会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明授权
    • Transmission apparatus
    • 传输装置
    • US07953106B2
    • 2011-05-31
    • US12336556
    • 2008-12-17
    • Rei SuzukiEita MiyasakaYoshimasa Kusano
    • Rei SuzukiEita MiyasakaYoshimasa Kusano
    • H04L12/66
    • H04L49/352H04L49/3009H04L49/357
    • In a transmission apparatus of a Gigabit Ethernet signal, in order to improve line efficiency, time division multiplexing is used. Further, if it is possible to branch/insert plural multiplexed Gigabit Ethernet signals at arbitrary nodes, it is possible to construct a more flexible network. For this reason, importance of a time division multiplexing apparatus having a function of branching/inserting Gigabit Ethernet signals is growing. A Gigabit Ethernet signal is monitored at the previous and subsequent stages of a cross connect unit, IFGs are inserted to the signal and switching is waited. If a signal state at the cross connection unit is an IFG, transmission path switching is performed, thereby performing transmission path switching without instantaneous interruption.
    • 在千兆以太网信号的发送装置中,为了提高线路效率,使用时分复用。 此外,如果可以在任意节点上分支/插入多个千兆以太网信号,则可以构建更灵活的网络。 因此,具有分支/插入千兆以太网信号功能的时分多路复用装置的重要性日益增加。 千兆以太网信号在交叉连接单元的前一个和后一个阶段被监控,IFG被插入信号并且等待切换。 如果交叉连接单元处的信号状态是IFG,则执行传输路径切换,从而进行传输路径切换而不会瞬间中断。
    • 5. 发明申请
    • TRANSMISSION APPARATUS
    • 传动装置
    • US20090232004A1
    • 2009-09-17
    • US12336556
    • 2008-12-17
    • Rei SUZUKIEita MiyasakaYoshimasa Kusano
    • Rei SUZUKIEita MiyasakaYoshimasa Kusano
    • H04L12/56H04L12/26
    • H04L49/352H04L49/3009H04L49/357
    • In a transmission apparatus of a Gigabit Ethernet signal, in order to improve line efficiency, time division multiplexing is used. Further, if it is possible to branch/insert plural multiplexed Gigabit Ethernet signals at arbitrary nodes, it is possible to construct a more flexible network. For this reason, importance of a time division multiplexing apparatus having a function of branching/inserting Gigabit Ethernet signals is growing. A Gigabit Ethernet signal is monitored at the previous and subsequent stages of a cross connect unit, IFGs are inserted to the signal and switching is waited. If a signal state at the cross connection unit is an IFG, transmission path switching is performed, thereby performing transmission path switching without instantaneous interruption.
    • 在千兆以太网信号的发送装置中,为了提高线路效率,使用时分复用。 此外,如果可以在任意节点上分支/插入多个千兆以太网信号,则可以构建更灵活的网络。 因此,具有分支/插入千兆以太网信号功能的时分多路复用装置的重要性日益增加。 千兆以太网信号在交叉连接单元的前一个和后一个阶段被监控,IFG被插入信号并且等待切换。 如果交叉连接单元处的信号状态是IFG,则执行传输路径切换,从而进行传输路径切换而不会瞬间中断。
    • 8. 发明申请
    • TRANSMISSION APPARATUS, TRANSMISSION SYSTEM AND FAILURE DETECTION METHOD
    • 传输装置,传输系统和故障检测方法
    • US20110058807A1
    • 2011-03-10
    • US12796927
    • 2010-06-09
    • Rei SUZUKIToshiyuki ATSUMIKoji TAKATORIKazutaka SAKAI
    • Rei SUZUKIToshiyuki ATSUMIKoji TAKATORIKazutaka SAKAI
    • H04B10/08
    • H04L12/40045
    • To detect a transmission path cut-off or deterioration depending on the presence or absence of receiving a packet signal at a fixed time interval without transferring an OAM packet. At a transmitting side, a conversion section periodically sends a main signal without including a maintenance operation signal packet. At a receiving side, a transmission path failure detection device judges that a transmission path failure is detected if it is determined that the next main signal is not received for a preset time after receiving the main signal. An OAM processing section detects a state where the main signal is not transmitted to the opposed transmission apparatus or an idle state, based on the detection of the transmission path failure by the transmission path failure detection device, and sends a maintenance operation signal for notifying the transmission path failure to the opposed transmission apparatus when in the idle state.
    • 根据存在或不存在以固定时间间隔接收分组信号而不传输OAM分组来检测传输路径切断或劣化。 在发送侧,转换部周期性地发送主信号而不包括维护操作信号分组。 在接收侧,如果在接收到主信号之后确定在预设时间内未接收到下一个主信号,则传输路径故障检测装置判断检测到传输路径故障。 基于由传输路径故障检测装置的传输路径故障的检测,OAM处理部分检测主信号不发送到相对传输装置或空闲状态的状态,并发送维护操作信号,以通知 当处于空闲状态时,相对的传输装置的传输路径故障。
    • 9. 发明授权
    • Magnetic roller, developer carrier, developing device, process cartridge, and image forming apparatus
    • 磁辊,显影剂载体,显影装置,处理盒和成像装置
    • US07890030B2
    • 2011-02-15
    • US12397712
    • 2009-03-04
    • Takashi InnamiKyohta KoetsukaYoshiyuki TakanoTadaaki HattoriNoriyuki KamiyaMasayuki OhsawaMieko TerashimaRei SuzukiHiroya Abe
    • Takashi InnamiKyohta KoetsukaYoshiyuki TakanoTadaaki HattoriNoriyuki KamiyaMasayuki OhsawaMieko TerashimaRei SuzukiHiroya Abe
    • G03G15/09
    • G03G15/0921G03G2215/0634
    • A magnetic roller includes a cylindrical magnetic field generation part (140), a cylindrical support part (143) that contacts both of the edges of the magnetic field generation part (140), further has a smaller diameter than the magnetic field generation part (140), and which is installed upon a common axis thereof as an axis of the cylindrical support part (143), and a depression part (140c) that is installed upon an obverse surface of the cylindrical magnetic field generation part (140), extends in a direction of the axis of the magnetic field generation part (140), and wherein a lengthwise magnet formation is inserted. The cylindrical magnetic field generation part (140) is configured of a main body portion (140a), which is installed upon a central portion of the cylindrical magnetic field generation part (140), and a reinforcing portion (140b), which is installed upon each of both ends, wherein the depression part (140c) is installed across the main body portion (140a) of the magnetic field generation part (140) overall, and the reinforcing portion (140b) is installed between an end of the depression part (140c) and an end of the support part.
    • 磁性辊包括圆柱形磁场产生部分(140),与磁场产生部分(140)的两个边缘接触的圆柱形支撑部分(143),还具有比磁场产生部分(140)更小的直径 ),并且其安装在作为圆柱形支撑部件(143)的轴线的共同轴线上,并且安装在圆柱形磁场产生部件(140)的正面上的凹陷部分(140c)延伸在 磁场产生部分(140)的轴线的方向,并且其中插入纵向磁体形成。 圆柱形磁场产生部分(140)由安装在圆柱形磁场产生部分(140)的中心部分上的主体部分(140a)和加强部分(140b)构成,该加强部分安装在 其中,所述凹部(140c)整体安装在所述磁场产生部(140)的主体部(140a)的两端,所述加强部(140b)安装在所述凹部(140c)的端部 140c)和支撑部分的端部。