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    • 31. 发明授权
    • Driving method of liquid crystal display panel and liquid crystal display device
    • 液晶显示面板及液晶显示装置的驱动方法
    • US07161569B2
    • 2007-01-09
    • US10169762
    • 2001-01-19
    • Kanetaka Sekiguchi
    • Kanetaka Sekiguchi
    • G09G3/36
    • G09G3/3629G09G3/3633G09G3/3651G09G2300/0876G09G2300/0895G09G2310/06G09G2330/021
    • This invention is a driving method of a liquid crystal display panel in which a liquid crystal layer is sealed between a transparent first substrate formed with a plurality of scanning electrodes and a transparent second substrate formed with a plurality of data electrodes, the electrodes being formed on respective inner faces opposing each other, and portions where the scanning electrodes and data electrodes oppose each other with the liquid crystal layer sandwiched therebetween constitute pixel portions respectively, and which performs display by an electrooptical change having a memory property in the liquid crystal layer at each pixel portion, in which selection signals are applied to the plurality of scanning electrodes and a data signal is applied to the data electrode in correspondence with the selection signal of each scanning electrode to control the individual pixel portion independently, and a plurality of selection signals having different selection periods each for selecting one scanning electrode are selectively applied as the selection signals.
    • 本发明是一种液晶显示面板的驱动方法,其中液晶层密封在形成有多个扫描电极的透明第一基板和形成有多个数据电极的透明第二基板之间,电极形成在 分别相互相对的内表面和夹着液晶层的扫描电极和数据电极彼此相对的部分分别构成像素部分,并且通过在每个液晶层中具有在液晶层中具有记忆特性的电光学变化进行显示 像素部分,其中选择信号被施加到多个扫描电极,并且数据信号对应于每个扫描电极的选择信号施加到数据电极,以独立地控制各个像素部分,以及多个选择信号具有 不同的选择周期,每个选择 选择性地施加一个扫描电极作为选择信号。
    • 35. 发明授权
    • Liquid crystal display with particular use of diffusing films
    • 特别使用扩散膜的液晶显示器
    • US06738112B1
    • 2004-05-18
    • US09582474
    • 2000-06-27
    • Kanetaka Sekiguchi
    • Kanetaka Sekiguchi
    • G02F11335
    • G02F1/133536G02F1/133504G02F1/133553
    • A liquid crystal display device comprising: a first substrate (1) made of a transparent material, provided with signal electrodes and/or display electrodes (9) formed on one face thereof; a second substrate (2) made of a transparent material, provided with opposed electrodes (12) formed thereon; and liquid crystal sealed in-between the first substrate (1) and the second substrate (2) oppositely disposed opposite to each other with a predetermined gap interposed therebetween such that each of the signal electrodes or the display electrodes (9) face each of the opposed electrodes (12) so as to form a pixel. Further, a white diffusing film (22) and a reflector (25) are disposed in that order from of the first substrate (1) side on the second substrate (2). The white diffusing film (22) having the characteristics of allowing circularly polarized light to pass therethrough substantially as the circularly polarized light, and having a substantially equal transmittance for light components at respective wavelengths in the wavelength range of visible light, effecting improving whiteness of a reflection-type liquid crystal display device.
    • 一种液晶显示装置,包括:由透明材料制成的第一基板(1),设置有形成在其一个面上的信号电极和/或显示电极(9); 由透明材料制成的第二基板(2),其上形成有相对的电极(12); 以及密封在第一基板(1)和第二基板(2)之间的相对设置的间隔有预定间隙的液晶,使得每个信号电极或显示电极(9)面向每个 相对电极(12)以形成像素。 此外,从第一基板(1)侧的第二基板(2)的顺序设置有白色扩散板(22)和反射板(25)。 具有允许圆偏振光的特征的白色扩散板(22)基本上以圆偏振光通过,并且对于可见光的波长范围内的各波长的光分量具有基本上相等的透射率,从而提高了白度 反射型液晶显示装置。
    • 36. 发明授权
    • Watch with liquid crystal display panel
    • 手表配有液晶显示面板
    • US06556515B1
    • 2003-04-29
    • US09926204
    • 2001-09-24
    • Kanetaka Sekiguchi
    • Kanetaka Sekiguchi
    • G04C1700
    • G02F1/134327G04G9/0035
    • A liquid crystal display panel (10) in a watchcase (41) displays time information and/or calendar information. In the liquid crystal display panel (10), a liquid crystal layer (3) is disposed between an upper substrate (1) and a lower substrate (2). On the upper substrate (1) are formed segment electrodes (5g) and an auxiliary electrode (11) that surrounds the segment electrodes with gaps (G1), and the segment and auxiliary electrodes are composed of the same transparent conductive film. An opposite electrode (6) is formed over the entire display area of the lower substrate (2). The overlaps between the opposite electrode (6) and the segment electrodes (5g) form pixel areas (32), while the overlap between the opposite electrode (6) and the auxiliary electrode (11) forms a background area (33). Voltage is selectively applied to the liquid crystal layer (3) in the pixel areas (32) and the background area (33) respectively to change the state of the transmission, scattering or absorption of the light incident on the liquid crystal layer (3) as desired, so that time information and calendar information are displayed.
