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    • 13. 发明授权
    • Method of fabricating capacitive touch-screen panel
    • 制造电容式触摸屏面板的方法
    • US09360969B2
    • 2016-06-07
    • US12747393
    • 2009-09-25
    • Yong Hoon Lee
    • Yong Hoon Lee
    • H05K3/02G06F3/044
    • G06F3/044G06F2203/04103Y10T29/49155
    • Provided is a method of fabricating a capacitive touch-screen panel. The method includes preparing first and second substrates having first lateral surfaces on which first and second transparent conductive layers for forming first and second transparent electrode pattern units are disposed. Each of the first and second substrates has a screen region and an inactive region. Second lateral surfaces of the first and second substrates are bonded to each other by an interlayer adhesive. First and second metal layers for forming first and second outer electrode interconnections are disposed on exposed surfaces of the first and second transparent conductive layers, respectively. Double-side exposure and etching processes are performed to form the first transparent electrode pattern unit and the first outer electrode interconnection on the screen region and the inactive region of the first lateral surface of the first substrate, respectively, and simultaneously, form the second transparent electrode pattern unit and the second outer electrode interconnection on the screen region and the inactive region of the first lateral surface of the second substrate, respectively. The first and second outer electrode interconnections are electrically connected to the first and second transparent electrode pattern units, respectively. The method can efficiently reduce the fabrication cost of a touch screen and greatly simplify the fabrication process of the touch-screen panel.
    • 提供一种制造电容式触摸屏面板的方法。 该方法包括制备具有第一侧表面的第一和第二基底,其上设置用于形成第一和第二透明电极图案单元的第一和第二透明导电层。 第一和第二基板中的每一个具有屏幕区域和非活动区域。 第一和第二基板的第二侧表面通过层间粘合剂彼此粘合。 用于形成第一和第二外部电极互连的第一和第二金属层分别设置在第一和第二透明导电层的暴露表面上。 执行双面曝光和蚀刻处理,以分别在第一基板的屏幕区域和第一侧表面的非活动区域上分别形成第一透明电极图案单元和第一外部电极互连,并且同时形成第二透明电极图案单元 电极图案单元和第二外部电极互连,分别在第二基板的第一侧面的屏幕区域和非活动区域上。 第一和第二外部电极互连分别电连接到第一和第二透明电极图案单元。 该方法可以有效地降低触摸屏的制造成本,并且大大简化了触摸屏面板的制造过程。
    • 14. 发明申请
    • BIODEGRADABLE POLYMER MICROPARTICLES AND PREPARATION METHOD THEREOF
    • 生物可降解聚合物微生物及其制备方法
    • US20110245456A1
    • 2011-10-06
    • US13158798
    • 2011-06-13
    • Gun Poong KimYong Hoon LeeKun Pil Lee
    • Gun Poong KimYong Hoon LeeKun Pil Lee
    • C08G63/06B29B9/12
    • C08F6/00B29B9/12B29B2009/125C08G63/06C08J3/122C08J3/14C08J2367/04Y10T428/2989
    • The present invention relates to a preparation method for a biodegradable polymer microparticle and a microparticle prepared by the method. More particularly, the present invention relates to a method for preparing a polymer microparticle, wherein the method includes the steps of: dissolving a biodegradable polyester-based polymer in DMSO (Dimethyl Sulfoxide); spraying the solution in a low temperature hydrocarbon solution to provide a frozen DMSO microparticle; adding the microparticle in a low temperature salt aqueous solution to dissolve DMSO; and removing salt. The present invention provides a method for preparing a novel polymer microsphere which can be injected through a syringe due to excellent physical properties (such as biocompatibility, biodegradability, porosity, mechanical strength) and the microcarrier's size-adjustability, and can be easily mass-produced. The microparticle prepared by the method of the present invention may have variable sizes with biodegradability and biocompatibility, and thus can be used as a carrier for regeneration of a damaged cell or tissue by being injected into a body through a syringe.
