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    • 2. 发明授权
    • Mobile radio apparatus capable of adaptive impedance matching
    • 能够进行自适应阻抗匹配的移动无线电设备
    • US07528674B2
    • 2009-05-05
    • US10594522
    • 2006-01-24
    • Akira KatoKoichi OgawaHiroshi IwaiAtsushi Yamamoto
    • Akira KatoKoichi OgawaHiroshi IwaiAtsushi Yamamoto
    • H03H7/38
    • H04B1/18
    • There is provide a mobile radio apparatus capable of suppressing a mismatching loss, and increasing a transmission/reception sensitivity by means of instantly and adaptively matching the impedance between the antenna and the transmission/reception circuit whatever situation a mobile radio apparatus, such as a mobile phone or the like, may be. In a mobile radio apparatus (1), when starting control of the matching circuit (102), a control section (105) evaluates an initial chromosome stored in a storage section (106), and if there is an initial chromosome for providing an impedance matching, controls the matching circuit (102) so as to have a load value corresponding to this initial chromosome. If there is no initial chromosome for providing the impedance matching, the control section (105) evolves the initial chromosome with a genetic algorithm, derives a chromosome for providing the impedance matching, and controls the matching circuit (102) so as to have a load value corresponding to the derived chromosome.
    • 提供一种能够抑制失配损失的移动无线电设备,并且通过立即且自适应地匹配天线和发送/接收电路之间的阻抗来增加发送/接收灵敏度,无论移动无线电设备如移动 电话等,可能是。 在移动无线电设备(1)中,当启动匹配电路(102)的控制时,控制部分(105)评估存储在存储部分(106)中的初始染色体,并且如果存在用于提供阻抗的初始染色体 匹配,控制匹配电路(102)以具有对应于该初始染色体的负载值。 如果没有用于提供阻抗匹配的初始染色体,则控制部分(105)用遗传算法演化初始染色体,导出染色体以提供阻抗匹配,并且控制匹配电路(102)以具有负载 对应于衍生染色体的值。
    • 5. 发明授权
    • Antenna and wireless device incorporating the same
    • 天线和无线设备结合在一起
    • US06633261B2
    • 2003-10-14
    • US09988716
    • 2001-11-20
    • Hiroshi IwaiAtsushi YamamotoKoichi OgawaShinji KamaeguchiTsukasa TakahashiKenichi Yamada
    • Hiroshi IwaiAtsushi YamamotoKoichi OgawaShinji KamaeguchiTsukasa TakahashiKenichi Yamada
    • H01Q138
    • H01Q1/243H01Q9/0421
    • An antenna is provided which can reconcile a low antenna resonance frequency and broadband frequency characteristics, while attaining stable impedance characteristics and enhanced design flexibility. A conductive plate is coupled to a conductive base plate via a first metal lead. A voltage is applied to the conductive plate from a supply point via a second metal lead. A conductive wall is electrically coupled to the conductive plate at one end thereof. An electromagnetic field coupling adjustment plate is electrically coupled to the other end of the conductive wall. The electromagnetic field coupling adjustment plate is disposed so as to leave a predetermined interspace between itself and the conductive base plate, thereby creating a capacitor in conjunction with the conductive base plate. The conductive wall and the electromagnetic field coupling adjustment plate are disposed so as to maximize a path length from a shot-circuiting portion (at which the conductive plate is coupled to the first metal lead) to an open end of the electromagnetic field coupling adjustment plate. Preferably, a current path extending from a supply portion (at which the conductive plate is coupled to the second metal lead) to the short-circuiting portion has a length equal to a ½ wavelength for a desired resonance frequency.
    • 提供一种能够调和低天线谐振频率和宽带频率特性的天线,同时获得稳定的阻抗特性和增强的设计灵活性。 导电板通过第一金属引线耦合到导电基板。 电压通过第二金属引线从供电点施加到导电板。 导电壁在其一端电耦合到导电板。 电磁场耦合调节板电耦合到导电壁的另一端。 电磁场耦合调节板被设置成在其与导电基板之间留出预定的间隙,从而与导电基板一起形成电容器。 导电壁和电磁场耦合调节板被设置成使从射出电路部分(导电板耦合到第一金属引线的)到电磁场耦合调节板的开口端的路径长度最大化 。 优选地,从供电部分(其中导电板耦合到第二金属引线)延伸到短路部分的电流路径具有等于所需谐振频率的1/2波长的长度。
    • 6. 发明授权
    • Antenna
    • 多谐振天线
    • US06538618B2
    • 2003-03-25
    • US09975517
    • 2001-10-12
    • Atsushi YamamotoHiroshi IwaiKoichi Ogawa
    • Atsushi YamamotoHiroshi IwaiKoichi Ogawa
    • H01Q142
    • H01Q13/18H01Q9/0421H01Q9/30H01Q9/38H01Q13/10H01Q13/106
    • An antenna is provided having a relatively simple structure as arranged capable of operating at desired frequencies. The antenna has a chassis having a grounding conductor provided as a bottom surface, a ceiling conductor provided as a top surface opposite to the grounding conductor, and side conductors provided as antenna sides. At least one opening is provided in a part of said chassis, which opens for radiation of electric waves. A feeding point provided on the grounding conductor for connection to a power supply via a predetermined feeding line from the outside. An antenna element connected to the feeding point at one end while being connected to the ceiling conductor via a frequency selectable circuit at the other end, and surrounded by the side conductors.
