IP Library Assignment 020261/0434
Patent Assignment
Reel/Frame 020261/0434

Change of Name

Recorded: 2007-12-18 Received: 2007-12-18 Pages: 5
Assignor
DORSAL NETWORKS, INC.
Executed: 2004-12-21
Assignee
DORSAL NETWORKS, LLC
1025 ELDORADO BLVD., BROOMFIELD, CO, 80021, UNITED STATES
Covered Properties (41)
Interconnections and Protection Between Optical Communications Networks
Application: 11/635,180 →
Systems and Methods for Placing Line Terminating Equipment of Optical Communication Systems in Customer Points of Presence
Application: 11/534,892 →
Brushless Alternator with Stationary Shaft
Application: 11/394,258 →
Pump Assembly Employing Coupled Radiation Sources for Multiple Fibers
Application: 10/650,947 →
Automatically Switched Redundant Switch Configurations
Application: 10/435,865 →
Split Redundant Trunk Architecture Using Passive Splitters and Path Switching
Application: 10/397,185 →
Systems and Methods for Compensating for Signal Transients
Application: 10/124,397 →
Modular Multiplexing/Demultiplexing Units in Optical Transmission Systems
Application: 10/046,207 →
Systems and methods for launch power pre-emphasis
Application: 10/036,395 →
Systems and methods for detecting faults in optical communication systems
Application: 10/003,247 →
High Density Optical Packaging
Application: 10/003,298 →
Pick and place holes and clips for cable management
Application: 09/985,267 →
Methods and systems for integrated IP routers and long haul/ultra long haul optical communication transceivers
Application: 09/971,075 →
Methods for thermal control of optical components
Application: 09/969,029 →
Balanced Coupler for Radiation Sources
Application: 09/969,142 →
Pump Laser Current Driver
Application: 09/969,154 →
High Power Repeaters for Raman Amplified, Wave Division Multiplexed Optical Communication Systems
Application: 09/969,153 →
Packaging structure for optical components
Application: 09/969,030 →
Systems and Methods for Placing Line Terminating Equipment of Optical Communication Systems in Customer Points of Presence
Application: 09/962,535 →
Bifurcated optical and power connectivity for ultra long-haul optical communication systems
Application: 09/960,699 →
Fiber handling track for optical equipment
Application: 09/960,482 →
Methods for ultra long-haul optical communications
Application: 09/960,722 →
Optical Transmission System Employing Auto-Synchronized Chirped Return-to-Zero Transmitter
Application: 09/953,566 →
Electronic Rz/Csrz Signal Generation for Optical Communication Systems
Application: 09/953,567 →
Systems and Methods for Mounting Devices
Application: 09/949,933 →
Integrated Wedge Lock and Elastic Member
Application: 09/948,674 →
Terminals Having Sub-Band Substitute Signal Control in Optical Communication Systems
Application: 09/939,784 →
Methods of Signal Substitution for Maintenance of Amplifier Saturation
Application: 09/939,783 →
Methods for reliable communication of link monitoring information in optical communications networks
Application: 09/927,441 →
Redundant line unit monitoring architecture
Application: 09/927,439 →
Optical Fiber Winding Apparatus and Method
Application: 09/927,440 →
Methods and Systems for Hybrid Interfaces and Architectures for Optical Communications
Application: 09/917,171 →
Methods and Systems for High Performance, Wide Bandwidth Optical Communication Systems Using Raman Amplification
Application: 09/917,266 →
Zero Data Loss Network Protection
Application: 09/911,859 →
Automatically Switched Redundant Switch Configurations
Application: 09/886,409 →
Shared Forward Pumping in Optical Communications Network
Application: 09/865,440 →
Split Redundant Trunk Architecture Using Passive Splitters and Path Switching
Application: 09/850,141 →
Optical network architecture with reduced equipment
Application: 09/840,296 →
Method of pump wavelength combing for enhanced power dynamic range and redundancy broad band raman optical amplifier system
Application: 09/838,594 →
Pump Assembly Employing Coupled Radiation Sources for Multiple Fibers
Application: 09/838,218 →
Method and System for Dispersion Maps and Enhanced Distributed Gain Effect in Long Haul Telecommunications
Application: 09/809,422 →