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    • 3. 发明授权
    • Image capture device
    • 图像捕获设备
    • US07804624B2
    • 2010-09-28
    • US11606130
    • 2006-11-30
    • Andrei Cernasov
    • Andrei Cernasov
    • H04N1/04G02B26/00G06F3/12
    • H04N1/195H04N1/0316H04N1/10H04N19/122H04N19/126H04N19/129H04N19/60H04N19/625H04N19/70H04N2201/0081
    • A device and method for scanning an image of an object are disclosed. The device includes a controlled transparency film (5) and a set of light detectors (80). A backlight (50) may be used for scanning the object. The controlled transparency film is modulated to apply a series of filters on the backlight as it bounces off the object, back toward the detectors. The light detectors are sampled while each filter is being applied. The resultant measurements correspond to coefficients of a two-dimensional image transform. These coefficients may be collected as a bitstream to be inserted into an image file. This allows the image data to be compressed as it is being captured, thereby reducing processor overhead.
    • 公开了一种用于扫描物体的图像的装置和方法。 该装置包括受控透明膜(5)和一组光检测器(80)。 可以使用背光源(50)来扫描物体。 受控的透明胶片被调制以在背光从物体反射回到检测器时将一系列滤光片施加在背光上。 每个过滤器被施加时,对光检测器进行采样。 所得到的测量值对应于二维图像变换的系数。 这些系数可以作为要插入到图像文件中的比特流来收集。 这允许图像数据在被捕获时被压缩,从而减少处理器开销。
    • 4. 发明申请
    • IMAGE READER
    • 图像读取器
    • US20090200477A1
    • 2009-08-13
    • US12195097
    • 2008-08-20
    • Masanari Takabatake
    • Masanari Takabatake
    • G01T1/24H01L27/00
    • H04N1/12H04N1/0286H04N1/0314H04N1/0316
    • In an image reader, if a first and second light sources alternately light-up when a conveying unit conveys an imaging target medium, a visible light data group that is based on a reflected light, of a wavelength inside a visible spectrum, of a first light having a wavelength inside the visible spectrum and a visible light external data group that is based on the reflected light, of the wavelength inside the visible spectrum, of a second light having a wavelength outside the visible spectrum are alternately generated. By scanning the imaging target medium once and by collecting multiple visible light data group, first image data of the imaging target medium, based on the first light, is generated. Furthermore, by collecting multiple visible light external data group, second image data of the imaging target medium, based on the second light, is also generated.
    • 在图像读取器中,如果第一和第二光源在传送单元传送成像目标介质时交替点亮,则基于可见光谱内的波长的反射光的第一可见光数据组 交替地产生具有可见光谱内的波长的光和可见光外部数据组,其中可见光外部数据组基于可见光谱内的波长的反射光,具有在可见光谱外的波长的第二光。 通过扫描成像目标介质一次并且通过收集多个可见光数据组,生成基于第一光的成像目标介质的第一图像数据。 此外,通过收集多个可见光外部数据组,也产生基于第二光的成像目标介质的第二图像数据。
    • 9. 发明授权
    • Contact type image sensor comprising a plurality of microlenses
    • 包括多个微透镜的接触型图像传感器
    • US5877492A
    • 1999-03-02
    • US713485
    • 1996-09-13
    • Ichiro FujiedaHiroshi Haga
    • Ichiro FujiedaHiroshi Haga
    • G02B6/42G02B3/00G02B6/04G02B6/12G02B6/124H01L27/146H04N1/028H04N1/031H01J40/14
    • H04N1/0312G02B6/1245H04N1/0311H04N1/0316G02B2006/12102G02B6/04
    • A full-contact type image sensor which includes a light source, a plurality of photo-electric conversion elements having apertures, a photoelectric conversion region, a plurality of micro-lenses, and an optical fiber converging member. The light from the light source is allowed to pass solely through the apertures and is blocked by the photoelectric conversion regions. The micro-lenses may be provided in one-to-one correspondence to a plurality of apertures or one-to-one correspondence to a plurality of optical fibers. The micro-lenses may be provided at least at one of a photoelectric conversion element side end and an original document side end of the optical fiber converging member. Instead of using such micro-lenses, the optical fiber converging member may be arranged such that a numerical aperture of the optical fibers at its first region on a side of the photoelectric conversion elements is set to be greater than a numerical aperture of the optical fibers at its second region on a side of the original document. It is possible to provide increased light utilization efficiency.
    • 一种全接触型图像传感器,包括光源,具有孔的多个光电转换元件,光电转换区域,多个微透镜和光纤会聚构件。 允许来自光源的光仅通过孔径并被光电转换区域阻挡。 微透镜可以与多个孔一一对应地提供,或者与多个光纤一一对应地提供。 微透镜可以设置在光纤会聚构件的光电转换元件侧端和原稿侧端的至少一个处。 代替使用这种微透镜,光纤会聚构件可以被布置成使得光电转换元件侧的第一区域处的光纤的数值孔径被设定为大于光纤的数值孔径 在原始文件一侧的第二个地区。 可以提供增加的光利用效率。