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    • 61. 发明授权
    • Laser irradiation device and method of manufacturing organic light emitting diode display device using the same
    • 激光照射装置及使用其的有机发光二极管显示装置的制造方法
    • US08699002B2
    • 2014-04-15
    • US12461657
    • 2009-08-19
    • Seung-Mook LeeTae-Min KangDo-Young KimBeom-Joon Kim
    • Seung-Mook LeeTae-Min KangDo-Young KimBeom-Joon Kim
    • G03B27/62G03B27/54G03B27/32
    • G03B27/32
    • A laser irradiation device and a method of manufacturing an organic light emitting diode display device using the same. The laser radiation device prevents the scattering of the laser light into portions of the donor substrate that correspond to non-transmissive regions of a mask pattern. To reduce the scattering, the mask pattern is designed so that 1) non-transmissive regions of a surface of the mask pattern that faces the laser source have a reflective layer, 2) the surface of the mask pattern that faces the laser source is oriented to have a certain angle with respect to the laser beam axis, and 3) a surface of the mask pattern that faces the donor substrate has an anti-reflective layer. Each of these design aspects of the mask pattern prevents laser light from being scattered and prevents irradiating portions of the donor substrate that corresponds to a non-transmissive region of the mask pattern.
    • 激光照射装置及使用该激光照射装置的有机发光二极管显示装置的制造方法。 激光辐射装置防止激光散射到与掩模图案的非透射区域相对应的施主衬底的部分中。 为了减少散射,掩模图案被设计成使得面对激光源的掩模图案的表面的非透射区域具有反射层,2)面对激光源的掩模图案的表面被定向 相对于激光束轴线具有一定角度,以及3)面对供体基板的掩模图案的表面具有抗反射层。 掩模图案的这些设计方面中的每一个防止激光散射并且防止施主衬底的照射部分对应于掩模图案的非透射区域。
    • 63. 发明授权
    • Apparatus and method for encoding and decoding enhancement layer
    • 增强层编码和解码的装置和方法
    • US08498875B2
    • 2013-07-30
    • US12673536
    • 2008-08-18
    • Jongmo SungDo-Young Kim
    • Jongmo SungDo-Young Kim
    • G10L21/00
    • G10L19/24G10L19/002
    • Provided is a method and apparatus for encoding and decoding an enhancement layer to reduce quantization error in a G.711 codec. Exponent indices of additional mantissa information of each sample are calculated based upon exponent information of each sample in a frame. A process of allocating 1 bit to each sample with a current exponent index is repeated, the exponent index starting from the maximum value while decreasing by 1 at every repetition until the total number of bits allocated to the samples is equal to the total number of available bits in the frame. And the most significant bits, as many as the number of bits allocated to each sample, are extracted from the additional mantissa information of each sample in the frame.
    • 提供了一种用于对增强层进行编码和解码以减少G.711编解码器中的量化误差的方法和装置。 基于帧中每个样本的指数信息计算每个样本的额外尾数信息的指数索引。 重复以当前指数索引为每个样本分配1位的过程,指数指数从最大值开始,同时每次重复减少1,直到分配给样本的总位数等于可用总数 帧中的位。 并且从帧中的每个样本的附加尾数信息中提取与分配给每个样本的位数一样多的最高有效位。
    • 70. 发明申请
    • METHOD FOR MANUFACTURING A SEMICONDUCTOR PACKAGE
    • 制造半导体封装的方法
    • US20100211386A1
    • 2010-08-19
    • US12767271
    • 2010-04-26
    • Eung-Don LeeDo-Young Kim
    • Eung-Don LeeDo-Young Kim
    • G10L19/12
    • G10L19/032G10L2019/0013
    • The present research can decrease the amount of computation and enhance speech quality by using a global pulse replacement method in a fixed codebook search. The fixed codebook search method in a speech encoder based upon global pulse replacement, includes the steps of: (a) computing absolute values of the pulse-position likelihood-estimator vectors; (b) temporarily obtaining a codebook vector; (c) computing a mathematical equation by replacing a pulse; (d) determining whether a value computed based upon the mathematical equation is increased after pulse replacement; (e) obtaining a new codebook vector by replacing the pulse; and (f) maintaining a previous codebook vector.
    • 本研究可以通过在固定码本搜索中使用全局脉冲替换方法来减少计算量并提高语音质量。 基于全局脉冲替换的语音编码器中的固定码本搜索方法包括以下步骤:(a)计算脉冲位置似然估计器矢量的绝对值; (b)暂时获得码本矢量; (c)通过替换脉冲来计算数学方程; (d)确定在脉冲置换之后基于数学方程计算的值是否增加; (e)通过替换脉冲获得新的码本矢量; 和(f)保持先前的码本向量。