Patents Examined by Daniel Petkovsek
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Patent number: 12222589Abstract: Disclosed is a thermal stabilization circuit including a heater, which is adjacent and thermally coupled to a closed-curve waveguide of an optical ring resonator, and an analog feedback circuit, which includes a fully autonomous analog feedback loop from a drop port of a bus waveguide of the optical ring resonator to the heater. This analog feedback circuit is configured to dynamically control the electrical power provided to the heater and, thereby to dynamically control the thermal output of the heater in order to tune the ring resonance wavelength to the operating laser wavelength. The analog feedback circuit is further configured to be independent of input power, to be power efficient, to have a relatively small footprint, to have a tunable time constant and to facilitate adjustable wavelength locking. Also disclosed is a device (e.g., a ring-based transceiver or the like), which includes multiple optical ring resonators and corresponding thermal stabilization circuits.Type: GrantFiled: April 26, 2022Date of Patent: February 11, 2025Assignee: GlobalFoundries U.S. Inc.Inventors: Michal Rakowski, Vaibhav A. Ruparelia, Riddhi Nandi, Prateek K. Sharma, Avijit Chatterjee, Vasudeva Reddy KuppiReddy, Indranil Som
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Patent number: 12216313Abstract: A coupled optic system configured for collimation of light. The coupled optic system includes an optic system. The optic system includes a shelf. The shelf includes one or more optic alignment surfaces. The optic system includes one or more interface lenses coupled to the shelf. The coupled optic system includes an optical connector. The optical connector includes one or more connector lenses. The optical connector includes one or more connector alignment surfaces.Type: GrantFiled: April 28, 2022Date of Patent: February 4, 2025Assignee: Avago Technologies International Sales Pte. LimitedInventors: Rebecca Schaevitz, Near Margalit, Vivek Raghunathan, Dicky Lee, Hari Potluri
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Patent number: 12210193Abstract: An optic fiber connector assembly, including at least one adapter and at least one connector, is provided. The adapter is correspondingly connected to the connector. The adapter includes a first housing, at least one sleeve disposed in the first housing, at least one bridging portion extending out of a side of the first housing, and at least one locking arm extending from the side and located next to the bridging portion. The sleeve extends from an inside of the first housing to the corresponding bridging portion. The connector includes a second housing, a ferrule disposed in the second housing in a penetrating manner, and a spring abutted between the second housing and the ferrule. The second housing is sleeved onto the bridging portion, the ferrule is inserted into the sleeve, and the locking arm is buckled onto the second housing.Type: GrantFiled: May 10, 2022Date of Patent: January 28, 2025Assignee: ACON OPTICS COMMUNICATIONS INC.Inventors: Yangyang Cui, Rui Zhang
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Patent number: 12204160Abstract: A pulling terminal structure includes: a braided tube that includes a pulling part; a housing tube disposed inside the braided tube and that houses an optical connector; and a reinforcement member disposed inside the braided tube and that reinforces an end part of the housing tube.Type: GrantFiled: February 15, 2021Date of Patent: January 21, 2025Assignee: Fujikura Ltd.Inventors: Ryoichi Mitobe, Kansei Shindo
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Patent number: 12204184Abstract: A structure for an optoelectronics platform and a method of fabricating a structure for an optoelectronics platform such as a Mach-Zehnder modulator or a waveguide. The method comprises the steps of providing a substrate, and depositing a BaTi03, BTO, film on a surface of the substrate and having a thickness suitable for single mode operation with one or more possible polarization configurations with optical confinement in the BTO film at a wavelength or wavelength range of operation; wherein the substrate is chosen to provide vertical refractive index confinement in a direction perpendicular to the surface of the substrate for the single mode operation optical confinement in the BTO film at the wavelength or wavelength range of operation.Type: GrantFiled: March 26, 2020Date of Patent: January 21, 2025Assignee: National University of SingaporeInventors: Yu Cao, Shawn Yohanes Siew, Aaron James Danner, Thirumalai Venky Venkatesan
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Patent number: 12197104Abstract: Devices and/or methods provided herein relate to providing conversion of photons between an optical domain and a microwave domain. An electronic structure can comprise a resonator assembly comprising a microwave resonator and an optical resonator, an optical pump waveguide that transmits an optical pump input to the resonator assembly, and an optical signal waveguide, separate from the optical pump waveguide, that transmits an optical signal relative to the resonator assembly. The electronic structure further can comprise a microwave signal waveguide that transmits a microwave signal relative to the resonator assembly. The optical pump waveguide can comprise a delay portion that delays receipt of the optical pump input to the resonator assembly through the optical pump waveguide to a time after reduction of a majority of decoherence of the resonator assembly caused by scattering of a portion of the optical pump input, which portion does not enter the optical pump waveguide.Type: GrantFiled: December 7, 2022Date of Patent: January 14, 2025Assignee: INTERNATIONAL BUSINESS MACHINES CORPORATIONInventors: Abram L Falk, Chi Xiong, Ryan Daniel Schilling, Jason S. Orcutt
