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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 producing electro-optic components integrable with
silicon-on-sapphire circuits
    • 用于生产可与蓝宝石蓝宝石电路集成的电光元件的系统和方法
    • US5242707A
    • 1993-09-07
    • US632033
    • 1990-12-21
    • Sadik C. EsenerSing H. LeeSubramania KrishnakumarVolkan H. OzguzChi Fan
    • Sadik C. EsenerSing H. LeeSubramania KrishnakumarVolkan H. OzguzChi Fan
    • C23C14/08C23C14/50G02F1/055H01L21/84
    • C23C14/505C23C14/088G02F1/0551H01L21/84
    • A system and method are disclosed for producing electro-optic components with transparent, ferroelectric PLZT (perovskite) film characteristics, without lead diffusion. In particular, the fabrication of PLZT-on-sapphire electro-optic components for devices such as spatial light modulators, integrated infrared detectors, and optoelectronic integrated circuits is disclosed, permitting integration of such devices with semiconductor devices having the same substrate, such as silicon-on-sapphire circuits. The system comprises a PLZT film deposition apparatus, a silicon dioxide deposition apparatus, an annealing apparatus, and an optional plasma etching apparatus. During film deposition, material from a PLZT target (source) of suitable (9/65/35) composition is deposited on the substrate and is epitaxially grown on the R-plane (1102) of the substrate, forming a non-ferroelectric, pyrochloric film. The substrate and film are then placed in a silicon dioxide (SiO.sub.2) deposition chamber where SiO.sub.2 is deposited as an insulating layer covering (capping) the film. The substrate, with film and SiO.sub.2 layer, is then placed in an annealing apparatus, at a selected temperature above 550.degree. C. for a selected period of time, to transform the non-ferroelectric, pyrochloric film into a ferroelectric, perovskite film of (9/65/35) composition. The SiO.sub.2 layer may then be removed by conventional etching.
    • 公开了一种用于生产具有透明的铁电PLZT(钙钛矿)膜特性的电光元件而不引线扩散的系统和方法。 特别地,公开了用于诸如空间光调制器,集成红外检测器和光电集成电路的器件的PLZT-蓝宝石电光元件的制造,允许这样的器件与具有相同衬底的半导体器件(诸如硅 - 蓝宝石电路。 该系统包括PLZT膜沉积设备,二氧化硅沉积设备,退火设备和可选的等离子体蚀刻设备。 在膜沉积期间,将来自适合(9/65/35)组成的PLZT靶(源)的材料沉积在衬底上并在衬底的R平面(1102)上外延生长,形成非铁电,高氯酸 电影。 然后将衬底和膜放置在二氧化硅(SiO 2)沉积室中,其中SiO 2沉积为覆盖(封盖)膜的绝缘层。 然后将具有膜和SiO 2层的衬底在选定的温度高于550℃的退火设备中放置一段选定的时间,以将非铁电的高氯酸盐膜转变成铁电体的钙钛矿膜( 9/65/35)组成。 然后可以通过常规蚀刻去除SiO 2层。
    • 4. 发明授权
    • Forwarding traffic flow in intelligent resilient framework system
    • 在智能弹性框架系统中转发流量
    • US08738802B2
    • 2014-05-27
    • US13884575
    • 2011-10-18
    • Chi FanYong WangDehan Yan
    • Chi FanYong WangDehan Yan
    • G06F15/173
    • H04L29/06H04L45/58
    • A method and member device for forwarding service messages in an Intelligent Resilient Framework (IRF) system and an IRF system. In the method, each member device in the IRF system is allocated to at least two virtual devices, and at least one stack link for each virtual device is configured in order to connect interface boards among different member devices. When it is determined according to a forwarding entry of an interface board in a first member device receiving a service message that the service message is to be transmitted to a second member device, the service message is forwarded via the at least one stack link configured for the virtual device of that interface board.
    • 一种用于在智能弹性框架(IRF)系统和IRF系统中转发服务消息的方法和成员设备。 在该方法中,将IRF系统中的每个成员设备分配给至少两个虚拟设备,并且配置每个虚拟设备的至少一个堆叠链路,以便在不同的成员设备之间连接接口板。 当根据接口板的转发表项确定接收到服务消息的第一成员设备将服务消息发送到第二成员设备时,经由至少一个堆叠链路转发服务消息, 该接口板的虚拟设备。
    • 5. 发明申请
    • FORWARDING TRAFFIC FLOW IN INTELLIGENT RESILIENT FRAMEWORK SYSTEM
    • 在智能恢复框架系统中前进流量流动
    • US20130232202A1
    • 2013-09-05
    • US13884575
    • 2011-10-18
    • Chi FanYong WangDehan Yan
    • Chi FanYong WangDehan Yan
    • H04L29/06
    • H04L29/06H04L45/58
    • A method and member device for forwarding service messages in an Intelligent Resilient Framework (IRF) system and an IRF system. In the method, each member device in the IRF system is allocated to at least two virtual devices, and at least one stack link for each virtual device is configured in order to connect interface boards among different member devices. When it is determined according to a forwarding entry of an interface board in a first member device receiving a service message that the service message is to be transmitted to a second member device, the service message is forwarded via the at least one stack link configured for the virtual device of that interface board.
    • 一种用于在智能弹性框架(IRF)系统和IRF系统中转发服务消息的方法和成员设备。 在该方法中,将IRF系统中的每个成员设备分配给至少两个虚拟设备,并且配置每个虚拟设备的至少一个堆叠链路,以便在不同的成员设备之间连接接口板。 当根据接口板的转发表项确定接收到服务消息的第一成员设备将服务消息发送到第二成员设备时,经由至少一个堆叠链路转发服务消息, 该接口板的虚拟设备。