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    • 1. 发明授权
    • ATM network communication route monitoring system
    • ATM网络通信路由监控系统
    • US06269083B1
    • 2001-07-31
    • US09062259
    • 1998-04-17
    • Tatsuya NagataKazuhiro Ozawa
    • Tatsuya NagataKazuhiro Ozawa
    • H04J314
    • H04L43/00H04L41/06H04L41/0677H04L43/0817H04L43/16H04L2012/5626H04L2012/5627H04Q11/0478
    • A communication route monitoring system monitors a communication route in an ATM network with OAM loopback cells. The communication route monitoring system has a first OAM loopback cell delivering unit disposed in one of the communication devices which performs a network management function, a first returning and relaying unit disposed in each of the communication devices, and a communication route recognizing unit disposed in the communication device which performs the network management function. The first OAM loopback cell delivering unit delivers a first OAM loopback cell for confirming a communication route to a route terminal point. The first returning and relaying means returns the first OAM loopback cell upon reception of the first OAM loopback cell, together with its own location identification added thereto, to a source, and relays the received first OAM loopback cell to a next one of the communication devices. First OAM loopback cells together with added location identifications of the respective communication devices are returned to the communication route recognizing unit. The communication route recognizing unit analyzes the first OAM loopback cell returned from each of the first returning and relaying units to recognize a status of the communication route.
    • 通信路由监控系统利用OAM回环小区监视ATM网络中的通信路由。 通信路由监视系统具有设置在执行网络管理功能的通信设备之一的第一OAM回送小区传送单元,以及设置在每个通信设备中的第一返回和中继单元,以及设置在所述通信路由识别单元中的通信路由识别单元 执行网络管理功能的通信设备。 第一个OAM环回单元传递单元传送第一个OAM环回单元,用于确认到路由终端点的通信路由。 第一返回和中继装置在接收到第一OAM回环小区时将第一OAM环回小区及其自身的添加位置标识返回给源,并将接收到的第一OAM环回小区中继到下一个通信设备 。 第一OAM环回单元以及相应通信设备的附加位置标识被返回到通信路由识别单元。 通信路由识别单元分析从第一返回中继单元返回的第一OAM回送小区,以识别通信路由的状态。
    • 2. 发明授权
    • Communication monitoring in ATM switch
    • ATM交换机中的通信监控
    • US06181680B2
    • 2001-01-30
    • US08753374
    • 1996-11-25
    • Tatsuya NagataKazuhiro Ozawa
    • Tatsuya NagataKazuhiro Ozawa
    • H04L1226
    • H04L49/3081H04L2012/5625H04L2012/5627H04Q11/0478
    • In an ATM switch, after a communication path is properly set up, a continuity test is performed by passing an OAM cell through the communication path before initiating the transmission of user cells. After the transmission of user cells is initiated, a loopback test is performed by periodically inserting an OAM cell in a user cell flow. When a fault condition is detected as a result of the OAM cell loopback test, a peak cell rate environment is created by adding OAM cells to the user cells for a limited period of time, and communication quality is measured under the thus created environment. When a point-to-multipoint connection with a plurality of leaf points is set up, correspondence between each leaf point and a physical connection point is recorded in a table. When a loopback test to a specific leaf point is requested from a maintenance console, an ATM line control unit corresponding to the specific leaf point is determined by referring to the table, and transmission of the OAM cell is allowed only through that ATM line control unit. In this way, an OAM cell loopback test to a specific leaf point can be accomplished.
