Patents by Inventor Ronald E. Pelrine

Ronald E. Pelrine 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: 7456549
    Abstract: The present invention relates to mechanical-electrical power conversion systems. The systems comprise one or more electroactive polymers that convert between electrical and mechanical energy. When a voltage is applied to electrodes contacting an electroactive polymer, the polymer deflects. This deflection may be converted into rotation of a power shaft included in a motor. Repeated deflection of the polymer may then produce continuous rotation of the power shaft.
    Type: Grant
    Filed: January 24, 2006
    Date of Patent: November 25, 2008
    Assignee: SRI International
    Inventors: Jon Heim, Ronald E. Pelrine, Roy D. Kornbluh, Joseph Stephen Eckerle
  • Publication number: 20080252176
    Abstract: The present invention relates to mechanical-electrical power conversion systems. The systems comprise one or more electroactive polymers that convert between electrical and mechanical energy. When a voltage is applied to electrodes contacting an electroactive polymer, the polymer deflects. This deflection may be converted into rotation of a power shaft included in a motor. Repeated deflection of the polymer may then produce continuous rotation of the power shaft.
    Type: Application
    Filed: April 23, 2008
    Publication date: October 16, 2008
    Applicant: SRI International
    Inventors: Ronald E. Pelrine, Roy D. Kornbluh, Jonathan Heim
  • Patent number: 7436099
    Abstract: The present invention provides electroactive polymers, transducers and devices that maintain pre-strain in one or more portions of an electroactive polymer. Electroactive polymers described herein may include a pre-strained portion and a stiffened portion configured to maintain pre-strain in the pre-strained portion. One fabrication technique applies pre-strain to a partially cured electroactive polymer. The partially cured polymer is then further cured to stiffen and maintain the pre-strain. In another fabrication technique, a support layer is coupled to the polymer that maintains pre-strain in a portion of an electroactive polymer. Another embodiment of the invention cures a polymer precursor to maintain pre-strain in an electroactive polymer.
    Type: Grant
    Filed: August 27, 2004
    Date of Patent: October 14, 2008
    Assignee: SRI International
    Inventors: Qibing Pei, Ronald E. Pelrine, Marcus Rosenthal
  • Publication number: 20080245985
    Abstract: The invention describes devices for controlling fluid flow, such as valves. The devices may include one or more electroactive polymer transducers with an electroactive polymer that deflects in response to an application of an electric field. The electroactive polymer may be in contact with a fluid where the deflection of the electroactive polymer may be used to change a characteristic of the fluid. Some of the characteristic of the fluid that may be changed include but are not limited to 1) a flow rate, 2) a flow direction, 3) a flow vorticity, 4) a flow momentum, 5) a flow mixing rate, 6) a flow turbulence rate, 7) a flow energy, 8) a flow thermodynamic property. The electroactive polymer may be a portion of a surface of a structure that is immersed in an external fluid flow, such as the surface of an airplane wing or the electroactive polymer may be a portion of a surface of a structure used in an internal flow, such as a bounding surface of a fluid conduit.
    Type: Application
    Filed: July 29, 2007
    Publication date: October 9, 2008
    Applicant: SRI INTERNATIONAL
    Inventors: Jonathan R. Heim, Ronald E. Pelrine, Roy David Kornbluh, Joseph S. Eckerle, Marcus Rosenthal, Richard P. Heydt
  • Publication number: 20080224564
    Abstract: Described herein are several solutions that increase transducer lifetime by reducing or preventing tear propagation in a compliant electroactive polymer. One solution couples a compliant tear resistant treatment to a transducer proximate to an edge portion of the electroactive polymer. Another solution uses a tear resistant layer that couples to and covers a large surface area of the transducer.
