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    • 72. 发明申请
    • Projecting exposure apparatus
    • 投影曝光装置
    • US20040223229A1
    • 2004-11-11
    • US10838224
    • 2004-05-05
    • Hiromi Ishikawa
    • B41J002/47G02B013/22
    • G03F7/70291B41J2/451G02B26/0833G03F7/70258G03F7/70275
    • A spatial light modulator has pixel sections for performing spatial light modulation of light. An image-side telecentric image forming optical system forms an image of a two-dimensional pattern of the light having been obtained from the spatial light modulation. A microlens array having microlenses arrayed in two-dimensional directions is located in the vicinity of a plane of image formation of the two-dimensional pattern, whose image is formed by the image forming optical system. A magnification adjusting optical system for adjusting a magnification of image formation at the time of the formation of the image of the two-dimensional pattern of the light with the image forming optical system is located between the image forming optical system and the microlens array.
    • 空间光调制器具有用于执行光的空间光调制的像素部分。 图像侧远心成像光学系统形成从空间光调制获得的光的二维图案的图像。 具有排列成二维方向的微透镜的微透镜阵列位于图像形成光学系统形成的二维图案的图像形成平面附近。 用于通过图像形成光学系统形成光的二维图案的图像时调整图像形成的倍率的倍率调节光学系统位于图像形成光学系统和微透镜阵列之间。
    • 73. 发明申请
    • Optical write head, and method for assembling the same
    • 光写头,及其组装方法
    • US20040135875A1
    • 2004-07-15
    • US10476745
    • 2003-11-03
    • Masahide Wakisaka
    • B41J002/45
    • B41J2/451
    • A light-emitting element array is mounted on a light-emitting element mounting substrate and the light-emitting element mounting substrate is attached to a heat sink for discharging the heat from the light-emitting element array. The heat sink is fixed to a lens-supporting member for supporting a rod lens array at specific intervals along the longitudinal direction of the lens-supporting member. And a driver substrate having an electronic device for driving the light-emitting element array mounted on it is attached to the lens-supporting member. Aligning pieces and adjusting plates are alternately adhesively fixed to a side face of the rod lens array in the longitudinal direction of the rod lens array, and aligning piece bearing bases are adhesively fixed at opposite positions of the lens-supporting member to the aligning pieces. An aligning piece fits onto an aligning piece bearing base and is slid by an angular adjustment of an adjusting pole provided on the adjusting plate to make the optical axis of a rod lens variable.
    • 发光元件阵列安装在发光元件安装基板上,发光元件安装基板安装在散热片上,用于从发光元件阵列排出热量。 散热器被固定到透镜支撑构件,用于沿着透镜支撑构件的纵向以特定间隔支撑棒状透镜阵列。 并且具有用于驱动安装在其上的发光元件阵列的电子装置的驱动器基板安装到透镜支撑构件。 对准件和调节板交替地粘合地固定在棒状透镜阵列的杆状透镜阵列的纵向方向的侧面上,并且对准片承载底座粘合地固定在透镜支撑构件对准对准件的相对位置处。 对准件安装在对准件轴承座上,并通过设置在调节板上的调节杆的角度调节而滑动,使杆透镜的光轴可变。
    • 76. 发明申请
    • Imaging device for printing form
    • 用于打印表单的成像装置
    • US20040020986A1
    • 2004-02-05
    • US10463943
    • 2003-06-18
    • Heidelberger Druckmaschinen AG
    • Uwe ErnstBernd Vosseler
    • G06K007/00
    • G02B27/09B41C1/1083B41J2/451
    • A device for recording images on a printing form (46), having at least one laser diode bar (10), which includes a number of laser diodes (12) whose image spots (56) lie disjunctly in an image field (36), and having an array (16) of microlenses (20) positioned in the emission region (14) of the light radiated by the laser diode bar, one microlens (20) being assigned to each optical path (18) of a laser diode (12). The device is distinguished in that at least one first laser diode (22) and one second laser diode (24) are densely positioned on the laser diode bar (10) in such a way that the first optical path (26) of the first laser diode (22) and the second optical path (28) of the second laser diode (24) run through a first microlens (30) of the array. The device can be used, in particular, in a print unit or a printing press and, at a given width of the laser diode bar, makes it possible to provide a greatest possible number of imaging channels (40).
    • 一种用于在印刷版(46)上记录图像的装置,具有至少一个激光二极管条(10),该激光二极管条(10)包括其图像斑点(56)在图像场(36)中分离的多个激光二极管(12) 并且具有位于由激光二极管条辐射的光的发射区域(14)中的微透镜阵列(16),一个微透镜(20)被分配给激光二极管(12)的每个光路(18) )。 该器件的特征在于至少一个第一激光二极管(22)和一个第二激光二极管(24)密集地位于激光二极管条(10)上,使得第一激光器的第一光路(26) 第二激光二极管(24)的二极管(22)和第二光路(28)穿过阵列的第一微透镜(30)。 该装置特别可以用在打印单元或印刷机中,并且在激光二极管条的给定宽度处可以提供最大可能数量的成像通道(40)。
    • 77. 发明授权
    • Multimode multi-track optical recording system
    • 多模多轨光记录系统
    • US06646669B2
    • 2003-11-11
    • US09735472
    • 2000-12-14
    • Daniel Gelbart
    • Daniel Gelbart
    • B41J1514
    • B41J2/451
    • A method and apparatus for an improved multimode multi-track optical recording system are disclosed. A monolithic array of individually addressable multimode laser diode stripes is imaged onto a recording media, where the individual diode stripe images form a plurality of tracks. Introduction of astigmatism between each multimode laser diode and the recording medium causes the diode stripe images to be relatively sharply focussed on their short axes, but less focussed on their elongated axes. This blurring of the diode stripe images on their elongated axes at the surface of the recording media overcomes near-field non-uniformity in the power distribution of the multimode diode, increasing the reliability and overall performance of the recording system.
    • 公开了一种用于改进的多模多轨光记录系统的方法和装置。 可单独寻址的多模激光二极管条的单片阵列被成像到记录介质上,其中各个二极管条纹图像形成多个轨道。 在每个多模激光二极管和记录介质之间引入像散导致二极管条纹图像相对尖锐地集中在其短轴上,但较少集中在其细长轴上。 在记录介质表面的细长轴上的二极管条纹图像的模糊克服了多模二极管的功率分布中的近场不均匀性,从而提高了记录系统的可靠性和整体性能。