Patents by Inventor Aaron Partridge

Aaron Partridge 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: 10476477
    Abstract: A microelectromechanical system (MEMS) resonator includes a substrate having a substantially planar surface and a resonant member having sidewalls disposed in a nominally perpendicular orientation with respect to the planar surface. Impurity dopant is introduced via the sidewalls of the resonant member such that a non-uniform dopant concentration profile is established along axis extending between the sidewalls parallel to the substrate surface and exhibits a relative minimum concentration in a middle region of the axis.
    Type: Grant
    Filed: September 6, 2017
    Date of Patent: November 12, 2019
    Assignee: SiTime Corporation
    Inventors: Charles I. Grosjean, Ginel C. Hill, Paul M. Hagelin, Renata Melamud Berger, Aaron Partridge, Markus Lutz
  • Patent number: 10458858
    Abstract: A micromachined apparatus includes micromachined thermistor having first and second ends physically and thermally coupled to a substrate via first and second anchor structures to enable a temperature-dependent resistance of the micromachined thermistor to vary according to a time-varying temperature of the substrate. The micromachined thermistor has a length, from the first end to the second end, greater than a linear distance between the first and second anchor structures.
    Type: Grant
    Filed: March 8, 2018
    Date of Patent: October 29, 2019
    Assignee: SiTime Corporation
    Inventors: Carl Arft, Aaron Partridge, Paul M. Hagelin
  • Patent number: 10450190
    Abstract: In a MEMS device, an oxide layer is disposed between first and second semiconductor layers and MEMS resonator is formed within a cavity in the first semiconductor layer. A first electrically conductive feature functionally coupled to the MEMS resonator is exposed at a surface of the first semiconductor layer, and an insulating region is exposed at the surface of the first semiconductor layer adjacent the first electrically conductive feature. A semiconductor cover layer is bonded to the surface of the first semiconductor layer to hermetically seal the MEMS resonator within the cavity. A second electrically conductive feature extends through the semiconductor cover layer to contact the first electrically conductive feature, and an isolation trench extends through the semiconductor cover layer to the insulating region to electrically isolate a conductive path formed by the first and second electrically conductive features.
    Type: Grant
    Filed: August 21, 2018
    Date of Patent: October 22, 2019
    Assignee: SiTime Corporation
    Inventors: Aaron Partridge, Markus Lutz, Pavan Gupta
  • Patent number: 10439579
    Abstract: A continuous or distributed resonator geometry is defined such that the fabrication process used to form a spring mechanism also forms an effective mass of the resonator structure. Proportional design of the spring mechanism and/or mass element geometries in relation to the fabrication process allows for compensation of process-tolerance-induced fabrication variances. As a result, a resonator having increased frequency accuracy is achieved.
    Type: Grant
    Filed: April 30, 2018
    Date of Patent: October 8, 2019
    Assignee: Robert Bosch GmbH
    Inventors: Markus Lutz, Aaron Partridge
  • Patent number: 10439590
    Abstract: A microelectromechanical system (MEMS) resonator includes a resonant semiconductor structure, drive electrode, sense electrode and electrically conductive shielding structure. The first drive electrode generates a time-varying electrostatic force that causes the resonant semiconductor structure to resonate mechanically, and the first sense electrode generates a timing signal in response to the mechanical resonance of the resonant semiconductor structure. The electrically conductive shielding structure is disposed between the first drive electrode and the first sense electrode to shield the first sense electrode from electric field lines emanating from the first drive electrode.
    Type: Grant
    Filed: May 21, 2018
    Date of Patent: October 8, 2019
    Assignee: SiTime Corporation
    Inventors: David Raymond Pedersen, Aaron Partridge, Thor Juneau
  • Publication number: 20190292043
    Abstract: A low-profile packaging structure for a microelectromechanical-system (MEMS) resonator system includes an electrical lead having internal and external electrical contact surfaces at respective first and second heights within a cross-sectional profile of the packaging structure and a die-mounting surface at an intermediate height between the first and second heights. A resonator-control chip is mounted to the die-mounting surface of the electrical lead such that at least a portion of the resonator-control chip is disposed between the first and second heights and wire-bonded to the internal electrical contact surface of the electrical lead.
