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    • 1. 发明申请
    • SYSTEMS AND METHODS FOR SUPPORTING A BEZEL REGION OF A DISPLAY DEVICE
    • 用于支持显示装置的贝兹区域的系统和方法
    • WO2017019208A1
    • 2017-02-02
    • PCT/US2016/038740
    • 2016-06-22
    • PIXTRONIX, INC.
    • FIKE III, EugeneSPARKS, Andrew WilliamFIJOL, JohnDUNN, Tyler
    • G02B26/02
    • H05K7/02G02B26/023G09G3/3433H05K3/30H05K5/0017
    • This disclosure provides systems, methods, and apparatus for supporting a bezel region of a display device. A display device can include a first substrate and a second substrate coupled by an edge seal. An array of shutter-based display elements can be positioned within an image forming region between the first and second substrates. A plurality of mechanical supports can be positioned within a bezel region outside of the image-rendering region and within the edge seal. Along a side of the bezel region that extends in a direction perpendicular to a direction of shutter motion, adjacent mechanical supports can be separated from one another by a gap that is longer than each of the mechanical supports in the direction perpendicular to the direction of shutter motion.
    • 本公开提供了用于支持显示装置的边框区域的系统,方法和装置。 显示装置可以包括通过边缘密封件联接的第一基板和第二基板。 基于快门的显示元件的阵列可以位于第一和第二基板之间的图像形成区域内。 多个机械支撑件可以位于图像再现区域外侧和边缘密封件内的边框区域内。 沿着与快门运动方向垂直的方向延伸的边框区域的一侧,相邻的机械支撑件可以在与快门方向垂直的方向上比每个机械支撑件更长的间隙彼此分离 运动。
    • 3. 发明申请
    • SIGNAL ADJUSTMENT CIRCUIT
    • 信号调整电路
    • WO2016094326A1
    • 2016-06-16
    • PCT/US2015/064337
    • 2015-12-07
    • PIXTRONIX, INC.
    • PAPPAS, IliasNI CHLEIRIGH, Cait
    • G09G3/34G09G3/00
    • G09G5/00G09G3/006G09G2300/0842G09G2300/0866G09G2310/0251G09G2320/029
    • This disclosure provides systems, methods and apparatus for adjusting a voltage applied to a transistor based on a change in an electrical characteristic. In one aspect, a system includes an array of display elements each including an electrical element having a first terminal and a transistor. Each electrical element is capable of at least a first and a second configuration based on an electrical state of the transistor. A current sensor is capable of sensing a current through at least one of the transistors. A compensation circuit compares the current with a reference current and provides at least one adjustment signal. A display driver provides an update voltage based on the at least one adjustment signal, and also provides a data signal for each of the display elements. The electrical state of each of the transistors is based on the update voltage and the data signal.
    • 本公开提供了用于基于电特性的变化来调整施加到晶体管的电压的系统,方法和装置。 一方面,一种系统包括显示元件阵列,每个显示元件包括具有第一端子和晶体管的电气元件。 每个电气元件能够基于晶体管的电状态至少第一和第二配置。 电流传感器能够感测通过至少一个晶体管的电流。 补偿电路将电流与参考电流进行比较,并提供至少一个调整信号。 显示驱动器基于至少一个调整信号提供更新电压,并且还为每个显示元件提供数据信号。 每个晶体管的电状态基于更新电压和数据信号。
    • 4. 发明申请
    • HYBRID SCALAR-VECTOR DITHERING DISPLAY METHODS AND APPARATUS
    • 混合标量矢量显示方法和装置
    • WO2016064561A1
    • 2016-04-28
    • PCT/US2015/053995
    • 2015-10-05
    • PIXTRONIX, INC.
    • BUCKLEY, Edward
    • H04N1/52H04N1/54G09G3/20H04N9/31G09G3/34
    • G09G5/02G09G3/2022G09G3/2044G09G3/3433G09G5/026G09G2310/0235G09G2320/0242G09G2320/0266G09G2340/06G09G2360/16H04N1/52H04N1/54H04N9/3111
    • This disclosure provides systems, methods, and apparatus for generating images on a display using a hybrid scalar-vector dithering process. The hybrid scalar-vector dithering process includes a combination of a scalar dithering process and a vector dithering process. In the scalar dithering process, at least one color subfield is dithered based on the data within just that color subfield. In the vector dithering process, data across multiple color subfields is dithered together. In some implementations, the color subfield processed by the scalar dithering process is a composite color subfield, such as white (W), yellow (Y), cyan (C) and magenta (M). The color subfields processed by the vector dithering process can be component color subfields, such as red (R), green (G), and blue (B) color subfields. In some implementations, an identical dither mask is applied in both the vector and scalar portions of the hybrid scalar-vector dithering process.
