MONITORING APPARATUS AND MONITORING METHOD
    41.
    发明申请
    MONITORING APPARATUS AND MONITORING METHOD 失效
    监测装置和监测方法

    公开(公告)号:US20090287818A1

    公开(公告)日:2009-11-19

    申请号:US12507265

    申请日:2009-07-22

    摘要: A monitoring apparatus for monitoring communication configurations of a plurality of client devices connected to a server, the monitoring apparatus includes: a processor for controlling the communications between the client devices and the server in accordance with a process including: receiving from each of the client devices communication condition information and storing latest communication condition information of each of the client devices; determining at a time interval whether any of client devices became incapable of communication with the server by checking the latest communication condition information of each of client devices; and upon detection of at least one of the client devices for which obsolete communication condition information is stored, issuing a notice indicating that the at least one of the client devices are incapable of communication with the server.

    摘要翻译: 一种用于监视连接到服务器的多个客户端设备的通信配置的监视设备,所述监控设备包括:处理器,用于根据包括以下过程来控制所述客户端设备与所述服务器之间的通信的处理:从每个所述客户端设备 通信条件信息并存储每个客户端设备的最新通信条件信息; 通过检查每个客户端设备的最新通信条件信息,在一段时间间隔确定任何客户端设备是否变得不能与服务器通信; 并且在检测到存储过时的通信条件信息的至少一个客户端设备时,发出指示所述至少一个客户端设备不能与服务器通信的通知。

    Squib-type electrical connector with multiple engagement means
    42.
    发明授权
    Squib-type electrical connector with multiple engagement means 有权
    具有多个接合装置的柱状电连接器

    公开(公告)号:US07303423B2

    公开(公告)日:2007-12-04

    申请号:US11370969

    申请日:2006-03-08

    IPC分类号: H01R13/62

    摘要: An electrical connector includes a connector housing having a contact engaging section with contacts which engage mating contacts, and a wire holder holding wires connected to the contacts. The connector cover is capable of moving between partially engaged position and fully engaged position. The partially engaged position is the position in which a rear end of the wire holder is housed in and the fully engaged position is the position in which the rear end of the wire holder projects from a rear end opening. The connector housing has a first engaging section engaging a mating connector in the partially engaged position. The connector cover has a second engaging section engaging the first engaging section and restraining disengagement of the first engaging section from the mating connector in the fully engaged position.

    摘要翻译: 电连接器包括连接器壳体,该连接器壳体具有触头接合部分,该触头接合部分具有接合配合触点的触点,以及保持连接到该触点的导线的线 连接器盖能够在部分接合位置和完全接合位置之间移动。 部分接合位置是电线保持器的后端容纳在其中的位置,并且完全接合位置是线保持器的后端从后端开口突出的位置。 连接器壳体具有在部分接合位置接合配合连接器的第一接合部分。 连接器盖具有接合第一接合部分的第二接合部分,并且将第一接合部分与匹配连接器在完全接合位置的约束分离。

    Ferromagnetic double quantum well tunnel magneto-resistance device
    47.
    发明授权
    Ferromagnetic double quantum well tunnel magneto-resistance device 有权
    铁磁双量子阱隧道磁阻器件

    公开(公告)号:US06456523B1

    公开(公告)日:2002-09-24

    申请号:US09762804

    申请日:2001-02-13

    IPC分类号: G11C1100

    摘要: A ferromagnetic double quantum well tunneling magnetoresistance device is disclosed that utilizes a two-dimensional electron (positive hole) system to obtain an infinitely great magnetoresistance ratio. Also disclosed are a sensitive magnetic sensor and a nonvolatile storage device derived from that device. In structural terms of the device, a first and a second quantum well layer of ferromagnetic material (4, 8) in each of which the quantum confinement for carriers is established in a two-dimensional electron (positive hole) state are each sandwiched between a pair of barrier layers of nonmagnetic material (2, 6, 10) through which the carriers can tunnel. The first and second quantum well layers (4, 8) have a difference in coercive force so that when an external magnetic field is applied thereto only one of them may be reversed in the direction of magnetization. As a result, if magnetizations of the two quantum wells are parallel to each other, tunneling is allowed to occur, and if they are antiparallel to each other, tunneling is inhibited. A infinitely great tunneling magnetoresistance ratio is thereby obtained.

    摘要翻译: 公开了一种利用二维电子(空穴)系统获得无限大的磁阻比的铁磁双量子阱隧穿磁阻器件。 还公开了一种敏感磁传感器和从该装置衍生的非易失性存储装置。 在器件的结构方面,在二维电子(空穴)状态下建立载流子的量子限制的铁磁材料(4,8)的第一和第二量子阱层分别夹在 一对非磁性材料(2,6,10)的阻挡层,载体可穿过这些阻挡层。 第一和第二量子阱层(4,8)具有矫顽力的差异,使得当施加外部磁场时,只有其中一个可以在磁化方向上反转。 结果,如果两个量子阱的磁化彼此平行,则允许发生隧穿,并且如果它们彼此反平行,则隧道被抑制。 由此获得无限大的隧道磁阻比。