IP Library Granted Patent US 11,849,246
Granted Patent B1
US 11,849,246 · App. 18/332,702 · Granted Dec 19, 2023

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 11,849,246
App. No.
18/332,702
Granted
Dec 19, 2023
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 (55)

1. A mounting system comprising:

a fixed support bracket;

a television bracket;

a linkage assembly reconfigurable to move the television bracket from a stowed position to a lowered position, the linkage assembly is rotatable about a first axis of rotation relative to the television bracket and rotatable about a second axis of rotation relative to the fixed support bracket; and

a spring device configured to counterbalance a television coupled to the television bracket, the spring device including

a biasing mechanism rotatable about a biasing axis of rotation relative to the fixed support bracket,

a slider member coupled to the biasing mechanism,

an adjustment member rotatable relative to the slider member to cause the slider member to move along the adjustment member to adjust a configuration of the biasing mechanism to adjust counterbalancing provided by the spring device;

at least one rotatable member configured to allow movement of the television bracket relative to the fixed support bracket and configured to be rotated to set a viewing orientation of the television bracket relative to the linkage assembly; and

a swivel device coupling the television bracket to the linkage assembly and configured to allow swiveling of the television bracket relative to the linkage assembly while the television bracket is held at the viewing orientation.

2. The mounting system of claim 1 , wherein the biasing mechanism is configured to change length when the television bracket is moved upwardly and downwardly relative to the fixed support bracket.

3. The mounting system of claim 1 , wherein the adjustment member is a threaded member extending through the slider member.

4. The mounting system of claim 1 , wherein the spring device holds opposing sides of the slider member to guide movement of the slider member along the adjustment member.

5. The mounting system of claim 1 , wherein the slider member is coupled to an end of the biasing mechanism.

6. A mounting system comprising:

a fixed support bracket;

a television bracket having one or more arms configured to be coupled to a television;

a linkage assembly configured to hold the television bracket at a stowed raised position and a lowered position, the linkage assembly is rotatable about a first axis of rotation relative to the television bracket and rotatable about a second axis of rotation relative to the fixed support bracket to move the television bracket forwardly from the stowed raised position to the lowered position; and

a counterbalance mechanism having an end located between and rotatably coupled to a pair of spaced apart members coupled to the fixed support bracket, the counterbalance mechanism including

a biasing mechanism rotatable about a biasing axis of rotation relative to the fixed support bracket,

a slider member coupled to the biasing mechanism and movable along a first slot and a second slot of the spaced apart members, and

an adjustment member positioned between the first and second slots and rotatable to cause the slider member to move along the first and second slots so as to adjust a configuration of the biasing mechanism to set counterbalancing provided by the counterbalance mechanism, wherein when the television bracket is at the stowed raised position and the fixed support bracket is coupled to a vertical wall, the biasing axis of rotation is positioned at a substantially fixed distance from the vertical wall for an entire length of travel of the slider member along the first and second slots.

7. The mounting system of claim 6 , wherein the linkage assembly includes linkages rotatably coupled to the fixed support bracket and the television bracket, wherein the linkages angle downwardly away from a horizontal plane when the television bracket is at the lowered position.

8. The mounting system of claim 6 , wherein the biasing mechanism changes length as the television bracket is lowered or raised relative to the fixed support bracket.

9. The mounting system of claim 6 , wherein the adjustment member is a threaded member threadably contacting the slider member, wherein the slider member is configured to translate along a linear path upon rotation of the adjustment member.

10. The mounting system of claim 6 , wherein the adjustment member is a threaded rod.

11. The mounting system of claim 6 , wherein the adjustment member is rotatable to adjust the counterbalancing while the television bracket is substantially stationary, wherein the adjustment member has an exposed head accessible when the television bracket is at the lowered position.

12. The mounting system of claim 6 , wherein the biasing axis of rotation extends through the first and second slots and the slider member, wherein the slider member is a carriage.

13. The mounting system of claim 6 , further comprising elongated slots, wherein the slider member has opposing sides slidable along the elongated slots to guide movement of the slider member.

14. A mounting system comprising:

a fixed support bracket;

an articulating assembly coupled to the fixed support bracket and including

a television bracket,

a linkage assembly configured to move the television bracket between a raised position and a lowered position and including

an upper arm rotatably coupled to the fixed support bracket,

a lower arm rotatable about a lower inner axis of rotation relative to the fixed support bracket, and

an outer member rotatably coupled to the upper arm and the lower arm; and

at least one member rotatable to allow movement of the television bracket relative to the fixed support bracket and rotatable to set a viewing position of the television bracket; and

a swivel coupling the television bracket to the linkage assembly and configured to allow rotation of the television bracket relative to the linkage assembly while the television bracket is held at the viewing position.

15. The mounting system of claim 14 , wherein the at least one member includes a plurality of rotatable members each movable along a respective slot of the mounting system to move the television bracket relative to the fixed support bracket.

16. The mounting system of claim 14 , wherein the at least one member includes a plurality of rotatable members.

17. The mounting system of claim 14 , wherein the movement of the television bracket relative to the fixed support bracket is different than the rotation of the television bracket relative the linkage assembly via the swivel.

18. The mounting system of claim 14 , wherein the at least one member is carried by the linkage assembly.

19. The mounting system of claim 14 , wherein the at least one member is configured to set the viewing position of the television bracket independent of swiveling, via the swivel, of the television bracket.

20. The mounting system of claim 14 , wherein the television bracket includes a rail and arms configured to hang on the rail, wherein the arms are configured to couple to a television and are slidable along the rail, and wherein the rail is configured to keep the arms spaced apart from the fixed support bracket when the television bracket swivels relative to the linkage assembly.

21. A mounting system comprising:

a fixed support bracket;

a television bracket configured to be coupled to a television;

a linkage assembly configured to hold the television bracket at a raised position and a lowered position, wherein the linkage assembly is rotatably coupled to the television bracket and rotatably coupled to the fixed support bracket to move the television bracket between the raised position and the lowered position; and

a counterbalance mechanism including

a biasing mechanism,

a carriage coupled to the biasing mechanism and movable along a first slot of a first member and a second slot of a second member, and

an adjustment member positioned generally between the first and second slots and rotatable to cause the carriage to move along the first and second slots so as to adjust a configuration of the biasing mechanism to adjust counterbalancing provided by the counterbalance mechanism.

22. The mounting system of claim 21 , wherein the television bracket includes a rail and arms configured to hang on the rail, wherein the arms are configured to couple to a television and are slidable along the rail, and wherein the rail is configured to keep the arms spaced apart from the fixed support bracket when the television bracket swivels relative to the linkage assembly.

23. The mounting system of claim 21 , wherein the adjustment member is a threaded member extending through the carriage.

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 (12)
US 12,228,236 US 12,295,493 US 12,313,209 US 12,316,996 US 12,372,194 US 12,388,949 US 12,455,041 US 12,560,275 US 12,601,445 US 12,631,288 US 12,704,217 US 12,714,225