IP Library Granted Patent US 10,002,568
Granted Patent B2
US 10,002,568 · App. 15/309,656 · Granted Jun 19, 2018

Display unit, display unit driving method, and electronic apparatus with deterioration suppression

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Quick Facts
Patent No.
US 10,002,568
App. No.
15/309,656
Granted
Jun 19, 2018
Kind
B2
Abstract

A display unit of the disclosure includes a pixel array section and a drive section. In the pixel array section, unit pixels each including a light-emitting section are disposed. The drive section causes, during a non-display period other than a display period, a transistor to be corrected to be in an electrically conductive state, and performs, during the non-display period, light emission driving of the light-emitting section on a basis of a predetermined voltage. The transistor is provided in each of the unit pixels. The display period is a period during which display driving is performed on a basis of a display signal.

Claims (36)

1. A display unit comprising:

a pixel array section including unit pixels, the unit pixels each including a light-emitting section; and

a drive section that causes, during a non-display period other than a display period, a transistor to be corrected to be in an electrically conductive state, and performs, during the non-display period, light emission driving of the light-emitting section on a basis of a predetermined voltage, an instance of the transistor being respectively provided in each of the unit pixels, the display period being a period during which display driving is performed on a basis of a display signal,

wherein

the transistor comprises a drive transistor that drives the light-emitting section depending on the display signal, and

the predetermined voltage is set to have a voltage value that satisfies the following condition:

V g −V th _ Tr >V x >V cath +V th _ EL

where V x is the predetermined voltage, V cath is a voltage of a node opposite to a node of the light-emitting section to which the predetermined voltage is applied, V th _ EL is a threshold voltage of the light-emitting section, V g is a gate voltage of the drive transistor, and V th _ Tr is a threshold voltage of the drive transistor.

2. The display unit according to claim 1 , wherein

a correction period is provided prior to an entry into the display period, the correction period being a period during which correction of a characteristic of the transistor in each of the unit pixels is performed, and

the drive section performs, prior to an entry into the correction period, the light emission driving of the light-emitting section on the basis of the predetermined voltage.

3. The display unit according to claim 1 , wherein another transistor to be corrected comprises a write transistor that writes the display signal into the unit pixel.

4. The display unit according to claim 1 , wherein the transistor to be corrected comprises a thin film transistor that employs an oxide semiconductor as a channel layer.

5. The display unit according to claim 1 , wherein each of the unit pixels includes a switching device that selectively applies the predetermined voltage to the light-emitting section in driving, by application of the predetermined voltage, the light-emitting section.

6. The display unit according to claim 5 , wherein

the switching device includes a switching transistor coupled between a node of the light-emitting section to which the predetermined voltage is applied and a voltage source of the predetermined voltage, and

the drive section causes the switching transistor to be in an electrically conductive state when causing the transistor to be corrected to be in the electrically conductive state.

7. The display unit according to claim 1 , wherein the drive section sequentially drives the unit pixels on a pixel row basis for a pixel arrangement, the pixel arrangement including the unit pixels that are two-dimensionally arranged in matrix.

8. The display unit according to claim 1 , wherein each of the unit pixels of the pixel array section is fabricated on a transparent substrate.

9. The display unit according to claim 1 , wherein the light-emitting section of each of the unit pixels includes a current-driven electrooptical device.

10. A display unit driving method that performs driving of a display unit, the display unit being provided with a pixel array section in which unit pixels each including a light-emitting section are disposed, the method comprising:

causing, during a non-display period other than a display period, a transistor to be corrected to be in an electrically conductive state upon performing the driving, an instance of the transistor being respectively provided in each of the unit pixels, the display period being a period during which display driving is performed on a basis of a display signal; and

performing, during the non-display period, light emission driving of the light-emitting section on a basis of a predetermined voltage upon performing the driving,

wherein

the transistor comprises a drive transistor that drives the light-emitting section depending on the display signal, and

the predetermined voltage is set to have a voltage value that satisfies the following condition:

V g −V th _ Tr >V x >V cath +V th _ EL

where V x is the predetermined voltage, V cath is a voltage of a node opposite to a node of the light-emitting section to which the predetermined voltage is applied, V th _ EL is a threshold voltage of the light-emitting section, V g is a gate voltage of the drive transistor, and V th _ Tr is a threshold voltage of the drive transistor.

11. An electronic apparatus provided with a display unit, the display unit comprising:

a pixel array section including unit pixels, the unit pixels each including a light-emitting section; and

a drive section that causes, during a non-display period other than a display period, a transistor to be corrected to be in an electrically conductive state, and performs, during the non-display period, light emission driving of the light-emitting section on a basis of a predetermined voltage, an instance of the transistor being respectively provided in each of the unit pixels, the display period being a period during which display driving is performed on a basis of a display signal,

wherein

the transistor comprises a drive transistor that drives the light-emitting section depending on the display signal, and

the predetermined voltage is set to have a voltage value that satisfies the following condition:

V g −V th _ Tr >V x >V cath +V th _ EL

where V x is the predetermined voltage, V cath is a voltage of a node opposite to a node of the light-emitting section to which the predetermined voltage is applied, V th _ EL is a threshold voltage of the light-emitting section, V g is a gate voltage of the drive transistor, and V th _ Tr is a threshold voltage of the drive transistor.

Assignments (5)
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 Nov 9, 2016
From: IZUMI, GAKU; YOKOZEKI, MIKIHIRO
To: JOLED INC.
Reel/Frame 040261/0971 →