Patents by Inventor Jean-Noël Fehr

Jean-Noël Fehr 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: 20090044629
    Abstract: A method of monitoring pressure of a gas species up to at most a predetermined maximum pressure value is disclosed. The method includes exposing the gas species to transmission of laser light, periodically modulating the wavelength of the laser light over a wavelength band including at least one absorption line of the gas species, optoelectrically converting the transmitted laser light, thereby generating an electric output signal, performing at least one of first filtering the electric output signal with a filter characteristic having a lower cut-off frequency not lower than a transition frequency and of second filtering the electric output signal with a bandpass filter characteristic having an upper cut-off frequency not higher than the transition frequency and a lower cut-off frequency above the modulation frequency of the periodic wavelength modulation. The output of at least one of the filterings is evaluated as a pressure indicative signal.
    Type: Application
    Filed: October 23, 2008
    Publication date: February 19, 2009
    Inventors: Martin Lehmann, Jean-Noel Fehr, Martin Liechti, Urban Schnell
  • Patent number: 7477355
    Abstract: A projection exposure apparatus for transferring an image of a patterned reticle onto a substrate comprises an illumination optical system for generating and directing an exposure beam onto the reticle, and a projection optical system provided between the reticle and the substrate. The projection optical system has a plurality of imaging mirrors each having a mirror support made of a support material. The support materials are subject to thermal expansion during projection that induces imaging aberrations at substrate level. The support materials are selected such that an aberration merit function, which is indicative of the overall amount of at least one type of the thermally induced aberrations, is minimized by mutual compensation of contributions of the mirrors to the one type of thermally induced aberrations. As a result, the mirror supports will then generally be different and have, when heated during exposure, different coefficients of thermal expansion.
    Type: Grant
    Filed: October 24, 2005
    Date of Patent: January 13, 2009
    Assignee: Carl Zeiss SMT AG
    Inventors: Jean-Noel Fehr, Hans-Juergen Mann, Johannes Zellner
  • Patent number: 7467554
    Abstract: A method of monitoring pressure of a gas species up to at most a predetermined maximum pressure value is disclosed. The method includes exposing the gas species to transmission of laser light, periodically modulating the wavelength of the laser light over a wavelength band including at least one absorption line of the gas species, optoelectrically converting the transmitted laser light, thereby generating an electric output signal, performing at least one of first filtering the electric output signal with a filter characteristic having a lower cut-off frequency not lower than a transition frequency and of second filtering the electric output signal with a bandpass filter characteristic having an upper cut-off frequency not higher than the transition frequency and a lower cut-off frequency above the modulation frequency of the periodic wavelength modulation. The output of at least one of the filterings is evaluated as a pressure indicative signal.
    Type: Grant
    Filed: October 31, 2007
    Date of Patent: December 23, 2008
    Inventors: Martin Lehmann, Jean-Noel Fehr, Martin Liechti, Urban Schnell
  • Patent number: 7428037
    Abstract: There is provided an optical component. The optical component includes a material having a surface that heats to a maximum temperature (Tmax) when subjected to radiation. The material has a temperature-dependent coefficient of thermal expansion (?(T)) of about zero at a temperature T0 that is approximately equal to Tmax. The optical component is suitable for use in any of an illumination system, a projection objective or a projection exposure system, as employed, for example, for EUV microlithography.
    Type: Grant
    Filed: January 24, 2005
    Date of Patent: September 23, 2008
    Assignee: Carl Zeiss SMT AG
    Inventors: Timo Laufer, Jean-Noel Fehr, Harald Kirchner, Andreas Ochse
  • Patent number: 7382819
    Abstract: A method of monitoring pressure of a gas species up to at most a predetermined maximum pressure value is disclosed. The method includes exposing the gas species to transmission of laser light, periodically modulating the wavelength of the laser light over a wavelength band including at least one absorption line of the gas species, optoelectrically converting the transmitted laser light, thereby generating an electric output signal, performing at least one of first filtering the electric output signal with a filter characteristic having a lower cut-off frequency not lower than a transition frequency and of second filtering the electric output signal with a bandpass filter characteristic having an upper cut-off frequency not higher than the transition frequency and a lower cut-off frequency above the modulation frequency of the periodic wavelength modulation. The output of at least one of the filterings is evaluated as a pressure indicative signal.
