IP Library Granted Patent US 9,782,003
Granted Patent B2
US 9,782,003 · App. 14/970,097 · Granted Oct 10, 2017

Rotating wall mount for display device

Inventors: Marc Trachtenberg (New York, NY); Francois Gariepy (Westmount, CA)
Assignee: Viden Inc.
A47B97/001F16M11/105F16M13/02H01R35/04H04N5/64
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Quick Facts
Patent No.
US 9,782,003
App. No.
14/970,097
Granted
Oct 10, 2017
Kind
B2
Abstract

A system and method for pivotally wall-mounting a device is disclosed. The wall mount includes a power connector disc having contact pads, a wall plate mounted to the wall having at least one mounting slot and at least one tab for limiting rotation, a rotator plate configured to coaxially engage said wall plate with at least one mounting horn extending in an upward direction and a central opening and having at least one inwardly projecting rotation tab, a face plate configured to coaxially engage said rotator plate and said wall plate and fixed to the wall plate enclosing the rotator plate and having a central opening with at least one strip extending into the interior, and a back cover coupled to the device having contact points to receive said contact pads, at least one slot to receive said mounting horn and at least one flap to receive said strip.

Claims (88)

1. A system for pivotally mounting an electronic device to a wall comprising:

a power connector disc having a pair of contact pads;

a wall plate configured to mount to the wall having a central opening and having at least one mounting slot and at least one protruding rotation limiting tab;

a rotator plate configured to coaxially engage said wall plate having at least one mounting horn extending in an upward direction from the circumference and a circular central opening having at least one inwardly projecting rotation tab;

a face plate configured to coaxially engage said rotator plate and said wall plate, and fixed to the wall plate to enclose the rotator plate between the wall plate and the face plate, and having a circular central opening defined by an inner circular edge and at least one strip along the said circular inner edge extending into the interior of the circular central opening of the face plate;

a back cover configured to mount to the electronic device having a pair of power contact points positioned to make contact with said pair of contact pads, at least one horn slot sized to receive to said mounting horn and at least one flap sized to receive said at least one strip;

wherein said strips are positioned into said flaps in a first position and said strips are positioned out of said flaps in a second position; and

wherein rotation of said rotator plate with respect to said wall plate and said face plate is defined by the interaction of the at least one rotation limiting tab with the at least one rotation tab.

2. A system as described in claim 1 wherein said at least one horn slot receives said at least one mounting horn from below when said electronic device is in the vertical position.

3. A system as described in claim 1 wherein said first position is a horizontal position and said second position is a vertical position.

4. A system as described in claim 1 wherein the thickness of the said wall plate, said rotator plate, and said face plate collectively is approximately 8 millimeters.

5. A system as described in claim 4 wherein the thickness of the said wall plate, said rotator plate, and said face plate collectively does not exceed 7.8 millimeters.

6. A system as described in claim 1 wherein said face plate further includes at least one mounting slot corresponding with said at least one mounting slot in said wall plate.

7. A system as described in claim 1 wherein said at least one strip on said face plate has a knife edge.

8. A system as described in claim 1 wherein said wall plate further includes a channel for a power cable.

9. A system as described in claim 1 wherein said contact pads are arcuate.

10. A system as described in claim 1 wherein said contact pads are connected to a connector which is removably attached to a power source.

11. A system as described in claim 1 wherein said contact pads provide continuous power to said power contact points during said rotation.

12. A system as described in claim 1 wherein said wall plate is configured to mount to the wall by screws.

13. A system as described in claim 1 wherein said wall plate is configured to mount to the wall by double sided adhesive tape.

14. A system as described in claim 1 wherein said electronic device is mounted no more than 2.5 mm away from said wall.

15. A method for pivotally mounting an electronic device to a wall comprising the steps of:

providing a power connector disc having a pair of contact pads;

providing a wall plate configured to mount to the wall having a central opening and having at least one mounting slot and at least one protruding rotation limiting tab;

providing a rotator plate configured to coaxially engage said wall plate having at least one mounting horn extending in an upward direction from the circumference and a circular central opening having at least one inwardly projecting rotation tab;

providing a face plate configured to coaxially engage said wall plate and said rotator plate, and fixed to the wall plate to enclose the rotator plate between the wall plate and the face plate, and having a circular central opening defined by an inner circular edge and at least one strip along the said circular inner edge extending into the interior of the circular central opening of the face plate;

