Patents by Inventor Sarah Bergbreiter

Sarah Bergbreiter 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).

  • Publication number: 20240123616
    Abstract: A bipedal walking robot uses a quasi-passive control scheme and a simplified mechanical design. The walking robot has a pair of legs connected to a body through a passive hip joint, which is offset from a center of gravity of the walking robot. A nonconcentric, curved foot is attached at to each leg by a prismatic joint. Extension and retraction of the prismatic joint initiates the walking sequence of the robot, with each foot retracted during the swing phase and extended during the stance phase. Directional changes are controlled by changing a phase offset in the actuation of each foot.
    Type: Application
    Filed: October 12, 2023
    Publication date: April 18, 2024
    Applicant: Carnegie Mellon University
    Inventors: Aaron Johnson, Sarah Bergbreiter, Kamal Carter, Sharfin Islam, Justin Yim, James Kyle
  • Patent number: 10293490
    Abstract: At least one tactile sensor includes an insulating layer and a conductive layer formed on the surface of the insulating layer. The conductive layer defines at least one group of flexible projections extending orthogonally from the surface of the insulating layer. The flexible projections include a major projection extending a distance orthogonally from the surface and at least one minor projection that is adjacent to and separate from the major projection wherein the major projection extends a distance orthogonally that is greater than the distance that the minor projection extends orthogonally. Upon a compressive force normal to, or a shear force parallel to, the surface, the major projection and the minor projection flex such that an electrical contact resistance is formed between the major projection and the minor projection. A capacitive tactile sensor is also disclosed that responds to the normal and shear forces.
    Type: Grant
    Filed: January 16, 2018
    Date of Patent: May 21, 2019
    Assignee: University of Maryland, College Park
    Inventors: Alexandros Charalambides, Sarah Bergbreiter, Ivan Penskiy
  • Publication number: 20180194012
    Abstract: At least one tactile sensor includes an insulating layer and a conductive layer formed on the surface of the insulating layer. The conductive layer defines at least one group of flexible projections extending orthogonally from the surface of the insulating layer. The flexible projections include a major projection extending a distance orthogonally from the surface and at least one minor projection that is adjacent to and separate from the major projection wherein the major projection extends a distance orthogonally that is greater than the distance that the minor projection extends orthogonally. Upon a compressive force normal to, or a shear force parallel to, the surface, the major projection and the minor projection flex such that an electrical contact resistance is formed between the major projection and the minor projection. A capacitive tactile sensor is also disclosed that responds to the normal and shear forces.
    Type: Application
    Filed: January 16, 2018
    Publication date: July 12, 2018
    Inventors: Alexandros Charalambides, Sarah Bergbreiter, Ivan Penskiy
  • Patent number: 9868217
    Abstract: At least one tactile sensor includes an insulating layer and a conductive layer formed on the surface of the insulating layer. The conductive layer defines at least one group of flexible projections extending orthogonally from the surface of the insulating layer. The flexible projections include a major projection extending a distance orthogonally from the surface and at least one minor projection that is adjacent to and separate from the major projection wherein the major projection extends a distance orthogonally that is greater than the distance that the minor projection extends orthogonally. Upon a compressive force normal to, or a shear force parallel to, the surface, the major projection and the minor projection flex such that an electrical contact resistance is formed between the major projection and the minor projection. A capacitive tactile sensor is also disclosed that responds to the normal and shear forces.
    Type: Grant
    Filed: September 6, 2016
    Date of Patent: January 16, 2018
    Assignee: Univeristy of Maryland
    Inventors: Alexandros Charalambides, Sarah Bergbreiter, Ivan Penskiy
  • Publication number: 20170066136
    Abstract: At least one tactile sensor includes an insulating layer and a conductive layer formed on the surface of the insulating layer. The conductive layer defines at least one group of flexible projections extending orthogonally from the surface of the insulating layer. The flexible projections include a major projection extending a distance orthogonally from the surface and at least one minor projection that is adjacent to and separate from the major projection wherein the major projection extends a distance orthogonally that is greater than the distance that the minor projection extends orthogonally. Upon a compressive force normal to, or a shear force parallel to, the surface, the major projection and the minor projection flex such that an electrical contact resistance is formed between the major projection and the minor projection. A capacitive tactile sensor is also disclosed that responds to the normal and shear forces.
    Type: Application
    Filed: September 6, 2016
    Publication date: March 9, 2017
    Inventors: Alexandros Charalambides, Sarah Bergbreiter, Ivan Penskiy