IP Library Granted Patent US 12,167,163
Granted Patent B1
US 12,167,163 · App. 18/388,523 · Granted Dec 10, 2024

Television mounting systems

Inventor: Kurt William Massey (Mooresville, NC)
Assignee: Manehu Product Alliance, LLC
H04N5/64A47B97/001F16M11/06F16M11/10F16M11/18F16M11/2014F16M11/2092F16M13/02H04N5/655F16M2200/044F16M2200/063
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Quick Facts
Patent No.
US 12,167,163
App. No.
18/388,523
Granted
Dec 10, 2024
Kind
B1
Abstract

A mounting system capable of mounting objects to support structures. The mounting system includes a wall mount including a display bracket configured to hold the object, a fixed support bracket coupleable to a vertical support structure, and a linkage assembly. The linkage assembly has a low-profile stowed configuration in which the object is held in a raised position close to the support structure. The linkage assembly moves to another configuration to move the object. The object can be held in a lowered position. A biasing mechanism can facilitate convenient movement of the object.

Claims (46)

1. A television mounting system, comprising:

a support bracket configured to be coupled to a wall;

a display bracket;

a linkage assembly rotatably coupled to the support bracket and coupled to the display bracket;

an actuator assembly configured to move the linkage assembly to raise and lower the display bracket, wherein the television mounting system is configured to rotate the display bracket relative to the linkage assembly; and

at least one positioner configured to contact another component of the television mounting system to affect rotation of the display bracket relative to the support bracket when the display bracket is moved upwardly toward a raised position.

2. The television mounting system of claim 1 , wherein the at least one positioner causes automatic positioning of the display bracket relative to the wall when the display bracket is moved by the actuator assembly.

3. The television mounting system of claim 1 , further comprising a controller including one or more processors and memory, wherein the memory stores a user-selected viewing position and instructions executable by the one or more processors to command the actuator assembly to move the display bracket to the user-selected viewing position.

4. The television mounting system of claim 1 , wherein the actuator assembly includes a motor and a linear actuator.

5. The television mounting system of claim 1 , wherein the display bracket rotates about a generally vertical axis via a non-motorized swivel mechanism.

6. The television mounting system of claim 1 , wherein the at least one positioner pushes against the component to pivot the display bracket.

7. The television mounting system of claim 1 , wherein the television mounting system is configured to

rotate the display bracket to a first orientation when the display bracket is moved to a lowered position, and

rotate the display bracket to a second orientation when the display bracket is moved to a raised position, wherein the first orientation is different from the second orientation.

8. The television mounting system of claim 1 , wherein the display bracket is manually swivelable when the display bracket is at a lowered position.

9. A television mounting system, comprising:

a support bracket configured to be coupled to a vertical wall;

a television bracket;

an arm assembly rotatably coupled to the support bracket and coupled to the television bracket;

an actuator assembly configured to move the arm assembly to raise and lower the television bracket, wherein the television mounting system is configured to cause rotation of the television bracket relative to the arm assembly when the television bracket is moved upwardly toward a raised position; and

a swivel coupled to the television bracket to allow the television bracket to rotate relative to the arm assembly when the television bracket is in a lowered position.

10. The television mounting system of claim 9 , wherein the actuator assembly is pivotally coupled to the arm assembly and the support bracket.

11. The television mounting system of claim 9 , further comprising a controller programmed to control the actuator assembly and including one or more processors and memory, wherein the memory stores a user-selected viewing position and instructions executable by the one or more processors to command the actuator assembly.

12. The television mounting system of claim 9 , wherein the actuator assembly includes a motor and a linear actuator.

13. The television mounting system of claim 9 , wherein the television bracket rotates about a generally vertical axis via a non-motorized swivel mechanism.

14. The television mounting system of claim 9 , wherein at least a portion of the arm assembly pushes against the television bracket to pivot the television bracket.

15. The television mounting system of claim 9 , wherein the television mounting system is configured to

rotate the television bracket to a first angled position when the television bracket is moved to the lowered position, and

rotate the television bracket back to a second angled position when the television bracket is moved to the raised position.

16. The television mounting system of claim 9 , wherein the television bracket is manually swivelable when the television bracket is at the lowered position.

17. The television mounting system of claim 9 , further comprising a control device configured to control the actuator assembly and to be moved vertically with the television bracket, wherein the control device is programmable to ensure that the television mounting system does not strike an object when the television bracket is lowered or raised, wherein the control device includes

an input device having a screen and configured to be touched by a user to operate the actuator assembly to move the television bracket to different positions, and

memory configured to store a raised position setting for the television bracket and a lowered position setting for the television bracket,

wherein the control device is programmed to automatically cause the actuator assembly to move the television bracket to the lowered position and to move the television bracket to the raised position.

18. A motorized display support system for raising and lowering an electronic display, the motorized display support system comprising:

a display support apparatus including

a display support configured to carry the electronic display, and

a stationary support configured to be placed along a flat surface, and

a motorized actuator coupled to the display support apparatus and configured to operate to raise or lower the display support; and

a control device configured to control the motorized actuator and to be moved vertically with the display support, wherein the control device is programmable to ensure that the motorized display support system does not strike an object when the display support is raised or lowered, wherein the control device includes

an input device having a screen, wherein the input device is configured to be touched by a user to operate the motorized actuator to move the display support to different positions, and

memory configured to store a raised position for the display support and a lowered position for the display support,

wherein the control device is programmed to automatically cause the motorized actuator to move the display support to the lowered position and to move the display support to the raised position.

19. The motorized display support system of claim 18 , wherein the memory stores an intermediate position for the display support.

20. The motorized display support system of claim 18 , wherein the memory stores at least one time setting for commanding the motorized actuator to automatically move the display support.

21. The motorized display support system of claim 18 , wherein the input device is a touch pad or a touch screen.

Continuity (9)
Continuation 18109220 · Feb 13, 2023
Continuation 17587792 · Jan 28, 2022
Continuation 17516287 · Nov 1, 2021
Continuation 16370841 · Mar 29, 2019
Continuation 16101345 · Aug 10, 2018
Continuation 15851510 · Dec 21, 2017
Continuation 14229780 · Mar 28, 2014
Continuation 13118297 · May 27, 2011
Provisional Application 61396850 · Jun 4, 2010
Cited By (4)
US 12,316,996 US 12,388,949 US 12,455,041 US 12,704,217