    • 本公开提供了使用混合标量矢量抖动处理在显示器上生成图像的系统,方法和装置。 混合标量矢量抖动处理包括标量抖动处理和矢量抖动处理的组合。 在标量抖动处理中,基于该颜色子字段内的数据,至少一个彩色子场被抖动。 在矢量抖动过程中,跨多个颜色子场的数据被抖动在一起。 在一些实现中,由标量抖动处理处理的彩色子场是诸如白色(W),黄色(Y),青色(C)和品红色(M)的复合颜色子场。 通过矢量抖动处理处理的彩色子场可以是分量颜色子场,例如红色(R),绿色(G)和蓝色(B)彩色子场。 在一些实现中,将相同的抖动掩码应用于混合标量向量抖动处理的向量和标量部分。
    • 9. 发明申请
    • DISPLAY WITH FIELD SEQUENTIAL COLOR (FSC) FOR OPTICAL COMMUNICATION
    • 用于光通信的场地顺序颜色(FSC)显示
    • WO2016018558A1
    • 2016-02-04
    • PCT/US2015/038784
    • 2015-07-01
    • PIXTRONIX, INC.
    • PAN, Paul Penchin
    • G09G3/34G09G3/20
    • G09G3/346G09G3/2085G09G3/3433G09G2300/0426G09G2300/0452G09G2310/0235G09G2310/0237G09G2330/06G09G2360/142G09G2370/04G09G2370/18
    • This disclosure provides systems, methods and apparatus for providing displays. In one aspect, a display has an optical data path for transmitting data between a controller and an array of display elements. The controller couples to a transmitter for transmitting an optical signal and the display elements couple to a receiver that receives optical signals. The transmitter transmits an optical signal that carries control data for controlling the operation of the display element. The receiver receives the control data and provides the control data to a driver that uses the control data to control the operation of the display element. In some implementations, the control data is multiplexed with image data and communication data to provide an optical data path that carries image data and control data for forming an image and that carries communication data that can propagate through the display and to a remote location.
    • 本公开提供了用于提供显示器的系统,方法和装置。 在一个方面,显示器具有用于在控制器和显示元件阵列之间传送数据的光学数据路径。 控制器耦合到用于发送光信号的发射机,并且显示元件耦合到接收光信号的接收机。 发射机发送携带用于控制显示元件的操作的控制数据的光信号。 接收器接收控制数据,并将控制数据提供给使用控制数据的驱动器来控制显示元件的操作。 在一些实施方案中,控制数据与图像数据和通信数据进行多路复用,以提供携带用于形成图像的图像数据和控制数据的光学数据路径,并且其携带可以通过显示器和远程位置传播的通信数据。
    • 10. 发明申请
    • DISPLAY APPARATUS INCORPORATING OPTICALLY INACTIVE DISPLAY ELEMENTS
    • 显示设备包含光学无效显示元件
    • WO2016010660A1
    • 2016-01-21
    • PCT/US2015/035806
    • 2015-06-15
    • PIXTRONIX, INC.
    • SPARKS, Andrew WilliamDE GROOT, Wilhelmus Adrianus
    • G02B26/02
    • G02B26/04G09G3/3433G09G2300/0413G09G2310/0232
    • This disclosure provides systems, methods, and apparatus for displaying images on a display. An image-forming region is formed by a plurality of display elements each having a movable shutter component. Images are generated by controlling the shutter component of each of the plurality of display elements to move into open or closed positions depending on a desired light output intensity. Optically inactive display elements are positioned outside of the image-forming region. The position of the movable shutter component of each optically inactive display element is selected based on the next state of the movable component of at least one display element. The optically inactive display elements can increase the speed of the shutter components of display elements by displacing a fluid that surrounds the display elements and the optically inactive display elements.
    • 本公开提供了用于在显示器上显示图像的系统,方法和装置。 图像形成区域由各自具有可移动快门部件的多个显示元件形成。 通过根据期望的光输出强度控制多个显示元件中的每一个的快门分量以进入打开或关闭位置来产生图像。 光学无效显示元件位于图像形成区域的外部。 基于至少一个显示元件的可移动部件的下一个状态来选择每个光学无效显示元件的可移动快门部件的位置。 光学无效显示元件可以通过移动包围显示元件和光学无效显示元件的流体来增加显示元件的快门部件的速度。