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公开(公告)号:US10795034B2
公开(公告)日:2020-10-06
申请号:US16216473
申请日:2018-12-11
Applicant: LG Display Co., Ltd.
Inventor: Jungyul Yang
IPC: G01T1/24 , G01N23/04 , G01T1/20 , H01L27/146
Abstract: A digital X-ray detector panel and an X-ray system including the same are disclosed, which include a Gate-In-Panel (GIP) structure in which a gate driver element is embedded in the panel, reduce production costs, and are easily applied to a narrow bezel and a flexible panel. A light shielding layer including tungsten or copper having X-ray shielding characteristics is disposed in a gate driver element mounting region, minimizing X-ray damage to the gate driver element embedded in the panel. In order to prevent not only damage caused by X-rays vertically incident upon the panel, but also damage caused by X-rays incident upon the panel at an incidence angle of less than 90°, the light shielding layer extends to overlap at least a portion of the gate driver element mounting region.
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公开(公告)号:US20190196030A1
公开(公告)日:2019-06-27
申请号:US16216473
申请日:2018-12-11
Applicant: LG Display Co., Ltd.
Inventor: Jungyul Yang
Abstract: A digital X-ray detector panel and an X-ray system including the same are disclosed, which include a Gate-In-Panel (GIP) structure in which a gate driver element is embedded in the panel, reduce production costs, and are easily applied to a narrow bezel and a flexible panel. A light shielding layer including tungsten or copper having X-ray shielding characteristics is disposed in a gate driver element mounting region, minimizing X-ray damage to the gate driver element embedded in the panel. In order to prevent not only damage caused by X-rays vertically incident upon the panel, but also damage caused by X-rays incident upon the panel at an incidence angle of less than 90°, the light shielding layer extends to overlap at least a portion of the gate driver element mounting region.
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公开(公告)号:US20240054961A1
公开(公告)日:2024-02-15
申请号:US18362493
申请日:2023-07-31
Applicant: LG Display Co., Ltd.
Inventor: SungSoo Shin , Jungyul Yang , Hanseok Lee , HyeJI Jeon , YounGyoung Chang , WonSang Ryu
IPC: G09G3/3266 , H01L27/12 , H01L29/786 , G09G3/36
CPC classification number: G09G3/3266 , H01L27/124 , H01L27/1255 , H01L29/78633 , G09G3/3677 , G09G2300/0408 , G09G2310/0286 , G09G2300/0426
Abstract: Disclosed is a thin film transistor substrate comprising a substrate; a first thin film transistor on the substrate, the first thin film transistor including a first active layer and a first gate electrode; a second thin film transistor on the substrate, the second thin film transistor including a second active layer and a second gate electrode above the first active layer and the first gate electrode; a first insulating layer between the first gate electrode and the second active layer; and; and a first connection electrode connecting together the first active layer and the second active layer, the first connection electrode extending through a first contact hole in the first insulating layer and is in contact with each of the first active layer and the second active layer and a display apparatus including the same.
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公开(公告)号:US10651227B2
公开(公告)日:2020-05-12
申请号:US16219315
申请日:2018-12-13
Applicant: LG Display Co., Ltd.
Inventor: Jungyul Yang
IPC: H01L27/146 , G01T1/24 , G01T1/20 , H01L31/117 , H01L31/075 , H01L31/08 , H01L31/105 , H01L29/868
Abstract: An array substrate for an X-ray detector and an X-ray detector including the reduces or minimizes a leakage current caused by etching of a PIN layer, and also reduces or minimizes light reaction of the PIN layer within a non-pixel region. The array substrate for the X-ray detector includes an integrated PIN layer formed to cover all pixel regions. Upper electrodes, which are spaced apart from each other according to individual pixel regions, are disposed over the PIN layer. A light shielding portion is disposed between neighboring upper electrodes.
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公开(公告)号:US10529277B2
公开(公告)日:2020-01-07
申请号:US15991045
申请日:2018-05-29
Applicant: LG Display Co., Ltd.
Inventor: Sohyung Lee , Namyong Gong , Sungsoo Shin , Jungyul Yang , Heesung Lee
IPC: G09G3/3225
Abstract: An electroluminescence display is provided. The electroluminescence display comprises data lines and gate lines intersecting each other and pixels arranged in a matrix, wherein each of subpixels of each pixel comprises: a first driver configured to drive a light-emitting element by using a first EM switching element, which switches the current path between a power supply line to which a pixel driving voltage is applied and the light-emitting element in response to a first light-emission control signal, and a first driving element connected between the first EM switching element and the light-emitting element; and a second driver configured to drive the light-emitting element by using a second EM switching element, which switches the current path between the power supply line and the light-emitting element in response to a second light-emission control signal, and a second driving element connected between the second EM switching element and the light-emitting element.
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