Patents Assigned to IPG Photonics Corporation
  • Publication number: 20230248434
    Abstract: An instrument for endoscopic applications, including urology. The instrument may include both irrigation and aspiration channels, effective attraction and suction of tissue and body stone fragments, enhanced viewing clarity of the operational area, illumination fibers with steering function for flexible version of the scopes. In some embodiments, a distal head is configured to locate a mouth of the working channel within a viewing angle of the visualization system. In some embodiments, a transparent cap is disposed at the distal end of endoscope to provide an enhanced view of the operational area. Irrigation and aspiration channels may be arranged so that consistent water flow will attract tissue and body stone particles and remove heated liquid. Illumination fibers may be utilized as pull linkages or push-pull linkages for deflection and steering of flexible embodiments of the scope.
    Type: Application
    Filed: January 20, 2020
    Publication date: August 10, 2023
    Applicant: IPG PHOTONICS CORPORATION
    Inventors: Gregory ALTSHULER, Ilya YAROSLAVSKY, Dmitri BOUTOUSSOV, Viktoriya ANDREEVA, Anastasiya KOVALENKO, Olivier TRAXER, Michael BARENBOYM, Isaac OSTROVSKY
  • Patent number: 11719993
    Abstract: The disclosed laser system is configured with a laser source outputting light at a fundamental frequency. The output light is incident on a frequency converter operative to convert the fundamental frequency to a higher harmonic including at least one frequency converting stage. The frequency converter is based on a SrB4O7 (SBO) or PbB4O7 (PBO) nonlinear crystal configured with a plurality of domains. The domains have periodically alternating polarity of the crystal axis enabling a QPM use and formed with each with highly parallel walls which deviate from one another less than 1 micron over a 10 mm distance.
    Type: Grant
    Filed: December 18, 2019
    Date of Patent: August 8, 2023
    Assignee: IPG PHOTONICS CORPORATION
    Inventors: Valentin Gapontsev, Aleksander Cherepakhin, Anatolii Zamkov, Nikolay Evtikhiev, Dan Perlov, Aleksander Zaytsev, Andrey Sadovskiy, Nikita Radionov
  • Patent number: 11673208
    Abstract: A surface treating method and apparatus include operating a quasi-continuous wave fiber laser and pre-scan shaping the laser beam such that an instantaneous spot beam has predetermined geometrical dimensions, intensity profile, and power; operating a scanner at an optimal angular velocity and angular range to divide the pre-scan beam into a plurality of sub-beams deflected towards the surface being processed; guiding the sub-beams through a post-scan optical assembly to provide the spot beam with predetermined geometrical dimensions, power, and angular velocity and range, which are selected such that the instantaneous spot beam is dragged in a scan direction over a desired length at a desired scan velocity, which allow the treated surface to be exposed for a predetermined exposure duration and have a predetermined fluence distribution providing the treated surface with a quality comparable to that of the surface processed by an excimer laser or a burst-mode fiber laser.
    Type: Grant
    Filed: July 31, 2018
    Date of Patent: June 13, 2023
    Assignee: IPG PHOTONICS CORPORATION
    Inventors: Alexander Limanov, Michael Von Dadelszen, Joshua Schoenly, James Cordingley, Manuel Leonardo
  • Patent number: 11662644
    Abstract: A frequency conversion laser system is configured with a single mode (SM) laser source outputting a pulsed pump beam at a fundamental frequency and a nonlinear optical system operating to convert the fundamental frequency sequentially to a second harmonic (SH) and then third harmonic (TH). The nonlinear optical system includes an elongated SHG crystal traversed by the SM pulsed pump beam which generates the SH beam. The SHG crystal has an output surface inclined relative to a longitudinal axis of the SHG crystal at a first wedge angle different from a right angle. The nonlinear optical system further has an elongated THG crystal with an input surface which is impinged upon by a remainder of the pump and SHG beams which propagate through the THG crystal at a walk-off angle therebetween to generate a third harmonic (TH) beam, the input surface of the THG crystal being inclined to a longitudinal axis of the THG crystal at a second wedge angle.
    Type: Grant
    Filed: March 29, 2017
    Date of Patent: May 30, 2023
    Assignee: IPG PHOTONICS CORPORATION
    Inventors: Andrei Babushkin, Andrey Bordenyuk
  • Patent number: 11621540
    Abstract: A laser system comprising high voltage AC-to-DC power converter and one or more current sources coupled to the high voltage AC-to-DC power converter without a DC-to-DC converter between the one or more current sources and the AC-to-DC power source. Each of the one or more current sources includes a high voltage switch and one or more independent safety shutoffs. A laser module is operably coupled to the one or more current source and configured to emit electromagnetic radiation wherein the one or more safety shutoffs are configured to disable emission of electromagnetic radiation from the laser module when triggered.
