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    • 1. 发明申请
    • Optoelectronic device capable of participating in in-band traffic
    • 能够参与带内流量的光电器件
    • US20060018664A1
    • 2006-01-26
    • US11231559
    • 2005-09-21
    • Frank LevinsonMark Farley
    • Frank LevinsonMark Farley
    • H04B10/00
    • H04B10/40H04B10/6911
    • An optoelectronic device that has a network address (e.g., IF address) and participates in in-band traffic for purposes of performing functions (e.g., network diagnostics, network control, network provisioning, fault isolation, etc.) that are traditionally performed by host equipment. An embodiment of the invention may have a protocol engine and a status monitoring module. The protocol engine identifies data packets that are addressed to the optoelectronic device, and allows the optoelectronic device to insert packets of information generated by the device into in-band data. Logic of the optoelectronic device may modify the operating parameters of the device according to the control information included in the data packets. The status monitoring module detects the device's physical conditions and the conditions of its links. Status information generated by the status monitoring module may be incorporated into in-band data by the protocol engine such that the status information may be communicated to a host device or a remote device.
    • 具有传统上由主机执行的功能(例如,网络诊断,网络控制,网络配置,故障隔离等)的具有网络地址(例如,IF地址)并且参与带内流量的光电子器件 设备。 本发明的实施例可以具有协议引擎和状态监视模块。 协议引擎识别寻址到光电器件的数据分组,并允许光电子器件将由器件产生的信息包插入带内数据。 光电器件的逻辑可以根据包含在数据分组中的控制信息来修改设备的操作参数。 状态监控模块检测设备的物理状况及其链路状况。 由状态监视模块生成的状态信息可以由协议引擎并入带内数据,使得可以将状态信息传送到主机设备或远程设备。
    • 3. 发明申请
    • Modular controller that interfaces with modular optical device
    • 与模块化光学设备连接的模块化控制器
    • US20050047778A1
    • 2005-03-03
    • US10929978
    • 2004-08-30
    • Frank Levinson
    • Frank Levinson
    • G06F13/12G06F19/00H04B10/08
    • H04B10/40
    • A controller for optical components. A controller includes an analog interface that is configured to connect to an optical component external to the controller. The analog interface is able to deliver and/or receive signals to and/or from the optical component. The controller includes a digital interface that is able to connect to a memory external to the controller. The digital interface may receive a digital representation of operating characteristics of the optical component. The controller is configured to deliver and/or receive signals to and/or from the optical component based on the digital representation of operating characteristics.
    • 光学元件控制器。 控制器包括被配置为连接到控制器外部的光学部件的模拟接口。 模拟接口能够向和/或从光学部件传送和/或接收信号。 控制器包括能够连接到控制器外部的存储器的数字接口。 数字接口可以接收光学部件的操作特性的数字表示。 控制器被配置为基于操作特性的数字表示来向和/或从光学部件接收信号和/或从光学部件接收信号。
    • 5. 发明授权
    • Optical bus
    • 光总线
    • US08503842B2
    • 2013-08-06
    • US13225200
    • 2011-09-02
    • Frank Levinson
    • Frank Levinson
    • G02B6/26G02B6/42
    • G02B6/4246G02B6/4214H04B10/2504H04B10/278
    • An optical bus. Optical sub-assemblies are used to connect lengths of optical fiber to form a single optical fiber that is a bus. A master transceiver may be connected to one end of the fiber and nodes can be connected to the optical sub-assemblies. Each optical sub-assembly includes a center fiber with a mirror that enables each connector to reflect optical signals out of the fiber and that enables a node to launch optical signals on the optical bus. The optical bus can also be connected with a second transceiver that may be used to deliver optical power to the attached nodes. Some nodes include two optical subassemblies to enable bidirectional communication on the optical bus.
    • 光总线。 光子组件用于连接光纤的长度以形成作为总线的单个光纤。 主收发器可以连接到光纤的一端,并且节点可以连接到光学子组件。 每个光学子组件包括具有反射镜的中心光纤,其使得每个连接器能够将光信号反射出光纤,并且使得节点能够在光学总线上发射光信号。 光总线也可以与第二收发器连接,第二收发器可用于向所连接的节点传送光功率。 一些节点包括两个光学子组件,以在光学总线上实现双向通信。
    • 7. 发明授权
    • Sensors with modular architecture
    • 传感器采用模块化架构
    • US07599583B2
    • 2009-10-06
    • US11278116
    • 2006-03-30
    • Frank Levinson
    • Frank Levinson
    • G02B6/12B24B49/00
    • G01D11/245
    • A modular sensing system architecture. A sensing system includes multiple planes that are in electrical communication. A power plane provides a power source and a communications module that can be optical and/or electrical in nature. The power source can be upgraded using optical power delivered over an optical fiber. The sensing system can also both transmit/receive data over the optical fiber. A processing plane provides memory and processing power. The processing plane can be updated/upgraded via the communications module or the optical fiber. A sensor plane includes multiple sensors. The architecture enables sensor planes to be interchangeable while still having communication with other planes of the sensor. The processing plane can be updated to accommodate different sensor configurations.
    • 模块化感测系统架构。 感测系统包括电气通信的多个平面。 电力平面提供了一种电源和可以是光学和/或电性质的通信模块。 可以使用通过光纤传送的光功率来升级电源。 感测系统还可以通过光纤发送/接收数据。 处理平面提供内存和处理能力。 可以通过通信模块或光纤更新/升级处理平面。 传感器平面包括多个传感器。 该架构使传感器平面可以互换,同时仍然与传感器的其他平面通信。 可以更新处理平面以适应不同的传感器配置。
    • 8. 发明申请
    • LOW POWER PULSE MODULATION COMMUNICATION IN MESH NETWORKS WITH MODULAR SENSORS
    • 具有模块传感器的网状网络中的低功率脉冲调制通信
    • US20070123282A1
    • 2007-05-31
    • US11565420
    • 2006-11-30
    • Frank Levinson
    • Frank Levinson
    • H04Q7/00
    • H04Q9/00G06F19/00H04Q2209/25
    • A modular sensor architecture. A sensor includes multiple planes that are in electrical communication. A power plane provides a power source and a communications module that can be optical and/or electrical in nature. The power source can be upgraded using optical power delivered over an optical fiber. The sensor can also both transmit/receive data over the optical fiber. A processing plane provides memory and processing power. The processing plane can be updated/upgraded via the communications module or the optical fiber. A sensor plane includes multiple sensors. Deployed sensors can transmit and receive data or programming using mesh networks and using low power pulse modulation.
    • 模块化传感器架构。 传感器包括电气通信的多个平面。 电力平面提供了一种电源和可以是光学和/或电性质的通信模块。 可以使用通过光纤传送的光功率来升级电源。 传感器还可以通过光纤传输/接收数据。 处理平面提供内存和处理能力。 可以通过通信模块或光纤更新/升级处理平面。 传感器平面包括多个传感器。 部署的传感器可以使用网状网络和使用低功率脉冲调制来传输和接收数据或编程。