Das Verlängerungselement 40 dient dazu, das Blockierelement 51 mechanisch in der Freigabeposition zu halten. Befindet sich das Verlängerungselement 40 in der Einschubposition, so liegt der Anschlag 83 des Verlängerungselements 40 in der Rotationsbahn der Haltenocke 51a. Somit liegt das Blockierelement 51 mit der Haltenocke 51a in der Freigabeposition an dem Anschlag 83 des Verlängerungselements 40 an.The extension element 40 serves to mechanically hold the blocking element 51 in the release position. If the extension element 40 is in the insertion position, the stop 83 of the extension element 40 lies in the rotation path of the holding cam 51a. The blocking element 51 with the holding cam 51a thus lies against the stop 83 of the extension element 40 in the release position.

Hierbei drückt der Haltenocke 51a senkrecht zu der Bewegungsrichtung des Verlängerungselements 40. Dadurch und durch die axiale räumliche Ausdehnung des Anschlags 83 und der Haltenocke 51a ist eine gewisse Fehlertoleranz in Bezug auf die Lage der Einschubposition des Verlängerungselements möglich.In this case, the retaining cam 51a presses perpendicular to the direction of movement of the extension element 40. As a result of this and the axial spatial extension of the stop 83 and the retaining cam 51a, a certain error tolerance with regard to the position of the insertion position of the extension element is possible.

Das Verlängerungselement 40 dient dazu, das Blockierelement 51 mechanisch von der Freigabeposition in die Ausgangsposition zurückzuführen. Hierbei kann das Verlängerungselement 40 bei einem Schlüsselabzug in die Abzugsposition zurückbewegt werden. Bei der Bewegung des Verlängerungselements in die Abzugposition kann eine Bewegung des Blockierelements 51 in die Blockierposition hervorgerufen oder zugelassen werden. Dieses wird dadurch ermöglicht, dass der Anschlag 83 des Verlängerungselements 40 in der Abzugsposition außerhalb der Rotationsbahn der Haltenocke 51a liegt. Somit kann der Anschlag 83 eine Bewegung des Blockierelements 51 durch das vorgespannte Federelement 80 in die Ausgangsposition nicht mehr verhindert. Vielmehr befindet sich der Anschlag 83 weiter vorne bezüglich der Rotorachse 35. Anders ausgedrückt befindet sich in der Abzugsposition des Verlängerungselements 40 die Haltenocke 51a zwischen dem Anschlag 83 und dem Verbindungsabschnitt 38 in axialer Richtung. In der Abzugsposition des Verlängerungselements 40 befindet sich der Anschlag 83 zwischen der Stirnseite 37 und der Haltenocke 51a in axialer Richtung. Die Figuren 7 und 8 zeigen die Abzugsposition.The extension element 40 serves to mechanically return the blocking element 51 from the release position to the starting position. The extension element 40 can be moved back to the withdrawal position when the key is removed. When the extension element is moved to the withdrawal position, a movement of the blocking element 51 to the blocking position can be caused or permitted. This is made possible by the fact that the stop 83 of the extension element 40 in the withdrawal position is located outside the rotation path of the retaining cam 51a. Thus, the stop 83 can no longer prevent a movement of the blocking element 51 by the pre-tensioned spring element 80 into the starting position. Rather, the stop 83 is located further forward with respect to the rotor axis 35. In other words, in the withdrawal position of the extension element 40, the retaining cam 51a is located between the stop 83 and the connecting section 38 in the axial direction. In the withdrawal position of the extension element 40, the stop 83 is located between the front side 37 and the retaining cam 51a in the axial direction. The Figures 7 and 8 show the trigger position.

In der Einschubposition des Verlängerungselements 80 befindet sich hingegen der Anschlag 83 und die Haltenocke 51a axial gesehen, gleich weit von dem Verbindungsabschnitt 38 und/oder der Sitrnseite 37 entfernt.In the inserted position of the extension element 80, however, the stop 83 and the retaining cam 51a are axially equidistant from the connecting section 38 and/or the side face 37.

