IP Library Granted Patent US 9,146,342
Granted Patent B2
US 9,146,342 · App. 13/522,074 · Granted Sep 29, 2015

Illumination device having viscoelastic lightguide

Inventors: Martin B. Wolk (Woodbury, MN); Michael J. Sykora (New Richmond, WI); Robert L. Brott (Woodbury, MN); William J. Bryan (Mahtomedi, MN); Erik A. Aho (North St. Paul, MN); Martin Kristoffersen (Persgrunn, NO); Michael A. Meis (Stillwater, MN); Kevin R. Schaffer (Woodbury, MN); Audrey A. Sherman (St. Paul, MN); John C. Schultz (Afton, MN); Mieczyslaw H. Mazurek (Roseville, MN)
Assignee: 3M INNOVATIVE PROPERTIES COMPANY
G02B6/005G02B6/0065G02B6/0036G02B6/0038G02B6/0051
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Quick Facts
Patent No.
US 9,146,342
App. No.
13/522,074
Granted
Sep 29, 2015
Kind
B2
Abstract

An illumination device, such as a backlight for electronic display devices, is disclosed. The illumination device includes a viscoelastic lightguide optically coupled to a light source, and a nanovoided polymeric layer is used in conjunction with the lightguide to manage light emitted by the light source. The viscoelastic lightguide may be a pressure sensitive adhesive.

Claims (28)

1. An illumination device comprising:

an optical article comprising

a viscoelastic lightguide, and

a nanovoided polymeric layer disposed on the viscoelastic lightguide, the nanovoided polymeric layer comprising a plurality of interconnected nanovoids; and

a light source optically coupled to the viscoelastic lightguide such that light emitted by the light source enters the viscoelastic lightguide and is transported within the lightguide by total internal reflection.

2. The illumination device of claim 1 , wherein the interconnected nanovoids have an average size of less than about 0.7 micron.

3. The illumination device of claim 1 , wherein the nanovoided polymeric layer has an effective index of refraction of from about 1.15 to about 1.45.

4. The illumination device of claim 1 , wherein the optical article further comprises an adhesive layer disposed on the viscoelastic lightguide opposite the nanovoided polymeric layer.

5. The illumination device of claim 1 , wherein the optical article further comprises a substrate disposed on the nanovoided polymeric layer opposite the viscoelastic lightguide.

6. The illumination device of claim 1 , wherein an interface formed between the viscoelastic lightguide and the nanovoided polymeric layer comprises a plurality of features.

7. The illumination device of claim 6 , wherein the features are oriented to reflect light being transported within the viscoelastic lightguide.

8. The illumination device of claim 6 , wherein the features comprise cube corners, cylindrical lenses or linear prisms.

9. The illumination device of claim 6 , wherein the features are oriented to extract light being transported within the viscoelastic lightguide.

10. An illumination device comprising:

an optical article comprising a viscoelastic lightguide disposed between a substrate and a nanovoided polymeric layer, the nanovoided polymeric layer comprising a plurality of interconnected nanovoids; and

a light source optically coupled to the viscoelastic lightguide such that light emitted by the light source enters the viscoelastic lightguide and is transported within the lightguide by total internal reflection.

11. The illumination device of claim 10 , wherein the substrate comprises a multilayer optical film.

12. The illumination device of claim 10 , wherein the substrate comprises a reflector.

13. The illumination device of claim 10 , wherein the substrate comprises a second nanovoided polymeric layer, the second nanovoided polymeric layer comprising a plurality of second interconnected nanovoids.

14. The illumination device of claim 10 , wherein an interface formed between the viscoelastic lightguide and the nanovoided polymeric layer comprises a plurality of features.

15. The illumination device of claim 14 , wherein the features are oriented to reflect light being transported within the viscoelastic lightguide.

16. The illumination device of claim 14 , wherein the features are oriented to extract light being transported within the viscoelastic lightguide.

17. The illumination device of claim 10 , wherein an interface formed between the viscoelastic lightguide and the substrate comprises a plurality of features.

18. The illumination device of claim 17 , wherein the features are oriented to reflect light being transported within the viscoelastic lightguide.

19. The illumination device of claim 17 , wherein the features are oriented to extract light being transported within the viscoelastic lightguide.

20. An illumination device comprising:

an optical article comprising a viscoelastic lightguide disposed between first and second nanovoided polymeric layers, the first nanovoided polymeric layer comprising a plurality of first interconnected nanovoids, the second nanovoided polymeric layer comprising a plurality of second interconnected nanovoids, a first interface formed between the viscoelastic lightguide and the first nanovoided polymeric layer comprising a plurality of first features that extract light being transported within the viscoelastic lightguide, and a second interface formed between the viscoelastic lightguide and the second nanovoided polymeric layer comprising a plurality of second features that reflect light being transported within the viscoelastic lightguide, and a substrate disposed on the first nanovoided layer opposite the viscoelastic lightguide, a third interface formed between the first nanovoided layer and the substrate comprising an array of linear prisms, and a surface of the substrate opposing the third interface comprising an array of cylindrical lenses; and

a light source optically coupled to the viscoelastic lightguide such that light emitted by the light source enters the viscoelastic lightguide and is transported within the lightguide by total internal reflection.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 29, 2013
From: WOLK, MARTIN B.; SYKORA, MICHAEL J.; BROTT, ROBERT L.; BRYAN, WILLIAM J.; AHO, ERIK A.; KRISTOFFERSEN, MARTIN; MEIS, MICHAEL A.; SCHAFFER, KEVIN R.; SHERMAN, AUDREY A.; SCHULTZ, JOHN C.; MAZUREK, MIECZYSLAW H.
To: 3M INNOVATIVE PROPERTIES COMPANY
Reel/Frame 030504/0162 →
Continuity (2)
Provisional Application 61294671 · Jan 13, 2010
Related Publication 20130235614A1 · Sep 12, 2013