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    • 1. 发明授权
    • Touch panel
    • 触控面板
    • US08669954B2
    • 2014-03-11
    • US13171668
    • 2011-06-29
    • Hung-Wen ChouMin-Feng ChiangJian-Shen YuPo-Yuan Liu
    • Hung-Wen ChouMin-Feng ChiangJian-Shen YuPo-Yuan Liu
    • G09G5/00
    • G06F3/0416G06F3/044
    • A touch panel includes a substrate, scan lines, data output lines, a signal processing unit and touch sensing units. Each touch sensing unit includes a sensing electrode, a reference capacitor, an output circuit and a reset circuit. The sensing electrode is disposed in a breach of the sensing electrode. The reference capacitor, the output circuit and the reset circuit are disposed on the substrate and in the breach. The output circuit, the reset circuit, the reference capacitor and the sensing electrode are electrically coupled to a reference point. The output circuit is configured to output touch signals to the corresponding data output line. The signal processing unit is configured to obtain electric potential of the data output line and perform a corresponding processing step. When the touch sensing unit is out of working, the reference point is reset to a predetermined electric potential.
    • 触摸面板包括基板,扫描线,数据输出线,信号处理单元和触摸感测单元。 每个触摸感测单元包括感测电极,参考电容器,输出电路和复位电路。 感测电极设置在与感测电极相冲突的位置。 参考电容器,输出电路和复位电路设置在基板上并且在漏电中。 输出电路,复位电路,参考电容器和感测电极电耦合到参考点。 输出电路被配置为将触摸信号输出到相应的数据输出线。 信号处理单元被配置为获得数据输出线的电位并执行相应的处理步骤。 当触摸感测单元不工作时,参考点被复位到预定的电位。
    • 2. 发明申请
    • TOUCH PANEL
    • 触控面板
    • US20120169630A1
    • 2012-07-05
    • US13171668
    • 2011-06-29
    • Hung-Wen CHOUMin-Feng ChiangJian-Shen YuPo-Yuan Liu
    • Hung-Wen CHOUMin-Feng ChiangJian-Shen YuPo-Yuan Liu
    • G06F3/041
    • G06F3/0416G06F3/044
    • A touch panel includes a substrate, scan lines, data output lines, a signal processing unit and touch sensing units. Each touch sensing unit includes a sensing electrode, a reference capacitor, an output circuit and a reset circuit. The sensing electrode is disposed in a breach of the sensing electrode. The reference capacitor, the output circuit and the reset circuit are disposed on the substrate and in the breach. The output circuit, the reset circuit, the reference capacitor and the sensing electrode are electrically coupled to a reference point. The output circuit is configured to output touch signals to the corresponding data output line. The signal processing unit is configured to obtain electric potential of the data output line and perform a corresponding processing step. When the touch sensing unit is out of working, the reference point is reset to a predetermined electric potential.
    • 触摸面板包括基板,扫描线,数据输出线,信号处理单元和触摸感测单元。 每个触摸感测单元包括感测电极,参考电容器,输出电路和复位电路。 感测电极设置在与感测电极相冲突的位置。 参考电容器,输出电路和复位电路设置在基板上并且在漏电中。 输出电路,复位电路,参考电容器和感测电极电耦合到参考点。 输出电路被配置为将触摸信号输出到相应的数据输出线。 信号处理单元被配置为获得数据输出线的电位并执行相应的处理步骤。 当触摸感测单元不工作时,参考点被复位到预定的电位。
    • 4. 发明授权
    • Multi-channel touch panel
    • 多通道触摸面板
    • US08194047B2
    • 2012-06-05
    • US12619149
    • 2009-11-16
    • Ming-Lun HsiehJian-Shen YuChun-Ku KuoPo-Yuan Liu
    • Ming-Lun HsiehJian-Shen YuChun-Ku KuoPo-Yuan Liu
    • G06F3/041
    • G06F3/044
    • The present invention relates to a multi-channel touch panel. In one embodiment, the multi-channel touch panel includes a plurality of driving electrodes spatial-separately arranged in the form of a matrix, a plurality of sensing electrodes associated with the plurality of driving electrodes such that each sensing electrode is surrounded by a corresponding driving electrode, N driving lines spatial-separately arranged along a row direction and M pairs of sensing lines spatial-separately arranged crossing over the N driving lines along a column direction, where each driving electrode in the row of the electrode matrix is electrically connected to each other by a corresponding driving line, and each odd sensing electrode in a column of the electrode matrix is electrically connected to each other by a first sensing line of the corresponding paired sensing lines, and each even sensing electrode in the column of the electrode matrix is electrically connected to each other by a second sensing line of the corresponding paired sensing lines.
