Patents by Inventor Peter Naß

Peter Naß 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).

  • Patent number: 11698577
    Abstract: An imaging system includes at least one laser light source having a wavelength in the visible spectral range and a beam guidance element with high solarization resistance at high beam power densities. The invention also relates to the use of the imaging system, in particularly in projectors and in material processing.
    Type: Grant
    Filed: May 28, 2021
    Date of Patent: July 11, 2023
    Assignee: Schott AG
    Inventors: Ralf Jedamzik, Peter Naß, Sebastian Leukel, Volker Hagemann, Uwe Petzold
  • Publication number: 20230167012
    Abstract: A glass tube for pharmaceutical containers and a manufacturing process for a glass tube are provided. The glass tubes are characterized by a homogenous and low alkali leachability on the inner surface.
    Type: Application
    Filed: November 29, 2022
    Publication date: June 1, 2023
    Applicant: SCHOTT AG
    Inventors: Susanne Krüger, Ulrich Lange, Peter Nass, Arne Riecke, Detlef Köpsel, Rainer Erwin Eichholz, Andreas Langsdorf
  • Publication number: 20230090497
    Abstract: An imaging system, includes: a laser light source having a wavelength from 380 nm to 490 nm; and a beam guidance element, the laser light source configured for generating an average surface power density of more than 10 W/cm2, the beam guidance element including a glass which has a quality factor F(436 nm)=S(436 nm)*(Abs0(436 nm)+Abs1(436 nm))/k, wherein S(436 nm) is a thermality at a wavelength of 436 nm, Abs1(436 nm) is an additional absorbance in comparison to Abs0(436 nm) at a wavelength of 436 nm after an irradiation with a power density of 345 W/cm2 for 72 hours with a laser light having a wavelength of 455 nm, Abs0(436 nm) is an absorbance at a wavelength of 436 nm of a sample having a thickness of 100 mm without the irradiation, k is the thermal conductivity, and the quality factor F(436 nm) is <15 ppm/W.
    Type: Application
    Filed: November 28, 2022
    Publication date: March 23, 2023
    Applicant: Schott AG
    Inventors: Ralf Jedamzik, Antoine Carré, Sebastian Leukel, Volker Hagemann, Uwe Petzold, Lothar Bartelmess, Peter Nass
  • Patent number: 11609363
    Abstract: The present disclosure relates to a layered optical composite, in particular for use in an augmented reality device. In particular, the disclosure relates to a layered optical composite and a process for its preparation, a device comprising the layered optical composite and a process for its preparation, and the use of a layered optical composite in an augmented reality device. The present disclosure relates to a layered optical composite comprising: a. a substrate having a front face and a back face, b. a coating comprising: i. a type T layer, and ii. a type C region comprising one or more type C layers; in which the substrate has: i. a thickness tG in the range from 0.2 to 1.2 mm; ii. a refractive index nG at a wavelength ? in the range from 1.6 to 2.4; and iii. an optical absorption coefficient KG at the wavelength ? of less than 10 cm?1; in which the type C layers individually and independently have: i. a thickness tC in the range from 9 to 250 nm; ii.
    Type: Grant
    Filed: September 28, 2020
    Date of Patent: March 21, 2023
    Assignee: SCHOTT AG
    Inventors: Kurt Nattermann, Jens Ulrich Thomas, Frank-Thomas Lentes, Thorsten Damm, Peter Naß
  • Patent number: 11520150
    Abstract: The present disclosure relates to a device, in particular an augmented reality device. In particular, the disclosure relates to a device, a kit, a process for making the device, and a process for making a visual impression.
