Patents by Inventor Alpo K. Vallinmaki

Alpo K. Vallinmaki 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: 7154277
    Abstract: A system for use in ac to ac or dc to ac power conversion equipment to detect faults in an inverter when the inverter is in a high impedance mode. The system detects ground faults or cross wiring conditions by converting the inverter outputs to digital signals and evaluating the frequencies of the resulting signals. The system keeps the inverter in the high impedance mode until after it has been determined that neither of the described abnormal statuses exist. The system tests for both of the abnormal statuses on power up and thereafter tests only for a ground fault whenever the inverter switches are disabled.
    Type: Grant
    Filed: August 20, 2004
    Date of Patent: December 26, 2006
    Assignee: ABB Inc.
    Inventors: Alpo K. Vallinmaki, Douglas Karraker, Dennis Tyczkowski
  • Patent number: 6965290
    Abstract: Non-linear inductor(s) are used to reduce the percent total harmonic distortion of the harmonics in the line currents in the input side rectifier system of an ac drive system. Several constructions for the non-linear inductor(s) are described. The non-linear inductor(s) may be constructed from E and I laminations. The gap depends on the construction of the middle leg of the E laminations and may have a step with a constant spacing or a variable spacing which depends on the stacking of the laminations. Alternatively the non-linear inductor(s) may be constructed from a toriodal core that either has a step gap or a variable type gap.
    Type: Grant
    Filed: August 6, 2003
    Date of Patent: November 15, 2005
    Assignees: ABB Inc., ABB Oy
    Inventors: Kalyan P. Gokhale, Alpo K. Vallinmäki, Nicklas Jan Anders Sodo
  • Patent number: 6922883
    Abstract: Non-linear inductor(s) are used to reduce the percent total harmonic distortion of the harmonics in the line currents in the input side rectifier system of an ac drive system. Several constructions for the non-linear inductor(s) are described. The non-linear inductor(s) may be constructed from E and I laminations. The gap depends on the construction of the middle leg of the E laminations and may have a step with a constant spacing or a variable spacing which depends on the stacking of the laminations. Alternatively the non-linear inductor(s) may be constructed from a toriodal core that either has a step gap or a variable type gap.
    Type: Grant
    Filed: August 6, 2003
    Date of Patent: August 2, 2005
    Assignees: ABB Inc., ABB Oy
    Inventors: Kalyan P. Gokhale, Alpo K. Vallinmäki, Nicklas Jan Anders Sodo
  • Patent number: 6774758
    Abstract: Non-linear inductor(s) are used to reduce the percent total harmonic distortion of the harmonics in the line currents in the input side rectifier system of an ac drive system. Several constructions for the non-linear inductor(s) are described. The non-linear inductor(s) may be constructed from E and I laminations. The gap depends on the construction of the middle leg of the E laminations and may have a step with a constant spacing or a variable spacing which depends on the stacking of the laminations. Alternatively the non-linear inductor(s) may be constructed from a toriodal core that either has a step gap or a variable type gap.
    Type: Grant
    Filed: September 11, 2002
    Date of Patent: August 10, 2004
    Inventors: Kalyan P. Gokhale, Alpo K. Vallinmäki, Nicklas Jan Anders Sodo
  • Publication number: 20040046634
    Abstract: Non-linear inductor(s) are used to reduce the percent total harmonic distortion of the harmonics in the line currents in the input side rectifier system of an ac drive system. Several constructions for the non-linear inductor(s) are described. The non-linear inductor(s) may be constructed from E and I laminations. The gap depends on the construction of the middle leg of the E laminations and may have a step with a constant spacing or a variable spacing which depends on the stacking of the laminations. Alternatively the non-linear inductor(s) may be constructed from a toriodal core that either has a step gap or a variable type gap.
    Type: Application
    Filed: August 6, 2003
    Publication date: March 11, 2004
    Inventors: Kalyan P. Gokhale, Alpo K. Vallinmaki, Nicklas Jan Anders Sodo
  • Publication number: 20040046633
    Abstract: Non-linear inductor(s) are used to reduce the percent total harmonic distortion of the harmonics in the line currents in the input side rectifier system of an ac drive system. Several constructions for the non-linear inductor(s) are described. The non-linear inductor(s) may be constructed from E and I laminations. The gap depends on the construction of the middle leg of the E laminations and may have a step with a constant spacing or a variable spacing which depends on the stacking of the laminations. Alternatively the non-linear inductor(s) may be constructed from a toriodal core that either has a step gap or a variable type gap.
    Type: Application
    Filed: September 11, 2002
    Publication date: March 11, 2004
    Applicants: ABB Inc., ABB Industry Oy
    Inventors: Kalyan P. Gokhale, Alpo K. Vallinmaki, Nicklas Jan Anders Sodo
  • Publication number: 20040046629
    Abstract: Non-linear inductor(s) are used to reduce the percent total harmonic distortion of the harmonics in the line currents in the input side rectifier system of an ac drive system. Several constructions for the non-linear inductor(s) are described. The non-linear inductor(s) may be constructed from E and I laminations. The gap depends on the construction of the middle leg of the E laminations and may have a step with a constant spacing or a variable spacing which depends on the stacking of the laminations. Alternatively the non-linear inductor(s) may be constructed from a toriodal core that either has a step gap or a variable type gap.
    Type: Application
    Filed: August 6, 2003
    Publication date: March 11, 2004
    Inventors: Kalyan P. Gokhale, Alpo K. Vallinmaki, Nicklas Jan Anders Sodo