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    • 4. 发明申请
    • ORGANIC LIGHT-EMITTING DIODE DISPLAY AND METHOD OF DRIVING SAME
    • 有机发光二极管显示器及其驱动方法
    • US20140055434A1
    • 2014-02-27
    • US13593252
    • 2012-08-23
    • Hua-Gang ChangTsung-Ting Tsai
    • Hua-Gang ChangTsung-Ting Tsai
    • G09G3/32
    • G09G3/3233G09G2300/043G09G2300/0819G09G2300/0852G09G2300/0861G09G2310/0205G09G2310/0262G09G2310/06G09G2320/045
    • In one aspect of the invention, a method of driving an OLED display includes providing scan signals and data signals and applying the scan signals to scan lines and the data signals to the data lines, respectively. Each scan signal is characterized with a waveform having a compensation duration and a scan duration immediately following the compensation duration. The waveform has a first voltage and a second voltage periodically and alternately varied from one another defining a period in the compensation duration, and has the first voltage in the scan duration. The period is equal to the scan duration but shorter than the compensation duration. As such, during the compensation duration of a scan signal, pixels of a corresponding pixel row are charged for compensation, and during the scan duration, the data signals are written into the pixels of the corresponding pixel row for driving the OLEDs thereof.
    • 在本发明的一个方面,驱动OLED显示器的方法包括提供扫描信号和数据信号,并将扫描信号分别施加到扫描线和数据信号到数据线。 每个扫描信号的特征在于具有补偿持续时间和紧跟在补偿持续时间之后的扫描持续时间的波形。 该波形具有第一电压和第二电压,周期性地且彼此交替地在补偿持续时间中间隔地变化,并且具有扫描持续时间中的第一电压。 该周期等于扫描持续时间,但短于补偿持续时间。 这样,在扫描信号的补偿持续时间期间,相应的像素行的像素被充电用于补偿,并且在扫描持续时间期间,数据信号被写入相应的像素行的像素以驱动其OLED。
    • 5. 发明申请
    • PIXEL CIRCUIT AND DRIVING METHOD THEREOF
    • 像素电路及其驱动方法
    • US20130127818A1
    • 2013-05-23
    • US13677821
    • 2012-11-15
    • Tsung-Ting TsaiYun-Hsiang Lee
    • Tsung-Ting TsaiYun-Hsiang Lee
    • G09G3/14
    • G09G3/14G09G3/3233G09G2300/0819G09G2300/0852G09G2300/0861
    • A driving method of a pixel circuit, implemented with five transistors and two capacitors, includes steps of: supplying three control signals and a gate signal to the pixel circuit; modulating an operation state of each control signal and keeping the gate signal being disable so as to reset data of the pixel circuit and have an voltage compensation effect on the pixel circuit; and enabling the gate signal so as to operate the pixel circuit in a data writing period, and supplying, in the data writing period, a data voltage to the pixel circuit so as to change a terminal voltage of a driving transistor, which is used to drive the light-emitting device. A pixel circuit is also provided.
    • 由五个晶体管和两个电容器实现的像素电路的驱动方法包括以下步骤:向像素电路提供三个控制信号和栅极信号; 调制每个控制信号的操作状态并保持门信号被禁用,以便复位像素电路的数据,并对像素电路具有电压补偿效果; 以及使得所述栅极信号能够在数据写入周期中操作所述像素电路,并且在所述数据写入周期中向所述像素电路提供数据电压,以便改变驱动晶体管的端子电压,所述驱动晶体管的端子电压用于 驱动发光装置。 还提供像素电路。
    • 6. 发明申请
    • SWITCHABLE ORGANIC ELECTRO- LUMINESCENCE DISPLAY PANEL AND SWITCHABLE ORGANIC ELECTRO-LUMINESCENCE DISPLAY CIRCUIT
    • 可切换有机电致发光显示面板和可切换有机电致发光显示电路
    • US20120068983A1
    • 2012-03-22
    • US12960552
    • 2010-12-06
    • Tsung-Ting TsaiYuan-Chun Wu
    • Tsung-Ting TsaiYuan-Chun Wu
    • G09G3/30G06F3/038
    • G09G3/3233H01L27/3262
    • A switchable organic electro-luminescence display circuit includes a plurality of scan lines, a plurality of data lines, a plurality of first organic electro-luminescence devices, a plurality of second organic electro-luminescence devices, a display mode switching line, and at least one display mode switching transistor. Each of the first organic electro-luminescence devices is electrically connected to a scan line and a data line correspondingly, and coupled between a first voltage source and a second voltage source. Each of the second organic electro-luminescence devices is electrically connected to a scan line and a data line correspondingly, and coupled to the first voltage source. A gate electrode of the display mode switching transistor is electrically connected to the display mode switching line. A source electrode and a drain electrode of the display mode switching transistor are electrically connected to the second voltage source and the second organic electro-luminescence devices respectively.
