EP3348751B1 - Barillet électronique - Google Patents

Barillet électronique Download PDF

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Publication number
EP3348751B1
EP3348751B1 EP17151663.6A EP17151663A EP3348751B1 EP 3348751 B1 EP3348751 B1 EP 3348751B1 EP 17151663 A EP17151663 A EP 17151663A EP 3348751 B1 EP3348751 B1 EP 3348751B1
Authority
EP
European Patent Office
Prior art keywords
handle
housing
shaft
lock cylinder
cylinder
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
EP17151663.6A
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German (de)
English (en)
Other versions
EP3348751A1 (fr
Inventor
Daniel Knappik
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.)
BKS GmbH
Original Assignee
BKS GmbH
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
Application filed by BKS GmbH filed Critical BKS GmbH
Priority to EP17151663.6A priority Critical patent/EP3348751B1/fr
Publication of EP3348751A1 publication Critical patent/EP3348751A1/fr
Application granted granted Critical
Publication of EP3348751B1 publication Critical patent/EP3348751B1/fr
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
    • E05B9/00Lock casings or latch-mechanism casings ; Fastening locks or fasteners or parts thereof to the wing
    • E05B9/04Casings of cylinder locks
    • E05B9/045Modular casings for adjusting the length of cylinder 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
    • E05B47/06Controlling mechanically-operated bolts by electro-magnetically-operated detents
    • E05B47/0611Cylinder locks with electromagnetic control
    • E05B47/0615Cylinder locks with electromagnetic control operated by handles, e.g. by knobs
    • 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
    • E05B47/0638Cylinder locks with electromagnetic control by disconnecting the rotor
    • E05B47/0642Cylinder locks with electromagnetic control by disconnecting the rotor axially, i.e. with an axially disengaging coupling element
    • 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
    • E05B2047/0094Mechanical aspects of remotely controlled 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