    Type: Application
    Filed: March 13, 2008
    Publication date: September 18, 2008
    Applicant: SRI INTERNATIONAL
    Inventors: Ronald E. PELRINE, Roy D. KORNBLUH, Harsha PRAHLAD, Sunity K. SHARMA, Bryan CHAVEZ, Donald E. CZYZYK, Annjoe WONG-FOY, Scott E. STANFORD
  • Publication number: 20080218132
    Abstract: Described herein is a generator with an electroactive polymer transducer. The transducer has a capacitance that varies with deflection of a polymer included in the transducer. The generator also includes a generator circuit, coupled to the electroactive polymer transducer, that includes a capacitor. The generator circuit is configured such that the capacitor collects electrical energy from the electroactive polymer transducer in response to a change in capacitance of the polymer.
    Type: Application
    Filed: March 6, 2008
    Publication date: September 11, 2008
    Applicant: SRI INTERNATIONAL
    Inventors: Ronald E. Pelrine, Roy D. Kornbluh, Joseph S. Eckerle, Harsha Prahlad
  • Publication number: 20080211341
    Abstract: Described herein is electroadhesion technology that permits controllable adherence between two objects. Electroadhesion uses electrostatic forces of attraction produced by an electrostatic adhesion voltage, which is applied using electrodes in an electroadhesive device. The electrostatic adhesion voltage produces an electric field and electrostatic adherence forces. When the electroadhesive device and electrodes are positioned near a surface of an object such as a vertical wall, the electrostatic adherence forces hold the electroadhesive device in position relative to the surface and object. This can be used to increase traction or maintain the position of the electroadhesive device relative to a surface. Electric control of the electrostatic adhesion voltage permits the adhesion to be controllably and readily turned on and off.
    Type: Application
    Filed: June 4, 2007
    Publication date: September 4, 2008
    Applicant: SRI INTERNATIONAL
    Inventors: Ronald E. Pelrine, Harsha Prahlad, Roy D. Kornbluh, Patrick D. Lincoln, Scott Stanford
  • Publication number: 20080191585
    Abstract: Described herein are transducers, their use and fabrication. The transducers convert between mechanical and electrical energy. The present invention further relates to compliant electrodes that conform to the shape of a polymer included in a transducer.
    Type: Application
    Filed: July 9, 2007
    Publication date: August 14, 2008
    Applicant: SRI INTERNATIONAL
    Inventors: Ronald E. Pelrine, Roy D. Kornbluh, Qibing Pei, Jose P. Joseph
  • Patent number: 7411332
    Abstract: The present invention relates to animated devices that include one or more electroactive polymer transducers. When actuated by electrical energy, an electroactive polymer produces mechanical deflection in one or more directions. This deflection may be used to produce motion of a feature included in an animated device. Electroactive polymer transducers offer customizable shapes and deflections. Combining different ways to configure and constrain a polymer, different ways to arrange active areas on a single polymer, different animated device designs, and different polymer orientations, permits a broad range of animated devices that use an electroactive polymer transducer to produce motion. These animated devices find use in a wide range of animated device applications.
    Type: Grant
    Filed: April 5, 2007
    Date of Patent: August 12, 2008
    Assignee: SRI International
    Inventors: Roy D. Kornbluh, Ronald E. Pelrine, Qibing Pei, Joseph S. Eckerle
  • Patent number: 7394182
    Abstract: The invention describes devices for performing thermodynamic work on a fluid, such as pumps, compressors and fans. The thermodynamic work may be used to provide a driving force for moving the fluid. Work performed on the fluid may be transmitted to other devices, such as a piston in a hydraulic actuation device. The devices may include one or more electroactive polymer transducers with an electroactive polymer that deflects in response to an application of an electric field. The electroactive polymer may be in contact with a fluid where the deflection of the electroactive polymer may be used to perform thermodynamic work on the fluid. The devices may be designed to efficiently operate at a plurality of operating conditions, such as operating conditions that produce an acoustic signal above or below the human hearing range. The devices may be used in thermal control systems, such as refrigeration system, cooling systems and heating systems.