    • 本发明涉及多通道触摸面板。 在一个实施例中,多通道触摸面板包括以矩阵的形式空间分开布置的多个驱动电极,与多个驱动电极相关联的多个感测电极,使得每个感测电极被相应的驱动 电极,沿着行方向空间分开设置的N个驱动线,以及沿着列方向在N个驱动线上空间分开布置的M对感测线,其中,电极矩阵的行中的每个驱动电极与每个驱动线电连接 另外通过相应的驱动线,并且电极矩阵的列中的每个奇数感测电极通过相应的成对感测线的第一感测线彼此电连接,并且电极矩阵的列中的每个偶数感测电极为 通过对应的成对感测线的第二感测线彼此电连接。
    • 6. 发明申请
    • MULTI-CHANNEL TOUCH PANEL
    • 多通道触控面板
    • US20110115718A1
    • 2011-05-19
    • US12619149
    • 2009-11-16
    • Ming-Lun HsiehJian-Shen YuChun-Ku KuoPo-Yuan Liu
    • Ming-Lun HsiehJian-Shen YuChun-Ku KuoPo-Yuan Liu
    • G06F3/041
    • G06F3/044
    • The present invention relates to a multi-channel touch panel. In one embodiment, the multi-channel touch panel includes a plurality of driving electrodes spatial-separately arranged in the form of a matrix, a plurality of sensing electrodes associated with the plurality of driving electrodes such that each sensing electrode is surrounded by a corresponding driving electrode, N driving lines spatial-separately arranged along a row direction and M pairs of sensing lines spatial-separately arranged crossing over the N driving lines along a column direction, where each driving electrode in the row of the electrode matrix is electrically connected to each other by a corresponding driving line, and each odd sensing electrode in a column of the electrode matrix is electrically connected to each other by a first sensing line of the corresponding paired sensing lines, and each even sensing electrode in the column of the electrode matrix is electrically connected to each other by a second sensing line of the corresponding paired sensing lines.
    • 本发明涉及多通道触摸面板。 在一个实施例中,多通道触摸面板包括以矩阵的形式空间分开布置的多个驱动电极,与多个驱动电极相关联的多个感测电极,使得每个感测电极被相应的驱动 电极,沿着行方向空间分开设置的N个驱动线,以及沿着列方向在N个驱动线上空间分开布置的M对感测线,其中,电极矩阵的行中的每个驱动电极与每个驱动线电连接 另外通过相应的驱动线,并且电极矩阵的列中的每个奇数感测电极通过相应的成对感测线的第一感测线彼此电连接,并且电极矩阵的列中的每个偶数感测电极为 通过对应的成对感测线的第二感测线彼此电连接。
    • 7. 发明授权
    • Liquid crystal display having photo-sensing input mechanism
    • 具有感光输入机构的液晶显示器
    • US08890783B2
    • 2014-11-18
    • US13346740
    • 2012-01-10
    • Pei-Yi ChenHsueh-Ying HuangJian-Shen Yu
    • Pei-Yi ChenHsueh-Ying HuangJian-Shen Yu
    • G02F1/136H01L31/02G06F3/041G02F1/1333
    • G06F3/042G02F1/13338G06F3/0412G06F3/0416
    • A liquid crystal display having photo-sensing input mechanism includes a first gate line for transmitting a first gate signal, a second gate line for transmitting a second gate signal, a data line for transmitting a data signal, a pixel unit for outputting an image signal according to the first gate signal and the data signal, a readout line for transmitting a readout signal, a photo-sensing input unit and a driving adjustment unit. The photo-sensing input unit is utilized for generating a sensing voltage according to a driving voltage and an incident light signal, and is further utilized for outputting the readout signal according to the sensing voltage and the first gate signal. The driving adjustment unit is employed to provide the driving voltage according to the second gate signal and the incident light signal.
