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    • 51. 发明申请
    • Plasma display apparatus and driving method thereof
    • 等离子体显示装置及其驱动方法
    • US20060273992A1
    • 2006-12-07
    • US11326377
    • 2006-01-06
    • Won KimKyoung JungSung Lee
    • Won KimKyoung JungSung Lee
    • G09G3/28
    • G09G3/294G09G2310/066G09G2320/041G09G2320/046
    • The present invention relates to a plasma display apparatus, and more particularly, to a plasma display apparatus and driving method thereof, wherein a sustain waveform can be improved. According to the present invention, the plasma display apparatus includes a plasma display panel comprising a plurality of sustain electrode pairs wherein each of the sustain electrode pairs has a scan electrode and a sustain electrode, and a sustain waveform controller for controlling a rising time or a falling time of sustain waveforms supplied to at least one of the sustain electrode pairs according to a temperature of the plasma display panel. The sustain waveform controller controls a time corresponding to a time point at which a sustain discharge is generated, of the rising time and the falling time. The present invention improves a plasma display apparatus and driving method thereof. Accordingly, there is an effect in that erroneous discharge depending on a temperature of a plasma display panel can be prevented.
    • 等离子体显示装置及其驱动方法技术领域本发明涉及等离子体显示装置,更具体地,涉及一种能够提高维持波形的等离子体显示装置及其驱动方法。 根据本发明,等离子体显示装置包括等离子体显示面板,其包括多个维持电极对,其中每个维持电极对具有扫描电极和维持电极,以及维持波形控制器,用于控制上升时间或 根据等离子体显示面板的温度,提供给至少一个维持电极对的维持波形的下降时间。 维持波形控制器控制与产生维持放电的时间点对应的时间,上升时间和下降时间。 本发明改进了等离子体显示装置及其驱动方法。 因此,可以防止根据等离子体显示面板的温度的错误放电的效果。
    • 57. 发明申请
    • Multiple vacuum evaporation coating device and method for controlling the same
    • 多重真空蒸镀装置及其控制方法
    • US20060204648A1
    • 2006-09-14
    • US11370033
    • 2006-03-08
    • Sung LeeSu KimMin Hwang
    • Sung LeeSu KimMin Hwang
    • C23C16/00C23C14/00
    • C23C14/243C23C14/56
    • A multiple vacuum evaporation coating device and a method for controlling the same. The vacuum evaporation coating device includes a plurality of evaporation sources, a rotating part adapted to rotate the plurality of evaporation sources and a coating block plate adapted to block all but one of said plurality of evaporation sources at any time, each of the plurality of evaporation sources comprise a case, a melting pot arranged within said case, an evaporation material arranged within the melting pot, a heating device arranged outside the melting pot and adapted to heat and evaporate the evaporation material, and a cooling device adapted to block heat generated by the heating device from transferring to an outside.
    • 一种多重真空蒸镀装置及其控制方法。 真空蒸发涂布装置包括多个蒸发源,适于使多个蒸发源旋转的旋转部分和适于在任何时间阻止所有多个蒸发源中的除所有多个蒸发源之外的所有蒸发源的涂层阻挡板,多个蒸发 源包括壳体,布置在所述壳体内的熔炉,布置在熔炉内的蒸发材料,布置在熔池外部并适于加热和蒸发蒸发材料的加热装置,以及适于阻挡由蒸发材料产生的热的冷却装置 加热装置转移到外部。
    • 58. 发明申请
    • Nitride semiconductor light emitting device
    • 氮化物半导体发光器件
    • US20060192223A1
    • 2006-08-31
    • US11313515
    • 2005-12-21
    • Sung LeeWoong HwangSeog ChoiHo ParkSang ChoiChang Lim
    • Sung LeeWoong HwangSeog ChoiHo ParkSang ChoiChang Lim
    • H01L33/00
    • H01L33/38H01L33/20H01L2224/16225
    • The invention relates to a flip-chip nitride semiconductor LED. In the LED, a light emitting structure has first and second conductivity type nitride semiconductor layers and an active layer interposed therebetween. Each of plurality of first and second electrodes has a bonding pad placed adjacent to a top corner of the light emitting structure and at least one electrode finger extended from the bonding pad. The first and second electrodes are connected to the first and second conductivity type nitride semiconductor layers, respectively. Also, bonding pads are arranged alternately along edges of the light emitting structure with different polarity, in a substantially symmetric configuration with respect to the center of the light emitting structure. In addition, each of electrode fingers is extended from a corresponding pad and bent at least once toward the center of the light emitting structure to adjoin the electrode finger having different polarity.
    • 本发明涉及倒装芯片氮化物半导体LED。 在LED中,发光结构具有第一和第二导电型氮化物半导体层和插入其间的有源层。 多个第一和第二电极中的每一个具有与发光结构的顶角相邻放置的接合焊盘和从接合焊盘延伸的至少一个电极指。 第一和第二电极分别连接到第一和第二导电型氮化物半导体层。 此外,接合焊盘以相对于发光结构的中心的基本对称的配置,以不同的极性交替地布置在发光结构的边缘处。 此外,每个电极指从对应的垫延伸并且朝着发光结构的中心弯曲至少一次,以与具有不同极性的电极指相邻。
    • 60. 发明申请
    • Data semanticizer
    • 数据语义化
    • US20060136194A1
    • 2006-06-22
    • US11014904
    • 2004-12-20
    • Patrick ArmstrongNada HashmiSung LeeRyusuke MasuokaZhexuan Song
    • Patrick ArmstrongNada HashmiSung LeeRyusuke MasuokaZhexuan Song
    • G06F17/28
    • G06F17/30734G06F17/30731
    • A computer-implemented method of defining a set of annotation elements to map a concept to electronic data as input data; generating a mapping rule, according to the set of annotation elements defined and a sample of the input data; mapping the concept to the input data by applying the mapping rule to the input data; and generating a semantic instance of the input data based upon the mapping of the concept to the input data. The set of annotation elements to map the concept to the input data are a selected ontology corresponding to the input data, a selected ontology concept from the selected ontology, a mapping of a word or word phrase in the sample input data to the selected ontology concept from the selected ontology, and a pattern of the mapped word or word phrase relative to a structure of the sample input data.
    • 一种计算机实现的方法,用于定义一组注释元素以将概念映射为电子数据作为输入数据; 根据定义的注释元素集合和输入数据的样本生成映射规则; 通过将映射规则应用于输入数据,将概念映射到输入数据; 以及基于所述概念与所述输入数据的映射来生成所述输入数据的语义实例。 用于将概念映射到输入数据的注释元素集合是对应于输入数据的选定本体,来自所选本体的所选择的本体概念,将样本输入数据中的单词或单词短语映射到所选择的本体概念 来自所选择的本体,以及相对于样本输入数据的结构的映射词或词组的模式。