IP Library › Granted Patent US 10,544,897
Granted Patent B2
US 10,544,897 · App. 15/873,263 · Granted Jan 28, 2020

Folding wall bracket

Inventors: Liuba Nesin (Warren, MI); Draga Nesin (Warren, MI)
Assignees: Liuba Nesin; Draga Nesin
F16M13/02A47F5/08A47G25/065B62H3/12F16M11/08F16M11/10A47B96/06A47G1/16F16M2200/022
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Quick Facts
Patent No.
US 10,544,897
App. No.
15/873,263
Granted
Jan 28, 2020
Kind
B2
Abstract

A folding bracket is configured to hold an object in a deployed state and store away conveniently in a stored state. The folding bracket includes a wall mount portion including a flat surface configured to lay flat against a proximate wall surface, a deployable arm connected to the wall mount portion with a hinge, and a locking portion configured to lock the deployable arm into one of the stored state and the deployed state. The deployable arm is configured to rotate relative to the wall mount portion into the deployed state and alternatively into the stored state.

Claims (37)

1. An apparatus comprising a folding bracket configured to hold an object in a deployed state and store away conveniently in a stored state, comprising:

a wall mount portion comprising a flat surface configured to lay flat against a proximate wall surface;

a deployable arm connected to the wall mount portion with a hinge, the deployable arm being configured to rotate relative to the wall mount portion into the deployed state and alternatively into the stored state; and

a locking portion configured to lock the deployable arm into one of the stored state and the deployed state and comprising a washer flange portion comprising a washer attached to the hinge and a flange extension comprising a portion bent ninety degrees from the washer, the portion bent ninety degrees from the washer being operable to support the deployable arm and stop the deployable arm in a desired position.

2. The apparatus of claim 1 , wherein the deployable arm is curved.

3. The apparatus of claim 1 , wherein, when the deployable arm is in the deployed state, the deployable arm is perpendicular to the wall mount portion at the hinge and progressively curves upward toward a top end of the wall mount portion along a length of the deployable arm.

4. The apparatus of claim 1 , wherein the deployable arm comprises a set of retention features along a surface that is on top of the deployable arm when the deployable arm is in the deployed state.

5. The apparatus of claim 4 , wherein the retention features are affixed to the deployable arm.

6. The apparatus of claim 4 , wherein the retention features are removable from the deployable arm; and

wherein a second set of retention features can be placed upon the deployable arm.

7. The apparatus of claim 1 , further comprising a button mechanism configured to hold the deployable arm against the wall mount portion when the deployable arm is in the stored state.

8. The apparatus of claim 7 , wherein the button mechanism comprises a tongue and a groove latch.

9. The apparatus of claim 7 , wherein the button mechanism comprises a pair of magnets.

10. The apparatus of claim 1 , wherein the wall mount portion comprises a portion extending downwardly below the hinge; and

wherein, when in the deployed state, the deployable arm contacts and is configured to rest against the portion extending downwardly below the hinge.

11. The apparatus of claim 10 , wherein the locking portion comprises a magnetic block on an end of the wall mount portion distal from the portion extending downwardly below the hinge, wherein the magnetic block is configured to lock the deployable arm in the stored state.

12. An apparatus comprising a folding bracket configured to hold an object in a deployed state and store away conveniently in a stored state, comprising:

a wall mount portion comprising a flat surface configured to lay flat against a proximate wall surface;

an upwardly curved deployable arm connected to the wall mount portion with a hinge, the deployable arm being configured to rotate relative to the wall mount portion into the deployed state and alternatively into the stored state; and

a locking portion configured to lock the deployable arm into one of the stored state and the deployed state, the locking portion comprising:

an axle comprising a threaded portion;

a knob configured to selectively tighten down upon the threaded portion; and

a washer flange portion comprising:

a washer attached to the hinge and with a hole coaxial with the axle; and

a flange extension comprising a portion bent ninety degrees from the washer, the portion bent ninety degrees from the washer being operable to support the deployable arm and stop the deployable arm in a desired position.

13. An apparatus comprising a folding bracket configured to hold an object in a deployed state and store away conveniently in a stored state, comprising:

a wall mount portion comprising a flat surface configured to lay flat against a proximate wall surface;

a deployable arm connected to the wall mount portion with a hinge, the deployable arm being configured to rotate relative to the wall mount portion into the deployed state and alternatively into the stored state;

a magnetic locking portion configured to lock the deployable arm into the stored state; and

a locking portion configured to lock the deployable arm into one of the stored state and the deployed state, the locking portion comprising:

an axle comprising a threaded portion;

a knob configured to selectively tighten down upon the threaded portion; and

a washer flange portion comprising:

a washer attached to the hinge and with a hole coaxial with the axle; and

a flange extension comprising a portion bent ninety degrees from the washer, the portion bent ninety degrees from the washer being operable to support the deployable arm and stop the deployable arm in a desired position;

wherein the wall mount portion further comprises a portion extending downwardly past the hinge; and

wherein, when in the deployed state, the deployable arm contacts and is configured to rest against the portion extending downwardly below the hinge.

Continuity (2)
Provisional Application 62530822 · Jul 10, 2017
Related Publication 20190011076A1 · Jan 10, 2019
Cited By (1)
US 12,693,093