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    • 62. 发明授权
    • Nonvolatile memory apparatus and verification method thereof
    • 非易失性存储装置及其验证方法
    • US08743608B2
    • 2014-06-03
    • US13412892
    • 2012-03-06
    • Sung Dae ChoiYou Sung KimMin Su Kim
    • Sung Dae ChoiYou Sung KimMin Su Kim
    • G11C11/34
    • G11C16/3459G11C16/04G11C29/52
    • A nonvolatile memory apparatus includes: a memory cell array including a plurality of unit memory cells; a page buffer unit configured to read data from a selected memory cell of the memory cell array and store the read data; a controller configured to generate a reference current generation signal, a first current control signal, and a second current control signal, which correspond to the number of fail bits to be sensed and a deviation in cell current amounts flowing through the unit memory cells during a read operation, in response to a verification command; and a fail bit sensing unit configured to receive the reference current generation signal, the first current control signal, and the second current control signal from the controller in response to the verification command, and control at least one of a reference current amount and a data read current amount of the page buffer unit.
    • 非易失性存储装置包括:包括多个单位存储单元的存储单元阵列; 页缓冲器单元,被配置为从所述存储单元阵列的选定存储单元读取数据并存储所读取的数据; 控制器,其被配置为生成参考电流产生信号,第一电流控制信号和第二电流控制信号,其对应于待感测的故障位的数量和在一个 响应于验证命令读取操作; 以及故障位感测单元,被配置为响应于所述验证​​命令从所述控制器接收所述参考电流产生信号,所述第一电流控制信号和所述第二电流控制信号,并且控制参考电流量和数据中的至少一个 读取页面缓冲单元的当前量。
    • 63. 发明授权
    • Apparatus and method for manufacturing manganese oxide-titania catalyst
    • 锰氧化物 - 二氧化钛催化剂的制造方法
    • US08476185B2
    • 2013-07-02
    • US13006105
    • 2011-01-13
    • Sung Min ChinJong Soo JurngGwi Nam BaeEun Seuk ParkMin Su Kim
    • Sung Min ChinJong Soo JurngGwi Nam BaeEun Seuk ParkMin Su Kim
    • B01J23/00B01J21/00
    • B01J35/0013B01J21/063B01J23/34B01J35/008B01J35/06B01J37/14B01J37/349B01J2208/00203
    • Disclosed are an apparatus and method for preparing a manganese oxide-titania catalyst. The apparatus for preparing a manganese oxide-titania catalyst includes: a vaporizer vaporizing a manganese precursor and a titanium precursor; a carrier gas supply line supplying a carrier gas, which carries precursor vapors vaporized by the vaporizer to a reactor, to the vaporizer; an oxygen supply line supplying an oxygen source to the reactor; the reactor reacting the precursor vapors with the oxygen source to synthesize a manganese oxide-titania catalyst; and a collector condensing and collecting the manganese oxide-titania catalyst synthesized in the reactor. And, the method for preparing a manganese oxide-titania catalyst includes: 1) vaporizing a manganese precursor and a titanium precursor; 2) carrying precursor vapors (vapors of the manganese precursor and the titanium precursor) and an oxygen source to a reactor; 3) reacting the precursor vapors and the oxygen source to synthesize a manganese oxide-titania catalyst; and 4) condensing and collecting the manganese oxide-titania catalyst. According to the present disclosure, mass production of manganese oxide-titania catalysts with high decomposition efficiency of organic compounds can be prepared through fewer and continuous processes.
