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    • 2. 发明授权
    • User equipment connectable to an external device
    • 用户设备可连接到外部设备
    • US08949494B2
    • 2015-02-03
    • US13540112
    • 2012-07-02
    • Jae-Hun JungShin-Hyuk KangYou-Jin KangByeong-Tae KimJung-Wook LeeHyuk-Jun JungJae-Uk Cha
    • Jae-Hun JungShin-Hyuk KangYou-Jin KangByeong-Tae KimJung-Wook LeeHyuk-Jun JungJae-Uk Cha
    • G06F3/01G06F1/16G06F13/40
    • G06F1/1632G06F13/4081
    • Provided are user equipment connectable to an external device and a method for establishing a connection between user equipment including second constituent elements and an external device including first constituent elements and controlling the external device. The method may include sensing the connection to the external device, obtaining first constituent element information from the external device through the connection, wherein the first constituent element information includes information on first constituent elements of the external device, selecting target constituent elements to control from the first constituent elements of the external device based on the obtained first constituent element information, reconfiguring a control path for controlling the selected target constituent elements of the external device, and controlling the selected target constituent elements of the external device through the reconfigured control path.
    • 提供了可连接到外部设备的用户设备以及用于在包括第二组成元素的用户设备和包括第一组成元素的外部设备之间建立连接的方法以及控制外部设备的方法。 该方法可以包括感测与外部设备的连接,通过连接从外部设备获得第一组成元素信息,其中第一组成元素信息包括关于外部设备的第一组成元素的信息,从 基于所获得的第一组成元素信息,外部设备的第一组成元素,重新配置用于控制外部设备的所选择的目标组成元素的控制路径,以及通过重新配置的控制路径来控制所选择的外部设备的组成元素。
    • 5. 发明授权
    • Rotatable shelf apparatus and refrigerator having the same
    • 具有相同的可旋转搁板装置和冰箱
    • US08376483B2
    • 2013-02-19
    • US12680465
    • 2008-09-08
    • Jae-Hun Jung
    • Jae-Hun Jung
    • A47B96/02
    • F25D25/02F25D2325/021
    • A rotatable shelf apparatus and a refrigerator having the same. The refrigerator having the rotatable shelf apparatus includes a main body in which a storage space is formed, a rotatable shelf provided in the storage space to be rotated in a vertical direction, and a rotation supporting unit fixedly provided in the storage space to rotatably support the rotatable shelf. Therefore, it is possible to control the height of the storage space, to reduce the number of times of attaching and detaching the shelf in accordance with the size of accommodated food items, and to effectively utilize the storage space.
    • 一种可旋转搁架装置和具有该搁架装置的冰箱。 具有可旋转搁架装置的冰箱包括:主体,其中形成有存放空间;设置在容纳空间中的可沿垂直方向旋转的可旋转架;以及旋转支撑单元,其固定地设置在所述收纳空间中, 可旋转架 因此,可以根据所容纳的食物的尺寸来控制存放空间的高度,减少安装和拆卸搁板的次数,有效地利用存放空间。
    • 10. 发明授权
    • Photodetector using a graphene thin film and nanoparticles, and method for producing the same
    • 使用石墨烯薄膜和纳米颗粒的光电检测器及其制造方法
    • US08598568B2
    • 2013-12-03
    • US13392176
    • 2010-08-24
    • Tae-Whan KimJae-Hun JungDong-Ick SonJung-Min LeeHee-Yeon YangWon-Il Park
    • Tae-Whan KimJae-Hun JungDong-Ick SonJung-Min LeeHee-Yeon YangWon-Il Park
    • H01L31/0256
    • H01L31/035209H01L31/112H01L51/428
    • Provided are a photodetector (PD) using a graphene thin film and nanoparticles and a method of fabricating the same. The PD includes a graphene thin film having a sheet shape formed by means of a graphene deposition process using a vapor-phase carbon (C) source and a nanoparticle layer formed on the graphene thin film and patterned to define an electrode region of the graphene thin film, the nanoparticle layer being formed of nanoparticles without a matrix material. The PD has a planar structure using the graphene thin film as a channel and an electrode and using nanoparticles as a photovoltaic material (capable of forming electron-hole pairs due to photoelectron-motive force caused by ultraviolet (UV) light). Since the PD has a very simple structure, the PD may be fabricated at low cost with high productivity. Also, the PD includes the graphene thin film to reduce power consumption.
    • 提供了使用石墨烯薄膜和纳米颗粒的光电检测器(PD)及其制造方法。 PD包括具有通过使用气相碳(C)源的石墨烯沉积方法和形成在石墨烯薄膜上的纳米颗粒层形成的片状的石墨烯薄膜,并且被图案化以限定石墨烯薄膜的电极区域 膜,纳米颗粒层由不含基质材料的纳米颗粒形成。 PD具有使用石墨烯薄膜作为通道和电极的平面结构,并且使用纳米颗粒作为光伏材料(由于由紫外(UV)光引起的光电子运动能力而能够形成电子 - 空穴对)。 由于PD具有非常简单的结构,所以可以以低成本,高生产率制造PD。 此外,PD包括石墨烯薄膜以降低功耗。