In der Einschubposition verhindert das Verlängerungselement 40, insbesondere der Anschlag 83, dass das Blockierelement 51 in der zweiten Drehrichtung in die Freigabeposition gelangen kann. Vielmehr würde hierbei vor Erreichen der Freigabeposition die Haltenocke 51a an einen (in Figur 8 unteren) Bereich 83a des Anschlags 83 stoßen. Die erste Drehrichtung ist durch den längeren Drehwinkelbereich zum Erreichen der Freigabeposition hingegen besonders vor Manipulation geschützt. In der Abzugsposition ist hingegen das Kupplungsteil 41 nicht eingekuppelt oder würde bei einer Rotation des Rotors 30 sich wieder außer Wirkverbindung mit dem Mitnehmer 103 bewegen.In the insertion position, the extension element 40, in particular the stop 83, prevents the blocking element 51 from reaching the release position in the second direction of rotation. Rather, before reaching the release position, the retaining cam 51a would be pushed against a (in Figure 8 lower) area 83a of the stop 83. The first direction of rotation is particularly protected against manipulation due to the longer angle of rotation range for reaching the release position. In the withdrawal position, however, the coupling part 41 is not engaged or would move out of operative connection with the driver 103 if the rotor 30 rotated.

Das Verlängerungselement 40 hält bei eingestecktem Schlüssel das Blockierelement 51 in der Freigabeposition und lässt eine Rückbewegung des Blockierelements 51 in die Ausgangsposition zu, wenn sich das Verlängerungselement 40 mit dem Schlüssel 200 beim Schlüsselabzug in Richtung der Frontseite 37 bewegt.When the key is inserted, the extension element 40 holds the blocking element 51 in the release position and allows the blocking element 51 to move back to the starting position when the extension element 40 with the key 200 moves in the direction of the front side 37 when the key is removed.

Bei Aktivierung des elektromechanischen Aktuators 52 wird das Blockierelement 51 in der hier dargestellten Ansicht entgegen dem Uhrzeigersinn verdreht, so dass sich durch diese Verdrehung unter Vorspannung des Federelementes 80 die Haltenocke 51a zur Anlage gegen den Anschlag 83 des Verlängerungselements 40 bewegt. Durch diese Verdrehung des Blockierelementes 51 kann die Aussparung 54 in die korrespondierende Stellung mit dem Sperrelement 31 verdreht werden.When the electromechanical actuator 52 is activated, the blocking element 51 is rotated counterclockwise in the view shown here, so that this rotation, under pre-tension of the spring element 80, moves the retaining cam 51a to rest against the stop 83 of the extension element 40. This rotation of the blocking element 51 allows the recess 54 to be rotated into the corresponding position with the locking element 31.

Wird der Schlüssel 200 wieder abgezogen, so wandert der Anschlag 83 aus dem Bewegungsbereich der Haltenocke 51a heraus, und das Blockierelement 51 dreht durch das Federelement 80 in die Ausgangsposition zurück, in der das Sperrelement in die Sperrelement-Ausnehmung 15 durch die zweiten Federn zurückgedrückt wird und die Sperrvorrichtung 1 wieder gesperrt ist.If the key 200 is removed again, the stop 83 moves out of the range of movement of the holding cam 51a, and the blocking element 51 rotates back into the starting position by the spring element 80, in which the locking element is pressed back into the locking element recess 15 by the second springs and the locking device 1 is locked again.

