IP Library Granted Patent US 10,074,308
Granted Patent B2
US 10,074,308 · App. 15/507,927 · Granted Sep 11, 2018

Display device and method for driving same

Inventors: Shinya Ono (Osaka, JP); Shigeo Homura (Tokyo, JP)
Assignee: JOLED INC.
G09G3/3233G09G3/20G09G3/2074G09G3/30G09G2300/043G09G2330/025H01L51/50
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Quick Facts
Patent No.
US 10,074,308
App. No.
15/507,927
Granted
Sep 11, 2018
Kind
B2
Abstract

Provided is a method for driving a display device including: a display unit having a sub-pixel having a first light emitting element (organic EL element) and a first driving transistor for supplying a first electric current corresponding to a first gray level signal, and a sub-pixel having a second light emitting element (organic EL element) and a second driving transistor for supplying a second electric current corresponding to a second gray level signal; and a power supply unit configured to apply a power supply voltage to each sub-pixel via an electric current path that is common to the sub-pixel and the sub-pixel. The driving method includes correcting the first gray level signal based on the first gray level signal and the second gray level signal so as to compensate for a reduction in the first electric current caused by a voltage drop that occurs in the electric current path.

Claims (51)

1. A method for driving a display device including:

a control circuit that outputs a first gray level signal and a second gray level signal;

a display including a first pixel and a second pixel,

the first pixel having a first light emitting element which is a current-driven light emitting element and a first driving transistor for supplying, to the first light emitting element, a first electric current corresponding to the first gray level signal, and

the second pixel having a second light emitting element which is a current-driven light emitting element and a second driving transistor for supplying, to the second light emitting element, a second electric current corresponding to the second gray level signal; and

a power supply configured to apply a power supply voltage to the first pixel and the second pixel via an electric current path that is common to the first pixel and the second pixel,

the method comprising

correcting the first gray level signal based on the first gray level signal and the second gray level signal so as to compensate for a reduction in the first electric current caused by a voltage drop that occurs in the electric current path when the first electric current and the second electric current are supplied simultaneously to the first light emitting element and the second light emitting element, respectively,

wherein a correction amount for the power supply voltage corresponding to a correction amount for the first gray level signal in the correcting of the first gray level signal is positively correlated with the first gray level signal.

2. A method for driving a display device including:

a control circuit that outputs a first gray level signal and a second gray level signal;

a display including a first pixel and a second pixel,

the first pixel having a first light emitting element which is a current-driven light emitting element and a first driving transistor for supplying, to the first light emitting element, a first electric current corresponding to the first gray level signal, and

the second pixel having a second light emitting element which is a current-driven light emitting element and a second driving transistor for supplying, to the second light emitting element, a second electric current corresponding to the second gray level signal; and

a power supply configured to apply a power supply voltage to the first pixel and the second pixel via an electric current path that is common to the first pixel and the second pixel,

the method comprising

correcting the first gray level signal based on the first gray level signal and the second gray level signal so as to compensate for a reduction in the first electric current caused by a voltage drop that occurs in the electric current path when the first electric current and the second electric current are supplied simultaneously to the first light emitting element and the second light emitting element, respectively,

wherein in the correcting, the first gray level signal is corrected such that the first electric current when electric currents corresponding to the first gray level signal and the second gray level signal are supplied simultaneously to the first light emitting element and the second light emitting element is 80% or more of the first electric current when an electric current corresponding to the first gray level signal is supplied only to the first light emitting element.

3. A method for driving a display device including:

a control circuit that outputs a first gray level signal and a second gray level signal;

a display including a first pixel and a second pixel,

the first pixel having a first light emitting element which is a current-driven light emitting element and a first driving transistor for supplying, to the first light emitting element, a first electric current corresponding to the first gray level signal, and

the second pixel having a second light emitting element which is a current-driven light emitting element and a second driving transistor for supplying, to the second light emitting element, a second electric current corresponding to the second gray level signal; and

a power supply configured to apply a power supply voltage to the first pixel and the second pixel via an electric current path that is common to the first pixel and the second pixel,

the method comprising

correcting the first gray level signal based on the first gray level signal and the second gray level signal so as to compensate for a reduction in the first electric current caused by a voltage drop that occurs in the electric current path when the first electric current and the second electric current are supplied simultaneously to the first light emitting element and the second light emitting element, respectively,

wherein in the correcting, the first gray level signal is corrected such that the first electric current when electric currents corresponding to the first gray level signal and the second gray level signal are supplied simultaneously to the first light emitting element and the second light emitting element, respectively, and the first gray level signal has a gray level level that is a medium brightness level or more is 80% or more of the first electric current when an electric current corresponding to the first gray level signal is supplied only to the first light emitting element.

