By Optical Coupling Patents (Class 398/82)
  • Patent number: 8611759
    Abstract: An optical domain spectrum analyzer/channelizer employs multicasting of an analog signal onto a wavelength division multiplexing grid, followed by spectral slicing using a periodic optical domain filter. This technique allows for a large number of high resolution channels. Wideband, 100% duty cycle, spectrum analysis or channelization is made possible permitting continuous time wideband spectral monitoring. The instantaneous bandwidth of the spectrum analyzer/channelizer is equal to the full radio frequency bandwidth of the analyzer/channelizer.
    Type: Grant
    Filed: February 7, 2012
    Date of Patent: December 17, 2013
    Assignee: The United States of America as Represented by the Secretary of the Navy
    Inventors: Joshua M. Kvavle, James R Adleman, Christopher K. Huynh, Camille-Sophie Bres, Sanja Zlatanovic, Andreas Olof Johan Wiberg, Ping Piu Kuo, Evgeny Myslivets, Everett William Jacobs, Stojan Radic
  • Patent number: 8611749
    Abstract: A reconfigurable optical switching device comprising a Tunable Filters Array (TFA) unit incorporating tunable optical filters, wherein the arrangement is such that one and the same TFA unit is utilized both for performing a drop function of the device in a colorless and reconfigurable manner, and a through function of the device in a reconfigurable manner.
    Type: Grant
    Filed: November 2, 2011
    Date of Patent: December 17, 2013
    Assignee: ECI Telecom Ltd.
    Inventors: Avi Levy, Eyal Lichtman
  • Patent number: 8600238
    Abstract: Gigabit Ethernet connectivity is realized using off-the-shelf GIGABIT INTERFACE CONVERTER transceivers, wave division multiplexer/demultiplexers, and a single optical fiber. Simultaneous and bi-directional optical communication over a single optical fiber connecting two or more nodes is achieved by using at least one GIGABIT INTERFACE CONVERTER transceiver having at least one optical signal output and an optical signal input that are of different wavelengths from each other.
    Type: Grant
    Filed: October 18, 2010
    Date of Patent: December 3, 2013
    Assignee: Technology Advancement Group, Inc.
    Inventors: John A. McEwan, James S. McEwan
  • Publication number: 20130315600
    Abstract: Disclosed are, inter alia, methods, apparatus, computer-storage media, mechanisms, and means associated with registration of optical device characteristics of optical network devices with an optical control layer of the optical network for use in establishing compatible connections through the optical network. Especially end network devices and internal network optical devices that regenerate the optical signal register their communication capabilities of their optical interfaces with the optical control layer of an optical network. This registration allows a light path to be established through the optical network which is compatible with the registered capabilities. The optical control layer may be centralized in an optical layer server and/or distributed among optical devices in the optical network, such as on control processors in multiple, optical layer devices.
    Type: Application
    Filed: July 31, 2013
    Publication date: November 28, 2013
    Applicant: Cisco Technology, Inc., a corporation of California
    Inventors: Ornan Alexander Gerstel, David Delano Ward
  • Patent number: 8594503
    Abstract: An optical device for optically multiplexing or demultiplexing light of different predetermined wavelengths is provided, the optical device comprising at least one first waveguide (11) and at least one second waveguide (12) formed on a substrate (10), wherein the at least one first waveguide and the at least one second waveguide intersect at an intersection, comprising a diffraction grating structure (13) formed at the intersection. There exists a first wavelength or wavelength band travelling within the first waveguide (11) exciting the grating structure and being diffracted an angle corresponding to an outcoupling direction and there exists a second wavelength or wavelength band, different from the first wavelength or wavelength band, travelling within the second waveguide (12) exciting the grating structure and being diffracted at an angle corresponding to the same outcoupling direction.
    Type: Grant
    Filed: April 4, 2008
    Date of Patent: November 26, 2013
    Assignees: IMEC, Universiteit Gent, Genexis B.V.
    Inventors: Gunther Roelkens, Dries Van Thourhout, Roel Baets, Gerard Nicolaas van den Hoven
  • Patent number: 8582975
    Abstract: Consistent with the present disclosure, an optical communication system, such as a passive optical network (PON), is provided that includes an optical line terminal (OLT) and a plurality of optical network units (ONUs). The OLT includes a plurality of photonic integrated circuits that have both optical transmitters and receivers provided therein. Accordingly, the OLT may have fewer components and a simpler, more reliable and cost-effective design than a conventional OLT including discrete components. In addition, various ONU configurations are provided that also have a simple design and fewer components. Thus, ONUs consistent with the present disclosure may also have reduced costs.
