IP Library Granted Patent US 11,593,053
Granted Patent B2
US 11,593,053 · App. 17/063,128 · Granted Feb 28, 2023

Display system and methods

Inventors: Richard Craig Cope (Duluth, GA); Douglas Andrew Price (Lawrenceville, GA); Drew Fredrick Meincke (Woodstock, GA); Jorge Perez-Bravo (Alpharetta, GA); Joshua Mckellar Byrd (Atlanta, GA)
Assignee: NanoLumens Acquisition, Inc.
G06F3/1446F21K9/20G06F3/1431G09F9/3026G09F9/33G09F21/04H04N5/775H04N21/41415
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Quick Facts
Patent No.
US 11,593,053
App. No.
17/063,128
Granted
Feb 28, 2023
Kind
B2
Abstract

A display system and methods; in general, a plurality of display sub-assemblies collectively creating a viewing plane. Each display sub-assembly having a plurality of light emitting elements on a substrate with a plurality of substantially equal pixel gaps between light emitting elements. Bend gaps are provided between pixels that enable the display sub-assemblies to bend thereby creating a curved viewing plane. A mobile LED panel display may be formed of a plurality of LED display modules having a plurality of pixels, four or more casters, a battery powered supply, a media player (electrically communicating with the plurality of display modules for controlling the display of images on the LED panel display, and a removable content storage device and; thus, functions as a rugged, light weight, battery powered display to inform customers and passers-by about product and service offerings via a rugged person size mobile light weight battery powered display.

Claims (60)

1. A light emitting display system on a support structure, the light emitting display system comprising:

a) a plurality of light emitting display sub-assemblies attached to said support structure, the plurality of light emitting display sub-assemblies collectively creating a visual display having no perceivable gaps or overlaps between adjacent light emitting display sub-assemblies;

b) each of said light emitting display sub-assemblies comprising:

i) a plurality of light emitting elements affixed to a substrate, the edges of the substrate defining a contiguous perimeter;

ii) each of said plurality of light emitting elements covered by an optical material, said optical material providing a rigid surface above each light emitting element, said optical material allowing at least partial transmission of light emitted by said each light emitting element;

iii) said plurality of light emitting elements configured to provide a plurality of pixels, each pixel comprising a grouping of more than one light emitting element, each pixel having a geometric centroid that is the geometric centroid of said grouping;

iv) a plurality of pixel gaps, each pixel gap defined as the distance between the geometric centroids of two adjacent pixels;

v) the plurality of pixel gaps spaced so that all of said plurality of pixel gaps are substantially the same size;

vi) a portion of said plurality of light emitting elements configured so that each light emitter of said portion is spaced from said contiguous perimeter by a distance of one half the size of said pixel gap or less;

c) said plurality of light emitting display sub-assemblies disposed on said support structure so that a portion of said contiguous perimeter of each of said plurality of light emitting display sub-assemblies abuts a portion of said contiguous perimeter of an adjacent light emitting display sub-assembly.

2. The light emitting display system of claim 1 further characterized in that:

a) each of the plurality of light emitting elements is a light emitting diode.

3. The light emitting display system of claim 1 further characterized in that:

a) each of the plurality of light emitting elements is an organic light emitting diode.

4. The light emitting display system of claim 1 further characterized in that each pixel comprises:

a) at least one light emitting element that is operable to emit red light;

b) at least one light emitting element that is operable to emit green light; and,

c) at least one light emitting element that is operable to emit blue light.

5. The light emitting display system of claim 1 further characterized in that each pixel comprises:

a) more than one light emitting element that is operable to emit red light;

b) more than one light emitting element that is operable to emit green light; and,

c) at least one light emitting element that is operable to emit blue light.

6. The light emitting display system of claim 1 further comprising:

a) a capture device disposed within one of said plurality of pixel gaps, the capture device operative to capture one or more images from the environment in front of said visual display, said capture device encapsulated by said optical material.

7. The light emitting display system of claim 6 further comprising:

a) a media player configured to communicate content to said one or more display sub-assemblies, the light emitting display system operable to display image or video content from said media player;

b) the media player further characterized in that it is operable to receive said one or more images from said capture device;

c) the media player further characterized in that it is operable to simultaneously display both a portion of said one or more captured images and said image or video content on said visual display.

