IP Library › Granted Patent US 9,741,309
Granted Patent B2
US 9,741,309 · App. 12/652,995 · Granted Aug 22, 2017

Method for driving display device including first to fourth switches

Inventors: Hajime Kimura (Kanagawa, JP); Atsushi Umezaki (Kanagawa, JP)
Assignee: Semiconductor Energy Laboratory Co., Ltd.
G09G3/3677G09G3/3688G11C19/28G09G3/3614G09G2310/0286G09G2320/043
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Quick Facts
Patent No.
US 9,741,309
App. No.
12/652,995
Granted
Aug 22, 2017
Kind
B2
Abstract

To suppress degradation of a transistor. A method for driving a liquid crystal display device has a first period and a second period. In the first period, a first transistor and a second transistor are alternately turned on and off repeatedly, and a third transistor and a fourth transistor are turned off. In the second period, the first transistor and the second transistor are turned off, and the third transistor and the fourth transistor are alternately turned on and off repeatedly. Accordingly, the time during which the transistor is on can be reduced, so that degradation of characteristics of the transistor can be suppressed.

Claims (33)

1. A method for driving a display device, comprising:

providing a driver circuit including a first switch whose first terminal is electrically connected to a first wiring, whose second terminal is electrically connected to a third wiring, and whose gate is electrically connected to a second wiring, a second switch whose first terminal is electrically connected to the first wiring, whose second terminal is electrically connected to a fifth wiring, and whose gate is electrically connected to a fourth wiring, a third switch whose first terminal is electrically connected to the first wiring, whose second terminal is electrically connected to the second wiring, and whose gate is electrically connected to the third wiring, and a fourth switch whose first terminal is electrically connected to the first wiring, whose second terminal is electrically connected to the fourth wiring, and whose gate is electrically connected to the fifth wiring,

wherein the first switch has substantially a same channel width as the third switch, and the second switch has substantially a same channel width as the fourth switch, and

driving the display device using the driver circuit to output a selection signal, a transfer signal, a start signal, a reset signal, a gate signal or a scan signal for driving the display device, by:

in a first period, bringing out of conduction the first switch and the second switch while switching on the third switch and the fourth switch in the alternate by gate signal control, and

in a second period after the first period, bringing out of conduction the third switch and the fourth switch while switching on the first switch and the second switch in the alternate by gate signal control, and

alternately repeating the first period and the second period.

2. The method for driving a display device according to claim 1 , wherein the first period and the second period are approximately equal in length.

3. The method for driving a display device according to claim 1 , wherein the display device is a liquid crystal display device.

4. The method for driving a display device according to claim 1 , wherein the display device is incorporated in one selected from the group consisting of a computer, an image reproducing device, a goggle-type display, a game machine, a projector, a television, a camera, and a phone.

5. The method for driving a display device according to claim 1 , wherein the first switch, the second switch, the third switch and the fourth switch include oxide semiconductor in their channel portions.

6. The method for driving a display device according to claim 1 , wherein gates of the first switch, the second switch, the third switch and the fourth switch are electrically isolated from each other.

7. The method for driving a display device according to claim 1 , wherein signals are input to gates of the first switch, the second switch, the third switch and the fourth switch so as not to overlap each other.

8. A method for driving a display device, comprising:

providing a driver circuit including a first switch whose first terminal is electrically connected to a first wiring, whose second terminal is electrically connected to a third wiring, and whose gate is electrically connected to a second wiring, a second switch whose first terminal is electrically connected to the first wiring, whose second terminal is electrically connected to a fifth wiring, and whose gate is electrically connected to a fourth wiring, a third switch whose first terminal is electrically connected to the first wiring, whose second terminal is electrically connected to the second wiring, and whose gate is electrically connected to the third wiring, and a fourth switch whose first terminal is electrically connected to the first wiring, whose second terminal is electrically connected to the fourth wiring, and whose gate is electrically connected to the fifth wiring,

wherein the first switch has substantially a same channel width as the third switch, and the second switch has substantially a same channel width as the fourth switch,

driving the display device using the driver circuit to output a selection signal, a transfer signal, a start signal, a reset signal, a gate signal or a scan signal for driving the display device, by:

in a first period including: a first sub-period, a second sub-period and a third sub-period,

bringing out of conduction the first switch, the second switch, the third switch, and the fourth switch during the first sub-period;

bringing into conduction the first switch while bringing out of conduction the second switch, the third switch, and the fourth switch during the second sub-period; and

bringing into conduction the second switch while bringing out of conduction the first switch, the third switch, and the fourth switch during the third sub-period, and

in a second period after the first period including: a fourth sub-period, a fifth sub-period and a sixth sub-period,

bringing out of conduction the first switch, the second switch, the third switch, and the fourth switch during the fourth sub-period;

bringing into conduction the third switch while bringing out of conduction the first switch, the second switch, and the fourth switch during the fifth sub-period; and

bringing into conduction the fourth switch while bringing out of conduction the first switch, the second switch, and the third switch during the sixth sub-period.

9. The method for driving a display device according to claim 8 , wherein the first period and the second period are approximately equal in length.

10. The method for driving a display device according to claim 8 , wherein the first sub-period and the second sub-period are alternately repeated, and wherein the fourth sub-period and the fifth sub-period are alternately repeated.

11. The method for driving a display device according to claim 8 , wherein the first sub-period, the second sub-period, the third sub-period, the fourth sub-period, the fifth sub-period, and the sixth sub-period are approximately equal in length.

12. The method for driving a display device according to claim 8 , wherein the display device is a liquid crystal display device.

13. The method for driving a display device according to claim 8 , wherein the display device is incorporated in one selected from the group consisting of a computer, an image reproducing device, a goggle-type display, a game machine, a projector, a television, a camera, and a phone.

14. The method for driving a display device according to claim 8 , wherein the first switch, the second switch, the third switch and the fourth switch include oxide semiconductor in their channel portions.

15. The method for driving a display device according to claim 8 , wherein gates of the first switch, the second switch, the third switch and the fourth switch are electrically isolated from each other.

16. The method for driving a display device according to claim 8 , wherein signals are input to gates of the first switch, the second switch, the third switch and the fourth switch so as not to overlap each other.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 8, 2010
From: KIMURA, HAJIME; UMEZAKI, ATSUSHI
To: SEMICONDUCTOR ENERGY LABORATORY CO., LTD.
Reel/Frame 023749/0867 →
Priority Claims (1)
JP 2009-011634 · Jan 22, 2009 · national
Continuity (1)
Related Publication 20100182306A1 · Jul 22, 2010