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    • 13. 发明申请
    • MOBILE TERMINAL AND CONTROLLING METHOD THEREOF
    • 移动终端及其控制方法
    • US20110053615A1
    • 2011-03-03
    • US12704301
    • 2010-02-11
    • Min Ho LEE
    • Min Ho LEE
    • H04W24/00H04N5/222
    • H04M1/72563H04L67/18H04M2250/10H04M2250/22H04M2250/52H04W4/029
    • A mobile terminal including a user input unit configured to receive user-inputs; a wireless communication unit configured to wirelessly communicate with at least one other terminal; at least one camera configured to capture images; a touchscreen configured to display a camera preview image captured by the camera; a position-location processor configured to obtain information on a current position of the mobile terminal; and a controller configured to search for textual object information corresponding to an object within the camera preview image based on the current position of the mobile terminal, to control the camera to photograph the camera preview image and to store the photographed camera preview image as a picture file, to output query information to query whether the searched textual object information is to be stored together with the picture file, and to store the picture file with or without the searched textual object information based on an answer to the output query information.
    • 一种移动终端,包括被配置为接收用户输入的用户输入单元; 无线通信单元,被配置为与至少一个其他终端无线通信; 至少一个相机被配置为捕获图像; 触摸屏,被配置为显示由所述相机拍摄的相机预览图像; 位置处理器,被配置为获取关于所述移动终端的当前位置的信息; 以及控制器,其被配置为基于所述移动终端的当前位置来搜索与所述相机预览图像内的对象相对应的文本对象信息,以控制所述相机拍摄所述相机预览图像并将所拍摄的相机预览图像存储为图片 文件,输出查询信息,以查询所搜索的文本对象信息是否与图像文件一起存储,并且基于对输出查询信息的回答来存储具有或不具有所搜索的文本对象信息的图像文件。
    • 14. 发明申请
    • FABRICATING METHOD FOR MICRO GAS SENSOR AND THE SAME
    • 微气体传感器及其制造方法
    • US20100314700A1
    • 2010-12-16
    • US12810850
    • 2008-12-26
    • Kwang Bum ParkSeong Dong KimJoon Shik ParkMin Ho Lee
    • Kwang Bum ParkSeong Dong KimJoon Shik ParkMin Ho Lee
    • H01L29/66H01L21/28
    • G01N27/128
    • There are provided a micro gas sensor and a method for fabricating the same that comprises a micro heater formed inside a polysilicon membrane by doping impurities into a specific region of the polysilicon membrane positioned under a gas sensing substance, thereby improving thermal structural stability and making it easy to form the gas sensing substance. The micro gas sensor comprises: a micro heater formed by doping impurities into polysilicon vapor-deposited on a substrate on which a first insulating layer is formed; a polysilicon membrane for decreasing a heat loss of the micro heater; a power electrode for supplying power and a temperature measurement electrode for measuring a temperature, positioned at both ends of the micro heater; a second insulating layer formed on the micro heater; a sensing substance formed on the second insulating layer, for sensing a gas; and a sensing electrode for measuring a change in properties of the sensing substance. The method for fabricating a micro gas sensor comprises steps of: forming polysilicon on a substrate on which a first insulating layer is formed; forming a micro heater by doping impurities into the polysilicon; forming electrodes at both ends of the micro heater; forming a second insulating layer on the micro heater; forming a sensing substance on the second insulating layer; and forming a sensing electrode on the sensing substance.
    • 提供一种微气体传感器及其制造方法,其包括通过将杂质掺杂到位于气体感测物质下方的多晶硅膜的特定区域中而形成在多晶硅膜内部的微加热器,从而提高热结构稳定性并使其成为 容易形成气体传感物质。 微气体传感器包括:通过将杂质掺杂到形成有第一绝缘层的基板上的多晶硅中形成的微加热器; 用于减少微加热器的热损失的多晶硅膜; 用于供电的电源电极和位于微加热器两端的用于测量温度的温度测量电极; 形成在所述微加热器上的第二绝缘层; 形成在所述第二绝缘层上的用于检测气体的感测物质; 以及用于测量感测物质的性质变化的感测电极。 制造微气体传感器的方法包括以下步骤:在其上形成有第一绝缘层的基板上形成多晶硅; 通过将杂质掺杂到多晶硅中形成微加热器; 在微加热器的两端形成电极; 在所述微加热器上形成第二绝缘层; 在所述第二绝缘层上形成感测物质; 以及在感测物质上形成感测电极。
    • 20. 发明申请
    • Method and system for establishing bidirectional tunnel
    • 建立双向隧道的方法和系统
    • US20060092964A1
    • 2006-05-04
    • US11259275
    • 2005-10-27
    • Soo-hong ParkMin-ho Lee
    • Soo-hong ParkMin-ho Lee
    • H04J3/16
    • H04L29/12358H04L29/06H04L29/12443H04L41/12H04L61/2015H04L61/251H04L61/2542H04L69/16H04L69/167
    • A method and system establish a bi-directional tunnel through direct communication between a tunnel end point (TEP) and a user node without user assistance. The method includes: operating the user node in order to establish the bi-directional tunnel, wherein operating the user node includes: requesting network information necessary for establishing the bi-directional tunnel to the DHCP server; when the user node receives the network information from the DHCP server, establishing a unidirectional tunnel from the user node to the TEP based on the received network information; requesting one of the TEPs to establish the unidirectional tunnel; and when the user node receives a router advertisement (RA) message of a second network with which the user node wishes to communicate from the TEP required to establish the unidirectional tunnel, establishing an address of the user node in the second network.
    • 方法和系统通过隧道终点(TEP)和用户节点之间的直接通信建立双向隧道,而无需用户帮助。 该方法包括:操作用户节点以建立双向隧道,其中操作用户节点包括:请求建立到DHCP服务器的双向隧道所需的网络信息; 当所述用户节点从所述DHCP服务器接收到所述网络信息时,基于所接收的网络信息,建立从所述用户节点到所述TEP的单向隧道; 请求其中一个TEP建立单向隧道; 并且当用户节点从建立单向隧道所需的TEP接收到用户节点希望通信的第二网络的路由器通告(RA)消息时,建立第二网络中用户节点的地址。