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    • 1. 发明申请
    • Antireflective hardmask composition and methods for using same
    • 防反射硬掩模组​​合物及其使用方法
    • US20070003863A1
    • 2007-01-04
    • US11301049
    • 2005-12-12
    • Dong UhJi JungJae OhChang OhDo Kim
    • Dong UhJi JungJae OhChang OhDo Kim
    • G03C1/00
    • G03F7/091G03F7/0387Y10S430/115
    • Hardmask compositions having antireflective properties useful in lithographic processes, methods of using the same, and semiconductor devices fabricated by such methods, are provided. Antireflective hardmask compositions of the invention include: (a) a polymer mixture including a first polymer that includes one or more of the following monomeric units wherein A is a bivalent radical selected from the group consisting of carbonyl, oxy, alkylene, fluoroalkylene, phenyldioxy, and any combination thereof; R1 and R2 are each independently a bivalent radical selected from the group consisting of an alkylene, an arylene, and any combination thereof; and x, y, and z are 0 or integers; and a second polymer including an aryl group; (b) a crosslinking component; and (c) an acid catalyst.
    • 提供了具有抗平滑印刷工艺中有用的抗反射性能的硬掩模组合物,其使用方法以及通过这些方法制造的半导体器件。 本发明的抗反射硬掩模组​​合物包括:(a)包含第一聚合物的聚合物混合物,其包含一种或多种下列单体单元,其中A是选自羰基,氧基,亚烷基,氟代亚烷基,苯基二氧基, 及其任何组合; R 1和R 2各自独立地为选自亚烷基,亚芳基及其任何组合的二价基团; x,y和z为0或整数; 和包含芳基的第二聚合物; (b)交联组分; 和(c)酸催化剂。
    • 4. 发明申请
    • Wireless communication terminal with an opening/closing sensing function using a plurality of magnetic pole sensors and method therefor
    • 具有使用多个磁极传感器的开闭感测功能的无线通信终端及其方法
    • US20060105757A1
    • 2006-05-18
    • US11257919
    • 2005-10-25
    • Yong KangJi JungMyung LeeIn KimKwang Choi
    • Yong KangJi JungMyung LeeIn KimKwang Choi
    • H04M3/00
    • H04M1/0235G06F1/1624G06F1/1677G06F1/1684H04M1/0245H04M1/72519H04M2250/12
    • A wireless communication terminal with an opening/closing function using a plurality of magnetic pole sensors and method therefor is provided. The invention activates or inactivates a display unit via a switch by sensing an opening/closing of a sub-body using the magnetic pole sensors, to thereby prevent a malfunctioning due to a magnetic pole caused by an external magnetic pole generator. The inventive wireless communication terminal comprises a first magnetic pole generator for generating a north (N) magnetic pole, a second magnetic pole generator for generating a south (S) magnetic pole, a first magnetic pole sensor for sensing the N magnetic pole from the first magnetic pole generator, a second magnetic pole sensor for sensing the S magnetic pole from the second magnetic pole generator, a controller for controlling an operation of a switch to activate or inactivate an output unit based on the sense result from the first and the second magnetic pole sensors, the switch performing a switching operation in response to a control signal from the controller, and the output unit activated or inactivated in accordance with the switching operation of the switch.
    • 提供一种具有使用多个磁极传感器的打开/关闭功能的无线通信终端及其方法。 本发明通过使用磁极传感器感测子体的开/关来通过开关来激活或灭活显示单元,从而防止由外部磁极发生器引起的磁极引起的故障。 本发明的无线通信终端包括用于产生北(N)磁极的第一磁极发生器,用于产生南(S)磁极的第二磁极发生器,用于从第一磁极感测N磁极的第一磁极传感器 磁极发生器,用于感测来自第二磁极发生器的S磁极的第二磁极传感器,用于基于来自第一和第二磁极的感测结果来控制开关的操作以激活或失活输出单​​元的控制器 所述开关响应于来自所述控制器的控制信号执行切换操作,并且所述输出单元根据所述开关的切换操作而被激活或非激活。
    • 8. 发明申请
    • Method for measuring particles in glass substrate
    • 用于测量玻璃基板中的颗粒的方法
    • US20050116150A1
    • 2005-06-02
    • US10816818
    • 2004-04-05
    • Chang LeeTaek KimSuk KimKi KimGa KimJi Jung
    • Chang LeeTaek KimSuk KimKi KimGa KimJi Jung
    • G01N15/02G01N21/86G01N21/88G01N21/958G06M7/00H01J9/42
    • G01N15/0227G01N15/0612G01N21/896G01N21/958
    • Particles in a glass substrate are measured by executing following steps: sequentially conveying a plurality of glass substrates; scanning with a camera a unit area of a glass substrate in a direction of a travel path of the glass substrate and storing particle information thereof; shifting the camera to a position corresponding to a next unit area for a succeeding glass substrate; storing information on the particles in the unit area of the succeeding glass substrate obtained by scanning the glass substrate; estimating whether a sum of the respective scanned unit areas is within an allowed limit of an area of a glass substrate; and returning to the third step if an answer from the fifth step is “No” or storing information on the particles in the entire glass substrate if the answer is “Yes”.
    • 通过执行以下步骤来测量玻璃基板中的颗粒:顺序地输送多个玻璃基板; 用相机扫描玻璃基板的单位面积,沿着玻璃基板的行进路径的方向并存储其颗粒信息; 将相机移动到对应于后续玻璃基板的下一单位区域的位置; 存储通过扫描玻璃基板获得的后续玻璃基板的单位面积中的颗粒的信息; 估计各个扫描单位面积的总和是否在玻璃基板的面积的允许极限内; 如果答案为“是”,则如果第五步骤的答案为“否”或者将玻璃基板上的颗粒的信息存储在玻璃基板整体中,则返回到第三步骤。