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    • 6. 发明授权
    • Device and method for forming a nip in an image forming apparatus
    • 用于在图像形成装置中形成辊隙的装置和方法
    • US07974552B2
    • 2011-07-05
    • US12759915
    • 2010-04-14
    • Atsushi ImamuraYujiro NomuraYoshihisa Saka
    • Atsushi ImamuraYujiro NomuraYoshihisa Saka
    • G03G15/08
    • G03G15/1605G03G15/0131G03G2215/0129
    • An image forming apparatus includes an image carrier which moves while carrying an image and a transfer roller including a roller base material which faces the image carrier and rotates. A concave portion is positioned on a peripheral surface of the roller base material. A grip unit on the concave portion grips a recording medium. An elastic layer is disposed on a peripheral surface of the roller base material. The transfer roller grips a recording medium by the grip unit when the concave portion faces the image carrier and passes the recording medium through a nip between the image carrier and the elastic layer when facing each other so that the image carried on the image carrier is transferred on the recording medium. A roller driving unit rotates the roller base material. A control unit controls the roller driving unit to adjust a timing for forming the nip.
    • 图像形成装置包括:承载图像时移动的图像载体和包括面向图像载体并旋转的辊基材的转印辊。 凹部位于辊基材的周面上。 凹部上的夹持单元夹持记录介质。 弹性层设置在辊基材的圆周表面上。 当凹部面向图像载体时,转印辊通过抓握单元夹持记录介质,并且当彼此面对时使记录介质通过图像载体和弹性层之间的辊隙,使得载体在图像载体上的图像被转印 在记录介质上。 辊驱动单元使辊基材旋转。 控制单元控制辊驱动单元来调节形成辊隙的时间。
    • 7. 发明申请
    • Extra-high pressure mercury lamp
    • 超高压汞灯
    • US20060055329A1
    • 2006-03-16
    • US11221768
    • 2005-09-09
    • Takashi YamashitaAtsushi ImamuraTetsuji Hirao
    • Takashi YamashitaAtsushi ImamuraTetsuji Hirao
    • H01J17/04
    • H01J61/0732H01J61/822
    • The present invention relates to an extra-high pressure mercury lamp in which 0.15 mg/mm3 or more of mercury is filled as light emitting material, and a pair of electrodes facing each other is disposed in an arc tube, in which at least one of the pair of electrodes has an axis portion, and a thick diameter portion formed by winding a coil around the axis portion, the thick diameter portion comprising a winding portion provided on the axis portion, and a curvature portion which is integrally formed with the axis portion, and has a curved portion at least in part around a circumference of the axis portion between the axis portion and the curvature portion, and the curved portion connected to a back end portion of the winding portion.
    • 本发明涉及作为发光材料填充0.15mg / mm 3以上的汞的超高压汞灯,并且在电弧管中设置一对电极,其中,至少一个 所述一对电极具有轴部,所述厚直径部通过将线圈卷绕在所述轴部上而形成,所述厚直径部包括设置在所述轴部上的卷绕部,以及与所述轴部整体形成的曲率部 并且在所述轴部与所述曲率部之间至少部分地围绕所述轴部的圆周形成弯曲部,所述弯曲部与所述卷绕部的后端部连接。
    • 9. 发明申请
    • Apparatus and method for detecting hole area
    • 孔面积检测装置及方法
    • US20050254700A1
    • 2005-11-17
    • US11102770
    • 2005-04-11
    • Yasushi NagataHiroshi SanoAtsushi ImamuraEiji Nishihara
    • Yasushi NagataHiroshi SanoAtsushi ImamuraEiji Nishihara
    • G01B11/00G01N21/956G06K9/00G06T1/00G06T7/00
    • G06T7/0004G06T2207/30141
    • A board (9) is placed on a stage part (20) so that the back surface of the board is opposed to the stage part (20). The stage part cuts off light entering a hole penetrating the board (9) from a side of its back surface which is a reverse surface with respect to its pattern formed surface and has a reflection property which is different from that of the pattern formed surface with respect to an illumination light, and the illumination light is emitted from a light source part (31) onto the pattern formed surface (9a). An image pickup part (33) receives light from the pattern formed surface to acquire an inspection image, and a hole-area specifying part implemented by a computer (4) specifies a hole area in the inspection image, which corresponds to a hole of the board (9), by using only the inspection image as image information, in accordance with criteria of pixel values affected by a reflection state of the illumination light entering a hole penetrating the board (9) and being reflected on the stage part (20). Thus, it is possible to detect an area of a hole on the board (9) by using only the inspection image acquired with a reflected light of the illumination light from the light source part (31).
    • 板(9)放置在平台部分(20)上,使得板的后表面与平台部分(20)相对。 舞台部分从其背面的相对于其图案形成表面的反面的一侧切断穿入基板(9)的孔,并具有与图案形成面不同的反射特性, 相对于照明光,照明光从光源部(31)发射到图案形成面(9a)上。 图像拾取部分(33)从图案形成表面接收光以获取检查图像,并且由计算机(4)实现的孔区域指定部分指定检查图像中的与孔的区域相对应的孔面积 (9)中,仅通过仅使用检查图像作为图像信息,根据影响入射穿过基板(9)的孔的照明光的反射状态并被反射在台面部(20)上的像素值的标准, 。 因此,可以通过仅使用由来自光源部分(31)的照明光的反射光获取的检查图像来检测板(9)上的孔的区域。
    • 10. 发明授权
    • Method and apparatus for generating color image mask
    • 用于生成彩色图像掩模的方法和装置
    • US5659490A
    • 1997-08-19
    • US466598
    • 1995-06-06
    • Atsushi Imamura
    • Atsushi Imamura
    • G06T11/00H04N1/62
    • G06T11/001
    • A subject color and a non-subject color of a mask is specified, and a first color vector representing the subject color and a second color vector representing the non-subject color are determined. A third color vector is set to be linearly independent of the first and second color vectors. First through third coefficients are then determined for the first through third color vectors. Bit map data representing the distribution of the first coefficient is binarized to give binary mask data representing a mask. A mask area and a non-mask area are distinguishably displayed in the color image. Accordingly, the present invention will produce a mask area whose color is close to the subject color while excluding the non-subject color.
    • 指定掩模的对象颜色和非对象颜色,并且确定表示对象颜色的第一颜色矢量和表示非对象颜色的第二颜色矢量。 将第三颜色矢量设置为与第一和第二颜色矢量线性无关。 然后,对于第一至第三颜色矢量确定第一到第三系数。 表示第一系数的分布的位图数据被二值化以给出表示掩码的二进制掩码数据。 掩模区域和非掩模区域可区分地显示在彩色图像中。 因此,本发明将产生其颜色接近被摄体颜色的掩模区域,同时排除非对象颜色。