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    • 2. 发明授权
    • Internet based telephone apparatus
    • 互联网电话设备
    • US06876648B1
    • 2005-04-05
    • US09666159
    • 2000-09-19
    • Dae-Jin Lee
    • Dae-Jin Lee
    • H04L12/66H04L12/64H04L12/70H04M1/253H04M7/00H04M11/00
    • H04M7/0057H04L2012/6481H04M1/2535
    • An internet based telephone apparatus for embodying a telephone-to-telephone type of internet based telephone, the apparatus having a gateway function where a communication is possible between a general telephone connected via PSTN with another internet based telephone connected through internet network without separate internet telephone gateway installed between the internet network and PSTN, and a dual channel communication function where a communication is possible by being connected to a third internet based telephone when there is a communication connection between a general telephone connected via PSTN and a second internet based telephone connected through internet network.
    • 一种基于因特网的电话设备,用于实现基于因特网的电话的电话到电话类型,该设备具有网关功能,其中可以在通过PSTN连接的通用电话与通过因特网连接的另一互联网电话之间进行通信,而不需要单独的互联网电话 安装在互联网和PSTN之间的网关,以及双通道通信功能,其中当通过PSTN连接的通用电话和通过连接的第二互联网电话之间存在通信连接时,可以通过连接到第三互联网电话进行通信 互联网。
    • 4. 发明授权
    • Method of manufacturing unit cell of solid oxide fuel cell using decalcomania process
    • 使用decalcomania工艺制造固体氧化物燃料电池单元的方法
    • US08465796B2
    • 2013-06-18
    • US12963258
    • 2010-12-08
    • Byung Hyun ChoiMi Jung JeeSeong Tae ParkDae Jin LeeMi Jai LeeYuong Jin Kwon
    • Byung Hyun ChoiMi Jung JeeSeong Tae ParkDae Jin LeeMi Jai LeeYuong Jin Kwon
    • B05D1/12
    • H01M4/8835H01M4/8814H01M4/8885H01M8/1213H01M8/1286H01M2008/1293Y02P70/56
    • A method of manufacturing a unit cell of a solid oxide fuel cell using a decalcomania process, in which an anode, electrolyte, cathode and interconnect are deposited on a substrate using the decalcomania process when the unit cell of the solid oxide fuel cell having a variety of shapes, such as a planar type, a horizontal pipe type, a tubular type, a segmented type, and the like, is manufactured. In manufacture of solid oxide fuel cells having a variety of shapes according to lamination and arrangement of unit cells, the components of each unit cell, such as the anode, the cathode, the electrolyte, the interconnect, and the like, may be deposited in a desired shape using the decalcomania process through deposition or coating, so that the components of the unit cell having a large scale or a complicated structure can be deposited without limit in size and shape, the thickness of the components of the unit cell can be easily controlled depending on the number of stacked transfer paper sheets, and a coating film can be formed on a substrate at a lower cost.
    • 当固体氧化物燃料电池的单体电池具有多种形式时,使用十聚氰胺工艺制造固体氧化物燃料电池的单元电池的方法,其中在基板上沉积阳极,电解质,阴极和互连件 的形状,例如平面型,水平管型,管状型,分段型等。 在根据单元电池的层压和布置制造具有各种形状的固体氧化物燃料电池时,可以将每个单元电池的元件(例如阳极,阴极,电解质,互连等)沉积在 使用通过沉积或涂覆的decalcomania工艺的期望形状,使得可以在尺寸和形状上没有限制地沉积具有大规模或复杂结构的单元电池的部件,单元电池的部件的厚度可以容易地 根据堆叠的转印纸张的数量进行控制,并且可以以较低的成本在基板上形成涂膜。
    • 5. 发明申请
    • PRECOMBUSTION CHAMBER FOR GAS ENGINE
    • 燃气发动机预制室
    • US20140165958A1
    • 2014-06-19
    • US14131946
    • 2012-07-19
    • Dae-Jin LeeKwang-Cheol HeoChae-Soon LimJong-Suk Kim
    • Dae-Jin LeeKwang-Cheol HeoChae-Soon LimJong-Suk Kim
    • F02B19/12
    • F02B19/12F02B1/04F02B23/08F02B2075/125F02B2275/22F02M21/0275F02M21/0281Y02T10/123Y02T10/125Y02T10/32
    • Disclosed herein is a precombustion chamber structure for a gas engine. The precombustion chamber structure is configured to facilitate disassembly of a precombustion chamber tip, thus making maintenance, repair or inspection of the precombustion chamber easy. For this, the precombustion chamber structure includes: a body (110) having a main body (111), a water jacket (112) and a precombustion chamber tip (113); and a spark plug (120) for igniting fuel gas injected into the precombustion chamber (114) formed in the body (110). The precombustion chamber structure ignites fuel gas and supplies the ignited fuel gas into a main combustion chamber. A tool insert groove (1131) is formed in the junction between the precombustion chamber tip and the water jacket. The tool insert groove (1131) allows a tool for disassembly to be inserted into a space between the precombustion chamber tip and the water jacket.
