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    • 3. 发明申请
    • ELECTROMAGNETIC DOORLOCK WITH SHOCK DETECTION AND POWER SAVING DEVICE
    • 具有触发检测和省电装置的电磁门
    • US20140159388A1
    • 2014-06-12
    • US13905201
    • 2013-05-30
    • LI-SHIH LIAO
    • LI-SHIH LIAO
    • E05C19/16
    • E05C19/166E05B2047/0065E05B2047/0068E05B2047/0093Y10T292/11
    • The invention relates to an electromagnetic doorlock with shock detection and power saving device comprises an electromagnet assembly and a corresponding attraction assembly. The electromagnet assembly is connected to a shock detection module and the attraction assembly has a pressing unit to press the shock detection module. When the door is opened, the electromagnet assembly does not supply power; when the door is closed, the electromagnet assembly with electromagnetic attraction attracts the attraction assembly and the pressing unit presses the shock detection module. That is, the electromagnetic doorlock usually stays in a low-energy attraction state; however, when a shock detection module is triggered, the electromagnetic doorlock returns to normal lock state for achieving power saving effect and control of the external force detection.
    • 本发明涉及一种具有震动检测和省电装置的电磁门锁,其包括电磁体组件和相应的吸引组件。 电磁铁组件连接到冲击检测模块,吸引组件具有按压冲击检测模块的按压单元。 当门打开时,电磁铁组件不供电; 当门关闭时,具有电磁吸引力的电磁体组件吸引吸引组件,并且按压单元按压冲击检测模块。 也就是说,电磁门锁通常处于低能量吸引状态; 然而,当触发检测模块时,电磁门锁恢复到正常的锁定状态,以实现省电效果和外力检测的控制。
    • 4. 发明授权
    • Micro motor locking system
    • 微电机锁定系统
    • US08671723B2
    • 2014-03-18
    • US12744845
    • 2009-02-05
    • Vehbi DayanikliMustafa Dayanikli
    • Vehbi DayanikliMustafa Dayanikli
    • E05B47/06
    • E05B47/0603E05B47/0012E05B47/0673E05B2015/0403E05B2015/0472E05B2015/0496E05B2047/0016E05B2047/0021E05B2047/0031E05B2047/0093Y10T70/7062Y10T70/7102Y10T70/7113Y10T70/713
    • A micro motor locking bolt system (8) comprising a locking bolt (5) mounted inside a lock (11) in order to provide a locking function in electronic gates, drawers, cabinets, safes and similar structures. The locking bolt system has a locking position by entering into a lock housing (13) structured on the lock (11) and an unlocking position by removing from the lock housing (13). A motor (1) provides the necessary driving force in order for the locking bolt (5) to enter into and be removed from the lock housing (13). A worm gear (2) performs rotational motion around its own axis due to the driving force from the motor (1) and comprises grooved parts (2.1) thereon. Motion transmission members transfer the rotational motion of the worm gear (2) to the locking bolt (5) by transforming the rotational motion into linear motion.
    • 一种微电机锁定螺栓系统(8),包括安装在锁(11)内的锁定螺栓(5),以便在电子门,抽屉,机柜,保险柜和类似结构中提供锁定功能。 锁定螺栓系统通过进入构造在锁(11)上的锁壳(13)和通过从锁壳(13)上移除而具有锁定位置。 马达(1)提供必要的驱动力,以使锁定螺栓(5)进入锁定壳体(13)并从锁定壳体(13)移除。 由于来自马达(1)的驱动力,蜗轮(2)围绕其自身的轴线进行旋转运动,并且在其上包括开槽部件(2.1)。 运动传递部件通过将旋转运动变换为直线运动将蜗轮(2)的旋转运动传递到锁定螺栓(5)。