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    • 2. 发明授权
    • Flatbed sensor
    • 平板传感器
    • US07440150B2
    • 2008-10-21
    • US10895345
    • 2004-07-21
    • Chih-Kuang Wang
    • Chih-Kuang Wang
    • H04N1/04H04N1/00
    • H04N1/1013H04N1/1061H04N1/1065H04N1/193H04N2201/0081H04N2201/0434
    • A flatbed scanner includes a housing, a glass plate fixed to the housing, a front rib formed at a bottom face of a front part of the housing and extending downward, a back rib formed at a bottom face of the back part of the housing and extending downward, and side ribs formed at two sides of the housing and extending toward the center of the housing. The inner distance from the back rib to the front rib is not smaller than the length of the glass plate. The side ribs are under the bottom faces of the front part and the back part so as to form a fastening gap. Because the distance between the side ribs is smaller than the width of the glass plate, when the glass plate is inserted into the fastening gap, the glass plate is held.
    • 平板扫描器包括壳体,固定到壳体的玻璃板,形成在壳体的前部的底面并向下延伸的前肋,形成在壳体的后部底面的后肋, 和向下延伸的侧肋,以及形成在壳体的两侧并朝着壳体的中心延伸的侧肋。 从后肋到前肋的内部距离不小于玻璃板的长度。 侧肋在前部和后部的底面下方形成紧固间隙。 由于侧肋之间的距离小于玻璃板的宽度,因此当将玻璃板插入紧固间隙时,玻璃板被保持。
    • 3. 发明申请
    • Battery holder
    • 电池座
    • US20050147875A1
    • 2005-07-07
    • US11011041
    • 2004-12-15
    • Shih-Heng ChangKuang-Hsiang Chang
    • Shih-Heng ChangKuang-Hsiang Chang
    • H01M2/02H01M2/10
    • H01M2/1022H01M2/1027
    • A battery holder includes a casing, a set of engaging structures, and a baffle plate. The casing has a first surface and an opposed second surface flatter than the first one, and the second surface is formed with an opening at its central location and two apertures at its end. The set of engaging structures is formed on the second surface of the casing, and the baffle plate is pivotally supported on the engaging structures. The baffle plate is formed with a central projection at its central location and two end projections at its end. While the baffle plate is mounted on the second surface of the casing, the central projection is inserted into the casing through the opening and the end projections are inserted into the casing through the apertures.
    • 电池座包括壳体,一组接合结构和挡板。 壳体具有比第一表面平坦的第一表面和相对的第二表面,并且第二表面在其中心位置处形成有开口,在其端部形成有两个孔。 所述一组接合结构形成在所述壳体的第二表面上,并且所述挡板枢转地支撑在所述接合结构上。 挡板在其中心位置处形成有中心突起,在其端部形成两个端部突起。 当挡板安装在壳体的第二表面上时,中心突起通过开口插入到壳体中,并且端部突起通过孔插入壳体中。
    • 5. 发明授权
    • Optical length adjusting device
    • 光学长度调节装置
    • US6081363A
    • 2000-06-27
    • US198468
    • 1998-11-24
    • Christopher ShenHarn-Jou Yeh
    • Christopher ShenHarn-Jou Yeh
    • G02B26/08H04N1/04H04N1/10H04N1/193
    • H04N1/0432G02B26/0816H04N1/0402H04N1/0467H04N1/10H04N1/193
    • An optical length adjusting device provides different optical length for different lenses in a multi-resolution scanner. The optical length adjusting device includes a focus module for focusing the optical image on an image sensor, a first light reflecting device for directing the light from an object to the focus module, a first carrier for fixing the first light reflecting device, a second carrier for fixing the focus module, and a driving module for moving the first and/or second carriers to change the distance between them. Since the distance between the focus module and the first light reflecting module can be adjusted, the light from the object can be guided to the focus module via the same optical path for different resolution.
