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    • 1. 发明申请
    • PCB WITH CAVITY AND FABRICATING METHOD THEREOF
    • PCB及其制造方法
    • WO2011099820A3
    • 2012-01-12
    • PCT/KR2011000953
    • 2011-02-11
    • LG INNOTEK CO LTDKIM HYUNG JONGYOO JAE HYOUNCHUN JIN GOOPARK JUN SOOLEE KI YONG
    • KIM HYUNG JONGYOO JAE HYOUNCHUN JIN GOOPARK JUN SOOLEE KI YONG
    • H05K3/04H05K3/46
    • H05K3/4697H05K1/186H05K3/0032
    • A fabricating method of a printed circuit board (PCB) with a cavity and a structure of the PCB fabricated by the method are provided. The method includes a first step of forming a base circuit board provided with an internal circuit layer having cavity circuit patterns on a surface of a substrate, a second step of forming a laser stopper layer on upper portions of the cavity circuit patterns, a third step of forming at least one external circuit layer on the base circuit board, and a fourth step of forming a cavity region by removing the external circuit layer on an upper portion of the laser stopper layer. Accordingly, in a fabricating method of a multi-layered PCB with a cavity, a laser stopper layer is formed on upper surfaces of cavity circuit patterns, so that it is possible to rapidly and precisely form the cavity, to precisely control the depth of the cavity and to have no influence on a circuit previously formed in the interior of the cavity.
    • 提供了一种具有通过该方法制造的PCB的空腔和结构的印刷电路板(PCB)的制造方法。 该方法包括:第一步骤,在基板的表面上形成设置有具有空腔电路图案的内部电路层的基底电路板,在腔电路图案的上部形成激光停止层的第二步骤;第三步骤 在所述基底电路板上形成至少一个外部电路层;以及第四步骤,通过去除所述激光停止层上部的所述外部电路层来形成空腔区域。 因此,在具有空腔的多层PCB的制造方法中,在空腔电路图案的上表面上形成激光停止层,从而可以快速且精确地形成空腔,以精确地控制 并且对先前在腔体内部形成的电路没有影响。
    • 2. 发明申请
    • ORGANIC WASTES DECOMPOSER
    • 有机垃圾分解器
    • WO2009133982A1
    • 2009-11-05
    • PCT/KR2008/002827
    • 2008-05-21
    • KIM, Hyung Jong
    • KIM, Hyung Jong
    • C02F11/02
    • C05F17/027C05F17/0054C05F17/02Y02P20/145Y02W30/43
    • The present invention relates to an organic waste decomposer, which decomposes and eliminates a variety of kinds of organic waste, using microbial chips having the capability to decompose organic materials, thus reducing the weight of organic waste, and aims to improve the efficiency of the decomposition and elimination of organic waste by maintaining an optimal growth environment for microorganisms. In order to accomplish the above object, the organic waste decomposer of the invention includes a rotary cylindrical container having a hollow cylindrical structure, which is at least partially open at one end surface thereof and is rotatable using a cylindrical container-rotating drive unit coupled to the other end surface thereof, a waste transfer mechanism, which is mechanically isolated from the rotational motion of the rotary cylindrical container and is coupled to the one open end surface of the rotary cylindrical container, in which a transfer screw and an agitating screw, which are rotated using a screw-rotating drive unit, are disposed in the coupling region of the rotary cylindrical container, in which a hopper, serving as a loading port, through which the organic waste is introduced, is provided over the transfer screw, and in which a dehumidified air circulation unit, which conducts an air circulation cycle of removing moisture from air in the rotary cylindrical container and then supplying the dehumidified air to the rotary cylindrical container, a deodorization unit for removing organic waste odors generated from the dehumidified air, various sensors and heating units, and a control unit for controlling the sensors and the heating units, are additionally provided.