8. The light emitting display system of claim 1 further comprising:

a) a capture device disposed within one of said plurality of pixel gaps, the capture device operative to capture audio from the environment in front of said visual display.

9. A light emitting display system on a support structure, the light emitting display system comprising:

a) a plurality of light emitting display sub-assemblies attached to said support structure, the plurality of light emitting display sub-assemblies collectively creating a visual display having no perceivable gaps or overlaps between adjacent light emitting display sub-assemblies;

b) each of said light emitting display sub-assemblies comprising:

i) a plurality of light emitting elements affixed to a substrate, the edges of the substrate defining a contiguous perimeter;

ii) each of said plurality of light emitting elements covered by an optical material, said optical material providing a rigid surface above each light emitting element, said optical material allowing at least partial transmission of light emitted by said each light emitting element;

iii) said plurality of light emitting elements configured to provide a plurality of pixels, each pixel comprising a grouping of more than one light emitting element, each pixel having a geometric centroid that is the geometric centroid of said grouping;

iv) a plurality of pixel gaps, each pixel gap defined as the distance between the geometric centroids of two adjacent pixels;

v) the plurality of pixel gaps spaced so that all of said plurality of pixel gaps are substantially the same size;

vi) a portion of said plurality of light emitting elements configured so that each light emitter of said portion is spaced from said contiguous perimeter by a distance of one half the size of said pixel gap or less;

c) said plurality of light emitting display sub-assemblies disposed on said support structure so that a plurality of sub-assembly gaps is created between the contiguous perimeters of adjacent sub-assemblies, said plurality of sub-assembly gaps being substantially equal in size across the entire visual display.

10. The light emitting display system of claim 9 further characterized in that:

a) each of the plurality of light emitting elements is a light emitting diode.

11. The light emitting display system of claim 9 further characterized in that:

a) each of the plurality of light emitting elements is an organic light emitting diode.

12. The light emitting display system of claim 9 further characterized in that each pixel comprises:

a) at least one light emitting element that is operable to emit red light;

b) at least one light emitting element that is operable to emit green light; and,

c) at least one light emitting element that is operable to emit blue light.

13. The light emitting display system of claim 9 further characterized in that each pixel comprises:

a) more than one light emitting element that is operable to emit red light;

b) more than one light emitting element that is operable to emit green light; and,

c) at least one light emitting element that is operable to emit blue light.

14. The light emitting display system of claim 9 further comprising:

a) a capture device disposed within one of said plurality of pixel gaps, the capture device operative to capture one or more images from the environment in front of said visual display, said capture device encapsulated by said optical material.

15. The light emitting display system of claim 14 further comprising:

a) a media player configured to communicate content to said one or more display sub-assemblies, the light emitting display system operable to display image or video content from said media player;

b) the media player further characterized in that it is operable to receive said one or more images from said capture device;

c) the media player further characterized in that it is operable to simultaneously display both a portion of said one or more captured images and said image or video content on said visual display.

16. The light emitting display system of claim 9 further comprising:

a) a capture device disposed within one of said plurality of pixel gaps, the capture device operative to capture audio from the environment in front of said visual display.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2020
From: COPE, RICHARD CRAIG, MR; PRICE, DOUGLAS ANDREW, MR; MEINCKE, DREW FREDRICK, MR; PEREZ-BRAVO, JORGE , MR; BYRD, JOSHUA MCKELLAR, MR
To: NANOLUMENS ACQUISITION, INC.
Reel/Frame 054401/0548 →
Continuity (10)
Continuation 16665349 · Oct 28, 2019
Continuation 16239037 · Jan 3, 2019
Continuation 15844151 · Dec 15, 2017
Continuation 15386959 · Dec 21, 2016
Continuation 14720243 · May 22, 2015
Continuation In Part 13494012 · Jun 11, 2012
Continuation In Part 13297784 · Nov 16, 2011
Continuation In Part 12348158 · Jan 2, 2009
Provisional Application 61019144 · Jan 4, 2008
Related Publication 20210019105A1 · Jan 21, 2021