    Type: Grant
    Filed: February 16, 2007
    Date of Patent: June 3, 2008
    Inventors: Martin Lehmann, Jean-Noel Fehr, Martin Liechti, Urban Schnell
  • Publication number: 20080054532
    Abstract: A method of monitoring pressure of a gas species up to at most a predetermined maximum pressure value is disclosed. The method includes exposing the gas species to transmission of laser light, periodically modulating the wavelength of the laser light over a wavelength band including at least one absorption line of the gas species, optoelectrically converting the transmitted laser light, thereby generating an electric output signal, performing at least one of first filtering the electric output signal with a filter characteristic having a lower cut-off frequency not lower than a transition frequency and of second filtering the electric output signal with a bandpass filter characteristic having an upper cut-off frequency not higher than the transition frequency and a lower cut-off frequency above the modulation frequency of the periodic wavelength modulation. The output of at least one of the filterings is evaluated as a pressure indicative signal.
    Type: Application
    Filed: October 31, 2007
    Publication date: March 6, 2008
    Inventors: Martin Lehmann, Jean-Noel Fehr, Martin Liechti, Urban Schnell
  • Patent number: 7334482
    Abstract: A method of monitoring pressure of a gas species up to at most a predetermined maximum pressure value is disclosed. The method includes exposing the gas species to transmission of laser light, periodically modulating the wavelength of the laser light over a wavelength band including at least one absorption line of the gas species, optoelectrically converting the transmitted laser light, thereby generating an electric output signal, performing at least one of first filtering the electric output signal with a filter characteristic having a lower cut-off frequency not lower than a transition frequency and of second filtering the electric output signal with a bandpass filter characteristic having an upper cut-off frequency not higher than the transition frequency and a lower cut-off frequency above the modulation frequency of the periodic wavelength modulation. The output of at least one of the filterings is evaluated as a pressure indicative signal.
    Type: Grant
    Filed: June 15, 2005
    Date of Patent: February 26, 2008
    Inventors: Martin Lehmann, Jean-Noel Fehr, Martin Liechti, Urban Schnell
  • Publication number: 20070144265
    Abstract: A method of monitoring pressure of a gas species up to at most a predetermined maximum pressure value is disclosed. The method includes exposing the gas species to transmission of laser light, periodically modulating the wavelength of the laser light over a wavelength band including at least one absorption line of the gas species, optoelectrically converting the transmitted laser light, thereby generating an electric output signal, performing at least one of first filtering the electric output signal with a filter characteristic having a lower cut-off frequency not lower than a transition frequency and of second filtering the electric output signal with a bandpass filter characteristic having an upper cut-off frequency not higher than the transition frequency and a lower cut-off frequency above the modulation frequency of the periodic wavelength modulation. The output of at least one of the filterings is evaluated as a pressure indicative signal.
    Type: Application
    Filed: February 16, 2007
    Publication date: June 28, 2007
    Inventors: Martin Lehmann, Jean-Noel Fehr, Martin Liechti, Urban Schnell
  • Patent number: 7222537
    Abstract: A method of monitoring pressure of a gas species up to at most a predetermined maximum pressure value is disclosed. The method includes exposing the gas species to transmission of laser light, periodically modulating the wavelength of the laser light over a wavelength band including at least one absorption line of the gas species, optoelectrically converting the transmitted laser light, thereby generating an electric output signal, performing at least one of first filtering the electric output signal with a filter characteristic having a lower cut-off frequency not lower than a transition frequency and of second filtering the electric output signal with a bandpass filter characteristic having an upper cut-off frequency not higher than the transition frequency and a lower cut-off frequency above the modulation frequency of the periodic wavelength modulation. The output of at least one of the filterings is evaluated as a pressure indicative signal.
