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    • 2. 发明授权
    • Image reading apparatus
    • 图像读取装置
    • US07936488B2
    • 2011-05-03
    • US12190100
    • 2008-08-12
    • Hironobu ArimotoNoriyuki TomitaSatoshi Yamanaka
    • Hironobu ArimotoNoriyuki TomitaSatoshi Yamanaka
    • G03F3/08G06F15/00G06K15/00G06K9/00
    • H04N1/62G06K9/2018H04N1/38
    • An image reading apparatus includes: a light source emitting a plurality of colors; a light receiver including a plurality of pixels which receive lights of respective colors; an analog-to-digital converter which analog-to-digital converts analog signals obtained by the light receiver to obtain digital photoelectric conversion outputs, respectively; a color determining portion which receives output signals, determines whether output signals for respective colors from the same pixel are within predetermined ranges, respectively, and outputs, as dropout data, pixel position information of the pixel, the outputs signals from which are within the predetermined ranges, respectively; an image monochromating circuit which receives output signals and obtains monochrome data; a data substituting portion which receives the monochrome data, substitutes the monochrome data corresponding to the pixel position information from the color determining portion with a level at which the pixel is determined as a white level in a binarizing process.
    • 一种图像读取装置,包括:发出多种颜色的光源; 包括接收各种颜色的光的多个像素的光接收器; 模拟 - 数字转换器,其模拟 - 数字转换由光接收器获得的模拟信号,分别获得数字光电转换输出; 接收输出信号的颜色确定部分分别确定来自相同像素的各种颜色的输出信号是否在预定范围内,并输出像素的像素位置信息作为压差数据,输出信号在预定范围内 范围; 接收输出信号并获得单色数据的图像单色电路; 接收单色数据的数据取代部,将来自颜色确定部的与像素的像素位置信息对应的单色数据用二进制化处理中的像素确定为白色级别。
    • 3. 发明申请
    • Image Scanner and Signal Processing Method
    • 图像扫描仪和信号处理方法
    • US20070285683A1
    • 2007-12-13
    • US10589661
    • 2004-06-28
    • Jun SomeyaYoshiaki OkunoSatoshi YamanakaToru ShirakiHironobu Arimoto
    • Jun SomeyaYoshiaki OkunoSatoshi YamanakaToru ShirakiHironobu Arimoto
    • G06K1/00
    • H04N9/045H04N1/193H04N1/1934H04N1/401H04N5/262
    • Interpolation data for a missing pixel are obtained (4) after a correction (3) for variations in the characteristics of the imaging devices (8(1), 8(2)). The correction for variations in characteristics includes, for example, a black level correction (9) and a sensitivity correction (10). The interpolation includes, for example, interpolation calculations (14(1), 14(2)) such that a mean value of a plurality of pixels including the missing pixel and a mean value of a plurality of pixels not including the missing pixel become equal and an interpolation calculation (14(0)) that takes the mean of the pixels to the right and left of the missing pixel, the calculation with the least error being selected (13, 15). Thus missing pixels in highly periodic images can be properly interpolated, and interpolation can be performed with high precision even when there are variations in the sensitivity characteristics of the individual imaging devices constituting the contact image sensor.
    • 在对成像装置(8(1),8(2))的特性变化进行校正(3)之后获得缺失像素的插值数据(4)。 特征变化的校正包括例如黑电平校正(9)和灵敏度校正(10)。 插值包括例如内插计算(14(1),14(2)),使得包括缺失像素的多个像素的平均值和不包括丢失像素的多个像素的平均值变得相等 以及将丢失像素的右侧和左侧的像素的平均值进行插值计算(14(0)),选择最小误差的计算(13,15)。 因此,即使在构成接触图像传感器的各个成像装置的灵敏度特性存在差异的情况下,也可以适当地插入高周期性图像中的缺失像素,并且可以以高精度进行插值。
    • 4. 发明授权
    • Display control circuit for display panel
    • 显示面板显示控制电路
    • US06313814B1
    • 2001-11-06
    • US09261222
    • 1999-03-03
    • Hironobu ArimotoAtsushi Ito
    • Hironobu ArimotoAtsushi Ito
    • G09G328
    • G09G3/296G09G3/294G09G2320/0285
    • For image data of each display cell, correction is performed with data from a correction memory and stored in an image memory. A sequencer sends a signal regarding a display pulse within one frame to a sequence counter, which the sequence counter counts. A value corresponding to the count value is read out from a look up table, and a comparator compares the image data for one display cell from the image memory with a value (number of discharges or value corresponding to brightness) regarding the display pulse converted from the lookup table. When the value from the lookup table reaches the value of the image data, the display data is changed so as to control the state of discharge (such as to stop the discharge). The number of discharges corresponding to the image data is controlled by the contents of the lookup table so that the brightness can be controlled and correction is easily performed.
