IP Library Granted Patent US 11,354,767
Granted Patent B2
US 11,354,767 · App. 16/785,351 · Granted Jun 7, 2022

Signal encoding for physical objects including dark ink

Inventors: Alastair M. Reed (Lake Oswego, OR); Jay Sperry (Wilmington, NC); Kristyn R. Falkenstern (Portland, OR)
Assignee: Digimarc Corporation
G06T1/005C09B29/00C09B57/00C09D11/037H04N1/32309H04N1/32352G06T2201/0065
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Quick Facts
Patent No.
US 11,354,767
App. No.
16/785,351
Granted
Jun 7, 2022
Kind
B2
Abstract

This disclosure relates to advanced image signal processing technology including encoded signals and digital watermarking. One implementation is directed a printed object comprising: a substrate comprising a first area; a first colored ink or design printed within the first area, the first colored ink or design comprising a spectral reflectivity of less than or equal to 20% at or around 660 nm; a colored ink mixture printed over the first colored ink or design at a first plurality of spatial locations within the first area, the colored ink mixture printed such that the first area comprises a second plurality of spatial locations without the colored ink mixture, the colored ink mixture comprising opaque white ink and a first colorant, wherein the color ink mixture comprises a spectral reflectivity greater than the first colored ink or design at or around 660 nm, and wherein colored ink mixture comprises a spectral reflectivity less than the first colored ink or design in the range of 495 nm-570 nm; in which the first plurality of spatial locations is arranged in a pattern conveying an encoded signal, and in which the first colored ink or design and the colored ink mixture comprise a spectral reflectivity difference at or around 660 nm in a difference range of 8%-30%. Of course, other objects, methods, packages, labels, containers, systems and apparatus are described in this patent document.

Claims (32)

1. A label, hang tag or product packaging printed comprising:

a substrate comprising a first area;

a first colored ink or design printed within the first area, the first colored ink or design comprising a spectral reflectivity of less than or equal to 20% at or around 660 nm;

a colored ink mixture printed over the first colored ink or design at a first plurality of spatial locations within the first area, the colored ink mixture printed such that the first area comprises a second plurality of spatial locations without the colored ink mixture, the colored ink mixture comprising opaque white ink and a first colorant, wherein the colored ink mixture comprises a spectral reflectivity greater than the first colored ink or design at or around 660 nm, and wherein colored ink mixture comprises a spectral reflectivity less than the first colored ink or design in the range of 495 nm-570 nm;

in which the first plurality of spatial locations is arranged in a pattern conveying an encoded signal, and

in which the first colored ink or design and the colored ink mixture comprise a spectral reflectivity difference at or around 660 nm in a difference range of 8%-30%.

2. The label, hang tag or product packaging of claim 1 in which the colored ink mixture comprises opaque white ink and a plurality of colorants including the first colorant.

3. The label, hang tag or product packaging of claim 2 , in which the plurality of colorants comprises Lithol Rubine, and the first colorant comprises Carbazole Violet.

4. The label, hang tag or product packaging of claim 3 in which the colored ink mixture comprises by weight or volume 30%-42% Lithol Rubine, 8%-22% Carbazole Violet and 44%-56% Opaque White.

5. The label, hang tag or product packaging of claim 4 in which the first colored ink or design comprises a color selected from the color group consisting of: PANTONE 357 C, PANTONE 2945, PANTONE Violet and CMY.

6. The label, hang tag or product packaging of claim 1 in which the first colorant comprises Lithol Rubine.

7. The label, hang tag or product packaging of claim 6 in which the volume of weight ratio for the colored ink mixture comprises 24%-32% Lithol Rubine and 68%-76% opaque white.

8. The label, hang tag or product packaging of claim 6 in which the volume or weight ratio for the colored ink mixture comprises 78% opaque white and 22% Lithol Rubine.

9. The label, hang tag or product packaging of claim 1 in which the difference range comprises 12%-25%.

10. The label, hang tag or product packaging of claim 1 in which the first colored ink or design and the colored ink mixture comprise a spectral reflectivity difference of 12%-30% at 670 nm±10 nm.

11. The label, hang tag or product packaging of claim 1 in which the encoded signal comprises a sparse mark and carries a plural bit identifier payload, in which the sparse mark is detectable from optically captured imagery represented at least a part of the label, hang tag or product packaging.

