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    • 2. 发明申请
    • PORTABLE MICROWAVE PLASMA SYSTEMS INCLUDING A SUPPLY LINE FOR GAS AND MICROWAVES
    • 便携式微波等离子体系统,包括气体和微波的供应线
    • WO2006137832A2
    • 2006-12-28
    • PCT/US2005028922
    • 2005-08-11
    • AMARANTE TECHNOLOGIES INCNORITSU KOKI CO LTDLEE SANG HUNKIM JAY JOONGSOOKINOSHITA TOGO
    • LEE SANG HUNKIM JAY JOONGSOOKINOSHITA TOGO
    • H05H1/24
    • H05H1/46H05H2001/4622H05H2245/1225
    • A portable microwave plasma system (10) includes a microwave supply unit (22), a waveguide-to-coax adapter (18) and a waveguide (20) that interconnects the microwave supply unit (22) with the waveguide-to-coax adapter (18), a portable discharge unit (12) and a supply line (16). The supply line (16) includes at least one gas line (62) and a microwave coaxial cable (64). The portable discharge unit (12) includes: a gas flow tube (42) coupled to the supply line (16) to receive gas flow; and a rod-shaped conductor (44) that is axially disposed in the gas flow tube (42) and has an end configured to receive microwaves from the microwave coaxial cable (64) and a tip (46) positioned adjacent the outlet portion of the gas flow tube (42). The tip (46) is configured to focus microwave traveling through the rod-shaped conductor (44) and generate plasma from the gas flow.
    • 便携式微波等离子体系统(10)包括微波提供单元(22),波导到同轴适配器(18)和波导(20),其将微波供应单元(22)与波导到同轴电缆适配器 (18),便携式放电单元(12)和供给管线(16)。 供应管线(16)包括至少一条气体管线(62)和微波同轴电缆(64)。 便携式排放单元(12)包括:气体流管(42),其耦合到供应管线(16)以接收气流; 以及杆状导体(44),其轴向地设置在所述气体流管(42)中并且具有被配置为从所述微波同轴电缆(64)接收微波的端部和邻近所述微波同轴电缆的出口部分定位的尖端(46) 气流管(42)。 尖端(46)被配置为聚焦通过杆状导体(44)行进的微波并且从气流产生等离子体。
    • 4. 发明申请
    • PLASMA NOZZLE ARRAY FOR PROVIDING UNIFORM SCALABLE MICROWAVE PLASMA GENERATION
    • 用于提供均匀可扩展微波等离子体生成的等离子喷嘴阵列
    • WO2006014862A3
    • 2007-01-18
    • PCT/US2005026280
    • 2005-07-21
    • AMARANTE TECHNOLOGIES INCNORITSU KOKI CO LTDLEE SANG HUNKIM JAY JOONGSOO
    • LEE SANG HUNKIM JAY JOONGSOO
    • H05H1/46H01J37/32
    • H01J37/32192A61L2/14H05H1/46H05H2001/4622
    • The present invention provides microwave plasma nozzle array systems (10, 70, 230, and 310) and methods for configuring microwave plasma nozzle arrays (37, 99, and 337). The microwaves are transmitted to a microwave cavity (323) in a specific manner and form an interference pattern (66) that includes high-energy regions (69) within the microwave cavity (32). The high-energy regions (69) are controlled by the phases and the wavelengths of the microwaves. A plurality of nozzle elements (36) is provided in the array (37). Each of the nozzle elements (36) has a portion (116) partially disposed in the microwave cavity (32) and receives a gas for passing therethrough. The nozzle elements (36) receive microwave energy from one of the high-energy regions (69). Each of the nozzle elements (36) includes a rod-shaped conductor (114) having a tip (117) that focuses on the microwaves and a plasma (38) is then generated using the received gas.
