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    • 3. 发明授权
    • Patterning method of metal oxide thin film using nanoimprinting, and manufacturing method of light emitting diode
    • 使用纳米压印的金属氧化物薄膜的图案化方法和发光二极管的制造方法
    • US08486753B2
    • 2013-07-16
    • US12698194
    • 2010-02-02
    • Hyeong Ho ParkJun Ho JeongKi Don KimDae Geun ChoiJun Hyuk ChoiJi Hye LeeSoon Won Lee
    • Hyeong Ho ParkJun Ho JeongKi Don KimDae Geun ChoiJun Hyuk ChoiJi Hye LeeSoon Won Lee
    • H01L21/00
    • H01L33/42H01L2924/0002H01L2933/0016Y10T428/24802H01L2924/00
    • Disclosed are a patterning method of a metal oxide thin film using nanoimprinting, and a manufacturing method of a light emitting diode (LED). The method for forming a metal oxide thin film pattern using nanoimprinting includes: coating a photosensitive metal-organic material precursor solution on a substrate; preparing a mold patterned to have a protrusion and depression structure; pressurizing the photosensitive metal-organic material precursor coating layer with the patterned mold; forming a cured metal oxide thin film pattern by heating the pressurized photosensitive metal-organic material precursor coating layer or by irradiating ultraviolet rays to the pressurized photosensitive metal-organic material precursor coating layer while being heated; and removing the patterned mold from the metal oxide thin film pattern, and selectively further includes annealing the metal oxide thin film pattern. Within this, there is provided a method for forming a metal dioxe thin film pattern using nano imprinting, which makes it possible to simplify the process for forming the pattern since the process of separately applying the ultraviolet resin to be used as the resist can be omitted, and forms a micro/nano composite pattern through a single imprint process.
    • 公开了使用纳米压印的金属氧化物薄膜的图案化方法和发光二极管(LED)的制造方法。 使用纳米压印形成金属氧化物薄膜图案的方法包括:将光敏金属 - 有机材料前体溶液涂覆在基底上; 制备图案化的具有突起和凹陷结构的模具; 用图案化的模具对感光金属 - 有机材料前体涂层进行加压; 通过加热加压的感光金属 - 有机材料前体涂层或通过在被加热时向加压的感光金属 - 有机材料前体涂层照射紫外线来形成固化的金属氧化物薄膜图案; 并且从金属氧化物薄膜图案移除图案化的模具,并且还包括退火金属氧化物薄膜图案。 其中,提供了使用纳米压印形成金属二氧化物薄膜图案的方法,由于可以省略分离施加用作抗蚀剂的紫外线树脂的工艺,所以可以简化形成图案的工艺 ,并通过单个压印工艺形成微/纳复合图案。
    • 5. 发明授权
    • Claw-pole permanent magnet stepping motor
    • 爪极永磁步进电机
    • US07205697B2
    • 2007-04-17
    • US11337482
    • 2006-01-24
    • Se Hyun RhyuIn Soung JungJin HurHa Gyeong SungJung Moo SeoJun Hyuk ChoiJoo Han Kim
    • Se Hyun RhyuIn Soung JungJin HurHa Gyeong SungJung Moo SeoJun Hyuk ChoiJoo Han Kim
    • H02K1/12
    • H02K37/14H02K1/145
    • A claw-pole PM stepping motor includes a module that is formed in such a manner that a first driving unit and a second driving unit are symmetrically arranged with respect to a first claw-pole and a second claw-pole each oppositely disposed at a main yoke member internally disposed to substantially divide an inside of a housing, an inner portion of which is rotatably inserted and supported by a rotary shaft, and the first driving unit and the second driving unit have magnet rotors coaxially arranged to generate electromagnetic force; sub-yoke members; and coil bobbins. The claw-pole PM stepping motor is exempted from a structure where coil bobbins are concentrically arranged at a periphery of magnet rotors, and instead the coil bobbins are coaxially arranged and shifted from each other from the corresponding magnet rotors, such that a miniaturized motor with a reduced outer diameter can be embodied.
    • 爪极PM步进电动机包括:模块,其形成为:第一驱动单元和第二驱动单元相对于第一爪极对称地布置,并且第二爪极各自相对设置在主体 轭部件,其内部设置成基本上分隔壳体的内部,其内部部分由旋转轴可旋转地插入和支撑,并且第一驱动单元和第二驱动单元具有同轴布置以产生电磁力的磁体转子; 分轭构件; 和线圈筒管。 爪极PM步进电机不需要在磁铁转子周围同心配置线圈架的结构,而是将线圈筒筒从相应的磁铁转子上同轴布置并相互偏移,从而使小型化电机具有 可以实现减小的外径。
    • 6. 发明授权
    • Lead frame unloading tool having sliding blocks
    • 带有滑块的引线架卸载工具
    • US5957654A
    • 1999-09-28
    • US764583
    • 1996-12-13
    • Jun Hyuk ChoiTai Kew ChoiJung Kun LeeJae Won Lee
    • Jun Hyuk ChoiTai Kew ChoiJung Kun LeeJae Won Lee
    • H01L21/50H01L21/677H01L21/68H01L21/683B66C1/00
    • H01L21/67721H01L21/67736H01L21/6838Y10S414/114
    • A lead frame unloading apparatus includes a pair of opposing plate members, one of which has a long horizontal slit. The opposing plate members define a central space where one or more sliding blocks are located, each of the sliding blocks having a vertical through hole at its center. A picker penetrates through the vertical hole within each respective sliding block, each picker is immobilized when it contacts a lead frame for pickup thereby allowing the sliding block to move vertically up and down on the immobilized pickers, each of the pickers having a vacuum suction device at one end thereof, and a vacuum screw at the other end thereof. The vacuum screw has a hollow projection connected to a vacuum supplier. A spring is disposed beneath respective of the one or more sliding blocks, with the spring being fitted to an outside of the vacuum suction device. Spring stoppers support the springs and fastening devices fasten the one or more sliding blocks to the opposing plate members. The one or more sliding blocks are horizontally movable within the central space between the two opposing plate members by loosening the fastening devices.
    • 引线框卸载装置包括一对相对的板构件,其中一个具有长的水平狭缝。 相对的板构件限定了一个或多个滑动块所在的中心空间,每个滑块在其中心具有垂直通孔。 拾取器穿过每个相应的滑动块内的垂直孔,当接触引导框架进行拾取时,每个拾取器被固定,从而允许滑块在固定的拾取器上上下垂直地移动,每个拾取器具有一个真空抽吸装置 一端,另一端为真空螺丝。 真空螺杆具有连接到真空供应器的中空突起。 弹簧设置在一个或多个滑动块的相应的下方,弹簧装配到真空抽吸装置的外部。 弹簧止动器支撑弹簧和紧固装置将一个或多个滑动块紧固到相对的板构件。 一个或多个滑动块通过松开紧固装置在两个相对的板构件之间的中心空间内可水平移动。