IP Library Granted Patent US 12705922
Granted Patent B2
US 12705922 · App. 18/670,171 · Granted Aug 11, 2026

Readout circuit and display device including the same

Inventors: Sanghyun Heo (Yongin-si, KR); Joon-Chul Goh (Yongin-si, KR); Ohjo Kwon (Yongin-si, KR); Taehun Lee (Yongin-si, KR)
Assignee: SAMSUNG DISPLAY CO., LTD.
G06V40/1318G06F3/0412G06F3/0421G09G3/3233G09G2300/0819G09G2300/0842G09G2300/0861G09G2310/08G09G2354/00G09G2360/14
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Quick Facts
Patent No.
US 12705922
App. No.
18/670,171
Granted
Aug 11, 2026
Kind
B2
Abstract

A display device includes a display panel and a readout circuit. The display panel includes a pixel including a light emitting element, a sensor including a light sensing element, and a dummy sensor. The readout circuit outputs a readout signal based on a sensing signal received from the sensor and a dummy sensing signal received from the dummy sensor. The readout circuit includes a reference current conveyor that outputs a reference signal corresponding to the dummy sensing signal, and a sensing circuit that outputs the readout signal corresponding to a difference between the sensing signal and the reference signal.

Claims (79)

1 . A display device comprising:

a display panel including a pixel including a light emitting element, a sensor including a light sensing element, and a dummy sensor; and

a readout circuit configured to output a readout signal based on a sensing signal received from the sensor and a dummy sensing signal received from the dummy sensor,

wherein the readout circuit comprises:

a reference current conveyor configured to output a reference signal corresponding to the dummy sensing signal; and

a sensing circuit configured to output the readout signal corresponding to a difference between the sensing signal and the reference signal.

2 . The display device of claim 1 , wherein the sensing circuit comprises:

a current conveyor configured to output a conveyor signal corresponding to the difference between the sensing signal and the reference signal;

a current memory cell configured to store the conveyor signal; and

an analog-to-digital converter configured to output the readout signal by converting the conveyor signal from the current memory cell into a digital signal.

3 . The display device of claim 2 , wherein the current memory cell comprises:

a first memory cell configured to store the conveyor signal corresponding to a difference between the sensing signal received during a first period, and the reference signal; and

a second memory cell configured to store the conveyor signal corresponding to a difference between the sensing signal received during a second period different from the first period, and the reference signal.

4 . The display device of claim 3 , wherein the first memory cell comprises:

a first capacitor configured to store the conveyor signal during the first period; and

a second capacitor configured to store the conveyor signal during the first period.

5 . The display device of claim 4 , wherein the second memory cell includes:

a third capacitor configured to store the conveyor signal during the second period; and

a fourth capacitor configured to store the conveyor signal during the second period.

6 . The display device of claim 3 , wherein the current memory cell further comprises:

an amplifier including a first input terminal, a second input terminal, and an output node and configured to receive a reference voltage from the first input terminal, to receive the conveyor signal from the second input terminal, and to output a current corresponding to the conveyor signal to the output node.

7 . The display device of claim 6 , wherein the first memory cell comprises:

a first transistor connected between a first voltage terminal and a first node and including a gate electrode connected to a second node;

a first capacitor connected between the first voltage terminal and the second node;

a first switching circuit configured to electrically connect an input node receiving the conveyor signal, and the second node in response to a first switching signal and to deliver the conveyor signal to the second input terminal of the amplifier in response to a second switching signal;

a second transistor connected between the first node and a second voltage terminal, and connected to a third node;

a second capacitor connected between the third node and the second voltage terminal; and

a second switching circuit configured to electrically connect the output node of the amplifier and the third node in response to the second switching signal.

8 . The display device of claim 7 , wherein the second memory cell comprises:

a third transistor connected between the first voltage terminal and a fourth node, and including a gate electrode connected to a fifth node;

a third capacitor connected between the first voltage terminal and the fifth node;

a third switching circuit configured to electrically connect the input node receiving the conveyor signal, and the fifth node in response to a third switching signal and to deliver the conveyor signal to the second input terminal of the amplifier in response to a fourth switching signal;

a fourth transistor connected between the fourth node and the second voltage terminal, and including a gate electrode connected to a sixth node;

a fourth capacitor connected between the sixth node and the second voltage terminal; and

a fourth switching circuit configured to electrically connect the output node of the amplifier and the sixth node in response to the fourth switching signal.

