Patents by Inventor S. Abbas Hosseini

S. Abbas Hosseini has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20220362881
    Abstract: A method for scribing transparent material with a laser is provided. The method includes providing relative movement between the laser and the transparent material, pulsing the laser at a first pulse repetition rate in a kHz range to establish a speed of scribing of the transparent material, and forming each of said first laser pulses with a series of second laser pulses having a second pulse repetition rate in a MHz range, wherein each of said second lasers pulses is formed from a series of third laser pulses having a third pulse repetition rate in a GHz range.
    Type: Application
    Filed: May 13, 2022
    Publication date: November 17, 2022
    Inventor: S. Abbas Hosseini
  • Publication number: 20220080416
    Abstract: An apparatus and method are disclosed for detecting the presence of a microorganism within sampling device. The sampling device has a plurality of reaction chambers each having a reactive reagent for reacting with the microorganism to indicate the presence of the microorganism within the reaction chamber. A grabber holding the sampling device and a motion stage connected to the grabber moves the sampling device in a plane. A detector detects each of the plurality of reaction chambers for detecting the presence of the microorganism within the reaction chamber.
    Type: Application
    Filed: September 16, 2021
    Publication date: March 17, 2022
    Inventors: S. Abbas Hosseini, Mahsa Karbaschi, Amir Tork
  • Patent number: 11053156
    Abstract: A method for machining and releasing closed forms from a transparent, brittle substrate includes using a burst of ultrafast laser pulses to drill patterns of orifices in the substrate. Orifices are formed by photoacoustic compression and they extend completely or partially in the transparent substrate. A scribed line of spaced apart orifices in the transparent substrate comprise a closed form pattern in the substrate. A heat source is applied in a region about said scribed line of spaced apart orifices until the closed form pattern releases from the transparent substrate.
    Type: Grant
    Filed: November 11, 2014
    Date of Patent: July 6, 2021
    Assignee: ROFIN-SINAR TECHNOLOGIES LLC
    Inventor: S. Abbas Hosseini
  • Publication number: 20200368744
    Abstract: An apparatus and method is disclosed for rapid identification of a microorganism within sampling device. The sampling device has a plurality of reaction chambers each having a different reactive agent for reacting with the microorganism to indicate the presence of a microorganism in said reaction chamber. A detector detects each of the plurality of reaction chamber for detecting the presence of a microorganism in said reaction chamber. The invention automates CRISPR CAS 12 and/or CAS 13 method. The invention is a general platform for detection of segments of DNA or RNA using CRISPR CAS 12 and/or CAS 13 proteins.
    Type: Application
    Filed: May 21, 2020
    Publication date: November 26, 2020
    Inventors: S Abbas Hosseini, Amir Tork
  • Publication number: 20200324368
    Abstract: Systems and methods are described for forming continuous laser filaments in transparent materials. A burst of ultrafast laser pulses is focused such that a beam waist is formed external to the material being processed without forming an external plasma channel, while a sufficient energy density is formed within an extended region within the material to support the formation of a continuous filament, without causing optical breakdown within the material. Filaments formed according to this method may exhibit lengths exceeding up to 10 mm. In some embodiments, an aberrated optical focusing element is employed to produce an external beam waist while producing distributed focusing of the incident beam within the material. Various systems are described that facilitate the formation of filament arrays within transparent substrates for cleaving/singulation and/or marking. Optical monitoring of the filaments may be employed to provide feedback to facilitate active control of the process.
    Type: Application
    Filed: June 24, 2020
    Publication date: October 15, 2020
    Applicant: Rofin-Sinar Technologies Inc.
    Inventor: S. Abbas HOSSEINI
  • Patent number: 10711786
    Abstract: A micro pumping mechanism is proposed to generate flow in micro channels of micro fluidic devices and three dimensional microprocessors cooled by the flow of coolant fluids. The proposed micro pump comprises a rotating disk inside a chamber, which overlaps with the fluidic micro channel. The rotating disk induces a shear flow across the micro channel, transporting fluid elements in the direction of the rotation of the disk. The disk can be rotated by external magnetic or electric fields as in direct drive, induction, or electrostatic motors.
