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    • 63. 发明申请
    • IMAGE PICKUP DEVICE AND SOLID-STATE IMAGE PICKUP ELEMENT
    • 图像拾取器件和固态图像拾取元件
    • US20110254985A1
    • 2011-10-20
    • US13142021
    • 2010-10-04
    • Masao HiramotoMasayuki MisakiTeruyuki TakizawaMasaaki Suzuki
    • Masao HiramotoMasayuki MisakiTeruyuki TakizawaMasaaki Suzuki
    • H04N5/335
    • G03B11/00H04N5/2254H04N5/349
    • The solid-state image sensor of this invention includes an array of pixels and light-transmitting portions 30a, 30b, 30c, 30d. The array is divided into unit pixel blocks, each of which is made up of N pixels (where N is an integer that is equal to or greater than two). The light-transmitting portions are arranged so that each light-transmitting portion faces an associated one of the pixels. Each of the light-transmitting portions is divided into M striped areas (where M is an integer that is equal to or greater than two). The respective areas have had their optical transmittances set independently of each other. The arrangement pattern of the optical transmittances of the light-transmitting portions 30a, 30b, 30c, 30d vary from one block to another. The image capture device of the invention further includes a shifting section for shifting the image in a first direction on an imaging area, and reads pixel signals before and after the image is shifted, thereby generating an image, of which the resolution is higher than what is defined by the pixel pitch.
    • 本发明的固态图像传感器包括像素阵列和透光部分30a,30b,30c,30d。 该阵列被划分为单位像素块,每个像素块由N个像素(其中N是等于或大于2的整数)组成。 透光部分被布置成使得每个光透射部分面向相关联的像素之一。 每个发光部分被分成M个条纹区域(其中M是等于或大于2的整数)。 各个区域的光传输距离彼此独立。 透光部分30a,30b,30c,30d的光学透射率的布置图案从一个块到另一个不同。 本发明的图像捕获装置还包括一个移位部分,用于在成像区域上沿第一方向移动图像,并且在图像移位之前和之后读取像素信号,从而生成分辨率高于图像的图像 由像素间距定义。
    • 66. 发明授权
    • Mobile station apparatus and transmission power control method for the same apparatus
    • 用于同一设备的移动站装置和发射功率控制方法
    • US07751846B2
    • 2010-07-06
    • US11704319
    • 2007-02-09
    • Masaaki Suzuki
    • Masaaki Suzuki
    • H04Q7/20
    • H04W52/40
    • The present invention relates to a mobile station apparatus and a transmission power control method for the same apparatus, capable of improving the decision accuracy in a mobile station with respect to a TPC command from a base station to the mobile station and of maintaining the optimum transmission power. In the mobile station which is made to control the transmission power to the base station on the basis of a TPC command received from the base station, a plurality of TPC commands received from a plurality of base stations are weighting-combined so as to control the transmission power to the base stations on the basis of a result of the weighting combination.
    • 本发明涉及一种用于同一装置的移动站装置和发射功率控制方法,其能够提高移动台相对于从基站到移动台的TPC命令的判定精度,并且维持最佳传输 功率。 在基于从基站接收的TPC命令来控制对基站的发送功率的移动台中,从多个基站接收到的多个TPC命令进行加权组合,以控制 基于加权组合的结果向基站发送功率。
    • 67. 发明授权
    • Mobile station and weighting control method
    • 移动台和加权控制方法
    • US07583981B2
    • 2009-09-01
    • US11166034
    • 2005-06-24
    • Masaaki Suzuki
    • Masaaki Suzuki
    • H04B1/04
    • H04B7/0619H04B7/022H04B7/0634H04B7/0654H04B7/0689H04W52/40
    • In a first state in which the same voice data is being received from a plurality of base stations on a first channel (DPCH) and a packet is not being received on a second channel (HS-PDSCH), weight is decided in such a manner that first weighting is applied to signals received from respective ones of the base stations and prescribed control is performed based upon the signals to which the first weighting has been applied. In a second state in which the same voice data is being received from a plurality of base stations on the first channel and a packet is not being received on the second channel, weight is decided in such a manner that second weighting is applied to signals received from respective ones of the base stations and prescribed control is performed based upon the signals to which the second weighting has been applied. When the second state has changed to the first state, transition time (protection time) TMR at which there is a transition from second weighting to first weighting is controlled adaptively.
    • 在第一状态下,从第一信道(DPCH)上的多个基站接收到相同的语音数据,并且在第二信道(HS-PDSCH)上没有接收到分组,则以这样的方式确定权重 第一加权应用于从各个基站接收的信号,并且基于施加了第一加权的信号来执行规定的控制。 在第二状态中,从第一信道上的多个基站接收到相同的语音数据,并且在第二信道上没有接收到分组,以这样的方式确定权重,即对所接收的信号应用第二加权 基于相应的基站和规定的控制,基于已经应用了第二加权的信号来执行。 当第二状态变为第一状态时,自适应地控制从第二加权到第一加权的转变的转换时间(保护时间)TMR。
    • 70. 发明申请
    • Method and apparatus for radio communication
    • 无线电通信的方法和装置
    • US20080123567A1
    • 2008-05-29
    • US11987089
    • 2007-11-27
    • Masaaki Suzuki
    • Masaaki Suzuki
    • H04B7/00
    • H04L1/1867H04L1/1614H04L1/1628H04L1/1803H04L1/1822H04L1/1825H04L1/1829
    • A radio communication system includes a first radio communication apparatus which transmits signals according to cyclic process numbers and a second radio communication apparatus which receives the signals and aims at reducing the possibility of misrecognition occurrence on a reception result (ACK/NACK information). The second radio communication apparatus add the second information element (Other ACK/NACK information element) indicating a reception result of a received signal of another process number to the first information element (Own ACK/NACK information element) indicating a reception result of a received signal of a certain process number, which information elements are transmitted to the first radio communication apparatus. The first radio communication apparatus judges a reception result of the transmitted signal on the basis of the first and the second information elements received from the second radio communication apparatus.
    • 无线电通信系统包括根据循环处理号发送信号的第一无线电通信装置和接收信号并旨在减少接收结果(ACK / NACK信息)上的错误识别发生的可能性的第二无线电通信装置。 第二无线通信装置将表示接收到的接收信号的接收结果的第二信息元素(其他ACK / NACK信息单元)附加到表示接收到的接收结果的第一信息单元(自己的ACK / NACK信息单元) 信号,哪个信息元素被发送到第一无线电通信装置。 第一无线通信装置根据从第二无线通信装置接收到的第一信息要素和第二信息要素,判定发送信号的接收结果。