    Type: Grant
    Filed: March 10, 2021
    Date of Patent: April 4, 2023
    Assignee: IPG PHOTONICS CORPORATION
    Inventors: Adam Pinard, Wolf Fuchs, Keith Millea, Oleg Shkurikhin
  • Patent number: 11617858
    Abstract: Catheter steering handles that are ergonomically designed to enable an operator to reduce hand fatigue. Various ergonomic aspects of the disclosed steering handles include geometries that more naturally conform to the palm of the hand and that enable the hand to be held in a natural, low stress posture during operation of the steering handle. In another aspect of the disclosure, the catheter steering handle is configured so that the operator can release or partially release the grip on the handle, thereby enabling the operator to relax and flex the hand, thereby reducing fatigue.
    Type: Grant
    Filed: January 20, 2020
    Date of Patent: April 4, 2023
    Assignee: IPG PHOTONICS CORPORATION
    Inventors: Gregory Altshuler, Ilya Yaroslavsky, Dmitri Boutoussov, Viktoriya Andreeva, Olivier Traxer, Michael Barenboym, Isaac Ostrovsky, Anastasiya Kovalenko
  • Patent number: 11600491
    Abstract: A method of fiber laser processing of thin film deposited on a substrate includes providing a laser beam from at least one fiber laser which is guided through a beam-shaping unit onto the thin film. The beam-shaping optics is configured to shape the laser beam into a line beam which irradiates a first irradiated thin film area Ab on a surface of the thin film, with the irradiated thin film area Ab being a fraction of the thin film area Af. By continuously displacing the beam shaping optics and the film relative to one another in a first direction at a distance dy between sequential irradiations, a sequence of uniform irradiated thin film areas Ab are formed on the film surface defining thus a first elongated column. Thereafter the beam shaped optics and film are displaced relative to one another at a distance dx in a second direction transverse to the first direction with the distance dx being smaller than a length of the irradiated film area Ab.
    Type: Grant
    Filed: July 31, 2018
    Date of Patent: March 7, 2023
    Assignee: IPG PHOTONICS CORPORATION
    Inventors: Limanov Alexander, Michael Von Dadelszen, Joshua Schoenly, Manuel Leonardo
  • Publication number: 20230062015
    Abstract: A method includes selecting a period for a volume Bragg grating (VBG) such that a spectral selectivity of the VBG is at least as wide as a spectral width of a broadband light beam that is to be spatially transformed, selecting a desired beam transformation for the broadband light beam, passing a first light beam from a recording light source through an optical device to a volume holographic recording medium where the optical device is configured to induce the desired beam transformation, directing a second light beam from the recording light source to the recording medium, and converging the first light beam and the second beam at a recording angle such that a spatial refractive index modulation profile is recorded in the recording medium that provides the VBG with the selected period, and a phase profile is embedded in the VBG that induces the desired beam transformation for each spectral component within a spectral width of the VBG.
    Type: Application
    Filed: February 4, 2021
    Publication date: March 2, 2023
    Applicant: IPG PHOTONICS CORPORATION
    Inventors: Leonid GLEBOV, Ivan DIVLIANSKY, Oussama MHIBIK, Vadim SMIRNOV
  • Publication number: 20230061492
    Abstract: A method and system for laser metal powder deposition using beam wobbling. The system may include a fiber laser configured to generate a laser beam and a laser head, the laser head configured to receive the laser beam from the fiber laser and including a collimator configured to collimate the laser beam, a wobbler module having first and second movable mirrors, and a focus lens configured to focus the collimated laser beam through a powder nozzle device such that a focal point location of the focused collimated laser beam is positioned below a workpiece surface. The powder nozzle device delivers metal powder to a region on the workpiece surface that is heated by the focused collimated laser beam.
