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公开(公告)号:US09263475B2
公开(公告)日:2016-02-16
申请号:US14140427
申请日:2013-12-24
Applicant: InnoLux Corporation
Inventor: Chung-Yi Wang , Yao-Lien Hsieh
IPC: H01L27/12 , H01L29/417
CPC classification number: H01L27/124 , H01L27/1222 , H01L29/41733
Abstract: A thin film transistor (TFT) substrate comprises a substrate, a plurality of pixel electrodes, a gate layer, an active layer, a first source layer and a second source layer, and a drain layer. The pixel electrodes are disposed on the substrate. The gate layer is disposed on the substrate. The active layer is disposed corresponding to the gate layer. The first source layer and the second source layer contact the active layer respectively. The drain layer contacts the active layer and is electrically coupled to one of the pixel electrodes. The gate layer, the active layer, the first source layer and the drain layer constitute a first transistor. The gate layer, the active layer, the second source layer and the drain layer constitute a second transistor. When the first and second transistors are disabled, the first and second source layers are electrically isolated from each other.
Abstract translation: 薄膜晶体管(TFT)基板包括基板,多个像素电极,栅极层,有源层,第一源极层和第二源极层以及漏极层。 像素电极设置在基板上。 栅极层设置在基板上。 有源层对应于栅极层设置。 第一源层和第二源层分别接触有源层。 漏极层接触有源层并电耦合到像素电极之一。 栅极层,有源层,第一源极层和漏极层构成第一晶体管。 栅极层,有源层,第二源极层和漏极层构成第二晶体管。 当禁用第一和第二晶体管时,第一和第二源极彼此电隔离。
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公开(公告)号:US09823525B2
公开(公告)日:2017-11-21
申请号:US15001346
申请日:2016-01-20
Applicant: InnoLux Corporation
Inventor: Li-Wei Sung , Chung-Yi Wang , An-Chang Wang , Yao-Lien Hsieh
IPC: G02F1/136 , G02F1/1343 , G02F1/1362
CPC classification number: G02F1/134336 , G02F1/136286 , G02F2001/134318 , G02F2001/134345
Abstract: A display panel is provided. The display panel includes a first sub-pixel row including a plurality of sub-pixels electrically connecting to a scan line; and a second sub-pixel row including a plurality of sub-pixels, wherein the scan line overlaps with an area of the sub-pixels of the second sub-pixel row, and the scan line overlaps with an edge of a first sub-pixel of the sub-pixels of the first sub-pixel row, wherein the edge is adjacent to a driving transistor of the first sub-pixel.
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公开(公告)号:US09159281B2
公开(公告)日:2015-10-13
申请号:US13908010
申请日:2013-06-03
Applicant: Innolux Corporation
Inventor: Bo-Chin Tsuei , Yao-Lien Hsieh , Jian-Cheng Chen , Chung-Yi Wang
CPC classification number: G09G3/3611 , G09G3/3648 , G09G3/3655 , G09G2320/02 , G09G2320/0233 , G09G2320/0271 , G09G2320/04 , G09G2320/043 , G09G2320/0613 , G09G2320/062 , G09G2320/0626 , G09G2320/0646
Abstract: A driving method applied in a display is provided. The display includes M scan lines, N data lines, M control lines and M×N pixels. M and N are natural numbers greater than 1. The driving method includes the following steps of: driving M scan lines in M scan periods respectively; providing a data voltage to each of the N data lines in each of the M scan periods; driving the first to the (M−K)th control lines in the (K+1)th to the Mth scan periods respectively to turn on the discharge switch in each of the pixels on the first to the (M−K)th control lines; and driving the second to the Kth control lines to trigger level shifting events in the first to the (K−1)th scan periods respectively, so that level shifting events are triggered on a scan and control lines in the first to the (K−1)th scan periods.
