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    • 6. 发明申请
    • METHOD OF FABRICATING ARRAY SUBSTRATE
    • 方法制作阵列基板
    • US20110124162A1
    • 2011-05-26
    • US12843738
    • 2010-07-26
    • Hong-Koo LEESung-Ki KIMJun-Hyeon BAEKi-Tae KIM
    • Hong-Koo LEESung-Ki KIMJun-Hyeon BAEKi-Tae KIM
    • H01L21/336
    • H01L21/268H01L27/1248H01L27/1285
    • A method of fabricating an array substrate includes forming a gate line and a gate electrode; forming a gate insulating layer, an intrinsic amorphous silicon layer, an inorganic material insulating layer and a heat transfer layer on the gate line and the gate electrode; irradiating a laser beam onto the heat transfer layer to crystallize the intrinsic amorphous silicon layer into a polycrystalline silicon layer; removing the heat transfer layer; patterning the inorganic insulating material layer using a buffered oxide etchant to form an etch-stopper corresponding to the gate electrode forming an impurity-doped amorphous silicon layer and a metal layer on the etch-stopper and the polycrystalline silicon layer; patterning the metal layer to form a data line, a source electrode and a drain electrode and forming a pixel electrode on the passivation layer.
    • 制造阵列基板的方法包括形成栅极线和栅电极; 在栅极线和栅电极上形成栅极绝缘层,本征非晶硅层,无机材料绝缘层和传热层; 将激光束照射到传热层上以将本征非晶硅层结晶成多晶硅层; 去除传热层; 使用缓冲的氧化物蚀刻剂来形成无机绝缘材料层,以形成对应于栅电极的蚀刻停止层,在蚀刻停止层和多晶硅层上形成杂质掺杂的非晶硅层和金属层; 图案化金属层以形成数据线,源电极和漏电极,并在钝化层上形成像素电极。
    • 7. 发明授权
    • Array substrate for flat display device and method for fabricating the same
    • 平板显示装置用阵列基板及其制造方法
    • US07785992B2
    • 2010-08-31
    • US12314510
    • 2008-12-11
    • Sung Ki KimHong Koo Lee
    • Sung Ki KimHong Koo Lee
    • H01L21/20
    • H01L27/1288H01L27/1214H01L29/04H01L29/78696
    • The present invention relates to an array substrate for a flat display device and a method for fabricating the same, in which a number of masks is reduced for reducing a cost and improving a device performance. The array substrate includes a gate electrode formed on an insulating substrate, a gate insulating film formed on an entire surface of the insulating substrate including the gate electrode, an active layer formed on the gate insulating film opposite to the gate electrode having a stack of a polysilicon layer and an amorphous silicon layer each having a width greater than the gate electrode, a source electrode and a drain electrode separated from each other at a portion of the active layer and formed over the active layer with an ohmic contact layer disposed therebetween, an interlayer insulating film formed on an entire surface of the insulating substrate having a contact hole to expose a predetermined portion of the drain electrode, and a pixel electrode connected to the drain electrode through the contact hole.
    • 本发明涉及一种用于平板显示装置的阵列基板及其制造方法,其中减少了许多掩模以降低成本并提高器件性能。 阵列基板包括形成在绝缘基板上的栅极电极,形成在包括栅电极的绝缘基板的整个表面上的栅极绝缘膜,形成在与栅电极相对的栅极绝缘膜上的有源层, 多晶硅层和非晶硅层,其各自具有大于栅电极的宽度,源电极和漏电极在有源层的一部分彼此分离并且在有源层上形成有在其间设置的欧姆接触层, 层间绝缘膜,形成在具有接触孔的绝缘基板的整个表面上,以暴露出漏电极的预定部分,以及通过接触孔连接到漏电极的像素电极。
    • 8. 发明授权
    • Organic electroluminescence display device
    • 有机电致发光显示装置
    • US07663579B2
    • 2010-02-16
    • US11647175
    • 2006-12-29
    • Sang-Hoon JungSung-Ki Kim
    • Sang-Hoon JungSung-Ki Kim
    • G09G3/30
    • G09G3/325G09G2300/0465G09G2300/0842G09G2300/0852G09G2320/043
    • An electroluminescence display device includes a first switching device for transferring a data current, which represents a data signal, using a first scan signal, a second switching device for transferring the data current from the first switching device using a second scan signal, a storage device for storing a charge voltage according to the data current transferred from the second switching device, a coupling unit for changing the charge voltage stored in the storage device in accordance with the first scan signal into a changed voltage, driving devices for generating a driving current in accordance with the changed voltage, and an organic light emitting diode for emitting light in accordance with the driving current.
    • 电致发光显示装置包括:第一开关装置,用于使用第一扫描信号传送表示数据信号的数据电流;第二开关装置,用于使用第二扫描信号从第一开关装置传送数据电流;存储装置 用于根据从第二开关装置传送的数据电流来存储充电电压;耦合单元,用于根据第一扫描信号将存储在存储装置中的充电电压改变为改变的电压,用于产生驱动电流的驱动装置 根据改变的电压,以及用于根据驱动电流发光的有机发光二极管。
    • 9. 发明申请
    • SPRING ACTIVATED ENERGY TRANSDUCER GENERATING A/C ELECTRICITY FROM NATURAL FORCES-FRICTIONLESS MAGNETIC PLATE
    • 弹簧激活能量传感器从自然力 - 无摩擦磁板生成空调电力
    • US20070278799A1
    • 2007-12-06
    • US11442200
    • 2006-05-30
    • Hyun Bong KimYong Ja KimMichelle LeeSung Ki KimJung Ki Kim
    • Hyun Bong KimYong Ja KimMichelle LeeSung Ki KimJung Ki Kim
    • F02B63/04
    • F03G7/00H02K7/1853H02K53/00
    • A spring activated energy transducer is provided. The energy transducer of the current invention generates alternating current (A/C) electricity from abundant external natural forces. The energy transducer is comprised of an upper part and a lower part. The upper part is comprised of a housing, a helix metal spring, a first circular board, a second circular board, pluralities of permanent magnets embedded to the second circular board, a third circular board with pluralities of permanent magnets facing the permanent magnets embedded in the second circular board with same magnetic pole, an upper metal shaft welded to the third circular board, four arc-shaped springs welded to the third circular board, and four wheel sets rotatably attached to one end of the spring. The lower part is comprised of a housing, a lower metal shaft, a fourth circular board placed on the upper end of the lower part, bundles of electric wire, pluralities of permanent magnets, and a fifth circular board placed at the lower end of the lower part. As the helix metal spring is compressed by an external force, the bundle of electric wire turns between permanent magnets to produce electricity. Direction of the electricity alternates as the helix metal spring oscillates.
    • 提供弹簧激活的能量换能器。 本发明的能量换能器从丰富的外部自然力产生交流(A / C)电。 能量传感器由上部和下部组成。 上部由壳体,螺旋金属弹簧,第一圆形板,第二圆形板,嵌入第二圆形板的多个永磁体构成,具有多个永磁体的第三圆形板,永久磁铁面向永久磁铁嵌入 具有相同磁极的第二圆板,焊接到第三圆形板的上金属轴,焊接到第三圆形板的四个弧形弹簧,以及可旋转地附接到弹簧的一端的四个轮组。 下部包括壳体,下部金属轴,放置在下部的上端的第四圆形板,电线束,多个永久磁铁,以及放置在下侧的第五圆形板 较低的部分。 当螺旋金属弹簧被外力压缩时,电线束在永磁体之间转动以产生电力。 随着螺旋金属弹簧振荡,电的方向交替。