    • 本发明提供微波等离子体喷嘴阵列系统(10,70,230和310)以及用于配置微波等离子体喷嘴阵列(37,99和337)的方法。 微波以特定的方式传送到微波腔(323)并形成包括微​​波腔(32)内的高能区域(69)的干涉图案(66)。 高能区(69)由微波的相位和波长控制。 在阵列(37)中设置有多个喷嘴元件(36)。 每个喷嘴元件(36)具有部分地布置在微波腔(32)中的部分(116)并且接收用于通过的气体。 喷嘴元件(36)从高能区域(69)之一接收微波能量。 每个喷嘴元件(36)包括具有聚焦在微波上的尖端(117)的棒状导体(114),然后使用所接收的气体产生等离子体(38)。
    • 5. 发明申请
    • MICROWAVE RESONANT CAVITY
    • 微波谐振腔
    • WO2012177834A2
    • 2012-12-27
    • PCT/US2012043482
    • 2012-06-21
    • AMARANTE TECHNOLOGIES INCLEE SANG HUN
    • LEE SANG HUN
    • H01P7/00H01P7/06
    • H05H7/02H01J37/32247H01P5/12H05H1/46H05H2001/4622
    • A microwave resonant cavity (26) is provided. The microwave resonant cavity (26) includes: a sidewall (42) having a generally cylindrical hollow shape; a gas flow tube (46) disposed inside the sidewall and having a longitudinal axis substantially parallel to a longitudinal axis of the sidewall; a plurality of microwave waveguides (24a - 24c), each microwave waveguide having a longitudinal axis substantially perpendicular to the longitudinal axis of the sidewall and having a distal end secured to the sidewall and aligned with a corresponding one of a plurality of holes formed on the sidewall; a top plate (41) secured to one end of the sidewall; and a sliding short circuit (48) having: a disk (43) slidably mounted between the sidewall and the gas flow tube; and at least one bar (50) disposed inside the sidewall and arranged parallel to the longitudinal axis of the sidewall.
    • 提供微波谐振腔(26)。 微波谐振腔(26)包括:具有大致圆柱形中空形状的侧壁(42); 设置在所述侧壁内的气流管(46),其具有基本上平行于所述侧壁的纵向轴线的纵向轴线; 多个微波波导(24a-24c),每个微波波导具有基本上垂直于所述侧壁的纵向轴线的纵向轴线,并且具有固定到所述侧壁的远端并与形成在所述侧壁上的多个孔中的相应一个孔对准 侧壁; 固定到所述侧壁的一端的顶板(41); 和滑动短路(48),其具有:可滑动地安装在所述侧壁和所述气体流动管之间的盘(43) 以及设置在所述侧壁内并且平行于所述侧壁的纵向轴线布置的至少一个杆(50)。
    • 7. 发明申请
    • MICROWAVE PLASMA NOZZLE WITH ENHANCED PLUME STABILITY AND HEATING EFFICIENCY
    • MICROWAVE等离子喷嘴,具有增强的液体稳定性和加热效率
    • WO2006014455A3
    • 2007-01-18
    • PCT/US2005023886
    • 2005-07-07
    • AMARANTE TECHNOLOGIES INCNORITSU KOKI CO LTDLEE SANG HUNKIM JAY JOONGSOO
    • LEE SANG HUNKIM JAY JOONGSOO
    • H05H1/46H05H1/24
    • H05H1/46H05H2001/4622H05H2001/463
    • Systems and methods for generating microwave plasma are disclosed. The present invention provides a microwave plasma nozzle (26) that includes a gas flow tube (40), and a rod-shaped conductor (34) that is disposed in the gas flow tube (40) and has a tip (33) near the outlet of the gas flow tube (40). A portion (35) of the rod-shaped conductor (34) extends into a microwave cavity (24) to receive microwaves passing in the cavity (24). These received microwaves are focused at the tip (33) to heat the gas into plasma. The microwave plasma nozzle (26) also includes a vortex guide (36) between the rod-shaped conductor (34) and the gas flow tube (40) imparting a helical shaped flow direction to the gas flowing through the tube (40). The microwave plasma nozzle (26) further includes a shielding mechanism (108) for reducing a microwave power loss through the gas flow tube (40).
