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    • 1. 发明授权
    • Input device
    • 输入设备
    • US08000597B2
    • 2011-08-16
    • US12652487
    • 2010-01-05
    • Tsutomu TakeyaYasunoi SasakiTakashi OnoderaKeiji Ito
    • Tsutomu TakeyaYasunoi SasakiTakashi OnoderaKeiji Ito
    • G03B17/00H03K17/94H03M11/00
    • H03K17/97G02B7/102G03B17/02H01H2025/004H03K2217/94068
    • An input device for zooming and shutter releasing includes a shutter release button; a pressing protrusion; a tact switch located on a substrate and configured to be pressed when the shutter release button is pressed downward; a rotary member rotatably supported at the periphery of the shutter release button; a magnet configured to be rotated in association with rotation of the rotary member, the magnet having a through hole at the center thereof, the pressing protrusion supported to extend through the through hole; and a magnetic sensor located at a position to face the through hole in the height direction and configured to detect a rotational magnetic field that is generated by the magnet because of the rotation of the rotary member, the tact switch and the magnetic sensor arranged side by side on the substrate.
    • 用于变焦和快门释放的输入装置包括快门释放按钮; 按压突起; 位于基板上并配置为当快门释放按钮向下按压时被按压的触觉开关; 可旋转地支撑在快门释放按钮的周边的旋转部件; 配置成与所述旋转构件的旋转相关联地旋转的磁体,所述磁体在其中心具有通孔,所述按压突起被支撑成延伸穿过所述通孔; 以及磁传感器,位于与高度方向相对的贯通孔的位置,由于旋转体的旋转,触觉开关和磁性传感器的排列方向被检测由磁铁产生的旋转磁场, 一侧在基板上。
    • 2. 发明申请
    • INPUT DEVICE
    • 输入设备
    • US20100104275A1
    • 2010-04-29
    • US12652487
    • 2010-01-05
    • Tsutomu TakeyaYasunori SasakiTakashi OnoderaKeiji Ito
    • Tsutomu TakeyaYasunori SasakiTakashi OnoderaKeiji Ito
    • G03B17/00G01R1/02G01R33/06
    • H03K17/97G02B7/102G03B17/02H01H2025/004H03K2217/94068
    • An input device for zooming and shutter releasing includes a shutter release button; a pressing protrusion; a tact switch located on a substrate and configured to be pressed when the shutter release button is pressed downward; a rotary member rotatably supported at the periphery of the shutter release button; a magnet configured to be rotated in association with rotation of the rotary member, the magnet having a through hole at the center thereof, the pressing protrusion supported to extend through the through hole; and a magnetic sensor located at a position to face the through hole in the height direction and configured to detect a rotational magnetic field that is generated by the magnet because of the rotation of the rotary member, the tact switch and the magnetic sensor arranged side by side on the substrate.
    • 用于变焦和快门释放的输入装置包括快门释放按钮; 按压突起; 位于基板上并配置为当快门释放按钮向下按压时被按压的触觉开关; 可旋转地支撑在快门释放按钮的周边的旋转部件; 配置成与所述旋转构件的旋转相关联地旋转的磁体,所述磁体在其中心具有通孔,所述按压突起被支撑成延伸穿过所述通孔; 以及磁传感器,位于与高度方向相对的贯通孔的位置,由于旋转体的旋转,触觉开关和磁性传感器的排列方向被检测由磁体产生的旋转磁场, 一侧在基板上。
    • 6. 发明申请
    • WIRELESS COMMUNICATION SYSTEM, BASE STATION DEVICE, AND TERMINAL DEVICE
    • 无线通信系统,基站设备和终端设备
    • US20130336418A1
    • 2013-12-19
    • US14002616
    • 2012-03-02
    • Hiromichi TomebaTakashi OnoderaHiroshi NakanoAlvaro Ruiz DelgadoShimpei To
    • Hiromichi TomebaTakashi OnoderaHiroshi NakanoAlvaro Ruiz DelgadoShimpei To
    • H04B7/04
    • H04B7/0482H04B7/0452H04B7/0465H04B7/0632H04B7/0697H04L1/0003
    • A terminal device notifies a base station device about control information associated with a receive quality of the terminal device. The base station device performs data modulation on a plurality of pieces of transmit data for the terminal device, by using a plurality of different data modulation schemes one by one, based on the control information, and spatially multiplexes the plurality of pieces of transmit data after the data modulation over a single wireless resource and transmits a spatially multiplexed signal. The terminal device receives the signal with the plurality of pieces of transmit data spatially multiplexed, and detects desirable transmit data from the receive signal, based on a first channel matrix which represents channel state information between the base station device and the terminal device and a second channel matrix in which the first channel matrix is multiplied by a transform matrix. Accordingly, an adaptive modulation technology is applied even to MIMO spatial multiplexing transmission using a LR technology, and hence a wireless communication system and so forth that can contribute to improvement in frequency utilization efficiency can be provided.
