IP Library Granted Patent US 12711904
Granted Patent B2
US 12711904 · App. 18/965,029 · Granted Aug 18, 2026

Stage circuit of gate driver and display device including the same

Inventors: Keuk-Jin Jeong (Yongin-si, KR); Wongyun Kim (Yongin-si, KR); Min Kang (Yongin-si, KR)
Assignee: SAMSUNG DISPLAY CO., LTD.
G09G3/32G09G2300/0819G09G2300/0842G09G2300/0861G09G2310/0267G09G2310/0286G09G2310/08
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Quick Facts
Patent No.
US 12711904
App. No.
18/965,029
Granted
Aug 18, 2026
Kind
B2
Abstract

A stage circuit included in a gate driver of a display device, includes: a first transistor connected between an input terminal receiving an input signal and a control terminal, and including a gate electrode connected to a first clock terminal receiving a first clock signal: a second transistor connected between a line supplying a gate high voltage and an output terminal generating an output signal, and including a gate electrode connected to an inversion control terminal; a third transistor connected between the output terminal and a second clock terminal receiving a second clock signal, and including a gate electrode connected to the control terminal; a first capacitor connected between the control terminal and the output terminal; and a control circuit configured to controlling an inversion control voltage of the inversion control terminal based on a control voltage of the control terminal.

Claims (61)

1 . A stage circuit included in a gate driver of a display device, comprising:

a first transistor connected between an input terminal receiving an input signal and a control terminal, the first transistor including a gate electrode connected to a first clock terminal receiving a first clock signal:

a second transistor connected between a line supplying a gate high voltage and an output terminal generating an output signal, the second transistor including a gate electrode connected to an inversion control terminal;

a third transistor connected between the output terminal and a second clock terminal receiving a second clock signal, the third transistor including a gate electrode connected to the control terminal;

a first capacitor connected between the control terminal and the output terminal; and

a control circuit configured to control an inversion control voltage of the inversion control terminal based on a control voltage of the control terminal,

wherein, in a first operation period, the first clock signal and the input signal are at a logic low level, the second clock signal is at a logic high level, and the control voltage is at the logic low level,

wherein, in a second operation period after the first operation period, the first clock signal, the second clock signal and the input signal are at the logic high level, and the control voltage maintains the logic low level,

wherein, in a third operation period after the second operation period, the second clock signal is at the logic low level, the first clock signal and the input signal are at the logic high level, and the control voltage is boosted to a boosting level lower than the logic low level,

wherein, in a fourth operation period after the third operation period, the first clock signal, the second clock signal and the input signal are at the logic high level, and the control voltage is restored to the logic low level from the boosting level, and

wherein, in a fifth operation period after the fourth operation period, the first clock signal is at the logic low level, the input signal and the second clock signal are at the logic high level, and the control voltage is at the logic high level.

2 . The stage circuit of claim 1 , wherein the first clock signal and the second clock signal have a same clock cycle, have a phase difference of 180 degrees from each other, and are each at a logic low level for ¼ of the clock cycle, and,

wherein a horizontal time allocated to drive one row of the display device is ½ of the clock cycle.

3 . The stage circuit of claim 1 , wherein the first transistor, the second transistor, and the third transistor are P-type metal oxide semiconductor (PMOS) transistors.

4 . The stage circuit of claim 1 , wherein the output signal is at the logic low level in the third operation period, and the output signal is at the logic high level in the first operation period, the second operation period, the fourth operation period and the fifth operation period.

5 . The stage circuit of claim 1 , wherein the inversion control voltage is at the logic low level in the fifth operation period, and the inversion control voltage is at the logic high level in the first operation period, the second operation period, the third operation period and the fourth operation period.

6 . The stage circuit of claim 1 , wherein the control circuit includes:

a fourth transistor connected between the line supplying the gate high voltage and the inversion control terminal, the fourth transistor including a gate electrode connected to the control terminal; and

a second capacitor connected between the first clock terminal and the inversion control terminal.

7 . The stage circuit of claim 6 , wherein the first transistor, the second transistor, the third transistor and the fourth transistor are PMOS transistors.

