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    • 2. 发明申请
    • TOUCH SCREEN DISPLAY AND METHOD OF OPERATING THE SAME
    • 触摸屏显示器及其操作方法
    • WO2012087125A1
    • 2012-06-28
    • PCT/NL2011/050869
    • 2011-12-21
    • POLYMER VISION B.V.VAN LIESHOUT, PetrusPEETERS, Bart
    • VAN LIESHOUT, PetrusPEETERS, Bart
    • G06F3/044G06F3/041
    • G06F3/044G06F3/0412G06F3/0418
    • A touch screen display device is provided comprising a display panel, display driver, sensor circuit and combination unit. The display panel has a plurality of display elements arranged between a first and a second electrode layer. The display driver is arranged for providing display signals comprising a common display signal and an input control signal to the display panel. The sensor circuit is arranged for providing a probe signal and a shield signal mutually having the same phase and frequency and for generating a touch signal in response to the output signal received from the first electrode layer. The combination unit provides a drive signal to the first electrode layer derived from the common display signal and the probe signal, and further provides an output control signal for the display panel from the input control signal and the shield signal.
    • 提供一种触摸屏显示装置,包括显示面板,显示驱动器,传感器电路和组合单元。 显示面板具有布置在第一和第二电极层之间的多个显示元件。 显示驱动器被布置用于向显示面板提供包括公共显示信号和输入控制信号的显示信号。 传感器电路设置成提供相互具有相同相位和频率的探测信号和屏蔽信号,并且响应于从第一电极层接收的输出信号产生触摸信号。 组合单元从公共显示信号和探测信号提供到第一电极层的驱动信号,并且还根据输入控制信号和屏蔽信号提供用于显示面板的输出控制信号。
    • 3. 发明申请
    • COMMON DRIVING OF DISPLAYS
    • 共同驾驶的显示器
    • WO2012050445A1
    • 2012-04-19
    • PCT/NL2011/050696
    • 2011-10-12
    • POLYMER VISION B.V.VAN VEENENDAAL, ErikANSEMS, Coert PetrusHAGE, Leendert MarinusHUITEMA, Hjalmar Edzer Ayco
    • VAN VEENENDAAL, ErikANSEMS, Coert PetrusHAGE, Leendert MarinusHUITEMA, Hjalmar Edzer Ayco
    • G09G3/34
    • G09G3/344G09G3/2081G09G2310/0248G09G2310/0251
    • During a scan line driving phase, a column driver is controlled to provide a plurality of driving column voltages to the source terminals and the row driver is controlled to provide scanning row selection voltages to the gate terminals for sequentially updating the each pixel having an initial pixel state, voltages with said plurality of driving column voltages to attain, for each initial pixel state (600), an initial common pixel state (608). During a common driving phase the column driver is controlled to provide a uniform column voltage to the source terminals. This voltage is used for updating the plurality of pixel voltages with a uniform column voltage. In addition, the row driver is controlled to provide row select voltages with a gate swing that is lower during the common driving phase than during the row driving phase so as to drive the pixels from a respective the initial common state to a respective final common state. The pixel states may differ from each other at least during a part of the common driving phase or even during the entire common driving phase, so that initial and final common states and intermediate states may differ from pixel to pixel.
    • 在扫描线驱动阶段期间,控制列驱动器以向源极端提供多个驱动列电压,并且控制行驱动器以向栅极端提供扫描行选择电压,以顺序地更新具有初始像素的每个像素 状态,具有所述多个驱动列电压的电压,以针对每个初始像素状态(600)获得初始公共像素状态(608)。 在公共驱动阶段期间,列驱动器被控制以向源端子提供均匀的列电压。 该电压用于以均匀的列电压来更新多个像素电压。 此外,行驱动器被控制以提供在公共驱动阶段期间比在行驱动相位期间更低的门摆动的行选择电压,以便将像素从相应的初始公共状态驱动到相应的最终公共状态 。 像素状态至少在公共驱动阶段的一部分期间或者甚至在整个公共驱动阶段期间可能彼此不同,使得初始和最终的公共状态和中间状态可能因像素而异。
    • 4. 发明申请
    • SUPER LOW VOLTAGE DRIVING OF DISPLAYS
    • 超低电压显示器驱动
    • WO2012099468A1
    • 2012-07-26
    • PCT/NL2012/050028
    • 2012-01-18
    • POLYMER VISION B.V.VAN VEENENDAAL, ErikHUITEMA, Hjalmar
    • VAN VEENENDAAL, ErikHUITEMA, Hjalmar
    • G09G3/34
    • G09G3/344G09G3/3225G09G2300/0876G09G2310/0235G09G2310/0251G09G2310/0254G09G2320/0214G09G2320/0219G09G2320/0257G09G2330/021
    • A display device (500) is disclosed with a plurality of pixels (555), each having a pixel state (P) that is driven by a driving voltage differential (V EP ) between a pixel voltage (Vpx) applied to a pixel terminal (101) of the pixel and a common voltage (V CE ) applied to a common terminal (102) of the pixel. In a first pixel driving state, wherein pixels are driven to a first colour, a common voltage is provided to the common terminals (102) with a first polarity. In a second pixel driving state, wherein pixels are driven to a second colour, a common voltage is provided to the common terminals (102) with a second polarity opposite to the first polarity. An absolute value of the common voltage (V CE ) in the first and second pixel driving state is higher than a maximum absolute value of the column voltage (V col ) in the corresponding pixel driving state.