    Type: Grant
    Filed: September 28, 2020
    Date of Patent: December 6, 2022
    Assignee: SCHOTT AG
    Inventors: Simone Monika Ritter, Antoine Carré, Peter Naß, Frank-Thomas Lentes
  • Patent number: 11453609
    Abstract: A method for producing a glass article having high hydrolytic resistance is provided. A glass tube consisting of borosilicate glass and having an Al2O3 content of less than 1 weight-%, a ZrO2 content of 2-12 weight-%, and a glass transition temperature Tg is reshaped into a glass article and is subsequently subjected to a thermal post-treatment. To reduce the alkali release of the glass article, the glass article is subjected to a treatment temperature of TB?Tg+5° K over a treatment time of tB?5 min and is subsequently cooled during the thermal post-treatment.
    Type: Grant
    Filed: April 9, 2019
    Date of Patent: September 27, 2022
    Assignee: Schott AG
    Inventors: Malte Grimm, Christof Kass, Peter Nass
  • Publication number: 20220082840
    Abstract: The present invention relates to a glass article with low optical loss. The present invention also relates to the use of the glass article, in particular as optical waveguide, for example as light guide plate, in particular in augmented reality devices.
    Type: Application
    Filed: September 14, 2021
    Publication date: March 17, 2022
    Applicant: Schott AG
    Inventors: Peter Naß, Hubertus Russert, Thorsten Damm, Volker Plapper, Antoine Carré, Jens Ulrich Thomas
  • Publication number: 20210373426
    Abstract: An imaging system includes at least one laser light source having a wavelength in the visible spectral range and a beam guidance element with high solarization resistance at high beam power densities. The invention also relates to the use of the imaging system, in particularly in projectors and in material processing.
    Type: Application
    Filed: May 28, 2021
    Publication date: December 2, 2021
    Applicant: Schott AG
    Inventors: Ralf Jedamzik, Peter Naß, Sebastian Leukel, Volker Hagemann, Uwe Petzold
  • Publication number: 20210149090
    Abstract: The present disclosure relates to a layered optical composite, in particular for use in an augmented reality device. In particular, the disclosure relates to a layered optical composite and a process for its preparation, a device comprising the layered optical composite and a process for its preparation, and the use of a layered optical composite in an augmented reality device. The present disclosure relates to a layered optical composite comprising: a. a substrate having a front face and a back face, b. a coating comprising: i. a type T layer, and ii. a type C region comprising one or more type C layers; in which the substrate has: i. a thickness tG in the range from 0.2 to 1.2 mm; ii. a refractive index nG at a wavelength ? in the range from 1.6 to 2.4; and iii. an optical absorption coefficient KG at the wavelength ? of less than 10 cm?1; in which the type C layers individually and independently have: i. a thickness tC in the range from 9 to 250 nm; ii.
    Type: Application
    Filed: September 28, 2020
    Publication date: May 20, 2021
    Applicant: SCHOTT AG
    Inventors: Kurt Nattermann, Jens Ulrich Thomas, Frank-Thomas Lentes, Thorsten Damm, Peter Naß
  • Patent number: 10988408
    Abstract: A conversion material for a white or colored light source is provided. The material includes a matrix glass that, as bulk material, for a thickness of about 1 mm, has a pure transmission of greater than 80% in the wavelength region from 350 to 800 nm and in the region in which the primary light source emits light, wherein the sum of transmission and reflection of the sintered matrix glass without luminophore is at least greater than 80% in the spectral region from 350 nm to 800 nm and in the spectral region in which the primary light source emits light.
    Type: Grant
    Filed: March 9, 2018
    Date of Patent: April 27, 2021
    Assignee: SCHOTT AG
    Inventors: Rainer Liebald, Claudia Stolz, Peter Brix, Simone Monika Ritter, Peter Nass, Dieter Goedeke, Sabine Pichler-Wilhelm, Sabrina Wimmer
  • Publication number: 20210096376
    Abstract: The present disclosure relates to a device, in particular an augmented reality device. In particular, the disclosure relates to a device, a kit, a process for making the device, and a process for making a visual impression. The present disclosure relates to a device including: a. a grouping of x optical elements, each optical element having a front face and a back face, the x optical elements being arranged in a stack from first to last in which the front face of an optical element faces the back face of the next optical element, and b. a spacer region made of a material having a refractive index below 1.