    Type: Grant
    Filed: January 10, 2011
    Date of Patent: November 12, 2013
    Assignee: Infinera Corporation
    Inventors: Radhakrishnan L. Nagarajan, Christopher C. Liou, Masaki Kato
  • Patent number: 8565602
    Abstract: Consistent with the present disclosure, a transmitter is provided that includes first and second stages of wavelength locking circuitry. The first stage includes a tunable optical filter that sweeps through the spectrum of a WDM signal at a predetermined rate. A first photodiode senses a tapped portion of the output of the tunable filter. The remaining light is fed to the second stage, which includes a second optical filter, typically having a fixed transmission characteristic. A second photodiode senses the light that passes through the second filter. By sweeping the WDM spectrum the tunable filter can be used to identify the peaks in the WDM spectrum, with each peak corresponding to an optical signal wavelength and occurring at a particular time interval during the sweep.
    Type: Grant
    Filed: March 23, 2009
    Date of Patent: October 22, 2013
    Assignee: Infinera Corporation
    Inventors: Brian Dean Taylor, Alan C. Nilsson, Konstantin Saunichev, Paul N. Freeman
  • Patent number: 8565603
    Abstract: A reconfigurable optical add drop multiplexer core device includes a light distributor, a light combiner, and first and second sets of add and drop ports. The light distributor is configured to receive an optical signal along a primary input of the reconfigurable optical add drop multiplexer core device and to distribute the received optical signal along a plurality of subtending outputs. The light combiner is configured to receive optical signals along a plurality of subtending inputs, to combine the received optical signals into a combined signal, and to output the combined signal. The add and drop ports in the first set function as add and drop ports, respectively, and the add and drop ports in the second set function as both add and drop ports, respectively, and as express ports connectable to another reconfigurable optical add drop multiplexer core device.
    Type: Grant
    Filed: January 11, 2012
    Date of Patent: October 22, 2013
    Assignee: Tellabs Operations, Inc.
    Inventors: Mark E. Boduch, Kimon Papakos, Gilbert A. Buescher
  • Patent number: 8565600
    Abstract: Optical networks can comprise a branch structure with the de-multiplexing/multiplexing structure that operates to disperse a plurality of optical bands. Thus, the optical network comprises an optical network connection with a common optical channel, a plurality of de-multiplexed branch optical service connections and the de-multiplexing/multiplexing structure. In some embodiments, one optical band can be used to deliver input from a common channel to the branch node and the other optical band can carry output along the common channel from the branch node. The de-multiplexing/multiplexing element can be an arrayed waveguide grating. The AWG can have desirable architecture to efficiently provide the corresponding functions with respect to the two optical bands. Appropriate photodetectors and light sources can be associated with the AWG.
    Type: Grant
    Filed: June 10, 2011
    Date of Patent: October 22, 2013
    Assignee: NeoPhotonics Corporation
    Inventors: Kenneth McGreer, Brian McGinnis, Anthony J. Ticknor, Calvin Ho
  • Patent number: 8559821
    Abstract: An apparatus comprising a laser transmitter having a first side and a second side, a filter coupled to the first side, a detector coupled to the second side, and a temperature controller coupled to the laser transmitter and the detector. Also disclosed is an apparatus comprising at least one processor configured to implement a method comprising receiving a photocurrent of a backward light from a laser, determining a wavelength shift offset between a wavelength of the output light and a filter transmission peak, and adjusting a temperature of the laser to substantially reduce the wavelength shift and align the wavelength of the output light with the filter transmission peak.
    Type: Grant
    Filed: December 2, 2009
    Date of Patent: October 15, 2013
    Assignee: Futurewei Technologies, Inc.
    Inventors: Yang Jing Wen, Jizhong Liu, Yu Sheng Bai
  • Patent number: 8559822
    Abstract: An optical fiber hub includes an upstream interface for inputting a laser beam, an optical booster amplifier, a splitting element, and N downstream interfaces. The optical booster amplifier is optically communicated with the upstream interface, and configured for amplifying the laser beam. The splitting element is optically communicated with the optical booster amplifier, and configured for splitting the amplified laser beam into N laser beams. The N downstream interfaces are optically communicated with the splitting element. Each of the N downstream interfaces is configured for outputting one of the N laser beams, wherein N is an integer which is equal to or greater than 2.
    Type: Grant
    Filed: February 28, 2011
    Date of Patent: October 15, 2013
    Assignee: Hon Hai Precision Industry Co., Ltd.
    Inventor: Chia-Ling Hsu
  • Patent number: 8538266
    Abstract: An optical fiber hub includes an upstream port for receiving a light signal from a upstream host, a light splitting element, N downstream ports, and a light converging element. The light splitting element is configured for splitting the light signal into N light beams. The N downstream ports are optically communicated with the light splitting element, and each of the downstream ports is used for receiving a corresponding one of the light beams and transmitting the corresponding light beam to a corresponding downstream peripheral, and receiving a light signal from the corresponding downstream peripheral, wherein N is an integer which is equal to or greater than 2. The light converging element is used for converging light signals from the N downstream ports and transmitting the converged light signals to the upstream port.
    Type: Grant
    Filed: February 28, 2011
    Date of Patent: September 17, 2013
    Assignee: Hon Hai Precision Industry Co., Ltd.
