Magnetic privacy lock control
12258786 ยท 2025-03-25
Inventors
Cpc classification
E05B63/0069
FIXED CONSTRUCTIONS
E05B47/00
FIXED CONSTRUCTIONS
International classification
E05B47/00
FIXED CONSTRUCTIONS
Abstract
A method for unlocking and/or locking a privacy lockset from the exterior of the lockset or door and without the use of buttons, keys, or an object inserted into the lockset or door. The operator manipulates a magnetic object, such as a magnet or piece of ferrous metal, on the exterior of the door or lockset to cause an internal magnet attached to a rod to move the rod in and out of a collar, the far end of the rod in turn actuating the lock into a locked and/or unlocked position. Rotational, lateral, and/or thrust forces may be configured to actuate the lock. The invention may apply to rim locks, mortise locks, sliding door locks, cylinder locks, and non-keyed deadbolts.
Claims
1. A method for locking or unlocking a door privacy lock with a magnetic field and without an operator passing a key into any part of a lock mechanism or a door, comprising: using a magnetic object to draw or push a shaft actuator magnet located at an end of a shaft; the magnetic object causing the shaft to pass through a collar configured such that the shaft cannot rotate; wherein the collar comprises collar magnets and the shaft further comprises shaft neutral position magnets of opposite polarity to the collar magnets, the shaft being retained in a starting position by attraction of said collar magnets and said shaft neutral position magnets prior to the magnetic object acting on the shaft actuator magnet; moving said shaft through said collar, bringing a shaft magnet located on the opposite end of the shaft from the shaft actuator magnet into magnetic range of a lock trigger magnet of the same polarity as the shaft magnet, causing a lock actuator cam to move away from the the shaft magnet; the lock actuator cam configured such that an end of the lock actuator cam is located a distance from the lock trigger magnet and the shaft magnet so that the end of the lock actuator cam moves a greater distance than the shaft trigger magnet moves from the shaft magnet; withdrawing the magnetic object causing the collar magnets to attract the shaft neutral position magnets, drawing the shaft to the starting position; the lock actuator cam remaining in the position located by the shaft magnet after withdrawal of the shaft magnet; the shaft, the shaft actuator magnet, the collar, the collar magnets, the shaft magnet, the lock trigger magnet, and the lock actuator cam all being enclosed in the door or the lock mechanism; wherein during operation manipulating the magnetic object moves the shaft actuator magnet, and moving of the shaft towards or away from the magnetic object causes a lock actuator cam to move, and wherein movement of the lock actuator cam is configured for securing or releasing the privacy lock.
2. The method of claim 1, wherein the shaft actuator magnet is connected to the end of the shaft.
3. The method of claim 1, wherein the shaft actuator magnet is formed integrally with the end of the shaft.
4. The method of claim 1, wherein the shaft actuator magnet is configured to be manipulated by the magnetic object from either side of the door.
5. The method of claim 1, wherein the lock actuator cam locks or unlocks privacy locks of the types consisting of: a rim lock, a cylinder lock, a mortise lock, a cam lock, a sliding door lock, and a non-keyed deadbolt lock.
6. An apparatus to lock or unlock a door privacy lock with a magnetic field and without an operator passing a key into any part of a lock mechanism or a door, comprising: a magnetic object to draw or push a shaft actuator magnet located at a first end of a shaft; a collar, wherein the shaft is configured to be inserted into and through the collar without rotation; wherein the collar comprises collar magnets and the shaft further comprises shaft neutral position magnets of opposite polarity to the collar magnets, wherein said shaft is retained in a starting position by attraction of said collar magnets and said shaft neutral position magnets prior to application of the magnetic object, and wherein said shaft is returned to the starting position following removal of the magnetic object; a shaft magnet located on the opposite end of the shaft from the shaft actuator magnet; a lock actuator cam mounted and passed through by the shaft at an opposite end of the shaft containing the shaft magnet, and with the lock actuator cam containing a lock trigger magnet of the same polarity as the shaft magnet; the lock actuator cam configured with an end of the lock actuator cam located a distance from the lock trigger magnet and the shaft magnet so that the end of the lock actuator cam moves a greater distance than the lock trigger magnet moves from the shaft magnet; the shaft, the shaft actuator magnet, the collar, the collar magnets, the shaft magnet, the lock trigger magnet, and the lock actuator cam trigger all being enclosed in the door or the lock mechanism; wherein during operation, the magnetic object is configured to manipulate the shaft actuator magnet and the shaft from the starting position towards or away from the magnetic object and through the collar, thereby causing the lock actuator cam to move, wherein the lock actuator cam is configured to secure or release the privacy lock; wherein removal of the magnetic object returns the shaft to the starting position in the collar prior to manipulation by the magnetic object, and the lock actuator cam remains in a new position having secured or released the privacy lock.
7. The apparatus of claim 6, wherein the shaft actuator magnet connects to the end of the shaft.
8. The apparatus of claim 6, wherein the shaft actuator magnet is integrally formed with the end of the shaft.
9. The apparatus of claim 6, wherein the shaft actuator magnet is configured to be manipulated by the magnetic object from either side of the door.