    • 表壳(41)中的液晶显示面板(10)显示时间信息和/或日历信息。 在液晶显示面板(10)中,在上基板(1)和下基板(2)之间配置有液晶层(3)。 在上基板(1)上形成有间隙电极(G1)的分段电极(5g)和辅助电极(11),该电极和辅助电极由相同的透明导电膜构成。 在下基板(2)的整个显示区域上形成相对电极(6)。 相对电极(6)和分段电极(5g)之间的重叠形成像素区域(32),而相对电极(6)和辅助电极(11)之间的重叠形成背景区域(33)。 电压分别选择性地施加到像素区域(32)和背景区域(33)中的液晶层(3),以改变入射在液晶层(3)上的光的透射,散射或吸收的状态, 根据需要,显示时间信息和日历信息。
    • 37. 发明授权
    • Liquid crystal display and method of manufacturing the same
    • 液晶显示器及其制造方法
    • US06512556B1
    • 2003-01-28
    • US09238179
    • 1999-01-28
    • Kanetaka Sekiguchi
    • Kanetaka Sekiguchi
    • G02F1135
    • G02F1/1365
    • Upper electrodes (10, 11) and lower electrodes (2) formed on a substrate (1) of a liquid crystal display are disposed so as to cross each other, and two nonlinear resistance elements (13, 14) are constituted by each of the upper electrodes, an insulation film, and each of the lower electrodes. One of the upper electrodes constituting the nonlinear resistance elements is connected with a signal electrode (9), and the other with one of the display electrodes (12) constituting display pixels. Connection portions (4) connecting an anodic oxidation electrode (3) with each of the lower electrodes (2) are split in parts of regions thereof such that the lower electrodes (2) each resembling an island in shape are formed, and each of the display electrodes is provided with an overlapping portion 15 thereunder, partially overlapped with each of the connection portions (4) where a double layer film consisting of a metal film and an insulation film is left intact. In the liquid crystal display constituted as above, an asymmetrical current-voltage characteristic thereof due to a voltage applied to the signal electrode (9) is turned symmetrical, and a d-c voltage component applied to a liquid crystal layer is reduced, preventing deterioration in the quality of liquid crystal and the contrast of display, and occurrence of a flicker phenomenon and an image sticking, that is, after-image phenomenon.
    • 在液晶显示器的基板(1)上形成的上电极(10,11)和下电极(2)彼此交叉设置,并且两个非线性电阻元件(13,14)由 上电极,绝缘膜和每个下电极。 构成非线性电阻元件的上部电极之一与信号电极(9)连接,另一个与构成显示像素的显示电极(12)中的一个连接。 连接阳极氧化电极(3)与每个下电极(2)的连接部分(4)在其部分区域被分开,使得形成类似于岛状的下电极(2),并且 显示电极在其下方设有重叠部分15,与由金属膜和绝缘膜组成的双层膜保持完整的每个连接部分(4)部分地重叠。在如上构造的液晶显示器中, 由于施加到信号电极(9)的电压引起的非对称电流 - 电压特性变为对称,并且降低施加到液晶层的直流电压分量,防止液晶质量的劣化和显示的对比度, 并出现闪烁现象和图像残留,即后现象现象。
    • 38. 发明授权
    • Liquid crystal display including signal electrodes connected to each other by first anode oxide electrode and auxiliary electrode connected to second anode oxide electrode
    • 液晶显示器包括由第一阳极氧化物电极和与第二阳极氧化物电极连接的辅助电极彼此连接的信号电极
    • US06388720B1
    • 2002-05-14
    • US09722309
    • 2000-11-28
    • Kanetaka Sekiguchi
    • Kanetaka Sekiguchi
    • G02F11333
    • G02F1/1345G02F1/136204G02F1/1365
    • A first electrode 1 comprises an anode oxide electrode 5, a lower electrode 2 and signal electrodes, wherein the signal electrodes are connected to each other by the anode oxide electrode when the anodic oxidation treatment is performed, while a second electrode comprises an upper electrode on a nonlinear resistor layer, a display electrode connected to the upper electrode, and a connecting electrode covering a part of the anode oxide electrode, wherein the lower electrode, the nonlinear resistor layer and the upper electrode constitute the nonlinear resistor, and wherein a part of the anode oxide electrode is separated at the side thereof which is also a side of the connecting electrode comprising the second electrode, thereby forming independent signal electrodes. This can prevent the nonlinear resistor from being deteriorated in characteristic in the step involved in generation of static electricity such as a step of printing an orientational film onto a first substrate having the nonlinear resistor or a step of performing orienting process, thereby obtaining uniform and stable characteristic.
