TWO DIRECTION MAGNETICALLY LATCHING SOLENOID FOR APPLIANCE DOOR LOCK
20240368920 ยท 2024-11-07
Assignee
Inventors
- Jeffrey John Krieger (Mukwonago, WI, US)
- Randy S. McDonald (Sussex, WI, US)
- Erik OLSON (Waterford, WI, US)
- Joel Charles BRAGG (Waterford, WI, US)
Cpc classification
E05B47/0009
FIXED CONSTRUCTIONS
E05B2047/0093
FIXED CONSTRUCTIONS
E05B2063/0026
FIXED CONSTRUCTIONS
International classification
Abstract
An appliance latch for latching an appliance door to an appliance cabinet that includes a housing and a lock bolt positioned to move linearly within the housing between a locked state and an unlocked state. A solenoid is positioned within the housing and includes an integrated magnetic lock, distinct from the lock bolt, to prevent undesired movement from the locked state to the unlocked state and movement from the unlocked state to the locked state.
Claims
1. An appliance latch for latching an appliance door to an appliance cabinet, the appliance latch comprising: a housing; a lock bolt positioned to move within the housing between a locked state and an unlocked state; a solenoid positioned within the housing, the solenoid having an integrated magnetic lock, distinct from the lock bolt, to prevent undesired movement from the locked state to the unlocked state and movement from the unlocked state to the locked state.
2. The appliance latch of claim 1 wherein the integrated magnetic lock comprises a wire form engageable with a portion of the housing.
3. The appliance latch of claim 1 wherein the integrated magnetic lock is engageable with a pair of step features formed within the housing.
4. The appliance latch of claim 3 wherein the wire form is engageable with a first step feature to prevent undesired movement from the unlocked state to the locked state and a second step feature to prevent undesired movement from the locked state to the unlocked state.
5. The appliance latch of claim 1 wherein the integrated magnetic lock comprises a wire form configured to move inwardly when the solenoid is energized.
6. The appliance latch of claim 1 wherein the lock bolt is connected with respect to the solenoid.
7. The appliance latch of claim 6 wherein the solenoid comprises a plunger that is engaged with the lock bolt.
8. The appliance latch of claim 7 wherein the integrated magnetic lock comprises a component with a smaller mass than the plunger so energizing the solenoid moves the integrated magnetic lock before the plunger.
9. The appliance latch of claim 1 further comprising a wire stylus that travels through a track of the housing between the locked state and the unlocked state.
10. The appliance latch of claim 1 wherein the integrated magnetic lock is driven by inertia.
11. The appliance latch of claim 1 wherein the integrated magnetic lock comprises one of a stamping, a ball bearing, and a pin.
12. The appliance latch of claim 1 wherein the integrated magnetic lock comprises a second solenoid.
13. The appliance latch of claim 12 wherein the solenoid and the second solenoid are connected electrically and are configured to energize simultaneously with a single electrical signal.
14. An appliance latch for latching an appliance door to an appliance cabinet, the appliance latch comprising: a housing; a lock bolt positioned to move within the housing between a locked state and an unlocked state; a solenoid positioned within the housing, the solenoid having an integrated magnetic lock including a wire form engageable with a pair of step features formed within the housing, a first step feature configured to obstruct the wire form in the unlocked state and the second step feature configured to obstruct the wire form in the locked state; wherein the integrated magnetic lock is configured to prevent undesired movement from the locked state to the unlocked state and movement from the unlocked state to the locked state.
15. The appliance latch of claim 14 wherein the integrated magnetic lock comprises a wire form configured to move inwardly when the solenoid is energized.
16. The appliance latch of claim 14 wherein the integrated magnetic lock comprises a component with a smaller mass than the plunger so energizing the solenoid moves the integrated magnetic lock before the plunger.
17. The appliance latch of claim 14 wherein the integrated magnetic lock is driven by inertia.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
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[0030] As shown in
[0031] As shown in
[0032] As further shown in
[0033] A lock bolt 30 is preferably positioned within the housing 10 to move linearly within the housing between a locked state and an unlocked state. The lock bolt 30 is preferably frame-like and includes the lock pin 12 and operates as the primary lockable connection between the door 15 and the cabinet 5. As such, a portion of the lock bolt 30 is additionally connected within the housing 20 to a solenoid 40 and a wire stylus 35. The wire stylus 35 preferably traces within a heart-shaped track formed in the housing 20 between the locked state and the unlocked state as shown respectively in
[0034] As best shown in
[0035] In addition, as best shown in
[0036] According to one preferred embodiment of the appliance latch 10, the integrated magnetic lock 50 comprises a wire form 60 engageable with a portion of the housing 20. Specifically, as shown in
[0037] According to a preferred embodiment, the integrated magnetic lock 50 may comprise the wire form 60 configured to rotate inwardly when energized. In this way, when the solenoid 40 is properly energized, the wire form 60 rotates out of engagement with one of the step features 70 or 80, and thereby permits the lock bolt 30 movement between the locked state and the unlocked state. This avoids a mechanical energization of the solenoid 40 creating an inadvertent locked or unlocked state.
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a. As alternatives to the wire form 60 embodiment described above, the integrated magnetic lock 50 may comprise a second solenoid, an inertia latch, a stamping instead of a wire form, an O-ring compressed by a stamping, and/or other alternatives. Accordingly, it is desirable that the integrated magnetic lock 50 comprises a component with a smaller mass than the plunger 45 so energizing the solenoid 40 moves the integrated magnetic lock 50 before the plunger 45. Alternatively, the integrated magnetic lock 50 may be driven by inertia instead of magnetics. It is one objective of the preferred appliance latch 10 to include a solenoid 40 that includes an additional magnetic lock 50 that latches to prevent accidental movement in both directions unlocked-to-locked, and locked-to-unlocked.
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[0045] The invention illustratively disclosed herein suitably may be practiced in the absence of any element, part, step, component, or ingredient which is not specifically disclosed herein.
[0046] While in the foregoing detailed description this invention has been described in relation to certain preferred embodiments thereof, and many details have been set forth for purposes of illustration, it will be apparent to those skilled in the art that the invention is susceptible to additional embodiments and that certain of the details described herein can be varied considerably without departing from the basic principles of the invention.