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    • 63. 发明授权
    • Reflective active matrix liquid crystal display and apparatus
    • 反射式有源矩阵液晶显示器和装置
    • US07567308B2
    • 2009-07-28
    • US11287561
    • 2005-11-23
    • Masato Furuya
    • Masato Furuya
    • G02F1/136
    • G02F1/133553G02F1/136277
    • A liquid crystal display apparatus has a transparent substrate having a transparent common electrode formed thereon; an active matrix substrate having pixels with reflective pixel electrodes, the pixels being formed in column and row directions on the matrix substrate in a matrix fashion, each pixel having a switching transistor with a gate, a drain and a source, and a signal-charging capacitor; a liquid crystal layer provided between the common electrode and the pixel electrode; a column-signal electrode driver and a row-scanning electrode driver for activating the matrix substrate; column-signal electrodes connected to the column-signal electrode driver, the gate being connected to each column-signal electrode; and row-scanning electrodes connected to the row-scanning electrode driver, the drain being connected to each row-scanning electrode, each pixel electrode being provided at an intersection of each column-signal electrode and each row-scanning electrode, each pixel electrode and the capacitor being connected to the source. The matrix substrate has a first, a second, a third, and a fourth metal layer formed in order, via interlayer insulating layers between adjacent layers, on a wiring layer having the gate formed therein. The column-signal and row-scanning electrodes are formed in the first and second metal layers, respectively. Or, the column-signal electrodes and the row-scanning electrodes are formed in the second and the first layer, respectively. Wirings for carrying signals to be displayed are connected to the column-signal electrode driver, each wiring having a first wiring portion and a second wiring portion formed in the second and third metal layers, respectively, the first and second portions being electrically connected to each other through a via hole between the second and third metal layers.
    • 液晶显示装置具有形成有透明公共电极的透明基板; 具有反射像素电极的像素的有源矩阵基板,像素以矩阵基板的方式在列和行方向上以矩阵形式形成,每个像素具有开关晶体管,栅极,漏极和源极以及信号充电 电容器 设置在公共电极和像素电极之间的液晶层; 列信号电极驱动器和用于激活矩阵基板的行扫描电极驱动器; 连接到列信号电极驱动器的列信号电极,栅极连接到每个列信号电极; 和与行扫描电极驱动器连接的行扫描电极,漏极连接到每个行扫描电极,每个像素电极设置在每个列信号电极和每个行扫描电极的交点处,每个像素电极和 电容器连接到源极。 矩阵基板具有通过相邻层之间的层间绝缘层依次形成在其上形成有栅极的布线层上的第一,第二,第三和第四金属层。 列信号和行扫描电极分别形成在第一和第二金属层中。 或者,列信号电极和行扫描电极分别形成在第二层和第一层中。 用于携带要显示信号的布线连接到列信号电极驱动器,每个布线分别具有形成在第二和第三金属层中的第一布线部分和第二布线部分,第一和第二部分电连接到每个 另一个通过第二和第三金属层之间的通孔。
    • 64. 发明授权
    • Active matrix liquid crystal display
    • 有源矩阵液晶显示
    • US07193601B2
    • 2007-03-20
    • US10623571
    • 2003-07-22
    • Masato Furuya
    • Masato Furuya
    • G09G3/36
    • G09G3/3677G09G3/2011G09G3/3688G09G2300/0842G09G2310/0254G09G2310/0267G09G2310/0275G09G2310/061G09G2310/062G09G2320/0252
    • An active matrix LCD defines a display signal period and a reset period in each vertical scan period. The display signal period is a period to write and hold display signals in pixels in response to a row select pulse generated from an output pulse of a first shift register (SR1). The reset period is a period to write and hold a reset voltage in the pixels in response to a row select pulse generated from an output pulse of a second shift register (SR2). The ratio of the display signal period to the reset period is adjustable in units of horizontal scan time by changing the number “n” of horizontal scan periods to be passed between the time when the first shift register receives a scan start signal (WT) and the time when the second shift register receives a scan start signal (Reset).
    • 有源矩阵LCD在每个垂直扫描周期中定义显示信号周期和复位周期。 显示信号周期是响应于从第一移位寄存器(SR 1)的输出脉冲产生的行选择脉冲而以像素形式写入和保持显示信号的周期。 复位周期是响应于从第二移位寄存器(SR 2)的输出脉冲产生的行选择脉冲而在像素中写入并保持复位电压的周期。 显示信号周期与复位周期的比例可以以水平扫描时间为单位,通过在第一移位寄存器接收到扫描开始信号(WT)和第一移位寄存器接收到扫描开始信号(WT)的时间之间改变要通过的水平扫描周期的数量“n” 第二移位寄存器接收到扫描开始信号(复位)的时间。
    • 66. 发明申请
    • Reflective active matrix liquid crystal display and apparatus
    • US20060113540A1
    • 2006-06-01
    • US11287561
    • 2005-11-23
    • Masato Furuya
    • Masato Furuya
    • H01L29/04
    • G02F1/133553G02F1/136277
    • A liquid crystal display apparatus has a transparent substrate having a transparent common electrode formed thereon; an active matrix substrate having pixels with reflective pixel electrodes, the pixels being formed in column and row directions on the matrix substrate in a matrix fashion, each pixel having a switching transistor with a gate, a drain and a source, and a signal-charging capacitor; a liquid crystal layer provided between the common electrode and the pixel electrode; a column-signal electrode driver and a row-scanning electrode driver for activating the matrix substrate; column-signal electrodes connected to the column-signal electrode driver, the gate being connected to each column-signal electrode; and row-scanning electrodes connected to the row-scanning electrode driver, the drain being connected to each row-scanning electrode, each pixel electrode being provided at an intersection of each column-signal electrode and each row-scanning electrode, each pixel electrode and the capacitor being connected to the source. The matrix substrate has a first, a second, a third, and a fourth metal layer formed in order, via interlayer insulating layers between adjacent layers, on a wiring layer having the gate formed therein. The column-signal and row-scanning electrodes are formed in the first and second metal layers, respectively. Or, the column-signal electrodes and the row-scanning electrodes are formed in the second and the first layer, respectively. Wirings for carrying signals to be displayed are connected to the column-signal electrode driver, each wiring having a first wiring portion and a second wiring portion formed in the second and third metal layers, respectively, the first and second portions being electrically connected to each other through a via hole between the second and third metal layers.