9 . The display device of claim 2 , wherein the reference current conveyor outputs a first reference voltage signal and a second reference voltage signal, which correspond to the dummy sensing signal.

10 . The display device of claim 9 , wherein the current conveyor comprises:

a first current mirror circuit configured to receive the sensing signal, the first reference voltage signal, the second reference voltage signal, a first bias voltage, and a second bias voltage to output a voltage signal;

a buffer circuit configured to receive the first voltage signal and a reference voltage to output a first voltage and a second voltage; and

a second current mirror circuit configured to receive the first voltage, the second voltage, the first bias voltage, and the second bias voltage to output the conveyor signal.

11 . The display device of claim 1 , wherein the display panel includes a display area, in which the light emitting element and the sensor are disposed, and a non-display area in which the dummy sensor is disposed.

12 . The display device of claim 1 , wherein the sensor further includes a sensor driving circuit connected to the light sensing element and configured to output the sensing signal corresponding to external light.

13 . The display device of claim 12 , wherein the sensor driving circuit comprises:

a reset transistor including a first electrode for receiving a reset voltage, a second electrode connected to a first sensing node, and a gate electrode for receiving a reset signal;

an amplification transistor including a first electrode for receiving a driving voltage, a second electrode connected to a second sensing node, and a gate electrode connected to the first sensing node; and

an output transistor including a first electrode connected to the second sensing node, a second electrode connected to a readout line for outputting the sensing signal, and a gate electrode for receiving a scan signal.

14 . The display device of claim 1 , wherein the dummy sensor further includes a sensor driving circuit connected to the light sensing element and configured to output the dummy sensing signal corresponding to external light.

15 . A readout circuit comprising:

a reference current conveyor configured to output a reference signal corresponding to a dummy sensing signal from a dummy sensor; and

a sensing circuit configured to output a readout signal corresponding to a difference between a sensing signal received from a sensor and the reference signal,

wherein the sensing circuit comprises:

a current conveyor configured to output a conveyor signal corresponding to the difference between the sensing signal and the reference signal;

a current memory cell configured to store the conveyor signal; and

an analog-to-digital converter configured to output the readout signal by converting the conveyor signal from the current memory cell into a digital signal.

16 . The readout circuit of claim 15 , wherein the current memory cell comprises:

a first memory cell configured to store the conveyor signal corresponding to a difference between the sensing signal received during a first period, and the reference signal; and

a second memory cell configured to store the conveyor signal corresponding to a difference between the sensing signal received during a second period different from the first period, and the reference signal.

17 . The readout circuit of claim 16 , wherein the current memory cell further comprises:

an amplifier including a first input terminal, a second input terminal, and an output node and configured to receive a reference voltage from the first input terminal, to receive the conveyor signal from the second input terminal, and to output a current corresponding to the conveyor signal to the output node.

18 . The readout circuit of claim 16 , wherein the first memory cell comprises:

a first capacitor configured to store the conveyor signal during the first period; and

a second capacitor configured to store the conveyor signal during the first period, and

wherein the second memory cell comprises:

a third capacitor configured to store the conveyor signal during the second period; and

a fourth capacitor configured to store the conveyor signal during the second period.

19 . The readout circuit of claim 18 , wherein the first memory cell comprises:

a first transistor connected between a first voltage terminal and a first node and including a gate electrode connected to a second node;

a first capacitor connected between the first voltage terminal and the second node;

a first switching circuit configured to electrically connect an input node receiving the conveyor signal, and the second node in response to a first switching signal and to deliver the conveyor signal to the second input terminal of the amplifier in response to a second switching signal;

a second transistor connected between the first node and a second voltage terminal, and connected to a third node;

a second capacitor connected between the third node and the second voltage terminal; and

a second switching circuit configured to electrically connect the output node of the amplifier and the third node in response to the second switching signal.

20 . The readout circuit of claim 19 , wherein the second memory cell comprises:

a third transistor connected between the first voltage terminal and a fourth node, and including a gate electrode connected to a fifth node;

a third capacitor connected between the first voltage terminal and the fifth node;

a third switching circuit configured to electrically connect the input node receiving the conveyor signal, and the fifth node in response to a third switching signal and to deliver the conveyor signal to the second input terminal of the amplifier in response to a fourth switching signal;

a fourth transistor connected between the fourth node and the second voltage terminal, and including a gate electrode connected to a sixth node;

a fourth capacitor connected between the sixth node and the second voltage terminal; and

a fourth switching circuit configured to electrically connect the output node of the amplifier and the sixth node in response to the fourth switching signal.