Stereoscopic image format transformation method applied to display system
    1.
    发明授权
    Stereoscopic image format transformation method applied to display system 有权
    立体图像格式转换方法应用于显示系统

    公开(公告)号:US08866882B2

    公开(公告)日:2014-10-21

    申请号:US11822226

    申请日:2007-07-03

    CPC classification number: H04N13/139 H04N7/012 H04N7/0122

    Abstract: In a display system, the invention provides a stereoscopic image format transformation method being used for transforming a non-interlace format of a stereoscopic image into an interlace format. When an aspect ratio of the stereoscopic image is not equal to an aspect ratio of a panel, the stereoscopic image format transformation method of the invention is used for interlacing a left-eye image data and a right-eye image data of the stereoscopic image according to a format of the stereoscopic image, the aspect ratio of the panel, and the aspect ratio of the stereoscopic image, to form a completely interlaced stereoscopic image.

    Abstract translation: 在显示系统中,本发明提供了一种用于将立体图像的非隔行格式变换为交错格式的立体图像格式变换方法。 当立体图像的纵横比不等于面板的纵横比时,本发明的立体图像格式变换方法用于将立体图像的左眼图像数据和右眼图像数据交织在一起, 到立体图像的格式,面板的宽高比和立体图像的纵横比,以形成完全隔行的立体图像。

    Light guide and housing assembly
    2.
    发明授权
    Light guide and housing assembly 有权
    导光板和外壳组件

    公开(公告)号:US08469571B2

    公开(公告)日:2013-06-25

    申请号:US13226272

    申请日:2011-09-06

    Abstract: A single piece light guide is disclosed herein. The single piece light guide may include a light rod and a lens. The single piece light guide may be formed using injection molding. The light guide may have one or more regions between the light rod and the lens. A housing may be provided for the light guide. The housing may have an opening that physically supports the light rod. Therefore, the light rod may be secured into place, which may prevent misalignment during use. The one or more regions between the light rod and the lens may assist in assembling and holding the light guide in the housing.

    Abstract translation: 本文公开了单件式光导。 单件导光体可以包括光杆和透镜。 可以使用注射成型形成单件导光体。 光导可以在光杆和透镜之间具有一个或多个区域。 可以为光导提供外壳。 壳体可以具有物理地支撑灯杆的开口。 因此,可以将灯杆固定到适当位置,这可以防止使用期间的未对准。 光杆和透镜之间的一个或多个区域可以有助于将光导装置组装并保持在壳体中。

    Phase locked loop capable of fast locking
    3.
    发明授权
    Phase locked loop capable of fast locking 有权
    锁相环能够快速锁定

    公开(公告)号:US08437441B2

    公开(公告)日:2013-05-07

    申请号:US12506023

    申请日:2009-07-20

    Abstract: A phase locked loop includes a voltage controlled oscillator operable to generate an output signal corresponding to a reference signal in response to a control voltage signal outputted by a filter in response to a current signal, and a variable frequency divider operable to perform frequency division on the output signal using a variable divisor so as to generate a divided feedback signal. A charge pump outputs the current signal in response to a phase detecting output from a phase/frequency detector indicating phases of the divided feedback signal and the reference signal. A phase error comparator outputs, in accordance with the phase detecting output, a digital output indicating whether the divided feedback signal lags or leads the reference signal and further indicating a phase difference between the divided feedback signal and the reference signal. The variable frequency divider determines a value of the variable divisor in accordance with the digital output to reduce the phase difference between the divided feedback signal and the reference signal.

    Abstract translation: 锁相环包括压控振荡器,其可操作以响应于由电流信号响应由滤波器输出的控制电压信号而产生对应于参考信号的输出信号;以及可变分频器,用于对 输出信号,以产生分频的反馈信号。 响应于来自相位/频率检测器的相位检测输出,电荷泵输出指示分频反馈信号和参考信号的相位的电流信号。 相位误差比较器根据相位检测输出输出指示分频反馈信号是否滞后或引导参考信号的数字输出,并进一步指示分频反馈信号与参考信号之间的相位差。 可变分频器根据数字输出确定可变因数的值,以减小分频反馈信号与参考信号之间的相位差。

    LIGHT GUIDE WITH REGION BETWEEN LIGHT ROD AND LENS
    4.
    发明申请
    LIGHT GUIDE WITH REGION BETWEEN LIGHT ROD AND LENS 有权
    轻型指南与轻镜和镜头之间的区域

    公开(公告)号:US20130057788A1

    公开(公告)日:2013-03-07

    申请号:US13226291

    申请日:2011-09-06

    CPC classification number: G03B21/2033 G02B6/0008 G03B21/208

    Abstract: A single piece light guide is disclosed herein. The single piece light guide may include a light rod and a lens. The single piece light guide may be formed using injection molding. The light guide may have one or more regions between the light rod and the lens. A housing may be provided for the light guide. The housing may have an opening that physically supports the light rod. Therefore, the light rod may be secured into place, which may prevent misalignment during use. The one or more regions between the light rod and the lens may assist in assembling and holding the light guide in the housing.

