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    • 2. 发明授权
    • 3D image display device
    • 3D图像显示设备
    • US08493385B2
    • 2013-07-23
    • US13008266
    • 2011-01-18
    • Ming-Yen LinKan-Ju LeeShou-Lun Chin
    • Ming-Yen LinKan-Ju LeeShou-Lun Chin
    • G06T15/00G09G5/00
    • G09G3/003G09G2300/0426H04N13/317H04N13/324H04N13/351
    • A 3D image display device mainly includes a multi-view image, a view memory, a memory image configuration, combination, and conversion procedure, a display memory, a conversion display controller, a display screen having sub-pixels in Delta configuration, and a view separation device. The memory image configuration, combination, and conversion procedure mainly performs processes of sub-pixel image configuration sequence conversion and multi-view image combination on the multi-view image, and outputs a recovered multi-view combined image. The conversion display controller mainly performs sub-pixel image data configuration sequence conversion on image data on even-numbered or odd-numbered horizontal scan lines of the recovered multi-view combined image, and then outputs the horizontal scan image data. The display screen having sub-pixels in Delta configuration receives the horizontal scan image data and displays the recovered multi-view combined image. The view separation device performs view separation on the recovered multi-view combined image to provide a 3D image.
    • 3D图像显示装置主要包括多视点图像,视图存储器,存储器图像配置,组合和转换过程,显示存储器,转换显示控制器,具有Delta配置中的子像素的显示屏幕,以及 视图分离装置。 存储器图像配置,组合和转换过程主要在多视图图像上执行子像素图像配置序列转换和多视点图像组合的处理,并输出恢复的多视图组合图像。 转换显示控制器主要对恢复的多视图组合图像的偶数或奇数水平扫描线上的图像数据执行子像素图像数据配置序列转换,然后输出水平扫描图像数据。 具有Delta配置的子像素的显示屏幕接收水平扫描图像数据并显示恢复的多视点组合图像。 视图分离装置对恢复的多视图组合图像执行视图分离以提供3D图像。
    • 8. 发明申请
    • Beam tracking system for scanning-probe type atomic force microscope
    • 用于扫描探针型原子力显微镜的光束跟踪系统
    • US20060272398A1
    • 2006-12-07
    • US11146517
    • 2005-06-06
    • Ing-Shouh HwangShao-Kang HungLi-Chen FuMing-Yen Lin
    • Ing-Shouh HwangShao-Kang HungLi-Chen FuMing-Yen Lin
    • G01B5/28
    • G01Q20/02G01Q70/02
    • Disclosed is a novel scanning-probe type atomic force microscope wherein false deflection of probe is reduced. Probe of the scanning-probe type atomic force microscope moves in both the horizontal direction and the vertical direction during the scanning, while the sample is kept stationary. In order to reduce the false deflection brought to the probe due to the scanning motion, two approaches are adopted. The first is to have the focused laser spot tracking an invariant point on the probe's cantilever, which moves 3-dimensionally during the scanning. The second approach is to have the laser beam, which is reflected from the moving cantilever, hitting an invariant point of the PSD, when the sample is distanced from the probe and induces no deflection. A beam racking system wherein the scanning probe locates approximately at focus of objective lens and the optical system including a laser source, an optical module, a feedback module and the probe are driven by an approach mechanism to move in synchronization.
    • 公开了一种新颖的扫描探针型原子力显微镜,其中探针的错误偏转减小。 扫描探针型原子力显微镜的探头在扫描期间在水平方向和垂直方向上移动,而样品保持静止。 为了减少由于扫描运动而导致探头的错误偏转,采用了两种方法。 首先是使聚焦的激光点跟踪探头悬臂上的不变点,扫描中三维移动。 第二种方法是当样品离开探头并且不产生偏转时,使来自移动悬臂反射的激光束撞击PSD的不变点。 一种梁架系统,其中扫描探针大致定位在物镜的焦点处,并且包括激光源,光学模块,反馈模块和探针的光学系统由进近机构驱动以同步移动。