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    • 91. 发明公开
    • DATA COMPENSATOR AND DISPLAY DEVICE INCLUDING THE SAME
    • DATENKOMPENSATOR UND ANZEIGEVORRICHTUNG DAMIT
    • EP3051527A1
    • 2016-08-03
    • EP15187607.5
    • 2015-09-30
    • Samsung Display Co., Ltd.
    • LEE, Min-WooKIM, Seong-Kyun
    • G09G3/20G09G3/32G09G3/34
    • G09G3/3275G09G3/20G09G3/3208G09G2310/08G09G2320/0257G09G2320/0271G09G2320/0276G09G2320/046G09G2320/0673G09G2360/16
    • A data compensator includes first logic, second logic, third logic, fourth logic, and fifth logic. The first logic calculates block compensation coefficients for blocks in a first frame based on first pixel data of the first frame. The second logic generates first gamma applied pixel data based on the first pixel data of the first frame and to generate second gamma applied pixel data based on the first gamma applied pixel data and second pixel data of a second frame adjacent the first frame. The third logic selects a number of the block compensation coefficients based on a pixel coordinate. The fourth logic generates a pixel compensation coefficient corresponding to the second pixel data by interpolating the selected block compensation coefficients based on the pixel coordinate. The fifth logic generates output pixel data based on the second gamma applied pixel data and the pixel compensation coefficient.
    • 数据补偿器包括第一逻辑,第二逻辑,第三逻辑,第四逻辑和第五逻辑。 第一逻辑基于第一帧的第一像素数据来计算第一帧中的块的块补偿系数。 第二逻辑基于第一帧的第一像素数据生成第一伽马应用像素数据,并且基于与第一帧相邻的第一伽马应用像素数据和第二帧的第二像素数据生成第二伽马应用像素数据。 第三逻辑基于像素坐标来选择多个块补偿系数。 第四逻辑通过基于像素坐标内插所选择的块补偿系数来生成与第二像素数据对应的像素补偿系数。 第五逻辑基于第二伽马应用像素数据和像素补偿系数产生输出像素数据。
    • 94. 发明公开
    • SHIFT REGISTER UNIT AND DRIVE METHOD THEREOF, GATE DRIVE CIRCUIT AND DISPLAY DEVICE
    • SCHIEBEREGISTEREINHEIT,ANSTEUERVERFAHRENDAFÜR,GATETREIBERSCHALTUNG UND ANZEIGEVORRICHTUNG
    • EP3029662A1
    • 2016-06-08
    • EP13866488.3
    • 2013-10-18
    • BOE Technology Group Co., Ltd.Chengdu BOE Optoelectronics Technology Co., Ltd.
    • HU, LikeQI, Xiaojing
    • G09G3/36
    • G11C19/28G09G3/20G09G2300/0465G09G2310/0267G09G2310/0286G11C19/184
    • There is provided a shift register unit and driving method thereof, a gate driving circuit and display device. By setting the voltage stabilizing capacitor (C) connected to the pull-up node (P), the shift register unit utilizes the voltage stabilizing capacitor (C2) to stabilize the potential at the pull-up node (P), so as to make the signal output from the shift register unit more stable; and at the same time, uses a very small quantity of transistors and capacitors to compose the shift register unit, so that the wiring area of the gate driving circuit is greatly reduced to provide a technical support for the design of a liquid crystal display device with a narrower frame. In the meantime, since the structure of the gate driving circuit is simplified, the manufacturing process of the gate driving circuit is simplified and the cost for manufacturing is reduced. Further, the shift register unit quickly and effectively pulls down the output signal to the low potential through two pull-down processes, thereby enhancing the pull-down capability of the gate driving circuit.
