Patents by Inventor Steffen Glaser

Steffen Glaser 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: 10570796
    Abstract: A reactant introduction device, for introducing reactant into an exhaust gas stream of an internal combustion engine, includes a reactant introduction housing (16) with a reactant introduction space (20) surrounded by a housing wall (18). The housing wall (18) includes an incoming flow wall area (30) positioned upstream in relation to an exhaust gas flow direction (A), an outgoing flow wall area (32) positioned downstream, in relation to the exhaust gas flow direction (A) and two side wall areas (34, 36) between the incoming flow wall area (30) and the outgoing flow wall area (32). At least one flow-through opening (72, 74, 76) is provided in at least one side wall area (34, 36) or/and in the outgoing flow wall area (32). A reactant injection device (28) injects reactant into the reactant introduction space (20) in a reactant introduction direction (E) onto a heatable reactant release element (48).
    Type: Grant
    Filed: September 20, 2017
    Date of Patent: February 25, 2020
    Assignee: Eberspächer Exhaust Technology GmbH & Co. KG
    Inventors: Enver Kurpejovic, Oleksandr Semenov, Steffen Glaser
  • Patent number: 10281548
    Abstract: A method of magnetic resonance, in which a sample introduced in a measurement volume in an external magnetic field is excited by an excitation pulse and the signal formed by the transverse magnetization thus produced is read out by a receiving coil. The method is characterized in that a prewinding pulse is used as the excitation pulse, which prewinding pulse is characterized in that the formed transverse magnetization M?(?) of spins of different Larmor frequency ? after the pulse has a phase ?0(?), wherein ?0(?) as a function of ? within a predefined frequency range ?? has an approximately linear course having negative slope, such that the spins refocus after an echo time defined by the pulse without an additional refocusing pulse being necessary.
    Type: Grant
    Filed: March 6, 2014
    Date of Patent: May 7, 2019
    Assignee: UNIVERSITAETSKLINIKUM FREIBURG
    Inventors: Jakob Asslaender, Juergen Hennig, Steffen Glaser
  • Patent number: 10190463
    Abstract: An exhaust system, especially for an internal combustion engine of a vehicle, includes an exhaust gas-carrying duct (14) and a reactant injection device (20) for injecting reactant (R) into exhaust gas (A) flowing in the exhaust gas-carrying duct (14). Downstream of the reactant injection device (20), a mixer device (22) supports the mixing of reactant (R) injected by the reactant injection device (20) with exhaust gas (A) flowing in the exhaust gas-carrying duct (14). Downstream of the reactant injection device (20) and upstream of the mixer device (22), a reactant heating device (24) extends in the exhaust gas-carrying duct (14). The exhaust gas (A) flows in and reactant (R) injected through the reactant injection device (20) flow around the heating device (24).
    Type: Grant
    Filed: March 2, 2017
    Date of Patent: January 29, 2019
    Assignee: Eberspächer Exhaust Technology GmbH & Co. KG
    Inventors: Enver Kurpejovic, Bernd Westerhoff, David Binder, Anika Bürkle, Gita Feyl-Narrain, Steffen Glaser, Ruben Hass, Oleksandr Semenov, Krishna Kumar Vempati
  • Publication number: 20180080360
    Abstract: A reactant introduction device, for introducing reactant into an exhaust gas stream of an internal combustion engine, includes a reactant introduction housing (16) with a reactant introduction space (20) surrounded by a housing wall (18). The housing wall (18) includes an incoming flow wall area (30) positioned upstream in relation to an exhaust gas flow direction (A), an outgoing flow wall area (32) positioned downstream, in relation to the exhaust gas flow direction (A) and two side wall areas (34, 36) between the incoming flow wall area (30) and the outgoing flow wall area (32). At least one flow-through opening (72, 74, 76) is provided in at least one side wall area (34, 36) or/and in the outgoing flow wall area (32). A reactant injection device (28) injects reactant into the reactant introduction space (20) in a reactant introduction direction (E) onto a heatable reactant release element (48).
