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    • 1. 发明授权
    • Wire antenna
    • 线天线
    • US08797215B2
    • 2014-08-05
    • US12357402
    • 2009-01-22
    • Saou-Wen SuJui-Hung Chou
    • Saou-Wen SuJui-Hung Chou
    • H01Q1/24H01Q5/01
    • H01Q5/00H01Q1/48H01Q5/378H01Q9/16
    • A wire antenna comprises a main radiating element, a grounding element, a shorting element, and a coaxial cable. The said main radiating element and the said grounding element are linked by the said shorting element. A central conducting wire and an outer grounding conductor of the coaxial cable are electrically connected to the first and the second points on the said main radiating element and the said grounding element respectively. The main radiating element and the grounding element are all made of a single metal wire with compact size and low cost. The present invention is capable of single or dual-band operation for applications in WLAN devices.
    • 线天线包括主辐射元件,接地元件,短路元件和同轴电缆。 所述主辐射元件和所述接地元件通过所述短路元件连接。 同轴电缆的中心导线和外接地导体分别电连接到所述主辐射元件和所述接地元件上的第一和第二点。 主辐射元件和接地元件均采用单一金属线材,尺寸紧凑,成本低廉。 本发明能够对WLAN设备中的应用进行单频或双频操作。
    • 2. 发明授权
    • Dual-feed and dual-band antenna
    • 双馈和双频天线
    • US07965248B2
    • 2011-06-21
    • US12216726
    • 2008-07-10
    • Jui-Hung ChouSaou-Wen Su
    • Jui-Hung ChouSaou-Wen Su
    • H01Q1/38H01Q5/01
    • H01Q1/48H01Q5/40H01Q9/40
    • A dual-feed and dual-band antenna includes a substrate, a grounding unit disposed on the substrate and having two opposite sides, a first radiating unit disposed on the substrate near the first side of the grounding unit, and a second radiating unit disposed on the substrate near the second side. The second radiating unit has a short-circuit strip electrically connected to the grounding unit. The antenna further includes a first coaxial cable electrically connected to the first radiating unit and the grounding unit, and a second coaxial cable electrically connected to the second radiating unit and the grounding unit.
    • 双馈和双频天线包括基板,布置在基板上并具有两个相对侧的接地单元,布置在接地单元第一侧附近的基板上的第一辐射单元和设置在接地单元的第一侧上的第二辐射单元 基板靠近第二面。 第二辐射单元具有电连接到接地单元的短路带。 天线还包括电连接到第一辐射单元和接地单元的第一同轴电缆,以及电连接到第二辐射单元和接地单元的第二同轴电缆。
    • 6. 发明申请
    • SHORTED MONOPOLE ANTENNA
    • 短路单极天线
    • US20110074654A1
    • 2011-03-31
    • US12956353
    • 2010-11-30
    • SAOU-WEN SUJUI-HUNG CHOU
    • SAOU-WEN SUJUI-HUNG CHOU
    • H01Q9/04H01Q1/00
    • H01Q9/42
    • The present invention is related to a shorted monopole antenna. The antenna includes a ground portion, a radiating portion, a shorting portion, an assembling portion, and a coaxial cable. The ground portion includes a signal grounding point. The radiating portion is located above the ground portion and bent at least once, and includes a signal feeding point. One end of the shorting portion is connected to one of the short edges of the ground portion, and the other end is connected to one edge portion of the radiating portion. The assembling portion is connected to the long edge of the ground portion. The coaxial cable includes an inner conductor and an outer conductor, which are connected to the signal feeding point and the signal grounding point respectively. The antenna invented has good impedance bandwidth and radiation characteristics, can easily be installed inside the housing of an electronic device, and is well suitable for applications in wireless communications devices.
    • 本发明涉及一种短路单极天线。 天线包括接地部分,辐射部分,短路部分,组装部分和同轴电缆。 接地部分包括信号接地点。 辐射部分位于地面上方并且弯曲至少一次,并且包括信号馈送点。 短路部分的一端连接到接地部分的一个短边缘,另一端连接到辐射部分的一个边缘部分。 组装部分连接到接地部分的长边缘。 同轴电缆包括分别连接到信号馈电点和信号接地点的内导体和外导体。 发明的天线具有良好的阻抗带宽和辐射特性,可以容易地安装在电子设备的壳体内,并且非常适合于无线通信设备中的应用。
    • 8. 发明申请
    • Dual-feed and dual-band antenna
    • 双馈和双频天线
    • US20090251381A1
    • 2009-10-08
    • US12216726
    • 2008-07-10
    • Jui-Hung ChouSaou-Wen Su
    • Jui-Hung ChouSaou-Wen Su
    • H01Q1/48
    • H01Q1/48H01Q5/40H01Q9/40
    • A dual-feed and dual-band antenna includes a substrate, a grounding unit disposed on the substrate and having two opposite sides, a first radiating unit disposed on the substrate near the first side of the grounding unit, and a second radiating unit disposed on the substrate near the second side. The second radiating unit has a short-circuit strip electrically connected to the grounding unit. The antenna further includes a first coaxial cable electrically connected to the first radiating unit and the grounding unit, and a second coaxial cable electrically connected to the second radiating unit and the grounding unit.
    • 双馈和双频天线包括基板,布置在基板上并具有两个相对侧的接地单元,布置在接地单元第一侧附近的基板上的第一辐射单元和设置在接地单元的第一侧上的第二辐射单元 基板靠近第二面。 第二辐射单元具有电连接到接地单元的短路带。 天线还包括电连接到第一辐射单元和接地单元的第一同轴电缆,以及电连接到第二辐射单元和接地单元的第二同轴电缆。
    • 10. 发明申请
    • METHOD FOR CONTROLLING A PARALLEL LINE-INTERACTIVE UNINTERRUPTIBLE POWER SUPPLY SYSTEM
    • 用于控制并联线路交互式不间断电源系统的方法
    • US20130154378A1
    • 2013-06-20
    • US13326596
    • 2011-12-15
    • Kai-Tsung YANGJui-Hung ChouShih-Chien Tang
    • Kai-Tsung YANGJui-Hung ChouShih-Chien Tang
    • H02J9/00
    • H02J9/062Y10T307/625
    • A method for controlling a parallel line-interactive uninterruptible power supply (UPS) system having multiple line-interactive UPSs parallelly connected, in which each line-interactive UPS has a switching element and a power output terminal connected to a load through the switching element, has a step of acquiring a switching status from the switching element when the switching element is switched to determine next switching time of the switching element so that the switching time is adjacent to a zero phase angle point of an input voltage cycle of the mains power. The method further has the switching elements of all line-interactive UPSs switched at the same time for all the line-interactive UPSs to evenly share the load, thereby preventing the line-interactive UPSs from being damaged due to concentrated load current on single line-interactive UPS arising from dramatically different switching time of the switching elements.
    • 一种用于控制具有并联连接的多个线路交互式UPS的并行线路交互式不间断电源(UPS)系统的方法,其中每个线路交互式UPS具有通过开关元件连接到负载的开关元件和功率输出端子, 当开关元件被切换以确定开关元件的下一个开关时间,使得开关时间与主电源的输入电压周期的零相位角相邻时,具有从开关元件获取开关状态的步骤。 该方法还具有所有线路交互式UPS的开关元件同时切换,所有线路交互式UPS均匀分担负载,从而防止线路互动式UPS由于单线路上的集中负载电流而损坏, 交互式UPS产生的交换元件的切换时间大大不同。