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    • 1. 发明授权
    • Method and apparatus for correcting lens shading
    • 用于校正透镜阴影的方法和装置
    • US08406557B2
    • 2013-03-26
    • US12832631
    • 2010-07-08
    • Min-Kyu ParkHee-Chan ParkJin-Ho KimJi-Hye KimSung-Dae ChoMoon-Gi KangChang-Won KimHyun-Mook Oh
    • Min-Kyu ParkHee-Chan ParkJin-Ho KimJi-Hye KimSung-Dae ChoMoon-Gi KangChang-Won KimHyun-Mook Oh
    • G06K9/40H04N9/64H04N5/217
    • H04N5/3572
    • A lens shading correction method and apparatus are provided for removing vignetting occurring in digital images due to lens shading. A white image captured by an image pickup device and an image pickup unit is separated into reference white images corresponding to color channels. A vignetting center having a maximum light intensity is estimated in each of the reference white images. Multiple reference segments on each of the reference white images are defined. A lens shading correction value corresponding to each pixel constituting the reference segments are calculated using a corresponding light intensity. A lens shading correction function corresponding to each reference segment is derived using a corresponding lens shading correction value. Vignetting of a general image received in a general image processing mode is removed, using the derived multiple lens shading correction functions.
    • 提供了一种透镜阴影校正方法和装置,用于消除由于透镜阴影而在数字图像中发生的渐晕。 由图像拾取装置和图像拾取单元拍摄的白色图像被分离为与颜色通道对应的参考白色图像。 在每个参考白色图像中估计具有最大光强度的渐晕中心。 定义每个参考白图像上的多个参考段。 使用对应的光强度计算与构成基准片段的每个像素对应的镜片阴影校正值。 使用相应的透镜阴影校正值导出与每个参考片段对应的镜片遮蔽校正功能。 使用导出的多个透镜阴影校正功能来消除在一般图像处理模式中接收的一般图像的渐晕。
    • 2. 发明申请
    • WELDING TYPE CONDENSER MICROPHONE USING SPRING BASE
    • 使用弹簧基座的焊接式冷凝器麦克风
    • US20130010995A1
    • 2013-01-10
    • US13493333
    • 2012-06-11
    • Hyoung Joo KIMChang Won KIMMyung Hoon HAM
    • Hyoung Joo KIMChang Won KIMMyung Hoon HAM
    • H04R19/04
    • H04R19/016
    • A welding type condenser microphone using a spring base to prevent interferences due to deviations of thicknesses of components, wherein a second base is an elastic spring. The welding type condenser microphone includes a case sub-assembly, in which a diaphragm and a back plate face each other across a spacer in a metal case and the back plate is insulated from the case by a first base formed of an insulation material; a printed circuit board (PCB) sub-assembly, in which circuit devices and a second base, which is an elastic spring, are mounted on a PCB via a surface mounting technology (SMT) method; and a unit for attaching the case sub-assembly and the PCB sub-assembly to each other. Furthermore, the second base is a leaf spring that is bent once, a U-shaped leaf spring having wings, or a coil spring.