    • 一种具有感光输入机构的液晶显示器包括用于传输第一栅极信号的第一栅极线,用于发射第二栅极信号的第二栅极线,用于发送数据信号的数据线,用于输出图像信号的像素单元 根据第一门信号和数据信号,用于发送读出信号的读出线,感光输入单元和驱动调节单元。 感光输入单元用于根据驱动电压和入射光信号产生感测电压,并且还用于根据感测电压和第一门信号输出读出信号。 驱动调整单元用于根据第二栅极信号和入射光信号提供驱动电压。
    • 8. 发明申请
    • Dual Gate Layout for Thin Film Transistor
    • 薄膜晶体管的双栅极布局
    • US20110133200A1
    • 2011-06-09
    • US13026453
    • 2011-02-14
    • Wein-Town SunChun-Sheng LiJian-Shen Yu
    • Wein-Town SunChun-Sheng LiJian-Shen Yu
    • H01L29/04
    • H01L29/78645H01L27/12H01L29/42384H01L29/78621
    • A dual gate layout of a thin film transistor of liquid crystal display to alleviate dark current leakage is disclosed. The layout includes (1) a polysilicon on a substrate having a L-shaped or a snake shaped from top-view, which has a heavily doped source region, a first lightly doped region, a first gate channel, a second lightly doped region, a second gate channel, a third lightly doped region and a heavily doped drain region formed in order therein; (2) a gate oxide layer formed on the polysilicon layer and the substrate, (3) a gate metal layer then formed on the gate oxide layer having a scanning line and an extension portion with a L-shaped or an I-shaped. The gate metal intersects with the polysilicon layer thereto define the forgoing gate channels. Among of gate channels, at least one is along the signal line, which is connected to the source region through a source contact.
    • 公开了液晶显示器的薄膜晶体管的双栅极布局,以减轻暗电流泄漏。 该布局包括:(1)具有从顶部形成的L形或蛇形的衬底上的多晶硅,其具有重掺杂源极区,第一轻掺杂区,第一栅极沟道,第二轻掺杂区域, 第二栅极沟道,第三轻掺杂区和重掺杂漏极区; (2)形成在多晶硅层和基板上的栅极氧化层,(3)然后在栅极氧化物层上形成栅极金属层,栅极氧化物层具有扫描线和具有L形或I形的延伸部分。 栅极金属与多晶硅层相交,限定了前述栅极沟道。 在栅极通道中,沿着信号线至少有一个通过源极接触连接到源极区域。
    • 10. 发明申请
    • Dual Gate Layout for Thin Film Transistor
    • 薄膜晶体管的双栅极布局
    • US20090236606A1
    • 2009-09-24
    • US12469280
    • 2009-05-20
    • Wein-Town SunChun-Sheng LiJian-Shen Yu
    • Wein-Town SunChun-Sheng LiJian-Shen Yu
    • H01L29/786H01L33/00
    • H01L29/78645H01L27/12H01L29/42384H01L29/78621
    • A dual gate layout of a thin film transistor of liquid crystal display to alleviate dark current leakage is disclosed. The layout comprises (1) a polysilicon on a substrate having a L-shaped or a snake shaped from top-view, which has a heavily doped source region, a first lightly doped region, a first gate channel, a second lightly doped region, a second gate channel, a third lightly doped region and a heavily doped drain region formed in order therein; (2) a gate oxide layer formed on the polysilicon layer and the substrate, (3) a gate metal layer then formed on the gate oxide layer having a scanning line and an extension portion with a L-shaped or an I-shaped. The gate metal intersects with the polysilicon layer thereto define the forgoing gate channels. Among of gate channels, at least one is along the signal line, which is connected to the source region through a source contact.
    • 公开了液晶显示器的薄膜晶体管的双栅极布局,以减轻暗电流泄漏。 布局包括(1)在基板上具有从顶视图形成的L形或蛇形的多晶硅,其具有重掺杂的源极区,第一轻掺杂区,第一栅极沟道,第二轻掺杂区, 第二栅极沟道,第三轻掺杂区和重掺杂漏极区; (2)形成在多晶硅层和基板上的栅极氧化层,(3)然后在具有扫描线的栅极氧化物层和具有L形或I形的延伸部分的栅极金属层上形成栅极金属层。 栅极金属与多晶硅层相交,限定了前述栅极沟道。 在栅极通道中,沿着信号线至少有一个通过源极接触连接到源极区域。