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    • 32. 发明申请
    • FIXING APPARATUS AND IMAGE FORMING APPARATUS
    • 固定装置和图像形成装置
    • US20080226363A1
    • 2008-09-18
    • US12043249
    • 2008-03-06
    • Yoshinobu TATEISHIToyoaki NanbaTadasu TaniguchiToshiya Mikita
    • Yoshinobu TATEISHIToyoaki NanbaTadasu TaniguchiToshiya Mikita
    • G03G15/20
    • G03G15/2025
    • A fixing apparatus is provided with a fixing roller that fixes a toner image that has been transferred onto a paper, a cleaning member that cleans a circumferential surface of the fixing roller using a metal roller that is idly rotated by contacting the circumferential surface of the fixing roller, a drive control means that, at a predetermined timing, sets a rotation velocity of the fixing roller to high-speed rotation that is faster by a predetermined velocity than a rotation velocity during print processing, a load torque detection means that detects a load torque of a drive source of the fixing roller, and a determination means that determines an extent of smearing of the cleaning member based on a load torque detected by the load torque detection means during high-speed rotation by the drive control means.
    • 定影装置设置有定影辊,该定影辊固定已经转印到纸上的调色剂图像;清洁部件,其使用通过接触定影辊的周向表面而空转的金属辊来清洁定影辊的圆周表面 驱动控制装置,其特征在于,在预定定时,将定影辊的旋转速度设定为比打印处理期间的旋转速度快的预定速度的高速旋转,检测负载的负载转矩检测装置 定影辊的驱动源的扭矩,以及确定装置,其基于由驱动控制装置在高速​​旋转期间由负载转矩检测装置检测到的负载转矩来确定清洁部件的拖尾程度。
    • 36. 发明授权
    • Image forming apparatus
    • 图像形成装置
    • US06721521B2
    • 2004-04-13
    • US09780347
    • 2001-02-12
    • Hiroshi KataokaTadasu TaniguchiKeizo Fukunaga
    • Hiroshi KataokaTadasu TaniguchiKeizo Fukunaga
    • G03G1501
    • G03G21/1609G03G15/0194G03G2221/1603G03G2221/1684
    • An image forming apparatus includes the first image forming section for forming color images, and the second image forming section for forming monochrome images, wherein the first image forming section is slidable through an opening formed on the front face of the main body, while the second image forming section is slidable through an opening formed on the side face of the main body so that the first and second image forming sections slide in mutually orthogonal directions. With this arrangement, various maintenance operations of each unit can be performed while suppressing a reduction in strength of the main body, whereby degradation of image quality with life can be avoided for a long period of time.
    • 图像形成装置包括形成彩色图像的第一图像形成部分和用于形成单色图像的第二图像形成部分,其中第一图像形成部分可以通过形成在主体前表面上的开口滑动,而第二图像形成部分 图像形成部可以通过形成在主体的侧面上的开口滑动,使得第一和第二图像形成部在相互正交的方向上滑动。 利用这种布置,可以在抑制主体强度的降低的同时进行各单元的各种维护操作,从而可以长时间避免图像质量随着寿命的降低。
    • 38. 发明授权
    • Projecting device
    • 投影设备
    • US4626082A
    • 1986-12-02
    • US647270
    • 1984-09-04
    • Noritaka MochizukiSetsuo MinamiYoshiya MatsuiTadasu Taniguchi
    • Noritaka MochizukiSetsuo MinamiYoshiya MatsuiTadasu Taniguchi
    • G02B3/00G02B13/24G03B27/52G02B13/26
    • G02B3/0056G02B13/24G03B27/525
    • A projecting device comprising an array of axial element lens systems, wherein each element lens system includes a single bar lens having an axial length larger than the effective aperture and adapted to form an intermediate image of a pixel of the object plane and an erect image of a magnification of unity not vertically nor laterally inverted in such a manner that the light intensity on the image plane corresponding to said pixel is defined in the form of Gaussian distribution by the eclipse of the aperture. The element lens systems are arranged in a plane perpendicular to the optical axis so as to cause the light intensity distributions of said systems to mutually overlap in the peripheral areas thereof on the image plane, wherein each row of the systems in the array is displaced by a half pitch with respect to the neighboring row to constitute a staggered arrangement thereby achieving a uniform exposure distribution, integrated in time, in the scanning direction.
    • 一种包括轴向元件透镜系统的阵列的投影装置,其中每个元件透镜系统包括具有大于有效孔径的轴向长度的单杆透镜,并且适于形成物平面的像素的中间图像和 单位的放大率不垂直或横向倒置,使得对应于所述像素的图像平面上的光强度通过孔径的日食被限定为高斯分布的形式。 元件透镜系统布置在垂直于光轴的平面中,以便使得所述系统的光强度分布在其在像平面上的周边区域中相互重叠,其中阵列中的每一系列被位移 相对于相邻行的半间距构成交错布置,从而实现在扫描方向上集成的均匀的曝光分布。