    • 一种使用弹簧座的焊接式电容麦克风,用于防止由于部件的厚度偏差引起的干扰,其中第二基座是弹性弹簧。 焊接式电容麦克风包括壳体子组件,其中隔膜和后板跨过金属壳体中的间隔件彼此面对,并且后板通过由绝缘材料形成的第一基座与壳体绝缘; 印刷电路板(PCB)子组件,其中作为弹性弹簧的电路装置和第二基座通过表面安装技术(SMT)方法安装在PCB上; 以及用于将壳体子组件和PCB子组件彼此附接的单元。 此外,第二基座是弯曲一次的板簧,具有翼的U形板簧或螺旋弹簧。
    • 3. 发明申请
    • 3D IMAGE PROCESSING APPARATUS AND METHOD FOR ADJUSTING 3D EFFECT THEREOF
    • 3D图像处理装置和调整3D效果的方法
    • US20120268557A1
    • 2012-10-25
    • US13243262
    • 2011-09-23
    • Chang-won KIMDa-le YIM
    • Chang-won KIMDa-le YIM
    • H04N7/025H04N13/00
    • H04N13/178H04N13/128
    • Provided are a three-dimensional (3D) image processing apparatus and a method of adjusting a 3D effect thereof. The 3D image processing apparatus includes: a meta data analyzer which analyzes meta data about an input video signal and extracts, from the meta data, at least one auxiliary data usable in adjusting 3D effect information of the input video signal; a meta data processor which calculates a 3D effect adjusting value for adjusting the 3D effect information on the basis of the at least one extracted auxiliary data; and a 3D effect adjuster which adjusts the 3D effect information on the basis of the calculated 3D effect adjusting value, and adjusts the input video signal to have a 3D effect based on the adjusted 3D effect information.
    • 提供了三维(3D)图像处理装置和调整其3D效果的方法。 3D图像处理装置包括:元数据分析器,其分析关于输入视频信号的元数据,并从元数据中提取可用于调整输入视频信号的3D效果信息的至少一个辅助数据; 元数据处理器,其基于所述至少一个提取的辅助数据计算用于调整3D效果信息的3D效果调整值; 以及3D效果调节器,其基于所计算的3D效果调整值来调整3D效果信息,并且基于经调整的3D效果信息来调整输入视频信号以具有3D效果。
    • 5. 发明申请
    • SPACER-INTEGRATED DIAPHRAGM FOR CONDENSER MICROPHONE
    • 冷凝器麦克风的间隔式膜片
    • US20110182448A1
    • 2011-07-28
    • US12993315
    • 2009-05-13
    • Won-Taek LeeChang-Won KimJung-Min KimHyung-Joo Kim
    • Won-Taek LeeChang-Won KimJung-Min KimHyung-Joo Kim
    • H04R1/00
    • H04R7/06H04R19/04
    • The present invention relates to a spacer-integrated diaphragm, in which spacers are integrated with the diaphragm, in order to reduce the number of components and manufacturing processes needed and remove parasitic capacitance. A characterizing feature of the spacer-integrated diaphragm of the present invention is that it has an integrated structure comprising a diaphragm of a flat conductive film, and thermally insulative spacers formed so as to protrude on peripheral portions of the diaphragm through a PSR (Photo Solder Resist) printing process. The spacers are formed with a plurality of holes to remove parasitic capacitance, the diaphragm has a rectangular flat shape with round edges, and the spacers are formed near the four edges of the rectangular flat shape. In the spacer-integrated diaphragm of the present invention, because the spacers are formed of a PSR (Photo Solder Resist) material and are also formed with a plurality of holes, the present invention can prevent unnecessary parasitic capacitance from occurring and improve sound quality, and, because the diaphragm and the spacers are integrally formed, the present invention can reduce the number of processes needed when a condenser microphone is assembled and reduce the number of components required, thereby reducing manufacturing costs.
    • 本发明涉及一种间隔件集成隔膜,其中间隔件与隔膜结合在一起,以减少所需的部件数量和制造工艺,并消除寄生电容。 本发明的隔离件一体式隔膜的特征在于其具有包括平面导电膜的隔膜的整体结构和通过PSR(Photo Solder)在隔膜的周边部分上突出形成的隔热隔离物 抗拒)印刷工艺。 间隔件形成有多个孔以去除寄生电容,隔膜具有圆形边缘的矩形平面形状,并且间隔件形成在矩形平面形状的四个边缘附近。 在本发明的间隔物一体化隔膜中,由于间隔物由PSR(Photo Solder Resist)材料形成,并且还形成有多个孔,因此本发明可以防止发生不必要的寄生电容并提高声音质量, 并且由于隔膜和间隔件是整体形成的,所以本发明可以减少组装电容麦克风所需的处理次数,并减少所需部件的数量,从而降低制造成本。