IP Library Granted Patent US 11,010,857
Granted Patent B2
US 11,010,857 · App. 16/586,063 · Granted May 18, 2021

Signal encoding based on spectral requirements

Inventors: Alastair M. Reed (Lake Oswego, OR); Kristyn R. Falkenstern (Portland, OR)
Assignee: Digimarc Corporation
G06T1/0028B41M3/10B41M3/14H04N1/3232G06T2201/0052G06T2201/0065
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Quick Facts
Patent No.
US 11,010,857
App. No.
16/586,063
Granted
May 18, 2021
Kind
B2
Abstract

This disclosure relates to advanced image signal processing technology including encoded signals and digital watermarking. A printed object is provided including: a white substrate or printed white background comprising a first area; an ink mixture printed at a first plurality of spatial locations within the first area, the ink mixture printed such that the first area comprises a second plurality of spatial locations without the ink mixture, in which the first plurality of spatial locations is arranged in a 2-dimensional pattern conveying an encoded signal. The white substrate or white background and the ink mixture comprise a spectral reflectivity difference at or around 660 nm in a difference range of 8%-30%. Of course, other implementations, methods, packages, systems and apparatus are described in this patent document.

Claims (39)

1. A printed object comprising:

a white substrate or printed white background comprising a first area;

an ink mixture printed at a first plurality of spatial locations within the first area, the ink mixture printed such that the first area comprises a second plurality of spatial locations without the ink mixture, the ink mixture comprising extender white and ink including a Phthalocyanine green pigment, the ink mixture comprising a volume or weight ratio of 97.5% to 99.75% white extender and 2.5% to 0.25% ink;

in which the first plurality of spatial locations is arranged in a 2-dimensional pattern conveying an encoded signal, the encoded signal comprising a payload component and a synchronization component, in which the encoded signal retains payload component elements and synchronization component elements that are compatible at the same spatial coordinates of the 2-dimensional pattern, and

in which the white substrate or white background and the ink mixture comprise a spectral reflectivity difference at or around 660 nm in a difference range of 8% to 30%.

2. The printed object of claim 1 in which the volume or weight ratio comprises 99.2% to 99.6% white extender and 0.8% to 0.4% ink.

3. The printed object of claim 1 in which the volume or weight ratio comprises 99.5% white extender and 0.5% ink.

4. The printed object of claim 2 in which the difference range comprises 12% to 25%, and the white extender comprises Pantone® Extender.

5. The printed object of claim 4 in which the ink comprises Green 7.

6. The printed object of claim 1 in which the white substrate or white background and the ink mixture comprise a spectral reflectivity difference of 12% or higher in a difference range of 12% to 30% at 660 nm or at 670 nm.

7. A printed product package or printed product label comprising:

a white substrate or printed white background comprising a first area;

an ink mixture printed at a first plurality of spatial locations within the first area, the ink mixture printed such that the first area comprises a second plurality of spatial locations without the ink mixture, the ink mixture comprising extender white and Green 7 ink, the ink mixture comprising a volume or weight ratio of 97.5% to 99.75% white extender and 2.5% to 0.25% Green 7 ink;

in which the first plurality of spatial locations is arranged in a pattern conveying an encoded signal, the encoded signal comprising a payload component and a synchronization component, in which the encoded signal retains payload component elements and synchronization component elements that are compatible at the same spatial coordinates of the 2-dimensional pattern, and

in which the white substrate or white background and the ink mixture comprise a spectral reflectivity difference at or around 660 nm in a difference range of 8% to 30%.

8. The printed product package or printed product label of claim 7 in which the volume or weight ratio comprises 99.2% to 99.6% white extender and 0.8% to 0.4% Green 7 ink.

9. The printed product package or printed product label of claim 8 in which the volume or weight ratio comprises 99.5% white extender and 0.5% Green 7 ink.

10. The printed product package or printed product label of claim 8 in which the difference range comprises 12% to 25%, and the white extender comprises Pantone® Extender.

11. The printed product package or printed product label of claim 10 in which the white substrate or white background and the ink mixture comprise a spectral reflectivity difference of 12% or higher in a difference range of 12% to 30% at 660 nm or at 670 nm.

12. A printed object comprising:

a substrate comprising a first area;

a first ink printed within the first area, the first ink comprising a spectral reflectivity of equal to or less than 10% at or around 660 nm;

an ink mixture printed over the first ink at a first plurality of spatial locations within the first area, the ink mixture printed such that the first area comprises a second plurality of spatial locations without the ink mixture, the ink mixture comprising opaque white ink and Pantone® Rubine Red ink, the ink mixture comprising a volume or weight ratio of 68%-76% opaque white ink and 24%-32% Pantone® Rubine Red;

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

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

13. The printed object of claim 12 in which the volume or weight ratio comprises 78% opaque white ink and 22% Pantone® Rubine Red.

14. The printed object of claim 12 in which the difference range comprises 12%-25%.

15. The printed object of claim 12 in which the first ink and the ink mixture comprise a spectral reflectivity difference of 12% or higher in a difference range of 12% to 30% at 660 nm or at 670 nm.

16. The printed object of claim 15 in which the encoded signal comprises a sparse mark and carries a plural bit identifier payload.

17. The printed object of claim 15 in which at or around 660 nm comprises a range of 650 nm 700 nm.

18. An image processing method comprising:

obtaining optically captured imagery representing a printed object, the imagery captured by a scanner have a peak illumination at or around 660 nm, the printed object comprising: a substrate or background comprising a first area, a first ink printed within the first area, the first ink comprising a spectral reflectivity of equal to or less than 10% at or around 660 nm, an ink mixture printed over the first ink at a first plurality of spatial locations within the first area, the ink mixture printed such that the first area comprises a second plurality of spatial locations without the ink mixture, the ink mixture comprising opaque white ink and Pantone® Rubine Red ink, the ink mixture comprising a volume or weight ratio of 68%-76% opaque white ink and 24%-32% Pantone® Rubine Red, in which the first plurality of spatial locations is arranged in a pattern conveying an encoded signal, and in which the first ink and the ink mixture comprise a spectral reflectivity difference at or around 660 nm in a difference range of 8%-30%;

processing the captured imagery to decode the plural-bit payload from the encoded signal;

outputting the plural-bit payload.

19. The image processing method of claim 18 in which the volume or weight ratio comprises 78% opaque white ink and 22% Pantone® Rubine Red.

20. The image processing method of claim 18 in which the difference range comprises 12%-25%.

21. The image processing method of claim 18 in which the first ink and the ink mixture comprise a spectral reflectivity difference of 12% or higher in a difference range of 12% to 30% at 660 nm or at 670 nm.

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

23. The image processing method of claim 20 in which at or around 660 nm comprises a range of 650 nm 700 nm.

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 Sep 27, 2019
From: REED, ALASTAIR M.; FALKENSTERN, KRISTYN R.
To: DIGIMARC CORPORATION
Reel/Frame 050526/0765 →
Continuity (10)
Continuation 16119410 · Aug 31, 2018
Continuation In Part 15851143 · Dec 21, 2017
Continuation In Part 15418364 · Jan 27, 2017
Continuation In Part 15261005 · Sep 9, 2016
Provisional Application 62713955 · Aug 2, 2018
Provisional Application 62438886 · Dec 23, 2016
Provisional Application 62430297 · Dec 5, 2016
Provisional Application 62377419 · Aug 19, 2016
Provisional Application 62375418 · Aug 15, 2016
Related Publication 20200134775A1 · Apr 30, 2020
Cited By (1)
US 12,333,624