Wird der Schlüssel 200 wieder eingesteckt und wird das Verlängerungselement 40 wieder in die Einschubposition geverdrückt, so wandert der Anschlag 83 wieder zurück in den Bewegungsbereich der Haltenocke 51a, und bei einem weiteren Aktivieren des elektromechanischen Aktuators 52 gelangt die Haltenocke 51a wieder zur Anlage gegen den Anschlag 83. Das Blockierelement 51 kann dabei vom elektromechanischen Aktuator 52 immer im gleichen Drehsinn und immer über denselben Drehwinkel angedreht werden, bis das Federelement 80 das Blockierelement 51 über den letzten Winkelabschnitt in die Freigabeposition dreht. Wird der Schlüssel 200 abgezogen, muss der elektromechanische Aktuator 52 nicht erneut aktiviert werden, da das Federelement 80 bewirkt, dass das Blockierelement 51 in die Ausgangsposition zurückgedreht wird.If the key 200 is inserted again and the extension element 40 is pushed back into the insertion position, the stop 83 moves back into the range of motion of the holding cam 51a, and when the electromechanical actuator 52 is activated again, the holding cam 51a comes back into contact with the stop 83. The blocking element 51 can always be turned by the electromechanical actuator 52 in the same direction of rotation and always over the same angle of rotation until the spring element 80 turns the blocking element 51 over the last angle section into the release position. If the key 200 is removed, the electromechanical actuator 52 does not have to be activated again, since the spring element 80 causes the blocking element 51 to be turned back to the starting position.

Ein Eingriffselement 74 des Verlängerungselements 40 dient zum Eingriff in einen Schlüssel 200. Hierdurch wird sichergestellt, dass der Schlüssel 200 das Verlängerungselement 40 bei einem Schlüsselabzug mitzieht.An engagement element 74 of the extension element 40 serves to engage with a key 200. This ensures that the key 200 pulls the extension element 40 along when the key is removed.

Ein ringförmiger Vorsprung 22 ist aus zwei insbesondere halbschalenartigen Teilen gezeigt, deren einander zugewandte Innenflächen 26 mit dem Schlüssel 200 bajonettverschlussartig zusammenwirken. Die Teile sind in eine umlaufend ausgebildete Nut 45 des ersten Rotorelements 32 eingesetzt, siehe Fig. 4. Nach außen hervorstehende Vorsprünge 25 des ringförmigen Vorsprungs 22 fixieren die Teile des Vorsprungs 22 im Statorkörper 11 in ihrer Relativposition zueinander und zum Statorkörper 11. Der ringförmige Vorsprung 22 wirkt mit dem eingeschobenen Schlüssel 200 vorzugsweise bajonettartig als Schlüsselabzugssperre zusammen. Der Vorsprung 22 verhindert, dass bei eingestecktem Schlüssel 200 der Schlüssel 200 durch die Feder 49 Sperrvorrichtung 1 gedrückt wird, so dass das Verlängerungselement 40 bereits vorzeitig in die Abzugsposition und damit das Blockierelement 51 in die Blockierposition gelangt oder zumindest das Sperrelement 31 aus der zweiten Stellung drängt.An annular projection 22 is shown as two parts, in particular half-shell-like parts, whose inner surfaces 26 facing each other interact with the key 200 in the manner of a bayonet lock. The parts are inserted into a circumferential groove 45 of the first rotor element 32, see Fig.4 . Outwardly projecting projections 25 of the annular projection 22 fix the parts of the projection 22 in the stator body 11 in their relative position to one another and to the stator body 11. The annular projection 22 cooperates with the inserted key 200, preferably in a bayonet-like manner, as a key withdrawal lock. The projection 22 prevents the key 200 from being pressed by the spring 49 of the locking device 1 when the key 200 is inserted, so that the extension element 40 prematurely reaches the withdrawal position and thus the blocking element 51 reaches the blocking position or at least pushes the blocking element 31 out of the second position.

Ein Rastelement 61 ist vorgesehen, das durch Anliegen in einer Kerbe 69 den Rotor 30 in Bezug auf den Stator 10 in Position hält (s. Fig. 4). Hierbei wird eine Drehung des Rotors 30 durch das Rastelement 61 derart in dem Stator gehemmt, dass das Sperrelement 31 die Ruheposition einnehmen kann.A locking element 61 is provided which holds the rotor 30 in position with respect to the stator 10 by engaging in a notch 69 (see Fig.4 ). In this case, rotation of the rotor 30 is inhibited by the locking element 61 in the stator such that the locking element 31 can assume the rest position.

