Methods for preparing composites of substrate-molecular sieve
    2.
    发明授权
    Methods for preparing composites of substrate-molecular sieve 有权
    制备底物分子筛复合材料的方法

    公开(公告)号:US08771639B2

    公开(公告)日:2014-07-08

    申请号:US12311486

    申请日:2008-01-04

    CPC classification number: C01B39/02

    Abstract: The present invention relates to a method for preparing composites of substrate-molecular sieve, in particular, to a method for preparing a composite of substrate-molecular sieve, which comprises applying a physical pressure to molecular sieve crystals against a substrate to form a chemical bond between the molecular sieve crystal and the substrate. The present invention requiring no solvents, reactors and other equipments enables molecular sieve crystals to be stably attached to the surface of substrates through various chemical bonds, particularly ionic present invention ensures the synthesis of substrate-molecular sieve composites with enhanced attachment rate, degree of lateral close packing (DCP) and attachment strength in more time-saving and energy-saving manners. The present method works well for molecular sieve crystals with lager sizes (e.g., more than 3 μm) with no generation of parasitic crystals. Furthermore, the present invention shows excellent applicability to large substrates, enabling the mass production of substrate-molecular sieve composites.

    Abstract translation: 本发明涉及一种制备底物分子筛复合材料的方法,特别涉及一种制备底物 - 分子筛复合材料的方法,该方法包括向分子筛晶体施加物理压力以抵抗基质以形成化学键 在分子筛晶体和基底之间。 不需要溶剂,反应器等设备的本发明使得分子筛晶体能够通过各种化学键稳定地附着于基底表面,特别是离子本发明确保了底物分子筛复合物的合成,具有增强的附着率, 紧密包装(DCP)和附件强度更节省时间和节能的方式。 本发明的方法适用于具有较大尺寸(例如大于3μm)的分子筛晶体,而不产生寄生晶体。 此外,本发明对大基材显示出优异的适用性,能够批量生产基质分子筛复合材料。

    Light emitting device having a plurality of light emitting cells and package mounting the same
    3.
    发明授权
    Light emitting device having a plurality of light emitting cells and package mounting the same 有权
    具有多个发光单元的发光器件和安装它们的封装

    公开(公告)号:US08643029B2

    公开(公告)日:2014-02-04

    申请号:US13074761

    申请日:2011-03-29

    Abstract: Disclosed is a light emitting device having a plurality of light emitting cells and a package having the same mounted thereon. The light emitting device includes a plurality of light emitting cells which are formed on a substrate and each of which has an N-type semiconductor layer and a P-type semiconductor layer located on a portion of the N-type semiconductor layer. The plurality of light emitting cells are bonded to a submount substrate. Accordingly, heat generated from the light emitting cells can be easily dissipated, so that a thermal load on the light emitting device can be reduced. Meanwhile, since the plurality of light emitting cells are electrically connected using connection electrodes or electrode layers formed on the submount substrate, it is possible to provide light emitting cell arrays connected to each other in series. Further, it is possible to provide a light emitting device capable of being directly driven by an AC power source by connecting the serially connected light emitting cell arrays in reverse parallel to each other.

    Abstract translation: 公开了一种发光器件,其具有多个发光单元及其上安装有该发光单元的封装。 发光器件包括形成在衬底上的多个发光单元,每个发光单元具有位于N型半导体层的一部分上的N型半导体层和P型半导体层。 多个发光单元被接合到副安装座基板。 因此,可以容易地消散从发光单元产生的热量,从而可以减少发光器件上的热负荷。 同时,由于使用形成在副安装座基板上的连接电极或电极层使多个发光单元电连接,所以可以提供串联连接的发光单元阵列。 此外,可以提供一种能够由AC电源直接驱动的发光器件,通过将串联连接的发光单元阵列反向并联连接。

    NANO-PATTERNING APPARATUS, SYSTEM HAVING THE SAME, AND CONTROL METHOD THEREOF
    4.
    发明申请
    NANO-PATTERNING APPARATUS, SYSTEM HAVING THE SAME, AND CONTROL METHOD THEREOF 审中-公开
    纳米图案装置,具有该装置的系统及其控制方法

    公开(公告)号:US20130251887A1

    公开(公告)日:2013-09-26

    申请号:US13483606

    申请日:2012-05-30

    CPC classification number: B23K3/0623 H05K3/1241 H05K3/3484 H05K2201/0257

    Abstract: Disclosed herein is a nano-patterning system including a nano-patterning apparatus. The nano-patterning apparatus includes: a holder unit including a transfer unit and an insulating unit; a tip unit inserted into the holder unit, downwardly protruded, and having a flow channel; a flow path having one end connected to the flow channel through one side of the transfer unit or the insulating unit and extending to the outside to serve as a movement path allowing a nano-patterning material to move therealong; a pressing unit pressing the nano-patterning material at one side of the flow path; and a storage unit connected to the other end of the flow path and storing the nano-patterning material.

