Patents Examined by Amritbir K Sandhu
  • Patent number: 11632180
    Abstract: In a coherent optical receiver device, the dynamic range considerably decreases in the case of selectively receiving the optical multiplexed signals by means of the wavelength of the local oscillator light, therefore, a coherent optical receiver device according to an exemplary aspect of the invention includes a coherent optical receiver receiving optical multiplexed signals in a lump in which signal light is multiplexed; a variable optical attenuator; a local oscillator connected to the coherent optical receiver; and a first controller controlling the variable optical attenuator by means of a first control signal based on an output signal of the coherent optical receiver; wherein the coherent optical receiver includes a 90-degree hybrid circuit, a photoelectric converter, and an impedance conversion amplifier, and selectively detects the signal light interfering with local oscillation light output by the local oscillator out of the optical multiplexed signals; and the variable optical attenuator is disposed
    Type: Grant
    Filed: March 31, 2021
    Date of Patent: April 18, 2023
    Assignee: NEC CORPORATION
    Inventor: Kouichi Suzuki
  • Patent number: 11616573
    Abstract: Systems and methods for performing operations based on LIDAR communications are described. An example device may include one or more processors and a memory coupled to the one or more processors. The memory includes instructions that, when executed by the one or more processors, cause the device to receive data associated with a modulated optical signal emitted by a transmitter of a first LIDAR device and received by a receiver of a second LIDAR device coupled to a vehicle and the device, generate a rendering of an environment of the vehicle based on information from one or more LIDAR devices coupled to the vehicle, and update the rendering based on the received data. Updating the rendering includes updating an object rendering of an object in the environment of the vehicle. The instructions further cause the device to provide the updated rendering for display on a display coupled to the vehicle.
    Type: Grant
    Filed: September 27, 2021
    Date of Patent: March 28, 2023
    Assignee: Waymo LLC
    Inventors: Salil Shree Pandit, Mark Alexander Shand, Reed Gerard Alexander Morse
  • Patent number: 11609474
    Abstract: Disclosed are a terahertz signal generation apparatus and a terahertz signal generation method using the same. The terahertz signal generation apparatus includes first and second resonators configured to respectively output an optical signal of a first resonant frequency and an optical signal of a second resonant frequency from an optical signal input through a gain medium, an optical modulator configured to optically modulate the output optical signal of the second resonant frequency, an optical combiner configured to combine the CW optical signal of the first resonant frequency and the modulated optical signal of the second resonant frequency, and a signal generator configured to generate a terahertz signal using heterodyne beating between the CW optical signal of the first resonant frequency and the modulated optical signal of the second resonant frequency, wherein the first resonant frequency and the second resonant frequency are processed to have a predetermined frequency difference.
    Type: Grant
    Filed: October 7, 2021
    Date of Patent: March 21, 2023
    Assignee: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTE
    Inventors: Won Kyoung Lee, Heuk Park, Seung-Hyun Cho
  • Patent number: 11604369
    Abstract: A bias control method of a nested optical modulator includes detecting a frequency component that has a frequency equal to a frequency of a dither signal and that is included in an output of the optical modulator, with changing a voltage value of a first bias, to measure a first error-detection value, obtaining a first error-detection curve representing a relationship between the first error-detection value and the voltage of the first bias, obtaining a first correction value based on the first error-detection curve, and obtaining the first error-detection value obtained when the first bias voltage value is equal to a voltage value obtained by adding the first correction value to the first bias voltage value at a zero-crossing point of the first error-detection curve, as a first error control value. The first bias is controlled so that the first error-detection value is the first error control value.
    Type: Grant
    Filed: March 15, 2022
    Date of Patent: March 14, 2023
    Assignee: SUMITOMO ELECTRIC INDUSTRIES, LTD.
