IP Library › Granted Patent US 12,131,709
Granted Patent B2
US 12,131,709 · App. 18/003,902 · Granted Oct 29, 2024

Dynamic backlight control method, dynamic backlight module, and storage medium

Inventors: Yuqi Yang (Guangdong, CN); Jinlong Liu (Guangdong, CN); Jianlin Li (Guangdong, CN)
Assignee: HUIZHOU VISION NEW TECHNOLOGY CO., LTD.
G09G3/3413G09G2320/0626
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Quick Facts
Patent No.
US 12,131,709
App. No.
18/003,902
Granted
Oct 29, 2024
Kind
B2
Abstract

A dynamic backlight control method, a dynamic backlight module, and a storage medium are provided in the present application. A lamp bead of the dynamic backlight module includes a green chip and at least two blue chips. The dynamic backlight control method includes: receiving a source signal; and when the source signal is a pure blue signal, turning off the green chip, and driving more than two of the blue chips to output blue light.

Claims (55)

1. A dynamic backlight control method, wherein the dynamic backlight control method is applied to a dynamic backlight module, and a lamp bead of the dynamic backlight module comprises a green chip and at least three blue chips, and the dynamic backlight control method comprises:

receiving a source signal; and

turning off the green chip when the source signal is a pure blue signal, and driving more than two of the blue chips to output blue light;

wherein the step of turning off the green chip when the source signal is a pure blue signal, and driving more than two of the blue chips to output blue light comprises:

obtaining a first reception time of receiving the pure blue signal when the source signal is the pure blue signal, and determining a second driving number of the blue chips according to the first reception time, and the second driving number is more than two; and

turning off the green chip and driving a corresponding number of the blue chips to output the blue light according to the second driving number; and

wherein in a non-pure blue field, only one of the blue chips is to be driven, and in a pure blue field, a maximum gray scale reaches.

2. The dynamic backlight control method as claimed in claim 1 , wherein the lamp bead of the dynamic backlight module further comprises red phosphor, and the red phosphor comprises at least one of nitride, fluoride, or silicate.

3. The dynamic backlight control method as claimed in claim 1 , wherein the lamp bead of the dynamic backlight module comprises at least three of the blue chips;

correspondingly, the step of turning off the green chip when the source signal is the pure blue signal, and driving more than two of the blue chips to output the blue light comprises:

obtaining brightness requirement information according to the pure blue signal when the source signal is the pure blue signal, and determining a first driving number of the blue chips according to the brightness requirement information, and the first driving number is more than two; and

turning off the green chip and driving a corresponding number of the blue chips to output the blue light according to the first driving number.

4. The dynamic backlight control method as claimed in claim 1 , wherein after the step of receiving the source signal, the dynamic backlight control method further comprises:

determining one target chip from each blue chip when the source signal is a mixed color signal; and

driving the target chip to output the blue light and turning off other blue chips except the target chip.

5. The dynamic backlight control method as claimed in claim 4 , wherein the step of determining the target chip from each blue chip when the source signal is the mixed color signal comprises:

obtaining a cumulative use duration of each blue chip when the source signal is the mixed color signal, and determining the target chip from each blue chip according to the cumulative use duration of each blue chip.

6. The dynamic backlight control method as claimed in claim 5 , wherein the step of determining the target chip from each blue chip when the source signal is the mixed color signal comprises:

obtaining a second reception time of receiving the mixed color signal when the source signal is the mixed color signal, and determining the target chip from each blue chip according to the second reception time.

7. A dynamic backlight module, wherein a lamp bead of the dynamic backlight module comprises a green chip and at least three blue chips, and the dynamic backlight module further comprises a processor and a memory; the memory stores a computer program, and the computer program performs following steps when executed by the processor:

receiving a source signal; and

turning off the green chip when the source signal is a pure blue signal, and driving more than two of the blue chips to output blue light;

wherein the step of turning off the green chip when the source signal is a pure blue signal, and driving more than two of the blue chips to output blue light comprises:

obtaining a first reception time of receiving the pure blue signal when the source signal is the pure blue signal, and determining a second driving number of the blue chips according to the first reception time, and the second driving number is more than two; and

turning off the green chip and driving a corresponding number of the blue chips to output the blue light according to the second driving number; and

wherein in a non-pure blue field, only one of the blue chips is to be driven, and in a pure blue field, a maximum gray scale reaches.

