Patents by Inventor Leonid Pekker

Leonid Pekker 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: 10616988
    Abstract: Approaches herein provide a plasma arc torch including a tip surrounding an electrode, the electrode having a proximal end and a distal end, and a shield surrounding the tip, the shield including an exit orifice proximate the distal end of the electrode. The torch may further include a linear actuating device coupled to the electrode for actuating the electrode such that the distal end of the electrode moves axially relative to the tip and the exit orifice of the shield. In some approaches, the linear actuating device is operable to actuate the electrode along a central longitudinal axis extending through the tip. In some approaches, the linear actuating device may include one of: a micro linear drive motor, a micro linear stepper motor, a voice coil, a solenoid coil, and a magnetostrictive actuator. In some approaches, the electrode is actuated during a welding or cutting cycle of the torch.
    Type: Grant
    Filed: June 20, 2017
    Date of Patent: April 7, 2020
    Assignee: The ESAB Group Inc.
    Inventors: Andrew Raymond, David A. Tatham, Leonid Pekker, Daniel A. Cote, Geoffrey H. Putnam, Ryan Lynaugh
  • Publication number: 20180368246
    Abstract: Approaches herein provide a plasma arc torch including a tip surrounding an electrode, the electrode having a proximal end and a distal end, and a shield surrounding the tip, the shield including an exit orifice proximate the distal end of the electrode. The torch may further include a linear actuating device coupled to the electrode for actuating the electrode such that the distal end of the electrode moves axially relative to the tip and the exit orifice of the shield. In some approaches, the linear actuating device is operable to actuate the electrode along a central longitudinal axis extending through the tip. In some approaches, the linear actuating device may include one of: a micro linear drive motor, a micro linear stepper motor, a voice coil, a solenoid coil, and a magnetostrictive actuator. In some approaches, the electrode is actuated during a welding or cutting cycle of the torch.
    Type: Application
    Filed: June 20, 2017
    Publication date: December 20, 2018
    Inventors: Andrew Raymond, David A. Tatham, Leonid Pekker, Daniel A. Cote, Geoffrey H. Putnam, Ryan Lynaugh
  • Patent number: 7396271
    Abstract: An apparatus and method for achieving desired spectral emission characteristics in plasma lamps is disclosed. The apparatus and method use multi-layer thin film optical interference coatings to selectively reflect a portion of the light such that it can be absorbed in the plasma. The multi-layer thin film coating is applied to any surface of the lamp, which substantially surrounds the plasma. The number and thickness of the layers in the coating are selected to ensure that significant portion of the selected light emitted from the plasma is reflected by the coating and absorbed by the plasma. The properties of the coating, reflectance, transmittance and absorption are determined as a function of plasma and lamp characteristics.
    Type: Grant
    Filed: April 26, 2005
    Date of Patent: July 8, 2008
    Assignee: Advanced Lighting Technologies, Inc.
    Inventors: Eric Krisl, Abbas Lamouri, Leonid Pekker, Paul Morand, Juris Sulcs, Norman L. Boling
  • Publication number: 20050194907
    Abstract: An apparatus and method for achieving desired spectral emission characteristics in plasma lamps is disclosed. The apparatus and method use multi-layer thin film optical interference coatings to selectively reflect a portion of the light such that it can be absorbed in the plasma. The multi-layer thin film coating is applied to any surface of the lamp, which substantially surrounds the plasma. The number and thickness of the layers in the coating are selected to ensure that significant portion of the selected light emitted from the plasma is reflected by the coating and absorbed by the plasma. The properties of the coating, reflectance, transmittance and absorption are determined as a function of plasma and lamp characteristics.
    Type: Application
    Filed: April 26, 2005
    Publication date: September 8, 2005
    Inventors: Eric Krisl, Abbas Lamouri, Leonid Pekker, Paul Morand, Juris Sulcs, Norman Boling
  • Patent number: 6897609
    Abstract: An apparatus and method for achieving desired spectral emission characteristics in plasma lamps is disclosed. The apparatus and method use multi-layer thin film optical interference coatings to selectively reflect a portion of the light such that it can be absorbed in the plasma. The multi-layer thin film coating is applied to any surface of the lamp, which substantially surrounds the plasma. The number and thickness of the layers in the coating are selected to ensure that a significant portion of the selected light emitted from the plasma is reflected by the coating and absorbed by the plasma. The properties of the coating, reflectance, transmittance and absorption are determined as a function of plasma and lamp characteristics.
    Type: Grant
    Filed: April 1, 2002
    Date of Patent: May 24, 2005
    Assignee: Advanced Lighting Technologies, Inc.
    Inventors: Eric Krisl, Abbas Lamouri, Leonid Pekker, Paul Morand, Juris Sulcs, Norman L. Boling
  • Publication number: 20020195943
    Abstract: An apparatus and method for achieving desired spectral emission characteristics in plasma lamps is disclosed. The apparatus and method use multi-layer thin film optical interference coatings to selectively reflect a portion of the light such that it can be absorbed in the plasma. The multi-layer thin film coating is applied to any surface of the lamp, which substantially surrounds the plasma. The number and thickness of the layers in the coating are selected to ensure that a significant portion of the selected light emitted from the plasma is reflected by the coating and absorbed by the plasma. The properties of the coating, reflectance, transmittance and absorption are determined as a function of plasma and lamp characteristics.
    Type: Application
    Filed: April 1, 2002
    Publication date: December 26, 2002
    Inventors: Matthew Eric Krisl, Abbas Lamouri, Leonid Pekker, Paul Morand, Juris Sulcs, Norman L. Boling