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    • 1. 发明申请
    • Optical backplane connector, photoelectric conversion module and optical backplane
    • 光背板连接器,光电转换模块和光背板
    • US20090310914A1
    • 2009-12-17
    • US11918948
    • 2006-04-21
    • Junichi SasakiKazuhiko KurataTakashi YoshikawaShigeyuki Yanagimachi
    • Junichi SasakiKazuhiko KurataTakashi YoshikawaShigeyuki Yanagimachi
    • G02B6/42G02B6/36
    • G02B6/3897G02B6/4284G02B6/4292
    • An optical backplane connector with a board removable (being possible to insert and remove) therein in the direction perpendicular to the backplane plate surface is arranged on a backplane having optical transmission paths. The optical backplane connector accommodates a photoelectric conversion module in such a manner the incident and exit light are perpendicular to the backplane and a transparent board with a photoelectric conversion element mounted thereon is perpendicular to the board and parallel to the backplane. The conduction between the electric contacts of the photoelectric conversion module and the inner electric contacts of the optical backplane connector is held by mechanical contact. At the end portion of the optical transmission path on the backplane, an optical connector having a 45′ mirror and guide pins is mounted. The positioning operation is achieved by fitting the guide pins of the optical connector with the guide holes of the photoelectric conversion module.
    • 在具有光传输路径的背板上布置有具有在垂直于背板表面的方向上可拆卸(可插入和移除)板的光背板连接器。 光背板连接器以这样的方式容纳光电转换模块,入射光和出射光垂直于背板,并且其上安装有光电转换元件的透明板垂直于板并平行于背板。 光电转换模块的电触点与光背板连接器的内部电触点之间的导通由机械接触保持。 在底板上的光传输路径的端部安装有具有45'反射镜和引导销的光学连接器。 通过将光连接器的引导针与光电转换模块的引导孔嵌合来实现定位操作。
    • 3. 发明申请
    • Packet communication device which selects an appropriate operation mode
    • 分组通信设备,其选择适当的操作模式
    • US20080172514A1
    • 2008-07-17
    • US12007658
    • 2008-01-14
    • Jun SuzukiYouichi HidakaJunichi HiguchiShigeyuki YanagimachiTakashi Yoshikawa
    • Jun SuzukiYouichi HidakaJunichi HiguchiShigeyuki YanagimachiTakashi Yoshikawa
    • G06F13/00
    • G06F13/387
    • A packet communication device autonomously selects an appropriate operation mode according to a connection environment to an external device before a service of the device is started. When the device is connected to the external buses, connection interface units notify an external device discrimination unit of connection of the device. The external device discrimination unit issues a polling packet to the connected device, discriminates the connected external device on the basis of the response packet, and notifies an operation mode switching unit. The operation mode switching unit selects an operation mode conforming to a connection environment of the packet communication device to the external device and switches the operation mode of the device to the mode. The selection of the operation modes is completed before the entire device or a portion of the device which is influenced by the selection of the operation mode starts a service to the external device to which the packet communication device is connected.
    • 分组通信设备在开始服务设备之前,根据与外部设备的连接环境自主选择适当的操作模式。 当设备连接到外部总线时,连接接口单元通知设备连接的外部设备鉴别单元。 外部设备识别单元向所连接的设备发出轮询分组,基于响应分组来识别所连接的外部设备,并通知操作模式切换单元。 操作模式切换单元根据外部设备选择符合分组通信设备的连接环境的操作模式,并将设备的操作模式切换到该模式。 操作模式的选择在整个设备或受到选择操作模式影响的设备的一部分开始对分组通信设备连接到的外部设备的服务之前完成。
    • 4. 发明授权
    • Packet communication device which selects an appropriate operation mode
    • 分组通信设备,其选择适当的操作模式
    • US08352655B2
    • 2013-01-08
    • US12007658
    • 2008-01-14
    • Jun SuzukiYouichi HidakaJunichi HiguchiShigeyuki YanagimachiTakashi Yoshikawa
    • Jun SuzukiYouichi HidakaJunichi HiguchiShigeyuki YanagimachiTakashi Yoshikawa
    • G06F13/00G06F3/00G06F13/42G06F13/36G06F13/20
    • G06F13/387
    • A packet communication device autonomously selects an appropriate operation mode according to a connection environment to an external device before a service of the device is started. When the device is connected to the external buses, connection interface units notify an external device discrimination unit of connection of the device. The external device discrimination unit issues a polling packet to the connected device, discriminates the connected external device on the basis of the response packet, and notifies an operation mode switching unit. The operation mode switching unit selects an operation mode conforming to a connection environment of the packet communication device to the external device and switches the operation mode of the device to the mode. The selection of the operation modes is completed before the entire device or a portion of the device which is influenced by the selection of the operation mode starts a service to the external device to which the packet communication device is connected.
