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    • 2. 发明授权
    • Tablet integrated liquid crystal display apparatus with less parallax
    • 平板电脑集成液晶显示装置,视差较小
    • US06504584B2
    • 2003-01-07
    • US09846257
    • 2001-05-02
    • Naoyasu IkedaEishi MizobataYoshihiko Hirai
    • Naoyasu IkedaEishi MizobataYoshihiko Hirai
    • G02F11368
    • G06F3/0412G02F1/133345G02F1/13338G02F1/13725G06F3/045
    • In a tablet integrated type liquid crystal display apparatus, a first transparent substrate is provided on a view side. The first substrate is a plastic substrate having a thickness equal to or thinner than 0.6 mm, and a counter electrode is formed on the first substrate. A second substrate on which a driving layer composed of switching elements and pixel electrodes respectively connected to the switching elements is formed. The second substrate is a glass substrate having a thickness in a range of 0.6 mm to 1.1 mm. A guest host liquid crystal layer sandwiched by the first substrate and the second substrate such that the guest host liquid crystal is driven by a voltage applied between the counter electrode and the pixel electrode. A tablet electrode layer may be provided between the first substrate and the counter electrode.
    • 在片式一体型液晶显示装置中,在观察侧设置第一透明基板。 第一基板是厚度等于或小于0.6mm的塑料基板,在第一基板上形成对电极。 形成有分别与开关元件连接的开关元件和像素电极的驱动层的第二基板。 第二基板是厚度在0.6mm至1.1mm范围内的玻璃基板。 夹在第一基板和第二基板之间的客体主体液晶层使得客体主体液晶由施加在对电极和像素电极之间的电压驱动。 可以在第一基板和对置电极之间设置片状电极层。
    • 3. 发明授权
    • Active matrix liquid crystal display
    • 有源矩阵液晶显示
    • US06473140B1
    • 2002-10-29
    • US09518987
    • 2000-03-03
    • Eishi MizobataNaoyasu IkedaYoshihiko Hirai
    • Eishi MizobataNaoyasu IkedaYoshihiko Hirai
    • G02F11335
    • G02F1/13338G06F3/0412
    • In an LCD, there is used a GH-mode liquid crystal of which change in transmittivity due to variation in gap thickness is less than that of the conventional TN liquid crystal. A tablet facility is directly arranged or electrodes having the function of the tablet are formed over or below the liquid crystal. Thanks to the structure, this protection plate conventionally required to prevent the change in gap thickness resulting due to pressure of a pen input device applied to the LCD can be eliminated. Consequently, it is possible to reduce weight, volume, and parallax of the LCD. An active matrix LCD with integrated table-type input device is attainable in a simple configuration without increasing weight and volume thereof.
    • 在LCD中,使用由间隙厚度的变化引起的透射率的变化小于现有的TN液晶的GH模式的液晶。 直接设置片剂设备,或者在液晶的上方或下方形成具有片剂功能的电极。 由于结构,可以消除通常需要防止由于施加到LCD的笔输入装置的压力而导致的间隙厚度变化的保护板。 因此,可以减轻LCD的重量,体积和视差。 具有集成台式输入装置的有源矩阵LCD可以以简单的结构实现,而不增加其重量和体积。
    • 5. 发明授权
    • Tablet integrated liquid crystal display apparatus with less parallax
    • 平板电脑集成液晶显示装置,视差较小
    • US5995172A
    • 1999-11-30
    • US778268
    • 1997-01-02
    • Naoyasu IkedaEishi MizobataYoshihiko Hirai
    • Naoyasu IkedaEishi MizobataYoshihiko Hirai
    • G02F1/133G02F1/1333G02F1/139G06F3/033G06F3/041G06F3/045
    • G06F3/0412G02F1/13338G06F3/045G02F1/133345G02F1/13725
    • In a tablet integrated type liquid crystal display apparatus, a first transparent substrate is provided on a view side. The first substrate is a plastic substrate having a thickness equal to or thinner than 0.6 mm, and a counter electrode is formed on the first substrate. A second substrate on which a driving layer composed of switching elements and pixel electrodes respectively connected to the switching elements is formed. The second substrate is a glass substrate having a thickness in a range of 0.6 mm to 1.1 mm. A guest host liquid crystal layer sandwiched by the first substrate and the second substrate such that the guest host liquid crystal is driven by a voltage applied between the counter electrode and the pixel electrode. A tablet electrode layer may be provided between the first substrate and the counter electrode. Alternatively, a tablet electrode layer may be provided on the first substrate on an opposite side of the counter electrode. In this case, a protecting film is provided on the tablet electrode layer. In addition, a tablet electrode layer may be provided between the second substrate and the driving layer such that the tablet electrode layer is isolated from the driving layer.
