Patents by Inventor Christopher Sanden

Christopher Sanden 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: 11683234
    Abstract: One embodiment of the invention disclosed herein provides techniques for detecting and remediating an outlier server in a distributed computer system. A control server retrieves a group of time-series data sets associated with a first time period, where each time-series data set represents a performance metric for a different server in a group of servers. The control server generates a cluster that includes two or more of the time-series data sets, where the performance metric for each server that is associated with one of the time-series data sets in the cluster is within a threshold distance from the performance metric for the servers that are associated with the other time-series data sets in the cluster. The control server determines that a particular time-series data set corresponds to a server included in the group of servers and is not included in the cluster, and marks the server as an outlier server.
    Type: Grant
    Filed: February 11, 2016
    Date of Patent: June 20, 2023
    Assignee: NETFLIX, INC.
    Inventors: Roy Rapoport, Christopher Sanden, Cody Rioux, Gregory Burrell
  • Publication number: 20220155332
    Abstract: A probe head for an air data probe includes a ceramic body and a heater embedded within the ceramic body.
    Type: Application
    Filed: January 31, 2022
    Publication date: May 19, 2022
    Inventors: Christopher Sanden, Scott D. Isebrand, Greg Allen Seidel
  • Patent number: 11237183
    Abstract: A probe head for an air data probe includes a ceramic body and a heater embedded within the ceramic body.
    Type: Grant
    Filed: December 13, 2019
    Date of Patent: February 1, 2022
    Assignee: Rosemount Aerospace Inc.
    Inventors: Christopher Sanden, Scott D. Isebrand, Greg Allen Seidel
  • Publication number: 20210181229
    Abstract: A probe head for an air data probe includes a ceramic body and a heater embedded within the ceramic body.
    Type: Application
    Filed: December 13, 2019
    Publication date: June 17, 2021
    Inventors: Christopher Sanden, Scott D. Isebrand, Greg Allen Seidel
  • Patent number: 11015994
    Abstract: A pressure sensor includes a MEMS pressure transducer with a pressure sensing diaphragm and sensor elements, an isolator diaphragm spaced apart from the pressure sensing diaphragm, and a ceramic header body. The ceramic header body has an electrical conductor and transducer aperture with the MEMS pressure transducer supported therein. The isolator diaphragm is coupled to the to the MEMS pressure transducer by a fluid and is sealably fixed to the ceramic body. The ceramic header body bounds the fluid and the electrical conductor electrically connects the MEMS pressure transducer with the external environment. Differential pressure sensors and methods of making pressure sensors are also described.
    Type: Grant
    Filed: August 22, 2018
    Date of Patent: May 25, 2021
    Assignee: Rosemount Aerospace Inc.
    Inventors: Christopher Sanden, James Joseph Mctighe, Cuong Tho Huynh
  • Publication number: 20200064216
    Abstract: A pressure sensor includes a MEMS pressure transducer with a pressure sensing diaphragm and sensor elements, an isolator diaphragm spaced apart from the pressure sensing diaphragm, and a ceramic header body. The ceramic header body has an electrical conductor and transducer aperture with the MEMS pressure transducer supported therein. The isolator diaphragm is coupled to the to the MEMS pressure transducer by a fluid and is sealably fixed to the ceramic body. The ceramic header body bounds the fluid and the electrical conductor electrically connects the MEMS pressure transducer with the external environment. Differential pressure sensors and methods of making pressure sensors are also described.
    Type: Application
    Filed: August 22, 2018
    Publication date: February 27, 2020
    Applicant: Rosemount Aerospace Inc.
    Inventors: Christopher Sanden, James Joseph Mctighe, Cuong Tho Huynh
  • Patent number: 10126193
    Abstract: A differential pressure sensor includes a body having a first end, a second end, and a wall. The first end and second end include isolator diaphragms connected to external first and second process fluid inlets. A MEMS pressure sensor including a pressure sensing diaphragm inside the cylinder has first and second sides coupled to the first and second isolator diaphragms by first and second fill fluid volumes. Sensor elements on the diaphragm are configured to provide, via associated sensor circuitry, an indication of deflection due to pressure differences between the first and second fill volumes. Electrical and fill fluid connections to the differential pressure sensor are made through radial connections in the wall of the body.
    Type: Grant
    Filed: January 19, 2016
    Date of Patent: November 13, 2018
    Assignee: Rosemount Aerospace Inc.