providing a back cover configured to mount to the said electronic device having a pair of power contact points in contact with said pair of contact pads, at least one horn slot sized to receive said at least one mounting horn, and at least one flap sized to receive said at least one strip;

mounting said wall plate, said rotator plate, and said face to a wall;

positioning the said back cover connected to the electronic device above the said rotator plate and lowering said back cover connected to the electronic device onto the rotator plate such that the said at least one horn slot lays on top of said at least one mounting horn;

wherein said strips are positioned into said flaps in a first position and said strips are positioned out of the said flaps when said device is in a second position; and

wherein rotation of said rotator plate with respect to said wall plate and said face plate is defined by the interaction of the at least one rotation limiting tab with the at least one rotation tab.

16. A method as described in claim 15 wherein said at least one horn slot receives said at least one mounting horn from below when said electronic device is in the vertical position.

17. A method as described in claim 15 wherein said first position is a horizontal position and said second position is a vertical position.

18. A method as described in claim 15 wherein the thickness of the said wall plate, said rotator plate, and said face plate collectively is approximately 8 millimeters.

19. A method as described in claim 18 wherein the thickness of the said wall plate, said rotator plate, and said face plate collectively does not exceed 7.8 millimeters.

20. A method as described in claim 15 wherein said face plate further includes at least one mounting slot corresponding with said at least one mounting slot in said wall plate.

21. A method as described in claim 15 wherein said at least one strip on said face plate has a knife edge.

22. A method as described in claim 15 wherein said wall plate further includes a channel for a power cable.

23. A method as described in claim 15 wherein said contact pads are arcuate.

24. A method as described in claim 15 wherein said contact pads are connected to a connector which is removably attached to a power source.

25. A method as described in claim 15 wherein said contact pads provide continuous power to said power contact points during said rotation.

26. A method as described in claim 15 wherein said wall plate is configured to mount to the wall by screws.

27. A method as described in claim 15 wherein said wall plate is configured to mount to the wall by double sided adhesive tape.

28. A method as described in claim 15 wherein said electronic device is mounted no more than 2.5 mm away from said wall.

29. A system for pivotally mounting a display device to a wall comprising:

the display device having a back cover;

a power connector disc having a pair of contact pads;

a wall plate configured to mount to the wall having a central opening having at least one mounting slot and at least one protruding rotation limiting tab;

a rotator plate configured to coaxially engage said wall plate and having at least one mounting horn extending in an upward direction from the circumference and a circular central opening having at least one inwardly projecting rotation tab;

a face plate configured to coaxially engage said rotator plate and said wall plate, and fixed to the wall plate to enclose the rotator plate between the wall plate and the face plate, and having a circular central opening defined by an inner circular edge and at least one strip along the said inner circular edge extending into the interior of the circular central opening of the face plate;

the back cover configured to mount to the display device having a pair of power contact points in contact with said pair of contact pads, at least one horn slot sized to receive to said mounting horn and at least one flap sized to receive said at least one strip;

wherein said strips are positioned into said flaps in a first position and said strips are positioned out of said flaps in a second position; and

wherein rotation of said rotator plate with respect to said wall plate and said face plate is defined by the interaction of the at least one rotation limiting tab with the at least one rotation tab.

30. A system as described in claim 29 wherein said at least one horn slot receives said at least one mounting horn from below when said display device is in the vertical position.

31. A system as described in claim 29 wherein said first position is a horizontal position and said second position is a vertical position.

32. A system as described in claim 29 wherein the thickness of the said wall plate, said rotator plate, and said face plate collectively is approximately 8 millimeters.

33. A system as described in claim 32 wherein the thickness of the said wall plate, said rotator plate, and said face plate collectively does not exceed 7.8 millimeters.

34. A system as described in claim 29 wherein said face plate further includes at least one mounting slot corresponding with said at least one mounting slot in said wall plate.

35. A system as described in claim 29 wherein said at least one strip on said face plate has a knife edge.

36. A system as described in claim 29 wherein said wall plate further includes a channel for a power cable.

37. A system as described in claim 29 wherein said contact pads are arcuate.

38. A system as described in claim 29 wherein said contact pads are connected to a connector which is removably attached to a power source.

