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    • 1. 发明申请
    • OPTICAL TRANSMISSION APPARATUS AND FAULT DETECTION METHOD
    • 光传输设备和故障检测方法
    • US20100322619A1
    • 2010-12-23
    • US12815898
    • 2010-06-15
    • Hiroshi IizukaTsukasa Takahashi
    • Hiroshi IizukaTsukasa Takahashi
    • H04B10/08H04B10/04
    • H04B10/0797H04B10/25133
    • An optical transmission apparatus includes a non-reciprocal device including first to second ports, an optical signal input from the first port being provided to the second port, an optical signal input from the second port being provided to the first port, a dispersion compensator that is coupled to the first port of the non-reciprocal device and that conducts given processing to an optical signal input from the first port of the non-reciprocal device to provide the optical signal subjected to the given processing to the second port of the non-reciprocal device, a first monitor, a second monitor, and a fault determination device that compares a value monitored by the first monitor with a value monitored by the second monitor to determine a connection failure at the first and/or second ports of the non-reciprocal device and/or a connection state of the dispersion compensator.
    • 光传输装置包括:包括第一至第二端口的不可逆装置,从第一端口输入的光信号提供给第二端口;从第二端口输入的光信号提供给第一端口;色散补偿器, 耦合到不可逆设备的第一端口,并且对从不可逆设备的第一端口输入的光信号进行给定处理,以将经过给定处理的光信号提供给非可逆设备的第二端口, 互换装置,第一监视器,第二监视器和故障确定装置,其将由第一监视器监视的值与由第二监视器监视的值进行比较,以确定非易失性存储器的第一和/或第二端口处的连接故障, 互补装置和/或色散补偿器的连接状态。
    • 2. 发明授权
    • Optical transmission apparatus and fault detection method
    • 光传输装置及故障检测方法
    • US08559815B2
    • 2013-10-15
    • US12815898
    • 2010-06-15
    • Hiroshi IizukaTsukasa Takahashi
    • Hiroshi IizukaTsukasa Takahashi
    • H04B10/00
    • H04B10/0797H04B10/25133
    • An optical transmission apparatus includes a non-reciprocal device including first to second ports, an optical signal input from the first port being provided to the second port, an optical signal input from the second port being provided to the first port, a dispersion compensator that is coupled to the first port of the non-reciprocal device and that conducts given processing to an optical signal input from the first port of the non-reciprocal device to provide the optical signal subjected to the given processing to the second port of the non-reciprocal device, a first monitor, a second monitor, and a fault determination device that compares a value monitored by the first monitor with a value monitored by the second monitor to determine one of a connection failure, at least at one of the first port, the second port, of the non-reciprocal device and a connection state of the dispersion compensator.
    • 光传输装置包括:包括第一至第二端口的不可逆装置,从第一端口输入的光信号提供给第二端口;从第二端口输入的光信号提供给第一端口;色散补偿器, 耦合到不可逆设备的第一端口,并且对从不可逆设备的第一端口输入的光信号进行给定处理,以将经过给定处理的光信号提供给非可逆设备的第二端口, 互换装置,第一监视器,第二监视器和故障确定装置,其将由第一监视器监视的值与由第二监视器监视的值进行比较,以确定连接故障中的一个,至少在第一端口之一, 不可逆设备的第二端口和色散补偿器的连接状态。
    • 6. 发明授权
    • Variable dispersion compensation device
    • 可变色散补偿装置
    • US08295709B2
    • 2012-10-23
    • US12755254
    • 2010-04-06
    • Kazuhiro KunimatsuTsukasa Takahashi
    • Kazuhiro KunimatsuTsukasa Takahashi
    • H04B10/12
    • H04B10/25133H04B10/671
    • A dispersion compensation device includes a variable dispersion compensator configured to subject an input optical signal to dispersion compensation, an optical receiver configured to convert an optical signal subjected to dispersion compensation into an electrical signal, recover a clock signal and a received data signal from the electrical signal, and output clock lock information indicating whether the clock signal is locked to the electrical signal, a signal processor configured to output bit error rate information on the received data signal, and a controller configured to variably control a dispersion compensation value of the variable dispersion compensator based on the bit error rate information and the clock lock information.
    • 色散补偿装置包括可变色散补偿器,被配置为使输入光信号进行色散补偿;光接收器,被配置为将经受色散补偿的光信号转换为电信号,从电信号中恢复时钟信号和接收数据信号 信号和输出时钟锁定信息,指示时钟信号是否被锁定到电信号;信号处理器,被配置为输出关于接收到的数据信号的误码率信息;以及控制器,被配置为可变地控制可变色散的色散补偿值 补偿器基于误码率信息和时钟锁信息。
    • 8. 发明申请
    • MOBILE TERMINAL DEVICE
    • 移动终端设备
    • US20110032161A1
    • 2011-02-10
    • US12937934
    • 2008-12-25
    • Hideo NakanishiTakeshi YamaguchiKenji TakagiTsukasa TakahashiYuichi Kashino
    • Hideo NakanishiTakeshi YamaguchiKenji TakagiTsukasa TakahashiYuichi Kashino
    • H01Q1/24
    • H01Q1/243H01Q1/2258H01Q9/16H01Q9/30H04M1/0208H04M1/0214H04M1/0235
    • In a mobile terminal device, a hinge member and a conductive member provided on a chassis and functioning as an antenna are electrically contacted with each other through the slide operation of a chassis and thereby can be configured as an antenna usable in various use situations without providing a separate antenna. Consequently, the mobile terminal device is provided, the manufacture cost of which can be suppressed, the size and thickness of which can be reduced, and which can prevent antenna characteristics from degrading because the antenna is not provided at a portion gripped by a hand. In the device, a first chassis (101) has a radio circuit (112). A second chassis (102) has a ground plate (121) and is attached so as to be freely slidable with respect to the first chassis (101). A tilt hinge member (104a) rotatably connects the first chassis (101) to the second chassis (102), is fed from the radio circuit (112), and functions as an antenna together with the ground plate (121) when the hinge member is electrically contacted with the ground plate (121) through the slide operation of the second chassis (102).
    • 在移动终端装置中,设置在底盘上并用作天线的铰链构件和导电构件通过机架的滑动操作而彼此电接触,从而可以被配置为可用于各种使用情况的天线,而不提供 单独的天线。 因此,提供了移动终端装置,其制造成本可以被抑制,其尺寸和厚度可以减小,并且其可以防止天线特性降低,因为天线没有设置在由手握住的部分。 在该设备中,第一机箱(101)具有无线电电路(112)。 第二底盘(102)具有接地板(121)并被安装成可相对于第一机架(101)自由滑动。 可旋转地连接第一机架(101)到第二机架(102)的倾斜铰链部件(104a)从无线电电路(112)馈送,并且当铰链部件 通过第二机架(102)的滑动操作与接地板(121)电接触。