Patents by Inventor Thierry Laliberte

Thierry Laliberte 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: 20240238964
    Abstract: A spatial parallel mechanism comprises a platform. Three or more legs configured for extending from a base or ground to the platform, each leg has a distal link, one or more distal joint providing one rotational degree of freedom (DOF) about a distal rotational axis, the distal joint connecting a distal end of the distal link to the platform. A proximal joint provides at least two rotational DOFs at the proximal end of the distal link. Assemblies of joints and links provide DOFs to each said leg between the proximal joint and the base or ground. The distal rotational axes of the three legs are parallel to one another.
    Type: Application
    Filed: March 8, 2024
    Publication date: July 18, 2024
    Inventors: Clément GOSSELIN, Kefei WEN, David HARTON, Thierry LALIBERTE
  • Patent number: 11945111
    Abstract: A spatial parallel mechanism comprises a platform. Three or more legs configured for extending from a base or ground to the platform, each leg has a distal link, one or more distal joint providing one rotational degree of freedom (DOF) about a distal rotational axis, the distal joint connecting a distal end of the distal link to the platform. A proximal joint provides at least two rotational DOFs at the proximal end of the distal link. Assemblies of joints and links provide DOFs to each said leg between the proximal joint and the base or ground. The distal rotational axes of the three legs are parallel to one another.
    Type: Grant
    Filed: February 28, 2020
    Date of Patent: April 2, 2024
    Assignee: UNIVERSITÉ LAVAL
    Inventors: Clément Gosselin, Kefei Wen, David Harton, Thierry Laliberte
  • Publication number: 20230033693
    Abstract: A mechanical finger has a base. A proximal phalanx and a distal phalanx is provided with a first epicyclic joint between the base and proximal phalanx, and a second epicyclic joint between the proximal phalanx and the distal phalanx. A distal four-bar mechanism includes the proximal phalanx, the distal four-bar mechanism coupled to the distal phalanx. A nail is optionally provided and has a joint mechanism movably connecting the nail to the distal most one of the phalanges between a stowed position in which a grasping tip of the nail is concealed in the distal most one of the phalanges, and a deployed configuration in which the grasping tip projects out of the distal most one of the phalanges.
    Type: Application
    Filed: January 22, 2021
    Publication date: February 2, 2023
    Inventors: Vincent BABIN, Clément GOSSELIN, Thierry LALIBERTE
  • Publication number: 20220143816
    Abstract: A spatial parallel mechanism comprises a platform. Three or more legs configured for extending from a base or ground to the platform, each leg has a distal link, one or more distal joint providing one rotational degree of freedom (DOF) about a distal rotational axis, the distal joint connecting a distal end of the distal link to the platform. A proximal joint provides at least two rotational DOFs at the proximal end of the distal link. Assemblies of joints and links provide DOFs to each said leg between the proximal joint and the base or ground. The distal rotational axes of the three legs are parallel to one another.
    Type: Application
    Filed: February 28, 2020
    Publication date: May 12, 2022
    Inventors: Clément GOSSELIN, Kefei WEN, David HARTON, Thierry LALIBERTE
  • Patent number: 11318585
    Abstract: An insertion system includes an insertion device including a body defining a longitudinal axis, the body including a wall having an outer surface and an inner surface defining a cylindrical opening through the body, the body having a first body portion and a second body portion formed by separating the body along the longitudinal axis, an effector configured to interface with the insertion device, the effector having an effector body, a first mechanism coupled to the effector body and coupled to the first body portion of the insertion device, and a second mechanism coupled to the effector body and coupled to the second body portion of the insertion device, and an insertion mechanism coupled with the effector body. The insertion mechanism enables a force application at a position offset from the insertion device.
    Type: Grant
    Filed: April 6, 2020
    Date of Patent: May 3, 2022
    Assignee: GM GLOBAL TECHNOLOGY OPERATIONS LLC
    Inventors: Muhammad E. Abdallah, James W. Wells, Clement Gosselin, Thierry Laliberte, Jerome Landure
  • Patent number: 11247332
    Abstract: A jointed mechanism includes a passive pendulum system attached to and suspended from the multi-axis robot. The system includes one or more position sensors configured to measure a joint angle on the pendulum system, at least one arm, and an end-effector attached to a distal end of the pendulum system. A controller implements a method to selectively control motion of the robot in a plurality of control modes. The control modes include a Cooperative Mode and an Autonomous Mode. The controller is configured to detect contact with the end-effector when operating in the Autonomous Mode, and to automatically initiate a control action in response to the contact. The pendulum system may be a parallelogram arrangement.
