IP Library Granted Patent US 9,171,640
Granted Patent B2
US 9,171,640 · App. 12/897,375 · Granted Oct 27, 2015

Shift register and display device

Inventors: Hiroyuki Miyake (Kanagawa, JP); Seiko Amano (Kanagawa, JP)
Assignee: Semiconductor Energy Laboratory Co., Ltd.
G11C19/28G09G3/3266G09G3/3677G09G2300/0408G09G2300/0417G09G2310/0267G09G2320/0223G09G2320/0285
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Quick Facts
Patent No.
US 9,171,640
App. No.
12/897,375
Granted
Oct 27, 2015
Kind
B2
Abstract

The shift register includes first to fourth flip-flops. A first clock signal which is in a first voltage state in a first period and in a second voltage state in second to fourth periods is input to the first flip-flop. A second clock signal which is in the first voltage state in the second period and in the second voltage state in the third period and the fourth period is input to the second flip-flop. A third clock signal which is in the second voltage state in the first, second, and fourth periods and in the first voltage state in the third period is input to the third flip-flop. A fourth clock signal which is in the second voltage state in the first and second periods and in the first voltage state in the fourth period is input to the fourth flip-flop.

Claims (77)

1. A shift register comprising:

a first flip-flop to which a first clock signal which is in a first voltage state in a first period and in a second voltage state in second to fourth periods is input;

a second flip-flop to which a second clock signal which is in the first voltage state in at least part of the second period and in the second voltage state in at least part of the third period, and the fourth period is input;

a third flip-flop to which a third clock signal which is in the second voltage state in the first, second, and fourth periods and in the first voltage state in the third period is input;

a fourth flip-flop to which a fourth clock signal which is in the second voltage state in at least part of the first period, and the second period and in the first voltage state in at least part of the fourth period is input;

a first to fourth clock signal lines;

a first power supply line to which a high power supply voltage is applied; and

a second power supply line to which a low power supply voltage is applied,

wherein each of the first to fourth flip-flops comprises:

a first transistor comprising a gate, a source and a drain,

wherein a start signal is input to the gate of the first transistor, and

wherein one of the source and the drain of the first transistor is electrically connected to the first power supply line;

a second transistor comprising a gate, a source and a drain,

wherein the gate of the second transistor is electrically connected to the other of the source and the drain of the first transistor,

wherein one of the source and the drain of the second transistor is electrically connected to one of the first to fourth clock signal lines, and

wherein an output signal is output from the other of the source and the drain of the second transistor;

a third transistor comprising a gate, a source and a drain,

wherein one of the source and the drain of the third transistor is electrically connected to the gate of the second transistor, and

wherein the other of the source and the drain of the third transistor is electrically connected to the second power supply line; and

a fourth transistor comprising a gate, a source and a drain,

wherein the gate of the fourth transistor is directly connected to the gate of the third transistor.

2. The shift register according to claim 1 , wherein the first to third transistors have a same conductivity type.

3. The shift register according to claim 1 , wherein each of the first to third transistors comprises an oxide semiconductor layer serving as a channel formation layer.

4. A display device comprising:

a driver circuit comprising the shift register according to claim 1 ; and

a pixel portion comprising a pixel whose display state is controlled by the driver circuit.

5. A method for driving a shift register comprising a first to fourth flip-flops; a first to fourth clock signal lines; a first power supply line to which a high power supply voltage is applied; and a second power supply line to which a low power supply voltage is applied, the method comprising:

inputting a first clock signal, which is in a first voltage state in a first period and in a second voltage state in second to fourth periods, to the first flip-flop;

inputting a second clock signal, which is in the first voltage state in at least part of the second period and in the second voltage state in at least part of the third period, and the fourth period, to the second flip-flop;

inputting a third clock signal, which is in the second voltage state in the first, second, and fourth periods and in the first voltage state in the third period, to the third flip-flop; and

inputting a fourth clock signal, which is in the second voltage state in at least part of the first period, and the second period and in the first voltage state in at least part of the fourth period, to the fourth flip-flop,

