IP Library Granted Patent US 11,549,285
Granted Patent B2
US 11,549,285 · App. 16/691,383 · Granted Jan 10, 2023

Lock assembly

Inventor: Damon Peter Stenhouse (Auckland, NZ)
Assignee: ASSA ABLOY New Zealand Limited
E05B65/0858E05B13/10E05B9/08E05B15/04E05B55/005E05B65/08E05B65/0811E05C3/004E05C3/10E05C3/167E05C3/30E05C3/34Y10S292/46Y10T292/081Y10T292/0825Y10T292/0829Y10T292/57
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Quick Facts
Patent No.
US 11,549,285
App. No.
16/691,383
Granted
Jan 10, 2023
Kind
B2
Abstract

A lock assembly comprising: a hand-operable member configured to move laterally relative to a fore-end of the lock assembly; wherein lateral movement of the hand-operable member causes the lock assembly to move between a locked mode and an unlocked mode. A lock assembly comprising: a latch, the latch configured to move rotationally relative to the lock assembly; and a hand-operable member configured to move laterally relative to a fore-end of the lock assembly; wherein the hand-operable member is coupled to the latch such that lateral movement of the hand-operable member drives rotational movement of the latch. Methods of installing a lock assembly, comprising setting a hub of a lock assembly to one of a first unlocked position, a first locked position, a second unlocked position, a second locked position, or a deadlocked position, and installing a cylinder lock for engagement with the hub.

Claims (38)

1. A lock assembly comprising:

a hand-operable member configured to move laterally relative to a fore-end of the lock assembly;

a hub configured to communicate with the hand-operable member;

wherein lateral movement of the hand-operable member causes the lock assembly to move between a locked mode and an unlocked mode;

wherein the hub is selectively configured to rotate between one of: a first unlocked position, a first locked position, and a deadlocked position, a second unlocked position, and a second locked position;

wherein the hub moves from the first unlocked position via the first locked position to the deadlocked position by rotation in a first angular direction, and wherein the hub moves from the second unlocked position via the second locked position to the deadlocked position by rotation in a second angular direction opposite to the first angular direction.

2. The lock assembly of claim 1 , wherein the lateral movement is substantially horizontal.

3. The lock assembly of claim 1 , wherein the lateral movement of the hand-operable member causes rotational movement of a latch.

4. The lock assembly of claim 3 , wherein the latch comprises one or more beaks.

5. The lock assembly of claim 4 , wherein the latch comprises two counter-rotating beaks.

6. A lock assembly comprising:

a latch, the latch configured to move rotationally relative to the lock assembly; and

a hand-operable member configured to move laterally relative to a fore-end of the lock assembly;

a hub configured to communicate with the hand-operable member;

wherein the hand-operable member is coupled to the latch such that lateral movement of the hand-operable member drives rotational movement of the latch;

wherein the hub is selectively configured to rotate between one of: a first unlocked position, a first locked position, and a deadlocked position, a second unlocked position, and a second locked position;

wherein the hub moves from the first unlocked position via the first locked position to the deadlocked position by rotation in a first angular direction, and wherein the hub moves from the second unlocked position via the second locked position to the deadlocked position by rotation in a second angular direction opposite to the first angular direction.

7. The lock assembly of claim 6 , wherein a bias member is configured to bias the hub into the first unlocked position, the first locked position, the second unlocked position, the second locked position, and the deadlocked position.

8. The lock assembly of claim 7 , wherein the bias member is configured to bias the hand-operable member into a locked position or an unlocked position.

9. The lock assembly of claim 6 , wherein the hub comprises a locking protrusion configured to lock the hand-operable member in a withdrawn position when the hub is in a deadlocked position.

10. The lock assembly of claim 6 , wherein the hub comprises a channel configured to receive a portion of a lock, such that rotation of the portion causes rotation of the hub.

11. The lock assembly of claim 6 , further comprising a lock retainer for receiving a lock, wherein the lock retainer is orientatable to adjust the position of the lock relative to a fore-end of the lock assembly.

12. The lock assembly of claim 11 , wherein the lock retainer is configured to limit the rotation of the hub beyond a deadlocked position.

13. The lock assembly of claim 6 , further comprising a plug, wherein the plug is configured to prevent the hub from entering the deadlocked position.

14. The lock assembly of claim 6 , wherein the latch comprises one or more beaks, and each beak comprises a plurality of laminated layers fixed together by a respective pin.

15. A method of at least partially installing a lock assembly, the method comprising:

setting a hub of the lock assembly to one of a first unlocked position, a first locked position, a second unlocked position, a second locked position, a deadlocked position; and

installing a cylinder lock for engagement with the hub after setting the hub of the lock assembly to one of the first unlocked position, the first locked position, the second unlocked position, the second locked position, the deadlocked position;

wherein if the hub is set to the first unlocked position or the first locked position, the hub is configured to move from the first unlocked position via the first locked position to the deadlocked position by rotation of the hub in a first angular direction, and if the hub is set to the second unlocked position or the second locked position, the hub is configured to move from the second unlocked position via the second locked position to the deadlocked position by rotation of the hub in a second angular direction opposite to the first angular direction.

16. The method of claim 15 , wherein installing the cylinder lock comprises:

inserting a cylinder lock retainer; and

inserting the cylinder lock into the cylinder lock retainer;

wherein an orientation of the cylinder lock retainer defines the orientation of the cylinder lock relative to the lock assembly.

17. The method of claim 15 , further comprising:

inserting a plug into the lock assembly, the plug being configured to prevent the hub from entering the deadlocked position.

18. The method of claim 15 , wherein setting a hub of a lock assembly to one of the first unlocked position, the first locked position, the second unlocked position, the second locked position, the deadlocked position comprises: setting the hub of the lock assembly to the deadlocked position, the method further comprising:

rotating the cylinder lock towards one of a first locked position and a second locked position;

wherein if the cylinder lock is rotated towards the first locked position, the cylinder lock cannot be rotated into the second locked position, and if the cylinder lock is rotated towards the second locked position, the cylinder lock cannot be rotated into the first locked position.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 16, 2020
From: STENHOUSE, DAMON PETER
To: ASSA ABLOY NEW ZEALAND LIMITED
Reel/Frame 051535/0240 →
Continuity (1)
Related Publication 20200173198A1 · Jun 4, 2020
Cited By (1)
US 12,662,849