    Inventor: Masaru Takechi
  • Patent number: 11601199
    Abstract: Arrangements for transmitting network credentials from a user device to a second device to enable the second device to connect to a network are disclosed. At the user device, a user inputs network credentials for the second device to enable the second device to connect to a network. The user device transmits modulated light to the second device. The light is modulated so that the transmitted light is encoded with the network credentials. The second device has a photo sensor for receiving the modulated light from the user device and a processor for processing the modulated light to obtain the network credentials from the received modulated light.
    Type: Grant
    Filed: December 27, 2017
    Date of Patent: March 7, 2023
    Assignee: VESTEL ELEKTRONIK SANAYI VE TICARET A.S.
    Inventor: Cagdas Döner
  • Patent number: 11588613
    Abstract: Systems and methods for operating a quantum network system. The methods comprise, by a network node: generating optical clock pulses and photons using the optical clock pulses; generating a combined signal by combining the optical clock pulses with at least some of the photons such that a consistent temporal offset exits between the optical clock pulses and the first photons and/or a wave function of each photon at least partially overlaps an envelope of a respective one of the optical clock pulses; and transmitting the combined signal over a first quantum channel in which the optical clock pulses co-propagate with the photons.
    Type: Grant
    Filed: October 26, 2021
    Date of Patent: February 21, 2023
    Assignee: EAGLE TECHNOLOGY, LLC
    Inventors: Michael C. Garrett, James A. Nagel, Victor G. Bucklew, Samuel H. Knarr, Cypryan T. Klish, Timothy C. Burt
  • Patent number: 11581946
    Abstract: A photonic synthesizer includes a multifrequency optical source to produce a signal of interest from a pair of lasers, which may be self-injection locked chip lasers. The signal is referenced to a high frequency clock using a photonic mixer/divider based on an electro-optical modulator and a relatively slow photodiode. The electro-optical modulator produces optical harmonics from the beams from the pair of lasers, where one harmonic from the first laser beam and one harmonic from the second laser beam beat on the photodiode. A phase locked control signal is generated for controlling the output frequency of one or both of the two lasers. The output signal of the photonic synthesizer is generated using a relatively fast photodiode based on a difference in frequencies of the pair of lasers. The output signal may be a millimeter wave-band signal. The photonic synthesizer can be formed as a photonic integrated circuit (PIC).
    Type: Grant
    Filed: November 30, 2021
    Date of Patent: February 14, 2023
    Assignee: OEwaves, Inc.
    Inventors: Abdelkrim El Amili, Danny Eliyahu, Lute Maleki
  • Patent number: 11581951
    Abstract: Apparatuses and methods for far-end monitoring of transmitter IQ skew in a DSCM system are described. Soft symbols for a given subchannel and a corresponding mirror subchannel are used as joint inputs to a MIMO equalizer. The hard decision symbols for the given subchannel and mirror subchannel are used as references to compute the equalizer coefficients. An estimated phase or estimated transmitter IQ skew is computed for at least the given subchannel using the equalizer coefficients. The computation is repeated to obtain estimated phase or estimated transmitter skew for all subchannels. The transmitter IQ skew is computed using the estimates from all subchannels. The computation is performed for each polarization. The computed transmitter IQ skew is communicated back to the transmitter via optical path (for correcting the skew).
    Type: Grant
    Filed: January 31, 2022
    Date of Patent: February 14, 2023
    Assignee: HUAWEI TECHNOLOGIES CO., LTD.
    Inventors: Wing Chau Ng, Xuefeng Tang, Chuandong Li
  • Patent number: 11582031
    Abstract: Methods, systems, and devices for quantum key distribution (QKD) in passive optical networks (PONs) are described. A PON may be a point-to-multipoint system and may include a central node in communication with multiple remote nodes. In some cases, each remote node may include a QKD transmitter configured to generate a quantum pulse indicating a quantum key, a synchronization pulse generator configured to generate a timing indication of the quantum pulse, and filter configured to output the quantum pulse and the timing indication to the central node via an optical component (e.g., an optical splitter, a cyclic arrayed waveguide grating (AWG) router). The central node may receive the timing indications and quantum pulses from multiple remote nodes. Thus, the central node and remote nodes may be configured to communicate data encrypted using quantum keys.
