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    • 108. 发明申请
    • Backlight unit and method of manufacturing a polarization film employed in the same
    • 背光单元及其制造方法
    • US20060262397A1
    • 2006-11-23
    • US11406246
    • 2006-04-19
    • Jung LeeSang LeeKang KimChang KimKab Hwang
    • Jung LeeSang LeeKang KimChang KimKab Hwang
    • G02B5/30
    • G02B5/3025G02F1/133528G02F2001/133548Y10S359/90
    • The present invention relates to a backlight unit having a polarization film for performing the function of a reflective polarization film. The backlight unit includes a light source, an optical film and a polarization film. The light source emits a light having a certain wavelength. The optical film is located proximate to the light source to transmit the light outputted from the light guiding plate in a certain direction. The polarization film is located proximate to the optical film. Here, the polarization film has a UV curing resin and lines disposed on the UV curing resin, and polarize the light transmitted from the optical film. The backlight unit manufactures the polarization film by using UV curing resin and metal substance, and thus the manufacture period of the polarization film may be reduced. Accordingly, the polarization film may be manufactured in great quantities.
    • 本发明涉及具有用于实现反射偏振膜功能的偏振膜的背光单元。 背光单元包括光源,光学膜和偏振膜。 光源发射具有一定波长的光。 光学膜位于光源附近,以沿着一定方向透射从导光板输出的光。 偏振膜位于光学膜附近。 这里,偏振膜具有UV固化树脂和设置在UV固化树脂上的线,并且使从光学膜透射的光偏振。 背光单元通过使用UV固化树脂和金属物质制造偏振膜,因此可以减小偏光膜的制造周期。 因此,可以大量地制造偏振膜。
    • 109. 发明申请
    • Blowing device
    • 吹风装置
    • US20060182628A1
    • 2006-08-17
    • US11332213
    • 2006-01-17
    • Wook KimJun BaeChang Kim
    • Wook KimJun BaeChang Kim
    • F04D29/44
    • F04D17/165F04D29/281F04D29/30F04D29/4253
    • Disclosed herein is a blowing device for small-sized electronic appliances such as cleaning apparatuses. The blowing device comprises a housing, a centrifugal impeller, a guide vane, and a motor for rotating the centrifugal impeller. The centrifugal impeller comprises a shroud, a hub, and a plurality of impeller blades which have an average diameter 87˜93% of a diameter of the housing. The shroud and the hub of the centrifugal impeller, and the guide vane are optimally designed with respect to a size of the housing or an average diameter of the impeller blades, maximizing fan efficiency and heat dissipation of the motor.
    • 这里公开了一种用于诸如清洁设备的小型电子设备的吹风装置。 吹风装置包括壳体,离心式叶轮,导向叶片和用于旋转离心式叶轮的马达。 离心式叶轮包括护罩,轮毂和多个叶片,叶片的平均直径为外壳直径的87〜93%。 离心式叶轮的护罩和轮毂以及导向叶片相对于壳体的尺寸或叶轮叶片的平均直径进行了最佳设计,使风扇的效率和电机的散热最大化。
    • 110. 发明申请
    • LED housing and fabrication method thereof
    • LED外壳及其制造方法
    • US20060180925A1
    • 2006-08-17
    • US11325327
    • 2006-01-05
    • Seon LeeBum JinKyung HanChang Kim
    • Seon LeeBum JinKyung HanChang Kim
    • H01L23/34
    • H01L33/642H01L33/486H01L33/62H01L33/647H01L2224/48091H01L2224/48247H01L2924/01019H01L2924/12041H01L2924/00014
    • The invention relates to an LED housing and its fabrication method. In the LED housing, a heat conducting part has a chip mounting area, a heat connecting area opposed to the chip mounting area and a groove formed adjacent to the heat connecting area. An electrical connecting part has a wiring area placed adjacent to the chip mounting area and an external power connecting area led to the wiring area. A housing body is made of molding resin, and integrally holds the heat conducting part and the electrical connecting part while isolating the electrical connecting part from the heat conducting part. The housing body is provided with a recess extended from a portion of the groove of the heat conducting part to a side of the housing body. In this fashion, the invention can overcome restricted application problems by isolating the electrical connecting parts from the heat conducting part.
    • 本发明涉及一种LED外壳及其制造方法。 在LED壳体中,导热部具有芯片安装区域,与芯片安装区域相对的热连接区域和与热连接区域相邻形成的槽。 电气连接部件具有与芯片安装区域相邻放置的布线区域和引导到布线区域的外部电源连接区域。 壳体由成型树脂制成,并且一体地保持导热部和电连接部,同时将电连接部与导热部隔离。 壳体设置有从导热部分的槽的一部分延伸到壳体的一侧的凹部。 以这种方式,本发明可以通过将电气连接部件与导热部分隔离来克服限制的应用问题。