Patents by Inventor Farla M. Russo

Farla M. Russo 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: 6485380
    Abstract: A golf club includes an electroactive assembly attached to the club and electrically tuned to capture energy from one or more vibrational modes with high efficiency. More generally, a sports implement includes an electroactive element, such as a piezoceramic sheet attached to the implement, and a circuit attached to the electroactive element. The circuit may be a shunt, or may include processing such as amplification and phase control to apply a driving signal which may compensate for strain sensed in the implement, or may simply alter the stiffness to affect performance. The electroactive element is located in a region of high strain to apply damping, and may include plural subassemblies mounted to capture energy in different planes, or to capture an asymmetric strain distribution while maintaining structural symmetry. In a ski the element captures between about one and five percent of the strain energy of the ski.
    Type: Grant
    Filed: January 12, 2001
    Date of Patent: November 26, 2002
    Assignee: Active Control eXperts, Inc.
    Inventors: Ronald Spangler, David Gilbert, Carl Prestia, Emanuele Bianchini, Kenneth B. Lazarus, Jeffrey W. Moore, Robert N. Jacques, Jonathan C. Allen, Farla M. Russo
  • Patent number: 6427812
    Abstract: A valve regulates fluid displacement in a damper assembly, for example, displacement of hydraulic fluid in a sealed shock absorber. The valve is placed between a portion of fluid at one pressure and regulates the passage of fluid through an aperture or passage to a portion of fluid at a lower pressure by a blocking member which moves to obstruct the aperture in accordance with a desired level of damping. The blocking member is, or is driven by, an electroactive device, such as a bimorph actuator formed of ferroelectric material.
    Type: Grant
    Filed: January 23, 2001
    Date of Patent: August 6, 2002
    Assignee: Active Control eXperts, Inc.
    Inventors: Edward F. Crawley, Kenneth B. Lazarus, Jeffrey W. Moore, Douglas A. Simpson, Gerald F. Caron, Farla M. Russo
  • Publication number: 20010025752
    Abstract: A valve regulates fluid displacement in a damper assembly, for example, displacement of hydraulic fluid in a sealed shock absorber. The valve is placed between a portion of fluid at one pressure and regulates the passage of fluid through an aperture or passage to a portion of fluid at a lower pressure by a blocking member which moves to obstruct the aperture in accordance with a desired level of damping. The blocking member is, or is driven by, an electroactive device, such as a bimorph actuator formed of ferroelectric material. In one embodiment, the blocking member is a bimorph which covers the aperture, and is flexibly displaced by passage of pressurized fluid through the aperture. A controller provides an electrical actuation signal to move the bimorph toward or away from the aperture, augmenting or decreasing its closing bias to affect both the threshold flow initiation pressure and the rate of flow once the passage opens.
    Type: Application
    Filed: January 23, 2001
    Publication date: October 4, 2001
    Inventors: Edward F. Crawley, Kenneth B. Lazarus, Jeffrey W. Moore, Douglas A. Simpson, Gerald F. Caron, Farla M. Russo
  • Publication number: 20010001770
    Abstract: A golf club includes an electroactive assembly attached to the club and electrically tuned to capture energy from one or more vibrational modes with high efficiency. More generally, a sports implement includes an electroactive element, such as a piezoceramic sheet attached to the implement, and a circuit attached to the electroactive element. The circuit may be a shunt, or may include processing such as amplification and phase control to apply a driving signal which may compensate for strain sensed in the implement, or may simply alter the stiffness to affect performance. The electroactive element is located in a region of high strain to apply damping, and may include plural subassemblies mounted to capture energy in different planes, or to capture an asymmetric strain distribution while maintaining structural symmetry. In a ski the element captures between about one and five percent of the strain energy of the ski.
    Type: Application
    Filed: January 12, 2001
    Publication date: May 24, 2001
    Inventors: Ronald Spangler, David Gilbert, Carl Prestia, Emanuele Bianchini, Kenneth B. Lazarus, Jeffrey W. Moore, Robert N. Jacques, Jonathan C. Allen, Farla M. Russo
  • Patent number: 6196935
    Abstract: A golf club includes an electroactive assembly attached to the club and electrically tuned to capture energy from one or more vibrational modes with high efficiency. More generally, a sports implement includes an electroactive element, such as a piezoceramic sheet attached to the implement, and a circuit attached to the electroactive element. The circuit may be a shunt, or may include processing such as amplification and phase control to apply a driving signal which may compensate for strain sensed in the implement, or may simply alter the stiffness to affect performance. The electroactive element is located in a region of high strain to apply damping, and may include plural subassemblies mounted to capture energy in different planes, or to capture an asymmetric strain distribution while maintaining structural symmetry. In a ski the element captures between about one and five percent of the strain energy of the ski.
    Type: Grant
    Filed: April 9, 1998
    Date of Patent: March 6, 2001
    Assignee: Active Control Experts, Inc.
    Inventors: Ronald Spangler, David Gilbert, Carl Prestia, Emanuele Bianchini, Kenneth B. Lazarus, Jeffrey W. Moore, Robert N. Jacques, Jonathan C. Allen, Farla M. Russo
  • Patent number: 6193029
    Abstract: A valve regulates fluid displacement in a damper assembly, for example, displacement of hydraulic fluid in a sealed shock absorber. The valve is placed between a portion of fluid at one pressure and regulates the passage of fluid through an aperture or passage to a portion of fluid at a lower pressure by a blocking member which moves to obstruct the aperture in accordance with a desired level of damping. The blocking member is, or is driven by, an electroactive device, such as a bimorph actuator formed of ferroelectric material. In one embodiment, the blocking member is a bimorph which covers the aperture, and is flexibly displaced by passage of pressurized fluid through the aperture. A controller provides an electrical actuation signal to move the bimorph toward or away from the aperture, augmenting or decreasing its closing bias to affect both the threshold flow initiation pressure and the rate of flow once the passage opens.
