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    • 3. 发明公开
    • U-SHAPED LOCK
    • EP3263430A4
    • 2018-06-20
    • EP16872291
    • 2016-11-17
    • BEIJING MOBIKE TECH CO LTD
    • YANG ZHONGJIEXIA YIPINGWANG YANGJIN HONGDU
    • B62H5/00E05B47/00
    • E05B47/0603B62H5/00B62H5/14B62H5/147B62H5/20E05B9/00E05B17/10E05B45/06E05B47/00E05B47/0012E05B2047/0069E05B2047/0095G07C9/00944
    • A horseshoe-shaped lock (30) is provided, comprising: a case (309) provided with a lock body portion, a battery compartment housing (310) arranged inside the lock body portion, a lock pin (3073B) provided with a retaining groove and configured to open or close a lock opening through movement thereof, a tongue (3071) arranged on the outer surface of the battery compartment housing (310) and configured to stop or release movement of the lock pin (3073B) by entering or exiting from the retaining groove of the lock pin (3073B), a first force application member (3073A) for exerting, on the lock pin (3073B), a force allowing it to move in the direction of opening the locking opening, a second force application member (3078) for exerting, on the tongue (3071), a force allowing it to move in the direction of entering the retaining groove of the lock pin (3073B), a PCB (311) accommodated in the battery compartment housing (310), a battery (3081) accommodated in the battery compartment housing (310) and configured to provide electric power to all electronic components in the horseshoe-shaped lock (30), a motor (3077) arranged on the outer surface of the battery compartment housing (310), a motor driving module mounted on the PCB (311) and configured to drive an output shaft of the motor (3077) to rotate, a tongue driving member (3074) connected to the output shaft of the motor (3077) and configured to convert a rotational driving force of the motor (3077) into a driving force allowing the tongue (3071) to move out of the retaining groove of the lock pin (3073B).
    • 8. 发明公开
    • EASILY MANAGED ELECTRONIC CABINET LOCK
    • LEICHT ZU VERWALTENDES ELEKTRONISCHES SCHRANKSCHLOSS
    • EP3000951A1
    • 2016-03-30
    • EP15181403.5
    • 2015-08-18
    • Vemus Endustriyel Elektronik Sanayi Ve Ticaret Limited Sirketi
    • DAYANIKLI, MustafaBÜYÜKYAZICI, MünirDAYANIKLI, Vehbi
    • E05B47/00E05B47/06G07C9/00E04C3/04
    • E05B47/0603E05B47/0012E05B47/0673E05B65/44E05B2047/0031E05B2047/0056E05B2047/0095E05C3/042E05C3/12G07C9/00309G07C9/00896G07C2009/00634G07C2009/00777G07C2009/00793G07C2009/00936
    • An electronic lock which is used in e.g. doors (37a), comprises
      - a rotary shaft (24) which drives a latch (33)
      - a micro-motor latch (23) which blocks the motion of the rotary shaft (24) by entering between rotary shaft notches (24a)
      - a motion transfer member (26a) which moves said micro-motor latch (23) upward or downward,
      - a spring gear (26)
      - a linear motion transfer member (25b)
      - a micro-motor (25) which rotates a worm screw gear (25a),
      - a handle (10) which is rotated by the user and connected to the rotary shaft (24)
      - a dynamic NFC tag chip (19a) which is provided on said electronic circuit (20) and connected to an NFC antenna (19) and in which the information, contained by the signals sent by a mobile device (36) is saved on the memory therein, and which activates the processor (34) by transferring the energy, which it produces from said RF wave by means of the energy harvesting outlet (19a1), into the feed inlet of the processor (34) by means of a rectifier (35),
      - said processor (34) which, in response to the information inside the memory, records data again into the memory of dynamic NFC tag chip (19a) or activates said micro-motor (25); and obtains the information suggesting that the handle (10) is in open position or closed position as a result of the contact between the contact points (17a) in different positions on the rotary contact (17) and the electronic circuit (20).
    • 一种用于例如电子锁的电子锁。 门(37a)包括 - 驱动闩锁(33)的旋转轴(24) - 通过进入旋转轴凹口(24a)之间的方式阻挡旋转轴(24)的运动的微型电动机闩锁(23) 使所述微型电动机闩锁(23)向上或向下移动的运动传递部件(26a), - 弹性齿轮(26) - 直线运动传递部件(25b) - 使马达旋转的微型马达(25) 齿轮(25a), - 由用户旋转并连接到旋转轴(24)的手柄(10) - 设置在所述电子电路(20)上并连接到NFC的动态NFC标签芯片(19a) 天线(19),其中由移动设备(36)发送的信号所包含的信息被保存在其中的存储器中,并且通过将从RF波形产生的能量传送到处理器(34)来激活处理器 能量收集出口(19a1)的装置通过整流器(35)进入处理器(34)的进料入口, - 所述处理器(34)响应于进入 存储器内的数据再次记录到动态NFC标签芯片(19a)的存储器中,或激活所述微型电动机(25); 并且由于接触点(17a)在旋转接触件(17)和电子电路(20)的不同位置之间的接触而获得提示手柄(10)处于打开位置或关闭位置的信息。