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    • 1. 发明授权
    • Image hold body and image forming apparatus
    • 图像保持体和图像形成装置
    • US08400482B2
    • 2013-03-19
    • US12869059
    • 2010-08-26
    • Tatsuo OkunoKenji OgiAkemi MurakamiAkihiko Noda
    • Tatsuo OkunoKenji OgiAkemi MurakamiAkihiko Noda
    • B41J2/39B41J2/395B41J2/41G11B3/00
    • B41J2/39B41J2/447G03G15/32G03G2215/00957
    • An image hold body includes a support body, a plurality of pixel electrodes, charge storage members, switch members, scanning lines, signal lines and shield members. A latent image voltage is applied to the plurality of pixel electrodes based on an image signal. The charge storage members store charge corresponding to the latent image voltage. The scanning lines select and scan pixel electrode groups through the switch members. The signal lines apply the latent image voltage through the switch members to the pixel electrodes of each of the pixel electrode groups selected by the scanning lines. The shield members are provided on the support body corresponding to the signal lines placed in the proximity of the pixel electrodes, and shield an effect of at least a part of an electric field from the signal line on an electric field based on the latent image voltage of the pixel electrodes.
    • 图像保持体包括支撑体,多个像素电极,电荷存储构件,开关构件,扫描线,信号线和屏蔽构件。 基于图像信号将潜像电压施加到多个像素电极。 电荷存储部件存储对应于潜像电压的电荷。 扫描线通过开关元件选择和扫描像素电极组。 信号线通过开关构件将潜像电压施加到由扫描线选择的每个像素电极组的像素电极。 屏蔽构件设置在支撑体上,与放置在像素电极附近的信号线相对应,并且基于潜像电压屏蔽来自信号线的电场的至少一部分对电场的影响 的像素电极。
    • 6. 发明授权
    • Electro-sensitive thermal transfer recording medium
    • 电敏热转印记录介质
    • US5399436A
    • 1995-03-21
    • US102417
    • 1993-08-05
    • Hiroshi TakayamaKenji Ogi
    • Hiroshi TakayamaKenji Ogi
    • B41M5/382B41M5/20B41M5/398B41M5/44B32B15/08
    • B41M5/44B41M5/3825B41M5/398Y10S428/913Y10T428/24901Y10T428/24917Y10T428/31721
    • An electro-sensitive thermal transfer recording medium comprises a metal support, and an electric resistor layer which is formed on one side of the metal support and comprises a resin and a conductive powder, said resistor layer having an absolute value of a linear expansion coefficient of not larger than 2.times.10.sup.-5 /.degree.C. in a temperature range of from 23.degree. C. to 450.degree. C., a tensile elongation of not larger than 5% at a stress of 0.5 Kgf/mm, and a volume specific resistance of from 10.sup.-1 to 10.sup.3 .OMEGA.cm at 23.degree. C. The medium may have an ink layer on the resistor layer or on the opposite side of the metal support. Alternatively, a powder ink-retaining layer may be formed on the other side of the metal support. In the latter type of medium, a powder ink is applied to the ink-retaining layer for electro-sensitive thermal transfer recording.
    • 电敏热转印记录介质包括金属载体和形成在金属载体的一侧上并包含树脂和导电粉末的电阻层,所述电阻层的绝对值为线膨胀系数的绝对值 在23℃〜450℃的温度范围内不大于2×10-5 /℃,在0.5Kgf / mm的应力下的拉伸伸长率不大于5%,体积电阻率 在23℃下从10-1到103欧米加厘米。介质可以在电阻层上或在金属载体的相对侧上具有油墨层。 或者,可以在金属支撑体的另一侧上形成粉末墨水保持层。 在后一种类型的介质中,将粉末墨施加到用于电敏热转印记录的保墨层上。
    • 8. 发明授权
    • Image processing method and image processing apparatus
    • 图像处理方法和图像处理装置
    • US07379211B2
    • 2008-05-27
    • US10393327
    • 2003-03-20
    • Akira IshiiKenji Ogi
    • Akira IshiiKenji Ogi
    • H04N1/40
    • H04N1/4055
    • An image processing method that puts input image data represented by multi-value pixels into gradation representation of dots having binary data of plural minute pixels while performing error diffusion processing. The method includes a first step that when a dot is formed which corresponds to correction image data produced by adding correction data to multi-value image data of a multi-value target pixel, only in the case where the dot is to be formed so as to be adjacent to a dot formed for a proper adjacent multi-value pixel, forms the dot even if it has less than k (2 or greater integer) number of minute pixels. In other cases, the method forms only a dot having k number of minute pixels or more.
    • 一种图像处理方法,其在执行误差扩散处理的同时,将由多值像素表示的输入图像数据放入具有多个微小像素的二进制数据的点的灰度表示中。 该方法包括第一步骤,当形成对应于通过将校正数据添加到多值目标像素的多值图像数据而产生的校正图像数据的点时,仅在要形成点的情况下 与形成为适当的相邻多值像素的点相邻,即使其小于k(2个或更大整数)个微小像素,也形成点。 在其他情况下,该方法仅形成具有k个微小像素以上的点。