Definitions

  • Lock cylinder and electronic lock cylinders are known from the prior art.
  • the thickness of the door leaf may need to be measured with door fitting and compared with available in different lengths lock cylinders to procure and install a lock cylinder in the appropriate length. Subsequent adaptation is not possible, so that a locking cylinder must be procured again in case of measuring errors.
  • the invention has for its object to allow in an electronic lock cylinder with simple structural means in the handling simple and accurate length adjustment. It is desirable that such a length adjustment can also be made by end customers.
  • the lock cylinder having the features of claim 1.
  • the lock cylinder is characterized in that the first handle has an access electronics (RFID electronic unit) for wireless communication with an electronic identification carrier (RFID transponder), wherein the access electronics as a whole is associated with the first handle and is adapted to generate a release signal in the presence of access authorization of the identification carrier.
  • RFID electronic unit for wireless communication with an electronic identification carrier (RFID transponder)
  • RFID transponder an electronic identification carrier
  • the proposed lock cylinder has the advantage that with simple structural means an accurate adjustment of the axial length of the lock cylinder to a thickness of a door leaf (door leaf thickness) and possibly mounted on the door panel can be done. If necessary, the cylinder housing can initially be roughly adjusted to the door leaf thickness with housing extension elements. The housing extension elements can be enclosed with the lock cylinder so that the worker or the end customer can adapt the lock cylinder directly at the installation site. A (fine) adjustment can be made by adjusting the axial position of the second handle relative to the shaft. This is a particularly easy to perform adjustment in the installed state of the lock cylinder possible. A millimeter precision tuning can be made, in particular continuously.
  • the access electronics according to the invention as a whole associated with the first handle, so that a cabling effort is low and wiring between the two handles can be avoided.
  • This has the advantage that the second handle can be completely optimized to receive an excess length of the shaft in its interior (interior of the second handle).
  • the second handle may have a particularly large space for receiving excess wavelength, since this does not have to accommodate electronic components. This results in a correspondingly large possible adjustment range available for adaptation of the lock cylinder.
  • the lock cylinder is a length-adjustable electronic lock cylinder.
  • the lock cylinder is used to operate a mortise lock, which is installed in a door leaf.
  • the cam of the lock cylinder is used to actuate a lock mechanism of the mortise lock.
  • the handles can each be designed as knobs (door knobs).
  • the first handle may be an external handle (outside knob) located on the outside of a door (unsecured side).
  • the second handle can be an inner handle (inner knob), which is arranged on the inside of a door (secured side).
  • the shaft can be axially secured by a securing element in the cylinder housing, for example by a retaining ring (snap ring).
  • cooperating with the access electronics coupling means may be provided which is adapted to couple the first handle to the shaft as a result of the release signal.
  • the coupling device may have a drive source, in particular an electric motor which actuates the coupling device (disengaging and engaging).
  • a drive source in particular an electric motor which actuates the coupling device (disengaging and engaging).
  • an energy storage device can be arranged, which serves to supply power to the access electronics and / or coupling device.
  • the coupling device can be arranged in a journal section, via which the first handle is rotatably mounted in the passage of the cylinder housing.
  • the pin portion is fixedly connected to the first handle, so that the first handle is rotatably coupled via the pin portion with the cylinder housing.
  • the pin portion is axially secured by means of a securing element in the cylinder housing, in particular by means of a retaining ring (snap ring).
  • the coupling device may comprise a coupling element which is displaceable in such a way that it engages, in particular as a result of the release signal for coupling, with a receptacle formed on the shaft.
  • the coupling element may be displaceable in the axial direction of the pin portion and / or the passage of the cylinder housing.
  • the coupling element may be formed as a cuboid section, in particular with coupling wings.
  • the shaft may have on the in the installed state of the first handle end facing a corresponding with the coupling element receptacle, in particular one or more open in the axial direction recesses.
  • the second handle may be coupled directly to the shaft, in particular by means of a threaded connection.
  • a threaded connection This realizes a structurally simple connection with the smallest possible number of components.
  • a reliable fine positioning between shaft and second handle is allows.
  • the shaft has an external thread and the second handle has a recess, for example a blind hole, with a corresponding internal thread.
  • the threads are designed as fine thread.
  • the second handle can be fixed in the set position on the shaft, so that the second handle and the shaft are rotatably coupled together. This ensures that a set position of the second handle on the shaft is maintained.
  • the second handle may have a threaded bore, which opens into the interior or the recess of the second handle.