39. A system as described in claim 29 wherein said contact pads provide continuous power to said power contact points during said rotation.

40. A system as described in claim 29 wherein said wall plate is configured to mount to the wall by screws.

41. A system as described in claim 29 wherein said wall plate is configured to mount to the wall by double sided adhesive tape.

42. A system as described in claim 29 wherein said electronic device is mounted no more than 2.5 mm away from said wall.

43. A method for pivotally mounting a display device to a wall comprising the steps of:

providing a power connector disc having a pair of contact pads;

providing a wall plate configured to mount to the wall having a central opening and having at least one mounting slot and at least one protruding rotation limiting tab;

providing a rotator plate configured to coaxially engage said wall plate having at least one mounting horn extending in an upward direction from the circumference and a circular central opening having at least one inwardly projecting rotation tab;

providing a face plate configured to coaxially engage said wall plate and said rotator plate, and fixed to the wall plate to enclose the rotator plate between the wall plate and the face plate, and having a circular central opening defined by an inner circular edge and at least one strip along the said inner circular edge extending into the interior of the circular central opening of the face plate;

providing a back cover attached to the back of the display device configured to mount to the said display device having a pair of power contact points in contact with said pair of contact pads, at least one horn slot sized to receive said at least one mounting horn, and at least one flap sized to receive said at least one strip;

mounting said wall plate, said rotator plate, and said face to a wall;

positioning the said back cover connected to the display device above the said rotator plate and lowering said back cover connected to the display device onto the rotator plate such that the said at least one horn slot lays on top of said at least one mounting horn;

wherein said strips are positioned into said flaps in a first position and said strips are positioned out of the said flaps when said device is in a second position; and

wherein rotation of said rotator plate with respect to said wall plate and said face plate is defined by the interaction of the at least one rotation limiting tab with the at least one rotation tab.

44. A method as described in claim 43 wherein said at least one horn slot receives said at least one mounting horn from below when said display device is in the vertical position.

45. A method as described in claim 43 wherein said first position is a horizontal position and said second position is a vertical position.

46. A method as described in claim 43 wherein the thickness of the said wall plate, said rotator plate, and said face plate collectively is approximately 8 millimeters.

47. A method as described in claim 46 wherein the thickness of the said wall plate, said rotator plate, and said face plate collectively does not exceed 7.8 millimeters.

48. A method as described in claim 43 wherein said face plate further includes at least one mounting slot positioned to corresponding with said at least one mounting slot in said wall plate.

49. A method as described in claim 43 wherein said at least one strip on said face plate has a knife edge.

50. A method as described in claim 43 wherein said wall plate further includes a channel for a power cable.

51. A method as described in claim 43 wherein said contact pads are arcuate.

52. A method as described in claim 43 wherein said contact pads provide continuous power to said power contact points during said rotation.

53. A method as described in claim 43 wherein said wall plate is configured to mount to the wall by screws.

54. A method as described in claim 43 wherein said wall plate is configured to mount to the wall by double sided adhesive tape.

55. A method as described in claim 43 wherein said electronic device is mounted no more than 2.5 mm away from said wall.

Assignments (3)
SECURITY INTEREST Recorded Sep 7, 2023
From: VIDERI INC.
To: LAGO INNOVATION FUND III, LLC
Reel/Frame 064823/0291 →
SECURITY INTEREST Recorded Apr 26, 2022
From: VIDERI INC.; QUALIFIED SUBSIDIARIES OF VIDERI FROM TIME TO TIME PARTIES TO AGREEMENT
To: SILVERPEAK CREDIT PARTNERS, LP
Reel/Frame 059731/0467 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 12, 2018
From: TRACHTENBERG, MARC; GARIEPY, FRANCOIS
To: VIDERI INC.
Reel/Frame 046334/0630 →
Continuity (9)
Continuation In Part 14213729 · Mar 14, 2014
Continuation In Part 29469599 · Oct 11, 2013
Continuation In Part 29469606 · Oct 11, 2013
Continuation In Part 29469621 · Oct 11, 2013
Continuation In Part 29469628 · Oct 11, 2013
Continuation In Part 29469633 · Oct 11, 2013
Continuation In Part 29469638 · Oct 11, 2013
Continuation In Part 29469645 · Oct 11, 2013
Related Publication 20160166061A1 · Jun 16, 2016