IP Library › Granted Patent US 12,475,830
Granted Patent B2
US 12,475,830 · App. 18/966,125 · Granted Nov 18, 2025

Display apparatus, method of driving display panel using the same and electronic apparatus including the same

Inventors: Wonwoo Jang (Yongin-si, KR); Akihiro Takegama (Yongin-si, KR); Jongha Shin (Yongin-si, KR); Kyoungho Lim (Yongin-si, KR); Yooshin Chon (Yongin-si, KR)
Assignee: Samsung Display Co., Ltd.
G09G3/2092G09G2310/0275G09G2320/0233G09G2320/0257G09G2320/043G09G2320/0626
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12,475,830
App. No.
18/966,125
Granted
Nov 18, 2025
Kind
B2
Abstract

A display apparatus includes a display panel, a data driver and a driving controller. The display panel includes a plurality of display blocks. The data driver is configured to output data voltages to the display panel. The driving controller is configured to control the data driver. The driving controller is configured to calculate differences between loads of a previous frame and loads of a present frame for the display blocks for each colors, to determine whether an image is a static image or not based on the differences between the loads of the previous frame and the loads of the present frame for the display blocks for the each colors, and to reduce luminance of the image when the image is determined as the static image.

Claims (48)

1 . A display apparatus comprising:

a display panel including a plurality of display blocks;

a data driver configured to output data voltages to the display panel; and

a driving controller configured to control the data driver,

wherein the driving controller is configured to calculate differences between loads of a previous frame and loads of a present frame for the plurality of display blocks for each colors, to determine whether an image is a static image or not based on the differences between the loads of the previous frame and the loads of the present frame for the plurality of display blocks for the each colors, and to reduce luminance of the image when the image is determined as the static image,

wherein the driving controller is configured to determine a maximum value among absolute values of the differences between the loads of the previous frame and the loads of the present frame for the plurality of display blocks for the each colors, and

wherein the driving controller is configured to generate a sensitivity value by normalizing the maximum value to a ratio of a difference between a maximum load and a minimum load.

2 . The display apparatus of claim 1 , wherein, when a load of an X−1-th frame of a first color in a first display block is LOAD (X−1, R 1 ), a load of an X-th frame of the first color in the first display block is LOAD (X, R 1 ), a load of the X−1-th frame of the first color in a second display block is LOAD (X−1, R 2 ), a load of the X-th frame of the first color in the second display block is LOAD (X, R 2 ), a load of the X−1-th frame of the first color in an N-th display block is LOAD (X−1, RN), a load of the X-th frame of the first color in the N-th display block is LOAD (X, RN), a load of the X−1-th frame of a second color in the first display block is LOAD (X−1, G 1 ), a load of the X-th frame of the second color in the first display block is LOAD (X, G 1 ), a load of the X−1-th frame of the second color in the second display block is LOAD (X−1, G 2 ), a load of the X-th frame of the second color in the second display block is LOAD (X, G 2 ), a load of the X−1-th frame of the second color in the N-th display block is LOAD (X−1, GN), a load of the X-th frame of the second color in the N-th display block is LOAD (X, GN), a load of the X−1-th frame of a third color in the first display block is LOAD (X−1, B 1 ), a load of the X-th frame of the third color in the first display block is LOAD (X, B 1 ), a load of the X−1-th frame of the third color in the second display block is LOAD (X−1, B 2 ), a load of the X-th frame of the third color in the second display block is LOAD (X, B 2 ), a load of the X−1-th frame of the third color in the N-th display block is LOAD (X−1, BN), a load of the X-th frame of the third color in the N-th display block is LOAD (X, BN), the maximum value is MAX (|LOAD (X−1, R 1 )-LOAD (X, R 1 )|, |LOAD (X−1, R 2 )-LOAD (X, R 2 )|, . . . , |LOAD (X−1, RN)-LOAD (X, RN)|, |LOAD (X−1, G 1 )-LOAD (X, G 1 )|, |LOAD (X−1, G 2 )-LOAD (X, G 2 )|, . . . , |LOAD (X−1, GN)-LOAD (X, GN)|, |LOAD (X−1, B 1 )-LOAD (X, B 1 )|, |LOAD (X−1, B 2 )-LOAD (X, B 2 )|, . . . , |LOAD (X−1, BN)-LOAD (X, BN)|).