    • 在片式一体型液晶显示装置中,在观察侧设置第一透明基板。 第一基板是厚度等于或小于0.6mm的塑料基板,在第一基板上形成对电极。 形成有分别与开关元件连接的开关元件和像素电极的驱动层的第二基板。 第二基板是厚度在0.6mm至1.1mm范围内的玻璃基板。 夹在第一基板和第二基板之间的客体主体液晶层使得客体主体液晶由施加在对电极和像素电极之间的电压驱动。 可以在第一基板和对置电极之间设置片状电极层。 或者,可以在对置电极的相对侧上的第一基板上设置片状电极层。 在这种情况下,在片状电极层上设置有保护膜。 此外,可以在第二基板和驱动层之间设置片状电极层,使得片状电极层与驱动层隔离。
    • 6. 发明授权
    • Color LCD panel
    • 彩色液晶面板
    • US5295008A
    • 1994-03-15
    • US926157
    • 1992-08-06
    • Eishi MizobataYoshihiko Hirai
    • Eishi MizobataYoshihiko Hirai
    • G02F1/133G02F1/1343G02F1/136G02F1/1365G09G3/36
    • G02F1/1365G02F2201/122
    • A color LCD panel includes a lower substrate, an upper substrate and a liquid crystal which is sealed between the lower substrate and the upper substrate. A plurality of pixels are provided on the lower substrate so as to form a matrix of a plurality of rows and columns. Each pixel includes a substantially rectangular pixel electrode. A plurality of scan driver lines are provided on the lower substrate in the rows in the matrix. Each scan driver line extends in parallel to shorter sides of the rectangular pixel electrodes of the pixels. A plurality of data driver lines of a transparent conductor are formed in the columns in the matrix. Each data driver line extends in parallel to the longer sides of the pixel electrodes of the pixels.
    • 彩色LCD面板包括下基板,上基板和液晶,其被密封在下基板和上基板之间。 在下基板上设置多个像素,以便形成多个行和列的矩阵。 每个像素包括基本上矩形的像素电极。 多个扫描驱动器线设置在矩阵中的行中的下基板上。 每个扫描驱动器线平行延伸到像素的矩形像素电极的较短边。 在矩阵的列中形成透明导体的多条数据驱动线。 每个数据驱动器线平行延伸到像素的像素电极的较长边。
    • 7. 发明授权
    • Method of driving AC-discharge plasma display panel
    • 交流放电等离子体显示面板的驱动方法
    • US06573878B1
    • 2003-06-03
    • US09481203
    • 2000-01-11
    • Eishi Mizobata
    • Eishi Mizobata
    • G09G328
    • G09G3/2922G09G3/2927G09G3/294G09G3/2948G09G2310/066G09G2320/0228
    • A method of driving an ac-discharge type PDP is provided, which ensures a satisfactorily long sustain period and prevents the luminance of the display screen from lowering even if the count of the scan lines is increased. The PDP has row electrodes and column electrodes that form pixels arranged in a matrix array, and a dielectric layer formed to cover the pixels. In the step (a), scan pulses are applied successively to the row electrodes while data pulses are applied to the column electrodes according to a display signal in a scan period, thereby generating wall discharge in the dielectric layer due to writing discharge. The amount of the wall charge in each of the pixels varies according to the display signal. In the step (b), conversion discharge is caused in a conversion period after the scan period, thereby decreasing the amount of the wall charge in the pixels. The conversion discharge is caused in a different state in each of the pixels according to the amount of the wall charge. In the step (c) sustain pulses are applied to the row electrodes in a sustain period after the conversion period, thereby causing sustain discharge. The sustain discharge occurs in part of the pixels according to the state of the conversion discharge that has been caused in the conversion period, resulting in emission of light.
    • 提供了一种驱动交流 - 放电型PDP的方法,其确保令人满意的长维持期,并且即使扫描线的计数增加也能够防止显示屏的亮度降低。 PDP具有排列成矩阵阵列的像素排列的行电极和列电极以及形成为覆盖像素的电介质层。 在步骤(a)中,扫描脉冲依次施加到行电极,同时根据扫描周期中的显示信号向列电极施加数据脉冲,从而由于写入放电而在电介质层中产生壁放电。 每个像素中的壁电荷的量根据显示信号而变化。 在步骤(b)中,在扫描周期之后的转换周期中产生转换放电,从而减少像素中的壁电荷量。 根据壁电荷的量,在每个像素中以不同的状态引起转换放电。 在步骤(c)中,在转换周期之后的维持期间,对行电极施加维持脉冲,从而产生维持放电。 根据在转换周期中引起的转换放电的状态,发生部分像素的维持放电,导致发光。
    • 10. 发明授权
    • Plasma display device and drive method for use in plasma display device
    • 等离子体显示装置及驱动方法用于等离子体显示装置
    • US07408532B2
    • 2008-08-05
    • US11147391
    • 2005-06-08
    • Eishi Mizobata
    • Eishi Mizobata
    • G09G3/28
    • G09G3/298G09G3/2022G09G3/2922G09G3/2927G09G3/2932G09G3/2986G09G2320/0233
    • Scan electrodes are provided separately in addition to sustain electrode pairs generating a sustain discharge. An Address-While-Display drive, in which a scan pulse and a sustain pulse are applied at the same timing, is conducted for each subfield. When scan pulses are applied to the scan electrodes, a wall voltage is generated by a wall charge formed on the dielectric layer located on the scan electrodes. This wall voltage is set higher in the negative voltage direction than the wall voltage generated by a wall charge formed on the dielectric layer located on the sustain electrode pairs. As a result, the display luminance level is increased, increase in the scale of power source circuit can be avoided, and a wide drive margin can be obtained.
    • 除了产生维持放电的维持电极对之外,分开设置扫描电极。 对于每个子场进行在相同定时施加扫描脉冲和维持脉冲的地址显示驱动。 当对扫描电极施加扫描脉冲时,通过在位于扫描电极上的电介质层上形成的壁电荷产生壁电压。 该壁电压在负电压方向上比由形成在位于维持电极对上的电介质层上的壁电荷产生的壁电压设定得高。 结果,显示亮度水平增加,可以避免电源电路的规模的增加,并且可以获得宽的驱动裕度。