    Type: Application
    Filed: April 2, 2019
    Publication date: September 26, 2019
    Inventors: Pavan Gupta, Aaron Partridge, Markus Lutz
  • Patent number: 10287162
    Abstract: A low-profile packaging structure for a microelectromechanical-system (MEMS) resonator system includes an electrical lead having internal and external electrical contact surfaces at respective first and second heights within a cross-sectional profile of the packaging structure and a die-mounting surface at an intermediate height between the first and second heights. A resonator-control chip is mounted to the die-mounting surface of the electrical lead such that at least a portion of the resonator-control chip is disposed between the first and second heights and wire-bonded to the internal electrical contact surface of the electrical lead.
    Type: Grant
    Filed: November 6, 2017
    Date of Patent: May 14, 2019
    Assignee: SiTime Corporation
    Inventors: Pavan Gupta, Aaron Partridge, Markus Lutz
  • Patent number: 10247621
    Abstract: In a high resolution temperature sensor, first and second MEMS resonators generate respective first and second clock signals and a locked-loop reference clock generator generates a reference clock signal having a frequency that is phase-locked to at least one of the first and second clock signals. A frequency-ratio engine within the MEMS temperature sensor oversamples at least one of the first and second clock signals with the reference clock signal to generate a ratio of the frequencies of the first and second clock signals.
    Type: Grant
    Filed: September 13, 2016
    Date of Patent: April 2, 2019
    Assignee: SiTime Corporation
    Inventors: Aaron Partridge, Samira Zaliasl, Meisam Heidarpour Roshan, Sassan Tabatabaei
  • Publication number: 20190055121
    Abstract: A semiconductor layer having an opening and a MEMS resonator formed in the opening is disposed between first and second substrates to encapsulate the MEMS resonator. An electrical contact that extends from the opening to an exterior of the MEMS device is formed at least in part within the semiconductor layer and at least in part within the first substrate.
    Type: Application
    Filed: August 21, 2018
    Publication date: February 21, 2019
    Inventors: Aaron Partridge, Markus Lutz, Pavan Gupta
  • Patent number: 10099917
    Abstract: After forming a microelectromechanical-system (MEMS) resonator within a silicon-on-insulator (SOI) wafer, a complementary metal oxide semiconductor (CMOS) cover wafer is bonded to the SOI wafer via one or more eutectic solder bonds that implement respective paths of electrical conductivity between the two wafers and hermetically seal the MEMS resonator within a chamber.
    Type: Grant
    Filed: August 25, 2017
    Date of Patent: October 16, 2018
    Assignee: SiTime Corporation
    Inventors: Aaron Partridge, Markus Lutz, Pavan Gupta
  • Publication number: 20180248532
    Abstract: A continuous or distributed resonator geometry is defined such that the fabrication process used to form a spring mechanism also forms an effective mass of the resonator structure. Proportional design of the spring mechanism and/or mass element geometries in relation to the fabrication process allows for compensation of process-tolerance-induced fabrication variances. As a result, a resonator having increased frequency accuracy is achieved.
    Type: Application
    Filed: April 30, 2018
    Publication date: August 30, 2018
    Inventors: Markus Lutz, Aaron Partridge
  • Publication number: 20180248533
    Abstract: A continuous or distributed resonator geometry is defined such that the fabrication process used to form a spring mechanism also forms an effective mass of the resonator structure. Proportional design of the spring mechanism and/or mass element geometries in relation to the fabrication process allows for compensation of process-tolerance-induced fabrication variances. As a result, a resonator having increased frequency accuracy is achieved.
    Type: Application
    Filed: April 30, 2018
    Publication date: August 30, 2018
    Inventors: Markus Lutz, Aaron Partridge
  • Patent number: 10003320
    Abstract: A microelectromechanical system (MEMS) resonator includes a resonant semiconductor structure, drive electrode, sense electrode and electrically conductive shielding structure. The first drive electrode generates a time-varying electrostatic force that causes the resonant semiconductor structure to resonate mechanically, and the first sense electrode generates a timing signal in response to the mechanical resonance of the resonant semiconductor structure. The electrically conductive shielding structure is disposed between the first drive electrode and the first sense electrode to shield the first sense electrode from electric field lines emanating from the first drive electrode.