    Abstract translation: 本文公开了包括纳米图案形成装置的纳米图案化系统。 纳米图案形成装置包括:保持单元,包括转印单元和绝缘单元; 插入保持器单元中的尖端单元向下突出并具有流动通道; 流路,其一端通过传送单元或绝缘单元的一侧连接到流动通道,并延伸到外部,用作使纳米图案材料沿着其移动的移动路径; 按压单元,在所述流路的一侧按压所述纳米图案形成材料; 以及存储单元,连接到流路的另一端并存储纳米图案材料。

    LIGHT EMITTING DEVICE HAVING A PLURALITY OF LIGHT EMITTING CELLS AND PACKAGE MOUNTING THE SAME
    7.
    发明申请
    LIGHT EMITTING DEVICE HAVING A PLURALITY OF LIGHT EMITTING CELLS AND PACKAGE MOUNTING THE SAME 有权
    具有多个发光细胞的发光装置和安装其的包装

    公开(公告)号:US20100244060A1

    公开(公告)日:2010-09-30

    申请号:US12819154

    申请日:2010-06-18

    Abstract: Disclosed is a light emitting device having a plurality of light emitting cells and a package having the same mounted thereon. The light emitting device includes a plurality of light emitting cells which are formed on a substrate and each of which has an N-type semiconductor layer and a P-type semiconductor layer located on a portion of the N-type semiconductor layer. The plurality of light emitting cells are bonded to a submount substrate. Accordingly, heat generated from the light emitting cells can be easily dissipated, so that a thermal load on the light emitting device can be reduced. Meanwhile, since the plurality of light emitting cells are electrically connected using connection electrodes or electrode layers formed on the submount substrate, it is possible to provide light emitting cell arrays connected to each other in series. Further, it is possible to provide a light emitting device capable of being directly driven by an AC power source by connecting the serially connected light emitting cell arrays in reverse parallel to each other.

    Abstract translation: 公开了一种发光器件,其具有多个发光单元及其上安装有该发光单元的封装。 发光器件包括形成在衬底上的多个发光单元,每个发光单元具有位于N型半导体层的一部分上的N型半导体层和P型半导体层。 多个发光单元被接合到副安装座基板。 因此,可以容易地消散从发光单元产生的热量,从而可以减少发光器件上的热负荷。 同时,由于使用形成在副安装座基板上的连接电极或电极层使多个发光单元电连接,所以可以提供串联连接的发光单元阵列。 此外,可以提供一种能够由AC电源直接驱动的发光器件,通过将串联连接的发光单元阵列反向并联连接。

    Methods for preparing composites of substrate-molecular sieve
    8.
    发明申请
    Methods for preparing composites of substrate-molecular sieve 有权
    制备底物分子筛复合材料的方法

    公开(公告)号:US20090246122A1

    公开(公告)日:2009-10-01

    申请号:US12311486

    申请日:2008-01-04

    CPC classification number: C01B39/02

    Abstract: The present invention relates to a method for preparing composites of substrate-molecular sieve, which comprises applying a physical pressure to molecular sieve crystals against a substrate to form a chemical bond between the molecular sieve crystal and the substrate. The present invention requiring no solvents, reactors and other equipments enables molecular sieve crystals to be stably attached to the surface of substrates through various chemical bonds, particularly ionic present invention ensures the synthesis of substrate-molecular sieve composites with enhanced attachment rate, degree of lateral close packing (DCP) and attachment strength in more time-saving method works well for molecular sieve crystals with lager sizes (e.g., more than 3 μm) with no generation of parasitic crystals. Furthermore, the present invention shows excellent applicability to large substrates, enabling the mass production of substrate-molecular sieve composites.

    Abstract translation: 本发明涉及一种制备底物分子筛复合材料的方法,该方法包括向分子筛结晶施加物理压力以在基底上形成分子筛晶体与基底之间的化学键。 不需要溶剂,反应器等设备的本发明使得分子筛晶体能够通过各种化学键稳定地附着于基底表面,特别是离子本发明确保了底物分子筛复合物的合成,具有增强的附着率, 紧密封装(DCP)和附件强度更节省时间的方法适用于较大尺寸(例如超过3 mum)的分子筛晶体,不产生寄生晶体。 此外,本发明对大基材显示出优异的适用性,能够批量生产基质分子筛复合材料。

    BALL POOL FOR INFANTS
    10.
    发明申请

    公开(公告)号:US20170189825A1

    公开(公告)日:2017-07-06

    申请号:US15313322

    申请日:2014-12-19

    Applicant: Young Ju LEE

    Inventor: Young Ju LEE

    Abstract: Disclosed is a ball pool for infants includes a wall body and a bottom body, the inside of a space formed therein is filled with balls, the wall body includes compartments arranged in a rounded shape, an opening is formed at the lower portion of each compartment such that an interior member may be inserted into or taken out of the compartment through the opening, and at least one cut part opened and closed by a fastening unit is formed at the wall body. Thereby, the ball pool for infants may be easily washable, and the wall body, from which bottom is removed, may used as a cushion having various shapes. Further, the wall body may be spread through the cut part so as to be used as a cushion, and or a plurality of wall bodies may be connected so as to be used as a bumper cushion.

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