    Type: Application
    Filed: September 20, 2017
    Publication date: March 22, 2018
    Inventors: Enver KURPEJOVIC, Oleksandr SEMENOV, Steffen GLASER
  • Publication number: 20170254244
    Abstract: An exhaust system, especially for an internal combustion engine of a vehicle, includes an exhaust gas-carrying duct (14) and a reactant injection device (20) for injecting reactant (R) into exhaust gas (A) flowing in the exhaust gas-carrying duct (14). Downstream of the reactant injection device (20), a mixer device (22) supports the mixing of reactant (R) injected by the reactant injection device (20) with exhaust gas (A) flowing in the exhaust gas-carrying duct (14). Downstream of the reactant injection device (20) and upstream of the mixer device (22), a reactant heating device (24) extends in the exhaust gas-carrying duct (14). The exhaust gas (A) flows in and reactant (R) injected through the reactant injection device (20) flow around the heating device (24).
    Type: Application
    Filed: March 2, 2017
    Publication date: September 7, 2017
    Inventors: Enver KURPEJOVIC, Bernd WESTERHOFF, David BINDER, Anika BÜRKLE, Gita FEYL-NARRAIN, Steffen GLASER, Ruben HASS, Oleksandr SEMENOV, Krishna Kumar VEMPATI
  • Publication number: 20160252532
    Abstract: The present invention relates to the use of compounds with at least one pH-sensitive chemical shift for determining pH and/or measuring pH changes in magnetic resonance. More specifically, the present invention is related to compounds with at least one pH-sensitive chemical shift, such compound being selected from pyruvic acid and its metabolites, compounds produced from pyruvic acid after interaction with acid, and compounds comprising at least one enolic group whose pKa value is lowered through effects of at least one neighboring group into a physiological and/or pathological pH-range, and wherein the compound exhibits at least one pH-sensitive chemical shift in an NMR spectrum. The present invention further relates to biosensors comprising at least one of the compounds. The present invention is furthermore related to in vitro and in vivo methods for determining pH and/or measuring pH changes using the compounds or biosensors.
    Type: Application
    Filed: October 15, 2014
    Publication date: September 1, 2016
    Inventors: Franz SCHILLING, Steffen GLASER, Stephan DÜWEL, Malte GERSCH
  • Publication number: 20160186640
    Abstract: A mixer for an exhaust gas duct system of an internal combustion engine includes a flow channel element (16) with a flow channel (14), through which exhaust gases can flow in a main direction of flow (S). At least one mixer element (12) in the flow channel element (16) is movable in the flow channel element (16) to change a mixing effect.
    Type: Application
    Filed: December 28, 2015
    Publication date: June 30, 2016
    Inventors: Silvia CALVO, Enver KURPEJOVIC, Oleksandr SEMENOV, David BINDER, Markus BIRGLER, Steffen GLASER, Michael IHRING, Gita FEYL-NARRAIN, Ralf HÖLSCH, Jan HÄNISCH, Stefanos VARELIS
  • Publication number: 20150323631
    Abstract: A method of magnetic resonance, in which a sample introduced in a measurement volume in an external magnetic field is excited by an excitation pulse and the signal formed by the transverse magnetization thus produced is read out by a receiving coil. The method is characterized in that a prewinding pulse is used as the excitation pulse, which prewinding pulse is characterized in that the formed transverse magnetization M?(?) of spins of different Larmor frequency ? after the pulse has a phase ?0(?), wherein ?0(?) as a function of ? within a predefined frequency range ?? has an approximately linear course having negative slope, such that the spins refocus after an echo time defined by the pulse without an additional refocusing pulse being necessary.
    Type: Application
    Filed: March 6, 2014
    Publication date: November 12, 2015
    Inventors: Jakob Asslaender, Juergen Hennig, Steffen Glaser