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    • 62. 发明授权
    • Resilient engaging member and liquid crystal display module having the same
    • 具有相同的弹性接合构件和液晶显示模块
    • US08564734B2
    • 2013-10-22
    • US12997490
    • 2010-11-23
    • Tian Zhang
    • Tian Zhang
    • G02F1/1333
    • G02F1/133308G02F2001/133314G02F2001/13332G02F2001/133325G02F2201/46
    • The present invention discloses a resilient engaging member and a liquid crystal display (LCD) module having the same. The resilient engaging member comprises a leaf spring and a post. The leaf spring comprises connecting portions used to fix the leaf spring and stopping portions for engagement with the post. The post comprises a body used to fix the post and a mating portion for fixed engagement with the stopping portions. The LCD module includes a back plate, a panel, and a front frame installed in sequence, and a plurality of the resilient engaging members disposed between the back plate and the front frame and configured for connection therebetween. The resilient engaging member of the present invention has advantages of reliable connection, easy assembly, and fine resistance to any impact, etc. The LCD module adopting the resilient engaging member can significantly get rid of use of buffering material to reduce thickness of the module, and comply with the technical development trend of downsizing LCD television sets.
    • 本发明公开了一种弹性接合构件和具有该接合构件的液晶显示器(LCD)模块。 弹性接合构件包括板簧和柱。 板簧包括用于固定板簧的连接部分和用于与柱接合的止动部分。 该柱包括用于固定柱的主体和用于与止动部固定接合的配合部。 LCD模块包括依次安装的背板,面板和前框架,以及设置在后板和前框架之间的多个弹性接合构件,用于在它们之间连接。 本发明的弹性接合构件具有连接可靠,组装方便,抵抗任何冲击等优点。采用弹性接合构件的LCD模块可以显着地摆脱缓冲材料的使用以减小模块的厚度, 并符合液晶电视机尺寸缩小的技术发展趋势。
    • 63. 发明授权
    • Thin film transistor array substrate and manufacturing method for the same
    • 薄膜晶体管阵列基板及其制造方法相同
    • US08563341B2
    • 2013-10-22
    • US13498470
    • 2012-02-08
    • Pei JiaLiu-yang Yang
    • Pei JiaLiu-yang Yang
    • H01L21/00
    • H01L27/1288H01L27/124H01L29/4908
    • The present invention discloses a thin film transistor array substrate and a manufacturing method for the same. A transparent conductive layer and a first metal layer are deposited on a substrate, and a multi-tone mask is utilized to form a gate electrode and a common electrode. A gate insulative layer and a semi-conductive layer are deposited on the substrate with the gate electrode and the common electrode, and the semi-conductive layer is patterned by a second mask to retain a region of the semi-conductive layer that is there-above the gate electrode. A second metal layer is deposited on the substrate with the gate insulative layer along with the retained semi-conductive layer, and the second metal layer is patterned by a third mask to form a source electrode, a drain electrode, and a pixel electrode. The present invention provides a simple manufacturing method.
    • 本发明公开了一种薄膜晶体管阵列基板及其制造方法。 在基板上沉积透明导电层和第一金属层,利用多色调掩模形成栅电极和公共电极。 栅极绝缘层和半导电层通过栅电极和公共电极沉积在衬底上,并且半导电层通过第二掩模图案化以保持在其上的半导电层的区域, 栅电极上方。 第二金属层与保留的半导电层一起沉积在具有栅极绝缘层的衬底上,并且第二金属层通过第三掩模图案化以形成源电极,漏电极和像素电极。 本发明提供一种简单的制造方法。
    • 64. 发明授权
    • End mill
    • 立铣刀
    • US08562261B2
    • 2013-10-22
    • US12665193
    • 2009-03-23
    • Hisao OkaTatsuya ShinoKazuo Maeda
    • Hisao OkaTatsuya ShinoKazuo Maeda
    • B23C5/10
    • B23C5/10B23C2210/0485B23C2210/0492B23C2210/088B23C2210/54B23C2226/27
    • An end mill includes first cutting edges which spiral in a direction defining a positive helix angle and second cutting edges which spiral in a direction defining a negative helix angle, the first cutting edges and the second cutting edges being disposed at positions shifted in a circumferential direction. The first cutting edges and the second cutting edges are each configured to be continuous over an effective cutting edge length. At an axially forward end of the end mill, a first phase angle between one of the first cutting edges and its adjacent second cutting edge located adjacent to the first cutting edges in an opposite direction to a tool rotation direction is set to be different from a second phase angle between the second cutting edge and its adjacent first cutting edge located adjacent to the second cutting edges in the opposite direction to the tool rotation direction.
