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    • 1. 发明授权
    • Bow adjustment in an optical scanning system by adjusting the curvature of a cylindrical mirror
    • 通过调节圆柱形镜的曲率在光学扫描系统中进行弓形调节
    • US06791595B1
    • 2004-09-14
    • US10377957
    • 2003-02-27
    • Russell B. Rauch
    • Russell B. Rauch
    • B41J1514
    • G02B26/0825B41J2/471
    • A mirror mount adjusts the curvature of a cylindrical mirror along the optical axis of the mirror, typically the wobble correction mirror, to adjust the scanline bow for an optical scanner. By adjusting the curvature in the mirror mount of the cylindrical axis of the mirror in the plane parallel to the mirror, the scanline bows among multiple ROS's can be approximately equalized. A mirror mount has two fixed abutments on the upper edge of the cylindrical mirror and two moveable abutment points along the lower edge of the mirror. The mirror mount adjusts the curvature of the cylindrical mirror vertically for a horizontal beam to adjust the scanline bow for a single beam and approximately equalize the scanline bow for multiple. ROS units in the printing system. During the bow adjustment the cross sectional shape of the cylindrical mirror is naintained so that the cross scan spotsize is maintained during the adjustment.
    • 反射镜安装座沿镜子的光轴(通常为摆动校正镜)调节圆柱形镜的曲率,以调整光学扫描仪的扫描线弓。 通过调整反射镜的圆柱轴线的反射镜在平行于反射镜的平面中的曲率,多个ROS之间的扫描线弓可近似平衡。 镜面支架在圆柱形反射镜的上边缘上具有两个固定的支座,沿着镜子的下边缘有两个可移动的邻接点。 反射镜安装座垂直调节圆柱形镜的曲率,以调整水平光束,以调整单个光束的扫描线弓,并将扫描线弓近似均衡。 ROS单元在打印系统中。 在弓调节期间,保持柱面镜的横截面形状,使得在调节期间保持横扫点。
    • 2. 发明授权
    • Rod lens array and printer head and optical printer using the same
    • 杆镜头阵列和打印机头和光学打印机使用相同
    • US06788329B2
    • 2004-09-07
    • US10201001
    • 2002-07-24
    • Motomu Fukasawa
    • Motomu Fukasawa
    • B41J1514
    • G02B3/0056B41J2/451G02B3/0012
    • A rod lens array to be used for an optical printer, including: (a) a plurality of rod lenses arranged in an array; (b) a substance filled between the plurality of rod lenses; and (c) a pair of substrates sandwiching the plurality of rod lenses and the substance, wherein each of the substrates comprises a panel member and a layer formed on the surface of the panel member bearing the rod lenses thereon, and wherein the panel member is made of a fiber-reinforced plastic material and the layer is made of a resin, and the layer eliminates undulations formed by the fibers in the panel member.
    • 一种用于光学打印机的棒状透镜阵列,包括:(a)排列成阵列的多个棒状透镜; (b)填充在所述多个棒状透镜之间的物质; 和(c)夹着所述多个棒状透镜和物质的一对基板,其中,所述基板中的每一个包括面板构件和在所述面板构件的表面上形成的层,所述面板在所述面板构件的表面上承载有所述杆状透镜,并且其中所述面板构件 由纤维增强塑料材料制成,该层由树脂制成,并且该层消除由面板构件中的纤维形成的起伏。
    • 4. 发明授权
    • Compound optical device, compound optical unit including the compound optical device, and optical pickup apparatus including the compound optical unit
    • 复合光学器件,包括复合光学器件的复合光学单元和包括复合光学单元的光学拾取装置
    • US06664998B1
    • 2003-12-16
    • US09676193
    • 2000-09-28
    • Shoichi KyoyaTatsumaro Yamashita
    • Shoichi KyoyaTatsumaro Yamashita
    • B41J1514
    • G11B7/1275G11B7/123G11B7/1353G11B7/1362G11B2007/0006
    • A compound optical unit includes a housing mounted on an optical pickup apparatus, the housing has a semiconductor laser device, a light receiving device, and a compound optical device, fixed to the housing. The semiconductor laser device includes a laser diode for emitting shorter wavelength laser beams for a DVD and another laser diode for emitting longer wavelength laser beams for a CD. The compound optical device includes an incidence surface and an emission surface for receiving and emitting, respectively, the light beams emitted by the semiconductor laser device, a diffraction lattice provided on the emission surface for diffracting light beams reflected and returned from an optical disk, and a reflective surface for reflecting the light beams diffracted by the diffraction lattice toward the light receiving device. The reflective surface is provided with a correction element for focusing the light beams of different wavelengths on one light receiving position of the light receiving device.
