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    • 1. 发明授权
    • Method for manufacturing antenna
    • 天线制造方法
    • US08438719B2
    • 2013-05-14
    • US12188963
    • 2008-08-08
    • Hyun Hak KimJoong Han YoonJae Chan LeeGi Ho HanDong Hyun KimSeok Min Woo
    • Hyun Hak KimJoong Han YoonJae Chan LeeGi Ho HanDong Hyun KimSeok Min Woo
    • H01P11/00
    • H01P11/003Y10T29/49016Y10T29/49018
    • Provided is a method for manufacturing an antenna which is minimized and used in a low frequency band. The method includes forming and preparing a radiator for an antenna, mounting the radiator inside a dam molding part including an upper dam molding part and a lower dam molding part, injecting a molding material into the dam molding part through an inlet provided at one side of the dam molding part, the molding material including a composite material with a controlled diameter and content, hardening the injected molding material, and separating the hardened molding material covering the radiator from the dam molding part. Accordingly, a miniaturized antenna can be provided, which can achieve a high integration density, prevent deformation of the radiator caused by external pressure generated in processes, and be used in a low frequency band by covering the radiator with a molding material having a high permittivity and a low-loss characteristic.
    • 提供一种在低频带中最小化并使用的天线的制造方法。 该方法包括形成和制备用于天线的散热器,将散热器安装在包括上坝模制部分和下坝模塑部分的坝模成型部分内,通过设置在坝模成型部分的一侧的入口 该模塑材料包括具有受控直径和含量的复合材料,使注入的模制材料硬化,以及将覆盖散热器的硬化模制材料与坝模制部分分离。 因此,可以提供小型化的天线,其能够实现高的集成密度,防止由于工艺中产生的外部压力而引起的散热器的变形,并且通过用具有高介电常数的成型材料覆盖散热器来在低频带中使用 和低损耗特性。
    • 2. 发明申请
    • METHOD FOR MANUFACTURING ANTENNA
    • 制造天线的方法
    • US20090038141A1
    • 2009-02-12
    • US12188963
    • 2008-08-08
    • Hyun Hak KIMJoong Han YoonJae Chan LeeGi Ho HanDong Hyun KimSeok Min Woo
    • Hyun Hak KIMJoong Han YoonJae Chan LeeGi Ho HanDong Hyun KimSeok Min Woo
    • H01P11/00G06K19/06
    • H01P11/003Y10T29/49016Y10T29/49018
    • Provided is a method for manufacturing an antenna which is minimized and used in a low frequency band. The method includes forming and preparing a radiator for an antenna, mounting the radiator inside a dam molding part including an upper dam molding part and a lower dam molding part, injecting a molding material into the dam molding part through an inlet provided at one side of the dam molding part, the molding material including a composite material with a controlled diameter and content, hardening the injected molding material, and separating the hardened molding material covering the radiator from the dam molding part. Accordingly, a miniaturized antenna can be provided, which can achieve a high integration density, prevent deformation of the radiator caused by external pressure generated in processes, and be used in a low frequency band by covering the radiator with a molding material having a high permittivity and a low-loss characteristic.
    • 提供一种在低频带中最小化并使用的天线的制造方法。 该方法包括形成和制备用于天线的散热器,将散热器安装在包括上坝模制部分和下坝模塑部分的坝模成型部分内,通过设置在坝模成型部分的一侧的入口 该模塑材料包括具有受控直径和含量的复合材料,使注入的模制材料硬化,以及将覆盖散热器的硬化模制材料与坝模制部分分离。 因此,可以提供小型化的天线,其能够实现高的集成密度,防止由于工艺中产生的外部压力而引起的散热器的变形,并且通过用具有高介电常数的成型材料覆盖散热器来在低频带中使用 和低损耗特性。
    • 8. 发明授权
    • Multi-ban U-slot antenna
    • 多频段U槽天线
    • US07605769B2
    • 2009-10-20
    • US11735868
    • 2007-04-16
    • Jae Chan LeeJong Won YuWang Sang LeeHyun Hak Kim
    • Jae Chan LeeJong Won YuWang Sang LeeHyun Hak Kim
    • H01Q13/10H01Q15/24
    • H01Q13/106H01Q9/30H01Q9/40
    • In a multi-band U-slot planar antenna, a limited ground plane is provided. A connector includes a ground terminal connected to the ground plane and a feeding terminal for feeding a signal. A planar radiation device includes a feeding point connected to the feeding terminal, a central U-slot having a symmetrical configuration about a central axis thereof, the central axis extending vertically from the feeding point, and at least one pair of auxiliary U-slots symmetrical with each other about the central axis. In the multi-band U-slot planar antenna, alternatively, at least one auxiliary U-slot may have a symmetrical configuration about the central axis.
    • 在多频带U形槽平面天线中,提供有限的接地平面。 连接器包括连接到接地平面的接地端子和用于馈送信号的馈电端子。 平面辐射装置包括连接到馈电端子的馈电点,具有围绕其中心轴线对称构造的中心U形槽,中心轴线从馈电点垂直延伸,并且至少一对辅助U形槽对称 彼此围绕中心轴线。 在多频带U形槽平面天线中,备选地,至少一个辅助U槽可以具有围绕中心轴的对称构造。
    • 10. 发明授权
    • Multi-band antenna and mobile communication terminal having the same
    • 具有相同的多频带天线和移动通信终端
    • US07564413B2
    • 2009-07-21
    • US12026373
    • 2008-02-05
    • Hyun Hak KimJong Kweon ParkJung Nam LeeJae Chan Lee
    • Hyun Hak KimJong Kweon ParkJung Nam LeeJae Chan Lee
    • H01Q1/24
    • H01Q1/243H01Q5/371H01Q9/0421H01Q13/10
    • There is provided a mobile communication terminal including: a dielectric substrate; a ground surface formed on a first area of the dielectric substrate; a radiation part disposed on a second area where the ground surface is not formed, at a predetermined distance from the dielectric substrate, the radiation part having first and second slots formed thereon; a feeding line formed on the second area of the dielectric substrate and having one end connected to the radiation part; a ground line disposed on the second area of the dielectric substrate at a predetermined distance from the feeding line and having one end connected to the radiation part and another end connected to the ground surface; and a matching ground surface formed on the second area of the dielectric substrate, the matching ground surface disposed in a superimposed relationship with a portion of the radiation part and extending from the ground surface to be capacitively coupled to the radiation part.
    • 提供了一种移动通信终端,包括:电介质基板; 形成在电介质基板的第一区域上的接地面; 辐射部,其设置在距离所述电介质基板预定距离处的未形成所述接地面的第二区域,所述辐射部具有形成在其上的第一和第二狭槽; 馈电线,其形成在所述电介质基板的所述第二区域上并且具有连接到所述辐射部分的一端; 布置在电介质基板的第二区域上的接地线,距电源线一预定的距离,其一端连接到辐射部分,另一端连接到地表面; 以及形成在所述电介质基板的所述第二区域上的匹配接地表面,所述匹配接地表面与所述辐射部分的一部分重叠地设置并且从所述接地表面延伸以电容耦合到所述辐射部分。