    • 提供了移位寄存器单元及其驱动方法,门驱动电路和显示装置。 通过设置连接到上拉节点(P)的稳压电容器(C),移位寄存器单元利用稳压电容器(C2)稳定上拉节点(P)的电位,从而使 移位寄存器单元输出的信号更稳定; 同时使用非常少量的晶体管和电容器组成移位寄存器单元,从而大大减少了栅极驱动电路的布线面积,为设计具有 一个较窄的框架。 同时,由于栅极驱动电路的结构简化,栅极驱动电路的制造工艺简化,制造成本降低。 此外,移位寄存器单元通过两个下拉处理快速有效地将输出信号拉低至低电位,从而增强了栅极驱动电路的下拉能力。
    • 97. 发明公开
    • BILDSCHIRM UND VERFAHREN ZUR SICHEREN DARSTELLUNG VON INFORMATIONEN
    • VILFAHREN ZUR SICHEREN DARSTELLUNG VON INFORMATIONEN的BILDSCHIRM
    • EP2992526A1
    • 2016-03-09
    • EP14715020.5
    • 2014-04-04
    • Sioptica GmbHSecco GmbH
    • SCHWARZ, JuergenEMMRICH, SvenDAEHNERT, Ullrich
    • G09G3/20
    • G09G3/20G02F1/13306G02F1/1333G02F2001/133374G09G2300/023G09G2320/068G09G2358/00
    • The invention relates to a display screen comprising a background grid (1) with light-emitting background grid elements of a first type (2) and light-emitting or light-blocking background grid elements of a second type (3). A foreground grid (4) having completely light-transmissive foreground grid elements (5) and light-attenuating foreground grid elements (6) is arranged in front of the background grid (1) as seen from the direction of a viewer. The foreground gird (4) is arranged at a predetermined distance from the background grid (1) and is aligned in a predetermined lateral position perpendicular to the distance from the background grid (1). In such a display screen for secure representation of information, the completely light-transmissive foreground grid elements (5) and the light-attenuating foreground grid elements (6) are distributed stochastically in a ratio of approximately 50:50 in at least one foreground region of the foreground grid (4). This distribution is used as a key for coding the background grid (1). In at least one background region corresponding to the foreground region, a base coding of the background grid (1) is defined as an inverted distribution of the light-transmissive and light-attenuating foreground grid elements (5, 6), such that light-attenuating foreground grid elements (6) correspond to light-emitting elements background grid elements of the first type (2), and completely light-transmissive foreground grid elements (5) correspond to light-emitting or light-blocking background grid elements of the second type (3). In at least one selected field (7), which defines an information item and lies in the at least one background region, the distribution of light-blocking and light-emitting background grid elements (2, 3) is inverted relative to the base coding, at least in part, as a coding of the information. The lateral dimensions of the foreground grid elements (5, 6), the distance and the lateral position of the foreground grid (4) are matched in relation to the background grid (1) in such a manner that a viewer looking at the foreground grid (4) perceives the coded information in a decoded form, on the basis of a contrast difference and/or color difference in relation to those fields of the background grid (1) that are base-coded, only from one direction of view or one view angle range of up to ±50° about the view direction. The invention also relates to a method for secure representation of information on such a display screen.
    • 一种用于安全地表示信息的显示屏幕,其包括具有第一类型的发光背景网格元件和第二类型的发光或遮光背景网格元件的背景格栅。 具有完全透光的前景网格元件和光衰减前景网格元素的前景网格(4)被布置在背景网格的前面。 前景网格元素的横向尺寸,前景网格的距离和横向位置相对于背景网格被匹配,使得观看前景格栅的观看者以解码的形式感知编码信息,基于 相对于基底编码的背景网格的那些场的对比度差异和/或色差,仅从视图方向的一个方向或一个视角范围高达±50°。 此外,一种用于在这样的显示屏幕上安全地表示信息的方法
    • 98. 发明公开
    • DISPLAY DRIVE CIRCUIT AND DRIVE METHOD THEREOF, AND DISPLAY DEVICE
    • 显示驱动电路及其驱动方法,以及显示装置
    • EP2983161A1
    • 2016-02-10
    • EP13863667.5
    • 2013-05-20
    • BOE Technology Group Co., Ltd.Beijing BOE Display Technology Co., Ltd.
