IP Library › Granted Patent US 12,495,118
Granted Patent B2
US 12,495,118 · App. 18/261,042 · Granted Dec 9, 2025

Halftone screen tiles

Inventors: Tal Frank (Ness Ziona, IL); Orel Bat Mor (Ness Ziona, IL); Shani Gat (Ness Ziona, IL); Gideon Amir (Ness Ziona, IL); Itamar Roth (Ness Ziona, IL); Ram Dagan (Ness Ziona, IL)
Assignee: HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.
H04N1/4055H04N1/32256
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Quick Facts
Patent No.
US 12,495,118
App. No.
18/261,042
Granted
Dec 9, 2025
Kind
B2
Abstract

In an example, a method includes obtaining, by at least one processor, a first halftone screen tile having a first halftone pattern. In some examples, the method further comprises obtaining a second halftone screen tile having a second halftone pattern. The method may include determining a halftone screen having a predetermined spatial arrangement of the first and second halftone screen tiles, wherein the relative placement of the first and second halftone screen tiles in the predetermined spatial arrangement provides a signature for the halftone screen which when applied to image data provides a printed output in which the signature is discernible.

Claims (18)

1 . A method comprising, by at least one processor:

obtaining a first halftone screen tile having a first halftone pattern, wherein the first halftone pattern includes amplitude modulated line screens comprising a plurality of dot centers around which elliptical dots are formed according to a matrix of threshold values, the elliptical dots having a first orientation such that an axis of the elliptical dots are at an angle of α relative to a reference direction;

obtaining a second halftone screen tile having a second halftone pattern, wherein the second halftone pattern includes amplitude modulated line screens comprising a plurality of dot centers around which elliptical dots are formed according to a matrix of threshold values, the elliptical dots having a second orientation such that an axis of the elliptical dots are at an angle β relative to the reference direction, wherein β=(90°−α); and

determining a halftone screen having a predetermined spatial arrangement of the first and second halftone screen tiles, wherein the relative placement of the first and second halftone screen tiles in the predetermined spatial arrangement provides a signature for the halftone screen which when applied to image data provides a printed output in which the signature is discernible,

wherein the angle of the axis of elliptical dots determines the angle of the lines in the amplitude modulated line screen and α and β have values causing the lines in the amplitude modulated line screen of the first halftone screen tile and the lines in the amplitude modulated line screen of the second halftone screen tile to form continuous lines across adjacent halftone screen tiles, and

wherein α is 37° and β is 53°.

2 . The method as claimed in claim 1 wherein each value of a matrix of halftone threshold values, is determined based on its distance from a dot center such that, when the halftone screen is applied to image data, higher grey level values in an image portion result in print instruction to print larger continuous dots of print agent.

3 . The method as claimed in claim 2 wherein each matrix comprises lower halftone threshold values near the dot center.

4 . An apparatus comprising processing circuitry, the processing circuitry configured to:

obtain a first halftone screen tile having a first halftone pattern, wherein the first halftone pattern includes amplitude modulated line screens comprising a plurality of dot centers around which elliptical dots are formed according to a matrix of threshold values, the elliptical dots having a first orientation such that an axis of the elliptical dots are at an angle of α relative to a reference direction;

obtain a second halftone screen tile having a second halftone pattern, wherein the second halftone pattern includes amplitude modulated line screens comprising a plurality of dot centers around which elliptical dots are formed according to a matrix of threshold values, the elliptical dots having a second orientation such that an axis of the elliptical dots are at an angle β relative to the reference direction, wherein β=(90°−α); and

determine a halftone screen having a predetermined spatial arrangement of the first and second halftone screen tiles, wherein the relative placement of the first and second halftone screen tiles in the predetermined spatial arrangement provides a signature for the halftone screen which when applied to image data provides a printed output in which the signature is discernible,

wherein the angle of the axis of elliptical dots determines the angle of the lines in the amplitude modulated line screen and α and β have values causing the lines in the amplitude modulated line screen of the first halftone screen tile and the lines in the amplitude modulated line screen of the second halftone screen tile to form continuous lines across adjacent halftone screen tiles, and

wherein α is 37° and β is 53°.

5 . The apparatus as claimed in claim 4 , wherein the processor is further configured to:

apply the halftone screen to an image to be printed to generate print instructions such that the elliptical dot halftone patterns are discernible therein to provide a signature for the image when printed.

6 . The apparatus as claimed in claim 5 , wherein the processor is further configured to:

execute the print instructions to print the image after the halftone screen is applied thereto.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 11, 2023
From: FRANK, TAL; BAT MOR, OREL; GAT, SHANI; AMIR, GIDEON; ROTH, ITAMAR; DAGAN, RAM
To: HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.
Reel/Frame 064214/0174 →
Continuity (1)
Related Publication 20240064260A1 · Feb 22, 2024
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