    • 光学长度调节装置为多分辨率扫描器中的不同透镜提供不同的光学长度。 光学长度调节装置包括用于将光学图像聚焦在图像传感器上的聚焦模块,用于将来自物体的光引导到聚焦模块的第一光反射装置,用于固定第一光反射装置的第一载体,第二载体 用于固定聚焦模块,以及驱动模块,用于移动第一和/或第二载体以改变它们之间的距离。 由于可以调整聚焦模块和第一光反射模块之间的距离,所以可以通过相同的光路将来自物体的光引导到聚焦模块以达到不同的分辨率。
    • 6. 发明授权
    • Transparency adapter for flatbed scanner
    • 平板扫描仪的透明度适配器
    • US5986774A
    • 1999-11-16
    • US886774
    • 1997-07-01
    • Loi Han
    • Loi Han
    • H04N1/028H04N1/10H04N1/193H04N1/04H04N1/46
    • H04N1/02845H04N1/02815H04N1/0285H04N1/02865H04N1/0287H04N1/0289H04N1/1017H04N1/193H04N2201/02462H04N2201/02466H04N2201/02485H04N2201/0404H04N2201/0442
    • A transparency adapter for a flat bed scanner of the type commonly used as a stand-alone computer peripheral, including a source of light, either white light such as fluorescent, or a series of red, green and blue light emitting diodes placed in a generally rectangular housing having a length corresponding to the width of the glass platen of a flat bed scanner, and including magnets at either longitudinal end of the transparency adapter, further including magnets positioned on the carriage inside of the flat bed scanner housing, whereby the magnets of the carriage are aligned with the magnets of the transparency adapter so that upon advancement of the carriage along the rails inside of the scanner from one end of the scanner to the other, the magnetic force of the attached magnets causes the transparency adapter to advance along the top surface of the glass platen and to move the transparency adapter in alignment with the carriage.
    • 通常用作独立计算机外围设备的平板扫描仪的透明适配器,包括光源,诸如荧光灯的白光或一般放置在一般的红色,绿色和蓝色发光二极管中的一系列 具有对应于平板扫描器的玻璃台板的宽度的长度的矩形壳体,并且在透明适配器的任一纵向端包括磁体,还包括位于平板扫描器壳体的滑架内部的磁体,由此磁体 滑架与透明度适配器的磁体对准,使得当滑架沿着扫描仪内部的轨道从扫描仪的一端前进到另一端时,附着的磁体的磁力使透明度适配器沿着 并且将透明适配器移动到与托架对准的位置。
    • 9. 发明授权
    • Calibrating device, mapping method and compensation method using the same
    • 校准装置,映射方法和补偿方法采用相同的方法
    • US08300281B2
    • 2012-10-30
    • US12561665
    • 2009-09-17
    • Wan-Jhang Yu
    • Wan-Jhang Yu
    • H04N1/04
    • H04N1/0313H04N1/00002H04N1/00013H04N1/00031H04N1/00045H04N1/00053H04N1/00063H04N1/00087H04N1/0009H04N1/193H04N1/1934
    • A calibrating device including a pixel unit array and a pattern is provided. The pixel unit array comprises parallel warp lines and parallel weft lines. Each warp line crosses each weft line to define pixel units all over the pixel unit array. The pattern comprises some pixel units having a gray level different from a gray level of remainder pixel units in the pixel unit array. The pattern comprises spaced bars parallel to one another and not parallel to the warp lines and the weft lines. A characteristic of the pattern is utilized to define target pixel units and comparison pixel units, and the comparison procedure is implemented with the characteristic of the pattern. Positions and gap sizes of gaps between image sensors are mapped out by comparing the target pixel units with the comparison pixel units. The quality of a scanned image is improved with compensation for the gaps.
    • 提供了包括像素单元阵列和图案的校准装置。 像素单元阵列包括平行经线和平行纬线。 每个经线穿过每条纬线以在像素单元阵列上定义像素单元。 该图案包括具有与像素单元阵列中的剩余像素单元的灰度级不同的灰度级的一些像素单元。 该图案包括彼此平行的不间断的条并且不平行于经线和纬线。 利用图案的特征来定义目标像素单元和比较像素单元,并且利用图案的特征来实现比较过程。 通过将目标像素单元与比较像素单元进行比较,绘出图像传感器之间的位置和间隙大小。 补偿扫描图像的质量得到改善。