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    • 12. 发明申请
    • DUPLEXER MODULE
    • 双机模块
    • US20110279177A1
    • 2011-11-17
    • US13191661
    • 2011-07-27
    • Koji FURUTANIDaisuke YOSHIDAYuji TAKEMATSU
    • Koji FURUTANIDaisuke YOSHIDAYuji TAKEMATSU
    • H03F1/00H01P5/12
    • H04B1/52H04B1/44H04B2001/0416
    • A duplexer module prevents a transmission signal and a reception signal in the same band from interfering with each other. The duplexer module includes a transmission line, a reception line, and an antenna common line. In addition, the duplexer module includes a plurality of mounting electrodes arranged along the four sides of an outer edge of a mounting surface of a multilayer substrate. The fourth mounting electrode defining a monitoring port is disposed on a side different from a side on which each of the first mounting electrode defining a transmission port, the second mounting electrode defining a reception port, and the third mounting electrode defining an antenna port is disposed. The fourth mounting electrode defining the monitoring port is a mounting electrode used to output a signal of the monitoring line through which a portion of electrical power is transmitted from the transmission line.
    • 双工器模块防止相同频带中的发送信号和接收信号彼此干扰。 双工器模块包括传输线,接收线和天线公共线。 此外,双工器模块包括沿着多层基板的安装表面的外边缘的四边布置的多个安装电极。 限定监视端口的第四安装电极设置在与限定传输端口的第一安装电极,限定接收端口的第二安装电极和限定天线端口的第三安装电极的一侧不同的一侧 。 限定监视端口的第四安装电极是用于输出监视线路的信号的安装电极,通过该监视线路从传输线路传输一部分电力。
    • 13. 发明申请
    • IMAGE SENSING APPARATUS AND CONTROL METHOD THEREOF
    • 图像感测装置及其控制方法
    • US20110052173A1
    • 2011-03-03
    • US12860052
    • 2010-08-20
    • Daisuke Yoshida
    • Daisuke Yoshida
    • G03B7/00
    • G03B7/08G03B7/00
    • In continuous shooting processing, the defocus amounts of respective focus detection areas and the reliabilities of the defocus amounts are detected from information of the focus detection areas. Weightings are determined based on the reliabilities and defocus amounts. If the detection of defocus amounts is not completed in one shooting operation during continuous shooting, weightings are determined using defocus amounts detected in a shooting operation preceding the current one during continuous shooting. If there is no defocus amount that has been detected in a shooting operation preceding the current one, weightings are determined to weight a photometry area at a predetermined position of the field. A correct exposure for shooting is determined by calculating the weighted average of photometric values obtained in a plurality of photometry areas using the determined weightings. Continuous shooting can be performed with a correct exposure without decreasing the continuous shooting speed.
    • 在连续拍摄处理中,根据焦点检测区域的信息检测各焦点检测区域的散焦量和散焦量的可靠性。 加权取决于可靠性和散焦量。 如果在连续拍摄期间的一次拍摄操作中未完成散焦量的检测,则在连续拍摄期间,在当前拍摄操作之前的拍摄操作中检测到​​的散焦量确定加权。 如果在当前拍摄操作之前没有检测到散焦量,则确定加权在场的预定位置处的测光区域。 通过使用所确定的权重计算在多个测光区域中获得的测光值的加权平均值来确定拍摄的正确曝光。 可以通过正确的曝光进行连续拍摄,而不会降低连拍速度。
    • 15. 发明申请
    • CLOCK GENERATION CIRCUIT AND INTEGRATED CIRCUIT
    • 时钟发生电路和集成电路
    • US20100134171A1
    • 2010-06-03
    • US12606025
    • 2009-10-26
    • Daisuke Yoshida
    • Daisuke Yoshida
    • H03K3/00
    • H03K5/133H03K5/1515H03K2005/00039H03K2005/00202H03L7/0805H03L7/0812H03L7/0995
    • A clock generation circuit comprises: a first generation unit; a second generation unit; and a control unit that, using a plurality of third delay elements that respectively have a propagation delay time that correlates with the propagation delay time of a first delay element, and correlates with the propagation delay time of a second delay element, generates a control signal for controlling the third delay elements such that a total of propagation delay times of the plurality of third delay elements corresponds to a target value depending on a cycle of the external clock, and controls the propagation delay time of the first delay element, the propagation delay time of the second delay element, and the propagation delay times of the third delay elements using the control signal.
    • 时钟发生电路包括:第一代单元; 第二代单位; 以及控制单元,使用分别具有与第一延迟元件的传播延迟时间相关的传播延迟时间并与第二延迟元件的传播延迟时间相关联的多个第三延迟元件,生成控制信号 用于控制第三延迟元件,使得多个第三延迟元件的传播延迟时间的总和对应于取决于外部时钟的周期的目标值,并且控制第一延迟元件的传播延迟时间,传播延迟 第二延迟元件的时间,以及使用控制信号的第三延迟元件的传播延迟时间。