OPTICAL NETWORK ELEMENT HARDWARE

Brand Owner (click to sort) Address Description
SORRENTO SORRENTO NETWORKS, INC. 9990 Mesa Rim Road San Diego CA 92121 OPTICAL NETWORK ELEMENT HARDWARE, NAMELY SYSTEMS AND SUBSYSTEMS COMPRISED OF TRANSPONDERS, TRANSMITTERS, RECEIVERS, MULTPLEXERS, OPTICAL BAND AND WAVELENGTH FILTERS, AMPLIFIERS, OPTICAL SWITCHES AND ROUTERS, OPTICAL AND ELECTRICAL SIGNAL PERFORMANCE MONITORS, SYSTEM CONTROL AND MANAGEMENT MODULES; EMBEDDED OPTICAL NETWORK ELEMENT SOFTWARE, NAMELY, FIRMWARE THAT ADDS NETWORK INTELLIGENCE, FUNCTIONS AND FEATURES TO THE AFOREMENTIONED HARDWARE; AND OPTICAL NETWORK ELEMENT AND OPTICAL NETWORK MANAGEMENT SOFTWARE DEVELOPED FOR MONITORING, CONTROL, PROVISIONING, CONFIGURATION, RECONFIGURATION AND MANAGEMENT OF THE AFOREMENTIONED NETWORK ELEMENT HARDWARE AND FIRMWARE AS WELL AS THE OPTICAL NETWORKS RESULTING FROM THE INTERCONNECTION OF NETWORK ELEMENTS;
SORRENTO NETWORKS SWITCHING ON THE LIGHT SORRENTO NETWORKS, INC. 9990 Mesa Rim Road San Diego CA 92121 OPTICAL NETWORK ELEMENT HARDWARE, NAMELY SYSTEMS AND SUBSYSTEMS COMPRISED OF TRANSPONDERS, TRANSMITTERS, RECEIVERS, MULTIPLEXERS, OPTICAL BAND AND WAVELENGTH FILTERS, AMPLIFIERS, OPTICAL SWITCHES AND ROUTERS, OPTICAL AND ELECTRICAL SIGNAL PERFORMANCE MONITORING DEVICES, SYSTEM CONTROL AND MANAGEMENT SUB-UNITS; EMBEDDED OPTICAL NETWORK ELEMENT FIRMWARE THAT ADDS NETWORK INTELLIGENCE, FUNCTIONS AND FEATURES TO THE HARDWARE; AND OPTICAL NETWORK ELEMENT AND OPTICAL NETWORK MANAGEMENT SOFTWARE DEVELOPED FOR MONITORING, CONTROL, PROVISIONING, CONFIGURATION, RECONFIGURATION AND MANAGEMENT OF THE NETWORK ELEMENT HARDWARE AND FIRMWARE AS WELL AS THE OPTICAL NETWORKS RESULTING FROM THE INTERCONNECTION OF NETWORK ELEMENTS;SORRENTO NET WORKS SWITCHING ON THE LIGHT;NETWORKS;
 

Where the owner name is not linked, that owner no longer owns the brand

   
Technical Examples
  1. A computer-implemented system and method for generating a hardware implementation of graphical code. The method comprises first creating a graphical program. A first portion of the graphical program may optionally be compiled into machine code for execution by a CPU. A second portion of the graphical program is converted into a hardware implementation according to the present invention. The operation of converting the graphical program into a hardware implementation comprises exporting the second portion of the graphical program into a hardware description, wherein the hardware description describes a hardware implementation of the second portion of the graphical program, and then configuring a programmable hardware element utilizing the hardware description to produce a configured hardware element. The configured hardware element thus implements a hardware implementation of the second portion of the graphical program.