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    • 12. 发明授权
    • 여과장치
    • 过滤装置
    • KR100620805B1
    • 2006-09-14
    • KR1020040033245
    • 2004-05-11
    • 유명기
    • 유명기
    • B01D45/12
    • 본 발명은 공기를 여과하기 위하여 원심력과 중력, 충돌, 관성을 이용하여 내부에 여과 휠터가 안 들어가는 방식과 상기의 방식에 휠터를 첨가한 방식으로 공기를 여과하는 장치로서,
      전자의 경우 원심력과 중력에 의한 방식으로 입자의 비중과 부피가 큰 물질을 1차 여과하고, 두 번째 원심력과 관성과 충돌에 의한 방식으로 2차여과하는 장치이며, 후자의 경우 전자의 경우에 휠터를 장착하여 3차까지 여과 할 수 있도록 한 것으로 집진기와 진공청소기 또는 각종 공기여과기로 사용할 수 있도록 한 것을 특징으로 한 전천후 여과장치이다.
      집진기, 원심력, 진공청소기, 휠터, 여과, 충돌.
    • 13. 发明公开
    • 원심력과 관성을 이용한 입자 분리 포집기
    • 使用离心力和惯性分离/收集颗粒的装置
    • KR1020010096022A
    • 2001-11-07
    • KR1020000019911
    • 2000-04-17
    • 유명기
    • 유명기
    • B01D45/12
    • B01D45/12B01D45/04
    • PURPOSE: An apparatus for separating/collecting particle using centrifugal force and inertia is provided, which can separate a specific particulate matter from a mixture of more than two matters of gaseous, liquid and solid state using centrifugal separating impellers(A1,A2,A3) without any filter. CONSTITUTION: The apparatus comprises the parts of a horizontal contour cylinder(B) that has an inlet(D) at one end and is connected at the other end to one end of collecting cylinder(J) of larger diameter; a horizontal collecting cylinder(J) that has a plug(K) at the bottom, in which a separating cylinder(F) is centrally horizontally inserted; a separation cylinder(F) that has an inlet(G) at one end and an outlet(H) at the other end and is inserted into the collecting cylinder(J); and a shaft(C) that is installed rotationally at substantially center part of the two cylinders(B,F) to which a spreading plate(E) and three separating impellers(A1,A2,A3) are fixed.
    • 目的:提供一种使用离心力和惯性分离/收集颗粒的设备,其可以使用离心分离叶轮(A1,A2,A3)将特定的颗粒物质与气态,液态和固态的两种以上物质的混合物分离, 没有任何过滤器。 构成:该装置包括在一端具有入口(D)并且在另一端连接到较大直径的收集筒(J)的一端的水平轮廓圆柱体(B)的部分。 在底部具有插头(K)的水平收集筒(J),分离筒(F)中心水平地插入其中; 在另一端具有入口(G)和另一端的出口(H)并插入收集缸(J)中的分离缸(F); 以及旋转地安装在扩展板(E)和三个分离叶轮(A1,A2,A3)固定到的两个气缸(B,F)的大致中心部分的轴(C)。
    • 19. 发明公开
    • 발광다이오드용 패키지
    • 发光二极管封装
    • KR1020110006490A
    • 2011-01-20
    • KR1020090064143
    • 2009-07-14
    • 이철균원동묵유명기
    • 이철균원동묵유명기
    • H01L33/64
    • PURPOSE: A light emitting diode package is provided to minimize the bonding process by selectively selecting the optimal bonding member out of the insulation bonding member or the non-insulation bonding member. CONSTITUTION: A metal housing(20) is installed inside the LED chip(100). The metal housing guides the light emitted from the LED chip to the outside. One side of a lead frame(40) is arranged inside the metal housing. The lead frame is electrically connected to the LED chip and the other side is arranged outside the metal housing.
    • 目的:提供一种发光二极管封装,以通过从绝缘结合部件或非绝缘结合部件选择性地选择最佳焊接部件来最小化接合工艺。 构成:金属外壳(20)安装在LED芯片(100)的内部。 金属外壳将从LED芯片发出的光引导到外部。 引线框架(40)的一侧布置在金属外壳的内部。 引线框架电连接到LED芯片,另一侧布置在金属外壳的外部。
    • 20. 发明公开
    • 조명장치
    • 照明装置
    • KR1020100101304A
    • 2010-09-17
    • KR1020090019721
    • 2009-03-09
    • 유명기원동묵서택
    • 유명기원동묵서택
    • F21V29/87F21V29/85F21V33/00F21Y101/02
    • F21V29/71A61N2005/066F21V19/0035F21V29/89F21V33/0064F21Y2115/10
    • PURPOSE: A lighting device is provided to improve the corrosion resistance of a cooling fin by forming a ceramic layer between a magnesium alloy layer and a far infrared rays emitting material layer. CONSTITUTION: A lighting device comprises a lighting part and a cooling fin. The lighting part has at least one LED(Light Emitting Diode). The cooling fin is arranged in one side of the lighting part. The cooling fin emits heat which is generated from the lighting part to the outside. The cooling fin comprises a magnesium alloy layer(21), a ceramic layer(22), and a far infrared rays emitting material layer(23). The far infrared rays emitting material layer is coated on the magnesium alloy layer. The ceramic layer is formed between the magnesium alloy layer and the far infrared rays emitting material layer.
    • 目的:提供一种照明装置,通过在镁合金层和远红外线发射材料层之间形成陶瓷层来提高冷却翅片的耐腐蚀性。 构成:照明装置包括照明部分和散热片。 照明部分具有至少一个LED(发光二极管)。 散热片布置在照明部分的一侧。 散热片散发从照明部分向外部产生的热量。 冷却翅片包括镁合金层(21),陶瓷层(22)和远红外线发射材料层(23)。 将远红外线发射材料层涂覆在镁合金层上。 在镁合金层和远红外线发射材料层之间形成陶瓷层。