12. The label, hang tag or product packaging of claim 1 in which at or around 660 nm comprises a spectral range of 620 nm-700 nm.

13. A printed object comprising:

a substrate comprising a first area;

a first colored ink or design printed within the first area, the first colored ink or design comprising a spectral reflectivity of less than or equal to 20% at or around 660 nm;

a colored ink mixture printed over the first colored ink or design at a first plurality of spatial locations within the first area, the colored ink mixture printed such that the first area comprises a second plurality of spatial locations without the colored ink mixture, the colored ink mixture comprising opaque white ink and a first colorant, wherein the colored ink mixture comprises a spectral reflectivity greater than the first colored ink or design at or around 660 nm, and wherein colored ink mixture comprises a spectral reflectivity less than the first colored ink or design in the range of 495 nm-570 nm;

in which the first plurality of spatial locations is arranged in a pattern conveying an encoded signal, and

in which the first colored ink or design and the colored ink mixture comprise a spectral reflectivity difference at or around 660 nm in a difference range of 8%-30%, in which the colored ink mixture comprises by weight or volume 36% Lithol Rubine, 14% Carbazole Violet and 50% Opaque White.

14. An image processing system comprising:

a scanner for optically captured imagery representing a printed object, the scanner comprising a peak illumination at or around 660 nm, the printed object comprising a substrate comprising a first area, a first colored ink or design printed within the first area, the first colored ink or design comprising a spectral reflectivity of less than or equal to 20% at or around 660 nm, a colored ink mixture printed over the first colored ink or design at a first plurality of spatial locations within the first area, the colored ink mixture printed such that the first area comprises a second plurality of spatial locations without the colored ink mixture, the colored ink mixture comprising opaque white ink and a first colorant, wherein the color ink mixture comprises a spectral reflectivity greater than the first colored ink or design at or around 660 nm, and wherein colored ink mixture comprises a spectral reflectivity less than the first colored ink or design in the range of 495 nm-570 nm, in which the first plurality of spatial locations is arranged in a pattern conveying an encoded signal, and in which the first colored ink or design and the colored ink mixture comprise a spectral reflectivity difference at or around 660 nm in a difference range of 8%-30%;

a multi-core processor configured for i) processing the captured imagery to decode a plural-bit payload from the encoded signal; and ii) controlling outputting of the plural-bit payload.

15. The image processing system of claim 14 , in which the colored ink mixture comprises Lithol Rubine, and the first colorant comprises Carbazole Violet.

16. The image processing system of claim 15 in which the colored ink mixture comprises by weight or volume 30%-42% Lithol Rubine, 8%-22% Carbazole Violet and 44%-56% Opaque White.

17. The image processing system of claim 16 in which the colored ink mixture comprises by weight or volume 36% Lithol Rubine, 14% Carbazole Violet and 50% Opaque White.

18. The image processing system of claim 16 in which the first colored ink or design comprises a color selected from the color group consisting of: PANTONE 357 C, PANTONE 2945, PANTONE Violet, and CMY.

19. The image processing system of claim 14 in which the first colored ink or design and the colored ink mixture comprise a spectral reflectivity difference of 12%-30% at 670 nm±10 nm.

20. The image processing system of claim 14 in which the encoded signal comprises a sparse mark and carries a plural bit identifier payload.

Assignments (3)
ARTICLES OF CONVERSION Recorded Jun 19, 2026
From: DIGIMARC CORPORATION
To: DIGIMARC LLC
Reel/Frame 075863/0211 →
ARTICLES OF AMENDMENT OFTHE ARTICLES OF ORGANIZATION OF DIGIMARC LLC Recorded Jun 19, 2026
From: DIGIMARC LLC
To: DMRC LLC
Reel/Frame 075863/0266 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 4, 2020
From: REED, ALASTAIR M.; SPERRY, JAY; FALKENSTERN, KRISTYN R.
To: DIGIMARC CORPORATION
Reel/Frame 052561/0389 →
Continuity (4)
Continuation 16226072 · Dec 19, 2018
Continuation In Part 16119410 · Aug 31, 2018
Provisional Application 62713955 · Aug 2, 2018
Related Publication 20200286200A1 · Sep 10, 2020
Cited By (1)
US 12,333,624