    Type: Grant
    Filed: October 16, 2020
    Date of Patent: February 14, 2023
    Assignee: Cable Television Laboratories, Inc.
    Inventors: Jing Wang, Bernardo Huberman
  • Patent number: 11575439
    Abstract: Software Defined Networking concepts apply to access, fronthaul, backhaul and core networks of 5G mobile networks and beyond. Such network components currently have individual/segmented control planes and associated controllers to provide configurability, provisioning, and network slicing. This is because of technology disparity between these network components: access is wireless/cellular, backhaul and fronthaul are optical/fiber, and core is electrical/wire-line.
    Type: Grant
    Filed: March 31, 2021
    Date of Patent: February 7, 2023
    Assignee: Netsia, Inc.
    Inventors: Beytullah Yigit, Gamze Abaka, Seyhan Civanlar, Burak Gorkemli, Arda Akman, Burcu Yargicoglu
  • Patent number: 11575446
    Abstract: Disclosed are an optical signal communication method, and an optical signal transmission device and an optical signal reception device which perform the method. The optical signal communication method may comprise the steps of: receiving input data to be modulated into an optical signal, modulating the input data into the optical signal, and transmitting the optical signal to an optical signal reception device, wherein the optical signal includes a start pulse and an end pulse, and a time interval between the start pulse and the end pulse is determined on the basis of a data value of the input data.
    Type: Grant
    Filed: April 1, 2020
    Date of Patent: February 7, 2023
    Assignee: FOUNDATION FOR RESEARCH AND BUSINESS, Seoul National University of Science and Technology
    Inventor: Ill Soo Sohn
  • Patent number: 11569918
    Abstract: A quantum device comprising a transmission structure, wherein based on quantum collapse, interference and selective absorption the transmission structure is designed such that quantum waves emitted by at least two bodies, for example, by thermal excitation, are passed preferentially to a subset of these bodies.
    Type: Grant
    Filed: September 12, 2019
    Date of Patent: January 31, 2023
    Assignee: Max-Planck-Gesellschaft Zur Förderung Der Wissenschaften E.V.
    Inventors: Jochen Mannhart, Daniel Braak
  • Patent number: 11563488
    Abstract: Disclosed herein are embodiments of an aerial network system including a first transceiver configured to transmit and receive free space optical (FSO) signals and a second transceiver configured to transmit and receive radio frequency (RF) signals. A processor provides modulated data signals to the first and second transceivers for transmission and receives demodulated signals from the first and second transceiver. The processor is configured for policy-based multipath admission of requests for access to an IP-routing enabled overlay network. The processor includes an inverse mission planning system configured for predictive traffic load balancing of transmitted FSO signals and RF signals. The inverse mission planning system includes radio behavior models and aerial platform models, and is configured for geographic simulation and optimization of mission planning data based upon user-inputted mission-specific data.
    Type: Grant
    Filed: January 28, 2022
    Date of Patent: January 24, 2023
    Assignee: ARCHITECTURE TECHNOLOGY CORPORATION
    Inventors: Ian McLinden, Jordan Bonney
  • Patent number: 11563506
    Abstract: A TORminator module is disposed with a switch linecard of a rack. The TORminator module receives downlink electrical data signals from a rack switch. The TORminator module translates the downlink electrical data signals into downlink optical data signals. The TORminator module transmits multiple subsets of the downlink optical data signals through optical fibers to respective SmartDistributor modules disposed in respective racks. Each SmartDistributor module receives multiple downlink optical data signals through a single optical fiber from the TORminator module. The SmartDistributor module demultiplexes the multiple downlink optical data signals and distributes them to respective servers. The SmartDistributor module receives multiple uplink optical data signals from multiple servers and multiplexes them onto a single optical fiber for transmission to the TORminator module.
    Type: Grant
    Filed: August 24, 2021
    Date of Patent: January 24, 2023
    Assignee: Ayar Labs, Inc.
