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    • 2. 发明授权
    • Washing machine having suspension mounted motor
    • 具有悬挂安装电机的洗衣机
    • US09127397B2
    • 2015-09-08
    • US13143009
    • 2009-12-30
    • Suk Yun MoonIg Geun KwonDong Il Lee
    • Suk Yun MoonIg Geun KwonDong Il Lee
    • D06F37/22D06F37/20
    • D06F37/22D06F37/206
    • The present invention relates to a washing machine (100) including a cabinet (110) having a base (1.11), a tub (120) fixedly secured to an inside of the cabinet (110), a drum (130) rotatable provided in the tub (120), a rotation shaft (140) passed through the tub (120) from a rear of the drum (130), a bearing housing (150) connected to the rotation shaft (140), a suspension assembly (170) for buffering and supporting a structure connected to the bearing housing (150), a driving motor (181) provided to the suspension assembly (170) and a power transmission member (182) for transmission of the rotation force from the driving motor (181) to the rotation shaft (140), thereby permitting to increase a capacity of the washing machine (100) by changing the structure or the washing machine (100) and increase the rotation efficiency of the drum (130) by providing a driving structure which rotates the drum (130) and has an increased capacity by thus effects.
    • 本发明涉及一种洗衣机(100),其包括具有底座(1.11)的机柜(110),固定地固定在机壳(110)内部的桶(120) (120),从所述滚筒(130)的后部穿过所述桶(120)的旋转轴(140),连接到所述旋转轴(140)的轴承壳体(150),用于 缓冲和支撑连接到所述轴承壳体(150)的结构,设置到所述悬架组件(170)的驱动马达(181)和用于将所述驱动马达(181)的转动力传递到 旋转轴(140),从而允许通过改变结构或洗衣机(100)来增加洗衣机(100)的容量,并通过提供驱动结构来提高滚筒(130)的旋转效率,该驱动结构使 鼓(130),并且通过这样的效果具有增加的容量。
    • 3. 发明申请
    • LED DRIVING DEVICE AND METHOD FOR DRIVING AN LED BY USING SAME
    • LED驱动装置及其驱动方法
    • US20140062317A1
    • 2014-03-06
    • US14115766
    • 2012-05-04
    • Dong-Il Lee
    • Dong-Il Lee
    • H05B33/08
    • H05B33/0842H05B33/083H05B37/02
    • The present invention relates to an LED driving device and a method for driving an LED by using the same. According to one aspect of the present invention, an LED driving device includes: a light source unit including first to nth LED groups sequentially connected in series; and a driving control unit having first to nth input terminals respectively connected to output terminals of the first to nth LED groups for controlling each of first to nth input currents which are inputted to the first to nth input terminals through first to nth current sensing signals generated by reflecting the first to nth input currents at predetermined ratios.
    • 本发明涉及LED驱动装置及其使用方法。 根据本发明的一个方面,LED驱动装置包括:光源单元,其包括依次串联连接的第一至第十个LED组; 以及驱动控制单元,具有分别连接到第一至第N LED组的输出端的第一至第n输入端,用于通过产生的第一至第n电流感测信号来控制输入到第一至第N输入端的第一至第N输入电流中的每一个 通过以预定比例反射第一至第n输入电流。
    • 5. 发明申请
    • ANTI-FOG HEAT GENERATING GLASS SYSTEM AND METHOD FOR CONTROLLING THE SAME
    • 防雾发热玻璃系统及其控制方法
    • US20120170120A1
    • 2012-07-05
    • US13393842
    • 2010-12-23
    • Dong-Il LeeBeom-Goo SonIl - Joon Bae
    • Dong-Il LeeBeom-Goo SonIl - Joon Bae
    • G02B5/00
    • H05B3/84Y02B30/26
    • An anti-fog heat-generating glass system, comprising: a heat-generating glass unit separating an indoor and outdoor area, including general glass and heat-generating glass; a glass surface temperature-sensing unit arranged on indoor side heat-generating glass for sensing glass surface temperature; a control unit which compares the glass surface temperature and a fogging point of the indoor area to control heat-generation of the heat-generating glass unit; and a power-source unit supplying power to the heat-generating glass system to operate the system. A method for controlling the anti-fog heat-generating glass system comprises: simultaneously sensing the temperature and relative humidity of the indoor area and the temperature of the heat-generating glass surface; calculating a fogging point based on the temperature and relative humidity of the indoor area; comparing the temperatures of the heat-generating glass surface and the fogging point; and returning to the sensing step or heating the heat-generating glass, based on the comparing step.
    • 一种防雾发热玻璃系统,包括:将室内和室外区域分开的发热玻璃单元,包括普通玻璃和发热玻璃; 布置在用于感测玻璃表面温度的室内发热玻璃上的玻璃表面温度感测单元; 控制单元,其比较所述玻璃表面温度和所述室内区域的起雾点,以控制所述发热玻璃单元的发热; 以及向发热玻璃系统供电以操作系统的电源单元。 防雾发热玻璃系统的控制方法包括:同时感测室内的温度和相对湿度以及发热玻璃表面的温度; 根据室内温度和相对湿度计算雾点; 比较发热玻璃表面和起雾点的温度; 并且基于比较步骤返回到感测步骤或加热发热玻璃。
    • 7. 发明授权
    • Outer rotor type fan-motor
    • 外转子式风扇电机
    • US08057195B2
    • 2011-11-15
    • US12439043
    • 2007-08-29
    • Dong-Il LeeHyoun-Jeong Shin
    • Dong-Il LeeHyoun-Jeong Shin
    • H02K9/06H02K9/00H02K7/00F04B17/00
    • H02K5/24F04D25/062F04D25/064F04D29/263F04D29/329F04D29/663F04D29/668H02K1/30H02K21/22H02K29/00
    • An outer rotor type fan-motor includes: a rotational shaft; a bearing assembly that rotatably supports the rotational shaft; a stator installed at an outer side of the bearing assembly; a permanent magnet assembly that covers an outer side of the stator at a certain distance and is installed at the rotational shaft; and a fan that includes a shaft fixing part for fixing the rotational shaft, a hub for covering an outer side of the permanent magnet assembly at a certain distance and blades formed around the hub. An insulation space is formed between the permanent magnet assembly and the fan to prevent transfer of vibration and noise of the permanent magnet assembly to the fan, and vibration or noise of high frequency can be reduced.
    • 外转子式风扇电动机包括:旋转轴; 可旋转地支撑旋转轴的轴承组件; 定子,其安装在所述轴承组件的外侧; 永磁体组件,其以一定距离覆盖所述定子的外侧并安装在所述旋转轴上; 以及风扇,其包括用于固定所述旋转轴的轴固定部,用于以一定距离覆盖所述永磁体组件的外侧的轮毂和围绕所述轮毂形成的叶片。 在永磁体组件和风扇之间形成绝缘空间,以防止永磁体组件对风扇的振动和噪声的传递,并且可以降低高频振动或噪声。