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    • 6. 发明授权
    • Mobile terminal
    • 移动终端
    • US08355755B2
    • 2013-01-15
    • US12716227
    • 2010-03-02
    • Ha-Yong KimYong-Duck ChaJong-Hwan KimTae-Wan Kim
    • Ha-Yong KimYong-Duck ChaJong-Hwan KimTae-Wan Kim
    • H04M1/00
    • H04M1/022G06F1/1616G06F1/1641H04M2250/12H04M2250/16
    • Disclosed is a mobile terminal including, first and second bodies rotatably coupled to each other, and a driving unit configured to allow a relative rotation of the first and second bodies between a closed configuration and an open configuration, the first and second bodies being overlaid by each other in the closed configuration and rotated away from each other in the open configuration, wherein the driving unit includes rotation motion units connected to each of the first and second bodies and configured to generate the relative rotation, and slide motion units cooperatively operating with the rotation motion unit and configured to relatively slide the first and second bodies with respect to the driving unit between the closed configuration and the open configuration.
    • 公开了一种移动终端,其包括彼此可旋转地联接的第一和第二主体,以及被配置为允许第一和第二主体在关闭配置和打开配置之间的相对旋转的驱动单元,第一和第二主体被覆盖在 彼此处于闭合构造并且在打开构造中彼此旋转,其中驱动单元包括连接到第一和第二主体中的每一个并且被配置为产生相对旋转的旋转运动单元,并且与滑动运动单元协同操作 旋转运动单元并且被配置为在关闭配置和打开配置之间相对于驱动单元相对滑动第一和第二主体。
    • 7. 发明授权
    • Portable terminal having touch sensing based image capture function and image capture method therefor
    • 具有基于触摸感测的图像捕捉功能的便携式终端及其图像捕获方法
    • US08203640B2
    • 2012-06-19
    • US12172076
    • 2008-07-11
    • Jong-Hwan KimKwang-Ho Eom
    • Jong-Hwan KimKwang-Ho Eom
    • H04N5/222G06F3/041
    • G03B29/00H04N5/23212H04N5/23216H04N5/23293H04N5/235
    • Disclosed is a portable terminal having a touch sensing based image capture function and image capture method therefore, the method including: displaying a preview image of an object to be captured on a touch screen; recognizing (sensing) a touch input for the preview image; setting an image capture function based on the recognized touch input; and automatically performing an image capture operation according to the set capture function. The image capture function includes setting and change for a focus area, exposure, illumination, lightness, zoom-in/zoom-out and color change. Therefore, the present invention can enable the user to freely set the focus area and to perform a single or continuous image capture operation with a simple touch, thereby being utilized in all portable devices employing the touch screen.
    • 公开了一种具有基于触摸感测的图像捕获功能和图像捕获方法的便携式终端,该方法包括:在触摸屏上显示要捕获的对象的预览图像; 识别(感测)预览图像的触摸输入; 基于识别的触摸输入设置图像捕获功能; 并根据设定的捕获功能自动执行图像捕获操作。 图像拍摄功能包括对焦区域的设置和更改,曝光,照明,亮度,放大/缩小和颜色变化。 因此,本发明能够使用户能够自由地设置聚焦区域并且以简单的触摸进行单个或连续的图像捕获操作,从而在所有使用触摸屏的便携式设备中使用。
    • 8. 发明申请
    • SOLAR CELL AND FABRICATION METHOD THEREOF
    • 太阳能电池及其制造方法
    • US20110017258A1
    • 2011-01-27
    • US12740327
    • 2008-07-11
    • Il-Hyoung JungJu-Hwan YunJong-Hwan Kim
    • Il-Hyoung JungJu-Hwan YunJong-Hwan Kim
    • H01L31/042H01L21/00
    • H01L31/022433H01L31/18Y02E10/50
    • A back contact solar cell comprises a first dopant diffusion part and a second dopant diffusion part formed on a rear surface of an n-type semiconductor wafer with a predetermined distance formed therebetween by a diffusion prevention part for ensuring no contact with each other and suppressing the diffusion of dopant; and an electrode configured of an anode and a cathode each connected to the first dopant diffusion part and the second dopant diffusion part. According to the present invention, the back contact solar cell is capable of preventing light loss and improving its efficiency by forming an electrode to be positioned on a rear surface of a semiconductor wafer through a simple process and by simultaneously implementing an anode electrode and a cathode electrode on the semiconductor wafer without having a grid electrode restricting incidence of sunlight.
    • 背接触太阳能电池包括第一掺杂剂扩散部分和第二掺杂剂扩散部分,其形成在n型半导体晶片的后表面上,其间通过防止扩散部分形成预定距离,以确保彼此不接触并抑制 掺杂剂的扩散; 以及由阳极和阴极构成的电极,每个连接到第一掺杂剂扩散部分和第二掺杂剂扩散部分。 根据本发明,背接触太阳能电池能够通过简单的工艺形成要位于半导体晶片的后表面上的电极并同时实现阳极电极和阴极,从而防止光损失并提高其效率 电极,而不具有限制阳光入射的栅电极。