    Inventors: Christopher Sanden, Odd Harald Steen Eriksen
  • Publication number: 20170205303
    Abstract: A differential pressure sensor includes a body having a first end, a second end, and a wall. The first end and second end include isolator diaphragms connected to external first and second process fluid inlets. A MEMS pressure sensor including a pressure sensing diaphragm inside the cylinder has first and second sides coupled to the first and second isolator diaphragms by first and second fill fluid volumes. Sensor elements on the diaphragm are configured to provide, via associated sensor circuitry, an indication of deflection due to pressure differences between the first and second fill volumes. Electrical and fill fluid connections to the differential pressure sensor are made through radial connections in the wall of the body.
    Type: Application
    Filed: January 19, 2016
    Publication date: July 20, 2017
    Inventors: Christopher Sanden, Odd Harald Steen Eriksen
  • Publication number: 20170019308
    Abstract: One embodiment of the invention disclosed herein provides techniques for detecting and remediating an outlier server in a distributed computer system. A control server retrieves a group of time-series data sets associated with a first time period, where each time-series data set represents a performance metric for a different server in a group of servers. The control server generates a cluster that includes two or more of the time-series data sets, where the performance metric for each server that is associated with one of the time-series data sets in the cluster is within a threshold distance from the performance metric for the servers that are associated with the other time-series data sets in the cluster. The control server determines that a particular time-series data set corresponds to a server included in the group of servers and is not included in the cluster, and marks the server as an outlier server.
    Type: Application
    Filed: February 11, 2016
    Publication date: January 19, 2017
    Inventors: Roy RAPOPORT, Christopher SANDEN, Cody RIOUX, Gregory BURRELL
  • Patent number: 8933713
    Abstract: A sensor for monitoring loads in a landing gear torque linkage includes a main pin having an axial interior bore defined therein. The main pin is configured and adapted to engage a torque link to a strut lug of a landing gear strut. A core pin is mounted axially within an interior bore of the main pin and is spaced radially inwardly from the interior bore for relative displacement with respect to the main pin. A capacitor is included having an inner capacitor plate mounted to the core pin. An outer capacitor plate is mounted to the main pin. Relative displacement of the core pin and the main pin due to loads acting on the torque link and strut lug results in relative displacement of the inner and outer capacitor plates. Signals can thereby be produced indicative of the loads acting on the torque link.
    Type: Grant
    Filed: October 13, 2011
    Date of Patent: January 13, 2015
    Assignee: Goodrich Corporation
    Inventors: Odd Harald Steen Eriksen, Christopher Sanden
  • Patent number: 8659307
    Abstract: A sensor for monitoring external loads acting on a pin assembly includes a pin having an axial interior bore defined therein and having a length defined from a first end to an opposed second end thereof. A core pin is mounted axially within the interior bore of the pin spaced radially inwardly from the interior bore for relative displacement with respect to the pin. A capacitor is provided having an inner capacitor plate mounted to the core pin, and an outer capacitor plate mounted to the pin, such that relative displacement of the core and the pin due to external loading on the pin results in relative displacement of the inner and outer capacitor plates. The capacitor is configured and adapted to be connected to an electrical circuit to produce signals indicative of external loading on the pin based on relative displacement of the inner and outer capacitor plates.
    Type: Grant
    Filed: August 17, 2010
    Date of Patent: February 25, 2014
    Assignee: Rosemount Aerospace Inc.
    Inventors: Harald Eriksen, Alexander Spivak, Christopher Sanden
  • Publication number: 20120043978
    Abstract: A sensor for monitoring external loads acting on a pin assembly includes a pin having an axial interior bore defined therein and having a length defined from a first end to an opposed second end thereof. A core pin is mounted axially within the interior bore of the pin spaced radially inwardly from the interior bore for relative displacement with respect to the pin. A capacitor is provided having an inner capacitor plate mounted to the core pin, and an outer capacitor plate mounted to the pin, such that relative displacement of the core and the pin due to external loading on the pin results in relative displacement of the inner and outer capacitor plates. The capacitor is configured and adapted to be connected to an electrical circuit to produce signals indicative of external loading on the pin based on relative displacement of the inner and outer capacitor plates.
    Type: Application
    Filed: August 17, 2010
    Publication date: February 23, 2012
    Applicant: Rosemount Aerospace Inc.
    Inventors: Odd Harald Steen Eriksen, Alexander Spivak, Christopher Sanden
  • Publication number: 20120043417
    Abstract: A sensor for monitoring loads in a landing gear torque linkage includes a main pin having an axial interior bore defined therein. The main pin is configured and adapted to engage a torque link to a strut lug of a landing gear strut. A core pin is mounted axially within an interior bore of the main pin and is spaced radially inwardly from the interior bore for relative displacement with respect to the main pin. A capacitor is included having an inner capacitor plate mounted to the core pin. An outer capacitor plate is mounted to the main pin. Relative displacement of the core pin and the main pin due to loads acting on the torque link and strut lug results in relative displacement of the inner and outer capacitor plates. Signals can thereby be produced indicative of the loads acting on the torque link.