  • a threaded pin grub screw
  • the second handle can be fixed to the shaft.
  • the shaft may have a longitudinal slot into which the grub screw can engage.
  • the access electronics can be arranged exclusively on or in the first handle.
  • the access electronics is thus concentrated as a compact unit in the first handle, whereby the cabling can be kept low.
  • Access electronics and coupling device can be easily connected and matched.
  • the other components of the lock cylinder, for example, the second handle can thus be optimized for their function.
  • the second handle can thus also accommodate a large excess length of the shaft.
  • the cylinder housing may have two preferably identical housing sections, which are coupled or coupled together by means of a connector arranged axially between the housing sections.
  • This is a modular design of the Lock cylinder realized with ease of mounting. By designing the housing sections as identical parts, the production favors and simplifies storage and spare parts procurement.
  • the housing sections may be configured such that one or more of the housing extension elements are respectively inserted between the connector and one of the housing sections.
  • This has the advantage that the coupling of other components, for example, the first and second handle, regardless of the configuration of the lock cylinder remains the same.
  • the stability of the lock cylinder is ensured to the outside (axial end).
  • the housing extension elements can thus be arranged in a secure manner in the central region of the lock cylinder and thus inside a door leaf.
  • the housing sections and / or the housing extension elements may each have a recess for receiving a projecting from the connector pin portion.
  • the connector has in particular two in the opposite direction (axial direction) projecting pin portions.
  • the housing sections may each have a threaded bore and one or more of the housing extension elements may be fastened or fastened by means of a screw on one of the housing sections.
  • a stable connection between the housing sections and the housing extension elements is made possible, this adjustment can be carried out on the basis of the screw with standard tools and by an end user.
  • the housing extension elements may have a through opening for a screw for attachment to the threaded bore of one of the housing sections. This allows a quick installation or adjustment of the lock cylinder, since the screw can be inserted through the through hole and screwed into the housing section.
  • the housing sections and / or the housing extension elements may have a threaded bore opening into the recess, so that the pin sections of the connector can be fastened or fastened in the recess by means of a threaded pin. This ensures the assignment of the components of the lock cylinder.
  • the stability of the lock cylinder is hereby increased and facilitates assembly of the lock cylinder due to a possible fixing of parts.
  • the shaft may be formed as a hollow shaft.
  • the weight of the shaft can be reduced and the energy required for driving can be reduced.
  • an axially overlapping configuration is thus possible, for example, the pin portion can protrude into the interior of the hollow shaft. The minimum axial length of the cylinder housing can thus be kept low.
  • the cylinder housing, in particular the housing sections, and the housing extension elements can have an identical cross section (profile cylinder cross section).
  • FIG. 1 shows an electronic lock cylinder, which is generally designated by the reference numeral 10.
  • the lock cylinder 10 has a cylinder housing 12 with an axial passage 14 which extends along a longitudinal axis 16 of the lock cylinder 10 (see FIG. 2 and 4 ).
  • a shaft 18 is mounted in the axial passage 14.
  • a cam 20 is rotatably coupled to the shaft 18.
  • the cylinder housing 12 is adapted to be extended axially by means of housing extension elements 22 (see FIG. 3 and 4 ).
  • the first handle 24 has a Access electronics 28 (not shown) for wireless communication with an electronic identification carrier 30 on.
  • the access electronics 28 is configured to generate an enable signal when the access authorization of the identification carrier 30 is present.
  • the second handle 26 is connected to the shaft 18, wherein the axial position of the second handle 26 is adjustable relative to the shaft 18 (see FIG. 2 and 4 ).
  • the second handle 26 is designed such that it can accommodate an excess length of the shaft 18 in the interior 32.
  • the first handle 24 provides an outer handle (unsecured side) and the second handle 26 represents an inner handle 26 (secured side).
  • the first handle 24 and the second handle 26 are each formed as a knob (doorknob).
  • a coupling device 34 cooperating with the access electronics 28 is provided, which is set up to couple the first handle 24 to the shaft 18 as a result of the release signal.
  • the coupling device 34 is arranged in a journal section 36, via which the first handle 24 is rotatably mounted in the passage 14.
  • the pin portion 36 is connected to the first handle 24.
  • the clutch device 34 has an electric motor as the drive source, which actuates the clutch device 34 (not shown).
  • the coupling device 34 has a coupling element 38 which is displaceable by the electric motor in such a way that it engages for coupling with a receptacle 40 formed on the shaft 18.
  • the Coupling element 38 has coupling wings, which extend in the radial direction from a central longitudinal axis of the pin portion 36 away.
  • the receptacle 40 is in the form of a plurality of recesses 42, which are formed on the end of the shaft 18 facing the first handle 24.
  • the coupling element 38 is moved along the longitudinal axis 16 to the shaft 18. A disengagement takes place by displacement of the coupling element 38 in the opposite direction.
