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    • 2. 发明授权
    • Color filter and method of making the same
    • 彩色滤光片及其制作方法
    • US06322936B1
    • 2001-11-27
    • US09171527
    • 1998-10-21
    • Takao NishikawaHiroshi KiguchiMasaru Kojima
    • Takao NishikawaHiroshi KiguchiMasaru Kojima
    • G02B520
    • G02B5/223G02B5/201
    • A template (12) having a plurality of protrusions (13) in a predetermined arrangement is fabricated to facilitate the formation of ink filling concavities for forming a color pattern layer. An ink filling layer precursor (11) is attached to the template (12) and, after the ink filling layer precursor (11) has solidified to form an ink filling layer (14), the ink filling layer (14) having a plurality of ink filling concavities (15) is transfer-formed by separating the ink filling layer (14) from the template (12). Ink of previously determined colors are filled into these ink filling concavities (15) to form a color pattern layer (16).
    • 制造具有预定布置的多个突起(13)的模板(12),以便于形成用于形成彩色图案层的墨水填充凹部。 油墨填充层前体(11)附着到模板(12)上,并且在油墨填充层前体(11)固化形成油墨填充层(14)之后,具有多个 油墨填充凹部(15)通过将油墨填充层(14)与模板(12)分离而转印。 预先确定的颜色的墨水被填充到这些墨水填充凹部(15)中以形成彩色图案层(16)。
    • 3. 发明授权
    • Color filter and method of making the same
    • 彩色滤光片及其制作方法
    • US06426166B2
    • 2002-07-30
    • US09817191
    • 2001-03-27
    • Takao NishikawaHiroshi KiguchiMasaru Kojima
    • Takao NishikawaHiroshi KiguchiMasaru Kojima
    • G02B520
    • G02B5/223G02B5/201
    • A template (12) having a plurality of protrusions (13) in a predetermined arrangement is fabricated to facilitate the formation of ink filling concavities for forming a color pattern layer. An ink filling layer precursor (11) is attached to the template (12) and, after the ink filling layer precursor (11) has solidified to form an ink filling layer (14), the ink filling layer (14) having a plurality of ink filling concavities (15) is transfer-formed by separating the ink filling layer (14) from the template (12). Ink of previously determined colors are filled into these ink filling concavities (15) to form a color pattern layer (16).
    • 制造具有预定布置的多个突起(13)的模板(12),以便于形成用于形成彩色图案层的墨水填充凹部。 油墨填充层前体(11)附着到模板(12)上,并且在油墨填充层前体(11)固化形成油墨填充层(14)之后,具有多个 油墨填充凹部(15)通过将油墨填充层(14)与模板(12)分离而转印。 预先确定的颜色的墨水被填充到这些墨水填充凹部(15)中以形成彩色图案层(16)。
    • 5. 发明授权
    • Large EL panel and manufacturing method therefor
    • 大型EL面板及其制造方法
    • US06967114B2
    • 2005-11-22
    • US10617746
    • 2003-07-14
    • Tatsuya ShimodaTakao Nishikawa
    • Tatsuya ShimodaTakao Nishikawa
    • G09F9/30G09F9/313G09F9/40H01L27/32H01L51/50H05B33/12H05B33/14H01L21/00
    • H01L27/3293G09F9/313H01L27/3244
    • A manufacturing method is disclosed for a large EL panel in which a plurality of EL display panels are used. Each of said plurality of EL display panels are constructed of an EL display device and a sub-transparent substrate. The EL display device includes a base layer over which a luminescent material is applied, an electrode layer which is laminated on one side of said base layer, and a TFT layer including a circuit section. The circuit section of a TFT layer is disposed behind an adjacent EL display device. Thus, the EL display devices appear to be unified, forming a large EL display panel. In addition, in the case of in which a plurality of EL display devices are arranged in a matrix pattern, pitch between the pixels provided in the pixel section of the TFT array is maintained constant.
    • 公开了一种使用多个EL显示面板的大型EL面板的制造方法。 所述多个EL显示面板中的每一个由EL显示装置和副透明基板构成。 EL显示装置包括施加发光材料的基底层,层叠在所述基底层一侧的电极层和包括电路部分的TFT层。 TFT层的电路部分设置在相邻的EL显示装置的后面。 因此,EL显示装置看起来是统一的,形成大的EL显示面板。 此外,在多个EL显示装置以矩阵图案布置的情况下,设置在TFT阵列的像素部分中的像素之间的间距保持恒定。
    • 10. 发明授权
    • Printer
    • 打印机
    • US06480212B1
    • 2002-11-12
    • US09606838
    • 2000-06-28
    • Tatsuya ShimodaTakao Nishikawa
    • Tatsuya ShimodaTakao Nishikawa
    • B41J2385
    • H04N1/508B41J2/45G03G2215/0174
    • Primary scanning or other operation is not required by the light source of an internal exposure method, significantly improving the positioning of each color. An EL pixel array 134 is affixed as internal light source 124 to the entire surface of a photoconductive drum 114, and pixels controllable by TFT layer 144 are allocated to the entire image formation area of the photoconductive drum 114. Unlike with a conventional internal light source using an LED, a mechanism for moving in a primary scanning direction is therefore not needed and elements whereby the position of each color image shift are completely eliminated. As a result, there is absolutely no color shifting in full color images, and high quality images can be obtained.
    • 主要扫描或其他操作不需要内部曝光方法的光源,显着改善每种颜色的定位。 EL像素阵列134作为内部光源124固定在感光鼓114的整个表面上,并且由TFT层144控制的像素被分配给感光鼓114的整个图像形成区域。与传统的内部光源不同 因此,使用LED,因此不需要在主扫描方向上移动的机构,并且完全消除了每个彩色图像偏移的位置的元件。 结果,在全色图像中绝对没有颜色偏移,并且可以获得高质量的图像。