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    • 1. 发明授权
    • Method of manufacturing display device
    • 显示装置的制造方法
    • US08324034B2
    • 2012-12-04
    • US12856819
    • 2010-08-16
    • Hyun-Uk Oh
    • Hyun-Uk Oh
    • H01L21/336
    • H01L27/1288H01L27/1255H01L27/3262
    • In a method of manufacturing a display device, a first insulating layer is formed on a semiconductor pattern. Ions of a first concentration are injected into source and drain domains of the semiconductor pattern and a lower electrode of the semiconductor pattern by using a mask pattern that selectively overlaps a channel domain of the semiconductor pattern and is positioned on the top of the first insulating layer. The mask pattern is removed. An ion injection process of injecting ions of a second concentration lower than the first concentration into the semiconductor pattern of the channel domain is directly performed in the first insulating layer. A gate electrode that overlaps the channel domain is formed on the top of the first insulating layer. An upper electrode that overlaps the lower electrode is formed on the top of the first insulating layer.
    • 在制造显示装置的方法中,在半导体图案上形成第一绝缘层。 通过使用选择性地与半导体图案的沟道区重叠并位于第一绝缘层的顶部上的掩模图案将第一浓度的离子注入半导体图案的源极和漏极区域以及半导体图案的下部电极 。 去除掩模图案。 在第一绝缘层中直接进行将低于第一浓度的第二浓度的离子注入到沟道区的半导体图案中的离子注入过程。 在第一绝缘层的顶部上形成与沟道域重叠的栅电极。 在第一绝缘层的顶部上形成有与下部电极重叠的上部电极。
    • 5. 发明授权
    • Circuit of calculating errata locator and evaluator polynomial,
calculating method thereof and reed-solomon decoder using the same
    • 计算勘误定位器和求值多项式的电路,其计算方法和使用其的簧片独奏解码器
    • US5805616A
    • 1998-09-08
    • US552551
    • 1996-03-20
    • Young-uk Oh
    • Young-uk Oh
    • H03M13/00H03M13/15
    • H03M13/151
    • The present invention relates to a circuit for calculating an ELP and an EEP, and a Reed-Solomon decoder using the same. The circuit includes: first storage device for storing a syndrome value, coefficient values of the ELP, a discrepancy value and the size of a shortened code; second storage device for storing the coefficient values of the ELP, the reciprocal value of the discrepancy, the discrepancy value, the coefficient values of the ELP and the values obtained by differentiating the coefficient values of the ELP; first selecting device for selectively outputting the values stored in the first storage device in response to first to sixth control signals; second selecting device for selectively outputting the values stored in the second storage device in response to the control signals; multiplication device for multiplying the values selected by the first and second selecting means; third selecting means for selectively outputting the resultant values multiplied by the multiplication device in response to the control signals; third storage device for storing the resultant values selectively output by said third selecting device. Accordingly, the construction of the circuit becomes simple and a chip area can be reduced at the time of integration.
    • 本发明涉及一种用于计算ELP和EEP的电路,以及使用该电路的Reed-Solomon解码器。 该电路包括:用于存储校正子值的第一存储装置,ELP的系数值,差值和缩短代码的大小; 用于存储ELP的系数值,差异的倒数值,偏差值,ELP的系数值和通过微分ELP的系数值而获得的值的第二存储装置; 第一选择装置,用于响应于第一至第六控制信号选择性地输出存储在第一存储装置中的值; 第二选择装置,用于响应于控制信号选择性地输出存储在第二存储装置中的值; 乘法装置,用于将由第一和第二选择装置选择的值相乘; 第三选择装置,用于响应于控制信号选择性地输出乘以乘法装置的结果值; 第三存储装置,用于存储由所述第三选择装置有选择地输出的结果值。 因此,电路的结构变得简单,并且在集成时可以减小芯片面积。
    • 6. 发明授权
    • Method and apparatus for computing error locator polynomial for use in a
Reed-Solomon decoder
    • 用于计算用于Reed-Solomon解码器的误差定位多项式的方法和装置
    • US5583499A
    • 1996-12-10
    • US365256
    • 1994-12-28
    • Young-Uk OhDae-Young Kim
    • Young-Uk OhDae-Young Kim
    • G06F11/10H03M13/00H03M13/15
    • H03M13/151
    • In a decoding system which decodes a transmitted signal encoded by using a Reed-Solomon code, an error locator polynomial of the nth iteration is calculated based on a predetermined number of syndrome values; a group of variables of the (n-1)st iteration including a discrepancy and an error locator polynomial thereof; and an error locator polynomial of the (n-2)nd iteration. The method for providing the error locator polynomial comprises the steps of calculating a discrepancy of the nth iteration based on the syndrome values and the error locator polynomial of the (n-1)st iteration; calculating a temporal term based on the discrepancy of the (n-1)st iteration and the error locator polynomial of the (n-2)nd iteration; determining a correction term based on the temporal term and the discrepancy of the nth iteration; and computing the error locator polynomial of the nth iteration based on the correction term and the error locator polynomial of the (n-1)st iteration.
