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    • 84. 发明授权
    • Composition for electron emission source, electron emission source formed from the composition and electron emission device including the electron emission source
    • 用于电子发射源的组合物,由组合物形成的电子发射源和包括电子发射源的电子发射装置
    • US07790062B2
    • 2010-09-07
    • US11734385
    • 2007-04-12
    • Joo-Young Kim
    • Joo-Young Kim
    • H01J19/06
    • H01J9/025B82Y10/00H01J1/304H01J31/127H01J63/02H01J2201/30469H01J2209/0223
    • A composition for forming an electron emission source includes a polymer comprising a carbon-based material; a vehicle; and a unit of formula (1) below: wherein A1 is a single bond, or a substituted or unsubstituted C1-C20 alkylene group; and Z1 and Z2 are each hydrogen, a substituted or unsubstituted C1-C20 alkyl group, a substituted or unsubstituted C1-C20 alkoxy group, a carboxyl group, an —NR1R2 group, a part of a styrene group resin, or a part of a novolac resin, and R1 and R2 are each hydrogen, a substituted or unsubstituted C1-C20 alkyl group, or a substituted or unsubstituted C6-C30 aryl group. An electron emission source may be formed from the composition for forming an electron emission source, and an electron emission device and an electron emission display device may include the electron emission source. When the composition is used to form an electron emission source, the printability of the composition is improved and thus repeated printings can be carried out. Also, the developing properties are improved, so that an electron emission device having fine patterns can be obtained.
    • 用于形成电子发射源的组合物包括含有碳基材料的聚合物; 一辆车; 和下式(1)的单元:其中A1是单键,或取代或未取代的C1-C20亚烷基; 和Z 1和Z 2各自为氢,取代或未取代的C 1 -C 20烷基,取代或未取代的C 1 -C 20烷氧基,羧基,-NR 1 R 2基,部分苯乙烯基树脂或 酚醛清漆树脂,R 1和R 2各自为氢,取代或未取代的C 1 -C 20烷基或取代或未取代的C 6 -C 30芳基。 电子发射源可以由用于形成电子发射源的组合物形成,并且电子发射装置和电子发射显示装置可以包括电子发射源。 当组合物用于形成电子发射源时,组合物的可印刷性得到改善,因此可以进行重复印刷。 此外,显影性能得到改善,从而可以获得具有精细图案的电子发射器件。
    • 85. 发明申请
    • High Speed Serializing-Deserializing System and Method
    • 高速序列化反序列化系统及方法
    • US20090182912A1
    • 2009-07-16
    • US12346340
    • 2008-12-30
    • Hoi-Jun YooJoo-Young Kim
    • Hoi-Jun YooJoo-Young Kim
    • G06F13/38
    • H04L5/245H03K5/135H03K17/005H03M9/00H04L7/0008H04L25/14
    • Disclosed are a high speed serializing-deserializing system and a method thereof. The high speed serializing-deserializing system includes: a serializing unit including a plurality of serializers, generating a strobe signal, and multiplexing and converting N bits of parallel data into serial data; a transmission link transmitting the converted serial data and the strobe signal from the serializing unit; and a deserializing unit including a plurality of deserializers, and converting the serial data from the transmission link into the N bits of parallel data with the strobe signal from the transmission link. When serializing N bits of externally supplied parallel data with a rate of N:1, the N may be set to one of various integers. Although the N is extend to a large number such as 16, 32, and the like, the performance is not deteriorated and serialization-deserialization is possible. Accordingly, a window time per one data may be decreased to reduce a total delay of a serialization, to increase a bandwidth of a link, and to improve the robustness of the serialization-deserialization.
    • 公开了一种高速序列化反序列化系统及其方法。 高速序列化反序列化系统包括:串行化单元,包括多个串行器,产生选通信号,并将N位并行数据复用并转换成串行数据; 传输链路,从串行化单元发送转换的串行数据和选通信号; 以及包括多个解串行器的反序列化单元,并且将来自传输链路的串行数据从来自传输链路的选通信号转换成并行数据的N位。 当以N:1的速率串行外部提供的并行数据的N位时,N可以被设置为各种整数之一。 虽然N延伸到诸如16,32等的大数量,但是性能不会恶化,串行化反序列化也是可能的。 因此,可以减少每个数据的窗口时间以减少串行化的总延迟,增加链路的带宽,并且提高序列化反序列化的鲁棒性。
    • 89. 发明授权
    • Method of preventing electrical shorts
    • 防止电气短路的方法
    • US06436743B1
    • 2002-08-20
    • US09247368
    • 1999-02-10
    • Joo-Young KimWoong-Kwon KimYoung-Jin Oh
    • Joo-Young KimWoong-Kwon KimYoung-Jin Oh
    • H01L2184
    • H01L29/66765G02F1/1345G02F1/13458
    • A method of fabricating a thin film transistor (TFT) assembly having a plurality of array lines, a plurality of pads, a plurality of link lines connecting the pads to the array lines, an insulating layer, and an electrode pattern formed on a substrate, and further having short-preventing structures for preventing electrical shorts between the pads and the link lines. The method includes the steps of forming the plurality of pads on the substrate, depositing the insulating layer on the substrate including over the pads, etching the insulating layer to form contact holes, and etching the insulating layer between the adjacent pads to expose a surface of the substrate to prevent a short between the adjacent pads from occurring, and forming the electrode pattern on the insulating layer by depositing and patterning an electrode layer such that the electrode pattern contacts the pads through the contact holes formed in the insulating layer. The steps of etching the insulating layer between the adjacent pads is performed concurrently with the etching step for forming the contact holes. In addition, the areas between adjacent pads are further etched concurrently with the step of etching the electrode layer.
    • 一种制造具有多个阵列线的薄膜晶体管(TFT)组件的方法,多个焊盘,将焊盘连接到阵列线的多个连接线,绝缘层和形成在基板上的电极图案, 并且还具有用于防止焊盘和连接线之间的电短路的防短路结构。 该方法包括以下步骤:在衬底上形成多个焊盘,将绝缘层沉积在衬底上的衬底上,蚀刻绝缘层以形成接触孔,并蚀刻相邻衬垫之间的绝缘层,以暴露出 用于防止相邻焊盘之间发生短路的衬底,以及通过沉积和图案化电极层,使得电极图案通过形成在绝缘层中的接触孔接触焊盘而在绝缘层上形成电极图案。 蚀刻相邻焊盘之间的绝缘层的步骤与用于形成接触孔的蚀刻步骤同时进行。 此外,在蚀刻电极层的步骤的同时进一步蚀刻相邻焊盘之间的区域。