    • 对于每个显示单元的图像数据,使用来自校正存储器的数据进行校正,并存储在图像存储器中。 定序器将一帧内的显示脉冲信号发送到序列计数器,序列计数器计数。 从查询表读出对应于计数值的值,比较器将来自图像存储器的一个显示单元的图像数据与从(...)转换的显示脉冲的值(对应于亮度的值)相比较 查找表。 当来自查找表的值达到图像数据的值时,改变显示数据以便控制放电状态(例如停止放电)。 与图像数据相对应的放电次数由查找表的内容控制,使得可以控制亮度并容易地进行校正。
    • 5. 发明授权
    • Display panel and method of fabricating the same
    • 显示面板及其制造方法
    • US06252345B1
    • 2001-06-26
    • US09247061
    • 1999-02-09
    • Atsushi ItoHironobu Arimoto
    • Atsushi ItoHironobu Arimoto
    • H01J2910
    • H01J11/10H01J5/16H01J9/20H01J11/44H01J17/49
    • A display panel includes a resin lens layer. The display panel consists of a front panel 10 and a back panel 12 which are hermetically sealed together. The display panel also includes a plurality of display cells and is filled with a gas. A visible-light transparent resin is coated over the front surface of the front panel 10. The resin layer is raise-molded with a molding tool 16 while being solidified. Through this molding process, a resin lens layer 14 with plural lenses is formed on the front surface of the front panel 10. The resin lens layer 14 formed on the front surface of the front panel 10 can improve the brightness of the display cells.
    • 显示面板包括树脂透镜层。 显示面板包括密封在一起的前面板10和后面板12。 显示面板还包括多个显示单元并且填充有气体。 可见光透明树脂涂覆在前面板10的前表面上。树脂层在固化的同时用模制工具16进行模压成型。 通过该成型工艺,在前面板10的前表面上形成具有多个透镜的树脂透镜层14.形成在前面板10的前表面上的树脂透镜层14可以提高显示单元的亮度。
    • 8. 发明授权
    • Planar display panel driving method
    • 平面显示面板驱动方式
    • US06483249B2
    • 2002-11-19
    • US09986783
    • 2001-11-09
    • Atsushi ItoHironobu ArimotoHiroshi Ito
    • Atsushi ItoHironobu ArimotoHiroshi Ito
    • H05B3700
    • G09G3/2803G09G3/2018G09G3/282G09G3/296G09G3/2983G09G2300/026G09G2320/0285H01J9/241H01J11/12H01J11/22H01J11/34
    • A common electrode and an individual electrode are provided in plural pairs on a first transparent substrate, and recesses are formed in a second substrate in positions corresponding to the pairs of electrodes to define discharge cells of display cells. The display cells of a display panel can be individually driven on the cell-by-cell basis and the planar panel has a reduced thickness. A voltage pulse is applied to the individual electrode to reverse the polarity of wall charges accumulated on a dielectric layer, and a voltage pulse is then applied to the common electrode so that an electric field of the wall charges caused upon the reversal of the polarity is additionally applied. Thereby provided are a planar display panel which can set a large control margin in the display operation, ensure stable display, and present gradation display with high reliability and quality.
    • 公共电极和单个电极在第一透明基板上多对设置,并且在第二基板中形成有与该对电极对应的位置的凹部,以限定显示单元的放电单元。 显示面板的显示单元可以逐个单独地单独驱动,并且平面面板具有减小的厚度。 电压脉冲施加到单个电极以反转积聚在电介质层上的壁电荷的极性,然后将电压脉冲施加到公共电极,使得在极性反转时引起的壁电荷的电场为 另外应用。 由此,能够在显示动作中设定较大的控制余量的平面显示面板,能够确保稳定的显示,并具有可靠性和质量高的灰度显示。
    • 10. 发明授权
    • Planar display panel and panel manufacturing method
    • 平面显示面板和面板制造方法
    • US06323596B1
    • 2001-11-27
    • US09194118
    • 1998-11-23
    • Atsushi ItoHironobu ArimotoHiroshi Ito
    • Atsushi ItoHironobu ArimotoHiroshi Ito
    • G09G328
    • G09G3/2803G09G3/2018G09G3/282G09G3/296G09G3/2983G09G2300/026G09G2320/0285H01J9/241H01J11/12H01J11/22H01J11/34
    • A common electrode and an individual electrode are provided in plural pairs on a first transparent substrate, and recesses are formed in a second substrate in positions corresponding to the pairs of electrodes to define discharge cells of display cells. The display cells of a display panel can be individually driven on the cell-by-cell basis and the planar panel has a reduced thickness. A driving circuit for changing luminance in accordance with the number of pulses applied to the individual electrode within a unit time to make gradation display is provided, and gradation control is achieved by performing switching control for each of the individual electrodes provided independently of one another in one-to-one relation to the display cells. A voltage pulse is applied to the individual electrode to reverse the polarity of wall charges accumulated on a dielectric layer, and a voltage pulse is then applied to the common electrode so that an electric field of the wall charges caused upon the reversal of the polarity is additionally applied. Thereby provided are a planar display panel which can set a large control margin in the display operation, ensure stable display, and present gradation display with high reliability and quality, as well as a manufacturing method, a controller, and a driving method for the planar display panel.
    • 公共电极和单个电极在第一透明基板上多对设置,并且在第二基板中形成有与该对电极对应的位置的凹部,以限定显示单元的放电单元。 显示面板的显示单元可以逐个单独地单独驱动,并且平面面板具有减小的厚度。 提供了用于根据在单位时间内施加到单独电极的脉冲数来改变亮度以进行灰度显示的驱动电路,并且通过对彼此独立设置的每个独立电极执行切换控制来实现灰度控制, 与显示单元的一对一关系。 电压脉冲施加到单个电极以反转积聚在电介质层上的壁电荷的极性,然后将电压脉冲施加到公共电极,使得在极性反转时引起的壁电荷的电场为 另外应用。 由此,能够在显示动作中设定较大的控制余量,确保稳定显示,高可靠性,高质量地呈现灰度显示的平面显示面板以及平面显示面板的制造方法,控制器和驱动方法 显示面板。