    • 在ATM交换机中,在正确建立通信路径之后,通过在启动用户小区的传输之前通过通信路径来执行连续性测试。 在发起用户小区的发送之后,通过在用户小区流中周期性地插入OAM小区来执行环回测试。 当作为OAM小区环回测试的结果检测到故障状况时,通过在有限的时间段内向用户小区添加OAM小区来创建峰值小区速率环境,并且在如此创建的环境下测量通信质量。 当建立与多个叶点的点对多点连接时,每个叶点与物理连接点之间的对应关系被记录在表中。 当从维护控制台请求对特定叶点的环回测试时,通过参考该表来确定对应于特定叶点的ATM线路控制单元,并且允许OAM小区的传输仅通过该ATM线路控制单元 。 以这种方式,可以实现对特定叶点的OAM小区环回测试。
    • 3. 发明授权
    • Wiring structure
    • 接线结构
    • US4954085A
    • 1990-09-04
    • US216066
    • 1988-07-07
    • Toshihiro InoueKazuhiro Ozawa
    • Toshihiro InoueKazuhiro Ozawa
    • H01R9/24H01R13/621
    • H01R13/6215H01R9/24
    • A wiring structure for electric wirings in a vehicle or the like. A horizontal partition wall portion that is nearly horizontal is provided in a dashboard partitioning a car room from an engine room provided outside of that car room, and an end portion of an outdoor side harness within the engine room is positioned above the horizontal partition wall portion, while an end portion of an indoor side harness within the car room is positioned under the horizontal partition wall portion. And, one connector provided at the end portion of the indoor side harness and the other connector provided at the end portion of the outdoor side harness are joined with each other penetrating through the horizontal partition wall portion. The above-mentioned one connector is a waiting connector slidably supported from a connector guide mounted to the horizontal partition wall portion, and a nut directed in the sliding direction is fixed thereto. A bolt rotatably supported from the other connector is threadedly engaged with this nut, and by rotating that bolt, the respective connectors are brought close to each other and thus joined together.
    • 车辆用电气布线等的布线结构。 在从设置在该车室外部的发动机室分割轿厢的仪表板中设置有水平分隔壁部,并且在发动机室内的室外侧线束的端部位于水平隔壁部的上方 而轿厢内的室内侧线束的端部位于水平分隔壁部的下方。 并且,设置在室内侧线束的端部的一个连接器和设置在室外侧线束的端部处的另一个连接器彼此连接穿过水平分隔壁部分。 上述一个连接器是从安装到水平分隔壁部的连接器导向器可滑动地支撑的等待连接器,并且沿滑动方向定向的螺母被固定在其上。 从另一连接器可旋转地支撑的螺栓与该螺母螺纹接合,并且通过旋转该螺栓,相应的连接器彼此接近并因此连接在一起。
    • 4. 发明授权
    • Probe apparatus and probing method
    • 探头装置和探测方法
    • US07724007B2
    • 2010-05-25
    • US12237920
    • 2008-09-25
    • Yasuhito YamamotoKazuhiro OzawaFumito Kagami
    • Yasuhito YamamotoKazuhiro OzawaFumito Kagami
    • G01R31/02
    • G01R31/2891G01R31/2887
    • A probe apparatus includes an imaging unit imaging probes and a first and a second imaging unit imaging the wafer surface. The apparatus further includes a control unit obtaining positions of a mounting table at which focuses of the imaging unit and the first imaging unit are made to coincide with each other and then the focuses of the image unit and the second imaging unit are made to coincide with each other by moving the mounting table; obtaining positions of the mounting table at which the images of the wafer are sequentially taken by the first and the second imaging unit by moving the mounting table; obtaining a position of the mounting table at which the probes are imaged by the imaging unit, and calculating a position of the mounting table at which the wafer contacts with the probes based on the obtained positions of the mounting table.
    • 探针装置包括成像单元成像探针和成像晶片表面的第一和第二成像单元。 该装置还包括控制单元,其获得安装台的位置,使成像单元和第一成像单元的焦点彼此重合,然后使图像单元和第二成像单元的焦点与 彼此移动安装台; 通过移动安装台来获得安装台的位置,通过第一和第二成像单元依次取得晶片的图像; 基于所获得的安装台的位置,获得所述安装台的位置,所述安装台在所述位置处由所述成像单元成像,并且计算所述安装台的位置,所述安装台在所述安装台上与所述探针接触。
    • 5. 发明授权
    • Control circuit for sliding roof devices
    • 滑动屋顶装置的控制电路
    • US4629953A
    • 1986-12-16
    • US785477
    • 1985-10-08
    • Toshihiro InoueKazuhiro OzawaYoshinobu Kimura
    • Toshihiro InoueKazuhiro OzawaYoshinobu Kimura
    • B60J7/05B60J7/057
    • B60J7/0573
    • For a sliding roof device (100) having a panel transfer mechanism (11, 12, 13b, 31, 33, 34, 7, 21) for moving a roof panel (2), which is adapted to open and close a roof opening (3a) of a roof (1), between a close position and an open position, a tilt-up mechanism (11, 12, 13a, 32, 33, 34, 7, 21) for moving the roof panel between the close position and a tilt-up position, and a reversible electric motor (51) for actuating the panel transfer mechanism and the tilt-up mechanism, there is provided a control circuit (50) including a first operation switch (58) for actuating the motor to thereby have the roof panel moved from the close position to the open position and the tilt-up position, and a second operation switch (57) for actuating the motor to thereby have the roof panel moved from the open position and the tilt-up position to the close position. The first operation switch (58) is adapted for a single continuous operation thereof for actuating the motor (51 ) to thereby have the roof panel (2) continuously moved from the tilt-up position to the open position or vice versa.