    Inventor: I-Thun Lin
  • Patent number: 8538209
    Abstract: New designs of optical devices, particularly for dropping a selected wavelength or a group of wavelengths as well as demultiplexing a multiplexed signal into several signals, are disclosed. An optical device employs thin film filters with reflectors to reassemble as a fiber Bragg grating. Depending on implementation, a reflector may be a mirror or a coated substrate disposed in a unique way to reflect a light beam from a filter back to a common port of a device. The reflector may also be coated accordingly to bypass a certain portion of the light beam for other purposes. As a result, the optical devices so designed in accordance with the present invention are amenable to small footprint, enhanced impact performance, lower cost, and easier manufacturing process.
    Type: Grant
    Filed: August 23, 2010
    Date of Patent: September 17, 2013
    Assignee: Alliance Fiber Optic Products, Inc.
    Inventor: Yao Li
  • Publication number: 20130236181
    Abstract: Various architectures of a multi-degree reconfigurable optical add-drop multiplexer with reduced contention are provided. These architectures allow the degree of contention reduction to be managed in a flexible and modular way. The degree of the node and the amount of add/drop at the node can also be managed in a flexible and modular way. This Abstract is submitted with the understanding that it will not be used to interpret or limit the scope or meaning of the claims.
    Type: Application
    Filed: March 8, 2012
    Publication date: September 12, 2013
    Applicant: EMPIRE TECHNOLOGY DEVELOPMENT LLC
    Inventor: Trenton Gary Coroy
  • Patent number: 8532489
    Abstract: An apparatus comprising a wavelength division multiplexing (WDM) coupler configured to couple an optical line terminal (OLT) comprising a transmitter and a receiver, wherein the WDM coupler is coupled to the transmitter via a first fiber and to the receiver via a second fiber. An apparatus comprising a WDM coupler for a passive optical network (PON) comprising a plurality of filters and a plurality of ports, wherein the WDM coupler comprises fewer filters than ports. A method comprising receiving a downstream optical signal intended for an optical network terminal (ONT) via a first fiber, and transmitting an upstream optical signal received from the ONT via a second fiber.
    Type: Grant
    Filed: February 22, 2010
    Date of Patent: September 10, 2013
    Assignee: Futurewei Technologies, Inc.
    Inventors: Ning Cheng, Zhishan Feng, Frank J. Effenberger
  • Publication number: 20130230320
    Abstract: An apparatus comprising a first optical input coupler, having first and second input ports and first and second output ports. The optical input coupler can be configured to receive an optical input signal to the first input port. An optical power level ratio of a second optical output to first optical output transmitted from the second and the first output ports, respectively, equals about 2:1.
    Type: Application
    Filed: March 5, 2013
    Publication date: September 5, 2013
    Applicant: ALCATEL-LUCENT USA, INC.
    Inventor: Pietro Bernasconi
  • Patent number: 8521027
    Abstract: A demultiplexer and a method of demultiplexing a multiplex of spatially separable multiple wavelength streams, where an incoming multiplex of multiple wavelength streams is separated into a first stream of wavelengths and a second stream of wavelengths according to at least one predetermined separation criterion. The first stream and the second stream are respectively input into a first and a second input port of a multi-input port, multi-output port frequency demultiplexer where the first stream and the second stream are separated into a first group of single wavelengths and a second group of single wavelengths respectively. The first group of single wavelengths is coupled to respective output ports and the second group of single wavelengths are coupled to respective output ports.
    Type: Grant
    Filed: May 4, 2010
    Date of Patent: August 27, 2013
    Assignee: Alcatel Lucent
    Inventor: Pietro Bernasconi
  • Patent number: 8519803
    Abstract: Tunable resonator systems and methods for tuning resonator systems are disclosed. In one aspect, a resonator system includes an array of resonators disposed adjacent to a waveguide, at least one temperature sensor located adjacent to the array of resonators, and a resonator control electronically connected to the at least one temperature sensor. Each resonator has a resonance frequency in a resonator frequency comb and channels with frequencies in a channel frequency comb are transmitted in the waveguide. Resonance frequencies in the resonator frequency comb are to be adjusted in response to ambient temperature changes detected by the at least one temperature sensors to align the resonance frequency comb with the channel frequency comb.
    Type: Grant
    Filed: October 29, 2010
    Date of Patent: August 27, 2013
    Assignee: Hewlett-Packard Development Company, L.P.
    Inventors: Moray McLaren, Raymond G. Beausoleil, Marco Fiorentino, Nathan Lorenzo Binkert, Norman Paul Jouppi, Alan Lynn Davis
  • Patent number: 8515278
    Abstract: An apparatus comprising a mode coupler configured to couple a plurality optical signals into a plurality of modes, and a receiver coupled to the mode coupler and configured to detect the modes to obtain the optical signals, wherein the optical signals are coupled from single mode fibers. Also disclosed is an apparatus comprising a plurality of single mode waveguides configured to transport a plurality of single mode signals, and a detector coupled to the single mode waveguides and configured to detect the single mode signals, wherein the single mode signals are substantially coupled without loss from the single mode waveguides to the detector. Also disclosed is a method comprising receiving a plurality of single mode optical channels, coupling the single mode optical channels into a multimode channel, and detecting the optical modes corresponding to the channels in the multimode channel.
