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    • 1. 发明申请
    • DISPLAY PANEL
    • 显示面板
    • US20120169576A1
    • 2012-07-05
    • US13335977
    • 2011-12-23
    • Wen-Chun WangMing-Chang YuWan-Jen TsaiMin-Shian TsaiHsi-Rong Han
    • Wen-Chun WangMing-Chang YuWan-Jen TsaiMin-Shian TsaiHsi-Rong Han
    • G09G3/36
    • G02F1/13394G02F2001/133776
    • A display panel including a first substrate, a second substrate, a liquid crystal layer, a pixel structure array, a common electrode layer, and spacers is provided. The liquid crystal layer is disposed between the first substrate and the second substrate opposite thereto. The pixel structure array disposed on the first substrate is located between the liquid crystal layer and the first substrate and includes scan lines, data lines, active devices, and pixel electrodes. Each active device is connected to one scan line and one data line intersected therewith. Each pixel electrode crosses over one data line and one active device and is electrically connected to the corresponding one active device. The common electrode layer is disposed on the second substrate. The spacers disposed between the first substrate and the second substrate are located above the scan lines. The spacers are respectively located at centers of the pixel electrodes.
    • 提供了包括第一基板,第二基板,液晶层,像素结构阵列,公共电极层和间隔件的显示面板。 液晶层设置在第一基板和与其相对的第二基板之间。 设置在第一基板上的像素结构阵列位于液晶层和第一基板之间,并且包括扫描线,数据线,有源器件和像素电极。 每个有源器件连接到一条扫描线和与之相交的一条数据线。 每个像素电极跨越一条数据线和一个有源器件,并电连接到相应的一个有源器件。 公共电极层设置在第二基板上。 设置在第一基板和第二基板之间的间隔件位于扫描线上方。 间隔物分别位于像素电极的中心。
    • 4. 发明授权
    • Electrowetting pixel structure
    • 电泳像素结构
    • US08213090B2
    • 2012-07-03
    • US12875769
    • 2010-09-03
    • Chih-Yuan WangHsi-Rong HanChien-Ting ChanWan-Jen TsaiWei-Yuan ChengKuo-Lung Lo
    • Chih-Yuan WangHsi-Rong HanChien-Ting ChanWan-Jen TsaiWei-Yuan ChengKuo-Lung Lo
    • G02B1/06
    • G02B26/004
    • An electrowetting pixel structure includes a substrate, a hydrophobic dielectric layer, a non-polar liquid, a polar liquid, at least one electrode, and at least one contact hole. The hydrophobic dielectric layer is formed on the substrate, the non-polar liquid covers one surface of the hydrophobic dielectric layer, and the polar liquid is provided on the hydrophobic dielectric layer where the non-polar liquid and the polar liquid are immiscible. The electrode is formed on the substrate and divides the substrate into an electrode section and a non-electrode section. When a voltage is applied to the electrowetting pixel structure, the non-polar liquid contracts on the hydrophobic dielectric layer and is confined to an area substantially overlapping the non-electrode section. The contact hole is formed on the substrate at a position away from the non-electrode section of the electrowetting pixel structure.
    • 电润湿像素结构包括基底,疏水介电层,非极性液体,极性液体,至少一个电极和至少一个接触孔。 疏水性介电层形成在基板上,非极性液体覆盖疏水性介电层的一个表面,极性液体设置在非极性液体和极性液体不混溶的疏水性介电层上。 电极形成在基板上,并将基板分成电极部分和非电极部分。 当向电润湿像素结构施加电压时,非极性液体在疏水性介电层上收缩并且被限制在与非电极部分基本重叠的区域上。 接触孔在远离电润湿像素结构的非电极部分的位置处形成在基板上。
    • 5. 发明申请
    • Method for detecting signal and estimating symbol timing
    • 检测信号和估计符号定时的方法
    • US20060140293A1
    • 2006-06-29
    • US11183214
    • 2005-07-15
    • Ko-Yin LaiWan-Jen TsaiHung-Jua Ting
    • Ko-Yin LaiWan-Jen TsaiHung-Jua Ting
    • H04K1/10H04L27/06
    • H04L27/2662H04L27/2613H04L27/2659H04L27/2675
    • A method for detecting signal and estimating symbol timing is provided. The method is applicable to the receiver in an OFDM system. The method uses the autocorrelation of the short preamble of input signals to detect signals, and performs the coarse frequency offset compensation at the same time. Then, the end of the short preamble for the input signals is detected by the signal detection. The compensated signals are cross-correlated with the portion of the long preamble or that of guard interval together with the long preamble. In addition, the method uses the information for the end of the short preamble to find out a range of the sliding window for estimating symbol timing. In such a manner, the method can make sure of the accuracy for the symbol timing.
    • 提供了一种用于检测信号和估计符号定时的方法。 该方法适用于OFDM系统中的接收机。 该方法使用输入信号的短前置码的自相关来检测信号,同时执行粗频偏移补偿。 然后,通过信号检测来检测输入信号的短前置码的结束。 补偿信号与长前导码的部分或保护间隔的部分与长前同步码互相关。 此外,该方法使用用于短前导码结束的信息来找出用于估计符号定时的滑动窗口的范围。 以这种方式,该方法可以确保符号定时的准确性。
    • 10. 发明授权
    • Display panel
    • 显示面板
    • US08593609B2
    • 2013-11-26
    • US12980347
    • 2010-12-29
    • Wen-Chun WangHsi-Rong HanYung-Cheng ChangMing-Chang YuWan-Jen TsaiFa-Chen Wu
    • Wen-Chun WangHsi-Rong HanYung-Cheng ChangMing-Chang YuWan-Jen TsaiFa-Chen Wu
    • G02F1/1345G02F1/1335H01L31/036
    • G02F1/1345G02F1/133512G02F2001/13456
    • A display panel includes a first substrate, a conductive light-shielding pattern, color filter patterns, a second substrate, scan lines, data lines, pixel structures, third pads and fourth pads. The conductive light-shielding pattern disposed on the first substrate defines conductive matrix pattern, first pads, and second pads. Each first pad is electrically connected to one corresponding second pad through the conductive matrix pattern and insulated with other second pads. The color filter patterns are disposed on the first substrate and a portion of each color filter pattern overlaps the conductive light-shielding pattern. The third pads are one-to-one electrically to the first pads while the fourth pads are one-to-one electrically connected to the second pads. Each fourth pad is electrically connected to one of the scan lines and one of the data lines.
    • 显示面板包括第一基板,导电遮光图案,滤色器图案,第二基板,扫描线,数据线,像素结构,第三焊盘和第四焊盘。 设置在第一基板上的导电遮光图案限定导电矩阵图案,第一垫片和第二垫片。 每个第一焊盘通过导电矩阵图案电连接到一个对应的第二焊盘,并与其他第二焊盘绝缘。 滤色器图案设置在第一基板上,并且每个滤色器图案的一部分与导电遮光图案重叠。 第三焊盘与第一焊盘电一对一,而第四焊盘与第二焊盘电连接。 每个第四焊盘电连接到扫描线之一和数据线之一。