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    • 23. 发明申请
    • Method of growing semi-insulating GaN layer
    • 生长半绝缘GaN层的方法
    • US20060003556A1
    • 2006-01-05
    • US10965263
    • 2004-10-15
    • Jae LeeJung Lee
    • Jae LeeJung Lee
    • H01L21/20
    • H01L21/0262H01L21/0242H01L21/02458H01L21/02494H01L21/0254
    • Disclosed herein is a method for growing a semi-insulating GaN layer with high sheet resistance by controlling the size of grains through changes in growth temperature at the initial growth stage of the layer, without doping of dopants. The method comprises the steps of growing a buffer layer on a substrate at a first growth temperature, growing a GaN layer on the buffer layer at a second growth temperature higher than the first growth temperature for a first growth time (a first growth step), growing the GaN layer at increasing temperatures from the second growth temperature to a third growth temperature higher than the second growth temperature for a second growth time (a second growth step), and growing the GaN layer at the third growth temperature for a third growth time (a third growth step).
    • 本文公开了一种通过在层的初始生长阶段通过生长温度的变化控制晶粒尺寸而不掺杂掺杂剂来生长具有高薄层电阻的半绝缘GaN层的方法。 该方法包括以下步骤:在第一生长温度下在衬底上生长缓冲层,在高于第一生长温度的第二生长温度下在缓冲层上生长第一生长时间(第一生长步骤)的GaN层, 在第二生长时间(第二生长步骤)中将GaN层从第二生长温度升高至高于第二生长温度的第三生长温度(第二生长步骤),并将GaN层在第三生长温度下生长第三生长时间 (第三个增长步骤)。
    • 24. 发明申请
    • Shelf display device
    • 货架显示装置
    • US20050224437A1
    • 2005-10-13
    • US10821762
    • 2004-04-09
    • Jung Lee
    • Jung Lee
    • A47F5/00
    • A47F5/005
    • A shelf device for displaying miscellaneous items partitioned in an organized manner. The device comprising a board of a predetermined material having a top surface, bottom surface, a rear end, a front edge, rear edge, and a pair of side edges. A ridge extending upward from along the front edge of the board. A predetermined number of dividers slideably placed on the top surface of the board to move laterally in a side to side manner. Each divider having a front hook member formed on the front end hooking onto the ridge and a rear hook member formed on the rear end of each divider hooking onto the rear end of the board.
    • 用于显示以有组织的方式分隔的杂项的货架装置。 该装置包括具有顶表面,底表面,后端,前边缘,后边缘和一对侧边缘的预定材料的板。 沿着板的前边缘向上延伸的脊。 预定数量的分隔件可滑动地放置在板的顶表面上以侧向方式横向移动。 每个分隔器具有形成在前端上的前钩构件钩在脊上,并且形成在每个分隔件的后端上的后钩构件钩在板的后端上。
    • 26. 发明申请
    • Modular jack having connecting cap
    • 具有连接盖的模块插座
    • US20050170682A1
    • 2005-08-04
    • US10770720
    • 2004-02-03
    • Jung KimJung LeeHye Kim
    • Jung KimJung LeeHye Kim
    • H01R4/24
    • H01R4/2433H01R24/62
    • The present invention discloses a modular jack for connecting a modular plug, and more particularly, a modular jack with a connection cap which comprises: a plurality of IDC terminals electrically connected to a printed circuit board; a back cover provided with a plurality of penetration grooves so as to support the IDC terminals; and a connection cap for pressurizing and connecting wires to connection slits of the IDC terminals penetrated through penetration grooves of the back covers and protruded outward, the connection cap being provided with terminal insertion grooves for inserting the plurality of IDC terminals and a plurality of wire insertion grooves for coupling wires, the back cover and the connection cap being detachably coupled to a housing. Thus, by inserting wires of a communication line to the wire insertion grooves of the connection cap and then making them close to the rear side of the back cover and coupling them thereto, the wires can be connected to the IDC terminals without any particular working tool.