    • 公开了具有多个像素(555)的显示装置(500),每个像素具有像素状态(P),该像素状态(P)由施加到像素端子(101)的像素电压(Vpx)之间的驱动电压差(VEP)驱动 )和施加到像素的公共端(102)的公共电压(V CE)。 在将像素驱动为第一颜色的第一像素驱动状态下,以公共端子(102)以第一极性提供公共电压。 在第二像素驱动状态下,其中像素被驱动到第二颜色,公共电压以与第一极性相反的第二极性提供给公共端子(102)。 第一和第二像素驱动状态下的公共电压(V CE)的绝对值高于对应像素驱动状态下的列电压(V col)的最大绝对值。
    • 9. 发明申请
    • ELECTROFLUIDIC CHROMATOPHORE (EFC) DISPLAY APPARATUS
    • 电子色谱(EFC)显示设备
    • WO2012047097A1
    • 2012-04-12
    • PCT/NL2011/050667
    • 2011-10-03
    • POLYMER VISION B.V.HUITEMA, Hjalmar Edzer AycoVAN LIESHOUT, Petrus Johannes Gerardus
    • HUITEMA, Hjalmar Edzer AycoVAN LIESHOUT, Petrus Johannes Gerardus
    • G09G3/34G02B26/02
    • G09G3/3433G02B26/004G09G3/348G09G2300/06G09G2310/0254
    • According to an aspect of the invention, there is provided a display apparatus comprising a plurality of electrofluidic chromatophore (EFC) pixel cells. Each pixel cell comprises a fluid holder for holding a polar fluid and a non-polar fluid having differing display properties, the fluid holder comprising a reservoir with a geometry having a small visible area projected in the direction of a viewer onto the polar fluid, and a channel with a geometry having a large visible area projected in the direction of a viewer onto the polar fluid. The channel is connected to the reservoir so as to enable free movement of the polar fluid and non-polar fluid between the channel and the reservoir. At least part of a surface of the channel comprises a wetting property responsive to a supply voltage over the pixel cell and defining (i) a stable region wherein the supply voltage stabilizes polar fluid in the channel; (ii) a fill region that controls filling of polar fluid in the channel and (iii) a retract region that controls retracting of polar fluid in the channel. At least two pixel cell terminals are configured to supply the supply voltage to at least part of the surface of the channel comprising the wetting property for supply voltage controlled channel movement of polar fluid. The display further comprises a driver operative to provide controlled column voltages and any of a predefined row select or non-select voltage. A circuit board comprises a row electrode and a column electrode each directly connecting the driver to the pixel cell terminals for supplying the supply voltage to the pixel cell terminals as a voltage difference between the row and column electrodes in a passive matrix configuration.
    • 根据本发明的一个方面,提供了一种显示装置,其包括多个电流体色差(EFC)像素单元。 每个像素单元包括用于保持极性流体和具有不同显示特性的非极性流体的流体保持器,所述流体保持器包括具有在观察者方向上投射到极性流体上的具有小可见区域的几何形状的储存器,以及 具有在观察者的方向上投射到极性流体上的具有大的可见区域的几何形状的通道。 通道连接到储存器,以使得极性流体和非极性流体能够在通道和储存器之间自由移动。 通道的表面的至少一部分包括响应于像素单元上的电源电压的润湿特性并且限定(i)稳定区域,其中电源电压稳定通道中的极性流体; (ii)控制通道中的极性流体的填充的填充区域和(iii)控制通道中极性流体回缩的回缩区域。 至少两个像素单元端子被配置为将电源电压提供给通道的表面的至少部分,其包括用于电极电压控制的极性流体的通道运动的润湿特性。 显示器还包括驱动器,其操作以提供受控的列电压和预定义的行选择或非选择电压中的任一个。 电路板包括行电极和列电极,每个行电极和列电极将驱动器直接连接到像素单元端子,用于将像素单元端子的电源电压作为无源矩阵配置中的行电极与列电极之间的电压差。