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    • 1. 发明授权
    • Network apparatus and method for communication between different components
    • 用于不同组件之间通信的网络设备和方法
    • US09083565B2
    • 2015-07-14
    • US12442838
    • 2007-05-09
    • Ju WangShunlin ZhouRui WangChi FanHaidong WangGuohua ChenShilin Zhang
    • Ju WangShunlin ZhouRui WangChi FanHaidong WangGuohua ChenShilin Zhang
    • H04L12/28H04L12/66H04L12/403H04J1/16
    • H04L45/14G06F13/4221H04L12/403H04L12/66
    • The present invention discloses a method for communication among different components, including integrating a Network Forwarding Component (NFC) for forwarding messages and at least one Independent Application Component (IAC) for performing other service processing into one network device; setting at least one cooperation mode in the NFC and each of the at least one IAC; and communicating with each other, by the NFC and the at least one IAC, according to the at least one cooperation mode. The cooperation mode may be any or any combination of a host mode, a mirror mode, a redirection mode and a pass-through mode. According to the present invention, the NFC and the IAC may communicate according to the cooperation mode so as to ensure that the NFC and the IAC can cooperate to provide various service capabilities including message forwarding and other additional service capabilities.
    • 本发明公开了一种用于不同组件之间的通信的方法,包括将用于转发消息的网络转发组件(NFC)和至少一个独立应用组件(IAC)集成到一个网络设备中执行其他服务处理; 在NFC中设置至少一个协作模式和所述至少一个IAC中的每一个; 以及根据所述至少一个协作模式,通过所述NFC和所述至少一个IAC彼此进行通信。 协作模式可以是主机模式,镜像模式,重定向模式和直通模式的任何或任意组合。 根据本发明,NFC和IAC可以根据协作模式进行通信,以便确保NFC和IAC可以协作来提供包括消息转发和其他附加服务能力的各种服务能力。
    • 2. 发明申请
    • NETWORK APPARATUS AND METHOD FOR COMMUNICATION BETWEEN DIFFERENT COMPONENTS
    • 网络设备和不同组件之间的通信方法
    • US20100011139A1
    • 2010-01-14
    • US12442838
    • 2007-05-09
    • Ju WangShunlin ZhouRui WangChi FanHaidong WangGuohua ChenShilin Zhang
    • Ju WangShunlin ZhouRui WangChi FanHaidong WangGuohua ChenShilin Zhang
    • G06F13/00G06F15/16
    • H04L45/14G06F13/4221H04L12/403H04L12/66
    • The present invention discloses a method for communication among different components, including integrating a Network Forwarding Component (NFC) for forwarding messages and at least one Independent Application Component (IAC) for performing other service processing into one network device; setting at least one cooperation mode in the NFC and each of the at least one IAC; and communicating with each other, by the NFC and the at least one IAC, according to the at least one cooperation mode. The cooperation mode may be any or any combination of a host mode, a mirror mode, a redirection mode and a pass-through mode. According to the present invention, the NFC and the IAC may communicate according to the cooperation mode so as to ensure that the NFC and the IAC can cooperate to provide various service capabilities including message forwarding and other additional service capabilities.
    • 本发明公开了一种用于不同组件之间的通信的方法,包括将用于转发消息的网络转发组件(NFC)和至少一个独立应用组件(IAC)集成到一个网络设备中执行其他服务处理; 在NFC中设置至少一个协作模式和所述至少一个IAC中的每一个; 以及根据所述至少一个协作模式,通过所述NFC和所述至少一个IAC彼此进行通信。 协作模式可以是主机模式,镜像模式,重定向模式和直通模式的任何或任意组合。 根据本发明,NFC和IAC可以根据协作模式进行通信,以便确保NFC和IAC可以协作来提供包括消息转发和其他附加服务能力的各种服务能力。
    • 3. 发明授权
    • System and method for restoring data from a remote repository
    • 从远程存储库恢复数据的系统和方法
    • US09268799B1
    • 2016-02-23
    • US13928843
    • 2013-06-27
    • Feng QiPei MaoGuohua Chen
    • Feng QiPei MaoGuohua Chen
    • G06F17/30
    • G06F11/1469G06F11/1451G06F2201/835
    • A method includes receiving a request to restore a memory of a client and determining a selected full session from a plurality of full sessions, each full session comprising a respective copy of data received from the memory of the client and a respective backup time stamp. The selected full session includes a most recent full backup having a respective backup time stamp prior to a selected restore time. The method further includes copying the selected full session to a restore session and determining a selected incremental session from a plurality of incremental sessions. Each incremental session includes a respective incremental backup time stamp, and respective changes to the data received from the memory of the client. The method further includes modifying the restore session in a cloud computing environment based on the selected incremental session, and transmitting the modified restore session across a network to the client.
