Electrostatic protection circuit, display panel, and display apparatus
10804259 ยท 2020-10-13
Assignee
Inventors
Cpc classification
H01L27/0266
ELECTRICITY
G02F1/136204
PHYSICS
H01L27/0288
ELECTRICITY
H01L27/1244
ELECTRICITY
International classification
H01L27/02
ELECTRICITY
Abstract
An electrostatic protection circuit, a display panel, and a display apparatus are disclosed. The electrostatic protection circuit comprises a switch control unit, a first electrostatic storage unit configured to store charges, and a second electrostatic storage unit configured to store charges, wherein the first electrostatic storage unit has a first terminal connected to a driving line and a second terminal connected to the switch control unit, and the second electrostatic storage unit has a first terminal connected to the switch control unit and a second terminal connected to a common electrode trace. With the first electrostatic storage unit connected to the driving line and the second electrostatic storage unit connected to the common electrode trace, the electrostatic protection circuit, the display panel, and the display apparatus according to the present disclosure can prevent leakage current on the driving line from flowing into the common electrode trace or prevent leakage current on the common electrode trace from flowing into the driving line after the switch control unit is switched off, which otherwise causes voltage fluctuation on the driving line or the common electrode trace thereby affecting the display quality.
Claims
1. An electrostatic protection circuit, comprising: a switch control unit; a first electrostatic storage unit consisting of a first capacitor having a first terminal electrically connected to a driving line and a second terminal electrically connected to the switch control unit; and a second electrostatic storage unit consisting of a second capacitor having a first terminal electrically connected to the switch control unit and a second terminal electrically connected to a common electrode trace, wherein the switch control unit is configured to control the second terminal of the first capacitor to be electrically connected to the common electrode trace when a voltage variation value of a voltage on the driving line during a first predetermined time period is greater than a first predetermined voltage variation value, wherein the switch control unit is further configured to control the first terminal of the second capacitor to be electrically connected to the driving line when a voltage variation value of a voltage on the common electrode trace during a second predetermined time period is greater than a second predetermined voltage variation value, and wherein the switch control unit comprises: a first switch transistor having a first terminal electrically connected to the driving line, a second terminal electrically connected to the second terminal of the first electrostatic storage unit, and a third terminal electrically connected to a first node; a second switch transistor having a first terminal electrically connected to the first node, a second terminal electrically connected to the driving line, and a third terminal electrically connected to the first terminal of the second electrostatic storage unit; a third switch transistor having a first terminal electrically connected to the common electrode trace, a second terminal electrically connected to the first node, and a third terminal electrically connected to the common electrode trace; and a fourth switch transistor having a first terminal electrically connected to the first terminal of the second electrostatic storage unit, a second terminal electrically connected to the first node, and a third terminal electrically connected to the common electrode trace.
2. The electrostatic protection circuit according to claim 1, wherein the driving line comprises a data scanning line and/or a gate scanning line, and the common electrode trace comprises a common electrode line and/or a common electrode wiring.
3. The electrostatic protection circuit according to claim 1, wherein all of the first switch transistor, the second switch transistor, the third switch transistor, and the fourth switch transistor are N-type transistors, or all of the first switch transistor, the second switch transistor, the third switch transistor, and the fourth switch transistor are P-type transistors.
4. A display panel comprising the electrostatic protection circuit according to claim 1.
5. A display apparatus comprising the display panel according to claim 4.
6. An electrostatic protection circuit, comprising: a switch control unit; a first electrostatic storage unit consisting of a first capacitor having a first terminal electrically connected to a driving line and a second terminal electrically connected to the switch control unit; and a second electrostatic storage unit consisting of a second capacitor having a first terminal electrically connected to the switch control unit and a second terminal electrically connected to a common electrode trace, wherein the switch control unit is configured to control the second terminal of the first capacitor to be electrically connected to the common electrode trace when a voltage variation value of a voltage on the driving line during a first predetermined time period is greater than a first predetermined voltage variation value, wherein the switch control unit is further configured to control the first terminal of the second capacitor to be electrically connected to the driving line when a voltage variation value of a voltage on the common electrode trace during a second predetermined time period is greater than a second predetermined voltage variation value, and wherein the switch control unit comprises: a first switch transistor having a first terminal electrically connected to the driving line, a second terminal electrically connected to the driving line, and a third terminal electrically connected to a first node; a second switch transistor having a first terminal electrically connected to the first node, a second terminal electrically connected to the second terminal of the first electrostatic storage unit, and a third terminal electrically connected to the first terminal of the second electrostatic storage unit; a third switch transistor having a first terminal electrically connected to the common electrode trace, a second terminal electrically connected to the first node, and a third terminal electrically connected to the common electrode trace; and a fourth switch transistor having a first terminal electrically connected to the first terminal of the second electrostatic storage unit, a second terminal electrically connected to the first node, and a third terminal electrically connected to the first terminal of the second electrostatic storage unit.