    Type: Grant
    Filed: October 27, 2009
    Date of Patent: August 20, 2013
    Assignee: Futurewei Technologies, Inc.
    Inventors: Ning Cheng, Frank J. Effenberger
  • Patent number: 8515226
    Abstract: This disclosure describes a device that belongs to the field of optical devices. More specifically it is a novel way of achieving light splitting or combining using a spherical reflector with a single input and multiple outputs, or multiple inputs and a single output.
    Type: Grant
    Filed: January 18, 2011
    Date of Patent: August 20, 2013
    Assignee: Ocean Optics, Inc.
    Inventor: Andrew Tatsch
  • Patent number: 8503881
    Abstract: Method, apparatus and systems for a wavelength division multiplexing system operating at O-Band. The system includes a transmitter for wavelength division multiplexing digital O-band optical channels into a multiplexed optical signal, amplifying and transmitting the multiplexed optical signal, a fiber transmission span using constant intensity modulation and semiconductor optical amplification, and a receiver for receiving and amplifying the transmitted multiplexed optical signal and restoring the individual digital O-band optical signals. In an embodiment, the transmission span is a single mode fiber transmission span and in another embodiment includes an optical amplifier module coupled into the fiber transmission span. In another embodiment, the transmission span includes a length of O-band dispersion compensating fiber to reduce four-wave mixing. In another embodiment the system uses wavelength division multiplexing in combination with polarization interleaving.
    Type: Grant
    Filed: April 3, 2008
    Date of Patent: August 6, 2013
    Assignee: University of Central Florida Research Foundation, Inc.
    Inventor: Guifang Li
  • Publication number: 20130195461
    Abstract: An optical source includes a set of N light sources that provide a corresponding set of N optical signals having N carrier wavelengths. These optical signals are combined into a seed optical signal and transported to a substrate using an optical fiber. This substrate includes a set of K optical amplifiers that amplify the seed optical signal and provide a set of M output optical signals on a corresponding set of M output optical waveguides (where M is less than K). In this way, a total power of the set of M output optical signals may be significantly larger than that of the seed optical signal, thereby ensuring that a majority of a power efficiency of the optical source is associated with power efficiencies of the set of K optical amplifiers instead of power efficiencies of the set of N light sources.
    Type: Application
    Filed: January 30, 2012
    Publication date: August 1, 2013
    Applicant: ORACLE INTERNATIONAL CORPORATION
    Inventors: Ashok V. Krishnamoorthy, Xuezhe Zheng, John E. Cunningham
  • Publication number: 20130195456
    Abstract: An optical data system and method are disclosed. The system can be an integrated optical data transmission system that includes an array of lasers that are modulated by a plurality of modulation signals to provide a plurality of sets of optical data signals. Each of the optical data signals in each of the plurality of sets can have a distinct wavelength. The system can also include a wavelength division multiplexing system to combine each of the plurality of sets of optical data signals to generate a plurality of multi-channel optical data signals that are transmitted via a respective plurality of optical transmission media.
    Type: Application
    Filed: October 8, 2010
    Publication date: August 1, 2013
    Inventors: Wayne V. Sorin, Michael Renne Ty Tan, Sagi Varghese Mathai
  • Publication number: 20130188952
    Abstract: A communications device includes a transmitter device including first and second optical sources, a first optical coupler coupled to the first and second optical sources, and a first modulator coupled to the first optical coupler and to modulate a combined carrier signal including the first and second optical carrier signals with an RF input signal. The communications device includes a receiver device having a second modulator to further modulate the modulated combined carrier signal with an LO signal, a FM-PM discriminator coupled to the second modulator and to convert the modulated combined carrier signal to an intensity modulated combined carrier signal based upon the LO signal, a second optical coupler coupled to the FM-PM discriminator and to generate first and second intensity modulated carrier signals, and an optical-to-electrical converter coupled to the second optical coupler and to generate an IF signal.
    Type: Application
    Filed: January 24, 2012
    Publication date: July 25, 2013
    Applicant: Harris Corporation Corporation of the State of Delaware
    Inventors: Robert C. Peach, Charles Middleton, Richard DeSalvo, Scott L. Meredith
  • Patent number: 8494369
    Abstract: Consistent with the present disclosure optical interleaver and deinterleaver circuits are integrated onto a substrate. The inputs to the interleaver and the outputs of the deinterleaver are each coupled to a corresponding variable optical attenuator (VOA) and optical tap, which are also provided on the substrate. The optical taps supply a portion of the output of each VOA to a corresponding photodetector. A control circuit, which is coupled to the photodetector, in turn, supplies a control signal to each VOA based on the output of the photodetector. Accordingly, optical multiplexing and demultiplexing components, as well as monitoring and power regulating components are provided on the same chip. Such a chip may be compact, relatively inexpensive, and has reduced power consumption compared to optical multiplexer and demultiplexer equipment including discrete components.