10. The apparatus of claim 6, wherein the lock actuator cam locks or unlocks privacy locks of the types consisting of: a rim lock, a cylinder lock, a mortise lock, a cam lock, a sliding door lock, and a non-keyed deadbolt lock.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
(1) Other features and advantages of the present invention will become apparent when the following detailed description is read in conjunction with the accompanying drawings, in which:
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DETAILED DESCRIPTION
(7) The following description is provided to enable any person skilled in the art to make and use the invention and sets forth the best modes contemplated by the inventor of carrying out his invention. Various modifications, however, will remain readily apparent to those skilled in the art, since the general principles of the present invention have been defined herein to specifically provide a magnetic privacy lock control.
(8) For the purpose of this disclosure, the word a is defined to mean at least one.
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(10) In one embodiment, the shaft actuator magnet 101 is connected to the end of the plunger, actuator, arbor, or shaft 102. In another embodiment, the shaft actuator magnet 101 is formed as part of the end of the plunger, actuator, arbor, or shaft 102. In embodiments, where the shaft actuator magnet is connected to the plunger, actuator, arbor, or shaft, multiple means of connection methods may be used, including but not limited to magnets, threading, epoxy, or other means. The shaft 102 is inserted into and through the collar 103. The collar 103 is stabilized in some way, including by non-limiting examples of being embedded in the lock mechanism or the door. Tolerances between the shaft and collar are such to allow the shaft to move without friction other than loose surface to surface, i.e. not binding. In this embodiment, there are two incidences of collar magnets 104 each embedded in the collar 103. In some embodiments, a first shaft magnet 105 is embedded through the shaft 102. In some embodiments, the lock actuator magnet 106 is embedded in the lock actuator cam 107.
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(14) The lock actuator, cam, trigger 107 in this embodiment is designed to lock and unlock one particular lock design. However, it can be any trigger that works to unlock and/or lock any lock mechanism.
(15) During use, to unlock from the exterior face of door 111, a magnetic object 301 is placed on exterior face of door 111, sufficiently close to shaft actuator magnet 101 to draw the actuator magnet 101 and shaft 102 toward the magnetic object 301 and the exterior of the door. The strength of the magnetic field will vary depending on the size of shaft actuator magnet 101 and distance from exterior of door 111. A wide range of combinations will trigger the mechanism. For example, a stronger actuator magnet 101 or magnetic object 301 can move a larger or differently shaped actuator and can do so with a larger gap between the actuator magnet 101 and the face of the door 111.
(16) Shaft 102 travels through the position stabilized collar 103 towards the magnetic object 301. The collar 103 ensures that the shaft 102 travels in a controlled manner. In this embodiment the shaft is configured to move in a thrust motion.
(17) As shaft 102 is drawn towards outside face of door it is drawn through the orifice in lock actuator trigger 107. In the unlocking mode, the second shaft magnet 108 is drawn across lock trigger magnets 106 and 110. The negative pole of the second shaft magnet 108 is repelled by the negative pole of the second lock trigger magnet 110. The positive pole of second shaft magnet 108 is attracted by the negative pole of lock trigger magnet 106. This magnetic action draws lock trigger 107 in the unlocking direction shown by direction of movement of unlock arrow 112 in
(18) This embodiment contains an option to use a magnetic object 301 to lock a closed door from the exterior when the magnetic object 301 is of opposite polarity to the magnet 101. Note that a magnetic object 301 that is only attractive can only be used to unlock the door in this embodiment. A magnetic object 301 that is only attractive could be used to lock a door with a realignment of magnets 105, 106, 108, and 110.
(19) To lock, a magnetic object 301 of same polarity to shaft actuator magnet 101 is placed against exterior of door 111 in the vicinity of shaft actuator magnet 101. The same polarity magnets repel each other, causing a thrust motion opposite to the unlocking motion pushing the shaft 102 away from the surface of the door 111.
(20) In the locking mode the first shaft magnet 105 is drawn across a first and second lock trigger magnets 106 and 110 respectively. The negative pole of the first shaft magnet 105 is repelled by the negative pole of the first lock trigger magnet 106. The positive pole of the first shaft magnet 105 is attracted by the negative pole of lock trigger magnet 110. This magnetic action draws lock trigger 107 in the locking direction shown by direction of movement of lock arrow 113 in
(21) When not in locking or unlocking mode, the shaft 102 is returned to a neutral position by opposite attraction of collar magnets 104 and shaft neutral position magnets 109. There are two each of these to ensure balance and a return to neutral and retention in neutral position when mechanism is not being activated. In some embodiments, more magnets or fewer magnets of higher potential may also be used.
(22) It should be understood, that lock trigger 107 may be any shape or configuration that is required to transfer magnet actuated motion to create a locked and unlocked position. Each lock will have a different way this happens. Thus in this embodiment, components 101 to 110 constitute a means for unlocking and/or locking a privacy lockset with a magnet from the exterior of the door.