Abstract translation: 提供了一种应用于显示器的驱动方法。 显示器包括M条扫描线,N条数据线,M条控制线和M×N个像素。 M和N是大于1的自然数。驱动方法包括以下步骤:分别在M个扫描周期中驱动M个扫描线; 在每个所述M个扫描周期中向所述N个数据线中的每一个提供数据电压; 将第(K + 1)至第M扫描周期中的(M-K)个控制线分别驱动到第一至第(M-K)个控制中的每个像素中的放电开关 线条 并且将第二至第K控制线驱动到第一到第(K-1)个扫描期间的触发电平转换事件,从而在第一至第(K-1)扫描期间的扫描和控制线上触发电平转换事件, 1)扫描周期。
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公开(公告)号:US20130328756A1
公开(公告)日:2013-12-12
申请号:US13908010
申请日:2013-06-03
Applicant: Innolux Corporation
Inventor: Bo-Chin Tsuei , Yao-Lien Hsieh , Jian-Cheng Chen , Chung-Yi Wang
IPC: G09G3/36
CPC classification number: G09G3/3611 , G09G3/3648 , G09G3/3655 , G09G2320/02 , G09G2320/0233 , G09G2320/0271 , G09G2320/04 , G09G2320/043 , G09G2320/0613 , G09G2320/062 , G09G2320/0626 , G09G2320/0646
Abstract: A driving method applied in a display is provided. The display includes M scan lines, N data lines, M control lines and M×N pixels. M and N are natural numbers greater than 1. The driving method includes the following steps of: driving M scan lines in M scan periods respectively; providing a data voltage to each of the N data lines in each of the M scan periods; driving the first to the (M−K)th control lines in the (K+1)th to the Mth scan periods respectively to turn on the discharge switch in each of the pixels on the first to the (M−K)th control lines; and driving the second to the Kth control lines to trigger level shifting events in the first to the (K−1)th scan periods respectively, so that level shifting events are triggered on a scan and control lines in the first to the (K−1)th scan periods.
Abstract translation: 提供了一种应用于显示器的驱动方法。 显示器包括M条扫描线,N条数据线,M条控制线和M×N个像素。 M和N是大于1的自然数。驱动方法包括以下步骤:分别在M个扫描周期中驱动M个扫描线; 在每个所述M个扫描周期中向所述N个数据线中的每一个提供数据电压; 分别在(K + 1)到第M扫描周期中的(M-K)个控制线上驱动第一至第(M-K)个控制线上的每个像素中的放电开关; 并且将第二至第K控制线驱动到第一到第(K-1)个扫描期间的触发电平转换事件,从而在第一至第(K-1)扫描期间的扫描和控制线上触发电平转换事件, 1)扫描周期。
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公开(公告)号:US10043436B2
公开(公告)日:2018-08-07
申请号:US15184561
申请日:2016-06-16
Applicant: InnoLux Corporation
Inventor: Li-Jin Wang , Yao-Lien Hsieh , Chan-Feng Chiu , Chung-Yi Wang
IPC: G09G3/20
Abstract: A display device including a first pixel, a second pixel, and a control unit is provided. The first and second pixels are coupled to a data line. The control unit generates a first original image signal and a second original image signal required by the first and second pixels in a frame time according to an analog image and generates a first output image signal and a second output image signal according to the difference between the first and second original image signals. In the frame time, the control unit sequentially provides the first and second output image signals to the first and second pixels via the data line.
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公开(公告)号:US09875704B2
公开(公告)日:2018-01-23
申请号:US14656474
申请日:2015-03-12
Applicant: InnoLux Corporation
Inventor: Li-Wei Sung , Chung-Yi Wang , Yao-Lien Hsieh , Wei-Jung Chiu
IPC: G09G3/36
CPC classification number: G09G3/3648 , G09G2300/0447 , G09G2300/0465 , G09G2300/0876 , G09G2320/0242
Abstract: A liquid crystal display panel includes multiple pixel units each connected to a data line and a gate line. The pixel unit defines a first region and a second region. A first liquid crystal capacitor is disposed in the first region. A first transistor is disposed in the first region and is connected between the data line and the first liquid crystal capacitor, and has a control electrode connected to the gate line. A second liquid crystal capacitor is disposed in the second region. A second transistor is disposed in the second region and is connected between the data line and the second liquid crystal capacitor, and has a control electrode connected to the gate line. A third transistor is disposed in the second region and is connected between a common voltage and the second transistor and has a control electrode connected to the gate line.
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公开(公告)号:US09691792B2
公开(公告)日:2017-06-27
申请号:US14990110
申请日:2016-01-07
Applicant: INNOLUX CORPORATION
Inventor: Chung-Yi Wang , Yao-Lien Hsieh
IPC: H01L33/00 , H01L27/12 , H01L29/417
CPC classification number: H01L27/124 , H01L27/1222 , H01L29/41733
Abstract: A thin film transistor (TFT) substrate comprises a substrate, a plurality of pixel electrodes, a gate layer, an active layer, a first source layer and a second source layer, and a drain layer. The pixel electrodes are disposed on the substrate. The gate layer is disposed on the substrate. The active layer is disposed corresponding to the gate layer. The first source layer and the second source layer contact the active layer respectively. The drain layer contacts the active layer and is electrically coupled to one of the pixel electrodes. The gate layer, the active layer, the first source layer and the drain layer constitute a first transistor. The gate layer, the active layer, the second source layer and the drain layer constitute a second transistor. When the first and second transistors are disabled, the first and second source layers are electrically isolated from each other.
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