ADA DOOR KNOB
20210207397 ยท 2021-07-08
Inventors
Cpc classification
E05B7/00
FIXED CONSTRUCTIONS
F16H19/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E05C1/004
FIXED CONSTRUCTIONS
E05B1/003
FIXED CONSTRUCTIONS
International classification
E05B1/00
FIXED CONSTRUCTIONS
E05C1/12
FIXED CONSTRUCTIONS
Abstract
A door latch operator comprising: one of a knob and a lever on a door configured to articulate in response to a linear force, wherein the linear force is perpendicular to a central, longitudinal axis of a latch; a transmission configured to translate the linear force into a rotational motion; and a latch bolt configured to extend from the latch absent the rotational motion and retract into the latch upon reception of the rotational motion.
Claims
1. A door latch operator comprising: one of a knob and a lever on a door configured to articulate in response to a linear force, wherein the linear force is perpendicular to a central, longitudinal axis of a latch; a transmission configured to translate the linear force into a rotational motion; and a latch bolt configured to extend from the latch absent the rotational motion and retract into the latch upon reception of the rotational motion.
2. The door latch operator according to claim 1, further comprising a door with an interior side and an exterior side, wherein the one of the knob and the lever and the transmission are installed on both the interior side and the exterior side of the door, each configured to retract the latch.
3. The door latch operator according to claim 1, further comprising: an adapter joining the one of the knob and the lever to the transmission; a rack gear in mechanical communication with the one of the knob and the lever configured to displace the linear force applied to the one of the knob and the lever; and a pinion gear in mechanical communication with the rack gear configured to rotate upon displacement of the rack gear; wherein the rotation of the pinion gear retracts the latch bolt into the latch, and wherein a spring within the transmission returns the rack gear after the linear force is terminated, thereby extending the latch bolt from the latch.
4. The door latch operator according to claim 2, wherein the latch bolt inserts into a door jamb when the latch bolt is extended from the latch and retracts out of the door jamb when the latch bolt is retracted into the latch, thereby preventing the door from opening when the door is in a closed position and the latch bolt is extended into the door jamb, and allowing the door to be moved to an open position when the latch bolt is retracted into the latch.
5. The door latch operator according to claim 2, wherein the latch is mounted within a bore in the door and the transmission mounts to the exterior side of the door.
6. The door latch operator according to claim 5, wherein the transmission includes at least one arm extending into the bore in the door and interacting with the latch.
7. The door latch operator according to claim 1, further comprising a second transmission, wherein the transmission is located on an exterior side of a door and the second transmission is located on an interior side of the door, opposite the exterior side.
8. A method of operating a door latch comprising the steps of: applying a downwardly force to a door latch operator; pivoting the door latch operator in a downwardly direction tangent to an arc that intersects a door; translating the downwardly force to a rotational motion with a transmission having a rack gear and a pinion gear; and retracting a door latch bolt from an extended position to a retracted position with the rotational motion as the door latch operator is pivoted; wherein the downwardly force causes the door latch operator to pivot about a pivot point between a surface of the door and a rose.
9. The method of operating a door latch according to claim 8, further comprising concealing the transmission between the surface of the door and the rose.
10. The method of operating a door latch according to claim 8, further comprising installing the transmission on the surface of the door and installing a second transmission on an opposing surface of the door, wherein each respective transmission operates independently.
11. The method of operating a door latch according to claim 8, further comprising extending the door latch bolt into a door jamb when the downwardly force is absent and retracting the door latch bolt out of the door jamb when the downwardly force is applied to the door latch operator.
12. The method of operating a door latch according to claim 8, wherein the door latch operator is a door knob configured to pivot vertically.
13. A door latch operator comprising: a door with a latch located within a bore on a door jamb side of the door; one of a knob and a lever on the door configured to articulate in response to a linear force, wherein the linear force is perpendicular to a central, longitudinal axis of the latch; a transmission configured to translate the linear force into a rotational motion; and a latch bolt configured to extend from the latch and the door jamb side of the door when in a rested state and retract into the latch and the door jamb side of the door when the linear force is applied.
14. The door latch operator according to claim 13, further comprising a rose configured to enclose the transmission between the door and the rose.