  • the second handle 26 is directly coupled to the shaft 18, by means of a threaded connection.
  • the shaft 18 has an external thread 44 and the second handle 26 has a recess 46 (blind hole) with a corresponding internal thread 48.
  • the lateral surface of the recess 46 encloses the interior 32 of the second handle 26 (interior of the second handle 26).
  • the second handle 26 is fixable in the set position on the shaft 18, so that the second handle 26 and the shaft 18 are rotatably coupled together. This can be done by means of a shaft 18 acting on the threaded pin 49.
  • the threaded pin 49 can engage in a longitudinal slot 51 of the shaft or act on the external thread 44. Since the cam 20 is also rotatably coupled to the shaft 18, the second handle 26 is also rotatably coupled to the cam 20.
  • the rotationally fixed coupling between the lock bit 20 and shaft 18 can be effected by means of a shaft 18 acting on the threaded pin 50 or a groove connection (not shown).
  • the access electronics 28 is arranged exclusively in the first handle 24.
  • the first handle 24 has a removable cap 52, whereby the access electronics 28th becomes accessible and an energy storage (battery) can be replaced (not shown).
  • a manipulation, for example, by replacing the access electronics 28, is not possible because the access electronics 28 and the coupling device 34 are electronically paired with each other (fixed assignment).
  • the cylinder housing 12 has two identical housing sections 54, which can be coupled or coupled to one another by means of a connector 56 arranged axially between the housing sections 54.
  • the connector 56 has a connector body 66 with a threaded hole 58 for a forend screw, by means of which the lock cylinder 10 can be attached to a mortise lock (not shown).
  • the minimum distance of the housing sections 54 is predetermined (gap), wherein in this intermediate space and the cam 20 is arranged.
  • the housing sections 54 are configured such that one or more of the housing extension elements 22 are respectively inserted between the connector 56 and one of the housing sections 54.
  • the housing sections 54 and / or the housing extension elements 22 each have a recess 60, 62 for receiving a pin section 64 projecting from the connector 56.
  • the pin portions 64 protrude in opposite directions from the connector body 66.
  • the housing sections 54 each have a threaded bore 67 and one or more of the housing extension elements 22 are fastened or fastened by means of a screw 68 on one of the housing sections 54 (see FIG. 3 and 4 ).
  • the housing extension elements 22 have a passage opening 70 for the screw 68 for attachment to the threaded bore 67 of one of the housing sections 54.
  • the housing sections 54 and / or the housing extension elements 22 have an opening into the recess 60, 62 threaded bore 72, 74, so that the pin portions 64 of the connector 56 by means of a threaded pin 76 (grub screw) in the recess 60, 62 can be fastened or attached.
  • the shaft 18 has a circumferential groove 78 and is secured by means of a securing element in the form of a retaining ring 80 (snap ring) on the cylinder housing 12 and a housing portion 54.
  • a securing element in the form of a retaining ring 80 (snap ring) on the cylinder housing 12 and a housing portion 54.
  • the securing ring 80 is inserted into a first slot 82 formed in the housing section 54.
  • the shaft 18 is formed as a hollow shaft.
  • the pin portion 36 has a circumferential groove 84 and is secured by means of a securing element in the form of a retaining ring 86 (snap ring) on the cylinder housing 12 and a housing portion 54.
  • a securing element in the form of a retaining ring 86 (snap ring) on the cylinder housing 12 and a housing portion 54.
  • the securing ring 86 is inserted into a second slot 88 formed in the housing section 54.
  • At least the first handle 24 facing housing portion 54 has a recess 90 into which a Bohrschutzstatt 92 is inserted.
  • FIG. 3 and FIG. 4 show a configuration in which the lock cylinder 10 is extended by housing extension elements 22. In each case, three housing extension elements 22 are inserted between each housing section 54 and the connector 56. The housing extension elements 22 are screwed by means of the screw 68 to one of the housing sections 54.
  • the electronic lock cylinder 10 works as follows: The first handle 24 is rotatably supported by the pin portion 36 in the axial passage 14 and can be rotated accordingly by a passer. If there is no identification carrier 30 carrying an access authorization in reading range of the access electronics 28, the access electronics 28 do not generate a release signal. Although the first handle 24 can be rotated, but this is not (yet) coupled to the shaft 18, so that the cam 20 is not actuated and equipped with the lock cylinder 10 door can not be opened.
  • the second handle 26 is rotatably coupled to the shaft 18 and the cam 20.
  • the access electronics 28 If an identification carrier 30 carrying an access authorization is brought to the first handle 24 so that the identification carrier 30 is within read range of the access electronics 28, the access electronics 28 generate an enable signal when the identification carrier 30 is present. Then, the coupling device 34 is actuated, wherein the electric motor displaces the coupling element 38 along the longitudinal axis 16 in the direction of the shaft 18, so that the coupling element 38 engages in the receptacle 40.
  • the coupling element 38 and the receptacle 40 are disengaged. This can be done by timing or by sensing a successful operation, for example by the access electronics 28. A door opening is then no longer possible by means of the first handle 24.