    Abstract translation: 本文公开了单件式光导。 单件导光体可以包括光杆和透镜。 可以使用注射成型形成单件导光体。 光导可以在光杆和透镜之间具有一个或多个区域。 可以为光导提供外壳。 壳体可以具有物理地支撑灯杆的开口。 因此,可以将灯杆固定到适当位置,这可以防止使用期间的未对准。 光杆和透镜之间的一个或多个区域可以有助于将光导装置组装并保持在壳体中。

    Light Source Module of Projector
    5.
    发明申请
    Light Source Module of Projector 有权
    投影机光源模块

    公开(公告)号:US20120120648A1

    公开(公告)日:2012-05-17

    申请号:US13165622

    申请日:2011-06-21

    Abstract: A light source module of a projector includes a beam splitter, a red light source, a blue light source, and a blue light source. The beam splitter has a first reflection side, on which a first splitter film is provided, and a second reflection side, on which a second splitter film is provided. An angle between a normal line of the first reflection side, and a normal line of the second reflection side, is in a range between 165 degrees and 180 degrees. Both the first splitter film and the second splitter film permit red rays to pass therethrough. The red light source is separated from the blue and green light sources to obtain a better thermal dissipation.

    Abstract translation: 投影仪的光源模块包括分束器,红光源,蓝光源和蓝光源。 分束器具有设置有第一分离膜的第一反射侧和设置有第二分离膜的第二反射面。 第一反射侧的法线与第二反射面的法线之间的角度在165度与180度之间的范围内。 第一分离膜和第二分离膜均允许红光通过。 红色光源与蓝色和绿色光源分离,以获得更好的散热。

    Method for making solar cells with sensitized quantum dots in the form of nanometer metal particles
    6.
    发明授权
    Method for making solar cells with sensitized quantum dots in the form of nanometer metal particles 有权
    用纳米金属颗粒形式制造具有敏化量子点的太阳能电池的方法

    公开(公告)号:US07915068B2

    公开(公告)日:2011-03-29

    申请号:US12076244

    申请日:2008-03-14

    Abstract: There is disclosed a method for making solar cells with sensitized quantum dots in the form of nanometer metal crystals. Firstly, a first substrate is provided. Then, a silicon-based film is grown on a side of the first substrate. A pattern mask process is executed to etch areas of the silicon-based film. Nanometer metal particles are provided on areas of the first substrate exposed from the silicon-based film. A metal electrode is attached to an opposite side of the first substrate. A second substrate is provided. A transparent conductive film is grown on the second substrate. A metal catalytic film is grown on the transparent conductive film. The second substrate, the transparent conductive film and the metal catalytic film together form a laminate. The laminate is inverted and provided on the first substrate. Finally, electrolyte is provided between the first substrate and the metal catalytic film.

    Abstract translation: 公开了以纳米金属晶体的形式制造具有致敏量子点的太阳能电池的方法。 首先,提供第一基板。 然后,在第一基板的一侧上生长硅基膜。 执行图案掩模处理以蚀刻硅基膜的区域。 在从硅基膜暴露的第一基板的区域上设置纳米金属颗粒。 金属电极附接到第一基板的相对侧。 提供第二基板。 在第二基板上生长透明导电膜。 在透明导电膜上生长金属催化膜。 第二基板,透明导电膜和金属催化膜一起形成层压体。 将层压体倒置并设置在第一基板上。 最后,在第一基板和金属催化膜之间提供电解质。

    Apparatus and method for adjusting brightness via controlling backlight
    8.
    发明授权
    Apparatus and method for adjusting brightness via controlling backlight 有权
    通过控制背光来调节亮度的装置和方法

    公开(公告)号:US07309851B2

    公开(公告)日:2007-12-18

    申请号:US11413329

    申请日:2006-04-28

    CPC classification number: H05B41/3922 G09G3/3406 G09G2360/144 G09G2360/16

    Abstract: The invention discloses an apparatus for adjusting an output back light relative to the ith image frame among N image frames of an image sequence inputted to a display system. The apparatus includes an optical sensing module, a memory unit, an image processing module, and a back light module. The optical sensing module is used for sensing a current environmental light. The memory unit is used for storing a look-up table in which a plurality of environmental light values, a plurality of brightness ratios, and a plurality of back light adjusting parameters are recorded. Each of the environmental light values corresponds to the brightness ratios and the back light adjusting parameters, and each of the back light adjusting parameters corresponds to one of the brightness ratios. The image processing module is used for calculating a current brightness ratio relative to the ith image frame and for further determining the back light parameter in accordance with the current environmental light, the current brightness ratio, and the look-up table. The back light module is used for adjusting the output back light in accordance with the back light adjusting parameter.

