IP Library Granted Patent US 8,754,838
Granted Patent B2
US 8,754,838 · App. 12/427,333 · Granted Jun 17, 2014

Discharge circuit and display device with the same

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Quick Facts
Patent No.
US 8,754,838
App. No.
12/427,333
Granted
Jun 17, 2014
Kind
B2
Abstract

A discharge circuit of a device including a drive circuit operating by an inputted negative voltage includes: a discharge unit connected between a first input terminal receiving the negative voltage and a second input terminal receiving a ground voltage, and configured to discharge the negative voltage to the ground voltage of the second input terminal in response to a control signal; and a control unit connected between the first input terminal and a third input terminal receiving an operation voltage corresponding to a normal operation mode and an abnormal operation mode of the drive circuit, and configured to generate the control signal in response to an operation signal for determining an operation state and a non-operation state in the normal operation mode of the drive circuit.

Claims (27)

1. A discharge circuit of a device including a drive circuit operating based on an inputted negative voltage, the discharge circuit comprising:

a discharge unit connected between a first input terminal receiving the negative voltage and a second input terminal receiving a ground voltage, and configured to discharge the negative voltage to the ground voltage of the second input terminal in response to a control signal; and

a control unit connected between the first input terminal and a third input terminal receiving an operation voltage corresponding to a normal operation mode and an abnormal operation mode of the drive circuit, and configured to generate the control signal in response to an operation signal for determining an operation state and a non-operation state in the normal operation mode of the drive circuit.

2. The discharge circuit of claim 1 , wherein the control unit comprises: a pull-up driver connected between a node and the third input terminal, and configured to transfer the operation voltage to the node in response to the operation signal; and a pull-down driver connected between the node and the first input terminal.

3. The discharge circuit of claim 2 , wherein the pull-up driver comprises a p-channel transistor.

4. The discharge circuit of claim 2 , wherein the pull-down driver comprises a resistor.

5. The discharge circuit of claim 2 , wherein the pull-down driver comprises a diode-connected p-channel transistor.

6. The discharge circuit of claim 1 , wherein the discharge unit comprises a p-channel transistor.

7. The discharge circuit of claim 1 , wherein the operation voltage has a power supply voltage level in the normal operation mode of the drive circuit, and has a ground voltage level in the abnormal operation mode of the drive circuit.

8. The discharge circuit of claim 1 , wherein the operation signal has a ground voltage level when the drive circuit is in the operation state, and has a power supply voltage level when the drive circuit is in the non-operation state.

9. A display device, comprising:

a display panel;

a gate on/off voltage generation circuit configured to output a gate on voltage and a gate off voltage to the display panel; and

a discharge circuit configured to discharge the gate off voltage according to an operation mode of the display panel,

wherein the discharge circuit comprises:

a discharge unit connected between a first input terminal receiving the gate off voltage and a second input terminal receiving a ground voltage, and configured to discharge the gate off voltage to the ground voltage of the second input terminal in response to a control signal; and

a control unit connected between the first input terminal and a third input terminal receiving an operation voltage corresponding to a normal operation mode and an abnormal operation mode of the display panel, and configured to generate the control signal in response to an operation signal for determining an operation state and a non-operation state in the normal operation mode of the display panel.

10. The display device of claim 9 , wherein the control unit comprises: a pull-up driver connected between a node and the third input terminal, and configured to transfer the operation voltage to the node in response to the operation signal; and

a pull-down driver connected between the node and the first input terminal.

11. The display device of claim 10 , wherein the pull-up driver comprises a p-channel transistor.

12. The display device of claim 10 , wherein the pull-down driver comprises a resistor.

13. The display device of claim 10 , wherein the pull-down driver comprises a diode-connected p-channel transistor.

14. The display device of claim 9 , wherein the discharge unit comprises a p-channel transistor.

15. The display device of claim 9 , wherein the operation voltage has a power supply voltage level in the normal operation mode of the display panel, and has a ground voltage level in the abnormal operation mode of the display panel.

16. The display device of claim 9 , wherein the operation signal has a ground voltage level when the display panel is in the operation state, and has a power supply voltage level when the display panel is in the non-operation state.

17. The display device of claim 9 , wherein the gate off voltage is a negative voltage.

18. The display device of claim 9 , wherein the display panel is a liquid crystal display.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 7, 2025
From: MAGNACHIP MIXED-SIGNAL, LTD.
To: MAGNACHIP SEMICONDUCTOR, LTD.
Reel/Frame 071813/0800 →
NUNC PRO TUNC ASSIGNMENT Recorded Mar 14, 2024
From: MAGNACHIP SEMICONDUCTOR, LTD.
To: MAGNACHIP MIXED-SIGNAL, LTD.
Reel/Frame 066878/0875 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 21, 2009
From: KWON, JONG - HYUK; KANG, TAE- KYOUNG; OH, KWON- YOUNG
To: MAGNACHIP SEMICONDUCTOR, LTD.
Reel/Frame 022574/0238 →