Landscapes

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

Claims (14)

  1. Cylindre de serrure (10) électronique, comprenant un stator de cylindre (12) muni d'un passage axial (14), un rotor (18) monté rotatif dans le passage axial (14) et un panneton de fermeture (20) couplé en rotation au rotor (18), dans lequel le stator de cylindre (12) est conçu pour être prolongé de manière axiale au moyen d'éléments de prolongement de stator (22), et dans lequel une première poignée (24) et une seconde poignée (26) sont agencées aux extrémités terminales respectives du stator de cylindre (12), dans lequel la seconde poignée (26) est raccordée au rotor (18), dans lequel la position axiale de la seconde poignée (26) par rapport au rotor (18) peut être ajustée, et dans lequel la seconde poignée (26) est réalisée de telle manière qu'elle peut accueillir une longueur excédentaire du rotor (18) à l'intérieur (32) de la seconde poignée (26), caractérisé en ce que la première poignée (24) présente une électronique d'accès (28) permettant une communication sans fil avec un support d'identification électronique (30), dans lequel l'électronique d'accès (28) est affectée en totalité à la première poignée (24) et est conçue pour générer un signal de libération en présence d'une autorisation d'accès du support d'identification (30).
  2. Cylindre de serrure (10) selon la revendication 1, caractérisé en ce qu'un dispositif de couplage (34) est prévu coopérant avec l'électronique d'accès (28) et conçu pour coupler la première poignée (24) au rotor (18) suite au signal de libération.
  3. Cylindre de serrure (10) selon la revendication 2, caractérisé en ce que le dispositif de couplage (34) est agencé dans une section de goupille (36) par l'intermédiaire de laquelle la première poignée (24) est montée rotative dans le passage (14).
  4. Cylindre de serrure (10) selon la revendication 2 ou 3, caractérisé en ce que le dispositif de couplage (34) présente un élément de couplage (38) pouvant être déplacé de manière à venir en prise avec un logement (40) réalisé au niveau du rotor (18) en vue du couplage.
  5. Cylindre de serrure (10) selon l'une quelconque des revendications précédentes, caractérisé en ce que la seconde poignée (26) est couplée directement au rotor (18), en particulier au moyen d'un raccordement fileté.
  6. Cylindre de serrure (10) selon l'une quelconque des revendications précédentes, caractérisé en ce que la seconde poignée (26) peut être immobilisée dans la position ajustée au niveau du rotor (18) de sorte que la seconde poignée (26) et le rotor (18) sont couplés l'un à l'autre en rotation.
  7. Cylindre de serrure (10) selon l'une quelconque des revendications précédentes, caractérisé en ce que l'électronique d'accès (28) est agencée exclusivement sur ou dans la première poignée (24).
  8. Cylindre de serrure (10) selon l'une quelconque des revendications précédentes, caractérisé en ce que le stator de cylindre (12) présente deux sections de stator (54) de manière préférée identiques qui sont couplées ou peuvent être couplées l'une à l'autre au moyen d'un raccord (56) agencé de manière axiale entre les sections de stator (54).
  9. Cylindre de serrure (10) selon la revendication 8, caractérisé en ce que les sections de stator (54) sont conçues pour qu'un ou plusieurs des éléments de prolongement de stator (22) soient respectivement insérés entre le raccord (56) et l'une des sections de stator (54).
  10. Cylindre de serrure (10) selon la revendication 8 ou 9, caractérisé en ce que les sections de stator (54) et/ou les éléments de prolongement de stator (22) présentent respectivement un évidement (60, 62) destiné à recevoir une section de tige (64) faisant saillie à partir du raccord (56).
  11. Cylindre de serrure (10) selon l'une quelconque des revendications 8 à 10, caractérisé en ce que les sections de stator (54) présentent respectivement un alésage fileté (67) et en ce qu'un ou plusieurs des éléments de prolongement de stator (22) peuvent être fixés ou sont fixés au niveau d'une des sections de stator (54) au moyen d'une vis (68).
  12. Cylindre de serrure (10) selon l'une quelconque des revendications 8 à 11, caractérisé en ce que les éléments de prolongement de stator (22) présentent une ouverture traversante (70) destinée à une vis (68) en vue d'une fixation d'une des sections de stator (54) au niveau de l'alésage fileté (67).
  13. Cylindre de serrure (10) selon l'une quelconque des revendications 8 à 12, caractérisé en ce que les sections de stator (54) et/ou les éléments de prolongement de stator (22) présentent un alésage fileté (72, 74) débouchant dans l'évidement (60, 62) de sorte que les sections de tige (64) du raccord (56) peuvent être fixées ou sont fixées dans l'évidement (60, 62) au moyen d'une tige filetée (76).
  14. Cylindre de serrure (10) selon l'une quelconque des revendications précédentes, caractérisé en ce que le rotor (18) est réalisé sous la forme d'un rotor creux.
EP17151663.6A 2017-01-16 2017-01-16 Barillet électronique Active EP3348751B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP17151663.6A EP3348751B1 (fr) 2017-01-16 2017-01-16 Barillet électronique

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Application Number Priority Date Filing Date Title
EP17151663.6A EP3348751B1 (fr) 2017-01-16 2017-01-16 Barillet électronique

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EP3348751A1 EP3348751A1 (fr) 2018-07-18
EP3348751B1 true EP3348751B1 (fr) 2019-10-09

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Cited By (1)

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EP4682334A1 (fr) * 2024-07-19 2026-01-21 SimonsVoss Technologies GmbH Module central pour un cylindre de fermeture double face modulaire et cylindre de fermeture doté d'un tel module central

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CN109577753B (zh) * 2019-01-27 2023-10-27 广东曼申智能科技有限公司 一种长度可调节的锁芯
GB2591427A (en) * 2019-08-28 2021-08-04 Assa Abloy Ltd Lock cylinder
TWI724766B (zh) * 2020-01-22 2021-04-11 顥記實業股份有限公司 電子圓筒鎖
CN114856324B (zh) * 2022-05-06 2023-05-02 深圳市龙兄弟数码锁有限公司 锁芯结构及锁

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Cited By (1)

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Publication number Priority date Publication date Assignee Title
EP4682334A1 (fr) * 2024-07-19 2026-01-21 SimonsVoss Technologies GmbH Module central pour un cylindre de fermeture double face modulaire et cylindre de fermeture doté d'un tel module central

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Publication number Publication date
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