8. The dynamic backlight module as claimed in claim 7 , wherein the lamp bead of the dynamic backlight module further comprises red phosphor, and the red phosphor comprises at least one of nitride, fluoride, or silicate.

9. The dynamic backlight module as claimed in claim 7 , wherein the lamp bead of the dynamic backlight module comprises at least three of the blue chips;

correspondingly, the step of turning off the green chip when the source signal is the pure blue signal, and driving more than two of the blue chips to output the blue light comprises:

obtaining brightness requirement information according to the pure blue signal when the source signal is the pure blue signal, and determining a first driving number of the blue chips according to the brightness requirement information, and the first driving number is more than two; and

turning off the green chip and driving a corresponding number of the blue chips to output the blue light according to the first driving number.

10. The dynamic backlight module as claimed in claim 7 , wherein after the step of receiving the source signal, the steps further comprise following steps:

determining one target chip from each blue chip when the source signal is a mixed color signal; and

driving the target chip to output the blue light and turning off other blue chips except the target chip.

11. The dynamic backlight module as claimed in claim 10 , wherein the step of determining the target chip from each blue chip when the source signal is the mixed color signal comprises:

obtaining a cumulative use duration of each blue chip when the source signal is the mixed color signal, and determining the target chip from each blue chip according to the cumulative use duration of each blue chip.

12. The dynamic backlight module as claimed in claim 11 , wherein the step of determining the target chip from each blue chip when the source signal is the mixed color signal comprises:

obtaining a second reception time of receiving the mixed color signal when the source signal is the mixed color signal, and determining the target chip from each blue chip according to the second reception time.

13. A storage medium, wherein the storage medium stores a computer program, and the computer program performs following steps when executed by a processor:

receiving a source signal; and

turning off a green chip when the source signal is a pure blue signal, and driving more than two blue chips to output blue light;

wherein the step of turning off the green chip when the source signal is a pure blue signal, and driving more than two of the blue chips to output blue light comprises:

obtaining a first reception time of receiving the pure blue signal when the source signal is the pure blue signal, and determining a second driving number of the blue chips according to the first reception time, and the second driving number is more than two; and

turning off the green chip and driving a corresponding number of the blue chips to output the blue light according to the second driving number; and

wherein in a non-pure blue field, only one of the blue chips is to be driven, and in a pure blue field, a maximum gray scale reaches.

14. The storage medium as claimed in claim 13 , wherein a lamp bead of a dynamic backlight module further comprises red phosphor, and the red phosphor comprises at least one of nitride, fluoride, or silicate.

15. The storage medium as claimed in claim 13 , wherein a lamp bead of a dynamic backlight module comprises at least three of blue chips,

correspondingly, the step of turning off the green chip when the source signal is the pure blue signal, and driving more than two of the blue chips to output the blue light comprises:

obtaining brightness requirement information according to the pure blue signal when the source signal is the pure blue signal, and determining a first driving number of the blue chips according to the brightness requirement information, and the first driving number is more than two; and

turning off the green chip and driving a corresponding number of the blue chips to output the blue light according to the first driving number.

16. The storage medium as claimed in claim 13 , wherein after the step of receiving the source signal, the steps further comprise following steps:

determining one target chip from each blue chip when the source signal is a mixed color signal; and

driving the target chip to output the blue light and turning off other blue chips except the target chip.

17. The storage medium as claimed in claim 16 , wherein the step of determining the target chip from each blue chip when the source signal is the mixed color signal comprises:

obtaining a cumulative use duration of each blue chip when the source signal is the mixed color signal, and determining the target chip from each blue chip according to the cumulative use duration of each blue chip.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2023
From: YANG, YUQI; LIU, JINLONG; LI, JIANLIN
To: HUIZHOU VISION NEW TECHNOLOGY CO., LTD.
Reel/Frame 062264/0464 →
Priority Claims (1)
CN 202010625653 · Jul 1, 2020 · national
Continuity (1)
Related Publication 20230317022A1 · Oct 5, 2023