3 . The display apparatus of claim 1 , wherein, when the sensitivity value is Δ, an absolute value of a difference between a load of an X−1-th frame of a first color in a first display block and a load of an X-th frame of the first color in the first display block is D(R 1 ), an absolute value of a difference between a load of the X−1-th frame of the first color in a second display block and a load of the X-th frame of the first color in the second display block is D(R 2 ), an absolute value of a difference between a load of the X−1-th frame of the first color in an N-th display block and a load of the X-th frame of the first color in the N-th display block is D(RN), an absolute value of a difference between a load of the X−1-th frame of a second color in the first display block and a load of the X-th frame of the second color in the first display block is D(G 1 ), an absolute value of a difference between a load of the X−1-th frame of the second color in the second display block and a load of the X-th frame of the second color in the second display block is D(G 2 ), an absolute value of a difference between a load of the X−1-th frame of the second color in the N-th display block and a load of the X-th frame of the second color in the N-th display block is D(GN), an absolute value of a difference between a load of the X−1-th frame of a third color in the first display block and a load of the X-th frame of the third color in the first display block is D(B 1 ), an absolute value of a difference between a load of the X−1-th frame of the third color in the second display block and a load of the X-th frame of the third color in the second display block is D(B 2 ), an absolute value of a difference between a load of the X−1-th frame of the third color in the N-th display block and a load of the X-th frame of the third color in the N-th display block is D(BN), the maximum load is MAXLO, the minimum load is MINLO and a number of the plurality of display blocks of the display panel is N, is satisfied.

4 . The display apparatus of claim 1 , wherein, when the sensitivity value is less than a first threshold value, the driving controller is configured to determine data of the present frame as static image data.

5 . The display apparatus of claim 4 , wherein, when a maintaining time of the static image is greater than a second threshold value, the driving controller is configured to reduce the luminance of the image.

6 . The display apparatus of claim 1 , wherein the driving controller comprises:

a load calculator configured to calculate the loads of the previous frame and the loads of the present frame for the plurality of display blocks for the each colors;

a load storer configured to store the loads of the previous frame for the plurality of display blocks for the each colors; and

a static image determiner configured to receive the loads of the present frame for the plurality of display blocks for the each colors from the load calculator and the loads of the previous frame for the plurality of display blocks for the each colors from the load storer and to determine whether the image is the static image or not based on the differences between the loads of the previous frame for the plurality of display blocks for the each colors and the loads of the present frame for the plurality of display blocks for the each colors.

7 . The display apparatus of claim 6 , wherein the driving controller further comprises an image compensator configured to receive a flag signal indicating the image as the static image from the static image determiner and to reduce the luminance when the image is determined as the static image.

8 . A method of driving a display panel, the method comprising

calculating differences between loads of a previous frame and loads of a present frame for display blocks for each colors in the display panel;

determining whether an image is a static image or not based on the differences between the loads of the previous frame and the loads of the present frame for the plurality of display blocks for the each colors;

reducing luminance of the image when the image is determined as the static image to generate compensated image data; and generating data voltages based on the compensated image data and outputting the data voltages to the display panel,

wherein the determining whether the image is a static image or not comprises: determining a maximum value among absolute values of the differences between the loads of the previous frame and the loads of the present frame for the plurality of display blocks for the each colors, and

wherein the determining whether the image is a static image or not further comprises: generating a sensitivity value by normalizing the maximum value to a ratio of a difference between a maximum load and a minimum load.

9 . The method of claim 8 , wherein the determining whether the image is a static image or not further comprises: determining data of the present frame as static image data when the sensitivity value is less than a first threshold value.

10 . The method of claim 9 , wherein the reducing luminance of the image when the imaged is determined as the static image comprises:

reducing the luminance of the image when a maintaining time of the static image is greater than a second threshold value.

11 . A display apparatus comprising:

a display panel including a plurality of display blocks; a data driver configured to output data voltages to the display panel; and

a driving controller configured to control the data driver,

wherein the driving controller is configured to calculate differences between currents or luminances of a previous frame and currents or luminances of a present frame for the plurality of display blocks for each colors, to determine whether an image is a static image or not based on the differences between the currents or luminances of the previous frame and the currents or luminances of the present frame for the plurality of display blocks for the each colors, and to reduce luminance of the image when the image is determined as the static image,

wherein the driving controller is configured to determine a maximum value among absolute values of the differences between the currents or luminances of the previous frame and the currents or luminances of the present frame for the plurality of display blocks for the each colors, and

wherein the driving controller is configured to generate a sensitivity value by normalizing the maximum value to a ratio of a difference between a maximum current or luminance and a minimum current or luminance.

