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    • 22. 发明申请
    • Inspection method of circuit substrate
    • 电路基板检查方法
    • US20100002232A1
    • 2010-01-07
    • US12458183
    • 2009-07-02
    • Tak EunSeong Jin KimDong Jun Lee
    • Tak EunSeong Jin KimDong Jun Lee
    • G01N21/00
    • G01R31/304G01R31/2874
    • An inspection method for a circuit substrate is disclosed, which inspects electrical properties of a circuit substrate having a multilayered structure, by controlling inspection environments so that dew forms on a surface of the circuit substrate and detecting change of states of the dew to thereby determining variation of a thermal capacity of a conductor with respect to defective contacts or vias, micro vias and a circuit pattern of an inner layer. According to this, the inspection can be performed with respect to a wide area simultaneously and therefore the inspection productivity can be improved. In addition, since the temperature of the conductive wire can be measured directly through change of the dew, the cost for the temperature measurement can be saved. Moreover, the cost for an area sensor to sense the temperature of a wide area may be reduced while improving the inspection speed.
    • 公开了一种电路基板的检查方法,其通过控制检查环境来检查具有多层结构的电路基板的电特性,从而在电路基板的表面上形成露点并检测露水状态的变化,从而确定变化 相对于缺陷触点或通孔,微通孔和内层的电路图案的导体的热容量。 据此,能够同时进行广泛的检查,能够提高检查生产率。 此外,由于可以通过露水的变化直接测量导线的温度,因此可以节省温度测量的成本。 此外,可以降低用于感测广域的温度的区域传感器的成本,同时提高检查速度。
    • 25. 发明申请
    • Non-contact type single side probe structure
    • 非接触式单侧探头结构
    • US20080017508A1
    • 2008-01-24
    • US11826143
    • 2007-07-12
    • Tak EunSeong Jin Kim
    • Tak EunSeong Jin Kim
    • G01N27/403
    • G01R1/06761G01R1/07342
    • A non-contact type single side probe structure, in which a plurality of insulating films and conductive films are repeatedly stacked, includes probe electrodes formed at an inner conductive film portion of the cross-section of the structure and a guard portion formed at an outer conductive film portion surrounding the probe electrodes. Accordingly, it is possible to form the probe electrodes to have the thickness of the conductive films corresponding to a pitch of a pattern electrode, thereby detecting open and short circuit in a miniaturized pattern electrode. The cross-section used as a probe is spaced at a specified distance or further from contact holes, thereby having a high resistance to noises.
    • 多个绝缘膜和导电膜重复堆叠的非接触型单面探针结构包括形成在该结构的横截面的内部导电膜部分处的探针电极和形成在外部的防护部分 导电膜部分围绕探针电极。 因此,可以形成探针电极以使导电膜的厚度对应于图案电极的间距,从而检测小型化图形电极的开路和短路。 用作探针的横截面与接触孔间隔一定距离或更远,从而具有高的噪声抵抗能力。
    • 28. 发明授权
    • Preparation of N-substituted-hydroxycycloalkylamine derivatives
    • N-取代羟基环烷基胺衍生物的制备
    • US06566525B1
    • 2003-05-20
    • US09787202
    • 2001-04-07
    • Seong Jin KimKeon Il KimKyoung Youl Yang
    • Seong Jin KimKeon Il KimKyoung Youl Yang
    • C07D21142
    • C07D207/12C07D211/22C07D211/42Y02P20/55
    • A process for the preparation of N-substituted-hydroxycycloalkylamine derivatives, that are useful intermediates for the synthesis of various organic chemicals including pharmaceutical and agrochemical compounds, represented by formula (1), by reacting a 1,2-dihydroxalkyl alcohol, represented by the following formula (2), with a thionyl halide to produce an intermediate 1,2-cyclosulfinylalkyl halide represented by the following formula (3); and then cyclizing that intermediate with an amine compounds represented by the following formula (4). In the above structural formuli, * represents an asymmetric carbon atom; R1 is hydrogen or an amino-protecting group; m is an integer of 1-3; and X is halogen. The reactant compounds as well as the compounds made according to this invention have the following substitution pattern: n=1, R2=OH, R3=H and m=1; n=1, R2=H, R3=CH2OH and m=2; n=2, R2=OH, R3=H; and m=2; and n=2, R2=H, R3=CH2OH and m=3.
    • 一种制备N-取代羟基环烷基胺衍生物的方法,其为由式(1)表示的用于合成包括药物和农药化合物在内的各种有机化学品的有用的中间体,通过使由 (2)表示的亚硫酰卤,得到下式(3)表示的中间体1,2-环丙烷基烷基卤化物。 然后用下式(4)表示的胺化合物环化该中间体。在上述结构式中,*表示不对称碳原子; R1是氢或氨基保护基; m为1-3的整数; X为卤素。 反应物化合物以及根据本发明制备的化合物具有以下取代模式:n = 1,R 2 = OH,R 3 = H且m = 1; n = 1,R2 = H,R3 = CH2OH,m = 2; n = 2,R2 = OH,R3 = H; m = 2; n = 2,R2 = H,R3 = CH2OH,m = 3。
    • 30. 发明授权
    • Pharmaceutical composition and food composition for preventing and ameliorating motility disorders of gastrointestinal tract
    • 用于预防和改善胃肠道运动障碍的药物组合物和食物组合物
    • US09205118B2
    • 2015-12-08
    • US14129325
    • 2012-07-02
    • Seong Jin Kim
    • Seong Jin Kim
    • A01N65/00A61K36/14A23L1/30
    • A61K36/14A23L33/105
    • The Chamaecyparis obtusa extract can be extracted by various methods. For instance, an extraction solvent may be applied to leaves, trunks or branches of the Chamaecyparis obtuse for hot water extraction, cold solvent immersing extraction or warm solvent immersing extraction. In this case, the extraction solvent is added to the Chamaecyparis obtuse 2 to 20 times in a weight ratio to then be mixed, followed by extracting at 10 to 150 for 1 to 24 hours. Here, at least one selected from the group consisting of water, C1-C4 lower alcohols, polyalcohols or mixtures thereof may be used as the extraction solvent. The C1-C4 lower alcohols may include methanol, ethanol, and so on. The polyalcohols may include butylene glycol, propylene glycol, pentylene glycol. The mixtures may include a mixture of water and a lower alcohol, a mixture of water and a polyalcohol, a mixture of water and a lower alcohol and a polyalcohol, or a mixture of water, a lower alcohol and a polyalcohol.
    • Chamaecyparis obtusa提取物可以通过各种方法提取。 例如,可以将萃取溶剂施加到用于热水提取,冷溶剂浸渍萃取或温溶剂浸渍萃取的Chamaecyparis钝角的叶,树干或树枝上。 在这种情况下,将提取溶剂以重量比加入Chamaecyparis 2〜20次,然后混合,然后在10〜150℃下萃取1〜24小时。 这里,可以使用选自水,C1-C4低级醇,多元醇或其混合物中的至少一种作为提取溶剂。 C1-C4低级醇可以包括甲醇,乙醇等。 多元醇可以包括丁二醇,丙二醇,戊二醇。 混合物可以包括水和低级醇的混合物,水和多元醇的混合物,水和低级醇和多元醇的混合物,或水,低级醇和多元醇的混合物。