Abstract:
A pluggable active optical module (AOM) having an electrical connector at a first end and one or more optical adapters at a second end is disclosed. The AOM includes a storage device interface at the second end, and a programmable processor coupled to the storage device interface and one or more first contacts of the electrical connector. The programmable processor is configured to access a storage device in one or more optical fibers through the storage device interface and provide physical layer management (PLM) information obtained therefrom to a host device connected to the electrical connector. The AOM also includes a switch coupled between a second contact of the electrical connector and ground, the switch coupled to the programmable processor such that that programmable processor can control the switch to selectively connect a second contact of the electrical connector to ground.
Abstract:
A fiber panel system includes a chassis including a backplane; and at least a first blade configured to mount to the chassis. The first blade is moveable relative to the chassis between a retracted (closed) position and at least one extended position. The first blade includes a coupler arrangement for connecting together media segments. Each blade includes a blade processor and a plurality of smart couplers. A chassis processor is electrically coupled to a processor port of the chassis backplane.
Abstract:
A communications connection system includes an adapter module defining at least first and second ports and at least one media reading interface mounted at one of the ports. The first adapter module is configured to receive a fiber optic connector at each port. Some type of connectors may be formed as duplex connector arrangements. Some types of adapters may include ports without media reading interfaces. Some types of media reading interfaces include contact members having three contact sections.
Abstract:
A communications connection system includes an adapter module defining at least first and second ports and at least one media reading interface mounted at one of the ports. The first adapter module is configured to receive a fiber optic connector at each port. Some type of connectors may be formed as duplex connector arrangements. Some types of adapters may include ports without media reading interfaces. Some types of media reading interfaces include contact members having three contact sections.
Abstract:
A connector arrangement includes a plug nose body; a printed circuit board positioned within a cavity of the plug nose body; and a plug cover that mounts to the plug nose body to enclose the printed circuit board within the cavity. The printed circuit board includes a storage device configured to store information pertaining to the electrical segment of communications media. The plug cover defines a plurality of slotted openings through which the second contacts are exposed. A connector assembly includes a jack module and a media reading interface configured to receive the plug. A patch panel includes multiple jack modules and multiple media reading interfaces.
Abstract:
A communications connection system includes an adapter module defining at least first and second ports and at least one media reading interface mounted at one of the ports. The first adapter module is configured to receive a fiber optic connector at each port. Some type of connectors may be formed as duplex connector arrangements. Some types of adapters may include ports without media reading interfaces. Some types of media reading interfaces include contact members having three contact sections.
Abstract:
Systems and methods for network port monitoring using low energy wireless communications are provided. In one embodiment, a device comprises: at least one port module, the at least one port module comprising one or more connector ports each configured to receive a connector of a network data cable; and a port state sensor that includes a port sensing circuit coupled to a sensor controller, wherein the port sensing circuit is configured to sense a port state for the one or more connector ports; wherein the sensor controller is configured to input the port state from the port sensing circuit, wherein in response to detecting a change in the port state from the port sensing circuit, the sensor controller wirelessly transmits port state information to a port state monitor.
Abstract:
A pluggable active optical module includes: electrical connector to communicate electrical signals; optical adapter(s) to communicate optical signals over optical fiber(s); storage device interface configured to contact corresponding storage device interface on optical fiber(s); transmitter optical assembly to convert electrical signals received from electrical connector into optical signals for communication by optical adapter(s) over optical fiber(s); a receiver optical assembly to convert optical signals received from optical adapter(s) to electrical signals for communication by electrical connector; controller to control transmitter optical assembly and receiver optical assembly; programmable processor coupled to storage device interface and first contact(s) of electrical connector and that accesses physical layer management information from storage device in optical fiber(s) through storage device interface and provides physical layer management information to host device connected to electrical connector; and switch between second contact of electrical connector and ground that selectively connects second contact of electrical connector to ground.
Abstract:
A communications connection system includes an adapter module defining at least first and second ports and at least one media reading interface mounted at one of the ports. The first adapter module is configured to receive a fiber optic connector at each port. Some type of connectors may be formed as duplex connector arrangements. Some types of adapters may include ports without media reading interfaces. Some types of media reading interfaces include contact members having three contact sections.
Abstract:
One exemplary embodiment is directed to a system comprising a switch used in a network and a central function configured to receive physical layer information related to the network. The physical layer information includes information associating media access control (MAC) addresses of devices on the network with ports of the switch. The switch is configured to use information about a spanning tree determined by the central function to configure the switch to carry out a switching function performed by the switch. The central function is configured to use at least some physical layer information about patching equipment in the network and end devices in the network in associating MAC addresses of devices on the network with the ports of the switch. Other embodiments are disclosed.