    • 第一电极1包括阳极氧化物电极5,下电极2和信号电极,其中当执行阳极氧化处理时,信号电极通过阳极氧化电极彼此连接,而第二电极包括上电极 非线性电阻层,连接到上电极的显示电极和覆盖阳极氧化物电极的一部分的连接电极,其中下电极,非线性电阻层和上电极构成非线性电阻,并且其中一部分 阳极氧化物电极在其一侧也是包括第二电极的连接电极的一侧分离,从而形成独立的信号电极。 这可以防止在产生静电的步骤中的非线性电阻器的特性劣化,例如将取向膜印刷到具有非线性电阻器的第一基板上的步骤或执行定向处理的步骤,从而获得均匀和稳定的 特性。
    • 39. 发明授权
    • Liquid crystal display device with separated anode oxide electrode
    • 具有分离阳极氧化物电极的液晶显示装置
    • US06128050A
    • 2000-10-03
    • US836481
    • 1997-05-07
    • Kanetaka Sekiguchi
    • Kanetaka Sekiguchi
    • G02F1/1345G02F1/1362G02F1/1365G02F1/1333G02F1/136H01L29/06
    • G02F1/1345G02F1/1365G02F1/136204
    • A first electrode 1 comprises an anode oxide electrode 5, a lower electrode 2 and signal electrodes, wherein the signal (electrodes are connected to each other by the anode oxide electrode when the anodic oxidation treatment is performed, while a second electrode comprises an upper electrode on a nonlinear resistor layer, a display electrode connected to the upper electrode, and a connecting electrode covering a part of the anode oxide electrode, wherein the lower electrode, the nonlinear resistor layer and the upper electrode constitute the nonlinear resistor, and wherein a part of the anode oxide electrode is separated at the side thereof which is also a side of the connecting electrode comprising the second electrode, thereby forming independent signal electrodes. This can prevent the nonlinear resistor from being deteriorated in characteristic in the step involved in generation of static electricity such as a step of printing an orientational film onto a first substrate having the nonlinear resistor or a step of performing orienting process, thereby obtaining uniform and stable characteristic.
    • PCT No.PCT / JP95 / 02285第 371日期1997年5月7日 102(e)日期1997年5月7日PCT提交1995年11月8日PCT公布。 第WO96 / 14599号公报 日期1996年5月17日第一电极1包括阳极氧化物电极5,下电极2和信号电极,其中信号(当进行阳极氧化处理时,电极通过阳极氧化电极彼此连接,而第二电极 包括在非线性电阻层上的上电极,连接到上电极的显示电极和覆盖阳极氧化电极的一部分的连接电极,其中下电极,非线性电阻层和上电极构成非线性电阻, 并且其中阳极氧化物电极的一部分在其也是包括第二电极的连接电极的一侧分离,从而形成独立的信号电极,这可以防止非线性电阻器在所涉及的步骤中的特性劣化 在产生静电时,例如将取向薄膜印刷到第一凹槽上的步骤 具有非线性电阻器或执行取向处理的步骤,从而获得均匀和稳定的特性。
    • 40. 发明授权
    • Matrix display device
    • 矩阵显示设备
    • US4642620A
    • 1987-02-10
    • US536105
    • 1983-09-26
    • Seigo TogashiKanetaka Sekiguchi
    • Seigo TogashiKanetaka Sekiguchi
    • G02F1/1335G02F1/1343G02F1/1362G02F1/1365G09G3/36G09G3/02
    • G02F1/1365G09G3/367G02F1/133512G02F1/13624G02F2001/134345
    • In a matrix display device, non-linear resistance elements are coupled to each display element for controlling selective activation of display elements in response to drive signals, with each non-linear resistance element comprising sets of rectifying elements formed by thin film deposition which are connected in parallel with one another with opposing polarities. Each set comprise one or more rectifying elements formed of for example PN junctions, PIN junctions, Schottky junctions, etc., using material such as amorphous silicon as a semiconductor material, and the rectifying elements can be disposed in a multilayer configuration in order to reduce the display area occupied, or can be provided with transparent electrodes to positively utilized incident light to enhance current flow.
    • 在矩阵显示装置中,非线性电阻元件耦合到每个显示元件,用于响应于驱动信号控制显示元件的选择性激活,每个非线性电阻元件包括通过薄膜沉积形成的整流元件组,其连接 彼此平行,具有相反的极性。 每组包括使用诸如非晶硅作为半导体材料的材料例如PN结,PIN结,肖特基结等形成的一个或多个整流元件,并且整流元件可以设置在多层构造中以便减少 或者可以设置有透明电极以积极利用入射光来增强电流。