    • 本发明涉及通过该方法制备的生物可降解聚合物微粒和微粒的制备方法。 更具体地说,本发明涉及一种制备聚合物微粒的方法,其中该方法包括以下步骤:将可生物降解的聚酯类聚合物溶于DMSO(二甲基亚砜)中; 将溶液喷洒在低温烃溶液中以提供冷冻的DMSO微粒; 将微粒加入低温盐水溶液中以溶解DMSO; 并去除盐。 本发明提供一种制备新型聚合物微球体的方法,该方法由于物理性能(生物相容性,生物降解性,孔隙率,机械强度)和微载体尺寸可调性等优异的物理性能而能够通过注射器注射,并且可以容易地批量生产 。 通过本发明的方法制备的微粒可以具有可生物降解性和生物相容性的可变大小,因此可以通过注射器注入体内作为受损细胞或组织再生的载体。
    • 17. 再颁专利
    • Method for adaptively allocating resources in communication system
    • 通信系统中自适应分配资源的方法
    • USRE44352E1
    • 2013-07-09
    • US12783639
    • 2010-05-20
    • Yong Hoon LeeInhyoung Kim
    • Yong Hoon LeeInhyoung Kim
    • H04L27/28
    • H04L27/2608H04L1/0003H04L1/0026
    • A method for adaptively allocating resource can be simply implemented for reducing degradation of performance by effectively separating operations of sub-channel and time slot allocation and selection of modulation method and sequentially processing each of operations. A method for adaptively allocating resource in a communication system to sequentially process sub-carrier/time slot allocation and modulation method selection efficiently includes the step of a) computing average channel gains of sub-carriers/time slots for each user by using channel gains of sub-carriers/time slots for each user; b) computing average numbers of bits for each user by using required data rates and average channel gains of sub-carriers/time slots for each user; c) computing the number of sub-carriers/time slots allocated to each user and allocating the sub-carriers/time slots to each user; and d) selecting a modulation method with respect to each sub-carrier/time slot.
    • 可以简单地实现用于自适应地分配资源的方法,以通过有效地分离子信道和时隙分配的操作以及调制方法的选择并顺序地处理每个操作来降低性能的降级。 一种用于在通信系统中自适应地分配资源以顺序地处理子载波/时隙分配和调制方法选择的方法包括以下步骤:a)通过使用信道增益来计算每个用户的子载波/时隙的平均信道增益 每个用户的子载波/时隙; b)通过使用每个用户的所需数据速率和子载波/时隙的平均信道增益来计算每个用户的平均比特数; c)计算分配给每个用户的子载波/时隙的数量,并向每个用户分配子载波/时隙; 以及d)选择关于每个子载波/时隙的调制方法。
    • 18. 发明申请
    • Method of Fabricating Capacitive Touch-Screen Panel
    • 制造电容式触摸屏面板的方法
    • US20110099805A1
    • 2011-05-05
    • US12747393
    • 2009-09-25
    • Yong Hoon Lee
    • Yong Hoon Lee
    • H05K3/10
    • G06F3/044G06F2203/04103Y10T29/49155
    • Provided is a method of fabricating a capacitive touch-screen panel. The method includes preparing first and second substrates having first lateral surfaces on which first and second transparent conductive layers for forming first and second transparent electrode pattern units are disposed. Each of the first and second substrates has a screen region and an inactive region. Second lateral surfaces of the first and second substrates are bonded to each other by an interlayer adhesive. First and second metal layers for forming first and second outer electrode interconnections are disposed on exposed surfaces of the first and second transparent conductive layers, respectively. Double-side exposure and etching processes are performed to form the first transparent electrode pattern unit and the first outer electrode interconnection on the screen region and the inactive region of the first lateral surface of the first substrate, respectively, and simultaneously, form the second transparent electrode pattern unit and the second outer electrode interconnection on the screen region and the inactive region of the first lateral surface of the second substrate, respectively. The first and second outer electrode interconnections are electrically connected to the first and second transparent electrode pattern units, respectively. The method can efficiently reduce the fabrication cost of a touch screen and greatly simplify the fabrication process of the touch-screen panel.
    • 提供一种制造电容式触摸屏面板的方法。 该方法包括制备具有第一侧表面的第一和第二基底,其上设置用于形成第一和第二透明电极图案单元的第一和第二透明导电层。 第一和第二基板中的每一个具有屏幕区域和非活动区域。 第一和第二基板的第二侧表面通过层间粘合剂彼此粘合。 用于形成第一和第二外部电极互连的第一和第二金属层分别设置在第一和第二透明导电层的暴露表面上。 执行双面曝光和蚀刻处理,以分别在第一基板的屏幕区域和第一侧表面的非活动区域上分别形成第一透明电极图案单元和第一外部电极互连,并且同时形成第二透明电极图案单元 电极图案单元和第二外部电极互连,分别在第二基板的第一侧面的屏幕区域和非活动区域上。 第一和第二外部电极互连分别电连接到第一和第二透明电极图案单元。 该方法可以有效地降低触摸屏的制造成本,并且大大简化了触摸屏面板的制造过程。