    Abstract translation: 本发明公开了一种用于在输入到显示系统的图像序列的N个图像帧中调整相对于第i个图像帧的输出背光的装置。 该装置包括光学感测模块,存储单元,图像处理模块和背光模块。 光学传感模块用于感测当前的环境光。 存储单元用于存储其中记录有多个环境光值,多个亮度比和多个背光调节参数的查找表。 每个环境光值对应于亮度比和背光调节参数,并且每个背光调节参数对应于一个亮度比。 图像处理模块用于计算相对于第i个图像帧的当前亮度比,并且用于根据当前环境光,当前亮度比和查找表进一步确定背光参数。 背光模块用于根据背光调节参数调节输出背光。

    Method and apparatus for securely booting from an external storage device
    9.
    发明申请
    Method and apparatus for securely booting from an external storage device 有权
    用于从外部存储设备安全引导的方法和装置

    公开(公告)号:US20070192610A1

    公开(公告)日:2007-08-16

    申请号:US11351966

    申请日:2006-02-10

    CPC classification number: G06F21/64 G06F21/575

    Abstract: Techniques to securely boot up an electronics device (e.g., a cellular phone) from an external storage device are described. Secure data (e.g., a hash digest, a signature, a cryptographic key, and so on) is initially retrieved from a non-writable area of an external memory device (e.g., an one-time programmable (OTP) area of a NAND Flash device). A first program (e.g., a boot program) is retrieved from a writable or main area of the external memory device and authenticated based on the secure data. The first program is enabled for execution if authenticated. A second program may be retrieved from the main area of the external memory device and authenticated based on the secure data. The second program is enabled for execution if authenticated. Additional programs may be retrieved and authenticated. Each program may be authenticated using a secure hash function, a digital signature, and/or some other cryptographic technique.

    Abstract translation: 描述了从外部存储设备安全地引导电子设备(例如,蜂窝电话)的技术。 最初从外部存储器件(例如,NAND闪存的一次可编程(OTP))区域的不可写区域检索安全数据(例如,散列摘要,签名,加密密钥等) 设备)。 从外部存储器件的可写或主区域检索第一程序(例如,引导程序),并基于安全数据进行认证。 如果通过验证,第一个程序启用执行。 可以从外部存储设备的主区域检索第二程序,并且基于安全数据进行认证。 如果通过验证,第二个程序启用执行。 可以检索和认证附加程序。 可以使用安全散列函数,数字签名和/或一些其他加密技术来对每个程序进行认证。

    Apparatus for and method of processing three-dimensional images
    10.
    发明授权
    Apparatus for and method of processing three-dimensional images 失效
    三维图像处理装置及其处理方法

    公开(公告)号:US06515663B1

    公开(公告)日:2003-02-04

    申请号:US09418179

    申请日:1999-10-13

    Abstract: The invention provides the apparatus for and method of processing three-dimensional images, efficiently and effectively rendering 3D images three-dimensional. The present invention's method of processing three-dimensional images avoids repetition of matrix calculation, and effectively sets the picture frame's Memory address. Hence, it is suitable for three-dimensional images with real-time image. Furthermore, the invention could further include a variation memory arrangement method and device, which could interlace in the Memory the scanning line of the first and second 3D images. It is then possible to display the first and second 3D image groups on the display screen in an interlaced manner according to the traditional scanning circuit and address-translating circuit. As a result, the left eye and the right eye can view the first and second 3D image groups separately.

    Abstract translation: 本发明提供了三维图像的处理和处理方法,能够有效且有效地将3D图像三维地渲染。 本发明处理三维图像的方法避免了矩阵计算的重复,并且有效地设置了相框的存储器地址。 因此,它适用于具有实时图像的三维图像。 此外,本发明还可以包括可以将存储器中的第一和第二3D图像的扫描线交错的变化存储器布置方法和装置。 然后可以根据传统的扫描电路和地址转换电路以交错的方式在显示屏幕上显示第一和第二3D图像组。 结果,左眼和右眼可以分别观看第一和第二3D图像组。

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