    • 公开了一种制备氧化锰 - 二氧化钛催化剂的装置和方法。 用于制备氧化锰 - 二氧化钛催化剂的装置包括:蒸发锰前体和钛前体的蒸发器; 供应载气的载气供应管线,其将由气化器蒸发的前体蒸汽携带到反应器; 向反应器供应氧源的供氧管线; 反应器将前体蒸气与氧源反应以合成氧化锰 - 二氧化钛催化剂; 以及收集器,其收集在反应器中合成的氧化锰 - 二氧化钛催化剂。 而且,制备氧化锰 - 二氧化钛催化剂的方法包括:1)蒸发锰前体和钛前体; 2)将前体蒸汽(锰前体和钛前体的蒸气)和氧源输送到反应器; 3)使前体蒸气和氧源反应合成氧化锰 - 二氧化钛催化剂; 和4)冷凝和收集氧化锰 - 二氧化钛催化剂。 根据本公开,可以通过更少和连续的方法制备具有高分解效率的有机化合物的氧化锰 - 二氧化钛催化剂的批量生产。
    • 68. 发明授权
    • Electrode assembly prepared in longitudinal folding manner and electrochemical cell employing the same
    • 以纵向折叠方式制备的电极组件和采用其的电化学电池
    • US07871722B2
    • 2011-01-18
    • US11548084
    • 2006-10-10
    • Youngjoon ShinMin Su KimJi Heon RyuJeong Hee ChoiSeung-Jin Yang
    • Youngjoon ShinMin Su KimJi Heon RyuJeong Hee ChoiSeung-Jin Yang
    • H01M6/46H01M6/26
    • H01M10/0413H01M2/0275H01M2/0287H01M2/266H01M10/0431H01M10/0525H01M10/0583H01M10/4235
    • Disclosed herein are an electrode assembly including a plurality of unit cells folded by a continuous separation film wherein the unit cells are arranged on the separation film such that electrode taps of the unit cells face each other, the separation film has openings corresponding to the electrode taps of the unit cells, and the electrode assembly is manufactured by folding the unit cells in the longitudinal (lengthwise) direction of the separation film while the unit cells are disposed such that the electrode taps of the unit cells are inserted into the corresponding openings, and an electrochemical cell, such as a secondary battery, including the same. The electrode assembly according to the present invention is a hybrid type electrode assembly solving the problems of the jelly-roll type electrode assembly and the stacking type electrode assembly. Consequently, when external impacts are applied to the electrode assembly, for example, the electrode assembly falls, it is possible to minimize the occurrence of internal short circuits and thus to improve the safety of the electrode assembly. Furthermore, it is possible to perform the process for impregnating (wetting) the electrolyte into the electrodes in a short time during the assembly of the electrochemical cell.
    • 本文公开了一种电极组件,其包括由连续分离膜折叠的多个单元电池,其中单元电池布置在分离膜上,使得单元电池的电极抽头彼此面对,分离膜具有对应于电极抽头的开口 的单元电池,并且通过在分离膜的纵向(纵向)方向上折叠单元电池而制造电极组件,同时单元电池被布置成使得单元电池的电极抽头插入到相应的开口中,并且 包括其的电化学电池,例如二次电池。 根据本发明的电极组件是解决胶卷型电极组件和堆叠型电极组件的问题的混合型电极组件。 因此,当对电极组件施加外部冲击时,例如电极组件掉落,可以最小化内部短路的发生,从而提高电极组件的安全性。 此外,可以在组装电化学电池期间在短时间内进行浸渍(润湿)电解质到电极中的工艺。
    • 69. 发明申请
    • BATTERY CELL OF IMPROVED SAFETY
    • 改进安全的电池组
    • US20100266881A1
    • 2010-10-21
    • US12596532
    • 2008-04-18
    • Seungjae YouMin Su Kim
    • Seungjae YouMin Su Kim
    • H01M2/12
    • H01M2/30H01M2/0277H01M2/0285H01M2/0287H01M2/1241
    • Disclosed herein is a battery cell constructed in a structure in which an electrode assembly is mounted in a battery case made of a laminate sheet including a metal layer and a resin layer, and the battery case is thermally welded along the edge of a receiving part thereof to form a sealing part, wherein a weak part is formed at a portion of the sealing part (‘an electrode lea correspondence portion’) corresponding to one of electrode leads (a, b) connected to the electrode assembly, e.g., the electrode lead (a) having relatively low flexibility, the weak part being physically deformed, such that internal gas is discharged outside through the weak part, when predetermined pressure is applied to the weak part, and the weak part is not formed at an electrode lead correspondence portion of the other electrode lead (b).
    • 这里公开了一种电池单元,其结构是将电极组件安装在由包括金属层和树脂层的层压片制成的电池壳体中,并且电池壳体沿其接收部分的边缘热焊接 以形成密封部分,其中在与电极组件连接的电极引线(a,b)中的一个对应的密封部分(“电极对应部分”)的部分处形成弱部分,例如,电极引线 (a)具有相对较低的柔性,当薄弱部分施加预定的压力时,弱部件物理变形,使得内部气体通过弱部排出到外部,并且弱部分不形成在电极引线对应部分 的另一个电极引线(b)。