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    • 61. 发明授权
    • RFID tag
    • RFID标签
    • US07902986B2
    • 2011-03-08
    • US12285303
    • 2008-10-01
    • Ken Takei
    • Ken Takei
    • G08B13/14
    • H01Q1/2225G06K19/0775H01Q9/0407H01Q21/28
    • An RFID tag of the present invention is provided to suppress variations in the capacity component that occur during physical coupling between an antenna and a semiconductor chip as part of the manufacturing process. The RFID tag includes an antenna with a pair of electric contacts, draw-out conductors of the electric contacts, and an RFID chip with a pair of electric contacts, wherein the electric contacts of the antenna are encompassed to their corresponding electric contacts of the RFID chip, and draw-out electrodes are drawn out in an opposite direction to the facing direction overlapped direction).
    • 提供本发明的RFID标签,以抑制作为制造过程的一部分的在天线和半导体芯片之间的物理耦合期间发生的电容分量的变化。 RFID标签包括具有一对电触头的天线,电触点的拉出导体和具有一对电触头的RFID芯片,其中天线的电触点包围在其对应的RFID触点中 芯片和引出电极在与相对方向重叠方向相反的方向上被拉出)。
    • 64. 发明申请
    • Wireless monitoring system and child station therefor
    • 无线监控系统及其子站
    • US20070298716A1
    • 2007-12-27
    • US11730060
    • 2007-03-29
    • Ken Takei
    • Ken Takei
    • H04B17/00H04B1/00
    • H04B7/10
    • A wireless monitoring system using a base station and a child station, includes the base station including a base-station transmitting and a base-station receiving antenna, and the child station including a child-station receiving antenna, a nonlinear, a smoothing circuit, a first high-frequency band-pass filter, an intermediate-frequency band-pass filter, a demodulator, a baseband, a modulator, and a child-station transmitting antenna. The base-station transmitting antenna and the child-station receiving antenna include circularly-polarized antennas which have a same rotating direction, and the child-station transmitting antenna and the base-station receiving antenna include circularly-polarized antennas which have a polarization characteristic rotating in a direction opposite to the base-station transmitting antenna and the child-station receiving antenna.
    • 使用基站和子站的无线监视系统包括基站发射和基站接收天线的基站,子站包括子站接收天线,非线性,平滑电路, 第一高频带通滤波器,中频带通滤波器,解调器,基带,调制器和子站发射天线。 基站发射天线和子站接收天线包括具有相同旋转方向的圆极化天线,子站发射天线和基站接收天线包括具有偏振特性旋转的圆极化天线 在与基站发射天线和子站接收天线相反的方向上。
    • 65. 发明授权
    • System and method for detecting biological and chemical material
    • 检测生物和化学物质的系统和方法
    • US07157050B2
    • 2007-01-02
    • US10445038
    • 2003-05-27
    • Yoshiaki YazawaMasao KamahoriHideki KambaraMitsuo UsamiKen Takei
    • Yoshiaki YazawaMasao KamahoriHideki KambaraMitsuo UsamiKen Takei
    • G01N15/06
    • G01N33/54386G01N27/4145
    • A system and method are provided for detecting biological and chemical material. To measure biological materials such as genes easily at low costs, the device for implementing a small-sized, high sensitive, economical measurement apparatus is provided. Probes appropriate for target biological materials are fixed on a chip, on which a sensor, identification number, and radio communication function are implemented, the captured targets are detected by the sensors, and the result of sensing are transferred to an external control unit by the radio communication function. The small-sized, high sensitivity measurement apparatus for detecting biological and chemical materials such as genes and measuring physical and chemical amounts such as temperature, pressure, pH, and the like can be implemented.