    • 在对利用Reed-Solomon码编码的发送信号进行解码的解码系统中,基于预定数量的校正子值计算第n次迭代的误差定位多项式; (n-1)次迭代的一组变量包括差异和其错误定位多项式; 和(n-2)nd迭代的误差定位多项式。 提供错误定位多项式的方法包括基于第(n-1)次迭代的校正子值和误差定位多项式计算第n次迭代的差异的步骤; 基于第(n-1)次迭代和第(n-2)次迭代的误差定位多项式的差异来计算时间项; 基于第n次迭代的时间项和差异确定校正项; 以及基于第(n-1)次迭代的校正项和误差定位多项式来计算第n次迭代的误差定位多项式。
    • 7. 发明申请
    • ORGANIC LIGHT EMITTING DISPLAY DEVICE INCLUDING A REDUNDANT ELEMENT FOR A TEST GATE LINE
    • 有机发光显示装置,包括测试门线的冗余元件
    • US20140167769A1
    • 2014-06-19
    • US13960115
    • 2013-08-06
    • Young-Kwang KIMHyun-Uk OH
    • Young-Kwang KIMHyun-Uk OH
    • G01R31/44
    • G09G3/3208G09G3/006G09G2300/0426G09G2330/04
    • An organic light emitting display device according to example embodiments includes a display unit, a test data line to which a test data voltage is applied during a sheet unit test, a test gate line to which a first voltage is applied during the sheet unit test and to which a second voltage is applied during a normal operation of the organic light emitting display device, a plurality of test transistors configured to selectively couple the test data line to a plurality of data lines in the display unit in accordance with a voltage provided by the test gate line, and at least one redundant element configured to maintain the test gate line at the second voltage during the normal operation even if the test gate line is damaged.
    • 根据示例实施例的有机发光显示装置包括显示单元,在片单元测试期间施加测试数据电压的测试数据线,在片单元测试期间施加第一电压的测试栅极线,以及 在有机发光显示装置的正常操作期间施加第二电压的多个测试晶体管被配置为根据由所述有机发光显示装置提供的电压选择性地将测试数据线耦合到所述显示单元中的多条数据线 测试栅极线以及至少一个冗余元件,其被配置为在正常操作期间将测试栅极线保持在第二电压,即使测试栅极线被损坏。
    • 8. 发明申请
    • BIODEGRADABLE RESIN COMPOSITION, AND DRAINING BOARD CORE MATERIAL AND DRAINING BOARD PRODUCED THEREFROM
    • 可生物降解树脂组合物,排水板核心材料和排水板生产
    • US20140134380A1
    • 2014-05-15
    • US14232369
    • 2012-08-22
    • Yoon Mo YoonKwan Young ChoUk OhJong Pil ChunKi Chull YunYong Dae Park
    • Yoon Mo YoonKwan Young ChoUk OhJong Pil ChunKi Chull YunYong Dae Park
    • C08L67/02
    • C08L67/02C08K3/26C08K2003/265C08L23/02C08L23/04C08L23/06C08L23/10C08L23/12C08L83/04C08L101/16Y10T428/23
    • A biodegradable resin composition is provided. More particularly, a biodegradable resin composition for a core of a drain board, which has excellent extrusion productivity and thus improves productivity by improving physical properties, for example, reducing contractibility and elasticity recovery, according to original characteristics of a biodegradable resin without degradation in biodegrability of the biodegradable resin by mixing the biodegradable resin with an additional material for improving processibility in suitable amounts, a core of a drain board using the same, and a method of manufacturing a drain board.The biodegradable resin composition is prepared by mixing 5 to 60 parts by weight of calcium carbonate, 1 to 10 parts by weight of a thermoplastic resin, and 0.1 to 5 parts by weight of a lubricant with respect to 100 parts by weight of a biodegradable polymer compound, or mixing 1 to 5 parts by weight of the additives, which are fowled in a pellet state to have 60 to 90 parts by weight of calcium carbonate, 5 to 15 parts by weight of a thermoplastic resin, and 1 to 5 parts by weight of a lubricant, with respect to 100 parts by weight of a biodegradable polymer compound.
