IP Library Granted Patent US 8,228,268
Granted Patent B2
US 8,228,268 · App. 12/595,246 · Granted Jul 24, 2012

Display device, method of driving display device, and computer program

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Quick Facts
Patent No.
US 8,228,268
App. No.
12/595,246
Granted
Jul 24, 2012
Kind
B2
Abstract

There is provided a display device including a display unit having pixels, each of which includes a luminescence element for individually emitting light depending on a current amount and a pixel circuit for controlling a current applied to the luminescence element according to a picture signal, scan lines which supply a selection signal for selecting the pixels to emit light to the pixels in a predetermined scanning cycle, and data lines which supply the picture signal to the pixels, the pixels, the scan lines, and the data lines arranged in a matrix pattern, the display device including: a luminescence amount detector for inputting a picture signal with a linear characteristic to detect a luminescence amount from the picture signal; a luminescence time calculator for calculating a luminescence time for the luminescence element based on the luminescence amount detected by the luminescence amount detector; a luminescence time recorder for recording the calculated luminescence time; a luminance acquirer for acquiring luminance information of the luminescence element by use of the luminescence time recorded in the luminescence time recorder; a coefficient calculator for calculating a coefficient by which the picture signal is multiplied, based on the luminance information acquired by the luminance acquirer; and a coefficient multiplier for multiplying the picture signal by the coefficient calculated by the coefficient calculator.

Claims (36)

1. A display device including a display unit having pixels, each of which includes a luminescence element for individually emitting light depending on a current amount and a pixel circuit for controlling a current applied to the luminescence element according to a picture signal, scan lines which supply a selection signal for selecting the pixels to emit light to the pixels in a predetermined scanning cycle, and data lines which supply the picture signal to the pixels, the pixels, the scan lines, and the data lines arranged in a matrix pattern, the display device comprising:

a luminescence amount detector for inputting a picture signal with a linear characteristic to detect a luminescence amount from the picture signal;

a luminescence time calculator for calculating a luminescence time for the luminescence element based on the luminescence amount detected by the luminescence amount detector;

a luminescence time recorder for recording the calculated luminescence time;

a luminance acquirer for acquiring luminance information of the luminescence element by use of the luminescence time recorded in the luminescence time recorder;

a coefficient calculator for calculating a coefficient by which the picture signal is multiplied, based on the luminance information acquired by the luminance acquirer; and

a coefficient multiplier for multiplying the picture signal by the coefficient calculated by the coefficient calculator;

wherein the coefficient calculator calculates a coefficient for adjusting, to luminance of a colour at lowest luminance, luminance of other colours, as a result of acquiring the luminance information by the luminance acquirer.

2. The display device according to claim 1 , further comprising a linear converter for converting a picture signal with a gamma characteristic into the picture signal with the linear characteristic.

3. The display device according to claim 1 , further comprising a gamma converter for converting an output signal with a linear characteristic from the coefficient multiplier to be with a gamma characteristic.

4. The display device according to claim 1 ,

wherein the luminescence amount detector detects luminescence amounts for a plurality of areas on the screen, and

wherein the display device further comprises a signal level calculator for adjusting a luminescence amount adapting to an area with most lowered luminance.

5. The display device according to claim 4 , wherein, in a case of detecting a luminescence amount, the luminescence amount detector moves an area up and down for the plurality of areas on the screen to detect a luminescence amount.

6. A method of driving a display device including a display unit having pixels, each of which includes a luminescence element for individually emitting light depending on a current amount and a pixel circuit for controlling a current applied to the luminescence element according to a picture signal, scan lines which supply a selection signal for selecting the pixels to emit light to the pixels in a predetermined scanning cycle, and data lines which supply the picture signal to the pixels, the pixels, the scan lines, and the data lines arranged in a matrix pattern, the method of driving the display device, comprising:

a luminescence amount detecting step of inputting a picture signal with a linear characteristic to detect a luminescence amount from the picture signal;

