Surface light source, display apparatus having the same and liquid crystal display apparatus having the same
    4.
    发明申请
    Surface light source, display apparatus having the same and liquid crystal display apparatus having the same 审中-公开
    表面光源,具有该表面光源的显示装置和具有该表面光源的液晶显示装置

    公开(公告)号:US20050099137A1

    公开(公告)日:2005-05-12

    申请号:US10965567

    申请日:2004-10-14

    摘要: In a surface light source, a display apparatus having the surface light source and a liquid crystal display apparatus having the surface light source, the surface light source includes a body, a voltage supplying unit, a conductive body and a visible light generating part. The body includes a plurality of discharge portions. The voltage supplying unit is disposed on an outer surface of the body to generate an invisible light. The conductive body is disposed on an inner surface of the body corresponding to the voltage supplying unit. The visible light generating part is disposed in the discharge portions to generate a visible light based on the invisible light. Therefore, a luminance of the visible light is increased and uniformized. In addition, a start voltage of the surface light source is decreased so that a power consumption of the surface light source may be decreased.

    摘要翻译: 在面光源中,具有面光源的显示装置和具有面光源的液晶显示装置,所述面光源包括主体,电压供给单元,导电体和可见光发生部。 主体包括多个排出部。 电压供给单元设置在身体的外表面上以产生不可见的光。 导电体设置在与电压供给单元对应的主体的内表面上。 可见光产生部分设置在放电部分中,以产生基于不可见光的可见光。 因此,可见光的亮度增加且均匀化。 此外,降低了表面光源的起始电压,从而可以降低表面光源的功耗。

    Method for manufacturing a multi-layered thin film for use as an anode in a lithium secondary battery
    6.
    发明授权
    Method for manufacturing a multi-layered thin film for use as an anode in a lithium secondary battery 有权
    锂二次电池中用作阳极的多层薄膜的制造方法

    公开(公告)号:US07316867B2

    公开(公告)日:2008-01-08

    申请号:US10997882

    申请日:2004-11-29

    摘要: A thin film for an anode of a lithium secondary battery having a current collector and an anode active material layer formed thereon is provided. The anode active material layer is a multi-layered thin film formed by stacking a silver (Ag) layer and a silicon-metal (Si-M) layer having silicon dispersed in a base made from metal reacting with silicon while not reacting with lithium. The cycle characteristic of the thin film for an anode can be improved by suppressing the volumetric expansion and shrinkage of Si occurring during charging/discharging cycles. Thus, a lithium secondary battery with improved life characteristics by employing the thin film for an anode, which greatly improves the chemical, mechanical stability of the interface between an electrode and an electrolyte.

    摘要翻译: 提供一种用于形成有集电体和负极活性物质层的锂二次电池的负极的薄膜。 负极活性物质层是通过层叠银(Ag)层和分散在由与金反应的金属制成的基体中的硅的硅 - 金属(Si-M)层而不与锂反应而形成的多层薄膜。 通过抑制在充放电循环中发生的Si的体积膨胀和收缩,可以提高阳极用薄膜的循环特性。 因此,通过使用用于阳极的薄膜来改善寿命特性的锂二次电池,其极大地改善了电极和电解质之间的界面的化学,机械稳定性。

    Diffusion barrier layer for semiconductor device and fabrication method thereof
    7.
    发明授权
    Diffusion barrier layer for semiconductor device and fabrication method thereof 有权
    半导体器件用扩散阻挡层及其制造方法

    公开(公告)号:US06831362B2

    公开(公告)日:2004-12-14

    申请号:US10270351

    申请日:2002-10-15

    IPC分类号: H01L2940

    摘要: The present invention relates to a diffusion barrier layer for a semiconductor device and fabrication method thereof. The diffusion barrier layer according to the present invention is fabricated by forming a diffusion barrier layer containing a refractory metal material and an insulating material on an insulating layer and in a contact hole, wherein the insulating layer being partially etched to form the contact hole, is formed on a semiconductor substrate; and annealing the diffusion barrier layer. Therefore, an object of the present invention is to provide a diffusion barrier layer for a semiconductor device, which is of an amorphous or microcrystalline state and thermodynamically stable even at a high temperature since an insulating material is bonded to a refractory metal material in the diffusion barrier layer.

    摘要翻译: 本发明涉及一种用于半导体器件的扩散阻挡层及其制造方法。 根据本发明的扩散阻挡层通过在绝缘层和接触孔中形成包含难熔金属材料和绝缘材料的扩散阻挡层来制造,其中部分蚀刻以形成接触孔的绝缘层是 形成在半导体衬底上; 和退火扩散阻挡层。 因此,本发明的目的是提供一种半导体器件的扩散阻挡层,该扩散阻挡层具有非晶态或微晶态,并且即使在高温下也具有热力学稳定性,因为绝缘材料与扩散中的难熔金属材料结合 阻挡层。

    LIQUID CRYSTAL DISPLAY PANEL AND LIQUID CRYSTAL DISPLAY APPARATUS HAVING THE SAME
    8.
    发明申请
    LIQUID CRYSTAL DISPLAY PANEL AND LIQUID CRYSTAL DISPLAY APPARATUS HAVING THE SAME 有权
    液晶显示面板和液晶显示装置