Wie in Figur 10 dargestellt, endet der Schlüsselkanal 36 mit einer Wandung 36a. Wie in Figur 10 dargestellt ist, ragt nur ein Teil des Verlängerungselements 40, das zur Interaktion mit dem Schlüssel 200 ausgebildet ist, in den Schlüsselkanal 36. Die Wandung 36a ist im Wesentlichen geschlossen bis auf einen Abschnitt, der für das Hineinragen des Verlängerungselements 40 in den Schlüsselkanal notwendig ist. Dadurch dass das Verlängerungselement 40 zumindest mit dem Teil des Verlängerungselements 40, der in den Schlüsselkanal 36 hineinragt, filigran ausgebildet ist, kann die Wandung 36a den Schlüsselkanal 36 abschließen und die dahinter liegenden Bauteile, nämlich das Sperrelement 31, das Blockierelement 51, das Federelement 80, den Aktuator 52 und die Steuerungsvorrichtung 53, schützen. Der Schlüsselkanal 36 kann entsprechend kurz ausgebildet sein.As in Figure 10 shown, the key channel 36 ends with a wall 36a. As in Figure 10 As shown, only a part of the extension element 40, which is designed to interact with the key 200, projects into the key channel 36. The wall 36a is essentially closed except for a section that is necessary for the extension element 40 to project into the key channel. Because the extension element 40 is designed to be filigree, at least with the part of the extension element 40 that projects into the key channel 36, the wall 36a can Close the key channel 36 and protect the components located behind it, namely the locking element 31, the blocking element 51, the spring element 80, the actuator 52 and the control device 53. The key channel 36 can be designed to be correspondingly short.

Die Kontaktelemente 44 sind an einem Gehäuse 46 federnd befestigt.The contact elements 44 are spring-mounted on a housing 46.

Das Gehäuse 46 dient zugleich dazu, die Rotorelemente 32, 33 axial aneinander zu befestigen. Hierzu umfasst das Gehäuse 46 ein erstes Rastelement 47, das in das erste Rotorelement 32 einrastet. Hierzu umfasst das erste Rotorelement 32 eine Kante 78. Das Gehäuse 46 umfasst ein zweites Rastelement 48, das in das zweite Rotorelement 33 einrastet. Hierzu umfasst das zweite Rotorelement 33 eine nicht dargestellte Nut.The housing 46 also serves to axially fasten the rotor elements 32, 33 to one another. For this purpose, the housing 46 comprises a first locking element 47, which locks into the first rotor element 32. For this purpose, the first rotor element 32 comprises an edge 78. The housing 46 comprises a second locking element 48, which locks into the second rotor element 33. For this purpose, the second rotor element 33 comprises a groove (not shown).

Das Gehäuse 46 stellt die Wandung 36a zur Verfügung.The housing 46 provides the wall 36a.

Die Einbauvorrichtung 1 kann auch in andere Schließvorrichtungen eingesetzt werden, beispielsweise in einen Halbzylinder, einen Knaufzylinder, einem Möbelzylinder oder einem Hängeschloss.The installation device 1 can also be used in other locking devices, for example in a half cylinder, a knob cylinder, a furniture cylinder or a padlock.

Es ist denkbar, dass das Kupplungsteil 41 fehlt. Vielmehr können erfindungsgemäße Schließvorrichtungen vorgesehen sein, in denen der Mitnehmer 103 starr an dem Rotor 30 befestigt ist. Der Mitnehmer 103 kann zudem selber als Riegel dienen, z. B. bei einem Möbelschloss. Bei einem fehlenden Kupplungsteil 41 dient das Verlängerungselement 40 weiterhin zum Halten des Blockierelements 51 gegen die Federkraft des Federelements 80 in der Freigabeposition.It is conceivable that the coupling part 41 is missing. Instead, locking devices according to the invention can be provided in which the driver 103 is rigidly attached to the rotor 30. The driver 103 can also itself serve as a latch, e.g. in a furniture lock. If the coupling part 41 is missing, the extension element 40 continues to serve to hold the blocking element 51 against the spring force of the spring element 80 in the release position.

