IP Library Granted Patent US 9,299,899
Granted Patent B2
US 9,299,899 · App. 13/948,443 · Granted Mar 29, 2016

Flexible lighting device having unobtrusive conductive layers

Inventors: William L. Corwin (Madison, IN); Donald Lee Gramlich, Jr. (Deputy, IN); Scott J. Jones (Romeo, MI); Martin J. Marx (Madison, IN); Cesar Perez-Bolivar (Madison, IN); George M. Richardson, II (Charlestown, IN); James E. Roberts (Madison, IN)
Assignee: Grote Industries, LLC
H01L33/62H01L25/0753H01L2224/16
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Quick Facts
Patent No.
US 9,299,899
App. No.
13/948,443
Granted
Mar 29, 2016
Kind
B2
Abstract

A flexible lighting element is provided, comprising: a first substrate; first and second conductive elements over the first substrate; a light-emitting element having first and second contacts that are both on a first surface of the light-emitting element, the first and second contacts being electrically connected to the first and second conductive elements, respectively, and the light-emitting element emitting light from a second surface opposite the first surface; a transparent layer located adjacent to the second surface; and a transparent affixing layer located between the first substrate and the transparent layer, wherein the transparent layer and the transparent affixing layer are both sufficiently transparent to visible light that they will not decrease light transmittance below 70%, and the first and second conductive layers are at least partially transparent to visible light, or are 300 μm or smaller in width, or are concealed by a design feature from a viewing direction.

Claims (28)

1. A lighting element, comprising:

a first substrate;

a first conductive element located on the first substrate;

a second conductive element located on the first substrate;

a light-emitting element having a first contact and a second contact, the first and second contacts both being on a first surface of the light-emitting element, the first contact being electrically connected to the first conductive element, the second contact being electrically connected to the second conductive element, and the light-emitting element being configured to emit light from a second surface opposite the first surface with the light having a first narrow range of wavelengths between 10 nm and 100,000 nm;

a transparent layer located adjacent to the second surface of the light-emitting element;

a transparent affixing layer located between the first substrate and the transparent layer, the affixing layer being configured to affix the transparent layer to the first transparent substrate; and

a first transparent conductive layer formed at least partially adjacent to the first contact and at least partially adjacent to the first conductive element, the first transparent conductive layer configured to electrically connect the first contact and the first conductive element,

wherein

the transparent layer and the transparent affixing layer are both sufficiently transparent to visible light such that they will not decrease light transmittance below 70%,

the first and second conductive elements are at least partially transparent to visible light, and

the first transparent conductive layer is sufficiently transparent to visible light such that it will not decrease light transmittance below 70%.

2. The lighting element of claim 1 , further comprising:

a second transparent conductive layer formed at least partially adjacent to the second contact and at least partially adjacent to the second conductive element, the second transparent conductive layer configured to electrically connect the second contact and the second conductive element,

wherein the second transparent conductive layer is sufficiently transparent to visible light such that it will not decrease light transmittance below 70%.

3. The lighting element of claim 2 , wherein

the light-emitting element is configured to at least partially overlap at least one of the first and second conductive elements.

4. The lighting element of claim 2 , wherein

the light-emitting element is configured such that it does not overlap either of the first and second conductive elements.

5. The lighting element of claim 1 , wherein

the light-emitting element is an ultrathin light-emitting element, having a thickness of between 3 mil and 20 mil.

6. The lighting element of claim 1 , wherein

the transparent layer is one of a second substrate and a hardened conformal coating.

7. The lighting element of claim 1 , wherein

the first and second conductive elements each comprise at least one of a conductive polymer strip, a nano-composite strip, a metal nanowire, a copper strip, an aluminum strip, a silver strip, and a strip containing an alloy of copper, aluminum, or silver.

8. The lighting element of claim 1 , wherein

the first substrate is sufficiently transparent to visible light such that it will not decrease light transmittance below 70%.

9. The lighting element of claim 1 , wherein the first and second conductive elements are both buss bars.

Assignments (2)
SECURITY INTEREST Recorded Apr 8, 2019
From: GROTE INDUSTRIES, LLC; GROTE INDUSTRIES CANADA, INC.; GROTE INDUSTRIES, INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 048818/0236 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 23, 2013
From: CORWIN, WILLIAM L.; GRAMLICH, DONALD LEE, JR.; JONES, SCOTT J.; MARX, MARTIN J.; PEREZ-BOLIVAR, CESAR; RICHARDSON, GEORGE M., II; ROBERTS, JAMES E.
To: GROTE INDUSTRIES, LLC
Reel/Frame 030859/0291 →
Continuity (1)
Related Publication 20150028376A1 · Jan 29, 2015