8 . The stage circuit of claim 1 , wherein the control circuit includes:

a fourth transistor connected between the line supplying the gate high voltage and the inversion control terminal, the fourth transistor including a gate electrode connected to the second clock terminal;

an enhancement transistor connected between a line supplying a gate low voltage and the inversion control terminal, the enhancement transistor including a gate electrode connected to the control terminal; and

a second capacitor connected between the line supplying the gate high voltage and the inversion control terminal.

9 . The stage circuit of claim 8 , wherein the first transistor, the second transistor, the third transistor and the fourth transistor are PMOS transistors, and the enhancement transistor is an NMOS transistor.

10 . The stage circuit of claim 1 , wherein the control circuit includes:

a fourth transistor connected between the first clock terminal and the inversion control terminal, the fourth transistor including a gate electrode connected to the control terminal; and

an enhancement transistor connected between a line supplying a gate low volta and the inversion control terminal, the enhancement transistor including a gate electrod connected to the control terminal.

11 . The stage circuit of claim 10 , wherein the first transistor, the second transistor, the third transistor and the fourth transistor are PMOS transistors, and the enhancement transistor is an NMOS transistor.

12 . The stage circuit of claim 1 , further comprising:

a load-reduction transistor connected in series with the first transistor between the input terminal and the control terminal, the load-reduction transistor including a gat electrode receiving a gate low voltage.

13 . The stage circuit of claim 1 , wherein the control circuit includes one transistor and one capacitor.

14 . The stage circuit of claim 1 , wherein the control circuit includes two transistors.

15 . A stage circuit included in a gate driver of a display device, comprising:

a first transistor connected between an input terminal receiving an input signal and a control terminal, the first transistor including a gate electrode connected to a first clock terminal receiving a first clock signal:

a second transistor connected between a line supplying a gate high voltage and an output terminal generating an output signal, the second transistor including a gate electrode connected to an inversion control terminal;

a third transistor connected between the output terminal and a second clock terminal receiving a second clock signal, the third transistor including a gate electrode connected to the control terminal;

a first capacitor connected between the control terminal and the output terminal; and

a control circuit configured to control an inversion control voltage of the inversion control terminal based on a control voltage of the control terminal,

wherein the control circuit includes:

a fourth transistor connected between the line supplying the gate high voltage and the inversion control terminal, the fourth transistor including a gate electrode connected to the control terminal;

an enhancement transistor connected between a line supplying a gate low voltage and the inversion control terminal, the enhancement transistor including a gate electrode connected to the control terminal; and

a second capacitor connected between the line supplying the gate high voltage and the inversion control terminal.

16 . The stage circuit of claim 15 , wherein the first transistor, the second transistor, the third transistor and the fourth transistor are PMOS transistors, and the enhancement transistor is an N-type metal oxide semiconductor (NMOS) transistor.

17 . A display device comprising

a display panel including a pixel;

a gate driver configured to output a gate signal to the pixel;

a data driver configured to output a data voltage to the pixel; and

an emission driver configured to output an emission signal to the pixel,

wherein the gate driver includes at least one stage circuit, and

wherein the stage circuit includes:

a first transistor connected between an input terminal receiving an input signal and a control terminal, the first transistor including a gate electrode connected to a first clock terminal receiving a first clock signal:

a second transistor connected between a line supplying a gate high voltage and an output terminal generating an output signal, the second transistor including a gate electrode connected to an inversion control terminal;

a third transistor connected between the output terminal and a second clock terminal receiving a second clock signal, the third transistor including a gate electrode connected to the control terminal;

a first capacitor connected between the control terminal and the output terminal; and

a control circuit configured to control an inversion control voltage of the inversion control terminal based on a control voltage of the control terminal,

wherein, in a first operation period, the first clock signal and the input signal are at a logic low level, the second clock signal is at a logic high level, and the control voltage is at the logic low level,

wherein, in a second operation period after the first operation period, the first clock signal, the second clock signal and the input signal are at the logic high level, and the control voltage maintains the logic low level,

wherein, in a third operation period after the second operation period, the second clock signal is at the logic low level, the first clock signal and the input signal are at the logic high level, and the control voltage is boosted to a boosting level lower than the logic low level,

wherein, in a fourth operation period after the third operation period, the first clock signal, the second clock signal and the input signal are at the logic high level, and the control voltage is restored to the logic low level from the boosting level, and

wherein, in a fifth operation period after the fourth operation period, the first clock signal is at the logic low level, the input signal and the second clock signal are at the logic high level, and the control voltage is at the logic high level.