    Type: Grant
    Filed: June 5, 2009
    Date of Patent: July 23, 2013
    Assignee: Infinera Corporation
    Inventors: Matthew L. Mitchell, Michael Van Leeuwen
  • Patent number: 8483564
    Abstract: An optical add-drop network and wavelength allocation for the same wherein the system bandwidth is separated into a dedicated channel band and re-used channel bands, separated by guard bands, to allocate terminal connections to achieve a minimum number of re-used channel bands for the desired terminal connectivities.
    Type: Grant
    Filed: July 30, 2010
    Date of Patent: July 9, 2013
    Assignee: Tyco Electronics Subsea Communications LLC
    Inventors: Ruomei Mu, Ekaterina A. Golovchenko, Haifeng Li, Muhammad Haris
  • Patent number: 8472808
    Abstract: This disclosure is directed to optical data path systems that enable unidirectional and bidirectional transmission of optical signals between nodes of a multi-node system such as a multiprocessor system. In one aspect, an optical data path system includes an optical device layer connected to nodes of a multi-node system and a controller. The optical device layer includes a waveguide network of waveguide branches optically connecting each node of the multi-node system to every other node of the multi-node system, resonators disposed adjacent to the waveguide branches, and detectors disposed adjacent to waveguide branches of the waveguide network. Each detector is electronically connected to a node of the multi-node system. The resonators are operated by the controller to control the path of optical signals sent between the nodes of the multi-node system.
    Type: Grant
    Filed: October 6, 2010
    Date of Patent: June 25, 2013
    Assignee: Hewlett-Packard Development Company, L.P.
    Inventors: David A. Roberts, Jichuan Chang, Parthasarathy Ranganathan
  • Patent number: 8463088
    Abstract: The multi-channel optical device includes multiple laser cavities that each reflects a different light channel back and forth between reflective components. One of the reflective components is common to all of the laser cavities in that the common reflective component receives the channels from each of the laser cavities and reflects the received channels. The laser cavities also share a multiplexer that receives the channels reflected by the common reflective device and demultiplexes the channels into demultiplexed channels. A portion of the reflective components are partial return devices that each receives one of the demultiplexed channels. Each of the partial return devices transmits a portion of the demultiplexed channel received by that partial return device. The transmitted portion of the demultiplexed channel exits the laser cavity. Additionally, each of the partial return devices reflects a portion of the demultiplexed channel receive by that partial return device.
    Type: Grant
    Filed: August 4, 2011
    Date of Patent: June 11, 2013
    Assignee: Kotura, Inc.
    Inventors: Mehdi Asghari, Dazeng Feng
  • Patent number: 8457496
    Abstract: An optical signal switching device comprises a plurality of broadcast couplers (125), a plurality of wavelength selective modules (126), and optical connection means linking outputs of broadcast couplers to inputs of wavelength selective modules in order to route incoming optical signals received by said broadcast couplers to said wavelength selective modules. The wavelength selective modules are arranged in a plurality of groups (117, 118, 119), the wavelength selective modules of one group being connected at the output to a common neighboring node. The optical connection means (127, 41, 40, 42) are configured in such a way as to enable, for each of said broadcast couplers, the broadcasting of the incoming optical signal received by said coupler to at least one wavelength selective module of each group simultaneously.
    Type: Grant
    Filed: June 30, 2009
    Date of Patent: June 4, 2013
    Assignee: Alcatel Lucent
    Inventors: Thierry Zami, Nicolas Brogard
  • Patent number: 8457497
    Abstract: The present disclosure provides optimized configurations for a directionless reconfigurable optical add/drop multiplexer application. The present invention includes an add module with improved optical signal-to-noise through placing amplifiers prior to a multi-cast optical switch. The present invention includes various drop module configurations utilizing distributed gain, channel selective filters, and bi-directional configurations to reduce power consumption and complexity. Additionally, the present invention includes an integrated broadcast and select architecture.
    Type: Grant
    Filed: January 29, 2010
    Date of Patent: June 4, 2013
    Assignee: Ciena Corporation
    Inventors: Shan Zhong, Jean-Luc Archambault, Jun Bao
  • Publication number: 20130121693
    Abstract: An optical transmission system for communicating between transmission devices includes a first pump light source that supplies a first pump light, a second pump light source that supplies a second pump light, an optical transmission line that propagates an optical signal between the transmission devices, and a plurality of couplers that form a plurality of zones in the transmission line, the first pump light source and the second pump light source being optically connected to different couplers of the plurality of couplers, the second pump light Raman-amplifying the first pump light in a zone in which the second pump light is input in the transmission line.
    Type: Application
    Filed: September 13, 2012
    Publication date: May 16, 2013
    Applicant: FUJITSU LIMITED
    Inventors: Toshiki TANAKA, Takeshi HOSHIDA, Masato NISHIHARA, Shoichiro ODA
  • Publication number: 20130108274
    Abstract: Embodiments of the present invention relate to a bi-direction optical sub-assembly and an optical transceiver. A transmitter in the bi-direction optical sub-assembly is configured to transmit a first communication signal or a detection signal, where the first communication signal or the detection signal is input from a first end of a first optical path and output from a second end of the first optical path, enters a second end of a third optical path through reflection of a WDM optical filter, and is input from a first end of the third optical path to an optical fiber. A second communication signal received by the optical fiber is input from the first end of the third optical path and output from the second end of the third optical path, and the second signal is received by a BOSA receiver through transmission of the WDM optical filter.