wherein each of the first to fourth flip-flops comprises:

a first transistor comprising a gate, a source and a drain,

wherein a start signal is input to the gate of the first transistor, and

wherein one of the source and the drain of the first transistor is electrically connected to the first power supply line;

a second transistor comprising a gate, a source and a drain,

wherein the gate of the second transistor is electrically connected to the other of the source and the drain of the first transistor,

wherein one of the source and the drain of the second transistor is electrically connected to one of the first to fourth clock signal lines, and

wherein an output signal is output from the other of the source and the drain of the second transistor;

a third transistor comprising a gate, a source and a drain,

wherein one of the source and the drain of the third transistor is electrically connected to the gate of the second transistor, and

wherein the other of the source and the drain of the third transistor is electrically connected to the second power supply line; and

a fourth transistor comprising a gate, a source and a drain,

wherein the gate of the fourth transistor is directly connected to the gate of the third transistor.

6. The shift register according to claim 5 , wherein the first to third transistors have a same conductivity type.

7. The shift register according to claim 5 , wherein each of the first to third transistors comprises an oxide semiconductor layer serving as a channel formation layer.

8. A display device comprising:

a driver circuit comprising the shift register according to claim 5 ; and

a pixel portion comprising a pixel whose display state is controlled by the driver circuit.

9. A shift register comprising:

a first flip-flop to which a first clock signal which is in a first voltage state in a first period and in a second voltage state in second to fourth periods is input;

a second flip-flop to which a second clock signal which is in the first voltage state in at least part of the second period and in the second voltage state in at least part of the third period, and the fourth period is input;

a third flip-flop to which a third clock signal which is in the second voltage state in the first, second, and fourth periods and in the first voltage state in the third period is input;

a fourth flip-flop to which a fourth clock signal which is in the second voltage state in at least part of the first period, and the second period and in the first voltage state in at least part of the fourth period is input;

a first to fourth clock signal lines;

a first power supply line to which a high power supply voltage is applied; and

a second power supply line to which a low power supply voltage is applied,

wherein each of the first to fourth flip-flops comprises:

a first transistor comprising a gate, a source and a drain,

wherein a start signal is input to the gate of the first transistor, and

wherein one of the source and the drain of the first transistor is electrically connected to the first power supply line;

a second transistor comprising a gate, a source and a drain,

wherein the gate of the second transistor is electrically connected to the other of the source and the drain of the first transistor,

wherein one of the source and the drain of the second transistor is electrically connected to one of the first to fourth clock signal lines, and

wherein an output signal is output from the other of the source and the drain of the second transistor;

a third transistor comprising a gate, a source and a drain,

wherein one of the source and the drain of the third transistor is electrically connected to the gate of the second transistor, and

wherein the other of the source and the drain of the third transistor is electrically connected to the second power supply line; and

a fourth transistor comprising a gate, a source and a drain,

wherein the gate of the fourth transistor is directly connected to the gate of the third transistor,

wherein one of the source and the drain of the fourth transistor is electrically connected to the other of the source and the drain of the second transistor, and

wherein the other of the source and the drain of the fourth sixth transistor is electrically connected to the second power supply line.

10. The shift register according to claim 9 , wherein the first to fourth sixth transistors have a same conductivity type.

11. The shift register according to claim 9 , wherein each of the first to fourth sixth transistors comprises an oxide semiconductor layer serving as a channel formation layer.

12. A display device comprising:

a driver circuit comprising the shift register according to claim 9 ; and

a pixel portion comprising a pixel whose display state is controlled by the driver circuit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 11, 2011
From: MIYAKE, HIROYUKI; AMANO, SEIKO
To: SEMICONDUCTOR ENERGY LABORATORY CO., LTD.
Reel/Frame 025615/0640 →
Priority Claims (2)
JP 2009-235109 · Oct 9, 2009 · national
JP 2009-273914 · Dec 1, 2009 · national
Continuity (1)
Related Publication 20110084960A1 · Apr 14, 2011