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Patent number: 12189183Abstract: A structure includes a polarization device such as a polarization splitter, a polarization combiner or a polarization splitter rotator including a waveguide having a light absorber at an end section with an at least hook shape, e.g., it can be hooked or spiral shape. The structure also includes another waveguide adjacent the stated waveguide. The hook or spiral shape acts as a light absorber that reduces undesired optical noise such as excessive light insertion loss and/or light scattering. The hook or spiral shape may also be used on supplemental waveguides used to further filter and/or refine an optical signal in one of the waveguides of the polarization device, e.g., downstream of an output section of the polarization splitter and/or rotator.Type: GrantFiled: October 13, 2022Date of Patent: January 7, 2025Assignee: GlobalFoundries U.S. Inc.Inventors: Yusheng Bian, Won Suk Lee, Andreas D. Stricker
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Patent number: 12189263Abstract: A photonic Mach Zehnder Interferometer (MZI) has a first arm with a first photonic waveguide transmitting a first light having a first phase, a second arm with a second photonic waveguide transmitting a second light having a second phase, and a Transparent Conducting Oxide (TCO) based assembly. The TCO assembly is positioned about the first photonic waveguide of the first arm to modulate the first phase of the first light traveling in the first photonic waveguide.Type: GrantFiled: February 25, 2022Date of Patent: January 7, 2025Assignee: The George Washington UniversityInventors: Rubab Amin, Volker J. Sorger
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Patent number: 12189181Abstract: An optoelectronic device. The optoelectronic device including: a silicon platform, including a silicon waveguide and a cavity, wherein a bed of the cavity is provided at least in part by a buried oxide layer; a III-V semiconductor-based optoelectronic component, bonded to a bed of the cavity of the silicon platform; and a bridge-waveguide, located between the silicon waveguide and the III-V semiconductor-based optoelectronic component.Type: GrantFiled: June 23, 2022Date of Patent: January 7, 2025Assignee: Rockley Photonics LimitedInventors: Guomin Yu, Aaron John Zilkie, Andrew George Rickman
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Patent number: 12189185Abstract: Disclosed is an optical fiber-based divergence-limiting device for limiting divergence from a first maximum divergence of input light to a second maximum divergence of output light, in which the second maximum divergence is less than the first maximum divergence.Type: GrantFiled: January 21, 2021Date of Patent: January 7, 2025Assignee: nLIGHT, Inc.Inventors: Roger L. Farrow, Dahv A. V. Kliner, Tyson L. Lowder
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Patent number: 12181737Abstract: A low-loss optical switch device with a smaller number of ports for an optical switch in a network and node device capable of transmitting OCS-type and OPS-type optical signals is provided. The optical switch device includes: a high-speed add/drop optical switch composed of a plurality of optical switches, the optical switch having an optical waveguide structure made of a material whose refractive index or absorption coefficient changes on the order of nanoseconds, and the optical switch changing the refractive index or the absorption coefficient to perform switching of both OCS optical signals, which are optical-circuit-switching-type optical signals, and OPS optical signals, which are optical-packet-switching-type optical signals; and a plurality of circulators connected to an input port and an output port of the high-speed add/drop optical switch.Type: GrantFiled: October 11, 2019Date of Patent: December 31, 2024Assignee: Nippon Telegraph and Telephone CorporationInventors: Yusuke Muranaka, Yohei Sakamaki, Toshikazu Hashimoto
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Patent number: 12181717Abstract: A fiber-optic connector includes a connector body including a housing with a top surface and a bottom surface, the top surface and the bottom surface being joined together by two opposing side surfaces of the housing. The housing has a top slot and a bottom slot thereupon along a longitudinal axis, the top slot and the bottom slot being provided on the top surface and the bottom surface, respectively. A first key structure is slidably positioned within the top slot, and a second key structure is slidably positioned within a bottom.Type: GrantFiled: May 29, 2023Date of Patent: December 31, 2024Assignee: US Conec Ltd.Inventors: Paul Michael Good, William E. Ayres, III, Greg Heffner
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Patent number: 12174425Abstract: A fabricating process may include: producing a trench, in an encapsulated-silicon layer, in the location where a silicon-nitride core of the waveguide must be produced; then depositing a silicon-nitride layer on the encapsulated-silicon layer, the thickness of the deposited silicon-nitride layer being sufficient to completely fill the trench; then removing the silicon nitride situated outside of the trench to uncover an upper face with which the trench filled with silicon nitride is flush; then depositing a dielectric layer that covers the uncovered upper face in order to finalize the encapsulation of the silicon-nitride core and thus to obtain a mixed layer containing both the silicon and silicon-nitride cores encapsulated in dielectric.Type: GrantFiled: April 6, 2021Date of Patent: December 24, 2024Assignees: COMMISSARIAT A L'ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES, THALESInventors: Stephane Malhouitre, David Bitauld, Karim Hassan, Joan Ramirez, Alexandre Shen