    • 分组通信设备在开始服务设备之前,根据与外部设备的连接环境自主选择适当的操作模式。 当设备连接到外部总线时,连接接口单元通知设备连接的外部设备鉴别单元。 外部设备识别单元向所连接的设备发出轮询分组,基于响应分组来识别所连接的外部设备,并通知操作模式切换单元。 操作模式切换单元根据外部设备选择符合分组通信设备的连接环境的操作模式,并将设备的操作模式切换到该模式。 操作模式的选择在整个设备或受到选择操作模式影响的设备的一部分开始对分组通信设备连接到的外部设备的服务之前完成。
    • 7. 发明授权
    • Optical backplane connector, photoelectric conversion module and optical backplane
    • 光背板连接器,光电转换模块和光背板
    • US08172467B2
    • 2012-05-08
    • US11918948
    • 2006-04-21
    • Junichi SasakiKazuhiko KurataTakashi YoshikawaShigeyuki Yanagimachi
    • Junichi SasakiKazuhiko KurataTakashi YoshikawaShigeyuki Yanagimachi
    • G02B6/26G02B6/36G02B6/42G02B6/44
    • G02B6/3897G02B6/4284G02B6/4292
    • An optical backplane connector with a board removable (being possible to insert and remove) therein in the direction perpendicular to the backplane plate surface is arranged on a backplane having optical transmission paths. The optical backplane connector accommodates a photoelectric conversion module in such a manner the incident and exit light are perpendicular to the backplane and a transparent board with a photoelectric conversion element mounted thereon is perpendicular to the board and parallel to the backplane. The conduction between the electric contacts of the photoelectric conversion module and the inner electric contacts of the optical backplane connector is held by mechanical contact. At the end portion of the optical transmission path on the backplane, an optical connector having a 45′ mirror and guide pins is mounted. The positioning operation is achieved by fitting the guide pins of the optical connector with the guide holes of the photoelectric conversion module.
    • 在具有光传输路径的背板上布置有具有在垂直于背板表面的方向上可拆卸(可插入和移除)板的光背板连接器。 光背板连接器以这样的方式容纳光电转换模块,入射光和出射光垂直于背板,并且其上安装有光电转换元件的透明板垂直于板并平行于背板。 光电转换模块的电触点与光背板连接器的内部电触点之间的导通由机械接触保持。 在底板上的光传输路径的端部安装有具有45'反射镜和引导销的光学连接器。 通过将光连接器的引导针与光电转换模块的引导孔嵌合来实现定位操作。
    • 8. 发明申请
    • SWITCH DEVICE, SWITCHING METHOD AND SWITCH CONTROL PROGRAM
    • 开关装置,开关方式和开关控制程序
    • US20090175281A1
    • 2009-07-09
    • US11719686
    • 2005-11-18
    • Junichi HiguchiTakashi YoshikawaShigeyuki YanagimachiYouichi Hidaka
    • Junichi HiguchiTakashi YoshikawaShigeyuki YanagimachiYouichi Hidaka
    • H04L12/56H04L12/28
    • H04L49/1523H04L49/40
    • A switch device is composed of a switch portion 1-1, input side port mapping blocks 1-4-1 to 1-4-P, output side port mapping blocks 1-5-1 to 1-5-P, and a virtualization controller (central controller) 1-0 so that the switch device can be logically divided into a plurality of switches each having a capacity smaller than a physical switch capacity or the divided switches can be logically integrated. The switch portion has a plurality of first input ports and a plurality of first output ports. Each of the input side port mapping blocks has a plurality of second input ports and inputs the signals input to the plurality of second input ports to the first input ports of the switch portion. Each of the output side port mapping blocks has a plurality of second output ports and outputs the signals output to the first output ports of the switch portion from the plurality of second output ports.
    • 开关装置由开关部分1-1,输入侧端口映射块1-4-1至1-4-P,输出侧端口映射块1-5-1至1-5-P组成,虚拟化 控制器(中央控制器)1-0,使得交换机设备可以在逻辑上划分为具有小于物理交换机容量的容量的多个交换机,或者分开的交换机可以被逻辑地整合。 开关部分具有多个第一输入端口和多个第一输出端口。 每个输入侧端口映射块具有多个第二输入端口,并将输入到多个第二输入端口的信号输入到开关部分的第一输入端口。 每个输出侧端口映射块具有多个第二输出端口,并且从多个第二输出端口输出输出到开关部分的第一输出端口的信号。
    • 9. 发明授权
    • Switch device, switching method and switch control program
    • 开关装置,开关方式和开关控制程序
    • US07873056B2
    • 2011-01-18
    • US11719686
    • 2005-11-18
    • Junichi HiguchiTakashi YoshikawaShigeyuki YanagimachiYouichi Hidaka
    • Junichi HiguchiTakashi YoshikawaShigeyuki YanagimachiYouichi Hidaka
    • H04L12/56
    • H04L49/1523H04L49/40
    • A switch device is composed of a switch portion 1-1, input side port mapping blocks 1-4-1 to 1-4-P, output side port mapping blocks 1-5-1 to 1-5-P, and a virtualization controller (central controller) 1-0 so that the switch device can be logically divided into a plurality of switches each having a capacity smaller than a physical switch capacity or the divided switches can be logically integrated. The switch portion has a plurality of first input ports and a plurality of first output ports. Each of the input side port mapping blocks has a plurality of second input ports and inputs the signals input to the plurality of second input ports to the first input ports of the switch portion. Each of the output side port mapping blocks has a plurality of second output ports and outputs the signals output to the first output ports of the switch portion from the plurality of second output ports.
    • 开关装置由开关部分1-1,输入侧端口映射块1-4-1至1-4-P,输出侧端口映射块1-5-1至1-5-P组成,虚拟化 控制器(中央控制器)1-0,使得交换机设备可以在逻辑上划分为具有小于物理交换机容量的容量的多个交换机,或者分开的交换机可以被逻辑地整合。 开关部分具有多个第一输入端口和多个第一输出端口。 每个输入侧端口映射块具有多个第二输入端口,并将输入到多个第二输入端口的信号输入到开关部分的第一输入端口。 每个输出侧端口映射块具有多个第二输出端口,并且从多个第二输出端口输出输出到开关部分的第一输出端口的信号。