Der Mitnehmer 103 und der Einsatz 105 können einstückig miteinander ausgebildet sein.The driver 103 and the insert 105 can be formed integrally with each other.

Das Statoreinsatzelement 13 und der Statorkörper 11 können einteilig ausgebildet sein. Ebenfalls ist es denkbar, dass die Hülle 14 fehlt und der Statorkörper direkt in dem Schließvorrichtungsgehäuse 101 befestigt ist.The stator insert element 13 and the stator body 11 can be formed in one piece. It is also conceivable that the casing 14 is missing and the stator body is fastened directly in the locking device housing 101.

In einer weiteren Alternative der Erfindung ist die Sperrvorrichtung 1 nicht als Einbauvorrichtung 1 ausgebildet. Vielmehr ist der Stator 10 als Schließvorrichtungsgehäuse 101 ausgebildet. Somit kann der Rotor 30 ausgebildet sein, direkt in ein Schließzylindergehäuse 101 eingeschoben zu werden. Das Schließvorrichtungsgehäuse 101 übernimmt dann die Funktion des Stators 10.In a further alternative of the invention, the locking device 1 is not designed as a built-in device 1. Rather, the stator 10 is designed as a locking device housing 101. The rotor 30 can thus be designed to be inserted directly into a locking cylinder housing 101. The locking device housing 101 then takes over the function of the stator 10.

Das Sperrelement 31 und/oder die Aktuatorbaugruppe können auch im Stator 10 gelagert sein, sodass das Sperrelement 31 gegen den Rotor 30 gedrückt wird.The locking element 31 and/or the actuator assembly can also be mounted in the stator 10 so that the locking element 31 is pressed against the rotor 30.

Die Übertragungsvorrichtung 44 kann beispielsweise als kontaktlose Spule ausgebildet sein.The transmission device 44 can, for example, be designed as a contactless coil.

Der Rotor 30 muss nicht mehrere Rotorelemente 32, 33 aufweisen. Dennoch kann der Rotor 30 Abschnitte mit unterschiedlichen Durchmessern aufweisen.The rotor 30 does not have to have multiple rotor elements 32, 33. Nevertheless, the rotor 30 can have sections with different diameters.

Claims (15)