    Type: Grant
    Filed: July 20, 2004
    Date of Patent: May 29, 2007
    Inventors: Martin Lehmann, Jean-Noel Fehr, Martin Liechti, Urban Schnell
  • Publication number: 20060119822
    Abstract: A projection exposure apparatus for transferring an image of a patterned reticle onto a substrate comprises an illumination optical system for generating and directing an exposure beam onto the reticle, and a projection optical system provided between the reticle and the substrate. The projection optical system has a plurality of imaging mirrors each having a mirror support made of a support material. The support materials are subject to thermal expansion during projection that induces imaging aberrations at substrate level. The support materials are selected such that an aberration merit function, which is indicative of the overall amount of at least one type of the thermally induced aberrations, is minimized by mutual compensation of contributions of the mirrors to the one type of thermally induced aberrations. As a result, the mirror supports will then generally be different and have, when heated during exposure, different coefficients of thermal expansion.
    Type: Application
    Filed: October 24, 2005
    Publication date: June 8, 2006
    Inventors: Jean-Noel Fehr, Hans-Juergen Mann, Johannes Zellner
  • Publication number: 20060021441
    Abstract: A method of monitoring pressure of a gas species up to at most a predetermined maximum pressure value is disclosed. The method includes exposing the gas species to transmission of laser light, periodically modulating the wavelength of the laser light over a wavelength band including at least one absorption line of the gas species, optoelectrically converting the transmitted laser light, thereby generating an electric output signal, performing at least one of first filtering the electric output signal with a filter characteristic having a lower cut-off frequency not lower than a transition frequency and of second filtering the electric output signal with a bandpass filter characteristic having an upper cut-off frequency not higher than the transition frequency and a lower cut-off frequency above the modulation frequency of the periodic wavelength modulation. The output of at least one of the filterings is evaluated as a pressure indicative signal.
    Type: Application
    Filed: June 15, 2005
    Publication date: February 2, 2006
    Inventors: Martin Lehmann, Jean-Noel Fehr, Martin Liechti, Urban Schnell
  • Publication number: 20050207001
    Abstract: There is provided an optical component. The optical component includes a material having a surface that heats to a maximum temperature (Tmax) when subjected to radiation. The material has a temperature-dependent coefficient of thermal expansion (?(T)) of about zero at a temperature T0 that is approximately equal to Tmax. The optical component is suitable for use in any of an illumination system, a projection objective or a projection exposure system, as employed, for example, for EUV microlithography.
    Type: Application
    Filed: January 24, 2005
    Publication date: September 22, 2005
    Inventors: Timo Laufer, Jean-Noel Fehr, Harald Kirchner, Andreas Ochse
  • Publication number: 20050022603
    Abstract: A method of monitoring pressure of a gas species up to at most a predetermined maximum pressure value is disclosed. The method includes exposing the gas species to transmission of laser light, periodically modulating the wavelength of the laser light over a wavelength band including at least one absorption line of the gas species, optoelectrically converting the transmitted laser light, thereby generating an electric output signal, performing at least one of first filtering the electric output signal with a filter characteristic having a lower cut-off frequency not lower than a transition frequency and of second filtering the electric output signal with a bandpass filter characteristic having an upper cut-off frequency not higher than the transition frequency and a lower cut-off frequency above the modulation frequency of the periodic wavelength modulation. The output of at least one of the filterings is evaluated as a pressure indicative signal.
    Type: Application
    Filed: July 20, 2004
    Publication date: February 3, 2005
    Inventors: Martin Lehmann, Jean-Noel Fehr, Martin Liechti, Urban Schnell