    • 对于具有用于移动屋顶板(2)的板移动机构(11,12,13b,31,33,34,7,21)的滑动屋顶装置(100),其适于打开和关闭屋顶开口 在靠近位置和打开位置之间的屋顶(1)的侧壁(3a),倾斜向上机构(11,12,13a,32,33,34,7,21),用于使顶板在关闭位置和 一个向上倾斜的位置和用于致动面板传送机构和倾斜机构的可逆电动机(51),设置有一个控制电路(50),该控制电路包括用于致动马达的第一操作开关(58) 使顶板从关闭位置移动到打开位置和倾斜向上位置;以及第二操作开关(57),用于致动马达,从而使顶板从打开位置和向上倾斜位置移动到 关闭位置。 第一操作开关(58)适于单个连续操作以致动马达(51),从而使屋顶板(2)从倾斜向上位置连续移动到打开位置,反之亦然。
    • 7. 发明申请
    • PROBE APPARATUS AND PROBING METHOD
    • 探测器和探测方法
    • US20090085594A1
    • 2009-04-02
    • US12237920
    • 2008-09-25
    • Yasuhito YamamotoKazuhiro OzawaFumito Kagami
    • Yasuhito YamamotoKazuhiro OzawaFumito Kagami
    • G01R31/26
    • G01R31/2891G01R31/2887
    • A probe apparatus includes an imaging unit imaging probes and a first and a second imaging unit imaging the wafer surface. The apparatus further includes a control unit obtaining positions of a mounting table at which focuses of the imaging unit and the first imaging unit are made to coincide with each other and then the focuses of the image unit and the second imaging unit are made to coincide with each other by moving the mounting table; obtaining positions of the mounting table at which the images of the wafer are sequentially taken by the first and the second imaging unit by moving the mounting table; obtaining a position of the mounting table at which the probes are imaged by the imaging unit, and calculating a position of the mounting table at which the wafer contacts with the probes based on the obtained positions of the mounting table.
    • 探针装置包括成像单元成像探针和成像晶片表面的第一和第二成像单元。 该装置还包括控制单元,其获得安装台的位置,使成像单元和第一成像单元的焦点彼此重合,然后使图像单元和第二成像单元的焦点与 彼此移动安装台; 通过移动安装台来获得安装台的位置,通过第一和第二成像单元依次取得晶片的图像; 基于所获得的安装台的位置,获得所述安装台的位置,所述安装台在所述位置处由所述成像单元成像,并且计算所述安装台的位置,所述安装台在所述安装台上与所述探针接触。
    • 9. 发明授权
    • Checking communication-path data in MPLS communication scheme
    • 检查MPLS通信方案中的通信路径数据
    • US06775239B1
    • 2004-08-10
    • US09626334
    • 2000-07-26
    • Kenichi AkitaYuko TangikuKazuhiro Ozawa
    • Kenichi AkitaYuko TangikuKazuhiro Ozawa
    • H04J314
    • H04L12/2854
    • A method of checking communication-path data in a system, in which a router connecting first and second networks operating on different protocols is connected to a switch of the second network, includes the steps of changing the router and the switch from a normal mode to a test mode, checking consistency between router communication-path data controlled by the router and switch communication-path data controlled by the switch by sending the router communication-path data to the switch during the test mode, and checking communication between the router and the switch by sending cells from the router to the switch and returning the cells from the switch to the router during the test mode.
    • 一种在系统中检查通信路径数据的方法,其中连接在不同协议上操作的第一和第二网络的路由器连接到第二网络的交换机,包括以下步骤:将路由器和交换机从正常模式改变为 测试模式,通过在测试模式下将路由器通信路径数据发送给交换机,检查由路由器控制的路由器通信路径数据与交换机控制的交换通信路径数据之间的一致性,以及检查路由器与 在测试模式下,通过将单元从路由器发送到交换机并将单元从交换机返回到路由器进行切换。