    • 提供具有相对简单结构的天线,其布置能够以期望的频率运行。 该天线具有底架,其具有设置为底面的接地导体,设置为与接地导体相对的顶表面的天花板导体,以及设置为天线侧的侧导体。 至少一个开口设置在所述底盘的一部分中,该开口用于电波的辐射。 馈电点设置在接地导体上,用于经由外部经过预定馈线从电源连接。 天线元件在一端连接到馈电点,同时通过另一端的频率可选择电路连接到天花板导体,并被侧导体包围。
    • 8. 发明申请
    • Mobile Radio Appartus Capable of Adaptive Impedace Matching
    • 移动无线电Appartus能够进行自适应匹配
    • US20070210899A1
    • 2007-09-13
    • US10594522
    • 2006-01-24
    • Akira KatoKoichi OgawaHiroshi IwaiAtsushi Yamamoto
    • Akira KatoKoichi OgawaHiroshi IwaiAtsushi Yamamoto
    • G05B11/01
    • H04B1/18
    • There is provide a mobile radio apparatus capable of suppressing a mismatching loss, and increasing a transmission/reception sensitivity by means of instantly and adaptively matching the impedance between the antenna and the transmission/reception circuit whatever situation a mobile radio apparatus, such as a mobile phone or the like, may be. In a mobile radio apparatus (1), when starting control of the matching circuit (102), a control section (105) evaluates an initial chromosome stored in a storage section (106), and if there is an initial chromosome for providing an impedance matching, controls the matching circuit (102) so as to have a load value corresponding to this initial chromosome. If there is no initial chromosome for providing the impedance matching, the control section (105) evolves the initial chromosome with a genetic algorithm, derives a chromosome for providing the impedance matching, and controls the matching circuit (102) so as to have a load value corresponding to the derived chromosome.
    • 提供一种能够抑制失配损失的移动无线电设备,并且通过立即且自适应地匹配天线和发送/接收电路之间的阻抗来增加发送/接收灵敏度,无论移动无线电设备如移动 电话等,可能是。 在移动无线电设备(1)中,当启动匹配电路(102)的控制时,控制部分(105)评估存储在存储部分(106)中的初始染色体,并且如果存在用于提供阻抗的初始染色体 匹配,控制匹配电路(102)以具有对应于该初始染色体的负载值。 如果没有用于提供阻抗匹配的初始染色体,则控制部分(105)用遗传算法演化初始染色体,导出染色体以提供阻抗匹配,并且控制匹配电路(102)以具有负载 对应于衍生染色体的值。
    • 10. 发明授权
    • Directivity controllable antenna and antenna unit using the same
    • 方向性可控天线和天线单元使用相同
    • US06809691B2
    • 2004-10-26
    • US10405605
    • 2003-04-03
    • Atsushi YamamotoHiroshi IwaiKoichi Ogawa
    • Atsushi YamamotoHiroshi IwaiKoichi Ogawa
    • H01Q124
    • H01Q9/0421H01Q3/24H01Q3/26H01Q13/18
    • A top conductor 11, a ground conductor 12, and side conductors 13 form an antenna box having two openings 22 and 23. Antenna elements 14 and 15 are placed inside of the antenna box, and are connected to power supply points 16 and 17, respectively. A power supply control circuit 20 has a switching function of connecting either one of the power supply points 16 and 17, to an external connecting terminal 21. Depending on the antenna element 14 or 15 being operated, the antenna has a directivity biased to a desired direction. The power supply control circuit 20 may have a signal combining/separating function, a phase shifter 26, or an amplitude adjusting circuit 27. With this, it is possible to provide a small, slim antenna capable of biasing the directivity to a desired direction and controlling the directivity even after installation.
    • 顶导体11,接地导体12和侧导体13形成具有两个开口22和23的天线盒。天线元件14和15分别放置在天线盒内部,分别连接到电源点16和17 。 电源控制电路20具有将电源点16和17中的任一个连接到外部连接端子21的切换功能。根据正在操作的天线元件14或15,天线具有偏向所需的方向性 方向。 电源控制电路20可以具有信号组合/分离功能,移相器26或幅度调整电路27.由此,可以提供能够将方向性偏向期望方向的小型,细长的天线,以及 即使安装后也可以控制方向性。