    • 提供可生物降解的树脂组合物。 更具体地,涉及一种用于排水板芯的可生物降解的树脂组合物,其具有优异的挤出生产率,并且通过根据生物可降解树脂的原始特性改善物理性能,例如降低收缩性和弹性回复而提高生产率,而不降低生物降解性 通过将可生物降解树脂与另外的材料混合以提高合适量的加工性,使用该可生物降解树脂的排水板的芯和制造排水板的方法。 可生物降解的树脂组合物通过混合5〜60重量份的碳酸钙,1〜10重量份的热塑性树脂和0.1〜5重量份的润滑剂,相对于100重量份的生物可降解聚合物 化合物,或将1〜5重量份添加剂混合,以颗粒状摇匀,使碳酸钙为60〜90重量份,热塑性树脂为5〜15重量份,热塑性树脂为1〜5重量份 相对于100重量份的可生物降解的聚合物化合物,润滑剂的重量。
    • 9. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE AND MANUFACTURING METHOD THEREOF
    • 液晶显示装置及其制造方法
    • US20120188151A1
    • 2012-07-26
    • US13168696
    • 2011-06-24
    • Hyun-Uk OH
    • Hyun-Uk OH
    • G09G3/36H01L33/50
    • G02F1/133512G02F1/1337G02F1/1339G02F2001/133388
    • Provided are a liquid crystal display device and a method of manufacturing the same. The liquid crystal display device includes opposing first and second substrates, the first and second substrates including a display area for displaying an image and a non-display area surrounding the display area, a first black matrix disposed in the non-display area on the first substrate, a first insulation layer disposed on the second substrate, first and second alignment layers disposed on at least one of the first black matrix and the first insulation layer, the first and second alignment layers extending from the display area toward the non-display area, and a seal pattern disposed on the first insulation layer in the non-display area. The seal pattern is spaced apart from at least one of the first and second alignment layers.
    • 提供一种液晶显示装置及其制造方法。 液晶显示装置包括相对的第一和第二基板,第一和第二基板包括用于显示图像的显示区域和围绕显示区域的非显示区域,第一黑矩阵设置在第一和第二基板上的非显示区域中 基板,设置在第二基板上的第一绝缘层,设置在第一黑矩阵和第一绝缘层中的至少一个上的第一和第二对准层,第一和第二对准层从显示区域延伸到非显示区域 以及设置在非显示区域中的第一绝缘层上的密封图案。 密封图案与第一和第二对准层中的至少一个间隔开。
    • 10. 发明申请
    • METHOD FOR DETECTING MEMORY ERROR
    • 检测存储器错误的方法
    • US20110173505A1
    • 2011-07-14
    • US13053763
    • 2011-03-22
    • Hyun Seop BaeGwang Sik YoonSeung Uk Oh
    • Hyun Seop BaeGwang Sik YoonSeung Uk Oh
    • G06F11/07
    • G06F11/0751G11C29/44G11C29/76G11C2029/0409
    • A method for easily detecting a memory error that may occur when a memory is accessed or an allocated memory is freed in the process of developing software is disclosed. The memory error detecting method includes: (a) generating an original block indication variable for indicating a starting memory block of a memory region allocated with respect to a variable included in a computer program; (b) detecting a memory error that may occur when the allocated memory region is accessed, by performing a certain operation (computing or arithmetic operation), before the allocated memory region is accessed, using a target block indication variable indicating memory block to be accessed in the allocated memory region and/or the original block indication variable; and (c) outputting information about a detected memory error.
    • 公开了一种容易地检测在开发存储器时可能发生的存储器错误或在开发软件的过程中释放分配的存储器的方法。 存储器错误检测方法包括:(a)生成用于指示相对于包括在计算机程序中的变量分配的存储器区域的起始存储器块的原始块指示变量; (b)使用指示要访问的存储块的目标块指示变量,在分配的存储器区域被访问之前,通过执行某个操作(计算或算术运算)来检测在分配的存储器区域被访问时可能发生的存储器错误 在分配的存储器区域和/或原始块指示变量中; 和(c)输出关于检测到的存储器错误的信息。