    • 本文公开了一种用于燃气发动机的预燃室结构。 预燃室结构构造为便于拆卸预燃室顶部,从而容易地对预燃室进行维护,修理或检查。 为此,预燃室结构包括:具有主体(111),水套(112)和预燃室顶端(113)的主体(110); 和用于点燃注入到形成在主体(110)中的预燃室(114)中的燃料气体的火花塞(120)。 预燃室结构点燃燃料气并将点燃的燃料气体供应到主燃烧室中。 工具插入槽(1131)形成在预燃室顶端和水套之间的连接处。 工具插入槽(1131)允许用于拆卸的工具插入预燃室顶端和水套之间的空间中。
    • 7. 发明申请
    • METHOD OF MANUFACTURING UNIT CELL OF SOLID OXIDE FUEL CELL USING TRANSFER PROCESS
    • 使用转移方法制造固体氧化物燃料电池单元的方法
    • US20110135813A1
    • 2011-06-09
    • US12963258
    • 2010-12-08
    • Byung Hyun CHOIMi Jung JeeSeong Tae ParkDae Jin LeeMi Jai LeeYuong Jin Kwon
    • Byung Hyun CHOIMi Jung JeeSeong Tae ParkDae Jin LeeMi Jai LeeYuong Jin Kwon
    • H01M8/00
    • H01M4/8835H01M4/8814H01M4/8885H01M8/1213H01M8/1286H01M2008/1293Y02P70/56
    • A method of manufacturing a unit cell of a solid oxide fuel cell using a transfer process, in which an anode, electrolyte, cathode and interconnect are deposited on a substrate using the transfer process when the unit cell of the solid oxide fuel cell having a variety of shapes, such as a planar type, a horizontal pipe type, a tubular type, a segmented type, and the like, is manufactured. In manufacture of solid oxide fuel cells having a variety of shapes according to lamination and arrangement of unit cells, the components of each unit cell, such as the anode, the cathode, the electrolyte, the interconnect, and the like, may be deposited in a desired shape using the transfer process through deposition or coating, so that the components of the unit cell having a large scale or a complicated structure can be deposited without limit in size and shape, the thickness of the components of the unit cell can be easily controlled depending on the number of stacked transfer paper sheets, and a coating film can be formed on a substrate at a lower cost.
    • 使用转印法制造固体氧化物型燃料电池的单电池的方法,其中当具有多种固体氧化物燃料电池的单电池时,使用转印工艺将阳极,电解质,阴极和互连物质沉积在基板上 的形状,例如平面型,水平管型,管状型,分段型等。 在根据单元电池的层压和布置制造具有各种形状的固体氧化物燃料电池时,可以将每个单元电池的元件(例如阳极,阴极,电解质,互连等)沉积在 使用通过沉积或涂覆的转印工艺的期望形状,使得可以在尺寸和形状上没有限制地沉积具有大尺寸或复杂结构的单元电池的部件,单元电池的部件的厚度可以容易地 根据堆叠的转印纸张的数量进行控制,并且可以以较低的成本在基板上形成涂膜。