    Type: Grant
    Filed: February 20, 2018
    Date of Patent: July 14, 2020
    Assignee: Citroqene, Inc
    Inventors: Mir Abbas Jalali, S Abbas Hosseini, Amir Tork
  • Patent number: 10635205
    Abstract: This invention disclosure addresses the fabrication of deformable microstructured and textured sheets of transparent materials such as glass. The flexible structures have islands of arbitrary geometrical shapes interconnected by springs. Structuring is performed using ultrafast laser pulses and specially designed post-processing. The fabrication process does not create any cracks perpendicular to the cut lines, and therefore, resulting deformable structures are capable of sustaining static and cyclic in-plane tensile and compressive forces, bending moments and twisting torques. Flexible structures of this invention, fabricated using thin sheets of glass, can deform to complex surfaces through stretching, compression and folding in all directions.
    Type: Grant
    Filed: March 7, 2018
    Date of Patent: April 28, 2020
    Assignee: CIT ROGENE, INC
    Inventors: Mir Abbas Jalali, S Abbas Hosseini, Amir Tork
  • Patent number: 10399184
    Abstract: A method is provided for the internal processing of a transparent substrate in preparation for a cleaving step. The substrate is irradiated with a focused laser beam that is comprised of pulses having an energy and pulse duration selected to produce a filament within the substrate. The substrate is translated relative to the laser beam to irradiate the substrate and produce an additional filament at one or more additional locations. The resulting filaments form an array defining an internally scribed path for cleaving said substrate. Laser beam parameters may be varied to adjust the filament length and position, and to optionally introduce V-channels or grooves, rendering bevels to the laser-cleaved edges. Preferably, the laser pulses are delivered in a burst train for lowering the energy threshold for filament formation and increasing the filament length.
    Type: Grant
    Filed: March 28, 2016
    Date of Patent: September 3, 2019
    Assignee: ROFIN-SINAR TECHNOLOGIES LLC
    Inventors: S Abbas Hosseini, Peter R. Herman
  • Patent number: 10391588
    Abstract: Very fine closed form structures can be scribed via filamentation in the transparent substrate very quickly, the modified zone can be etched via dry or wet chemical etching to release the closed form. A metal layer engages the transparent substrate and is covered with photoresist. A portion of the photoresist and a portion of the metal are removed simultaneously with the creation of a filament through the transparent substrate. The photoresist protects the portion of the metal layer that is not removed. The desired closed form can be released by weakening the cut region using dry or wet chemical etching to remove the desired part.
    Type: Grant
    Filed: December 30, 2015
    Date of Patent: August 27, 2019
    Assignee: ROFIN-SINAR TECHNOLOGIES LLC
    Inventor: S. Abbas Hosseini
  • Patent number: 10376986
    Abstract: An apparatus, system and method for the processing of orifices in materials by laser filamentation that utilizes an optical configuration that focuses the incident laser light beam in a distributed manner along the longitudinal beam axis. This distributed focusing method enables the formation of filaments over distances, and the laser and focusing parameters are adjusted to determine the filament propagation and termination points so as to develop a single/double end stopped orifice, or a through orifice. Selected transparent substrates from a stacked or nested configuration may have orifices formed therein/therethrough without affecting the adjacent substrate. These distributed focusing methods support the formation filaments with lengths well beyond ten millimeters in borosilicate glass and similar brittle materials and semiconductors.
    Type: Grant
    Filed: October 22, 2014
    Date of Patent: August 13, 2019
    Assignee: ROFIN-SINAR TECHNOLOGIES LLC
    Inventor: S. Abbas Hosseini
  • Patent number: 10252507
    Abstract: A process of forward deposition of a material onto a target substrate is accomplished by passing a burst of ultrafast laser pulses of a laser beam through a carrier substrate that is transparent to a laser beam. The carrier substrate is coated with a material to be transferred on the bottom side thereof. Electrons on the back side of said transparent carrier coated with the material are excited by the first few sub-pulses of the laser beam which lifts the material from the carrier substrate and subsequent sub-pulse of the laser beam send the material into space at hypersonic speed by a shock wave that drives the material with forward momentum across a narrow gap between the carrier substrate and the target substrate, and onto the target substrate.
