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    • 14. 发明申请
    • REFRIGERATOR AND CONTROL METHOD FOR THE SAME
    • 制冷机及其控制方法
    • US20120227421A1
    • 2012-09-13
    • US13413212
    • 2012-03-06
    • Do Hyung KIMJin JEONGSang Hyun PARKYong Sung YOONKHANQASIMSeung Ah JOO
    • Do Hyung KIMJin JEONGSang Hyun PARKYong Sung YOONKHANQASIMSeung Ah JOO
    • F25C5/18F25C1/00
    • F25C5/187
    • A refrigerator including a main body provided with a refrigerating chamber at an upper section and with a freezing chamber at a lower section, an ice making tray disposed in an upper space of an ice making chamber defined in the refrigerating chamber, a first storage container disposed in a lower space of the ice making chamber to store ice falling down from the ice making tray, and a second storage container disposed in a freezing chamber to store ice transferred from the ice making tray. The main body includes a guide channel to guide, when the first storage container reaches an ice-full state, ice falling from the ice making tray to the second storage container in the freezing chamber. The size of the ice making chamber is greatly reduced while a sufficient amount of the ice may be stored, thus securing a larger available space in the refrigerating chamber.
    • 一种冰箱,包括:主体,其在上部设有冷藏室,下部具有冷冻室;制冰盘,布置在制冷室的上部空间中,所述制冰托盘设置在所述制冷室中;第一储存容器, 在制冰室的较低空间中存储从制冰托盘落下的冰,以及设置在冷冻室中以存储从制冰盘传送的冰的第二储存容器。 主体包括引导通道,当第一储存容器达到冰满状态时,从制冰盘向冷冻室中的第二储存容器落下的冰。 制冰室的尺寸大大降低,同时可以储存足够量的冰,从而确保在冷藏室中更大的可用空间。
    • 15. 发明申请
    • SEMICONDUCTOR DEVICE AND METHOD OF FABRICATING THE SAME
    • 半导体器件及其制造方法
    • US20110037111A1
    • 2011-02-17
    • US12648710
    • 2009-12-29
    • Do Hyung KIMYoung Man Cho
    • Do Hyung KIMYoung Man Cho
    • H01L27/108H01L21/8242
    • H01L27/10891H01L27/0207H01L27/10876H01L27/10885H01L29/4236
    • The invention relates to a semiconductor device and a method of fabricating the same, wherein a storage node contact hole is made large to solve any problem caused during etching a storage node contact hole with a small CD, a landing plug is formed to lower plug resistance, and the SAC process is eliminated at the time of the bit line formation. A method of fabricating a semiconductor device according to the invention comprises: forming a device isolation film for defining a multiplicity of active regions in a semiconductor substrate; forming a multiplicity of buried word lines in the semiconductor substrate; forming a storage node contact hole for exposing a storage node contact region of two adjoining active regions; filling the storage node contact hole with a storage node contact plug material; forming a bit-line groove for exposing a bit-line contact region of the active region and splitting the storage node contact plug material into two; and burying the bit line into the bit-line groove.
    • 本发明涉及一种半导体器件及其制造方法,其中存储节点接触孔大得多以解决在用小CD刻蚀存储节点接触孔期间引起的任何问题,形成降落插头电阻 并且在位线形成时消除了SAC处理。 根据本发明的制造半导体器件的方法包括:形成用于限定半导体衬底中的多个有源区的器件隔离膜; 在半导体衬底中形成多个掩埋字线; 形成存储节点接触孔,用于暴露两个邻接的活动区域的存储节点接触区域; 用存储节点接触插塞材料填充存储节点接触孔; 形成用于暴露有源区域的位线接触区域并将存储节点接触插塞材料分成两个的位线槽; 并将位线埋入位线槽中。
    • 16. 发明申请
    • SEPARATOR FOR HIGH-TEMPERATURE FUEL CELL
    • 高温燃料电池分离器
    • US20100112413A1
    • 2010-05-06
    • US12341703
    • 2008-12-22
    • Do Hyung KIMBeom Joo KIMJung Hyun LEESeung Won KANGHee Chun LIMByung Soo JUNG
    • Do Hyung KIMBeom Joo KIMJung Hyun LEESeung Won KANGHee Chun LIMByung Soo JUNG
    • H01M2/14
    • H01M8/0247H01M8/0254H01M8/2425H01M8/244H01M8/2483
    • Provided is a high-temperature fuel cell separator. The fuel cell separator includes a fuel gas flow path containing hydrogen, an oxidant gas flow path containing mainly an oxygen component being supplied from an oxygen/nitrogen separator of a system and participating in electrochemical reactions, and a cooling gas flow path containing a nitrogen component to remove heat produced upon power generation of a fuel cell. Such a configuration provides a high-temperature fuel cell separator which is capable of improving efficiency of an overall fuel cell system through improved performance of a fuel cell stack due to increased oxygen partial pressure and which is also capable of improving reliability of the fuel cell stack through inhibition of the occurrence of a high-temperature region resulting from heat produced upon power generation of a fuel cell, by means of a flow of cooling gas containing a nitrogen component.
