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    • 4. 发明申请
    • MATRIX STRUCTURE OF LED (LIGHT EMITTING DIODE)
    • LED(发光二极管)矩阵结构
    • US20100207850A1
    • 2010-08-19
    • US12371926
    • 2009-02-17
    • CHIH-CHIN "ALAN" YANG
    • CHIH-CHIN "ALAN" YANG
    • G09G3/32
    • G09G3/32G09G2300/06G09G2310/0205
    • The present invention is to provide a matrix structure of LED that is a matrix composed of two horizontal scan lines and two vertical scan lines. There is separately set the first and second LEDs with their one ends connect-assemble with the horizontal line and their other ends connect-assemble with the vertical line at the cross points of each horizontal scan line and each vertical scan line. And, each LED has two or more than two light source points with their positive/plus and negative/minus circuitry reversed. By utilizing the method of alternately outputting the positive/plus and negative/minus voltages to horizontal scan lines and vertical scan lines, the four first LEDs and four second LEDs are driven simultaneously. And, while the positive/plus and negative/minus voltages are alternately output, every LEDs all have one light source points lightened such that a matrix is formed to control sixteen LEDs and has the form with eight light source points alternately flashing.
    • 本发明提供一种由两条水平扫描线和两条垂直扫描线组成的矩阵的矩阵结构。 单独设置第一和第二LED,其一端与水平线连接,并且其另一端在每条水平扫描线和每条垂直扫描线的交叉点处与垂直线连接。 并且,每个LED具有两个或两个以上的光源点,其正/负和负/负电路反转。 通过利用将正/负和负/负电压交替地输出到水平扫描线和垂直扫描线的方法,四个第一LED和四个第二LED同时被驱动。 并且,当正/负和负/负电压交替输出时,每个LED都具有点亮的一个光源点,使得形成矩阵来控制十六个LED并且具有交替闪烁的八个光源点的形式。
    • 5. 发明授权
    • Liquid crystal display having alignment layer using ion bombarded amorphous material 100Å thickness or less
    • 使用离子轰击的无定形物质的取向层的液晶显示器的厚度以下
    • US06346975B2
    • 2002-02-12
    • US09129323
    • 1998-08-04
    • Praveen ChaudhariJames Andrew LaceyShui-Chin Alan Lien
    • Praveen ChaudhariJames Andrew LaceyShui-Chin Alan Lien
    • G02F11337
    • G02F1/1337G02F1/133723G02F2001/133397
    • A liquid crystal display device has first and second substrates, a first electrode layer overlying one surface of the first substrate, and a second electrode layer overlying one surface of the second substrate. A first alignment layer having a thickness of 100 Å or less overlies the first electrode layer, and a second alignment layer overlies the second electrode layer, and a liquid crystal material is disposed between the alignment layers. In one preferred embodiment, the second alignment layer also has a thickness of 100 Å or less, and each alignment layers is a polyimide layer. A method for manufacturing a liquid crystal display device is also provided. According to the method, first and second substrates are provided, a first electrode layer is deposited over the first substrate, and a second electrode layer is deposited over the second substrate. A first alignment layer having a thickness of 100 Å or less is deposited over the first electrode layer, and a second alignment layer is deposited over the second electrode layer. Additionally, the first and second substrates are arranged so that the alignment layers face one another and a space is formed between the substrates. A liquid crystal material is disposed in the space between the first and second substrates.
    • 液晶显示装置具有第一和第二基板,覆盖第一基板的一个表面的第一电极层和覆盖在第二基板的一个表面上的第二电极层。 厚度为100以下的第一配向层覆盖在第一电极层上,第二取向层覆盖第二电极层,液晶材料配置在取向膜之间。 在一个优选实施例中,第二取向层的厚度也为100以下,各取向层为聚酰亚胺层。 还提供了一种制造液晶显示装置的方法。 根据该方法,提供第一和第二基板,第一电极层沉积在第一基板上,并且第二电极层沉积在第二基板上。 在第一电极层上沉积厚度为或以下的第一取向层,并且第二取向层沉积在第二电极层上。 此外,第一和第二基板被布置成使得取向层彼此面对并且在基板之间形成空间。 液晶材料设置在第一和第二基板之间的空间中。