    Type: Grant
    Filed: November 16, 2014
    Date of Patent: April 9, 2019
    Assignee: ROFIN-SINAR TECHNOLOGIES LLC
    Inventor: S. Abbas Hosseini
  • Publication number: 20180360175
    Abstract: A non-ablative laser machining method and apparatus for cutting facets of a diamond, using a material machining technique involving filamentation by burst ultrafast laser pulses well suited to mass production. Coupled with 3D modeling and the computerized laser machining system, complex geometric surfaces can be created on the diamond. The facets of the diamond need not be planar in configuration, and may incorporate acute as well as oblique angles. This method minimizes the need for diamond polishing, speeds up production, and realizes great reductions in the quantity of lost material from the cutting process.
    Type: Application
    Filed: July 27, 2018
    Publication date: December 20, 2018
    Applicant: ROFIN-SINAR TECHNOLOGIES, INC.
    Inventor: S. ABBAS HOSSEINI
  • Patent number: 10144088
    Abstract: A method for laser processing of Silicon includes placing a Kerr material into engagement with the Silicon forming an interface therebetween. A laser beam is applied having at least one subpulse in a burst envelope operating at a first wavelength. The laser beam passes through a distributive lens focusing assembly and to the Kerr material. The first wavelength is modified to a plurality of second wavelengths, some of which are effective for processing Silicon. Photoacoustic compression processing is produced by the laser pulse energy by a portion of second wavelengths delivered through the interface and to the Silicon which initiates Kerr Effect self focusing which is propagated in the Silicon by additional energy input to the Silicon thus producing a filament within the Silicon.
    Type: Grant
    Filed: November 28, 2014
    Date of Patent: December 4, 2018
    Assignee: ROFIN-SINAR TECHNOLOGIES LLC
    Inventor: S. Abbas Hosseini
  • Publication number: 20180238333
    Abstract: A micro pumping mechanism is proposed to generate flow in micro channels of micro fluidic devices and three dimensional microprocessors cooled by the flow of coolant fluids. The proposed micro pump comprises a rotating disk inside a chamber, which overlaps with the fluidic micro channel. The rotating disk induces a shear flow across the micro channel, transporting fluid elements in the direction of the rotation of the disk. The disk can be rotated by external magnetic or electric fields as in direct drive, induction, or electrostatic motors.
    Type: Application
    Filed: February 20, 2018
    Publication date: August 23, 2018
    Inventors: Mir Abbas Jalali, S. Abbas Hosseini, Amir Tork
  • Patent number: 10017410
    Abstract: A non-ablative method and apparatus for making an economical glass hard disk (platter) for a computer hard disk drive (HDD) using a material machining technique involving filamentation by burst ultrafast laser pulses. Two related methods disclosed, differing only in whether the glass substrate the HDD platter is to be cut from has been coated with all the necessary material layers to function as a magnetic media in a computer's hard drive. Platter blanks are precisely cut using filamentation by burst ultrafast laser pulses such that the blank's edges need not be ground, the platter's geometric circularity need not be corrected and there is no need for further surface polishing. Thus the platters can be cut from raw glass or coated glass. As a result, this method reduces the product contamination, speeds up production, and realizes great reductions in the quantity of waste materials and lower production costs.
    Type: Grant
    Filed: October 10, 2014
    Date of Patent: July 10, 2018
    Assignee: ROFIN-SINAR TECHNOLOGIES LLC
    Inventor: S. Abbas Hosseini
  • Patent number: 10010971
    Abstract: Systems and methods are described for forming continuous curved laser filaments in transparent materials. The filaments are preferably curved and C-shaped. Filaments may employ other curved profiles (shapes). A burst of ultrafast laser pulses is focused such that a beam waist is formed external to the material being processed without forming an external plasma channel, while a sufficient energy density is formed within an extended region within the material to support the formation of a continuous filament, without causing optical breakdown within the material. Filaments formed according to this method may exhibit lengths in the range of 100 ?m-10 mm. An aberrated optical focusing element is employed to produce an external beam waist while producing distributed focusing of the incident beam within the material. Optical monitoring of the filaments may be employed to provide feedback to facilitate active control of the process.
