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    • 2. 发明专利
    • Method and system for managing optical distribution network
    • IL231833A
    • 2017-06-29
    • IL23183314
    • 2014-03-31
    • GLIMMERGLASS NETWORKS INC
    • H04J20060101
    • A system for controlling a purely photonic network comprising: at least one digital computing device configured for: storing instructions which, when executed by one or more processors, cause the instructions to control a photonic network, the photonic network comprising purely photonic elements that require no electrical-to-optical or optical-to-electrical conversion between a network input port and a network output port, wherein the digital computing device stores: 1) relationship information that describes the relationships between a plurality of network elements in the photonic network; and 2) configuration information that describes the current state of each of the plurality of network elements; receiving a path generation request that includes a first port identifier and a second port identifier, wherein the first port identifier represents an input port and the second port identifier represents a first output port; based at least in part on the relationship information and the configuration information, generating candidate paths that begin at the input port and end at at least the first output port.
    • 6. 发明申请
    • METHOD AND SYSTEM FOR COMBINING FIBER OPTIC LINK HIERARCHICAL STREAM METADATA WITH INTERNET PROTOCOL METADATA
    • 光纤链路分层流网络与互联网协议元数据的组合方法与系统
    • US20150106932A1
    • 2015-04-16
    • US14513838
    • 2014-10-14
    • Glimmerglass Networks, Inc.
    • Gilbert R. MesecXiongwei HeGordon Robinson
    • H04L29/06H04Q11/00
    • H04L63/1425H04L43/0817H04Q11/0005H04Q2011/0039
    • Physical Layer and Data-Link Layer data are connected with Networking through Application Layer data/information to enable searching, sorting, and identification of novel relationships between signal sources and their contents. Metadata can be used at the Physical Layer in an optical fiber network, connecting with metadata generated at the Data Link Layer, connected to metadata generated at the Network to Application Layer. The Physical Layer metadata is obtained from configuration and provisioning data within an Intelligent Optical System. The Data-Link Layer metadata is obtained from a signal processing device. The Network through Application Metadata is obtained from a packet capture or flow capture probe. The metadata from all layers are linked in a data store such that the network traffic, passing through stream(s) in optical fiber(s) layer data are combined. The effect of that combination enables security, intelligence, surveillance, or network analysts to separate application and network information by original source.
    • 物理层和数据链路层数据通过应用层数据/信息与网络连接,以便能够搜索,排序和识别信号源及其内容之间的新关系。 元数据可以在光纤网络中的物理层使用,与数据链路层生成的元数据相连,并连接到网络到应用层生成的元数据。 物理层元数据是从智能光学系统中的配置和配置数据获得的。 从信号处理设备获得数据链路层元数据。 通过应用程序元数据网络从数据包捕获或流捕获探针获取。 来自所有层的元数据被链接在数据存储器中,使得通过光纤层数据中的流的网络流量被组合。 该组合的效果使安全,智能,监控或网络分析师能够根据原始来源分离应用和网络信息。
    • 7. 发明申请
    • Method for manufacturing electro ceramic components
    • 电陶瓷部件的制造方法
    • US20030022424A1
    • 2003-01-30
    • US10193972
    • 2002-07-12
    • GLIMMERGLASS NETWORKS, INC.
    • Bryan P. StakerDouglas L. TeeterEric L. Bogatin
    • H01L021/31
    • B81B7/0006G02B6/3518G02B6/357G02B6/3582G02B6/3584G02B2006/12104
    • An array apparatus has a micromachined SOI structure, such as a MEMS array, mounted directly on a class of insulative substrate, such as low temperature co-fired ceramic or a thermal-coefficient of expansion matched glass, in which is embedded electrostatic electrodes disposed in alignment with the individual MEMS elements, where the electrostatic electrodes are configured for substantial fanout. In a specific embodiment in order to compensate for differences in thermal-expansion characteristics between SOI and ceramic, a flexible mounting is effected by means of posts, bridges and/or mechanical elements which allow uneven expansion in x and y while maintaining z-axis stability. Methods according to the invention include fabrication steps wherein electrodes are fabricated to a post-fired ceramic substrate and coupled via traces through the ceramic substrate to driver modules.
    • 阵列装置具有微机械加工SOI结构,例如MEMS阵列,其直接安装在一类绝缘基底上,例如低温共烧陶瓷或热膨胀系数匹配玻璃,其中嵌入静电电极 与各个MEMS元件对准,其中静电电极被配置为实质上扇出。 在一个具体实施例中,为了补偿SOI和陶瓷之间的热膨胀特性的差异,通过柱,桥和/或机械元件实现柔性安装,其允许x和y中的不均匀膨胀,同时保持z轴稳定性 。 根据本发明的方法包括制造步骤,其中电极被制造成后烧制陶瓷衬底,并且经由陶瓷衬底的迹线耦合到驱动器模块。
    • 8. 发明专利
    • METHOD AND SYSTEM FOR MANAGING OPTICAL DISTRIBUTION NETWORK
    • HK1200988A1
    • 2015-08-14
    • HK15101423
    • 2015-02-09
    • GLIMMERGLASS NETWORKS INC
    • HE XIONGWEI
    • H04J20060101
    • A system for controlling a purely photonic network comprising: at least one digital computing device configured for: storing instructions which, when executed by one or more processors, cause the instructions to control a photonic network, the photonic network comprising purely photonic elements that require no electrical-to-optical or optical-to-electrical conversion between a network input port and a network output port, wherein the digital computing device stores: 1) relationship information that describes the relationships between a plurality of network elements in the photonic network; and 2) configuration information that describes the current state of each of the plurality of network elements; receiving a path generation request that includes a first port identifier and a second port identifier, wherein the first port identifier represents an input port and the second port identifier represents a first output port; based at least in part on the relationship information and the configuration information, generating candidate paths that begin at the input port and end at at least the first output port.