    Type: Grant
    Filed: July 8, 1997
    Date of Patent: February 27, 2001
    Assignee: Active Control eXperts, Inc.
    Inventors: Edward F. Crawley, Kenneth B. Lazarus, Jeffrey W. Moore, Douglas A. Simpson, Gerald F. Caron, Farla M. Russo
  • Patent number: 6102426
    Abstract: A sports implement includes an electroactive element such as a piezoceramic sheet attached to the implement and a shunt circuit attached to the electroactive element to counteract strain or alter stiffness of the implement to affect its performance. In a ski, one shunt circuit is neither a linear nor a highly tuned shunt, but is a low Q resonant inductive shunt tuned to a performance band of the ski to enhance dissipation of energy from of the electroactive element. The performance band includes at least one structural mode of the ski and a neighborhood of that mode. The neighborhood may include variations in the frequency of a first or higher free structural resonance which arise from production variations or size variations of the ski or its components.
    Type: Grant
    Filed: February 7, 1997
    Date of Patent: August 15, 2000
    Assignee: Active Control eXperts, Inc.
    Inventors: Kenneth B. Lazarus, Jeffrey W. Moore, Robert N. Jacques, Farla M. Russo, Ronald Spangler
  • Patent number: 6093995
    Abstract: A hybrid actuator includes strain actuated elements that displace fluid to move a piston, with the elements forming a fluid housing, and being oriented and actuated to optimize force, stroke or bandwidth. In one preferred embodiment the elements are cylinders enclosing the fluid, with radial and axial components of strain-induced dimensional change adding together to enhance displacement. In another preferred embodiment, piezo bender elements produce large stroke, high bandwidth movements. Strokes of up to fifty percent of actuator length, and bandwidths above 500 Hz are achieved in light weight electrically actuated devices free of external piping or hydraulics. The actuator is readily integrated into a gate valve, sub-woofer, or other driven device.
    Type: Grant
    Filed: January 25, 1999
    Date of Patent: July 25, 2000
    Assignee: Active Control eXperts, Inc.
    Inventors: Kenneth B. Lazarus, Edward F. Crawley, Farla M. Russo, Erik Saarmaa
  • Patent number: 6086490
    Abstract: A baseball bat includes an electroactive assembly attached near the handle and electrically tuned to capture energy from several modes with high efficiency. More generally, a sports implement includes an electroactive element, such as a piezoceramic sheet attached to the implement, and a circuit attached to the electroactive element. The circuit may be a shunt, or may include processing such as amplification and phase control to apply a driving signal which may compensate for strain sensed in the implement, or may simply alter the stiffness to affect performance. In a ski, the electroactive element is located near to the root in a region of high strain to apply damping, and the element captures between about one and five percent of the strain energy of the ski. The region of high strain may be found by modeling mechanics of the sports implement, or may be located by empirically mapping the strain distribution which occurs during use of the implement.
    Type: Grant
    Filed: April 3, 1998
    Date of Patent: July 11, 2000
    Assignee: Active Control eXperts, Inc.
    Inventors: Ronald Spangler, David Gilbert, Carl Prestia, Emanuele Bianchini, Kenneth B. Lazarus, Jeffrey W. Moore, Robert N. Jacques, Jonathan C. Allen, Farla M. Russo
  • Patent number: 5866971
    Abstract: A hybrid actuator includes strain actuated elements that displace fluid to move a piston, with the elements forming a fluid housing, and being oriented and actuated to optimize force, stroke or bandwidth. In one preferred embodiment the elements are cylinders enclosing the fluid, with radial and axial components of strain-induced dimensional change adding together to enhance displacement. In another preferred embodiment, piezo bender elements produce large stroke, high bandwidth movements. Strokes of up to fifty percent of actuator length, and bandwidths above 500 Hz are achieved in light weight electrically actuated devices free of external piping or hydraulics. The actuator is readily integrated into a gate valve, sub-woofer, or other driven device.
    Type: Grant
    Filed: August 14, 1996
    Date of Patent: February 2, 1999
    Assignee: Active Control Experts, Inc.
    Inventors: Kenneth B. Lazarus, Edward F. Crawley, Farla M. Russo, Erik Saarmaa
  • Patent number: 5249954
    Abstract: Disclosed is an integrated imaging sensor/neural network controller for combustion control systems. The controller uses electronic imaging sensing of chemiluminescence from a combustion system, combined with neural network image processing, to sensitively identify and control a complex combustion system. The imaging system used is not adversely affected by the normal emissions variations caused by changes in burner load and flame position. By incorporating neural networks to learn emission patterns associated with combustor performance, control using image technology is fast enough to be used in a real time, closed loop control system. This advance in sensing and control strategy allows use of the spatial distribution of important parameters in the combustion system in identifying the overall operation condition of a given combustor and in formulating a control response accorded to a pre-determined control model.
    Type: Grant
    Filed: July 7, 1992
    Date of Patent: October 5, 1993
    Assignee: Electric Power Research Institute, Inc.
    Inventors: Mark G. Allen, Charles T. Butler, Stephen A. Johnson, Edmund Y. Lo, Farla M. Russo