Abstract:
An image sensor includes a light receiving insulating substrate which has a plurality of light receiving elements with one row disposed on one major surface and has a first wiring portion on one side of the major surface for connecting the light receiving elements to a plurality of external driving elements; a driving insulating substrate which has the driving elements mounted on one major surface and has a second wiring portion on one side of the major surface for connecting the driving elements to the light receiving elements; a press-contact connector for electrically connecting the wiring portions, keeping the light receiving insulating substrate and the driving insulating substrate in contact with each other with their respective wiring portions positioned back to back; and engaging means provided close to at least one of the wiring portions in the light receiving insulating substrate and the driving insulating substrate and also provided in the press-contact connector, for enhancing a mechanical holding strength of the press-contact connector to the insulating substrates.
Abstract:
A scanning optical apparatus comprises a light source unit scanning means for deflecting a beam from said light source unit and scanning a scanning surface with the beam, means for detecting the beam scanned on said scanning surface and control maens for controlling the beam scanned on said scanning surface in a direction perpendicular to said scanning surface on the basis of a magnitude and a change as a function of time of a signal output from said detecting means.
Abstract:
A photographic system for accurately reproducing encoded information onto a recording medium is disclosed. The system includes an image/light source, a feedback sensor, a lens assembly, a controller, a recording medium assembly and a reading sensor, whereby encoded information is decomposed into sections, adjusted, and transmitted such that the sections are correctly aligned and smoothly joined into a final reproduced image. According to the present invention, encoded information can also be digitized and read.
Abstract:
The apparatus includes a primary scanner including laser light sources (10B, 10C) and rotating polygonal mirror (12), which produces a scanning optical beam on a drum (16), and a photoresponsive error sensor (22, 24, 28) which effectively measures over the scan path the successive differences between the actual position of the scanning beam and the desired position of the scanning beam and produces error signal. A secondary scanner (30, 32) is connected to the error sensor for response to the error signals to dynamically correct the position of the scanning beam during the course of the scan. The primary scanner provides a main optical scanning beam and an auxiliary optical scanning beam (20C) traversing substantially the same optical path. The error sensor includes a graticule mask (22) having a substantially uniform optical density along the desired scan path and a graded optical density transverse to the desired scan path of the auxiliary scanning beam.
Abstract in simplified Chinese:在输入出A0版式A1版等大型原稿之影像的影像输入出设备中所采用之紧贴型影像侦知器,其纵向之刚性较弱,而有因为自重使纵向中央部产生挠曲之问题。在此,借由将挠曲矫正器具14安装在紧贴型影像侦知器1之纵向上,来补强紧贴型影像侦知器1之纵向的刚性。挠曲矫正器具14借由补强紧贴型影像侦知器1之刚性,来防止紧贴型影像侦知器1相对于纵向,在垂直方向上挠曲,使原稿2之读取面和侦知器IC7之间的焦点光路长度保持一定。
Abstract in simplified Chinese:本发明提供影像传感器和影像传感器之制造方法,即使在线照明设备和框架之间有热膨胀差或热收缩差之情况时,线照明设备或框架亦不会发生应力,不会发生翘曲等之不良。本发明之影像传感器具备有:线照明设备,用来照射原稿;受光组件数组,用来接受来自被照射之上述原稿之反射光;透镜数组,用来使上述原稿和上述受光组件数组进行成像;框架,用来收纳上述线照明设备,上述透镜数组,和上述受光组件数组;和弹性保持部,用来将被装载在上述框架之上述线照明设备压着上述框架。