a luminescence time calculating step of calculating a luminescence time for the luminescence element based on the luminescence amount detected in the luminescence amount detecting step;

a luminescence time recording step of recording the calculated luminescence time;

a luminance acquiring step of acquiring luminance information of the luminescence element by use of the luminescence time recorded in the luminescence time recording step;

a coefficient calculating step of calculating a coefficient by which the picture signal is multiplied, based on the luminance information acquired in the luminance acquiring step; and

a coefficient multiplying step of multiplying the picture signal by the coefficient calculated in the coefficient calculating step;

wherein the coefficient calculating step calculates a coefficient for adjusting, to luminance of a colour at lowest luminance, luminance of other colours, as a result of acquiring the luminance information in the luminance acquiring step.

7. The method of driving the display device, according to claim 6 , further comprising a linear converting step of converting a picture signal with a gamma characteristic into the picture signal with the linear characteristic.

8. The method of driving the display device, according to claim 6 , further comprising the step of converting an output signal with a linear characteristic in the coefficient multiplying step to be with a gamma characteristic.

9. The method of driving the display device, according to claim 6 ,

wherein the luminescence amount detecting step detects luminescence amounts for a plurality of areas on the screen, and

wherein the method of driving the display device further comprises a signal level calculating step of adjusting a luminescence amount adapting to an area with most lowered luminance.

10. The method of driving the display device, according to claim 9 , wherein, in a case of detecting a luminescence amount, the luminescence amount detecting step moves an area up and down for the plurality of regions on the screen to detect a luminescence amount.

11. A non-transitory computer readable medium storing a computer program for causing a computer to execute control over a display device including a display unit having pixels, each of which includes a luminescence element for individually emitting light depending on a current amount and a pixel circuit for controlling a current applied to the luminescence element according to a picture signal, scan lines which supply a selection signal for selecting the pixels to emit light to the pixels in a predetermined scanning cycle, and data lines which supply the picture signal to the pixels, the pixels, the scan lines, and the data lines arranged in a matrix pattern, the computer program comprising:

a luminescence amount detecting step of inputting a picture signal with a linear characteristic to detect a luminescence amount from the picture signal;

a luminescence time calculating step of calculating a luminescence time for the luminescence element based on the luminescence amount detected in the luminescence amount detecting step;

a luminescence time recording step of recording the calculated luminescence time;

a luminance acquiring step of acquiring luminance information of the luminescence element by use of the luminescence time recorded in the luminescence time recording step;

a coefficient calculating step of calculating a coefficient by which the picture signal is multiplied, based on the luminance information acquired in the luminance acquiring step; and

a coefficient multiplying step of multiplying the picture signal by the coefficient calculated in the coefficient calculating step;

wherein the coefficient calculating step calculates a coefficient for adjusting, to luminance of a colour at lowest luminance, luminance of other colours, as a result of acquiring the luminance information in the luminance acquiring step.

Assignments (6)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 18, 2025
From: JDI DESIGN AND DEVELOPMENT G.K.
To: MAGNOLIA BLUE CORPORATION
Reel/Frame 072039/0656 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 31, 2024
From: JOLED, INC.
To: JDI DESIGN AND DEVELOPMENT G.K.
Reel/Frame 066382/0619 →
CORRECTION BY AFFIDAVIT FILED AGAINST REEL/FRAME 063396/0671 Recorded Jun 12, 2023
From: JOLED, INC.
To: JOLED, INC.
Reel/Frame 064067/0723 →
SECURITY INTEREST Recorded Apr 20, 2023
From: JOLED, INC.
To: INCJ, LTD.
Reel/Frame 063396/0671 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 15, 2015
From: SONY CORPORATION
To: JOLED INC.
Reel/Frame 036106/0355 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 15, 2009
From: MORI, HIDETO; KIKUCHI, KEN; INOUE, YASUO; MEGURO, TAKEYA; SHIDARA, HIDEHIKO; ITO, MASAHIRO; OSUMI, TOYO
To: SONY CORPORATION
Reel/Frame 023378/0939 →