    Type: Application
    Filed: November 27, 2012
    Publication date: May 2, 2013
    Applicant: HUAWEI TECHNOLOGIES CO., LTD.
    Inventor: Huawei Technologies Co., Ltd.
  • Publication number: 20130094853
    Abstract: In order to realize a multiplexer/demultiplexer in which utilization efficiency of a frequency is high, wavelength characteristics of a transmission band is flat, the cost is low, the size is small, and a wavelength and a band are variable, the multiplexer/demultiplexer includes: first light branching means for branching inputted light into plurality of pieces of light and outputting the branched pieces of light; a plurality of light wavelength separating means for separating and outputting light outputted from the first light branching means for each of predetermined frequency bands; and an optical coupling means for making outputs having frequency bands different from each other among outputs from the light wavelength separating means gather and be outputted.
    Type: Application
    Filed: June 15, 2011
    Publication date: April 18, 2013
    Applicant: NEC CORPORATION
    Inventors: Kenji Mizutani, Akio Tajima, Masahiro Sakauchi, Tomoyuki Hino, Masahiro Hayashitani, Hiroyuki Takagi
  • Patent number: 8412050
    Abstract: Example embodiments may include a coaxial Free Space Optical (FSO) telescope providing a simplified and more precise structure. Example embodiment telescopes include a prism structure having at least two parallel surfaces associated with a filter and mirror. The filter may reflect or transmit optical signals based on their electromagnetic characteristics. Example embodiment systems include example embodiment coaxial FSO telescopes and transmitters and receivers for receiving and transmitting optical signals. A V-groove and/or lens array may be included in example embodiment FSO systems.
    Type: Grant
    Filed: October 23, 2008
    Date of Patent: April 2, 2013
    Assignee: Alcatel Lucent
    Inventor: Gerald Nykolak
  • Publication number: 20130077976
    Abstract: An optical multi-wavelength transmitter comprising an optical interleaver with at least a first optical waveguide and a second optical waveguide; a first plurality of microcavity modulators coupled to the first optical waveguide and a second plurality of microcavity modulators coupled to the second waveguide. A plurality of optical wavelengths received at an input of the interleaver are separated into a first group of separated optical wavelengths for being input in the first optical waveguide and a second group of separated optical wavelengths for being input in the second optical waveguide. Each one of the first and the second group of separated optical wavelengths have a separated wavelength spacing between adjacent separated optical wavelengths. A method of optical multi-wavelength transmission is also disclosed.
    Type: Application
    Filed: September 28, 2011
    Publication date: March 28, 2013
    Inventors: Po Dong, David T. Neilson
  • Publication number: 20130071124
    Abstract: One coherent optical receiver includes a 3×3 coupler for receiving a signal and a local oscillator into a first and a third input port respectively, and three detectors for detecting a respective output of the coupler to generate corresponding first, second and third detected signals. A detected signal is filtered by an Alternating Current (AC) coupler to generate a respective first, second or third filtered signal. An adder adds the first, the second and the third filtered signals to determine a directly detected signal term. A first subtractor subtracts the directly detected signal term from the first filtered signal to determine an in-phase signal. A second subtractor subtracts the directly detected signal term from the third filtered signal to determine a quadrature signal. A digital signal processor processes the in-phase signal and the quadrature signal to recover the optical signal.
    Type: Application
    Filed: June 29, 2012
    Publication date: March 21, 2013
    Inventors: Chongjin Xie, Peter J. Winzer
  • Publication number: 20130071123
    Abstract: The present invention discloses a device and method for controlling a lasing wavelength of a tunable laser, and a wavelength division multiplexed-passive optical network having the same. In a device and method for controlling a lasing wavelength of a tunable laser, and a wavelength division multiplexed-passive optical network having the same, it is possible to improve performance of the wavelength division multiplexed-passive optical network by automatically controlling a lasing wavelength of a tunable laser to be matched with a transmission wavelength of a wavelength division multiplexer/de-multiplexer using optical power or optical beating components obtained by a reflected optical component which is Raleigh backscattered or reflected, and is generated on an optical fiber.
    Type: Application
    Filed: December 23, 2010
    Publication date: March 21, 2013
    Applicant: KOREA ADVANCED INSTITUTE OF SCIENCE AND TECHNOLOGY
    Inventors: Chang-Hee Lee, Sang-Rok Mun, Sang-Min Oh
  • Patent number: 8401390
    Abstract: An optical connecting apparatus has a light source outputting an optical signal indicating a plurality of wavelengths which correspond to a plurality of transmission channels, an optical transmit section and an optical receive section being mounted with integrated circuits and being connected to each other through an optical line of a single system, and a signal conversion section being inlet in the optical line and converting a phase modulated signal into an intensity modulated signal.