    • 一种方法包括接收请求以恢复客户端的存储器并且从多个完整会话确定所选择的完整会话,每个完整会话包括从客户端的存储器接收的相应的数据副本和相应的备份时间戳。 所选的完整会话包括在选择的恢复时间之前具有各自的备份时间戳的最新的完整备份。 该方法还包括将所选择的完整会话复制到恢复会话并且从多个增量会话确定所选择的增量会话。 每个增量会话包括相应的增量备份时间戳,以及对从客户机的存储器接收到的数据的相应改变。 该方法还包括基于所选择的增量会话在云计算环境中修改恢复会话,以及通过网络将修改的恢复会话发送到客户端。
    • 6. 发明申请
    • ELECTRIC TERMINAL FOR LEADING A LINE THROUGH A WALL
    • 用于通过墙壁引导线的电气端子
    • US20120100740A1
    • 2012-04-26
    • US13265038
    • 2010-04-13
    • Heinz ReibkeRudolf MerzGuohua ChenDennis Sprenger
    • Heinz ReibkeRudolf MerzGuohua ChenDennis Sprenger
    • H01R13/621
    • H01R13/74H01R4/30H01R11/12
    • The invention relates to an electric terminal for leading a conductor through a wall, comprising a first terminal piece (1) to be mounted on one side of the wall, and a second terminal piece (2) to be mounted on the other side of the wall. The first terminal piece (1) has a first connecting element (5) and a holding element (7) for positioning the first connecting element (5), while the second terminal piece (2) has a busbar (4) to be electrically connected to the first connecting element (5). According to the invention, the first connecting element (5) in such an electric terminal for leading a conductor through a wall can be connected to the conductor and/or the busbar (4) in a particularly simple fashion because the first connecting element (5) is positioned in the first terminal piece (1) by the holding element (7).
    • 本发明涉及一种用于将导体引导通过壁的电端子,其包括将安装在壁的一侧的第一端子件(1)和安装在壁的另一侧上的第二端子件(2) 壁。 第一端子件(1)具有用于定位第一连接元件(5)的第一连接元件(5)和保持元件(7),而第二端子件(2)具有电连接的汇流条(4) 到第一连接元件(5)。 根据本发明,用于引导导体穿过壁的这种电端子中的第一连接元件(5)可以以特别简单的方式连接到导体和/或母线(4),因为第一连接元件(5) )通过保持元件(7)定位在第一端子件(1)中。
    • 9. 发明授权
    • Method for making a highly stable diamond film on a substrate
    • 在基材上制备高度稳定的金刚石膜的方法
    • US07833581B2
    • 2010-11-16
    • US11898112
    • 2007-09-10
    • Liang GuoGuohua Chen
    • Liang GuoGuohua Chen
    • C23C16/00
    • C23C16/0272C02F2001/46147C23C16/27C23C16/272C23C16/278C23C16/279C25B11/0478Y10T428/31678
    • A method of depositing a stable diamond film on a metal substrate includes pretreating a surface of the substrate and depositing a diamond film on the substrate by way of a multi-stage chemical vapor deposition, in which each subsequent stage is performed at progressively higher temperature. The deposited diamond may be doped with boron. The substrate may be titanium, a titanium alloy, iron, an iron alloy, or any other valve metal. The diamond deposition may be a high temperature chemical vapor deposition. The first deposition stage may optionally create a carbide of diamond and substrate, and an optional mixture of diamond and amorphous carbon may be deposited to bond this carbide layer to a subsequently applied layer. The resulting product may be used as an electrode, as a tooth or blade in a cutting tool, or may have many other uses.
    • 在金属基底上沉积稳定的金刚石薄膜的方法包括预处理基片的表面,并通过多级化学气相沉积在基片上沉积金刚石薄膜,其中每个后续阶段都在逐渐升高的温度下进行。 沉积的金刚石可以掺杂硼。 基底可以是钛,钛合金,铁,铁合金或任何其它阀金属。 金刚石沉积可以是高温化学气相沉积。 第一沉积阶段可以任选地产生金刚石和衬底的碳化物,并且可以沉积金刚石和无定形碳的任选混合物以将该碳化物层结合到随后施加的层。 所得到的产品可以用作切割工具中的电极,作为牙齿或刀片,或者可以具有许多其它用途。