  1. An electromechanical locking device (1) for a closure element or for a switching element
    with a stator (10),
    with a rotor (30),
    with a locking element (31) and with a blocking element (51),
    wherein the rotor (30) is mounted in the stator (10),
    wherein the locking element (31) can be moved between a first position and a second position,
    wherein a starting position and a release position can be assumed by the blocking element (51), wherein in the starting position the blocking element (51) prevents a movement of the locking element (31) into the second position and in the release position the blocking element (51) allows a movement of the blocking element (31) into the second position
    characterized in that
    the locking device (1) comprises a spring element (80), wherein the spring element (80) interacts with the blocking element (51) in such manner that the spring element (80) is at least temporarily clamped when the blocking element (51) is moved from the starting position into the release position in such manner that the spring element (80) pushes the blocking element (51) back in the direction of the starting position.
  2. The locking device (1) according to claim 1, wherein the blocking element (51) can be moved starting from the starting position in a first direction, in particular a first direction of rotation (81), and in a second direction, in particular in a second direction of rotation (82), wherein the spring element (80) and the blocking element (51) interact in such manner that the spring element (80) is at least temporarily clamped both when moved in the first direction and when moved in the second direction.
  3. The locking device (1) according to claim 1 or 2, wherein in particular the spring element (80) is designed as a torsion spring, wherein the spring element (80) has a torsion leg (80a) and a contact leg (80b) angled from this, wherein the contact leg (80b) is pretensioned against a pin (51b) of the blocking element (51).
  4. The locking device (1) according to one of the preceding claims, wherein the locking device (1) comprises an electromechanical actuator (52), wherein the actuator (52) is designed to move, in particular to rotate, the blocking element (51) in the direction of the release position against the force of the spring element (80), in particular wherein the spring element (80) is tensioned in such manner that the spring element (80) can rotate the blocking element (51) back into the starting position.
  5. The locking device (1) according to one of the preceding claims, wherein the actuator (52) rotates the blocking element (51) starting from the starting position with increasing tension of the spring element (80) in the direction of the release position up to a dead center, wherein after a dead center is exceeded, the spring element (80) moves or moves along with the blocking element (51) into the release position.
  6. The locking device (1) according to one of the preceding claims, wherein the blocking element (51) rests against a stop (83) of the locking device (1) in the release position, wherein the spring element (80) presses the blocking element (51) against the stop (83) and/or prevents or reduces the blocking element (51) bouncing back from the stop (83) during the movement into the release position.
  7. The locking device (1) according to one of the preceding claims, wherein the locking device (1) comprises an extension element (40), wherein the extension element (40) can be moved between an insertion position and a withdrawal position, wherein the extension element (40) and the blocking element (51) are designed such that the extension element (40) in the insertion position prevents a movement of the blocking element (51) from the release position into a blocking position, in particular into the starting position, wherein in particular the extension element (40) blocks the blocking element (51) from being moved from the release position into a blocking position by the force of the spring element (80).
  8. The locking device (1) according to one of the preceding claims, wherein the locking device (1) comprises an extension element (40), wherein the extension element (40) can be moved between an insertion position and a withdrawal position, wherein the extension element (40) and the blocking element (51) are designed such that the extension element (40) in the withdrawal position enables a movement of the blocking element (51) from the release position into a blocking position, in particular into the starting position, wherein the extension element (40) is located in the withdrawal position out of operative connection with the blocking element (51), such that the blocking element (51) moves from the release position into a blocking position by the force of the spring element (80).
  9. The locking device (1) according to one of the preceding claims, wherein the movement from the starting position into the release position and from the release position into the starting position takes place in the same direction of rotation, in particular in the first direction of rotation (81).
  10. The locking device (1) according to one of the preceding claims, wherein the extension element (40) serves to move a coupling part (41) into an operative connection with a driver (103), wherein in particular the coupling part (41) remains in the operative connection with the driver (103) when the extension element (40) is moved from the insertion position into the withdrawal position.
  11. The locking device (1) according to one of the preceding claims, wherein the extension element (40) is designed to be moved, in particular displaced, in the axial direction between the withdrawal position and the insertion position, wherein the blocking element (51) is pushed at least with a force component perpendicular to the axial direction against the extension element (40) by the spring element (40), while the extension element (40) blocks a movement of the blocking element (40) from the release position into a blocking position.
  12. The locking device (1) according to one of the preceding claims, wherein the extension element (40) in the insertion position blocks a movement of the blocking element (51) from the starting position into the release position in a direction of rotation, in particular the second direction of rotation (82).
  13. The locking device (1) according to one of the preceding claims, wherein the extension element (40) in the insertion position prevents a movement of a coupling part (41) from the operative connection with the driver (103) and/or the extension element (40) in the withdrawal position permits the operative connection of a coupling part (41) with the driver (103) to be removed.
  14. The locking device (1) according to one of the preceding claims, wherein the locking device (1) comprises a transmission device (44) for transmitting data and/or electrical energy from a key (200) to the locking device (1), wherein the transmission of data and/or electrical energy is interrupted when the key (200) is removed and/or the extension element (80) engages in a form-fitting manner in the key, such that when the key is removed, the extension element (40) always moves from the insertion position into the withdrawal position.
  15. A closing device (100) with a closing device housing (101) and a locking device (1) according to one of the preceding claims, wherein the locking device (1) is accommodated in the closing device housing (101).
EP21212263.4A 2021-12-03 2021-12-03 Electromechanical locking device Active EP4191000B1 (en)

Priority Applications (7)