    • 本发明公开了一种用于连接模块化插头的模块化插座,更具体地说,具有连接帽的模块插座,其包括:电连接到印刷电路板的多个IDC端子; 后盖,其设置有多个贯穿槽,以便支撑IDC端子; 以及用于将导线加压和连接到IDC端子的连接狭缝的连接帽,其穿过后盖的穿过槽并向外突出,连接帽设置有用于插入多个IDC端子的端子插入槽和多个线插入 用于连接线的槽,后盖和连接帽可拆卸地联接到壳体。 因此,通过将通信线路的线插入到连接帽的线插入槽中,然后使它们靠近后盖的后侧并将其耦合到其上,线可以连接到IDC端子而没有任何特定的工作工具 。
    • 29. 发明申请
    • Method for manufacturing a non-volatile memory device
    • 用于制造非易失性存储器件的方法
    • US20050090059A1
    • 2005-04-28
    • US10968200
    • 2004-10-19
    • Jung LeeSeo Chi
    • Jung LeeSeo Chi
    • H01L27/10H01L21/8247H01L27/105H01L27/115H01L29/423H01L29/788H01L29/792H01L21/336
    • H01L27/11526H01L27/105H01L27/11534H01L29/42336
    • A method for manufacturing a non-volatile memory device which can increase the coupling ratio and can avoid affecting the height of a control gate by forming a trench in a cell region and forming a floating gate in a concave shape in the trench is disclosed. The method comprises: forming a first trench having a first depth on a silicon substrate of a peripheral circuit region, burying the same with a buried oxide film and planarizing the same; forming a second trench having a second depth on the silicon substrate of the cell region; carrying out channel ion implantation to the cell region, forming a tunnel oxide film in the second trench and depositing a floating gate material; forming a floating gate by etching the floating gate material; forming a source/drain junction in the cell region; forming wells in the peripheral circuit and cell regions and depositing a dielectric film; depositing a gate material while leaving the dielectric film only in the channel portion of the cell region; and forming a gate in the peripheral circuit region and a control gate in the cell region by etching the gate material.
    • 公开了一种用于制造可以增加耦合比率并且可以避免通过在单元区域中形成沟槽并且在沟槽中形成凹形形状的浮动栅极来影响控制栅极的高度的方法。 该方法包括:在外围电路区的硅衬底上形成具有第一深度的第一沟槽,将掩埋氧化膜埋入其中并使其平坦化; 在所述电池区的硅衬底上形成具有第二深度的第二沟槽; 对所述单元区进行沟道离子注入,在所述第二沟槽中形成隧道氧化膜,并沉积浮栅材料; 通过蚀刻浮栅材料形成浮栅; 在所述电池区域中形成源极/漏极结; 在外围电路和电池区中形成阱并沉积介电膜; 沉积栅极材料,同时仅在电池区的沟道部分留下电介质膜; 以及通过蚀刻栅极材料在外围电路区域和单元区域中的控制栅极形成栅极。
    • 30. 发明申请
    • Electro-luminescence display device and method of fabricating the same
    • 电致发光显示装置及其制造方法
    • US20050057146A1
    • 2005-03-17
    • US10901226
    • 2004-07-29
    • Jung LeeHyo Bae
    • Jung LeeHyo Bae
    • H05B33/10H01L27/32H05B33/00
    • H01L27/3288H01L27/3223
    • An electro-luminescence display device and a method of fabricating the same capable of saving working hours needed to fabricate the electro-luminescence display device and preventing a waste of materials to improve a production yield of the electro-luminescence display device are disclosed. An electro-luminescence display device includes: a connection film being connected a driving circuit; a pad connected to the connection film in order to supply a driving signal from the driving circuit to a signal line formed on a substrate; a conductive film for connecting the connection film to the pad; and a plurality of dummy pads, each dummy pad including a transparent conductive layer, wherein at least one of the dummy pads is formed to expose the transparent conductive layer in order to test an adhesive level of the connection film and the pad by the conductive film.
    • 公开了一种电致发光显示装置及其制造方法,其能够节省制造电致发光显示装置所需的工作时间并防止材料的浪费,从而提高电致发光显示装置的产量。 电致发光显示装置包括:连接薄膜,其连接有驱动电路; 连接到连接膜的焊盘,以便将驱动电路的驱动信号提供给形成在基板上的信号线; 用于将连接膜连接到垫的导电膜; 以及多个虚拟焊盘,每个虚设焊盘包括透明导电层,其中形成至少一个虚拟焊盘以暴露透明导电层,以便通过导电膜测试连接膜和焊盘的粘合度 。