4. A display device comprising:

a control circuit that outputs a first gray level signal and a second gray level signal;

a display including a first pixel and a second pixel,

the first pixel having a first light emitting element which is a current-driven light emitting element and a first driving transistor for supplying, to the first light emitting element, a first electric current corresponding to the first gray level signal, and

the second pixel having a second light emitting element which is a current-driven light emitting element and a second driving transistor for supplying, to the second light emitting element, a second electric current corresponding to the second gray level signal; and

a power supply configured to apply a power supply voltage to the first pixel and the second pixel via an electric current path that is common to the first pixel and the second pixel,

wherein the control circuit corrects the first gray level signal based on the first gray level signal and the second gray level signal so as to compensate for a reduction in the first electric current caused by a voltage drop that occurs in the electric current path when the first electric current and the second electric current are supplied simultaneously to the first light emitting element and the second light emitting element, respectively, and

wherein a correction amount for the power supply voltage corresponding to a correction amount for the first gray level signal is positively correlated with the first gray level signal.

5. A display device comprising:

a control circuit that outputs a first gray level signal and a second gray level signal;

a display including a first pixel and a second pixel,

the first pixel having a first light emitting element which is a current-driven light emitting element and a first driving transistor for supplying, to the first light emitting element, a first electric current corresponding to the first gray level signal, and

the second pixel having a second light emitting element which is a current-driven light emitting element and a second driving transistor for supplying, to the second light emitting element, a second electric current corresponding to the second gray level signal; and

a power supply configured to apply a power supply voltage to the first pixel and the second pixel via an electric current path that is common to the first pixel and the second pixel,

wherein the control circuit corrects the first gray level signal based on the first gray level signal and the second gray level signal so as to compensate for a reduction in the first electric current caused by a voltage drop that occurs in the electric current path when the first electric current and the second electric current are supplied simultaneously to the first light emitting element and the second light emitting element, respectively, and

wherein the control circuit corrects the first gray level signal such that the first electric current when electric currents corresponding to the first gray level signal and the second gray level signal are supplied simultaneously to the first light emitting element and the second light emitting element is 80% or more of the first electric current when an electric current corresponding to the first gray level signal is supplied only to the first light emitting element.

6. A display device comprising:

a control circuit that outputs a first gray level signal and a second gray level signal;

a display including a first pixel and a second pixel,

the first pixel having a first light emitting element which is a current-driven light emitting element and a first driving transistor for supplying, to the first light emitting element, a first electric current corresponding to the first gray level signal, and

the second pixel having a second light emitting element which is a current-driven light emitting element and a second driving transistor for supplying, to the second light emitting element, a second electric current corresponding to the second gray level signal; and

a power supply configured to apply a power supply voltage to the first pixel and the second pixel via an electric current path that is common to the first pixel and the second pixel,

wherein the control circuit corrects the first gray level signal based on the first gray level signal and the second gray level signal so as to compensate for a reduction in the first electric current caused by a voltage drop that occurs in the electric current path when the first electric current and the second electric current are supplied simultaneously to the first light emitting element and the second light emitting element, respectively, and

wherein the control circuit corrects the first gray level signal such that the first electric current when electric currents corresponding to the first gray level signal and the second gray level signal are supplied simultaneously to the first light emitting element and the second light emitting element, respectively, and the first gray level signal has a gray level that is a medium brightness level or more is 80% or more of the first electric current when an electric current corresponding to the first gray level signal is supplied only to the first light emitting element.

Assignments (7)
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 Mar 1, 2017
From: ONO, SHINYA
To: PANASONIC CORPORATION
Reel/Frame 041424/0388 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 1, 2017
From: HOMURA, SHIGEO
To: JOLED INC.
Reel/Frame 041424/0451 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 1, 2017
From: PANASONIC CORPORATION
To: JOLED INC.
Reel/Frame 041424/0425 →
Priority Claims (1)
JP 2014-180469 · Sep 4, 2014 · national
Continuity (1)
Related Publication 20170294160A1 · Oct 12, 2017