    Type: Application
    Filed: January 21, 2021
    Publication date: March 2, 2023
    Applicant: IPG PHOTONICS CORPORATION
    Inventors: Marco FRANZOSI, Chiara DE GIORGI
  • Patent number: 11565350
    Abstract: Laser processing of hard dielectric materials may include cutting a part from a hard dielectric material using a continuous wave laser operating in a quasi-continuous wave (QCW) mode to emit consecutive laser light pulses in a wavelength range of about 1060 nm to 1070 nm. Cutting using a QCW laser may be performed with a lower duty cycle (e.g., between about 1% and 15%) and in an inert gas atmosphere such as nitrogen, argon or helium. Laser processing of hard dielectric materials may further include post-cut processing the cut edges of the part cut from the dielectric material, for example, by beveling and/or polishing the edges to reduce edge defects. The post-cut processing may be performed using a laser beam with different laser parameters than the beam used for cutting, for example, by using a shorter wavelength (e.g., 193 nm excimer laser) and/or a shorter pulse width (e.g., picosecond laser).
    Type: Grant
    Filed: May 24, 2019
    Date of Patent: January 31, 2023
    Assignee: IPG PHOTONICS CORPORATION
    Inventors: Jeffrey P. Sercel, Marco Mendes, Rouzbeh Sarrafi, Joshua Schoenly, Xiangyang Song, Mathew Hannon, Miroslaw Sokol
  • Publication number: 20230006758
    Abstract: The Bi-Di coherent transmission system is configured with at least one pair of modules coupled to one another via a single fiber. The modules each are configured with a pair of laser outputting two reference signals at respective different wavelengths ?1o and ?2o, photonic transceiver and a wavelength division multiplexer (WDM) coupler. The photonic transceivers each have transmitter and receiver branches integrated in a photonic circuit and receiving the reference signals. The transmitter is configured to modulate the received reference signals ?1oT and ?2oT which are further coupled into the WDM coupler. The WDM couplers each sort out one of the modulated signals and transmit the other modulated signal such that the transmitted modulated signal at different wavelengths ?1oT and ?2oT are coupled into respective opposite ends of the fiber and propagate towards one another in opposite directions.
    Type: Application
    Filed: December 7, 2020
    Publication date: January 5, 2023
    Applicant: IPG PHOTONICS CORPORATION
    Inventor: George BuAbbud
  • Patent number: 11534858
    Abstract: Methods and systems are provided for using optical interferometry in the context of material modification processes such as surgical laser or welding applications. An imaging optical source that produces imaging light. A feedback controller controls at least one processing parameter of the material modification process based on an interferometry output generated using the imaging light. A method of processing interferograms is provided based on homodyne filtering. A method of generating a record of a material modification process using an interferometry output is provided.
    Type: Grant
    Filed: February 8, 2021
    Date of Patent: December 27, 2022
    Assignee: IPG PHOTONICS CORPORATION
    Inventors: Paul J. L. Webster, James M. Fraser, Victor X. D. Yang
  • Publication number: 20220404562
    Abstract: A method and system for forming a photonic device. A photonic device may include a substrate, a cladding layer disposed on the substrate, an electrical device region formed within the cladding layer, the electrical device region having a plurality of electrical device component layers that include at least one metal layer, and a grating region formed within the cladding layer, the grating region including a grating coupler and the at least one metal layer. The at least one metal layer is deposited simultaneously in the electrical device and grating regions and is used in the grating region to reflect light emitted from the grating coupler.
    Type: Application
    Filed: September 24, 2020
    Publication date: December 22, 2022
    Applicant: IPG PHOTONICS CORPORATION
    Inventors: Guilhem De Valicourt, Michael Kossey
  • Publication number: 20220386975
    Abstract: An X-ray optical system incorporates a refractometer, interferometer, spectrometer, diffractometer or imaging device for analyzing a sample. The X-ray optical system is configured with a monochromator which is fabricated from low atomic mass metal borates MxByOz crystals, wherein M is low atomic mass metal, and x, y, z are respective atom numbers of metal, borate and oxygen in chemical formula. The metal borates include borates of lithium (Li), sodium (Na) or stronium (Sr).
    Type: Application
    Filed: January 11, 2021
    Publication date: December 8, 2022
    Applicant: IPG PHOTONICS CORPORATION
    Inventors: Alexandre EFIMOV, Dan PERLOV, Edward TZIDILKOVSKI
  • Publication number: 20220365296
    Abstract: A method and system for an optical package assembly is disclosed. According to one example, the optical package assembly includes a photonic integrated circuit (PIC) chip, at least one fiber coupled to the PIC chip, a fiber lid plate disposed on at least a portion of the at least one fiber, and a cover plate having a surface coupled to the PIC chip and the fiber lid plate.
