IP Library Granted Patent US 12,614,049
Granted Patent B2
US 12,614,049 · App. 18/962,532 · Granted Apr 28, 2026

Display medium and code reading method

Inventors: Shinichi Kikuchi (Kariya-city, JP); Tatsuya Okabe (Kariya-city, JP); Mitsuo Okumura (Kariya-city, JP)
Assignee: DENSO CORPORATION
G06K19/0614G06K19/06037
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Quick Facts
Patent No.
US 12,614,049
App. No.
18/962,532
Granted
Apr 28, 2026
Kind
B2
Abstract

An information code, which is displayed on a display medium, is generated by combining a first code and a second code. The information code includes: a light color cell; a dark color cell; a semi-light color cell having a color closer to the light color cell, the semi-light color cell being identified same as the light color cell when reading the first code and being identified as the dark color cell when reading the second code; and a semi-dark color cell having a color closer to the dark color cell, the semi-dark color cell being identified same as the dark color cell when reading the first code and being identified as the light color cell when reading the second code. The second code is enlarged relative to the first code, and one cell in the second code is combined across two or more cells of the first code.

Claims (40)

1 . A display medium comprising an information code, wherein

the information code is displayed on the display medium,

the information code is generated by combining a first code and a second code,

in each of the first code and the second code, information is recorded by multiple cells arranged in a two-dimensional array,

the information code includes:

a light color cell;

a dark color cell;

a semi-light color cell having a color closer to the light color cell than to the dark color cell, the semi-light color cell being identified as the same as the light color cell in a reading of the first code and being identified as the dark color cell in a reading of the second code; and

a semi-dark color cell having a color closer to the dark color cell than to the light color cell, the semi-dark color cell being identified as the same as the dark color cell in the reading of the first code and being identified as the light color cell in the reading of the second code, and

the second code is enlarged relative to the first code, and one of the multiple cells in the second code is combined across two or more of the multiple cells in the first code.

2 . The display medium according to claim 1 , wherein

the second code is enlarged by an integral multiple relative to the first code and then combined with the first code.

3 . The display medium according to claim 1 , wherein

the second code has a smaller size than the first code and is combined at a center of the first code.

4 . A display medium comprising an information code, wherein

the information code is displayed on the display medium,

the information code is generated by combining a first code and a second code,

in each of the first code and the second code, information is recorded by multiple cells arranged in a two-dimensional array,

the information code includes:

a light color cell;

a dark color cell;

a semi-light color cell having a color closer to the light color cell than to the dark color cell, the semi-light color cell being identified as the same as the light color cell in a reading of the first code and being identified as the dark color cell in a reading of the second code; and

a semi-dark color cell having a color closer to the dark color cell than to the light color cell, the semi-dark color cell being identified as the same as the dark color cell in the reading of the first code and being identified as the light color cell in the reading of the second code, and

the second code has a smaller size than the first code and is combined at a center of the first code.

5 . The display medium according to claim 1 , wherein

the second code is combined with the first code by avoiding a specific region of the first code.

6 . A code reading method to be executed by at least one processor, the code reading method reading a second code from an information code, the information code being generated by combining a first code with the second code, in each of the first code and the second code, information being recorded by multiple cells arranged in a two-dimensional array, the code reading method comprising:

determining a semi-light color cell, which has a color closer to a light color cell than to a dark color cell, as the dark color cell;

determining a semi-dark color cell, which has a color closer to the dark color cell than to the light color cell, as the light color cell; and

reading the second code by identifying two or more cells in the first code as one cell.

7 . A code reading method to be executed by at least one processor, the code reading method reading a second code from an information code, the information code being generated by combining a first code with the second code, in each of the first code and the second code, information being recorded by multiple cells arranged in a two-dimensional array, the code reading method comprising:

specifying a formation range of the second code, which is combined at a center of the first code;

determining a semi-light color cell, which has a color closer to a light color cell than to a dark color cell among the cells in the formation range, as the dark color cell; and

determining a semi-dark color cell, which has a color closer to the dark color cell than to the light color cell among the cells in the formation range, as the light color cell.

8 . The code reading method according to claim 7 , wherein

the specifying of the formation range includes

generating a first converted image by converting the dark color cell in the information code into a same color as the light color cell,

generating a second converted image by converting the semi-light color cell and the semi-dark color cell in the first converted image into a same color as the dark color cell,

generating an inverted image by inverting lightness and darkness of color in the second converted image, and

specifying the formation range based on a light color range in the inverted image.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 2, 2024
From: OKUMURA, MITSUO; KIKUCHI, SHINICHI; OKABE, TATSUYA
To: DENSO CORPORATION
Reel/Frame 069454/0251 →
Priority Claims (1)
JP 2022-087899 · May 30, 2022 · national
Continuity (2)
Continuation PCTJP2023018101 · May 15, 2023
Related Publication 20250094753A1 · Mar 20, 2025
References Cited (2)
US 11755867B2 · Yoshida · 2023 [cited by examiner]
US 20230094590A1 · Okabe · 2023 [cited by applicant]