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    • 3. 发明授权
    • High-speed optical transceiver for infiniband and ethernet
    • 用于Infiniband和以太网的高速光收发器
    • US09270377B2
    • 2016-02-23
    • US14456217
    • 2014-08-11
    • John P. MateoskyMichael Y. Frankel
    • John P. MateoskyMichael Y. Frankel
    • H04B10/00H04B10/40H04L27/20H04L27/22H04B10/27H04J14/00H04J14/02H04L1/00
    • H04B10/40H04B10/27H04J14/0227H04L1/004H04L1/0056H04L27/2096H04L27/223
    • The present invention provides a high-speed 100 G optical transceiver for InfiniBand and Ethernet with associated mapping to frame InfiniBand and Ethernet into GFP-T. The optical transceiver utilizes an architecture which relies on standards-compliant (i.e., multi-sourced) physical client interfaces. These client interfaces are back-ended with flexible, programmable Field Programmable Gate Array (FPGA) modules to accomplish either InfiniBand or Ethernet protocol control, processing, re-framing, and the like. Next, signals are encoded with Forward Error Correction (FEC) and can include additional Optical Transport Unit (OTU) compliant framing structures. The resulting data is processed appropriately for the subsequent optical re-transmission, such as, for example, with differential encoding, Gray encoding, I/Q Quadrature encoding, and the like. The data is sent to an optical transmitter block and modulated onto an optical carrier. Also, the same process proceeds in reverse on the receive side.
    • 本发明提供了用于InfiniBand和以太网的高速100G光收发器,具有将InfiniBand和以太网格式化成GFP-T的相关映射。 光收发器利用依赖于符合标准(即多源)物理客户端接口的架构。 这些客户端接口具有灵活的,可编程的现场可编程门阵列(FPGA)模块,可实现InfiniBand或以太网协议控制,处理,重新构建等功能。 接下来,信号用前向纠错(FEC)进行编码,并且可以包括额外的光传输单元(OTU)兼容框架结构。 对于随后的光学重传,例如用差分编码,格雷编码,I / Q正交编码等适当地处理所得到的数据。 将数据发送到光发射机模块并调制到光载波上。 而且,相同的处理在接收侧进行相反的处理。
    • 6. 发明申请
    • HIGH-SPEED OPTICAL TRANSCEIVER FOR INFINIBAND AND ETHERNET
    • 用于INFINIBAND和以太网的高速光纤收发器
    • US20150030337A1
    • 2015-01-29
    • US14456217
    • 2014-08-11
    • John P. MATEOSKYMichael Y. FRANKEL
    • John P. MATEOSKYMichael Y. FRANKEL
    • H04B10/40H04B10/27
    • H04B10/40H04B10/27H04J14/0227H04L1/004H04L1/0056H04L27/2096H04L27/223
    • The present invention provides a high-speed 100 G optical transceiver for InfiniBand and Ethernet with associated mapping to frame InfiniBand and Ethernet into GFP-T. The optical transceiver utilizes an architecture which relies on standards-compliant (i.e., multi-sourced) physical client interfaces. These client interfaces are back-ended with flexible, programmable Field Programmable Gate Array (FPGA) modules to accomplish either InfiniBand or Ethernet protocol control, processing, reframing, and the like. Next, signals are encoded with Forward Error Correction (FEC) and can include additional Optical Transport Unit (OTU) compliant framing structures. The resulting data is processed appropriately for the subsequent optical re-transmission, such as, for example, with differential encoding, Gray encoding, I/Q Quadrature encoding, and the like. The data is sent to an optical transmitter block and modulated onto an optical carrier. Also, the same process proceeds in reverse on the receive side.
