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    • 2. 发明申请
    • Energy storing electronic lock
    • 储能电子锁
    • US20060112747A1
    • 2006-06-01
    • US11001288
    • 2004-12-01
    • Charles MoonWilly RuythoorenMichael Wright
    • Charles MoonWilly RuythoorenMichael Wright
    • E05B47/06
    • E05B47/0673E05B17/10E05B47/0012E05B2047/0024Y10T70/713
    • An electronic lock includes a compression spring that stores energy to ensure that the electronic lock re-locked after unlocking. The spring is received between a lock bolt and a lock bolt housing. When the electronic lock is locked, the lock bolt is received in a notch of a locking portion. When the electronic lock is unlocked, a motor moves both the lock bolt and the lock bolt housing in a direction to remove the lock bolt from the notch. After a predetermined amount of time, the motor is reversed to move the lock bolt housing in an opposing direction. If the outside handle has not been released, the lock bolt does not re-enter the notch. The spring is compressed between the lock bolt housing and the lock bolt and stores energy. When the outside handle is released and the notch returns to the original position, and the spring pushes the lock bolt into the notch to ensure the electronic lock is re-locked.
    • 电子锁包括一个压缩弹簧,该压缩弹簧存储能量以确保在解锁之后重新锁定电子锁。 弹簧被接收在锁定螺栓和锁定螺栓壳体之间。 当电子锁被锁定时,锁定螺栓被容纳在锁定部分的凹口中。 当电子锁解除锁定时,电动机将锁定螺栓和锁定螺栓壳体沿一个方向移动,以将锁定螺栓从凹口移除。 在预定的时间之后,马达被反转以使锁定螺栓壳体沿相反的方向移动。 如果外部手柄尚未释放,则锁定螺栓不会重新进入切口。 弹簧在锁定螺栓壳体和锁定螺栓之间被压缩并储存能量。 当外部手柄释放并且凹口返回到原始位置时,弹簧将锁定螺栓推入凹口,以确保电子锁被重新锁定。