    • 端铣刀包括在限定正螺旋角的方向上螺旋的第一切削刃和在限定负螺旋角的方向上螺旋的第二切削刃,第一切削刃和第二切削刃设置在沿圆周方向偏移的位置 。 第一切削刃和第二切削刃各自构造成在有效切削刃长度上连续。 在端铣刀的轴向前端,在与刀具旋转方向相反的方向上与第一切削刃相邻的第一切削刃和其相邻的第二切削刃中的一个之间的第一相位角被设定为不同于 第二切削刃与其与第二切削刃相邻的相邻的第一切削刃在与刀具旋转方向相反的方向上的第二相位角。
    • 67. 发明授权
    • Manufacture method for photovoltaic module
    • 光伏组件制造方法
    • US08551889B2
    • 2013-10-08
    • US13455957
    • 2012-04-25
    • Yousuke IshiiShingo Okamoto
    • Yousuke IshiiShingo Okamoto
    • H01L21/302H01L21/461
    • H01L31/188H01L31/0512Y02E10/50
    • In a manufacture method for a photovoltaic module, a plurality of strips of resin adhesive film having a desired width and unwound from a single feeding reel is simultaneously pasted on a solar cell. In particular, the manufacture method is implemented by performing the steps of: unwinding a resin adhesive film sheet from a reel on which the resin adhesive film sheet is wound; splitting the unwound resin adhesive film into two or more film strips in correspondence to lengths of wiring material to bond; pasting the strips of resin adhesive film on an electrode of the solar cell; and placing the individual lengths of wiring material on the electrode of the solar cell having the plural strips of resin adhesive film pasted thereon and thermally setting the resin adhesive film by heating so as to fix together the electrode of the solar cell and the wiring material.
    • 在光伏组件的制造方法中,将多条具有期望宽度的树脂粘合膜条从单个供给卷轴展开的同时粘贴在太阳能电池上。 特别地,通过以下步骤来实现制造方法:从缠绕有树脂粘合膜片的卷轴上松开树脂粘合膜片; 将未卷绕的树脂粘合剂膜根据与要接合的布线材料的长度对应而分成两个或更多个薄膜条; 将树脂粘合剂膜条贴在太阳能电池的电极上; 并将各种长度的布线材料放置在具有粘贴在其上的多条树脂粘合剂膜的太阳能电池的电极上,并通过加热热固化树脂粘合剂膜,从而将太阳能电池的电极和布线材料固定在一起。
    • 68. 发明授权
    • Electrical connector
    • 电连接器
    • US08550847B2
    • 2013-10-08
    • US13523270
    • 2012-06-14
    • Chun-Hua Hsia
    • Chun-Hua Hsia
    • H01R13/648
    • H01R13/6581
    • An electrical connector includes an insulation pedestal, an outer cover, an enhanced shell and a plurality of terminals partially embedded in the insulation pedestal. The insulation pedestal includes a main body and a tongue section. The enhanced shell includes a fixed side and a support side. The fixed side is embedded in the main body; and the tongue section is partially covered by the support side such that the support side can support the tongue section. The insulation pedestal is integratedly formed together with the terminals and the enhanced shell to strengthen the structure of the tongue section.
    • 电连接器包括绝缘基座,外盖,增强外壳和部分地嵌入绝缘基座中的多个端子。 绝缘基座包括主体和舌部。 增强壳体包括固定侧和支撑侧。 固定侧嵌入主体; 并且舌部被支撑侧部分地覆盖,使得支撑侧可以支撑舌部。 绝缘基座与端子和增强壳体一体形成,以加强舌部的结构。
    • 69. 发明授权
    • Movable body system
    • 移动体系
    • US08548665B2
    • 2013-10-01
    • US13048906
    • 2011-03-16
    • Tetsuro IzumiDai Kouno
    • Tetsuro IzumiDai Kouno
    • G05D1/00
    • G05D1/024G05D1/0253G05D2201/0216
    • A movable body system includes a movable body to which an image pickup apparatus is attached; an image analyzer that performs image matching between the image captured by the image pickup apparatus and an image, which is previously captured on the travel path of the movable body; a wall-surface detector that detects directions of the movable body with respect to wall surfaces, which are arranged along the travel path, and distances between the wall surfaces and the movable body; and a traveling-direction calculator that detects a shift of the movable body with respect to the travel path from an output of the image analyzer or the wall-surface detector, and calculates a traveling direction to cause the movable body to travel on the travel path.
    • 可移动体系包括附着有摄像装置的移动体; 图像分析器,其执行由图像拾取装置拍摄的图像与先前在可移动体的行进路径上捕获的图像之间的图像匹配; 壁表面检测器,其检测可移动体相对于沿着行进路径布置的壁表面的方向以及壁表面和可移动体之间的距离; 以及行进方向计算器,其从图像分析器或壁面检测器的输出检测可移动体相对于行进路径的偏移,并且计算行进方向以使可移动体在行进路径上行进 。