    Type: Application
    Filed: September 28, 2020
    Publication date: April 1, 2021
    Applicant: SCHOTT AG
    Inventors: Simone Monika Ritter, Antoine Carré, Peter Naß, Frank-Thomas Lentes
  • Patent number: 10822265
    Abstract: A glass having a good hydrolytic resistance and alkali resistance is defined by a targeted combination of stoichiometric glasses, including glasses also existing as crystals in the same stoichiometry and whose properties can be assumed as being very similar due to the identical topology of the structural units for glass and crystal, respectively. A process of producing the glasses is also provided.
    Type: Grant
    Filed: February 8, 2018
    Date of Patent: November 3, 2020
    Assignee: Schott AG
    Inventors: Ulrich Fotheringham, Michael Schwall, Simone Ritter, Peter Naß, Christof Kass, Christoph Berndhäuser, Christoph Groß
  • Publication number: 20200199011
    Abstract: A glass includes a composition which is characterized by the following constituent phases of the glass: 20-80 mol % silicon dioxide; 0-40 mol % wollastonite; 0-30 mol % cordierite; 0-40 mol % anorthite; 0-40 mol % strontium-feldspar; 0-20 mol % celsian; 0-40 mol % hardystonite; 0-10 mol % titanite; and 0-15 mol % gittinsite. Where the composition is specified in mol % relative to oxides, the glass contains less than 11.5 mol % Al2O3 and less than 5000 ppm (molar, relative to the oxides) of each of B2O3, Li2O, Na2O, K2O, Rb2O and Cs2O. A calculated value for the removal rate according to ISO 695 is not more than 81.9 mg/(dm2 3 h) and a calculated value for the removal rate in acid according to DIN12116 is less than 3.5 mg(dm2 6 h).
    Type: Application
    Filed: December 20, 2019
    Publication date: June 25, 2020
    Applicant: Schott AG
    Inventors: Ulrich Fotheringham, Peter Naß, Stephan Tratzky, Simone Monika Ritter, Rainer Eichholz, Christoph Berndhäuser
  • Publication number: 20200010354
    Abstract: Glasses and glass products which combine the chemical temperability with very good alkali and acid resistance, hydrolytic resistance, as well as a desired coefficient of thermal expansion are provided. The glass has a composition characterized by the following constituent phases: a composition characterized by the following constituent phases: 20-60 mol % albite; 0-40 mol % silicon dioxide; 0-20 mol % orthoclase; 0-10 mol % wollastonite; 0-20 mol % enstatite; 0-20 mol % parakeldyshite; 0-20 mol % narsarsukite; 0-40 mol % disodium zinc silicate; 0-20 mol % cordierite; 0-10 mol % strontium silicate; and 0-10 mol % barium silicate.
    Type: Application
    Filed: July 2, 2019
    Publication date: January 9, 2020
    Applicant: Schott AG
    Inventors: Ulrich Fotheringham, Peter Nass, Michael Schwall, Christian Mix, Ulf Dahlmann
  • Publication number: 20190308902
    Abstract: A method for producing a glass article having high hydrolytic resistance is provided. A glass tube consisting of borosilicate glass and having an Al2O3 content of less than 1 weight-%, a ZrO2 content of 2-12 weight-%, and a glass transition temperature Tg is reshaped into a glass article and is subsequently subjected to a thermal post-treatment. To reduce the alkali release of the glass article, the glass article is subjected to a treatment temperature of TB?Tg+5° K over a treatment time of tB?5 min and is subsequently cooled during the thermal post-treatment.