    公开(公告)号:US20080299469A1

    公开(公告)日:2008-12-04

    申请号:US12176826

    申请日:2008-07-21

    IPC分类号: G02F1/13 B05D5/04

    摘要: A liquid crystal display panel includes a first substrate, a second substrate opposite the first substrate and a liquid crystal layer. The first substrate includes a lower substrate, a first buffer layer formed on the lower substrate and a first alignment layer formed on the first buffer layer. The first buffer layer includes a polymer-like carbon and the first alignment layer includes a diamond-like carbon thin film containing fluorine. The second substrate includes an upper substrate, a second buffer layer formed on the upper substrate and a second alignment layer formed on the second buffer layer. The second buffer layer includes the polymer-like carbon thin film and the second alignment layer includes the diamond-like carbon thin film containing fluorine. The liquid crystal display panel has improved light transmittance and a low probability of separation between the alignment layer and the substrate.

    摘要翻译: 液晶显示面板包括第一基板,与第一基板相对的第二基板和液晶层。 第一衬底包括下衬底,形成在下衬底上的第一缓冲层和形成在第一缓冲层上的第一取向层。 第一缓冲层包括聚合物状碳,第一取向层包括含氟的类金刚石碳薄膜。 第二基板包括上基板,形成在上基板上的第二缓冲层和形成在第二缓冲层上的第二取向层。 第二缓冲层包括聚合物状碳薄膜,第二取向层包括含氟的金刚石状碳薄膜。 液晶显示面板具有改善的透光率,并且取向层和基板之间的分离概率较低。

    Liquid crystal display panel and liquid crystal display apparatus having the same
    9.
    发明申请
    Liquid crystal display panel and liquid crystal display apparatus having the same 有权
    液晶显示面板和具有该液晶显示面板的液晶显示装置

    公开(公告)号:US20060038947A1

    公开(公告)日:2006-02-23

    申请号:US11199673

    申请日:2005-08-09

    IPC分类号: G02F1/1333

    摘要: A liquid crystal display panel includes a first substrate, a second substrate opposite the first substrate and a liquid crystal layer. The first substrate includes a lower substrate, a first buffer layer formed on the lower substrate and a first alignment layer formed on the first buffer layer. The first buffer layer includes a polymer-like carbon and the first alignment layer includes a diamond-like carbon thin film containing fluorine. The second substrate includes an upper substrate, a second buffer layer formed on the upper substrate and a second alignment layer formed on the second buffer layer. The second buffer layer includes the polymer-like carbon thin film and the second alignment layer includes the diamond-like carbon thin film containing fluorine. The liquid crystal display panel has improved light transmittance and a low probability of separation between the alignment layer and the substrate.

    摘要翻译: 液晶显示面板包括第一基板,与第一基板相对的第二基板和液晶层。 第一衬底包括下衬底,形成在下衬底上的第一缓冲层和形成在第一缓冲层上的第一取向层。 第一缓冲层包括聚合物状碳,第一取向层包括含氟的类金刚石碳薄膜。 第二基板包括上基板,形成在上基板上的第二缓冲层和形成在第二缓冲层上的第二取向层。 第二缓冲层包括聚合物状碳薄膜,第二取向层包括含氟的金刚石状碳薄膜。 液晶显示面板具有改善的透光率,并且取向层和基板之间的分离概率较低。

    Method of manufacturing nano device by arbitrarily printing nanowire devices thereon and intermediate building block useful for the method
    10.
    发明授权
    Method of manufacturing nano device by arbitrarily printing nanowire devices thereon and intermediate building block useful for the method 有权
    通过在其上任意打印纳米线器件制造纳米器件的方法和用于该方法的中间构建块

    公开(公告)号:US08399334B2

    公开(公告)日:2013-03-19

    申请号:US13015286

    申请日:2011-01-27

    摘要: A method of manufacturing a nano device by directly printing a plurality of NW devices in a desired shape on a predesigned gate substrate. The method includes preparing an NW solution, preparing a building block for performing decaling onto the substrate by carrying an NW device, forming the NW device by connecting electrodes of each of building block units of the building block using NWs by dropping the NW solution between the electrodes and then through dielectrophoresis, visually inspecting the numbers of NW bridges that are formed between the electrodes of each of the building block units through the dielectrophoresis, grouping the building block units according to the numbers, and decaling the NW device formed on each of the building block units onto the gate substrate by bringing the grouped building block units into contact with the predesigned gate substrate and then detaching the grouped building block units.

    摘要翻译: 一种通过在预先设计的栅极衬底上以期望的形状直接印刷多个NW器件来制造纳米器件的方法。 该方法包括:准备一个NW解决方案,准备一个构建块,用于通过运送一个NW装置来对基板执行贴花加工,通过使用NW来连接构造块的每个结构单元的电极来形成NW装置, 电极,然后通过介电电泳,目视检查通过介电电泳在每个构建块单元的电极之间形成的NW桥的数量,根据数字对构建块单元进行分组,以及对每个 通过使分组的构建块单元与预先设计的门基板接触并且然后分离分组的构件单元,将构件单元组合到栅极基板上。