Thin film display panel and method of manufacturing the same
    22.
    发明授权
    Thin film display panel and method of manufacturing the same 有权
    薄膜显示面板及其制造方法

    公开(公告)号:US08470623B2

    公开(公告)日:2013-06-25

    申请号:US12818047

    申请日:2010-06-17

    Abstract: A thin film transistor array panel includes: a substrate; a gate line disposed on the substrate and including a gate electrode; a gate insulating layer disposed on the gate line; an semiconductive oxide layer disposed on the gate insulating layer; a data line disposed on the semiconductive oxide layer and including a source electrode; a drain electrode facing the source electrode on the semiconductive oxide layer; and a passivation layer disposed on the data line. The semiconductive oxide layer is patterned with chlorine (Cl) containing gas which alters relative atomic concentrations of primary semiconductive characteristic-providing elements of the semiconductive oxide layer at least at a portion where a transistor channel region is defined.

    Abstract translation: 薄膜晶体管阵列面板包括:基板; 栅极线,设置在所述基板上并且包括栅电极; 设置在栅极线上的栅极绝缘层; 设置在所述栅极绝缘层上的半导体氧化物层; 数据线,设置在所述半导体氧化物层上并包括源电极; 在半导体氧化物层上面对源电极的漏电极; 以及设置在数据线上的钝化层。 至少在限定了晶体管沟道区域的部分,半导体氧化物层用含氯(Cl)的气体构图,该气体改变半导体氧化物层的初级半导体特性提供元件的相对原子浓度。

    Integrating sphere photometer and measuring method of the same
    23.
    发明授权
    Integrating sphere photometer and measuring method of the same 有权
    积分球面光度计和测量方法相同

    公开(公告)号:US08451438B2

    公开(公告)日:2013-05-28

    申请号:US13598910

    申请日:2012-08-30

    CPC classification number: G01J1/04 G01J3/0254

    Abstract: An integrating sphere photometer and a measuring method of the same are provided to precisely measure a directional light source. The integrating sphere photometer includes an integrating sphere having a plurality of through-holes, a plurality of photometers disposed at the through-holes, baffles disposed in front of the photometers to be spaced apart therefrom, an auxiliary light source disposed inside the integrating sphere, an auxiliary baffle disposed in front of the auxiliary light source, and a summing unit of output signals of the photometers under the illumination of a light source to be measured disposed in the central area inside the integrating sphere.

    Abstract translation: 提供积分球光度计及其测量方法以精确测量定向光源。 积分球光度计包括具有多个通孔的积分球,设置在通孔处的多个光度计,设置在光度计前面的挡板,设置在积分球内的辅助光源, 设置在辅助光源前面的辅助挡板,以及设置在积分球内的中心区域中的被测光源的照明下的光度计的输出信号的求和单元。

    Refrigerator
    24.
    发明授权
    Refrigerator 有权
    冰箱

    公开(公告)号:US08438868B2

    公开(公告)日:2013-05-14

    申请号:US12877711

    申请日:2010-09-08

    CPC classification number: F25C5/24 F25C5/22 F25C2500/08

    Abstract: A refrigerator includes an ice maker to make pieces of ice and an ice storage bin to receive the pieces of ice made by the ice maker. A plurality of blades is rotatably disposed at a bottom portion of the ice storage bin and an ice separating device to separate clumped pieces of ice discharged from the ice maker is disposed in the ice storage bin between the ice maker and the plurality of blades, where the ice separating device is disposed on at least a rear wall, a front wall, or a side wall of the ice storage bin.

    Abstract translation: 冰箱包括制冰机以制造冰块和储冰箱以接收由制冰机制成的冰块。 多个叶片可旋转地设置在储冰箱的底部,并且冰分离装置将从制冰机排出的块状冰块分离设置在制冰机和多个叶片之间的储冰箱中,其中 冰分离装置设置在储冰箱的至少后壁,前壁或侧壁上。

    APPARATUS AND METHOD OF AUTOMATICALLY EXTRACTING SWEEP/EXTRUDE/REVOLVE FEATURE SHAPE FROM ATYPICAL DIGITAL DATA
    28.
    发明申请
    APPARATUS AND METHOD OF AUTOMATICALLY EXTRACTING SWEEP/EXTRUDE/REVOLVE FEATURE SHAPE FROM ATYPICAL DIGITAL DATA 审中-公开
    装置和方法从原始数据数据自动提取SWEEP / EXTRUDE / REVOLVE特征形状

    公开(公告)号:US20130018634A1

    公开(公告)日:2013-01-17

    申请号:US13323123

    申请日:2011-12-12

    CPC classification number: G06T17/10 G05B2219/35148 G06F17/50

    Abstract: Provided is an apparatus and method of automatically extracting a sweep/extrude/revolve feature shape from atypical digital data, including a scanner which scans a 3D object so as to provide 3D scan data indicating a shape of the 3D object, and a computing device which extracts a feature shape from a collection of the 3D scan data collected from the scanner, wherein the computing device includes an extracting means for extracting multiple points from the collection of the 3D scan data and producing initial section from the extracted multiple points; an aligning means for aligning the sections so that shapes of the sections are coincided with each other; a compensating means for forming an initial path, generating an initial profile and then compensating the path; and a modeling means for performing a modeling function using the compensated path and profile.

    Abstract translation: 提供了一种从非典型数字数据自动提取扫描/拉伸/旋转特征形状的装置和方法,包括扫描3D对象以提供指示3D对象的形状的3D扫描数据的扫描仪,以及计算装置, 从从扫描仪收集的3D扫描数据的集合中提取特征形状,其中所述计算装置包括提取装置,用于从所述3D扫描数据的集合提取多个点,并从所提取的多个点产生初始部分; 对准装置,用于对准这些部分,使得这些部分的形状彼此一致; 用于形成初始路径的补偿装置,产生初始轮廓,然后补偿路径; 以及用于使用补偿的路径和轮廓来执行建模功能的建模装置。

    Mobile terminal with image magnification and image magnification controlling method of a mobile terminal
    29.
    发明授权
    Mobile terminal with image magnification and image magnification controlling method of a mobile terminal 有权
    具有移动终端的图像放大和图像放大控制方法的移动终端

    公开(公告)号:US08339480B2

    公开(公告)日:2012-12-25

    申请号:US12779913

    申请日:2010-05-13

    Abstract: A mobile terminal and method of controlling a mobile terminal are provided. While a preview image is displayed on a screen and a camera zooms in, a zoom-in region is stored after being cropped from the preview image. According to the present invention, when an image resulting from zooming in a preview image is photographed and stored, the region corresponding to the zoomed-in image is cropped from the preview image and then stored instead of the zoomed-in image with a resolution size of the preview image being stored. Therefore, the present invention reduces a size of a stored image without degradation of a picture, thereby increasing an available size of the memory.

    Abstract translation: 提供了移动终端和控制移动终端的方法。 当预览图像显示在屏幕上并且相机放大时,在从预览图像裁剪后,存储放大区域。 根据本发明,当拍摄并存储预览图像的缩放产生的图像时,从预览图像中剪除与放大图像相对应的区域,然后以分辨率尺寸存储而不是放大的图像 正在存储的预览图像。 因此,本发明可以减小存储的图像的尺寸而不降低图像,从而增加存储器的可用尺寸。

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