    Type: Grant
    Filed: December 21, 2006
    Date of Patent: July 1, 2008
    Assignee: SRI International
    Inventors: Ronald E. Pelrine, Roy David Kornbluh, Richard Heydt, Jonathan R. Heim
  • Publication number: 20080143324
    Abstract: Described is a piston rod position-sensing system having a cylinder and piston rod arranged in the cylinder for movement with respect thereto. A magnetically hard layer is formed on the piston rod to provide a recording medium. The magnetically hard layer is made of a cobalt-phosphorous (Co—P)-based alloy. A magnetic pattern is recorded in the magnetically hard layer. A magnetic field sensor located in the cylinder senses the recorded magnetic pattern while the piston rod is moving with respect to the cylinder.
    Type: Application
    Filed: December 9, 2007
    Publication date: June 19, 2008
    Applicant: SRI INTERNATIONAL
    Inventors: Thomas P. Low, C. Bruce Clark, Ronald E. Pelrine, Joseph S. Eckerle, Chris Smith, Giovanni Zangari
  • Publication number: 20080136052
    Abstract: Described herein are transducers and their fabrication. The transducers convert between mechanical and electrical energy. Some transducers of the present invention include a pre-strained polymer. The pre-strain improves the conversion between electrical and mechanical energy. The present invention provides methods for fabricating electromechanical devices including one or more electroactive polymers.
    Type: Application
    Filed: July 9, 2007
    Publication date: June 12, 2008
    Applicant: SRI INTERNATIONAL
    Inventors: Ronald E. Pelrine, Roy D. Kornbluh, Qibing Pei, Seajin Oh, Jose P. Joseph
  • Patent number: 7378783
    Abstract: The present invention relates to mechanical-electrical power conversion systems. The systems comprise one or more electroactive polymers that convert between electrical and mechanical energy. When a voltage is applied to electrodes contacting an electroactive polymer, the polymer deflects. This deflection may be converted into rotation of a power shaft included in a motor. Repeated deflection of the polymer may then produce continuous rotation of the power shaft.
    Type: Grant
    Filed: July 12, 2007
    Date of Patent: May 27, 2008
    Assignee: SRI International
    Inventors: Ronald E. Pelrine, Roy D. Kornbluh, Jonathan Heim
  • Patent number: 7368862
    Abstract: The present invention relates to transducers, their use and fabrication. The transducers convert between mechanical and electrical energy. Some transducers of the present invention include a pre-strained polymer. The pre-strain improves the conversion between electrical and mechanical energy. The present invention also relates to devices including an electroactive polymer to convert between electrical and mechanical energy. The present invention further relates to compliant electrodes that conform to the shape of a polymer included in a transducer. The present invention provides methods for fabricating electromechanical devices including one or more electroactive polymers.
    Type: Grant
    Filed: January 24, 2006
    Date of Patent: May 6, 2008
    Assignee: SRI International
    Inventors: Ronald E. Pelrine, Roy D. Kornbluh, Pablo E. Garcia, Joseph Stephen Eckerle
  • Patent number: 7362032
    Abstract: The invention describes devices for performing thermodynamic work on a fluid, such as pumps, compressors and fans. The thermodynamic work may be used to provide a driving force for moving the fluid. Work performed on the fluid may be transmitted to other devices, such as a piston in a hydraulic actuation device. The devices may include one or more electroactive polymer transducers with an electroactive polymer that deflects in response to an application of an electric field. The electroactive polymer may be in contact with a fluid where the deflection of the electroactive polymer may be used to perform thermodynamic work on the fluid. The devices may be designed to efficiently operate at a plurality of operating conditions, such as operating conditions that produce an acoustic signal above or below the human hearing range. The devices may be used in thermal control systems, such as refrigeration system, cooling systems and heating systems.
    Type: Grant
    Filed: March 14, 2006
    Date of Patent: April 22, 2008
    Assignee: SRI International
    Inventors: Ronald E. Pelrine, Roy David Kornbluh, Scott E. Stanford, Qibing Pei, Richard Heydt, Joseph S. Eckerle, Jonathan R. Heim
  • Patent number: 7329392
    Abstract: An apparatus and method for performing successive chemical or biochemical operations in an automated or semi-automated format are disclosed. The apparatus includes (i) a substrate having two or more wells, where each well is separated from adjacent well(s) by an energy barrier, (ii), a magnetic bead having a surface on which at least one of said operations is performed, and (iii) electromagnets positioned adjacent said wells, for use in producing controlled-time electromagnetic fields in one or more selected wells. A control unit operatively coupled to the electromagnets functions to produce controlled-time electromagnetic forces on the bead that are effective to transfer the bead from one well to another across the energy barrier and optionally, to agitate the bead within a well.