Application Number Priority Date Filing Date Title
EP21212263.4A EP4191000B1 (en) 2021-12-03 2021-12-03 Electromechanical locking device
ES21212263T ES2989155T3 (en) 2021-12-03 2021-12-03 Electromechanical retention device
CA3238312A CA3238312A1 (en) 2021-12-03 2022-12-01 Electromechanical locking device
PCT/EP2022/084123 WO2023099691A1 (en) 2021-12-03 2022-12-01 Electromechanical locking device
US18/714,964 US20240418010A1 (en) 2021-12-03 2022-12-01 Electromechanical locking device
CN202280079161.7A CN118339350A (en) 2021-12-03 2022-12-01 Electromechanical locking device
AU2022399944A AU2022399944B2 (en) 2021-12-03 2022-12-01 Electromechanical locking device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP21212263.4A EP4191000B1 (en) 2021-12-03 2021-12-03 Electromechanical locking device

Publications (3)

Publication Number Publication Date
EP4191000A1 EP4191000A1 (en) 2023-06-07
EP4191000C0 EP4191000C0 (en) 2024-08-28
EP4191000B1 true EP4191000B1 (en) 2024-08-28

Family

ID=78821890

Family Applications (1)

Application Number Title Priority Date Filing Date
EP21212263.4A Active EP4191000B1 (en) 2021-12-03 2021-12-03 Electromechanical locking device

Country Status (7)

Country Link
US (1) US20240418010A1 (en)
EP (1) EP4191000B1 (en)
CN (1) CN118339350A (en)
AU (1) AU2022399944B2 (en)
CA (1) CA3238312A1 (en)
ES (1) ES2989155T3 (en)
WO (1) WO2023099691A1 (en)

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Publication number Priority date Publication date Assignee Title
FR2655367B1 (en) * 1989-12-05 1992-04-03 Vachette Sa DOUBLE BARREL LOCK WITH MECHANICAL AND ELECTRICAL CONDEMNATION.
US5552777A (en) * 1992-02-14 1996-09-03 Security People, Inc. Mechanical/electronic lock and key
FR2779168B1 (en) * 1998-05-27 2001-01-26 Euronetics France ELECTRONIC LOCK WITH MECHANICAL CLUTCH
IT1316812B1 (en) * 2000-03-17 2003-05-12 Iseo Serrature Spa LOCK FOR DOORS WITH HIGH FLEXIBILITY OF USE
DE10328297A1 (en) * 2003-06-23 2005-01-20 Buga Technologies Gmbh Electromechanical lock cylinder
SE0500975L (en) 2005-04-29 2006-01-24 Assa Ab Electromechanical locking device
SE527206C2 (en) * 2005-04-29 2006-01-17 Assa Ab Electromagnetic lock, has electronic actuator for latch operated by motor housed inside core
TWI458882B (en) * 2012-05-15 2014-11-01 Wfe Technology Corp Actuating motor set of electronic lock
DE102012106722B4 (en) * 2012-07-24 2017-11-30 K.A. Schmersal Holding Gmbh & Co. Kg Guard for an access protection device with an auxiliary release
EP2935731B1 (en) * 2012-12-23 2019-10-16 Almotec B.V. Cylinder lock and key
PL2886756T3 (en) * 2013-12-19 2019-07-31 Bks Gmbh Locking cylinder
RU2648630C1 (en) * 2016-03-21 2018-03-26 Сальто Системс С.Л. Executive clutch mechanism for electronic lock cylinders, identifiable by low energy consumption, and the method of operation of the specific mechanism
CN107558821A (en) * 2017-10-10 2018-01-09 珠海唯码科技有限公司 A kind of intelligent door lock and its method for unlocking
US20200270904A1 (en) * 2019-02-25 2020-08-27 Nexkey, Inc. Electronic Mortise Lock
US20220064995A1 (en) * 2020-08-27 2022-03-03 Jeff Chen Idling Switch Structure of Shaft of Electronic Lock

Also Published As

Publication number Publication date
AU2022399944A1 (en) 2024-06-13
WO2023099691A1 (en) 2023-06-08
EP4191000C0 (en) 2024-08-28
AU2022399944B2 (en) 2025-01-23
CN118339350A (en) 2024-07-12
CA3238312A1 (en) 2023-06-08
EP4191000A1 (en) 2023-06-07
ES2989155T3 (en) 2024-11-25
US20240418010A1 (en) 2024-12-19

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