    Type: Application
    Filed: April 9, 2019
    Publication date: October 10, 2019
    Applicant: Schott AG
    Inventors: Malte Grimm, Christof Kass, Peter Nass
  • Patent number: 10315948
    Abstract: A pharmaceutical packaging is provided including a glass, comprising at least the following components (given in mol % on oxide basis): SiO2: 5 9-84, Al2O3: 7-18.5, CaO: 1-25, SrO: 0-6.5, BaO: 0-5, ZrO2: 0-3, TiO2: 0-5, B2O3: 0-1, wherein the ratio (CaO+SrO+BaO)/Al2O3<2.8, wherein the ratio (CaO+SrO+BaO)/SiO2?0.39, wherein the hydrolytic resistance according to DIN ISO 720 is class HGA 1, and wherein the glass, apart from unavoidable contaminations, is free of alkali oxides and magnesium oxides.
    Type: Grant
    Filed: May 4, 2017
    Date of Patent: June 11, 2019
    Assignee: SCHOTT AG
    Inventors: Michael Schwall, Christof Kass, Stephan Tratzky, Rainer Eichholz, Peter Nass
  • Publication number: 20180222791
    Abstract: A glass having a good hydrolytic resistance and alkali resistance is defined by a targeted combination of stoichiometric glasses, including glasses also existing as crystals in the same stoichiometry and whose properties can be assumed as being very similar due to the identical topology of the structural units for glass and crystal, respectively. A process of producing the glasses is also provided.
    Type: Application
    Filed: February 8, 2018
    Publication date: August 9, 2018
    Applicant: Schott AG
    Inventors: Ulrich Fotheringham, Michael Schwall, Simone Ritter, Peter Naß, Christof Kass, Christoph Berndhäuser, Christoph Groß
  • Publication number: 20180194673
    Abstract: A conversion material for a white or colored light source is provided. The material includes a matrix glass that, as bulk material, for a thickness of about 1 mm, has a pure transmission of greater than 80% in the wavelength region from 350 to 800 nm and in the region in which the primary light source emits light, wherein the sum of transmission and reflection of the sintered matrix glass without luminophore is at least greater than 80% in the spectral region from 350 nm to 800 nm and in the spectral region in which the primary light source emits light.
    Type: Application
    Filed: March 9, 2018
    Publication date: July 12, 2018
    Applicant: SCHOTT AG
    Inventors: Rainer Liebald, Claudia Stolz, Peter Brix, Simone Monika Ritter, Peter Nass, Dieter Goedeke, Sabine Pichler-Wilhelm, Sabrina Wimmer
  • Patent number: 9950949
    Abstract: The invention relates to a conversion material, in particular for a white or colored light source comprising a semiconductor light source as primary light source, comprising a matrix glass that, as bulk material, for a thickness d of about 1 mm, has a pure transmission ?i of greater than 80% in the wavelength region from 350 to 800 nm and in the region in which the primary light source emits light, wherein the sum of transmission and reflection of the sintered matrix glass without luminophore is at least greater than 80% in the spectral region from 350 nm to 800 nm and in the spectral region in which the primary light source emits light.
    Type: Grant
    Filed: April 29, 2009
    Date of Patent: April 24, 2018
    Assignee: SCHOTT AG
    Inventors: Rainer Liebald, Claudia Stolz, Peter Brix, Simone Monika Ritter, Peter Nass, Dieter Goedeke, Sabine Pichler-Wilhelm, Sabrina Wimmer
  • Publication number: 20170320770
    Abstract: A pharmaceutical packaging is provided including a glass, comprising at least the following components (given in mol % on oxide basis): SiO2:59-84, Al2O3:7-18.5, CaO:1-25, SrO:0-6.5, BaO:0-5, ZrO2:0-3, TiO2:0-5, B2O3:0-1, wherein the ratio (CaO+SrO+BaO)/Al2O3<2.8, wherein the ratio (CaO+SrO+BaO)/SiO2?0.39, wherein the hydrolytic resistance according to DIN ISO 720 is class HGA 1, and wherein the glass, apart from unavoidable contaminations, is free of alkali oxides and magnesium oxides.
    Type: Application
    Filed: May 4, 2017
    Publication date: November 9, 2017
    Applicant: SCHOTT AG
    Inventors: Michael Schwall, Christof Kass, Stephan Tratzky, Rainer Eichholz, Peter Nass