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    • 2. 发明授权
    • Antenna device and signal receiving method
    • 天线装置和信号接收方法
    • US08035571B2
    • 2011-10-11
    • US12222920
    • 2008-08-19
    • Masaki NishioTakayoshi Ito
    • Masaki NishioTakayoshi Ito
    • H01Q11/00
    • H01Q1/2266H01Q9/0421H01Q9/30H01Q21/293H01Q25/00H04B1/126
    • An example antenna device includes a conductive ground plane and first and second antenna elements connected to the conductive ground plane through first and second feeding points, respectively. Directivities of the first and second antenna elements are arranged to be approximately perpendicular to each other. A phase adjusting circuit is configured to provide a phase difference of approximately 180 degrees between first and second received signals by the first and second antenna elements, respectively and a combining circuit is configured to combine the first and second received signals having a phase difference of approximately 180 degrees therebetween to obtain a combined signal. A radio unit is configured to process the combined signal.
    • 示例性天线装置包括导电接地平面和分别通过第一和第二馈电点连接到导电接地平面的第一和第二天线元件。 第一和第二天线元件的方向性被布置成彼此大致垂直。 相位调整电路被配置为分别通过第一和第二天线元件在第一和第二接收信号之间提供约180度的相位差,并且组合电路被配置为组合具有大致相位差的第一和第二接收信号 180度,以获得组合信号。 无线电单元被配置为处理组合信号。
    • 3. 发明授权
    • Structure of 3D inverted F-antenna
    • 3D倒F型天线的结构
    • US07053855B2
    • 2006-05-30
    • US10747208
    • 2003-12-30
    • Wen-Man Huang
    • Wen-Man Huang
    • H01Q11/00H01Q1/48
    • H01Q9/0442H01Q1/243H01Q9/0421H01Q9/0464
    • Disclosed is a 3D inverted F-antenna for easy production, fast assembly, wider bandwidth that provides excellent capacity of radiating and receiving wireless signal inside wireless communication devices. The 3D inverted F-antenna includes a ground plate. A radiating plate has a hole wherein the dimensions of the radiating plate and the hole are decided by ½ of the predetermined resonance wavelength. A shorting unit is connected to the ground plate and the radiating plate. A media is located between the ground plate and the radiating plate for isolating the ground plate and the radiating plate. A conductive signal feeding device is located in the ground plate and electrically coupled to the radiating plate for transmitting signal.
    • 公开了一种3D倒F型天线,便于生产,组装快捷,带宽更宽,为无线通信设备内无线信号的辐射和接收提供了极好的能力。 3D倒F形天线包括接地板。 散热板具有孔,其中辐射板和孔的尺寸由预定谐振波长的1/2确定。 短路单元连接到接地板和散热板。 介质位于接地板和辐射板之间,用于隔离接地板和辐射板。 导电信号馈送装置位于接地板中并电耦合到辐射板用于发射信号。
    • 4. 发明授权
    • Microwave oven antenna
    • 微波炉天线
    • US3971909A
    • 1976-07-27
    • US563646
    • 1975-03-31
    • William L. Wallick
    • William L. Wallick
    • H01Q11/00H05B6/72H05B9/06
    • H05B6/72H01Q11/00
    • The present invention is an improved antenna for radiating microwave energy in a microwave oven chamber. The improved antenna has a ground strap and shortening plate disposed a specified distance from the microwave energy feed point. The ground strap and shorting plate vectorally modify the phase angle of radiation such that the main beam of microwave energy is directed toward the cooking surface rather than toward the door and door seal. This eliminates hot spots on the door and provides for a better distribution of microwave energy within the oven chamber.
    • 本发明是一种用于在微波炉室内辐射微波能量的改进天线。 改进的天线具有布置在与微波能量馈送点特定距离的接地带和缩短板。 接地带和短路板以矢量方式修改辐射的相位角,使得主波束的微波能量指向烹饪表面而不是朝向门和门的密封。 这消除了门上的热点,并且提供了在烤箱室内更好地分布微波能量。
    • 6. 发明授权
    • Antenna
    • 天线
    • US09030368B2
    • 2015-05-12
    • US13919990
    • 2013-06-17
    • Wistron NeWeb Corporation
    • Chung-Hung ChenChih-Sen HsiehChih-Ming Wang
    • H01Q11/00H01Q5/00
    • H01Q5/30H01Q5/307
    • An antenna for receiving radio signals of at least a first frequency band and a second frequency band includes a grounding unit for providing grounding, a connecting unit electrically connected to a first terminal of the grounding unit, a feeding terminal, formed on the connecting unit, for transmitting the radio signals of the first frequency band and the second frequency band, a first radiating element electrically connected between the connecting unit and a second terminal of the grounding unit, and a second radiating element electrically connected between the connecting unit and a third terminal of the grounding unit. Lengths of signal routes from the feeding terminal through the first radiating element and the second radiating element to the grounding unit are substantially equal to a half wavelength of the radio signals of the first frequency band and a half wavelength of the radio signals of the second frequency band, respectively.
    • 用于接收至少第一频带和第二频带的无线电信号的天线包括用于提供接地的接地单元,电连接到接地单元的第一端子的连接单元,形成在连接单元上的馈电端子, 用于发送第一频带和第二频带的无线电信号,电连接在连接单元和接地单元的第二端子之间的第一辐射元件,以及电连接在连接单元和第三端子之间的第二辐射元件 的接地单元。 从馈电端子通过第一辐射元件和第二辐射元件到接地单元的信号路径的长度基本上等于第一频带的无线电信号的半波长和第二频率的无线电信号的半波长 频带。
    • 7. 发明授权
    • Leaky-wave dual-antenna system
    • 漏波双天线系统
    • US07982681B2
    • 2011-07-19
    • US12339023
    • 2008-12-18
    • Chi-Ho ChangFeng-Ling LiuPei-Ji YangMin-Fang Lo
    • Chi-Ho ChangFeng-Ling LiuPei-Ji YangMin-Fang Lo
    • H01Q11/00H01Q21/00
    • H01Q1/525H01Q13/20
    • The invention discloses a leaky-wave dual-antenna system comprising a transmitting antenna array and a receiving antenna array. The transmitting antenna array comprises plural first microstrips and plural corresponding first differential circuits, and each of the first differential circuit matches the corresponding first microstrip by a L-type matching network; the receiving antenna array comprises plural second microstrips and plural corresponding second differential circuits, and each of the second differential circuit matches the corresponding second microstrip by a L-type matching network. A first end and a second end of each of the first differential circuits are respectively connected to the corresponding first microstrip; a third end and a fourth end of each of the second differential circuits are respectively connected to the corresponding second microstrip.
    • 本发明公开了一种包括发射天线阵列和接收天线阵列的漏波双天线系统。 发射天线阵列包括多个第一微带和多个对应的第一差分电路,并且第一差分电路中的每一个通过L型匹配网络匹配相应的第一微带; 接收天线阵列包括多个第二微带和多个对应的第二差分电路,并且每个第二差分电路通过L型匹配网络匹配相应的第二微带。 每个第一差分电路的第一端和第二端分别连接到对应的第一微带; 每个第二差分电路的第三端和第四端分别连接到对应的第二微带。