    Inventors: Vladimir Stojanovic, Alexandra Wright, Chen Sun, Mark Wade, Roy Edward Meade
  • Patent number: 11563497
    Abstract: An optical modulator includes: an encoder that encodes an input data signal; a branch circuit that branches an optical signal into first and second optical signals; a first arm through which the first optical signal branched at the branch circuit passes; a first phase shifter group on the first upper arm that adjusts a phase shift amount of the first optical signal that passes through the first arm; a second arm through which the second optical signal branched at the branch circuit passes; a second phase shifter group on the second arm that adjusts a phase shift amount of the second optical signal that passes through the second arm such that a sign of the phase shift amount of the second optical signal becomes opposite to a sign of the phase shift amount of the first optical signal; and a multiplexing circuit that multiplexes the first optical signal.
    Type: Grant
    Filed: November 14, 2021
    Date of Patent: January 24, 2023
    Assignee: FUJITSU LIMITED
    Inventor: Tomoyuki Akiyama
  • Patent number: 11558137
    Abstract: The described implementations relate a Passive Optical Network (PON). In one implementation, the PON includes an Optical Network Unit (ONU) that has at least one transmitter subsystem component and an associated optical transmitter. The at least one transmitter subsystem component may be configured to be in an enabled state during a timeslot period assigned to the ONU for transmitting an upstream data burst and a disabled state after the timeslot ends.
    Type: Grant
    Filed: June 8, 2018
    Date of Patent: January 17, 2023
    Assignee: MaxLinear, Inc.
    Inventors: Armin Pitzer, Anthony Sanders, Christian Jenkner
  • Patent number: 11552702
    Abstract: A distributed fiber sensing system may use an integrated coherent receiver. The integrated coherent receiver may include a planar lightwave circuit including various optical components.
    Type: Grant
    Filed: April 28, 2021
    Date of Patent: January 10, 2023
    Assignee: Fiber Sense Limited
    Inventor: Gideon Yoffe
  • Patent number: 11550102
    Abstract: Structures and methods for high speed interconnection in photonic systems are described herein. In one embodiment, a photonic device is disclosed. The photonic device includes: a substrate; a plurality of metal layers on the substrate; a photonic material layer comprising graphene over the plurality of metal layers; and an optical routing layer comprising a waveguide on the photonic material layer.
    Type: Grant
    Filed: August 31, 2020
    Date of Patent: January 10, 2023
    Assignee: Taiwan Semiconductor Manufacturing Co., Ltd.
    Inventors: Weiwei Song, Stefan Rusu, Mohammed Rabiul Islam
  • Patent number: 11546079
    Abstract: An optical end terminal in which protection switching is implemented by using (i) the optical data receiver thereof for detecting a path failure and (ii) the optical data transmitter thereof for signaling the detected path failure to the protection-switching circuit. In an example embodiment, the optical data receiver is configured to detect a path failure based on the presence of certain data-recovery errors. The optical data transmitter is operatively connected to the optical data receiver and configured to generate an in-band dither tone of a predetermined frequency in response to such failure detection. The protection-switching circuit is configured to (i) detect dither tones in the optical signals passing therethrough and (ii) connect the optical data receiver to the protection path instead of the working path in response to detecting the dither tone of the predetermined frequency.
    Type: Grant
    Filed: September 21, 2020
    Date of Patent: January 3, 2023
    Assignee: Nokia Solutions and Networks Oy
    Inventors: Patrick Chilufya Chimfwembe, Andreas Benz, David Samuel Einstein
  • Patent number: 11544032
    Abstract: An apparatus and method of interfacing between a source media device and a destination media device. A wireless module passes through an audio signal from the source device to an output device, and transmits a wireless signal to a wireless device that outputs the audio signal. In this manner, the number of devices used for the connections may be reduced.
    Type: Grant
    Filed: January 23, 2020
    Date of Patent: January 3, 2023
    Assignee: Dolby Laboratories Licensing Corporation
    Inventors: David Matthew Fischer, Benjamin George Webster, Adam Scott Koniak, Kevin Cheng Lai