    • WU, XingjiLEE, Seung MinXU, YizhenZHANG, Liang
    • G09G3/20
    • G09G3/20G09G2310/0213G09G2310/0286G09G2320/0209G09G2320/0247G11C19/28
    • The present disclosure relates to the display technique. Disclosed is a display driving circuit, comprising: a gate line driving circuit, configured to separate gate line driving signals of adjacent rows according to a first output enable signal; a shielding signal generation circuit, configured to trigger and generate a shielding signal when the gate line driving signal needs to be turned off; and a gate line shielding circuit, configured to shield the first output enable signal according to the shielding signal so as to turn off the gate line driving signal, wherein the first output enable signal is inputted from a first inputting terminal of the gate line shielding circuit, the shielding signal is inputted from a second inputting terminal of the gate line shielding circuit, and an outputting terminal of the gate line shielding circuit is connected to the gate line driving circuit. The display driving circuit, a driving method thereof and a display apparatus according to the embodiments of the present disclosure are capable of shielding the first output enable signal directly according to the shielding signal so as to turn off the gate line driving signal and shield the data on the corresponding gate lines, thereby they can avoid occurring of abnormal statuses with the first output enable signal and also can save the cost and space of the circuit.
    • 本公开涉及显示技术。 本发明公开了一种显示驱动电路,包括:栅极线驱动电路,用于根据第一输出使能信号分离相邻行的栅极线驱动信号; 屏蔽信号生成电路,用于当需要关闭所述栅线驱动信号时,触发并生成屏蔽信号; 以及栅极线屏蔽电路,用于根据所述屏蔽信号屏蔽所述第一输出使能信号,以关闭所述栅极线驱动信号,其中,所述第一输出使能信号从所述栅极线屏蔽电路的第一输入端输入 屏蔽信号从栅线屏蔽电路的第二输入端输入,栅线屏蔽电路的输出端连接到栅线驱动电路。 根据本发明实施例的显示驱动电路及其驱动方法和显示装置能够根据屏蔽信号直接屏蔽第一输出使能信号,从而关闭栅极线驱动信号并屏蔽数据 在相应的栅极线上,从而可以避免第一输出使能信号发生异常状态,并且还可以节省电路的成本和空间。
    • 100. 发明公开
    • DISPLAY APPARATUS
    • 显示装置
    • EP2963637A1
    • 2016-01-06
    • EP15161053.2
    • 2015-03-26
    • Samsung Display Co., Ltd.
    • Jeon, Sang-JinKim, Il GonSong, Hee-Rim
    • G09G3/20
    • G09G3/2085G09G3/20G09G2300/026G09G2300/0408G09G2300/0413G09G2300/0426G09G2300/043G09G2310/0202G09G2310/0278G09G2310/0281G09G2310/08G09G2320/0247
    • A display apparatus includes a display panel including a driving part arranged along one side of the display panel, the display panel including a plurality of first gate lines that zigzag across the display in a diagonal direction between the first and second directions by alternately extending in the first and the second directions. The display device includes a first display area and a second display area, pixels within the first display area always receiving gate signals from a driving part connected to an end of the first gate lines. Within the second display area, a second gate lines extending in the first direction may be electrically connected to the first gate lines that relay gate signals to the first gate lines. This results in a reduced peripheral area of the display area, so that many displays can be combined together to produce a single image.
    • 一种显示装置包括显示面板,该显示面板包括沿显示面板的一侧布置的驱动部分,显示面板包括多条第一选通线,多条第一选通线沿第一方向和第二方向之间的对角线方向交替延伸 第一和第二方向。 显示装置包括第一显示区域和第二显示区域,第一显示区域内的像素总是从连接到第一栅极线的一端的驱动部分接收栅极信号。 在第二显示区域内,沿第一方向延伸的第二栅极线可以电连接到中继选通信号到第一栅极线的第一栅极线。 这导致显示区域的外围区域减小,从而可以将许多显示器组合在一起以产生单个图像。