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Patent number: 12174420Abstract: Structures including an optical component and methods of fabricating a structure including an optical component. The structure includes an optical component having a waveguide core, and multiple features positioned adjacent to the waveguide core. The waveguide core contains a first material having a first thermal conductivity, and the features contain a second material having a second thermal conductivity that is greater than the first thermal conductivity.Type: GrantFiled: October 30, 2023Date of Patent: December 24, 2024Assignee: GlobalFoundries U.S. Inc.Inventors: Yusheng Bian, Hemant Dixit, Theodore Letavic
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Patent number: 12169349Abstract: A method may comprise: generating an optical frequency comb; applying a filter in a first configuration to the generated optical frequency comb to select a first frequency of the optical frequency comb, wherein, in the first configuration, the first frequency aligns with a first pass-band of the filter, and a second frequency of the optical frequency comb does not align with a second pass-band of the filter; altering the filter to a second configuration to shift the first pass-band and the second pass-band to a shifted first pass-band and a shifted second pass-band; and applying the altered filter to the generated optical frequency comb to select the second frequency of the optical frequency comb, wherein the second frequency aligns with the shifted second pass-band of the filter, and the first frequency of the optical frequency comb does not align with the shifted first pass-band of the filter.Type: GrantFiled: December 14, 2023Date of Patent: December 17, 2024Assignee: Honeywell International Inc.Inventors: Matthew Puckett, Chad Hoyt, Jianfeng Wu, Karl Nelson
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Patent number: 12169300Abstract: The present invention relates to a light guide plate containing a glass plate and a resin layer that is formed on at least one major surface of the glass plate, in which the resin layer is made of a resin containing metal oxide fine particles dispersed, and an absolute value of a refractive index difference between the glass plate and the resin layer is 0.07 or smaller over an entire range of a wavelength of 430 nm to 700 nm.Type: GrantFiled: July 29, 2022Date of Patent: December 17, 2024Assignee: AGC Inc.Inventors: Takenori Someya, Tomoaki Sakurada
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Patent number: 12169318Abstract: A telecommunications equipment frame including a base, and two vertical uprights, and a top member; the upright members defining an upper equipment zone and a lower cable tray zone. One or more front trays are in the lower cable tray zone, and openings are provided through the frame to one or more rear trays. The equipment zone defined by the two uprights is open without cable management structure for receiving telecommunications equipment. At least one slack storage zone adjacent to the central zone includes a plurality of cable management devices for storing cable slack.Type: GrantFiled: August 20, 2019Date of Patent: December 17, 2024Assignee: CommScope Technologies LLCInventors: James J. Solheid, Rodney C. Schoenfelder, Scott Jean Anderson, James J. Brandt, Matthew J. Holmberg, Patrick James Thompson, David Patrick Percival
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Patent number: 12164157Abstract: Provided is a connector assembly for optically connecting one or more optical fibers and an array of vertical coupling elements of a photonic integrated circuit (PIC). In various embodiments, the connector assembly is constructed to independently optically scale some feature sizes, such as, for example, the transverse mode size, the array size, the array geometry, and/or various incidence angles, the optical scaling being performed, e.g., from a fiber end face plane to a connector-mating plane and further to a PIC coupling plane. In some embodiments, the connector assembly may support a polarization (de)multiplexing functionality.Type: GrantFiled: January 30, 2023Date of Patent: December 10, 2024Assignee: Nubis Communications, Inc.Inventor: Peter Johannes Winzer
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Patent number: 12164136Abstract: A display device includes an image display element, a collimator, a first light guide formed of a flat plate transparent to light, a second light guide formed of a plate member transparent to the light and having one surface that is a flat surface in contact with one of surfaces of the first light guide and the other surface that is a sawtooth surface, and a beam splitter formed on an interface between the first and second light guides to transmit a part of the light and reflect the remainder thereof. The sawtooth surface is configured by alternately combining a first surface non-parallel to a propagating direction of the light propagating through the second light guide after passing through the interface and configured to transmit the light and a second surface substantially parallel to the propagating direction.Type: GrantFiled: February 7, 2020Date of Patent: December 10, 2024Assignee: SHIMADZU CORPORATIONInventor: Masato Tanaka
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Patent number: 12158686Abstract: One aspect of the present disclosure is a method for selective surface functionalization using a single-photon source. The method for selective functionalization using a single-photon source includes: (a) adding a single-photon source to a solution containing a photosensitizer and a monomer; and (b) emitting a single photon from the single-photon source. One aspect of the present disclosure is a selectively functionalized single-photon source prepared by the method.Type: GrantFiled: September 29, 2022Date of Patent: December 3, 2024Assignee: Korea Institute of Science and TechnologyInventors: Kayoung Kim, Chulki Kim, Jae Hun Kim, Taikjin Lee, Sang Wook Han, Seungwoo Jeon, Yu Kyeong Kim, Young Tae Byun