7. The electrostatic protection circuit according to claim 6, wherein all of the first switch transistor, the second switch transistor, the third switch transistor, and the fourth switch transistor are N-type transistors, or all of the first switch transistor, the second switch transistor, the third switch transistor, and the fourth switch transistor are P-type transistors.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
DETAILED DESCRIPTION
(4) The technical solutions according to the embodiments of the present disclosure will be described below clearly and thoroughly in conjunction with the accompanying drawings in the embodiments of the present disclosure. It will be apparent that the described embodiments are merely a part of the embodiments of the present disclosure instead of all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present disclosure without contributing any creative labor are within the protection scope of the present disclosure.
(5) As shown in
(6) The first electrostatic storage unit 12 has a first terminal connected to a driving line DL and a second terminal connected to the switch control unit 11.
(7) The second electrostatic storage unit 13 has a first terminal connected to the switch control unit 11 and a second terminal connected to a common electrode trace VCOML.
(8) The switch control unit 11 is configured to control the second terminal of the first electrostatic storage unit 12 to be connected to the common electrode trace VCOML when a voltage variation value of a voltage on the driving line DL during a predetermined time is greater than a first predetermined voltage variation value, and control the first terminal of the second electrostatic storage unit 13 to be connected to the driving line DL when a voltage variation value of a voltage on the common electrode trace VCOML during a predetermined time is greater than a second predetermined voltage variation value.
(9) With the first electrostatic storage unit connected to the driving line and the second electrostatic storage unit connected to the common electrode trace, the electrostatic protection circuit according to the embodiment of the present disclosure can prevent leakage current on the driving line from flowing into the common electrode trace or prevent leakage current on the common electrode trace from flowing into the driving line after the switch control unit is switched off, which otherwise causes voltage fluctuation on the driving line or the common electrode trace thereby affecting the display quality.
(10) In the embodiment described above, a voltage variation value of a voltage on the driving line during a predetermined time being greater than a first predetermined voltage variation value means the voltage on the driving line suddenly changes, and
(11) a voltage variation value of a voltage on the common electrode trace during a predetermined time being greater than a second predetermined voltage variation value means the voltage on the common electrode trace suddenly changes.
(12) Specifically, the driving line may comprise a data scanning line and/or a gate scanning line, and the common electrode trace may comprise a common electrode line and/or a common electrode wiring.
(13) In a specific implementation, the first electrostatic storage unit may comprise a first capacitor and/or the second electrostatic storage unit may comprise a second capacitor.
(14) Specifically, the switch control unit may comprise:
(15) a first switch transistor having a first terminal connected to the driving line, a second terminal connected to the second terminal of the first electrostatic storage unit, and a third terminal connected to a first node;
(16) a second switch transistor having a first terminal connected to the first node, a second terminal connected to the driving line, and a third terminal connected to the first terminal of the second electrostatic storage unit;
(17) a third switch transistor having a first terminal connected to the common electrode trace, a second terminal connected to the first node, and a third terminal connected to the common electrode trace; and
(18) a fourth switch transistor having a first terminal connected to the first terminal of the second electrostatic storage unit, a second terminal connected to the first node, and a third terminal connected to the common electrode trace.
(19) Specifically, the switch control unit may comprise:
(20) a first switch transistor having a first terminal connected to the driving line, a second terminal connected to the driving line, and a third terminal connected to a first node;
(21) a second switch transistor having a first terminal connected to the first node, a second terminal connected to the second terminal of the first electrostatic storage unit, and a third terminal connected to the first terminal of the second electrostatic storage unit;
(22) a third switch transistor having a first terminal connected to the common electrode trace, a second terminal connected to the first node, and a third terminal connected to the common electrode trace; and
(23) a fourth switch transistor having a first terminal connected to the first terminal of the second electrostatic storage unit, a second terminal connected to the first node, and a third terminal connected to the first terminal of the second electrostatic storage unit.