    • 本发明涉及使用具有分解有机材料的能力的微生物碎片来分解和消除各种有机废物的有机废物分解器,从而减少有机废物的重量,并且旨在提高分解效率 并通过维持微生物的最佳生长环境来消除有机废物。 为了实现上述目的,本发明的有机废物分解器包括具有中空圆柱形结构的旋转圆柱形容器,其在其一个端面处至少部分地开口,并且可以使用圆柱形容器旋转驱动单元旋转, 废料转运机构,其与旋转圆筒形容器的旋转运动机械隔离,并且连接到旋转圆柱形容器的一个开口端面,其中转印螺杆和搅拌螺杆,其中 使用螺旋旋转驱动单元旋转,设置在旋转圆筒形容器的联接区域中,在转移螺杆上设置用作引入有机废物的装载口的料斗, 这是一个除湿空气循环单元,其进行从旋转圆柱形容器a中的空气中除去水分的空气循环循环 然后将除湿空气供给到旋转圆筒形容器,用于除去由除湿空气产生的有机废气气味的除臭单元,各种传感器和加热单元,以及用于控制传感器和加热单元的控制单元。
    • 3. 发明申请
    • DRUM TYPE WASTE DECOMPOSER
    • 鼓式垃圾分解器
    • WO2009011467A1
    • 2009-01-22
    • PCT/KR2007/003403
    • 2007-07-13
    • KIM, Hyung Jong
    • KIM, Hyung Jong
    • B09B3/00
    • B09B3/00C05F17/0072C05F17/02C05F17/027Y02P20/145Y02W30/43
    • A drum type waste disposer (10) decomposes organic waste using microorganisms. The waste disposer (10) includes: a drum unit (20) including a stationary drum (22) and first and second rotatable drums (21A, 21B) placed at both ends of the stationary drum; an open hopper (51) placed on a top end of the stationary drum; a door (50) attached to the hopper; a driving unit (110) for generating a driving force that rotates the rotatable drums; a rotary shaft (33) for rotating the first rotatable drum (21A) using the driving force of the driving unit (110); and a plurality of stirring-mixing tubes (30) attached to opposing inner sides of closed ends of the rotatable drums (21A, 21B) to connect the rotatable drums (21A, 21B) to each other. The stirring-mixing tubes (30) are spaced apart from each other along the outer circumference of the opposing inner sides.
    • 鼓式废物处理器(10)使用微生物分解有机废物。 废物处理器(10)包括:鼓单元(20),其包括固定滚筒(22)和放置在固定滚筒两端的第一和第二可旋转滚筒(21A,21B) 放置在固定鼓的顶端的打开的料斗(51); 安装在料斗上的门(50) 驱动单元(110),用于产生使可旋转滚筒旋转的驱动力; 旋转轴(33),用于使用所述驱动单元(110)的驱动力旋转所述第一可旋转滚筒(21A); 以及多个搅拌混合管(30),其连接到可旋转滚筒(21A,21B)的封闭端的相对内侧,以将可旋转滚筒(21A,21B)彼此连接。 搅拌混合管(30)沿着相对的内侧的外周彼此间隔开。
    • 4. 发明申请
    • COMBINED ORGANIC SEWAGE DISPOSAL INSTALLATION USING EFFECTIVE MICROORGANISM
    • 使用有效的微生物组合有机污水处理安装
    • WO2009151190A1
    • 2009-12-17
    • PCT/KR2008/006992
    • 2008-11-27
    • KIM, Hyung Jong
    • KIM, Hyung Jong
    • C02F3/20
    • C02F3/301C02F2103/20C02F2201/003C02F2209/02C02F2209/06C02F2209/08C02F2209/10C02F2209/22C02F2303/24
    • The invention provides a combined organic waste water treatment system which can efficiently degrade and treat organic waste water such as livestock waste water by combining several organic waste water unit treating tanks, each of which includes a space charged with aerobic microbes and another space charged with facultative anaerobic microbes and anaerobic microbes, and by making a living environment suitable for the respective microbes. The organic waste water unit treating tank includes an outer cylinder provided in the upper portion thereof with inlet and outlet pipes for introduction of discharge of organic waste water, an inner cylinder concentrically provided in the outer cylinder to be connected with the inlet pipe and partially opened at a lowermost portion, and an aerator provided in the lower portion of the inner cylinder. The inner cylinder serves as an aerobic tank charged with aerobic microbes, and the annular space between the outer cylinder and the inner cylinder serves as an anaerobic tank charged with facultative anaerobic microbes and anaerobic microbes.