12 . The display apparatus of claim 11 , wherein, when the sensitivity value is less than a first threshold value, the driving controller is configured to determine data of the present frame as static image data.

13 . The display apparatus of claim 11 , wherein the driving controller comprises:

a current calculator configured to calculate the currents of the previous frame and the currents of the present frame for the plurality of display blocks for the each colors;

a current storer configured to store the currents of the previous frame for the plurality of display blocks for the each colors; and

a static image determiner configured to receive the currents of the present frame for the plurality of display blocks for the each colors from the current calculator and the currents of the previous frame for the plurality of display blocks for the each colors from the current storer and to determine the image as the static image based on the differences between the currents of the previous frame for the plurality of display blocks for the each colors and the currents of the present frame for the plurality of display blocks for the each colors.

14 . The display apparatus of claim 11 , wherein the driving controller comprises:

a luminance calculator configured to calculate the luminances of the previous frame and the luminances of the present frame for the plurality of display blocks for the each colors;

a luminance storer configured to store the luminances of the previous frame for the plurality of display blocks for the each colors; and

a static image determiner configured to receive the luminances of the present frame for the plurality of display blocks for the each colors from the luminance calculator and the luminances of the previous frame for the plurality of display blocks for the each colors from the luminance storer and to determine the image as the static image based on the differences between the luminances of the previous frame for the plurality of display blocks for the each colors and the luminances of the present frame for the plurality of display blocks for the each colors.

15 . An electronic apparatus comprising:

a display panel including a plurality of display blocks;

a data driver configured to output data voltages to the display panel;

a driving controller configured to control the data driver; and

a processor configured to output input image data and an input control signal to the driving controller,

wherein the driving controller is configured to calculate differences between loads of a previous frame and loads of a present frame for the plurality of display blocks for each colors, to determine whether an image is a static image or not based on the differences between the loads of the previous frame and the loads of the present frame for the plurality of display blocks for the each colors, and to reduce luminance of the image when the image is determined as the static image,

wherein the driving controller is configured to determine a maximum value among absolute values of the differences between the loads of the previous frame and the loads of the present frame for the plurality of display blocks for the each colors, and

wherein the driving controller is configured to generate a sensitivity value by normalizing the maximum value to a ratio of a difference between a maximum load and a minimum load.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 2, 2024
From: JANG, WONWOO; TAKEGAMA, AKIHIRO; SHIN, JONGHA; LIM, KYOUNGHO; CHON, YOOSHIN
To: SAMSUNG DISPLAY CO., LTD.
Reel/Frame 069457/0316 →
Priority Claims (1)
KR 10-2024-0029274 · Feb 28, 2024 · national
Continuity (1)
Related Publication 20250273118A1 · Aug 28, 2025
References Cited (21)
US 8599192B2 · Kim · 2013 [cited by examiner]
US 11741889B2 · Lee · 2023 [cited by examiner]
US 11817029B2 · Pyun et al. · 2023 [cited by applicant]
US 20050232476A1 · Hayakawa · 2005 [cited by examiner]
US 20070019878A1 · Oura · 2007 [cited by examiner]
US 20090109290A1 · Ye · 2009 [cited by examiner]
US 20130063428A1 · Choi · 2013 [cited by examiner]
US 20140063032A1 · Chen · 2014 [cited by examiner]
US 20150371600A1 · Zhang · 2015 [cited by examiner]
US 20170078706A1 · Van Der Vleuten · 2017 [cited by examiner]
US 20170345360A1 · Lee · 2017 [cited by examiner]
US 20170345378A1 · Ryu · 2017 [cited by examiner]
US 20180082661A1 · Kang · 2018 [cited by examiner]
US 20210035488A1 · Seo · 2021 [cited by examiner]
US 20210110774A1 · Cho · 2021 [cited by examiner]
US 20210327332A1 · Choi · 2021 [cited by examiner]
US 20220036856A1 · Chen · 2022 [cited by examiner]
US 20230245615A1 · Lee · 2023 [cited by examiner]
US 20240013692A1 · Ryu · 2024 [cited by examiner]
US 20250061864A1 · Dambach · 2025 [cited by examiner]
KR 1020230017406A · 2023 [cited by applicant]