    • 可切换的有机电致发光显示电路包括多条扫描线,多条数据线,多条第一有机电致发光器件,多条第二有机电致发光器件,显示模式切换线,至少 一个显示模式切换晶体管。 每个第一有机电致发光器件相应地电连接到扫描线和数据线,并且耦合在第一电压源和第二电压源之间。 每个第二有机电致发光器件相应地电连接到扫描线和数据线,并耦合到第一电压源。 显示模式切换晶体管的栅电极与显示模式切换线电连接。 显示模式切换晶体管的源电极和漏电极分别电连接到第二电压源和第二有机电致发光器件。
    • 7. 发明申请
    • AMOLED DISPLAY WITH OPTICAL FEEDBACK COMPENSATION
    • 具有光学反馈补偿的AMOLED显示
    • US20110221720A1
    • 2011-09-15
    • US12722040
    • 2010-03-11
    • Tzu-Yin KuoTsung-Ting Tsai
    • Tzu-Yin KuoTsung-Ting Tsai
    • G09G5/10H01L51/52G06F3/038
    • G09G3/3258G09G5/10H01L27/3269
    • In one aspect, the present invention relates to a display. In one embodiment, the display has a substrate, and a plurality of pixels formed on the substrate and arranged in an array. Each pixel includes a driving transistor and a read-out transistor spatially formed on the substrate, where each transistor has a gate electrode, a drain electrode and a source electrode, an organic light emitting diode (OLED) having a cathode layer, a anode layer and an emissive layer formed between the cathode layer and the anode layer, and formed over the driving transistor and the read-out transistor such that the anode layer of the OLED is electrically connected to the source electrode of the driving transistor, and a photo sensor having a photosensitive layer formed between the anode layer of the OLED and the source electrode of the read-out transistor.
    • 一方面,本发明涉及显示器。 在一个实施例中,显示器具有衬底和形成在衬底上并以阵列布置的多个像素。 每个像素包括在基板上空间形成的驱动晶体管和读出晶体管,其中每个晶体管具有栅电极,漏电极和源电极,具有阴极层的有机发光二极管(OLED),阳极层 以及形成在阴极层和阳极层之间的发光层,并且形成在驱动晶体管和读出晶体管上,使得OLED的阳极层电连接到驱动晶体管的源电极,并且光电传感器 具有形成在OLED的阳极层和读出晶体管的源电极之间的感光层。
    • 8. 发明申请
    • PIXEL STRUCTURE OF ELECTROLUMINESCENT DISPLAY PANEL
    • 电致发光显示面板的像素结构
    • US20110157122A1
    • 2011-06-30
    • US12764980
    • 2010-04-22
    • Tsung-Ting Tsai
    • Tsung-Ting Tsai
    • G09G3/30G06F3/038
    • H01L27/3279G09G2300/0426G09G2320/0223H01L27/3211
    • A pixel structure of an electroluminescent display panel includes a plurality of sub-pixel columns, first power lines, and second power lines. Each of the first power lines and each of the second power lines are disposed between two adjacent sub-pixel columns. Each first power line is electrically connected to a portion of sub-pixels of a sub-pixel column disposed on one side of the first power line, and a portion of sub-pixels of the other sub-pixel column disposed on the other side of the first power line. Each second power line is electrically connected to a portion of sub-pixels of a sub-pixel column disposed on one side of the second power line, and a portion of sub-pixels of the other sub-pixel column disposed on the other side of the second power line.
    • 电致发光显示面板的像素结构包括多个子像素列,第一电力线和第二电力线。 第一电力线和第二电力线中的每一个被布置在两个相邻的子像素列之间。 每个第一电力线电连接到设置在第一电力线的一侧上的子像素列的子像素的一部分,并且另一个子像素列的子像素的一部分设置在另一个子像素列的另一侧 第一条电力线。 每个第二电源线电连接到设置在第二电力线的一侧上的子像素列的子像素的一部分,另一个子像素列的子像素的一部分设置在第二电源线的另一侧 第二条电力线。
    • 10. 发明申请
    • SHIFT REGISTER OF LCD DEVICES
    • LCD设备的移位寄存器
    • US20100260312A1
    • 2010-10-14
    • US12607042
    • 2009-10-27
    • Tsung-Ting TsaiMing-Sheng LaiMin-Feng ChiangChun-Hsin Liu
    • Tsung-Ting TsaiMing-Sheng LaiMin-Feng ChiangChun-Hsin Liu
    • G11C19/00
    • G11C19/00G09G3/3677G09G2300/0408G09G2310/0286G09G2320/0219G11C19/28
    • A shift register includes a plurality of shift register units coupled in series. Each shift register unit, receiving an input voltage at an input end and an output voltage at an output end, includes a node, a pull-up driving circuit, a pull-up circuit and first through third pull-down circuits. The pull-up driving circuit can transmit the input voltage to the node, and the pull-up circuit can provide the output voltage based on a high-frequency clock signal and the input signal. The first pull-down circuit can provide a bias voltage at the node or at the output end based on a first low-frequency clock signal. The second pull-down circuit can provide a bias voltage at the node or at the output end based on a second low-frequency clock signal. The third pull-down circuit can provide a bias voltage at the node or at the output end based on a feedback voltage.
    • 移位寄存器包括串联耦合的多个移位寄存器单元。 接收输入端的输入电压和输出端的输出电压的每个移位寄存器单元包括节点,上拉驱动电路,上拉电路和第一至第三下拉电路。 上拉驱动电路可以将输入电压传输到节点,并且上拉电路可以基于高频时钟信号和输入信号提供输出电压。 第一下拉电路可以基于第一低频时钟信号在节点处或在输出端提供偏置电压。 第二下拉电路可以基于第二低频时钟信号在节点处或在输出端提供偏置电压。 第三下拉电路可以基于反馈电压在节点处或输出端提供偏置电压。