Powered latching apparatus
An apparatus for latching a door having a latching member; a retention cam wherein the retention cam further comprises an extended face and is rotatable about its axis; a spring; a locking member; an actuator; a push out member; and a driving member; wherein the actuator drives the driving member to remove the locking member from contact with the retention cam and the driving member drives the push out member to push the latching member away from the retention cam. The apparatus is capable of assisting both in the latching and unlatching of the device.
1. An apparatus for latching a door comprising:
a latching member connected to the door;
a locking member connected to a frame of the door;
wherein the latching member is manually moved towards the locking member to move the apparatus from an unlocked position to a locked position;
at least two magnets wherein at least one magnet of the at least two magnets is a latching magnet associated with the latching member and wherein at least one magnet of the at least two magnets is a receiver magnet associated with the locking member;
a magnet rotator for orienting the receiver magnet in the unlocked position so as to allow a polarity of the receiver magnet to be opposite that of the latching magnet, wherein, concurrent to manual movement of the latching member, the latching magnet associated with the latching member moves towards the receiver magnet associated with the locking member such that the at least two magnets attract;
a spring connected to the locking member, wherein as the latching member is manually moved into contact with the locking member, the locking member retracts and allows the latching member to pass, such that the spring returns the locking member to an original position to lock the latching member in place;
an actuator that causes gears to rotate, wherein rotation of the gears causes the magnet rotator to rotate in a manner that orients the receiver magnet in such a way that the polarity of the receiver magnet is the same as that of the latching magnet so that likeness in polarity causes the latching magnet to be driven away from the receiver magnet; and
a pivoting cam, moved by the actuator, wherein the pivoting cam is rotatable about an axis to cause the locking member to move away from the latching member;
wherein magnetic force between the latching magnet and the receiver magnet is able to drive the latching member away from the locking member to allow the latching member to pass over the locking member.
2. The apparatus of claim 1 , wherein the at least two magnets consist of the latching magnet and the receiver magnet.
3. The apparatus of claim 2 , wherein the gears rotated by the actuator comprises a series of gears, wherein rotation of the gears causes the magnet rotator to rotate in such a way so as to expose a polarity of the receiver magnet to a same polarity of the latching magnet.
4. The apparatus of claim 1 , wherein the actuator moves the pivoting cam, causing the locking member to move away from the latching member in such a way that allows for the latching member to pass over the locking member.
5. The apparatus of claim 1 , wherein the spring acts to place the locking member back in the original position when the latching member has fully traversed over the locking member.