    • 本发明提供了一种组合的有机废水处理系统,其可以通过组合几个有机废水单元处理罐来有效降解和处理诸如家畜废水的有机废水,每个处理罐包括带有需氧微生物的空间和装有兼性的另外的空间 厌氧微生物和厌氧微生物,以及适合各微生物的生活环境。 有机废水处理槽包括在其上部设置有用于引入有机废水排出的入口管和外筒,外筒同心地设置在外筒中以与入口管连接并部分打开 并且设置在内筒的下部的充气器。 内筒用作装有需氧微生物的需氧罐,外筒与内筒之间的环形空间用作装有兼性厌氧微生物和厌氧微生物的厌氧池。
    • 5. 发明申请
    • PRINTED CIRCUIT BOARD AND METHOD FOR MANUFACTURING THE SAME
    • 印刷电路板及其制造方法
    • WO2012053728A1
    • 2012-04-26
    • PCT/KR2011/004870
    • 2011-07-01
    • LG INNOTEK CO., LTD.KIM, Hyung JongYOO, Jae HyounJEON, Jin GooPARK, Jun SooLEE, Ki Yong
    • KIM, Hyung JongYOO, Jae HyounJEON, Jin GooPARK, Jun SooLEE, Ki Yong
    • H05K3/46H05K1/18
    • H05K1/02H05K3/0035H05K3/4697H05K2201/09127
    • Disclosed are a printed circuit board and a method for manufacturing the same. The method for manufacturing the printed circuit board includes forming a base circuit board including a cavity circuit pattern in a cavity region on upper and lower portions of a substrate and internal circuit layers outside the cavity region, forming a cavity separation layer on the cavity circuit pattern, forming at least one pair of an insulating layer and a circuit layer on the base circuit board, cutting the insulating layer and the cavity separation layer provided on an etch stop pattern by controlling a focal length of a laser beam such that the laser beam reaches a surface of the base circuit board, and removing the insulating layer by separating the cavity separation layer to form the cavity. The cavity separation layer is formed on the cavity circuit pattern, and the resultant structure is cut to the cavity separation layer by using a laser so that the insulating layer is separated. Accordingly, the insulating layer in the cavity is easily removed.
    • 公开了一种印刷电路板及其制造方法。 制造印刷电路板的方法包括在基板的上部和下部的空腔区域中形成包括空腔电路图案的基底电路板和在腔区域外部的内部电路层,在空腔电路图案上形成空腔分离层 在所述基底电路板上形成至少一对绝缘层和电路层,通过控制所述激光束的焦距来切割设置在所述蚀刻停止图案上的所述绝缘层和所述腔分离层,使得所述激光束到达 基底电路板的表面,并且通过分离空腔分离层以形成空腔来去除绝缘层。 空腔分离层形成在空腔电路图案上,并且通过使用激光将所得结构切割到空腔分离层,使得绝缘层被分离。 因此,容易去除空腔中的绝缘层。
    • 6. 发明申请
    • PCB WITH CAVITY AND FABRICATING METHOD THEREOF
    • PCB及其制造方法
    • WO2011099820A2
    • 2011-08-18
    • PCT/KR2011/000953
    • 2011-02-11
    • LG INNOTEK CO., LTD.KIM, Hyung JongYOO, Jae HyounCHUN, Jin GooPARK, Jun SooLEE, Ki Yong
    • KIM, Hyung JongYOO, Jae HyounCHUN, Jin GooPARK, Jun SooLEE, Ki Yong
    • H05K3/04H05K3/46
    • H05K3/4697H05K1/186H05K3/0032
    • A fabricating method of a printed circuit board (PCB) with a cavity and a structure of the PCB fabricated by the method are provided. The method includes a first step of forming a base circuit board provided with an internal circuit layer having cavity circuit patterns on a surface of a substrate, a second step of forming a laser stopper layer on upper portions of the cavity circuit patterns, a third step of forming at least one external circuit layer on the base circuit board, and a fourth step of forming a cavity region by removing the external circuit layer on an upper portion of the laser stopper layer. Accordingly, in a fabricating method of a multi-layered PCB with a cavity, a laser stopper layer is formed on upper surfaces of cavity circuit patterns, so that it is possible to rapidly and precisely form the cavity, to precisely control the depth of the cavity and to have no influence on a circuit previously formed in the interior of the cavity.
    • 提供了一种具有通过该方法制造的PCB的空腔和结构的印刷电路板(PCB)的制造方法。 该方法包括:第一步骤,在基板的表面上形成设置有具有空腔电路图案的内部电路层的基底电路板,在腔电路图案的上部形成激光停止层的第二步骤;第三步骤 在所述基底电路板上形成至少一个外部电路层;以及第四步骤,通过去除所述激光停止层的上部上的所述外部电路层来形成空腔区域。 因此,在具有空腔的多层PCB的制造方法中,在空腔电路图案的上表面上形成激光停止层,从而可以快速且精确地形成空腔,以精确地控制 并且对先前在腔体内部形成的电路没有影响。