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    • 4. 发明申请
    • COMMON-VOLTAGE COMPENSATION CIRCUIT AND COMPENSATION METHOD FOR USE IN A LIQUID CRYSTAL DISPLAY
    • 用于液晶显示器的通用电压补偿电路和补偿方法
    • US20100277399A1
    • 2010-11-04
    • US12617677
    • 2009-11-12
    • Hui-Lung YuChih-Yuan ChienMing-Yen Lin
    • Hui-Lung YuChih-Yuan ChienMing-Yen Lin
    • G09G3/36
    • G09G3/3655G09G2320/0209
    • A common-voltage compensation circuit functions to provide a crosstalk interference suppressing mechanism for use in a liquid crystal display having a liquid-crystal capacitor and a storage capacitor. The compensation circuit includes a buffer for receiving a preliminary common voltage, a current/voltage converter, a high-pass filter and a ripple-voltage inverter. The current/voltage converter is utilized for generating a liquid-crystal capacitor common voltage furnished to the liquid-crystal capacitor according to an output current of the buffer. The high-pass filter performs a high-pass filtering operation on the liquid-crystal capacitor common voltage for extracting a ripple voltage. The ripple-voltage inverter is employed to generate a storage capacitor common voltage furnished to the storage capacitor through performing an inverting operation on the ripple voltage based on the preliminary common voltage. The ripple voltage of the storage capacitor common voltage has a phase opposite to that of the liquid-crystal capacitor common voltage for suppressing crosstalk interference.
    • 公共电压补偿电路用于提供用于具有液晶电容器和存储电容器的液晶显示器中的串扰干扰抑制机构。 补偿电路包括用于接收初步公共电压的缓冲器,电流/电压转换器,高通滤波器和纹波电压逆变器。 电流/电压转换器用于根据缓冲器的输出电流产生提供给液晶电容器的液晶电容器公共电压。 高通滤波器对液晶电容器公共电压进行高通滤波操作,以提取纹波电压。 纹波电压逆变器用于通过基于初步公共电压对纹波电压进行反相操作来产生提供给存储电容器的存储电容器公共电压。 存储电容器公共电压的纹波电压与液晶电容器公共电压的波形电压相反,用于抑制串扰干扰。
    • 5. 发明授权
    • Method of recognizing and tracking a spatial point
    • 识别和跟踪空间点的方法
    • US07739074B2
    • 2010-06-15
    • US12047159
    • 2008-03-12
    • Ming-Yen Lin
    • Ming-Yen Lin
    • G06F15/00G01B11/00
    • G06T7/593G06T2207/10012H04N13/239H04N13/243H04N2013/0081
    • The present invention relates to a method of recognizing and tracking a spatial point, and more particularly to a method of using a point light source and a spatial point recognition device to measure the coordinates of the point light source and the coordinates of the convergent point of the spatial point recognition device based on the principle of parallax of human eyes, as to achieve the purpose of recognizing the position of a spatial point. Further, the spatial point recognition device is capable of moving the convergent point, such that the coordinates of the convergent point are superimposed onto the coordinates of the point light source, so as to achieve the purpose of tracking a spatial point automatically. At the same time, the spatial point recognition device can also receive the coordinates of a new convergent point to reset the position of the convergent point, so as to achieve the purpose of resetting the convergent point.
    • 本发明涉及一种识别和跟踪空间点的方法,更具体地涉及使用点光源和空间点识别装置来测量点光源的坐标和收敛点的坐标的方法 基于人眼视差原理的空间点识别装置,达到识别空间点位置的目的。 此外,空间点识别装置能够移动会聚点,使得会聚点的坐标叠加在点光源的坐标上,从而实现自动跟踪空间点的目的。 同时,空间点识别装置还可以接收新的会聚点的坐标,以重新设定会聚点的位置,以达到重新设定会聚点的目的。
    • 8. 发明授权
    • Three dimensional liquid crystal shutter glasses
    • 三维液晶快门眼镜
    • US06278501B1
    • 2001-08-21
    • US09447344
    • 1999-11-22
    • Ming-Yen Lin
    • Ming-Yen Lin
    • G02C113
    • G02C5/02G02B7/002G02B27/0176G02B27/2264H04N13/341H04N13/398H04N2213/008
    • One amendatory structure of 3D LCS glasses, it is further a pair of 3D glasses being designed based on human ergonomic that provides a more light-weighted and comfortable wearing condition, that is, the present invention allows users to enjoy many different types of 3D applications by wearing the present invention for a longer period of time. By means of three individual parts, including a frame, a shelf and an nose-rack, the present invention can be assembled by connecting each part, or disassembled into three separate parts. The frame of the present invention is designed to be rotary and can be flipped up and down, while the nose-rack is designed to be adjusted vertically. The best wearing condition can be achieved by adjusting position of the frame and the nose-rack.
    • 3D LCS眼镜的一个修改结构,进一步的一对3D眼镜是基于人体工程学设计的,提供了更轻的和更舒适的佩戴状态,即本发明允​​许用户享受许多不同类型的3D应用 通过佩戴本发明更长的时间。 通过包括框架,搁架和鼻架的三个单独部件,可以通过将每个部件连接或分解成三个分开的部件来组装本发明。 本发明的框架被设计为旋转的并且可以上下翻转,而鼻架被设计成垂直调节。 可以通过调整框架和机架的位置来实现最佳的佩戴状态。
    • 10. 发明授权
    • Multi-view 3D image display method
    • 多视图3D图像显示方式
    • US08848043B2
    • 2014-09-30
    • US13428134
    • 2012-03-23
    • Ming-Yen Lin
    • Ming-Yen Lin
    • H04N13/04H04N9/47
    • H04N13/31H04N13/317H04N13/324
    • A multi-view 3D image display method is provided, which is mainly to propose a multi-view 3D image combination method and slantwise strip parallax barrier structure design and optimization methods without reducing a sub-pixel aperture ratio during display of a multi-view 3D image by using a planar display screen having sub-pixels in strip configuration and a slantwise strip parallax barrier, so as to achieve objectives of solving a direct cross-talk phenomenon and balancing a phenomenon of asymmetrical left and right viewing freedom at the same time. In addition, for display of a multi-view 3D image having a total view number greater than two, a multiple multi-view 3D image combination and display method is proposed, so as to achieve an objective of alleviating a defect of discontinuous parallax jump.
    • 提供了一种多视图3D图像显示方法,主要是提出一种多视角3D图像组合方法和倾斜条状视差屏障结构设计和优化方法,而不会在多视图3D显示期间减小子像素孔径比 通过使用具有带状配置的子像素的平面显示屏和倾斜条状视差屏障的图像,以实现解决直接串扰现象并同时平衡不对称的左右观看自由现象的目标。 此外,为了显示具有大于2的总视图数的多视图3D图像,提出了一种多重多视图3D图像组合和显示方法,以达到减轻不连续视差跳跃的缺陷的目的。