    Type: Application
    Filed: September 24, 2020
    Publication date: November 17, 2022
    Applicant: IPG PHOTONICS CORPORATION
    Inventor: Pavel Mamyshev
  • Patent number: 11484972
    Abstract: The present invention benefits from the determination that pre-selected spectral bandwidths that avoid the spectrum of an electronic transition of a metal/alloy vapor allow for welds substantially free from detritus that may discolor the weld. Accordingly, the present invention provides analytical methods, welding methods and fiber lasers configured to provide high quality metal/alloy welds.
    Type: Grant
    Filed: March 22, 2019
    Date of Patent: November 1, 2022
    Assignees: IPG Photonics Corporation, Medtronic, Inc., EMPA Swiss Federal Laboratories for Materials Science and Technology
    Inventors: Matthias Leistner, Sebastian Favre-Bulle, Audrey Mashkin
  • Publication number: 20220344887
    Abstract: A photonic device is configured with a photonic integrated circuit (PIC), a plurality of fiber-based gain mediums in optical communication with the PIC, and at least one optical pump outputting pump light coupled into two or more gain mediums. At least one of the fiber-based gain media and the PIC form a hybrid resonant optical cavity there between operative to lase light into the PIC. The gain media further include one or more fiber amplifiers amplifying light signals coupled into and decoupled from the PIC. The photonic device is integrated with Si photonic passive and active photonic elements, while ail fiber links between the gain media and PIC are free from these elements.
    Type: Application
    Filed: September 24, 2020
    Publication date: October 27, 2022
    Applicant: IPG PHOTONICS CORPORATION
    Inventor: Guilhem De Valicourt
  • Publication number: 20220339741
    Abstract: The invention relates to laser equipment, specifically pulsed scanning lasers used to cut brittle substrates. The authors propose a method and device for forming a stressed edge in the substrate for cleaving of the substrate, to which end a track of cavities is formed through optically induced breakdown in the body of tire material during its irradiation with a focused laser beam with a fixed focal distance during the course of angled scanning of the laser beam, with longitudinal movement along the length of the substrate. The technical result is: improved strength parameters of products and better quality of straight and oblique edges formed during substrate cleaving, absence of chips and microcracks, high rate of formation of the stressed cleaving edge, which implies faster laser cutting.
    Type: Application
    Filed: March 27, 2020
    Publication date: October 27, 2022
    Applicants: IRE-POLUS, IPG PHOTONICS CORPORATION, IPG LASER GmbH
    Inventors: Timoor ALIEV, Nikolai EVTIKHIEV, Mikhail KAPTAKOV, Ivan OBRONOV
  • Patent number: 11458566
    Abstract: Systems, methods and apparatuses are used for monitoring material processing using imaging signal density calculated for an imaging beam directed to a workpiece or processing region, for example, during inline coherent imaging (ICI). The imaging signal density may be used, for example, to monitor laser and e-beam welding processes such as full or partial penetration welding. In some examples, the imaging signal density is indicative of weld penetration as a result of reflections from a keyhole floor and/or from a subsurface structure beneath the keyhole. The monitoring may include, for example, automated pass/fail or quality assessment of the welding or material processing or parts produced thereby. The imaging signal density may also be used to control the welding or material processing, for example, using imaging signal density data as feedback. The imaging signal density may be used alone or together with other measurements or metrics, such as distance or depth measurements.
    Type: Grant
    Filed: December 19, 2019
    Date of Patent: October 4, 2022
    Assignee: IPG PHOTONICS CORPORATION
    Inventors: Christopher M. Galbraith, Jordan Kanko, Paul J. L. Webster, Cole Van Vlack, Genevieve Elizabeth Hayes
  • Publication number: 20220294177
    Abstract: A CPA ultrashort pulse laser system is configured with a beam splitter dividing each ultrashort pulse from a seed laser into at least two replicas which propagate along respective replica paths. Each replica path includes an upstream dispersive element stretching respective replicas to different pulse durations. The optical switches are located in respective replica paths upstream or downstream from upstream dispersive elements. Each optical switch is individually controllable to operate at a high switching speed between “on” and “off” positions so as to selectively block one of the replicas or temporally separate the replicas at the output of the switching assembly. The replicas are so stretched that a train of high peak power ultrashort pulses each are output with a pulse duration selected from a fs ns range and peak power of up to a MW level.
    Type: Application
    Filed: July 9, 2020
    Publication date: September 15, 2022
    Applicant: IPG PHOTONICS CORPORATION
    Inventors: Alex YUSIM, David CLARK, Igor SAMARTSEV, Joe ANTAS, Justin BARSALOU