    Type: Grant
    Filed: October 18, 2002
    Date of Patent: February 12, 2008
    Assignee: SRI International
    Inventors: Neville A. Bonwit, Ronald E. Pelrine, John S. Bashkin
  • Patent number: 7320457
    Abstract: The invention describes devices for controlling fluid flow, such as valves. The devices may include one or more electroactive polymer transducers with an electroactive polymer that deflects in response to an application of an electric field. The electroactive polymer may be in contact with a fluid where the deflection of the electroactive polymer may be used to change a characteristic of the fluid. Some of the characteristic of the fluid that may be changed include but are not limited to 1) a flow rate, 2) a flow direction, 3) a flow vorticity, 4) a flow momentum, 5) a flow mixing rate, 6) a flow turbulence rate, 7) a flow energy, 8) a flow thermodynamic property. The electroactive polymer may be a portion of a surface of a structure that is immersed in an external fluid flow, such as the surface of an airplane wing or the electroactive polymer may be a portion of a surface of a structure used in an internal flow, such as a bounding surface of a fluid conduit.
    Type: Grant
    Filed: March 5, 2003
    Date of Patent: January 22, 2008
    Assignee: SRI International
    Inventors: Jonathon R. Heim, Ronald E. Pelrine, Roy David Kornbluh, Joseph S. Eckerle, Marcus Rosenthal, Richard P. Heydt
  • Publication number: 20080003143
    Abstract: An apparatus and method for performing successive chemical or biochemical operations in an automated or semi-automated format are disclosed. The apparatus includes (i) a substrate having two or more wells, where each well is separated from adjacent well(s) by an energy barrier, (ii), a magnetic bead having a surface on which at least one of said operations is performed, and (iii) electromagnets positioned adjacent said wells, for use in producing controlled-time electromagnetic fields in one or more selected wells. A control unit operatively coupled to the electromagnets functions to produce controlled-time electromagnetic forces on the bead that are effective to transfer the bead from one well to another across the energy barrier and optionally, to agitate the bead within a well.
    Type: Application
    Filed: October 18, 2002
    Publication date: January 3, 2008
    Inventors: Neville A. Bonwit, Ronald E. Pelrine, John S. Bashkin
  • Patent number: 7307418
    Abstract: Described are system for recording piston rod position information in a magnetic layer on the piston rod. A piston rod has a magnetically hard layer formed thereon to provide a recording medium. A magnetic pattern is recorded in the magnetically hard layer. A magnetic field sensor disposed adjacent to the piston rod senses the recorded magnetic pattern while the piston rod is moving and generates signals in response to the magnetic pattern that are used to determine a position of the piston rod.
    Type: Grant
    Filed: April 24, 2006
    Date of Patent: December 11, 2007
    Assignee: SRI International
    Inventors: Thomas P. Low, C. Bruce Clark, Ronald E. Pelrine, Joseph S. Eckerle, Chris Smith
  • Publication number: 20070257490
    Abstract: Described herein are systems and methods that use an electroactive polymer transducer to convert mechanical energy, originally contained in one or more waves, to electrical energy. Marine devices described herein may employ a mechanical energy conversion system that transfers mechanical energy in a wave into mechanical energy suitable for input to the electroactive polymer transducer.
    Type: Application
    Filed: March 9, 2007
    Publication date: November 8, 2007
    Inventors: Roy D. Kornbluh, Ronald E. Pelrine, Harsha Prahlad, Seiki Chiba, Joseph S. Eckerle, Bryan Chavez, Scott E. Stanford, Thomas Low