    • 公开了用于产生微波等离子体的系统和方法。 本发明提供了一种微波等离子体喷嘴(26),其包括气体流通管(40)和杆状导体(34),其设置在气体流管(40)中,并具有靠近 气流管(40)的出口。 棒状导体(34)的一部分(35)延伸到微波空腔(24)中以接收通过空腔(24)的微波。 这些接收的微波聚焦在尖端(33),以将气体加热成等离子体。 微波等离子体喷嘴(26)还包括在杆状导体(34)和气体流管(40)之间的涡流引导件(36),其向流过管(40)的气体赋予螺旋形流动方向。 微波等离子体喷嘴(26)还包括用于减小通过气流管(40)的微波功率损耗的屏蔽机构(108)。
    • 8. 发明申请
    • WIRELESS COMMUNICATION DEVICE WITH GRAPHICAL USER INTERFACE TYPE INPUT DEVICE FUNCTION
    • 带图形用户界面型输入设备功能的无线通信设备
    • WO2010114273A3
    • 2010-12-23
    • PCT/KR2010001918
    • 2010-03-30
    • LG INNOTEK CO LTDLEE SANG HUNPARK JU BONG
    • LEE SANG HUNPARK JU BONG
    • G06F3/03G06F1/00G06F13/00
    • G06F13/387G06F3/03543G06F3/14G06F3/1423G06F2213/3814G09G2370/16
    • The present invention relates to a wireless communication device including an input device function of graphical user interface (GUI) type. A wireless communication apparatus including an input device function of GUI comprises a UWB communication block configured to convert a data signal inputted to a computer coupled to the wireless communication apparatus into a UWB signal and wirelessly transmit the UWB signal, and to convert another UWB signal inputted wirelessly into a data signal or a control signal recognized by the computer and transmit the data signal or the control signal to the computer, an input device configured to a control movement of cursor in a screen of the computer according to a graphical user interface method, and a hub controller configured to selectively route signals outputted from the UWB communication block and the input device to interface between the computer and both the UWB communication block and the input device.
    • 本发明涉及包括图形用户界面(GUI)类型的输入设备功能的无线通信设备。 包括GUI的输入设备功能的无线通信设备包括:UWB通信模块,被配置为将输入到耦合到无线通信设备的计算机的数据信号转换为UWB信号并无线发送UWB信号,并且将输入的另一个UWB信号 将所述数据信号或所述计算机识别的控制信号无线地无线传输至所述计算机,并将所述数据信号或所述控制信号传输至所述计算机;输入装置,用于根据图形用户界面方法控制所述计算机的屏幕中光标的移动, 以及集线器控制器,其被配置为选择性地路由从UWB通信模块和输入装置输出的信号以在计算机与UWB通信模块和输入装置两者之间进行接口连接。
    • 9. 发明申请
    • MAGNETIZING APPARATUS
    • 磁化装置
    • WO2010035997A3
    • 2010-07-22
    • PCT/KR2009005370
    • 2009-09-22
    • LEE SANG HUN
    • LEE SANG HUN
    • C02F1/48
    • C02F1/481C02F2307/06
    • The present invention aims to overcome the problems of conventional magnetizing apparatuses. It is an aim of the present invention to provide a magnetizing apparatus wherein a belt, with an outer surface equipped with a tube having a built-in magnet, is simply attached to a discharge pipe to magnetize water or the like flowing through the inside of the discharge pipe, and to enable the apparatus to be easily disassembled for replacement. The magnetizing apparatus of the present invention is constituted by the tube and the belt to reduce manufacturing costs and to enable easy installation and disassembly, as compared to conventional magnetized hexagonal water generating apparatuses. The magnetizing apparatus of the present invention can be easily attached to or detached from the discharge pipe by a joint element, thus being economically advantageous.
    • 本发明旨在克服常规磁化装置的问题。 本发明的目的是提供一种磁化装置,其中具有装有内置磁体的管的外表面的带简单地附接到排出管,以使流过内部的磁体的水等磁化 排出管,并且能够容易地拆卸设备以进行更换。 本发明的磁化装置与传统的磁化六角形水生成装置相比,由管和带构成,以降低制造成本并且易于安装和拆卸。 本发明的磁化装置可以通过接头元件容易地附接到排出管或从排出管拆卸,因此在经济上是有利的。