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(24) The end of shafts 202 and 203 can be magnets, wedges, or other means to magnetically or physically push lock trigger 207 as they move past or in and out of lock trigger 207.
(25) It should be understood, that may other variations may be present without departing from the scope or spirit of the invention, for example: (a) Any type of mechanism that can transfer magnetically driven motion from one location and/or one plane to another can trigger a lock release and/or engagement. Types of motion can include rotational, lateral, and/or thrust forces; (b) This means can be used on different types of locksets including rim locks, mortise locks, cam locks, cylinder locks, and non-keyed deadbolts; (c) The locking mechanism and the lockset itself can be made from a range of materials as long as the magnetic fields are not interfered with. Components can be made from steel, bronze, stainless steel, 3D printed plastics, and a range of other materials. In some cases, ferrous materials can be used to direct and/or enhance magnetic fields; (d) The motion (along the X axis) actuated by the magnetic key can be transferred to longitudinal motion (along the perpendicular Y or Z axis) through any number of means to lock and unlock the privacy lock, including magnetic, wedge, mechanical, rack and pinion, and other means; (e) Shaft or other actuator can be brought back to the neutral position by use of a spring or other mechanical or gravitational means rather than the magnets illustrated in these embodiments; (f) The locking and unlocking mechanisms may be on a single apparatus or may be separate from each other, i.e. the locking action may be done from one actuator and the unlocking from another; and (g) In the embodiment noted, the actuator has a neutral position. In embodiments with a direct connection between the actuator and the locking and unlocking mechanism, no neutral may be required. It is simply noted in the embodiment shown as a convenience.
(26) As discussed, the magnetic lock release of the present invention has several advantages over the prior art and current mechanisms in the marketplace. The examples above are only some potential embodiments of this new means of unlocking a privacy lockset from the outside. These examples given should not be construed as limitations to the scope, but examples of how it may be executed. Many others are possible, as previously indicated, for example: (a) Any type of mechanism that can transfer magnetically driven motion from one location and/or one plane to another can trigger a lock release. Types of motion can include rotational, lateral, and/or thrust forces; (b) This means can be used on different types of locksets including rim locks, sliding door locks, mortise locks, cam locks, cylinder locks, and non-keyed deadbolts; (c) The locking mechanism and the lockset itself can be made from a range of materials as long as the magnetic fields are not interfered with. Components can be made from steel, bronze, stainless steel, 3D printed plastics, and a range of other materials; (d) The motion (along the X axis) actuated by the magnetic key can be transferred to longitudinal motion (along the perpendicular Y or Z axis) through any number of means to lock and unlock the privacy lock, including magnetic, wedge, mechanical, rack and pinion and other means; (e) Shaft or other actuator can be brought back to the neutral position by use of a spring or other mechanical or gravitational means rather than the magnets illustrated in these embodiments; (f) The locking and unlocking mechanisms may be on a single apparatus or may be separate from each other, i.e. the locking action may be done from one actuator and the unlocking from another; (g) In the embodiment noted, the actuator has a neutral position. In embodiments with a direct connection between the actuator and the locking and unlocking mechanism, no neutral may be required. It is simply noted in the embodiment shown as a convenience.
(27) It should be understood, that any component discussed herein may be comprised of a variety of materials, including but not limited to steel, stainless steel, bronze, aluminum, plastics, ceramics, and composites.
(28) Although the invention has been described in considerable detail in language specific to structural features, it is to be understood that the invention defined in the appended claims is not necessarily limited to the specific features described. Rather, the specific features are disclosed as exemplary preferred forms of implementing the claimed invention. Stated otherwise, it is to be understood that the phraseology and terminology employed herein, as well as the abstract, are for the purpose of description and should not be regarded as limiting. Therefore, while exemplary illustrative embodiments of the invention have been described, numerous variations and alternative embodiments will occur to those skilled in the art. Such variations and alternate embodiments are contemplated, and can be made without departing from the spirit and scope of the invention.
(29) It should further be noted that throughout the entire disclosure, the labels such as left, right, front, back, top, bottom, forward, reverse, clockwise, counter clockwise, up, down, or other similar terms such as upper, lower, aft, fore, vertical, horizontal, oblique, proximal, distal, parallel, perpendicular, transverse, longitudinal, etc. have been used for convenience purposes only and are not intended to imply any particular fixed direction or orientation. Instead, they are used to reflect relative locations and/or directions/orientations between various portions of an object.
(30) In addition, reference to first, second, third, and etc. members throughout the disclosure (and in particular, claims) are not used to show a serial or numerical limitation but instead are used to distinguish or identify the various members of the group.
REFERENCE LIST
(31) 101 shaft actuator magnet 102 shaft 103 collar 104 first collar magnets 105 first shaft magnet 106 first lock trigger magnet 107 lock actuator cam or trigger 108 second shaft magnet 109 shaft neutral position magnets 110 second lock trigger magnet 111 possible door install 112 direction of movement to unlock 113 direction of movement to lock 202 shaft for unlocking 203 shaft for locking 204 collar for dual shafts 207 lock actuator cam or trigger 212 first direction 213 second direction 301 magnetic object