(24) In a specific implementation, all of the first switch transistor, the second switch transistor, the third switch transistor, and the fourth switch transistor are N-type transistors or all of the first switch transistor, the second switch transistor, the third switch transistor, and the fourth switch transistor are P-type transistors.
(25) In a practical operation, the first terminal may be a gate, the second terminal may be a source, and the third terminal may be a drain, or the first terminal may be a gate, the second terminal may be a drain, and the third terminal may be a source.
(26) The electrostatic protection circuit according to the present disclosure will be described below by way of two specific embodiments.
(27) As shown in
(28) The first electrostatic storage unit comprises a first capacitor C11.
(29) The second electrostatic storage unit comprises a second capacitor C12.
(30) The switch control unit comprises:
(31) a first switch transistor TFT11 having a gate connected to the driving line DL, a source connected to a second terminal of the first capacitor C11, and a drain connected to a first node P1;
(32) a second switch transistor TFT12 having a gate connected to the first node P1, a source connected to the driving line DL, and a drain connected to a first terminal of the second capacitor C12;
(33) a third switch transistor TFT13 having a gate connected to the common electrode trace VCOML, a source connected to the first node P1, and a drain connected to the common electrode trace VCOML; and
(34) a fourth switch transistor TFT14 having a gate connected to a first terminal of the second capacitor C12, a source connected to the first node P1, and a drain connected to the common electrode trace VCOML.
(35) All of the TFT11, the TFT12, the TFT13 and the TFT14 are N-type transistors.
(36) In the electrostatic protection circuit according to the first specific embodiment of the present disclosure as shown in
(37) When the electrostatic protection circuit according to the first specific embodiment of the present disclosure as shown in
(38) When a large amount of electrostatic charges are accumulated on the common electrode trace VCOML, the TFT12, the TFT13, and the TFT14 are switched on, and the charges on the common electrode trace VCOML and the charges on the driving line DL achieve equalization, which avoids ESD for the common electrode trace VCOML.
(39) In the specific embodiment shown in
(40) In the embodiment shown in
(41) As shown in
(42) The first electrostatic storage unit comprises a first capacitor C21.
(43) The second electrostatic storage unit comprises a second capacitor C22.
(44) The switch control unit comprises:
(45) a first switch transistor TFT21 having a gate connected to the driving line DL, a source connected to the driving line DL, and a drain connected to a first node P1;
(46) a second switch transistor TFT22 having a gate connected to the first node P1, a source connected to a second terminal of the first capacitor C21, and a drain connected to a first terminal of the second capacitor C22;
(47) a third switch transistor TFT23 having a gate connected to the common electrode trace VCOML, a source connected to the first node P1, and a drain connected to the common electrode trace VCOML; and
(48) a fourth switch transistor TFT24 having a gate connected to a first terminal of the second capacitor C22, a source connected to the first node P1, and a drain connected to a first terminal of the second capacitor C22.
(49) All of the TFT21, the TFT22, the TFT23 and the TFT24 may be N-type transistors.
(50) In the electrostatic protection circuit according to the second specific embodiment of the present disclosure as shown in
(51) When the electrostatic protection circuit according to the second specific embodiment of the present disclosure as shown in
(52) When a large amount of electrostatic charges are accumulated on the common electrode trace VCOML (common electrode line/wiring), the TFT22, the TFT23, and the TFT24 are switched on, the electrostatic charges are released to the driving line DL (data scanning line/gate scanning line), and the charges on the common electrode trace VCOML (common electrode line/wiring) and the charges on the driving line DL (data scanning line/gate scanning line) achieve equalization, which avoids ESD for the common electrode trace VCOML (common electrode line/wiring).
(53) In the second specific embodiment shown in
(54) In the embodiment shown in
(55) A display panel according to an embodiment of the present disclosure comprises the electrostatic protection circuit described above.
(56) A display apparatus according to an embodiment of the present disclosure comprises the display panel described above.
(57) The foregoing is preferred embodiments of the present disclosure and it should be noted that several improvements and modifications can be made by those skilled in the art without departing from the principles of the present disclosure and such improvements and modifications should also be regarded as falling in the protection scope of the present disclosure.