    Type: Grant
    Filed: May 15, 2017
    Date of Patent: June 19, 2018
    Assignee: SiTime Corporation
    Inventors: David Raymond Pedersen, Aaron Partridge, Thor Juneau
  • Publication number: 20180155186
    Abstract: A low-profile packaging structure for a microelectromechanical-system (MEMS) resonator system includes an electrical lead having internal and external electrical contact surfaces at respective first and second heights within a cross-sectional profile of the packaging structure and a die-mounting surface at an intermediate height between the first and second heights. A resonator-control chip is mounted to the die-mounting surface of the electrical lead such that at least a portion of the resonator-control chip is disposed between the first and second heights and wire-bonded to the internal electrical contact surface of the electrical lead.
    Type: Application
    Filed: November 6, 2017
    Publication date: June 7, 2018
    Inventors: Pavan Gupta, Aaron Partridge, Markus Lutz
  • Patent number: 9985598
    Abstract: A continuous or distributed resonator geometry is defined such that the fabrication process used to form a spring mechanism also forms an effective mass of the resonator structure. Proportional design of the spring mechanism and/or mass element geometries in relation to the fabrication process allows for compensation of process-tolerance-induced fabrication variances. As a result, a resonator having increased frequency accuracy is achieved.
    Type: Grant
    Filed: June 2, 2015
    Date of Patent: May 29, 2018
    Assignee: ROBERT BOSCH GMBH
    Inventors: Markus Lutz, Aaron Partridge
  • Patent number: 9945734
    Abstract: A micromachined apparatus includes micromachined thermistor having first and second ends physically and thermally coupled to a substrate via first and second anchor structures to enable a temperature-dependent resistance of the micromachined thermistor to vary according to a time-varying temperature of the substrate. The micromachined thermistor has a length, from the first end to the second end, greater than a linear distance between the first and second anchor structures.
    Type: Grant
    Filed: May 22, 2017
    Date of Patent: April 17, 2018
    Assignee: SiTime Corporation
    Inventors: Carl Arft, Aaron Partridge, Paul M. Hagelin
  • Publication number: 20180044176
    Abstract: A semiconductor layer having an opening and a MEMS resonator formed in the opening is disposed between first and second substrates to encapsulate the MEMS resonator. An electrical contact that extends from the opening to an exterior of the MEMS device is formed at least in part within the semiconductor layer and at least in part within the first substrate.
    Type: Application
    Filed: August 25, 2017
    Publication date: February 15, 2018
    Inventors: Aaron Partridge, Markus Lutz, Pavan Gupta
  • Patent number: 9821998
    Abstract: In a microelectromechanical system (MEMS) device, a CMOS die is affixed to a die-mounting surface and wire-bonded to electrically conductive leads, and a MEMS die is stacked on and electrically coupled to the CMOS die in a flip-chip configuration. A package enclosure envelopes the MEMS die, CMOS die and wire bonds, and exposes respective regions of the electrically conductive leads.
    Type: Grant
    Filed: June 20, 2016
    Date of Patent: November 21, 2017
    Assignee: SiTime Corpoaration
    Inventors: Pavan Gupta, Aaron Partridge, Markus Lutz
  • Patent number: 9800222
    Abstract: A continuous or distributed resonator geometry is defined such that the fabrication process used to form a spring mechanism also forms an effective mass of the resonator structure. Proportional design of the spring mechanism and/or mass element geometries in relation to the fabrication process allows for compensation of process-tolerance-induced fabrication variances. As a result, a resonator having increased frequency accuracy is achieved.
    Type: Grant
    Filed: June 2, 2015
    Date of Patent: October 24, 2017
    Assignee: ROBERT BOSCH GMBH
    Inventors: Markus Lutz, Aaron Partridge
  • Patent number: 9774313
    Abstract: A microelectromechanical system (MEMS) resonator includes a substrate having a substantially planar surface and a resonant member having sidewalls disposed in a nominally perpendicular orientation with respect to the planar surface. Impurity dopant is introduced via the sidewalls of the resonant member such that a non-uniform dopant concentration profile is established along axis extending between the sidewalls parallel to the substrate surface and exhibits a relative minimum concentration in a middle region of the axis.
    Type: Grant
    Filed: December 12, 2014
    Date of Patent: September 26, 2017
    Assignee: SiTime Corporation
    Inventors: Charles I. Grosjean, Ginel C. Hill, Paul M. Hagelin, Renata Melamud Berger, Aaron Partridge, Markus Lutz