    Type: Grant
    Filed: July 31, 2017
    Date of Patent: July 3, 2018
    Assignee: ROFIN SINAR TECHNOLOGIES LLC
    Inventor: S. Abbas Hosseini
  • Patent number: 10005152
    Abstract: A method of producing a spiral cut transparent tube using laser machining includes using an ultrafast laser beam comprising a burst of laser pulses and focusing the laser beam on the transparent tube to enable relative movement between the laser beam and the transparent tube by moving the laser beam, the glass tube or both the laser beam and the glass tube. A beam waist is formed external to the surface of the transparent tube wherein the laser pulses and sufficient energy density is maintained within the transparent tube to form a continuous laser filament therethrough without causing optical breakdown. The method and delivery system makes a spiral cut in the transparent tube.
    Type: Grant
    Filed: November 19, 2014
    Date of Patent: June 26, 2018
    Assignee: ROFIN-SINAR TECHNOLOGIES LLC
    Inventor: S. Abbas Hosseini
  • Publication number: 20180161916
    Abstract: Systems and methods are described for forming continuous curved laser filaments in transparent materials. The filaments are preferably curved and C-shaped. Filaments may employ other curved profiles (shapes). A burst of ultrafast laser pulses is focused such that a beam waist is formed external to the material being processed without forming an external plasma channel, while a sufficient energy density is formed within an extended region within the material to support the formation of a continuous filament, without causing optical breakdown within the material. Filaments formed according to this method may exhibit lengths in the range of 100 ?m-10 mm. An aberrated optical focusing element is employed to produce an external beam waist while producing distributed focusing of the incident beam within the material. Optical monitoring of the filaments may be employed to provide feedback to facilitate active control of the process.
    Type: Application
    Filed: July 31, 2017
    Publication date: June 14, 2018
    Applicant: ROFIN-SINAR TECHNOLOGIES INC.
    Inventor: S. Abbas HOSSEINI
  • Patent number: 9938187
    Abstract: A method of drilling multiple orifices in and texturing a substrate is disclosed and includes the following steps. Ultrafast laser pulses are passed through a beam splitting diffractive optical element and then multiple beams are passed through a distributive-focus lens focusing assembly. The relative distance and/or angle of said distributive-focus lens focusing assembly in relation to the laser source is adjusted focusing the pulses in a distributed focus configuration creating a principal focal waist and at least one secondary focal waist. The fluence level of the at least one secondary focal waists is adjusted such that it is or they are of sufficient intensity and number to ensure propagation of multiple filaments in the substrate. Photoacoustic compressive machining is performed and forms multiple volume(s) within the substrate.
    Type: Grant
    Filed: February 23, 2015
    Date of Patent: April 10, 2018
    Assignee: ROFIN-SINAR TECHNOLOGIES LLC
    Inventor: S. Abbas Hosseini
  • Patent number: 9757815
    Abstract: Systems and methods are described for forming continuous curved laser filaments in transparent materials. The filaments are preferably curved and C-shaped. Filaments may employ other curved profiles (shapes). A burst of ultrafast laser pulses is focused such that a beam waist is formed external to the material being processed without forming an external plasma channel, while a sufficient energy density is formed within an extended region within the material to support the formation of a continuous filament, without causing optical breakdown within the material. Filaments formed according to this method may exhibit lengths in the range of 100 ?m-10 mm. An aberrated optical focusing element is employed to produce an external beam waist while producing distributed focusing of the incident beam within the material. Optical monitoring of the filaments may be employed to provide feedback to facilitate active control of the process.
    Type: Grant
    Filed: June 17, 2015
    Date of Patent: September 12, 2017
    Assignee: ROFIN-SINAR TECHNOLOGIES INC.
    Inventor: S. Abbas Hosseini