IP Library Granted Patent US 12,204,120
Granted Patent B2
US 12,204,120 · App. 18/203,528 · Granted Jan 21, 2025

Optically variable security devices

Inventors: Roger W. Phillips (Santa Rosa, CA); Thomas Mayer (Bogart, GA); Scott Lamar (Santa Rosa, CA); Elena Taguer (Ottawa, CA)
Assignee: VIAVI SOLUTIONS INC.
G02B5/18B32B37/1284B32B37/18B42D25/00B42D25/29B42D25/328B42D25/47G02B5/0808G02B5/285G02B5/32G03H1/0011G03H1/0256B32B2425/00B32B2551/00G03H1/0244G03H2001/188G03H2210/55G03H2250/10G03H2270/12G03H2270/24Y10T156/10
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Quick Facts
Patent No.
US 12,204,120
App. No.
18/203,528
Granted
Jan 21, 2025
Kind
B2
Abstract

An optical device is formed by hot stamping a demetallized hologram to an optically variable foil or to a coating of optically variable ink. In another embodiment a hologram is hot stamped to a banknote or document printed with a color-shifting ink.

Claims (31)

1. A method of manufacturing a device for providing an image having an optically variable feature, comprising:

a) providing a diffractive structure;

b) providing an optically variable structure distinct from the diffractive structure, wherein the optically variable structure comprises a first reflector layer, an absorber layer, and a dielectric layer between the reflector and absorber layers;

c) covering the diffractive structure or the optically variable structure with an adhesive; and,

d) after steps (a)-(c), activating, with energy, the adhesive and coupling the diffractive structure and the optically variable structure together, wherein the energy activated adhesive forms a layer;

wherein the diffractive structure comprises a relief pattern and a high refraction index layer made of a material having an index of refraction no less than 1.65; and

wherein the diffractive structure comprises a patterned opaque coating so that the diffractive structure has opaque regions and light transmissive regions.

2. The method as defined in claim 1 , wherein the opaque regions are configured for preventing light incident on the diffractive structure from propagating through to the optically variable structure via the layer of the energy activated adhesive, and light transmissive regions are configured for allowing light incident on the diffractive structure to propagate through to the optically variable structure via the layer of the energy activated adhesive.

3. The method as defined in claim 1 , wherein the patterned opaque coating is a second reflector layer.

4. The method as defined in claim 3 , wherein the second reflector layer is partially demetallized.

5. The method as defined in claim 4 , wherein the second reflector layer is segmented so that the reflector layer has one or more light transmissive windows, so that the optically variable structure is visible through said windows.

6. The method as defined in claim 3 wherein the optically variable structure comprises a coating with a plurality of multilayer optical interference flakes therein or thereon.

7. The method as defined in claim 1 , wherein step (a) comprises providing a substrate having a first side supporting the diffractive structure, wherein the first side of the substrate has a first region wherein the diffractive structure is therein or thereon, and the first side of the substrate has a second region wherein the diffractive structure is absent, and in step (c) the layer of the energy activated adhesive is adjoined to the first side of the substrate so that the optically variable structure is adhesively bound solely to the substrate and coupled to the diffractive structure by the surrounding adhesive.

8. A device manufactured by the method defined in claim 1 .

9. The method as defined in claim 1 , wherein the diffractive structure includes a grating to form a light transmissive region for allowing light incident on the diffractive structure to propagate through to the optically variable structure via the layer of the energy activated adhesive.

10. The method as defined in claim 1 , wherein the diffractive structure includes indicia.

11. The method as defined in claim 1 , wherein the diffractive structure includes a substrate having the grating impressed on a surface of the substrate.

12. The method as defined in claim 1 , wherein the diffractive structure includes a protective coating.

13. The method as defined in claim 1 , wherein the adhesive includes covert flakes.

14. The method as defined in claim 13 , wherein the covert flakes include charms, taggants, shaped pigments, magnetic flakes, or fluorescent pigments.

15. The method as defined in claim 1 , wherein in step c) the adhesive covers the diffractive structure or the optically variable structure in a pattern.

16. The method as defined in claim 15 , wherein the diffractive structure has regions not bonded to the optically variable structure based upon the pattern.

17. The method as defined in claim 15 , wherein the pattern of adhesive forms a frame around the diffractive structure.

18. A method of manufacturing a device for providing an image having an optically variable feature, comprising:

a) providing a diffractive structure;

b) providing an optically variable structure distinct from the diffractive structure, wherein the optically variable structure comprises a first reflector layer, an absorber layer, and a dielectric layer between the reflector and absorber layers;

c) activating, with energy, an adhesive to couple the diffractive structure and the optically variable structure together, wherein the energy activated adhesive forms a layer;

wherein the diffractive structure comprises a relief pattern and a high refraction index layer made of a material having an index of refraction no less than 1.65; and

wherein the diffractive structure comprises a patterned opaque coating so that the diffractive structure has opaque regions and light transmissive regions.

19. The method as defined in claim 18 , wherein the adhesive comprises covert flakes.

20. The method as defined in claim 18 , wherein the adhesive comprises optically variable flakes.

Assignments (5)
RELEASE OF SECURITY INTEREST AT REEL/FRAME 73189/0873 Recorded May 28, 2026
From: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
To: INERTIAL LABS, INC.; VIAVI SOLUTIONS INC.; VIAVI SOLUTIONS LICENSING LLC
Reel/Frame 075642/0381 →
SECURITY INTEREST Recorded Nov 14, 2025
From: VIAVI SOLUTIONS INC.; VIAVI SOLUTIONS LICENSING LLC; INERTIAL LABS, INC.
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS AGENT
Reel/Frame 073571/0137 →
SECURITY AGREEMENT Recorded Oct 21, 2025
From: INERTIAL LABS, INC.; VIAVI SOLUTIONS INC.; VIAVI SOLUTIONS LICENSING LLC
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 073189/0873 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 31, 2023
From: PHILLIPS, ROGER W.; MAYER, THOMAS; LAMAR, SCOTT; TAGUER, ELENA
To: JDS UNIPHASE CORPORATION
Reel/Frame 063801/0622 →
CHANGE OF NAME Recorded May 31, 2023
From: JDS UNIPHASE CORPORATION
To: VIAVI SOLUTIONS INC.
Reel/Frame 063805/0061 →
Continuity (13)
Continuation 17955454 · Sep 28, 2022
Continuation 16425532 · May 29, 2019
Division 14644556 · Mar 11, 2015
Division 13250480 · Sep 30, 2011
Continuation In Part 11738855 · Apr 23, 2007
Continuation In Part 11682059 · Mar 5, 2007
Continuation In Part 11682059 · Mar 5, 2007
Provisional Application 60861608 · Nov 29, 2006
Provisional Application 60832826 · Jul 24, 2006
Provisional Application 60747142 · May 12, 2006
Provisional Application 60744842 · Apr 14, 2006
Provisional Application 60779484 · Mar 6, 2006
Related Publication 20230305202A1 · Sep 28, 2023
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