15. The door latch operator according to claim 13, further comprising: an adapter joining the one of the knob and the lever to the transmission, wherein the adapter transfers the linear force to the transmission.
16. The door latch operator according to claim 13, wherein the transmission comprises: a rack gear in mechanical communication with the one of the knob and the lever configured to displace the linear force applied to the one of the knob and the lever; and a pinion gear in mechanical communication with the rack gear configured to rotate upon displacement of the rack gear; wherein the rotation of the pinion gear retracts the latch bolt into the latch.
17. The door latch operator according to claim 13, wherein the latch bolt inserts into a door jamb when the latch bolt is extended from the latch and retracts out of the door jamb when the latch bolt is retracted into the latch, thereby preventing the door from opening when the door is in a closed position and the latch bolt is extended into the door jamb, and allowing the door to be moved to an open position when the latch bolt is retracted into the latch.
18. The door latch operator according to claim 13, wherein the transmission mounts to an exterior surface of the door.
19. The door latch operator according to claim 13, wherein the transmission includes at least one arm extending into the bore in the door and interacting with the latch.
20. The door latch operator according to claim 13, further comprising a second transmission, wherein each transmission is mounted to opposing surfaces of the door and wherein each transmission is concealed with a rose.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0015] The present disclosure will be described hereafter with reference to the attached drawings which are given as non-limiting examples only, in which:
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028] Corresponding reference characters indicate corresponding parts throughout the several views. The exemplifications set out herein illustrate an embodiment of the invention, and such exemplifications are not to be construed as limiting the scope of the invention in any manner.
DETAILED DESCRIPTION
[0029]
[0030] The knob 4 is joined to an adapter 5 with a set screw 6. A slot 7 within a rose 8 allows the adapter 5 to penetrate the rose 8 and connect with a transmission 9. The rose 8 fully conceals the transmission 9 allowing it to be located outside of the door surface. The transmission 9 is therefore housed between the rose 8 and the surface of the door.
[0031] The transmission 9 converts the linear force applied to the knob 4 into a rotational motion necessary to retract the latch bolt 3 into the latch 2. A pivot pin 10 acts as the fulcrum for the adapter 5 as the linear force is applied to the knob 4. The pivot pin 10 is located in a pin slot 12 in the transmission 9. The pivot pin 10 is also passed through a pin bore 11 in the adapter 5. As the linear force is applied, the adapter 5 pivots about the pivot pin 10 which causes a rack gear 15 to move, as best shown in
[0032] The transmission 9 is shown in exploded view in
[0033] The adapter 5, shown in
[0034] The pinion gear 17 is located within the rack gear 15. The teeth of the pinion gear 17 mesh with the teeth of the rack gear 15. The pinion gear 17 is pinned to the transmission housing 25 with a pin 31 passing through the pinion gear 17 and into a pin hole 32. The pin 31 allows the pinion gear 17 to rotate as the rack gear 15 is displaced by either the spring 16 or the adapter 5. An arm 13 transfers the rotational motion of the pinion gear 17 to the latch 2, as seen in
[0035]
[0036] The pivoting action of the knob 4 is best shown in
[0037] The linear force 50 can be applied by an operator's hand, forearm, elbow, hip, or any other appendage. Since the knob 4 does not need to be rotated, a grasp on the knob 4 is not necessary to actuate the latch 2.
[0038] If a lever were used in place of a knob 4, it could be operated in similar fashion. A typical lever used with latches according to the prior art requires more than a linear force to actuate a latch. Traditional solutions require rotation of over 90 degrees, which means a single, linear force is not adequate. The force applied to a traditional latch operator needs to change directions to actuate the latch. This makes it very difficult to actuate the latch without a grasp on the lever. The door latch operator 1 according to the invention does not require either a firm grasp or rotation over 90 degrees.
[0039]
[0040] Although the present disclosure has been described with reference to particular means, materials and embodiments, from the foregoing description, one skilled in the art can easily ascertain the essential characteristics of the present disclosure and various changes and modifications may be made to adapt the various uses and characteristics without departing from the spirit and scope of the present invention as set forth in the following claims.