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    • 34. 发明授权
    • Electrodeless lighting system
    • 无电极照明系统
    • US07276860B2
    • 2007-10-02
    • US10950463
    • 2004-09-28
    • Joon-Sik ChoiYong-Seog JeonByeong-Ju ParkHyun-Jung KimJi-Young LeeYun-Chul Jung
    • Joon-Sik ChoiYong-Seog JeonByeong-Ju ParkHyun-Jung KimJi-Young LeeYun-Chul Jung
    • H05B41/16
    • H01J65/044
    • An electrodeless lighting system includes: a resonator which is installed at an exit of a wave guide for guiding microwave generated from a magnetron and making light pass and microwave resonate therein; a bulb positioned in the resonator and having a luminous portion filled with a luminous material emitting light by the microwave energy and a shaft portion integrally extended from the luminous portion; a resonance control member disposed inside the resonator and having a height controlled according to a position of the luminous portion of the bulb and the entire length of the resonator so as to make optimum resonance of the microwave; and a reflector positioned around the resonator for reflecting light emitted from the bulb. Accordingly, the electrodeless lighting system can facilitate light distribution for achieving lateral lighting and a wider range of lighting and simultaneously improve lighting efficiency.
    • 无电极照明系统包括:谐振器,其安装在波导的出口处,用于引导从磁控管产生的微波并使光通过和微波谐振; 位于谐振器中的灯泡,具有填充有通过微波能量发光的发光体的发光部分和从发光部分整体延伸的轴部; 谐振控制构件,其设置在所述谐振器内部,并且具有根据所述灯泡的发光部分的位置和所述谐振器的整个长度的高度控制的高度,以使所述微波达到最佳谐振; 以及围绕所述谐振器定位的用于反射从所述灯泡发射的光的反射器。 因此,无电极照明系统可以促进用于实现侧向照明和更宽范围的照明的光分布并同时提高照明效率。
    • 35. 发明授权
    • Mobile terminal with hinge stylus and sub-inputting unit
    • 具有铰链触控笔和子输入单元的移动终端
    • US07181256B2
    • 2007-02-20
    • US10334562
    • 2002-12-31
    • Sang-Min HyunSeung-Min ParkJung-Hyeok ImJi-Young LeeIn-Gon PakSung-Kwon Kim
    • Sang-Min HyunSeung-Min ParkJung-Hyeok ImJi-Young LeeIn-Gon PakSung-Kwon Kim
    • H04M1/03
    • H04M1/0216H04N2007/145
    • Disclosed is a mobile terminal having a hinge stylus and an sub-inputting unit. The terminal comprises: (a) a first housing having a first rim portion disposed along an edge and a first receiving portion disposed for a predetermined length in the first rim portion; (b) a hinge stylus detachably attached to the first receiving portion of the first rim portion; (c) a second housing having a second rim portion disposed along an edge and a second receiving portion disposed in the second rim portion for detachably receiving the hinge stylus; and (d) a dual hinge having with one being received in the first receiving portion and the other one being coupled to the second housing for connecting the first and second housings in a rotatable manner to provide two axes.
    • 公开了具有铰链触控笔和子输入单元的移动终端。 端子包括:(a)第一壳体,具有沿着边缘设置的第一边缘部分和在第一边缘部分中设置为预定长度的第一接收部分; (b)可拆卸地附接到第一边缘部分的第一接收部分的铰链触针; (c)具有沿着边缘设置的第二边缘部分的第二壳体和设置在所述第二边缘部分中的用于可拆卸地接收所述铰链触针的第二接收部分; 和(d)双铰链,其中一个被接收在第一接收部分中,另一个联接到第二壳体,用于以可旋转的方式连接第一和第二壳体以提供两个轴。
    • 39. 发明授权
    • Electrodeless lighting system
    • 无电极照明系统
    • US06774571B2
    • 2004-08-10
    • US10213148
    • 2002-08-07
    • Joon-Sik ChoiYong-Seog JeonHyo-Sik JeonHyun-Jung KimJi-Young LeeByeong-Ju Park
    • Joon-Sik ChoiYong-Seog JeonHyo-Sik JeonHyun-Jung KimJi-Young LeeByeong-Ju Park
    • F21V2900
    • H01J61/52H01J65/044
    • In an electrodeless lighting system having a cooling unit for cooling a radiator therein, the electrodeless lighting system includes a microwave generating unit for generating microwave energy; a light emitting unit connected to the microwave generating unit and emitting light by forming plasma by the microwave energy generated in the microwave generating unit; a housing having a first receiving space for receiving the microwave generating unit and sealed-combined with the light emitting unit; a heat exchanger installed at the outer surface of the microwave generating unit to absorb heat generated in the microwave generating unit; a radiator installed at the outer surface of the housing; and a heat transfer member at which one end is connected to the heat exchanger and the other end is connected to the radiator by penetrating the housing to transmit heat from the heat exchanger to the radiator.
    • 在具有用于冷却散热器的冷却单元的无电极照明系统中,无电极照明系统包括用于产生微波能量的微波产生单元; 连接到所述微波发生单元的发光单元,通过在微波发生单元中产生的微波能量形成等离子体来发光; 壳体,具有用于接收微波产生单元并与发光单元密封组合的第一接收空间; 安装在所述微波发生单元的外表面的热交换器,用于吸收微波发生单元中产生的热量; 安装在外壳外表面的散热器; 以及传热构件,其一端连接到热交换器,另一端通过穿透壳体而连接到散热器,以将热量从热交换器传递到散热器。
    • 40. 发明授权
    • Controlling an image on multi-synchronization mode display
    • 控制多同步模式显示中的图像
    • US06650321B1
    • 2003-11-18
    • US09086312
    • 1998-05-27
    • Ji-Young Lee
    • Ji-Young Lee
    • G09G500
    • G09G5/36G09G1/285G09G2320/06G09G2340/0407G09G2340/0464
    • Data for controlling the size of an image is stored in a memory when a multi-synchronization mode display is fabricated, and the image is automatically controlled using the stored data. A technique for controlling an image on the multi-synchronization display, includes: confirming if there is an input from a user for controlling the image; setting a variable range of a reference value determined when the display was fabricated, when it is confirmed that there is no input from the user; when the variable range is set, confirming if the user has operated an up-control/down-control key for controlling the image; and when it is confirmed that the user has operated the up-control/down-control key, increasing/decreasing data according to the up-control/down-control operation of the user.
    • 当制造多同步模式显示时,用于控制图像尺寸的数据被存储在存储器中,并且使用存储的数据自动控制图像。 一种用于控制多同步显示器上的图像的技术,包括:确定是否存在用于控制图像的用户的输入; 设置当制造显示时确定的参考值的可变范围,当确认没有来自用户的输入时; 当可变范围被设置时,确认用户是否已经操作用于控制图像的上控/下控键; 并且当确认用户已经操作了上控/下控键时,根据用户的上控/下控操作增加/减少数据。