    • 终端装置向基站装置通知与终端装置的接收质量有关的控制信息。 基站装置基于控制信息,通过使用多个不同的数据调制方案,对终端装置的多条发送数据进行数据调制,并且将多条发送数据在 通过单个无线资源进行数据调制,并发送空间复用信号。 终端设备接收具有多个发送数据的信号进行空间复用,并且基于表示基站设备与终端设备之间的信道状态信息的第一信道矩阵和第二信道矩阵,从接收信号中检测期望的发送数据 信道矩阵,其中第一信道矩阵乘以变换矩阵。 因此,利用LR技术甚至可以应用自适应调制技术进行MIMO空间复用传输,因此可以提供有助于提高频率利用效率的无线通信系统等。
    • 9. 发明申请
    • RECEIVING APPARATUS, TRANSMITTING APPARATUS AND WIRELESS COMMUNICATION SYSTEM USING THEM
    • 接收装置,发送装置和无线通信系统
    • US20130070871A1
    • 2013-03-21
    • US13700949
    • 2011-05-27
    • Shimpei ToTakashi OnoderaKozue HirataHiroshi NakanoHiromichi Tomeba
    • Shimpei ToTakashi OnoderaKozue HirataHiroshi NakanoHiromichi Tomeba
    • H04B7/06
    • H04B7/0697H04B7/0452H04B7/0465H04B7/0626
    • When spatial multiplexing is performed to any of a plurality of receiving antennas included in each terminal, it becomes possible to obtain excellent receiving characteristics by combining signals received by all antennas appropriately. A receiving antenna unit 28 receives channel state information from each terminal, a channel matrix H is obtained. A transmit weight/interference coefficient calculation unit 24 calculates a transmit weight and an interference coefficient based on channel matrix. The transmit weight is input to transmit weight multiplication units 17 and 23. The interference generation unit 15 generates an interference signal based on the interference coefficient. An interference subtraction unit 13 subtracts the interference signal from a desired signal. A modulo unit 14 adds a signal so that amplitude of an information signal output from the interference subtraction unit 13 falls within a constant range. A signal multiplexing unit 18 performs spatial multiplexing to the signal performed nonlinear arithmetic.
    • 当对每个终端中包括的多个接收天线中的任何一个进行空间复用时,通过适当地组合由所有天线接收的信号,可以获得良好的接收特性。 接收天线单元28从每个终端接收信道状态信息,获得信道矩阵H. 发送权重/干扰系数计算单元24基于信道矩阵来计算发送权重和干扰系数。 发送权重被输入到发送权重乘法单元17和23.干扰生成单元15基于干扰系数产生干扰信号。 干扰减除单元13从期望的信号中减去干扰信号。 模数单元14添加信号,使得从干扰减除单元13输出的信息信号的幅度落在一定范围内。 信号复用单元18对所执行的非线性运算进行空间复用。
    • 10. 发明授权
    • Communication apparatus, multicarrier communication system and communication method
    • 通信装置,多载波通信系统和通信方法
    • US08249179B2
    • 2012-08-21
    • US12739707
    • 2008-10-08
    • Takashi OnoderaYasuhiro Hamaguchi
    • Takashi OnoderaYasuhiro Hamaguchi
    • H03D1/04H03D1/06H03K5/01H03K6/04H04B1/10H04L1/00H04L25/08
    • H04L1/20H04L1/0026H04L1/003H04L5/0046H04L5/0053
    • To efficiently perform adaptive modulation and adaptive scheduling in a communication control apparatus, while suppressing the total notified amount of reception quality information, provided is a communication terminal apparatus 300 which is applied to a multicarrier communication scheme in which the apparatus receives a signal on a channel allocated by a communicating party among a plurality of channels each comprised of at least one subcarrier, measures reception quality of the received signal, and notifies the communicating party of reception quality information, and has a reception quality measuring section 308 that measures reception quality of each subcarrier, and a reception quality information generating section 309 which determines an allocation request degree of each channel with respect to the communicating party, selects an information amount to represent reception quality information for each channel based on the allocation request degree, and based on the measured reception quality, generates the reception quality information represented by the selected information amount.
    • 为了在通信控制装置中有效地执行自适应调制和自适应调度,在抑制接收质量信息的总通知量的同时,提供了应用于多载波通信方案的通信终端装置300,其中装置在信道上接收信号 由通信对方在由至少一个子载波构成的多个信道中分配,测量接收信号的接收质量,并且向通信对方通知接收质量信息,并且具有测量各接收质量信息的接收质量的接收质量测量部分308 以及接收质量信息生成部309,其根据通信对方确定每个信道的分配请求度,根据分配请求度,根据所测量的各个信道,选择表示每个信道的接收品质信息的信息量 招待会 离子质量,生成由所选择的信息量表示的接收质量信息。