    • 提供了一种高温燃料电池隔板。 燃料电池分离器包括含有氢的燃料气体流路,主要由系统的氧/氮分离器供给的氧成分的氧化剂气体流路,并参与电化学反应,以及含有氮成分的冷却气体流路 以消除燃料电池发电时产生的热量。 这种构造提供了一种高温燃料电池隔板,其能够通过由于氧分压增加而改善燃料电池堆的性能来提高总体燃料电池系统的效率,并且还能够提高燃料电池堆的可靠性 通过抑制由燃料电池发电产生的热量,通过含有氮成分的冷却气体的流动而发生高温区域。
    • 18. 发明申请
    • SEMICONDUCTOR DEVICE AND METHOD OF FABRICATING THE SAME
    • 半导体器件及其制造方法
    • US20120074518A1
    • 2012-03-29
    • US13243386
    • 2011-09-23
    • Do Hyung KIMYoung Man Cho
    • Do Hyung KIMYoung Man Cho
    • H01L27/06
    • H01L27/10891H01L27/0207H01L27/10876H01L27/10885H01L29/4236
    • The invention relates to a semiconductor device, wherein a storage node contact hole is made large to solve any problem caused during etching a storage node contact hole with a small CD, a landing plug is formed to lower plug resistance. A semiconductor device according to the invention comprises: first and second active regions formed in a substrate, the first and second active being adjacent to each other, each of the first and second active regions including a bit-line contact region and a storage node contact region and a device isolation structure; a word line provided within a trench formed in the substrate; first and second storage node contact plugs assigned to the first and second active regions, respectively, the first and second storage node contact plugs being separated from each other by a bit line groove; and a bit line formed within the bit-line groove.
    • 本发明涉及一种半导体器件,其中存储节点接触孔较大以解决在用小CD刻蚀存储节点接触孔期间引起的任何问题,形成了降低插头电阻的着陆插头。 根据本发明的半导体器件包括:形成在衬底中的第一和第二有源区,第一和第二有源层彼此相邻,第一和第二有源区域中的每一个包括位线接触区域和存储节点接触 区域和器件隔离结构; 设置在形成在所述基板中的沟槽内的字线; 分别分配给第一和第二有源区域的第一和第二存储节点接触插塞,第一和第二存储节点接触插塞通过位线槽相互分离; 以及形成在位线槽内的位线。
    • 19. 发明申请
    • ROOT MOBILE ROUTER AND THE OPERATING METHOD THEREOF IN DYNAMICALLY COMPOSED MOVING NETWORK
    • ROOT移动路由器及其在动态组合移动网络中的操作方法
    • US20080095113A1
    • 2008-04-24
    • US11834838
    • 2007-08-07
    • Won Tae KIMHeung Nam KIMSun Ja KIMDo Hyung KIMJae Pyeong KIMHwan Gu LEE
    • Won Tae KIMHeung Nam KIMSun Ja KIMDo Hyung KIMJae Pyeong KIMHwan Gu LEE
    • H04Q7/00
    • H04W40/24H04W84/005
    • Provided is a root mobile router and the operating method thereof in a dynamically composed moving network, capable of forming a self-configuring ad-hoc network between wireless personal area networks (WPANs) of each user in a moving network and supporting a stable connection between the network and the Internet. The method includes the steps of: receiving state information of multiple access networks and selecting an optimal access network in order to connect to the Internet; receiving a result of the selection and activating an interface of the selected access network; changing the selected access network to the activated access network interface; and updating routing path information automatically and stably transmitting an IP packet to the Internet through the selected access network interface. Therefore, a personal mobile terminal can be utilized as a mobile router.
    • 提供了一种根据移动路由器及其在动态组合的移动网络中的操作方法,其能够在移动网络中的每个用户的无线个域网(WPAN)之间形成自配置的自组织网络,并且支持在 网络和互联网。 该方法包括以下步骤:接收多个接入网络的状态信息并选择最佳接入网络以便连接到因特网; 接收所选择的接入网络的接口的选择和激活结果; 将所选择的接入网络改变为激活的接入网络接口; 以及通过所选择的接入网络接口,将路由路径信息自动且稳定地发送到因特网。 因此,个人移动终端可以用作移动路由器。