    Type: Application
    Filed: October 13, 2011
    Publication date: February 23, 2012
    Applicant: Goodrich Corporation
    Inventors: Odd Harald Steen Eriksen, Christopher Sanden
  • Patent number: 7784359
    Abstract: A Coriolis effect device includes a housing defining an interior chamber having a central axis, an inlet, an outlet, a leading disc and a trailing disc. Each disc is supported for oscillatory movement within the interior chamber of the housing. The leading disc defines a leading flow path in fluid communication with the inlet and interior chamber, wherein a portion of the leading flow path extends radially with respect to the central axis. The trailing disc is axially spaced from the leading disc. The trailing disc defines a trailing flow path in fluid communication with the interior chamber and the outlet, wherein a portion of the trailing flow path extends radially with respect to the central axis. A phase difference between leading and trailing oscillating signals picked up from the disc movement can be used to determine a mass flow rate of fluid passing from the inlet to the outlet.
    Type: Grant
    Filed: April 17, 2008
    Date of Patent: August 31, 2010
    Assignee: Rosemount Aerospace Inc.
    Inventors: Chuang-Chia Lin, Alexander Spivak, Christopher Sanden, Odd Harald Steen Eriksen
  • Publication number: 20100018326
    Abstract: A Coriolis effect device includes a housing defining an interior chamber having a central axis, an inlet, an outlet, a leading disc and a trailing disc. Each disc is supported for oscillatory movement within the interior chamber of the housing. The leading disc defines a leading flow path in fluid communication with the inlet and interior chamber, wherein a portion of the leading flow path extends radially with respect to the central axis. The trailing disc is axially spaced from the leading disc. The trailing disc defines a trailing flow path in fluid communication with the interior chamber and the outlet, wherein a portion of the trailing flow path extends radially with respect to the central axis. A phase difference between leading and trailing oscillating signals picked up from the disc movement can be used to determine a mass flow rate of fluid passing from the inlet to the outlet.
    Type: Application
    Filed: April 17, 2008
    Publication date: January 28, 2010
    Applicant: Rosemount Aerospace Inc.
    Inventors: Chuang-Chia Lin, Alexander Spivak, Christopher Sanden, Odd Harald Steen Eriksen
  • Patent number: 7603915
    Abstract: A force balanced mass flow meter is disclosed that includes a cylindrical sensor housing having an interior bore, an impeller body supported for axial rotation within the interior bore of the sensor housing, and including structure for converting fluid inertia into flow induced torque when fluid flows relative to the impeller body, a proximity sensor for measuring a rotation angle of the impeller body relative to the sensor housing, an electromagnet for generating a magnetic field about the sensor housing to prevent rotation of the impeller body, electronics for determining electrical values from the proximity sensor when fluid flows relative to the impeller body and a controller for controlling current supplied to the electromagnet in response to electrical values determined from the proximity sensor, to generate a magnetic field sufficient to prevent impeller rotation.
    Type: Grant
    Filed: August 23, 2007
    Date of Patent: October 20, 2009
    Assignee: Rosemount Aerospace Inc.
    Inventors: Alexander Spivak, Odd Harald Steen Eriksen, Felix Goldenberg, Alexander Grichener, Christopher Sanden, Joe Mctighe, Chuang-Chia Lin
  • Publication number: 20090049927
    Abstract: A force balanced mass flow meter is disclosed that includes a cylindrical sensor housing having an interior bore, an impeller body supported for axial rotation within the interior bore of the sensor housing, and including structure for converting fluid inertia into flow induced torque when fluid flows relative to the impeller body, a proximity sensor for measuring a rotation angle of the impeller body relative to the sensor housing, an electromagnet for generating a magnetic field about the sensor housing to prevent rotation of the impeller body, electronics for determining electrical values from the proximity sensor when fluid flows relative to the impeller body and a controller for controlling current supplied to the electromagnet in response to electrical values determined from the proximity sensor, to generate a magnetic field sufficient to prevent impeller rotation.
    Type: Application
    Filed: August 23, 2007
    Publication date: February 26, 2009
    Applicant: Rosemount Aerospace Inc.
    Inventors: Alexander Spivak, Odd Harald Eriksen, Felix Goldenberg, Alexander Grichener, Christopher Sanden, Joe McTighe, Chuang-Chia Lin