    Type: Grant
    Filed: February 13, 2008
    Date of Patent: March 19, 2013
    Assignee: NEC Corporation
    Inventor: Ichiro Ogura
  • Patent number: 8401391
    Abstract: Channel power management may be achieved in a branched optical communication system such that uniform loading is provided across branch channels on a branch drop path without passing information signals that are not intended for the branch terminal to the branch drop path. In general, a system and method consistent with the present disclosure reuses one or more loading signals (e.g., noise bands) from the branch add path to maintain uniform loading in the branch drop path of the same branch. The system and method thus prevents trunk channels from being dropped to a branch terminal when those trunk channels are not intended for the branch terminal.
    Type: Grant
    Filed: December 8, 2009
    Date of Patent: March 19, 2013
    Assignee: Tyco Electronics Subsea Communications LLC
    Inventors: Dmitriy Kovsh, Haifeng Li
  • Patent number: 8401405
    Abstract: Various embodiments of a coherent receiver including a widely tunable local oscillator laser are described herein. In some embodiments, the coherent receiver can be integrated with waveguides, optical splitters and detectors to form a monolithic optical hetero/homodyne receiver. In some embodiments, the coherent receiver can demodulate the full phase information in two polarizations of a received optical signal over a range of optical wavelengths.
    Type: Grant
    Filed: May 27, 2010
    Date of Patent: March 19, 2013
    Assignee: Freedom Photonics, LLC.
    Inventors: Jonathon Barton, Milan Mashanovitch
  • Patent number: 8401392
    Abstract: Fault tolerance may be achieved in a branched optical communication system such that a fault in one optical path may not affect optical signals coupled from a healthy optical path. In general, a flexible branching unit is configured, when adding and dropping channels, to select channels from a healthy path and not from the faulty path (e.g., a trunk path or a branch path) to prevent non-uniform channel loading on the trunk path after the branching unit. In this manner, a fault detected on the trunk path may not affect signals from the branch path and a fault detected on the branch path may not affect signals from the trunk path, thereby providing fault tolerance. A flexible branching unit may also be capable of adjusting the number and selection of channels that are added and dropped at the branching unit.
    Type: Grant
    Filed: February 17, 2010
    Date of Patent: March 19, 2013
    Assignee: Tyco Electronics Subsea Communications LLC
    Inventors: Dmitriy Kovsh, Stuart M. Abbott, Haifeng Li
  • Patent number: 8380070
    Abstract: An upgrading method, a system, and an apparatus of a low-density wavelength division multiplexing (WDM) system are provided. The method includes: detecting an output wavelength shift of a wavelength conversion unit, and adjusting an output wavelength of the wavelength conversion unit having the output wavelength shift higher than a threshold, so that the output wavelength shift of the wavelength conversion unit is lower than the threshold; adjusting an adjustable interleaved demultiplexer, until requirements for a demultiplexing parameter of a high-density WDM system are met. Thus, the problem that services are interrupted when a low-density MDM system is upgraded to a high-density MDM system is solved. A WDM system, and a wavelength multiplexing/demultiplexing apparatus and method are also provided.
    Type: Grant
    Filed: February 10, 2010
    Date of Patent: February 19, 2013
    Assignee: Huawei Technologies Co., Ltd.
    Inventors: Congqi Li, Zhiyong Huang, Zhiwen Chang, Yuzhi Jin, Da He, Jianmei Zhang, Shouchang Niu, Shixing Li, Tianhai Chang, Jinghua Song
  • Patent number: 8380066
    Abstract: A network including nodes configured to provide auto-discovery and those that do not are provided in a network. The nodes that do not provide auto-discovery may be provided as end points or terminating nodes in the network. A path or circuit identifier is entered into a database at those nodes and communicated to a network management system. The network management system compares the path identifiers, and, if the two match, the network management system designates the nodes associated with the path identifiers as terminating nodes. A path through the network connecting these nodes can then be determined and monitored. In addition, fiber connection information may further be stored at each node and communicated to the network management system, such that links along the path can also be identified by the network management system. Thus, path determination and monitoring in a network including non-auto-discovering nodes can thus be obtained.
    Type: Grant
    Filed: March 25, 2010
    Date of Patent: February 19, 2013
    Assignee: Infinera Corporation
    Inventors: Venkata Ramarao Garikapati, Dharmendra Naik
  • Patent number: 8380067
    Abstract: A tunable chromatic dispersion compensation device used to compensate chromatic dispersion of wavelength of at least one predetermined wavelength band of light signal is provided. The tunable chromatic dispersion compensation device comprises a chromatic dispersion compensator, and a controller. The chromatic dispersion compensator comprises at least a first chromatic dispersion compensation unit and a second chromatic dispersion compensation unit connected with the first chromatic dispersion compensation unit in series. The first chromatic dispersion compensation unit has a free spectral range, the second chromatic dispersion compensation unit has a free spectral range same as to that of the first chromatic dispersion compensation unit. Each chromatic dispersion compensation unit comprises an interference cavity. The controller comprises an inputting unit being configured for inputting a predetermined chromatic dispersion compensation information.