    • 本发明提供了用于InfiniBand和以太网的高速100G光收发器,具有将InfiniBand和以太网格式化成GFP-T的相关映射。 光收发器利用依赖于符合标准(即多源)物理客户端接口的架构。 这些客户端接口具有灵活的可编程现场可编程门阵列(FPGA)模块,可实现InfiniBand或以太网协议控制,处理,重构等功能。 接下来,信号用前向纠错(FEC)进行编码,并且可以包括额外的光传输单元(OTU)兼容框架结构。 对于随后的光学重传,例如用差分编码,格雷编码,I / Q正交编码等适当地处理所得到的数据。 将数据发送到光发射机模块并调制到光载波上。 而且,相同的处理在接收侧进行相反的处理。
    • 8. 发明授权
    • High-speed optical transceiver for InfiniBand and Ethernet
    • 用于InfiniBand和以太网的高速光收发器
    • US08805195B2
    • 2014-08-12
    • US12166537
    • 2008-07-02
    • John P. MateoskyMichael Y. Frankel
    • John P. MateoskyMichael Y. Frankel
    • H04B10/00H04B10/06
    • H04B10/40H04B10/27H04J14/0227H04L1/004H04L1/0056H04L27/2096H04L27/223
    • The present invention provides a high-speed 100G optical transceiver for InfiniBand and Ethernet with associated mapping to frame InfiniBand and Ethernet into GFP-T. The optical transceiver utilizes an architecture which relies on standards-compliant (i.e., multi-sourced) physical client interfaces. These client interfaces are back-ended with flexible, programmable Field Programmable Gate Array (FPGA) modules to accomplish either InfiniBand or Ethernet protocol control, processing, re-framing, and the like. Next, signals are encoded with Forward Error Correction (FEC) and can include additional Optical Transport Unit (OTU) compliant framing structures. The resulting data is processed appropriately for the subsequent optical re-transmission, such as, for example, with differential encoding, Gray encoding, I/Q Quadrature encoding, and the like. The data is sent to an optical transmitter block and modulated onto an optical carrier. Also, the same process proceeds in reverse on the receive side.
    • 本发明提供了用于InfiniBand和以太网的高速100G光收发器,具有将InfiniBand和以太网格式化成GFP-T的相关映射。 光收发器利用依赖于符合标准(即多源)物理客户端接口的架构。 这些客户端接口具有灵活的,可编程的现场可编程门阵列(FPGA)模块,可实现InfiniBand或以太网协议控制,处理,重新构建等功能。 接下来,信号用前向纠错(FEC)进行编码,并且可以包括额外的光传输单元(OTU)兼容框架结构。 对于随后的光学重传,例如用差分编码,格雷编码,I / Q正交编码等适当地处理所得到的数据。 将数据发送到光发射机模块并调制到光载波上。 而且,相同的处理在接收侧进行相反的处理。
    • 9. 发明授权
    • Secure fiber optic communication systems and methods
    • 安全光纤通信系统和方法
    • US08798455B2
    • 2014-08-05
    • US12768808
    • 2010-04-28
    • Michael Y. Frankel
    • Michael Y. Frankel
    • H04B17/00G02B6/00G02B6/26
    • H04B10/85
    • The present disclosure relates to fiber optic networks carrying sensitive information such as classified government communications, sensitive financial information, proprietary corporate information, and associated systems and methods for secure transmission where fiber tampering is easily detected. The present invention provides improved security systems and methods for fiber optic communication links. Specifically, a hollow-core photonic bandgap fiber is deployed as a transmission medium. A secure fiber optic communication link is established over the hollow-core photonic bandgap fiber with a monitoring mechanism. The monitoring mechanism is configured to detect large losses and large spectral variability each indicative of loss introduced by malicious intrusion attempts. Further, the monitoring mechanism allows easy differentiation of intrusion relative to normal system variations thereby reducing false positives and missed intrusions.
    • 本公开涉及携带敏感信息的光纤网络,例如分类的政府通信,敏感的财务信息,专有的公司信息,以及用于安全传输的相关系统和方法,其中容易检测到光纤篡改。 本发明提供了用于光纤通信链路的改进的安全系统和方法。 具体地说,将中空光子带隙光纤部署为传输介质。 在具有监控机制的中空光子带隙光纤上建立安全的光纤通信链路。 监视机制被配置为检测大损耗和大的频谱变化,每个指示由恶意入侵企图引入的损失。 此外,监控机制允许容易地相对于正常系统变化的入侵区分,从而减少误报和错过入侵。