    • 提供了用于检测生物和化学材料的系统和方法。 为了容易地以低成本测量基因等生物体材料,提供了实现小型,高灵敏度,经济的测量装置的装置。 适用于目标生物材料的探针固定在其上实现传感器,识别号和无线电通信功能的芯片上,由传感器检测捕获的目标,并且通过传感器将感测结果传送到外部控制单元 无线电通信功能。 可以实现用于检测诸如基因的生物和化学材料以及测量物理和化学量如温度,压力,pH等的小尺寸,高灵敏度的测量装置。
    • 67. 发明授权
    • Wireless communication method and system using beam direction-variable antenna
    • 无线通信方法和系统采用波束方向可变天线
    • US06879845B2
    • 2005-04-12
    • US09930134
    • 2001-08-16
    • Toshiro SuzukiKen TakeiSatoshi TakahashiHiroshi UsamiYuuji Ishida
    • Toshiro SuzukiKen TakeiSatoshi TakahashiHiroshi UsamiYuuji Ishida
    • H04B7/02H04W16/28H04M1/00
    • H04W16/28
    • In a time-division multiplexing wireless communication system, an antenna module has plural antenna elements. Receiver high-frequency circuit synthesizes signals from the antenna elements according to an antenna directivity having a desired beam pattern. Demodulator selects one of the received signals from wireless terminals according to the synthesized received signals, and determines transmission beam direction information for use in directing the beam in the selected direction. Weighting circuit generates weight coefficients for setting of the beam patterns and transmission beam directions according to the transmission beam direction information, and produces transmission time slots according to a table listing the relations of the transmission beam directions and the time slots for use in the beam radiation in those directions. Down-link fixed beam-forming circuit and modulator control the antenna module using the generated beam pattern, beam direction and transmission time slots to transmit the down-link signal.
    • 在时分复用无线通信系统中,天线模块具有多个天线元件。 接收机高频电路根据具有所需波束图案的天线方向性从天线元件合成信号。 解调器根据合成的接收信号从无线终端选择一个接收到的信号,并且确定用于将波束指向所选方向的传输波束方向信息。 加权电路根据传输波束方向信息产生用于设置波束图案和传输波束方向的加权系数,并根据列出发射波束方向与用于波束辐射的时隙的关系的表产生传输时隙 在这些方向。 下行链路固定波束形成电路和调制器使用生成的波束图案,波束方向和传输时隙来控制天线模块,以发送下行链路信号。
    • 68. 发明授权
    • Multi-carrier RF amplifiers
    • 多载波射频放大器
    • US06750707B2
    • 2004-06-15
    • US10066694
    • 2002-02-06
    • Ken TakeiKenji Sekine
    • Ken TakeiKenji Sekine
    • H03F368
    • H03F3/602H03F2200/372
    • Apparatus including input ports for inputting a plurality of input signals different in frequency of carrier from one another, dividers for respectively dividing each of the plurality of input signals inputted to the input ports into plural form, and phase shifters for respectively assigning a weight of phase to each of divided signals corresponding to a number obtained by subtracting 1 from the number of divisions. A plurality of first combiners are provided for respectively adding up the signals different in the frequency of carrier, out of the divided signals and signals each assigned the weight of phase, a plurality of amplifiers are provided for respectively amplifying signals outputted from the plurality of first combiners, and a second combiner is provided for adding signals outputted from the plurality of amplifiers to output one signal.
    • 一种装置,包括用于输入载波频率不同的多个输入信号的输入端口,用于将输入到输入端口的多个输入信号中的每一个分别分割为多个形状的分频器,以及用于分别分配相位重量的移相器 对应于通过从分割数减去1获得的数字的每个分割信号。 提供了多个第一组合器,用于分别加载载波频率不同的信号,分离的信号和每个分配了相位权重的信号,提供多个放大器,用于分别放大从多个第一 组合器和第二组合器,用于添加从多个放大器输出的信号以输出一个信号。
    • 69. 发明授权
    • Wireless handset
    • 无线手机
    • US06466774B1
    • 2002-10-15
    • US09663206
    • 2000-09-18
    • Hiroshi OkabeKen Takei
    • Hiroshi OkabeKen Takei
    • H04B118
    • H01Q1/243
    • A novel wireless handset is provided which can provide control so as to tune a center frequency of impedance matching of a tunable antenna to a call frequency. A first control signal sent from the central processing unit 51 to the synthesizer 41 or data used in the central processing unit to generate the first control signal is used to generate a second control signal by the central processing unit or the control signal generator 52 provided in the outside connected with the central processing unit, and the second control signal is applied to the control circuit 30 for center frequency of impedance matching, whereby center frequencies of impedance matching of the tunable antenna 10 are controlled.
    • 提供了一种新颖的无线手机,其可以提供控制以便调谐可调谐天线的阻抗匹配的中心频率到呼叫频率。从中央处理单元51发送到合成器41的第一控制信号或在中心使用的数据 用于产生第一控制信号的处理单元用于由设置在与中央处理单元连接的外部的中央处理单元或控制信号发生器52产生第二控制信号,并且第二控制信号被施加到控制电路30 用于阻抗匹配的中心频率,从而控制可调谐天线10的阻抗匹配的中心频率。