    Type: Grant
    Filed: November 19, 2009
    Date of Patent: February 19, 2013
    Assignee: O-Net Communications (Shenzhen) Limited
    Inventors: Zeqin Wang, Guohui Zheng, Jun Huang, Xiaobing Qiu
  • Patent number: 8380063
    Abstract: The invention relates to a network of switched optical fiber for airplane seats. The network connects the screens of the seats to each other and to a server via an optical fiber. The network includes optical switches of the MEMS type including mirrors, said switches being provided perpendicular to each seat. Each switch delivers the light beam in the optical fiber to the screen with which it is connected and re-amplifies it in the optical fiber when it is powered, while the switch directly delivers the light beam to the following seat when it is not powered.
    Type: Grant
    Filed: January 7, 2008
    Date of Patent: February 19, 2013
    Assignee: SiT
    Inventors: Loïc Bouet, Benoit Guichard, Jerome Marquet
  • Patent number: 8355612
    Abstract: An active alignment method for a multi-channel optical transmitter and receiver is disclosed. The active alignment method for a multi-channel optical transmitter includes actively aligning an optical signal generator with an optical multiplexer based on optical outputs of a plurality of wavelengths from the optical signal generator and an optical output of the optical multiplexer, and actively aligning the optical multiplexer with a fiber optic coupler based on an optical output of the optical multiplexer and an optical output of the fiber optic coupler.
    Type: Grant
    Filed: August 19, 2009
    Date of Patent: January 15, 2013
    Assignee: Electronics and Telecommunications Research Institute
    Inventors: Sae Kyoung Kang, Joon Ki Lee, Jyung Chan Lee, Kwang Joon Kim
  • Patent number: 8346084
    Abstract: An optical device for a wavelength division multiplexing system has a telecentric lens system and a signal-processing optical element, where the signal-processing optical element performs switching, attenuation, or other optical signal processing for the optical device. The telecentric lens system acts as a self-compensating optical system to minimize sensitivity of the optical device to unwanted displacement of an input image from the optical axis of the optical device. The optical device may include multiple telecentric lens systems, in which case the optical device is also less sensitive to precise alignment between the telecentric lens systems.
    Type: Grant
    Filed: November 27, 2007
    Date of Patent: January 1, 2013
    Assignee: Oclaro (North America), Inc.
    Inventors: Haijun Yuan, Xuehua Wu, Christopher Lin, Giovanni Barbarossa
  • Publication number: 20120328290
    Abstract: A quantum communication system comprising a receiver and a plurality of transmitters, said receiver comprising a detector sub-system, each of said transmitters being configured to emit pulses of radiation, said detector subsystem comprising at least one detector, said detector being configured to detect said light pulses, the system comprising a timing control module, said timing control module being configured to control the number of light pulses received by the detector sub-system, such that just one light pulse from one transmitter reaches the detector sub-system at any one time, the timing control module also allowing the transmitter which sent said pulse to be identified.
    Type: Application
    Filed: June 15, 2012
    Publication date: December 27, 2012
    Applicant: Kabushiki Kaisha Toshiba
    Inventors: Zhiliang YUAN, James DYNES, Andrew James SHIELDS
  • Patent number: 8340522
    Abstract: There is provided a filter assembly for combining a wavelength multiplexed optical signal by multiplexing optical signals of different wavelength emitted from respective optical devices, and/or for dividing a wavelength multiplexed optical signal into optical signals of different wavelength and causing the optical signals of different wavelength to enter respective optical devices. This filter assembly comprises: a light transmitting member within which each optical signal propagates; plural optical filters disposed on an upper face of the light transmitting member at a predetermined spacing wherein each optical signal passes through the optical filters; upper reflective layers respectively provided between adjacent ones of the optical filters; and a lower reflective layer provided on a lower face of the light transmitting member, and wherein the wavelength multiplexed optical signal propagates along the same optical path within the light transmitting member.
    Type: Grant
    Filed: January 18, 2008
    Date of Patent: December 25, 2012
    Assignee: Hitachi Cable, Ltd.
    Inventors: Juhyun Yu, Ryuta Takahashi, Noribumi Kobayashi, Seiji Maruo, Hiroki Katayama, Yuuki Naganuma
  • Patent number: 8340524
    Abstract: A protected light source for generating seed light for at least two wavelength division multiplexed passive optical networks (WDM-PONs). The protected light source includes an optical coupler having N?2 input ports and M?2 output ports, each output port being optically connected to supply seed light to a respective set of one or more WDM-PONs. A respective multi-wavelength light source (MWLS) is optically coupled to supply seed light to each input port of the optical coupler. A controller unit controls operation of each multi-wavelength light source (MWLS).
    Type: Grant
    Filed: March 29, 2012
    Date of Patent: December 25, 2012
    Assignee: Rockstar Consortium US LP
    Inventors: Richard Habel, Kim B. Roberts