    • 复合光学单元包括安装在光学拾取装置上的壳体,壳体具有固定到壳体的半导体激光装置,光接收装置和复合光学装置。 半导体激光器件包括用于发射用于DVD的较短波长激光束的激光二极管和用于发射用于CD的较长波长激光束的另一激光二极管。 复合光学器件包括入射表面和发射表面,用于分别接收和发射由半导体激光器件发射的光束,在发射表面上提供的用于衍射从光盘反射和返回的光束的衍射光栅,以及 用于将由衍射晶格衍射的光束反射到光接收装置的反射表面。 反射面设置有用于将不同波长的光束聚焦在光接收装置的一个光接收位置上的校正元件。
    • 7. 发明授权
    • Image recording apparatus and optical recording head
    • 图像记录装置和光学记录头
    • US06330019B1
    • 2001-12-11
    • US09392653
    • 1999-09-09
    • Hideji Kubokawa
    • Hideji Kubokawa
    • B41J1514
    • B41J2/46
    • The terminations of the optical fibers are placed on columns L1 in the sub-scanning direction of a recording medium and fixed in such a way that columns L1 are stacked in multiple stages in the main scanning direction of the recording medium. In this way, the terminations form a matrix made up of 8 columns L1 in the sub-scanning direction of the recording medium and 16 rows L2 in the main scanning direction of the recording medium that intersect columns L1. The terminations of a plurality of optical fibers which belong to same columns L1 are arrayed with pitch P. With respect to a perpendicular that passes through center C of the termination of one optical fiber, center C of the termination that belongs to another column L1 and same row L2 at the same time is uniformly shifted by an amount of shift S in the sub-scanning direction. Thus, the present recording apparatus achieves improvements in both the recording speed and resolution at the same time.
    • 光纤的端子被放置在记录介质的副扫描方向上的列L1上,并且以这样的方式固定,使得列L1在记录介质的主扫描方向上多级堆叠。 以这种方式,终端形成由记录介质的副扫描方向上的8列L1构成的矩阵和与列L1相交的记录介质的主扫描方向上的16行L2。 属于同一列L1的多根光纤的终端以间距P排列。相对于通过一根光纤的终端的中心C的垂直线,属于另一列L1的终端的中心C和 同一行L2同时在副扫描方向上移位移位量S。 因此,本记录装置同时实现记录速度和分辨率的改善。
    • 8. 发明授权
    • Multi-beam scanning optical system with reduced interbeam displacement and image forming apparatus using the same
    • 具有减小的光束间位移的多光束扫描光学系统和使用其的成像装置
    • US06833855B2
    • 2004-12-21
    • US10115091
    • 2002-04-04
    • Hiroki Yoshida
    • Hiroki Yoshida
    • B41J1514
    • B41J2/473G02B26/123
    • A multi-beam scan optical system and an image forming apparatus using the same are provided in which high-quality printing can be realized at high speed with a relatively simple construction. The multi-beam scanning optical system comprises an entrance optical unit for introducing, to a deflecting unit, a plurality of light beams emitted from a light source unit having a plurality of light emitting portions arranged apart from each other at least in a main scan direction; a scanning optical unit for focusing the plurality of light beams deflected by the deflecting unit on a surface to be scanned; and a synchronous detection optical unit for converging, by a synchronous detection lens unit, parts of the plurality of light beams deflected by the deflecting unit on a plane of a slit, introducing the parts of the plurality of light beams to a synchronous detection sensor, and controlling timing of scan start positions on the surface to be scanned with respect to the plurality of light beams by using signals from the synchronous detection sensor. The focal distance of the scanning optical unit differs from the focal distance of the synchronous detection lens unit, and a predetermined conditional formula (A) is satisfied.
    • 提供了一种多光束扫描光学系统和使用该多光束扫描光学系统的图像形成装置,其中可以以相对简单的结构高速实现高质量打印。 多光束扫描光学系统包括入射光学单元,用于将从光源单元发射的多个光束至少在主扫描方向上彼此分开布置的多个发光部分引入到偏转单元 ; 扫描光学单元,用于将由偏转单元偏转的多个光束聚焦在待扫描的表面上; 以及同步检测光学单元,用于通过同步检测透镜单元将由偏转单元偏转的多个光束的一部分会聚在狭缝的平面上,将多个光束的一部分引入同步检测传感器, 以及通过使用来自同步检测传感器的信号来控制要扫描的表面上的扫描开始位置相对于多个光束的定时。 扫描光学单元的焦距与同步检测透镜单元的焦距不同,并且满足预定条件式(A)。