    Type: Grant
    Filed: January 27, 2020
    Date of Patent: February 15, 2022
    Assignees: GM Global Technology Operations LLC, Universite Laval
    Inventors: Muhammad E. Abdallah, James W. Wells, Pascal Labrecque, Clement Gosselin, Thierry Laliberte
  • Publication number: 20210369478
    Abstract: An apparatus comprises a main arm having links extending from a ground end to an effector end and allowing movement of the effector end from a first position to a second position, the links including at least a base link adapted to be pivotally connected to a base, and a spacing link pivotally mounted to a free end of the base link and extending to the effector end. A first 4-bar parallelogram has pivot joints at its corners and including the base link of the main arm. A second 4-bar parallelogram has pivot joints at its corners and including the spacing link of the main arm and an effector link at the effector end adapted to support an object. A serial interconnection is between the first 4-bar parallelogram and the second 4-bar parallelogram constraining the effector link to maintaining a constant orientation in at least two rotational degrees of freedom relative to the base.
    Type: Application
    Filed: September 5, 2019
    Publication date: December 2, 2021
    Inventors: Alexandre CAMPEAU-LECOURS, Philippe TURGEON, François ROUTHIER, Thierry LALIBERTE
  • Publication number: 20210308839
    Abstract: An insertion system includes an insertion device including a body defining a longitudinal axis, the body including a wall having an outer surface and an inner surface defining a cylindrical opening through the body, the body having a first body portion and a second body portion formed by separating the body along the longitudinal axis, an effector configured to interface with the insertion device, the effector having an effector body, a first mechanism coupled to the effector body and coupled to the first body portion of the insertion device, and a second mechanism coupled to the effector body and coupled to the second body portion of the insertion device, and an insertion mechanism coupled with the effector body. The insertion mechanism enables a force application at a position offset from the insertion device.
    Type: Application
    Filed: April 6, 2020
    Publication date: October 7, 2021
    Applicants: GM GLOBAL TECHNOLOGY OPERATIONS LLC, Université Laval
    Inventors: Muhammad E. Abdallah, James W. Wells, Clement Gosselin, Thierry Laliberte, Jerome Landure
  • Patent number: 10759634
    Abstract: An electromechanical system operates through physical interaction with an operator, and includes a plurality of joints providing multiple degrees of freedom (DOF), including actuated joints and unactuated joints. The unactuated joints are distal with respect to the actuated joints and are in redundant DOF to the actuated joints. The system includes a plurality of actuators each configured to actuate one or more of the actuated joints, and a plurality of sensors each positioned with respect to a respective one of the actuated and unactuated joints. Each sensor is configured to measure corresponding joint data indicative of a position or angle of the respective actuated or unactuated joints. A controller in communication with the sensors receives the measured joint data as feedback signals, generates control signals using the feedback signals, and transmits the control signals to the actuators to thereby control an actuation state of the actuators.
    Type: Grant
    Filed: November 3, 2017
    Date of Patent: September 1, 2020
    Assignees: GM Global Technology Operations LLC, Université Laval
    Inventors: Muhammad E. Abdallah, Clement Gosselin, Thierry Laliberte, Simon Foucault, Pascal Labrecque, James W. Wells, Jerome Landure
  • Patent number: 10626963
    Abstract: An articulated compliance mechanism for use with a support structure includes a carriage and a pair of parallel four-bar linkage arrangements. The arrangements collectively have a first set of links configured to rigidly connect to the support structure, a second set of links rotatably coupled to the carriage a distance from the first set of links, and a third set of links rotatably coupled to and spanning the distance. The compliance mechanism supports and provides the carriage, e.g., a rectangular shaped frame, with a stable equilibrium point using a gravitational restoring force, and provides the carriage with a passive translational degree of freedom along a horizontal axis in response to an input force from an operator. An additional compliance mechanism may be serially connected to provide a passive translational degree of freedom along a vertical axis. A system includes the compliance mechanism and support structure.
    Type: Grant
    Filed: October 3, 2016
    Date of Patent: April 21, 2020
    Assignees: GM Global Technology Operations LLC, Université Laval
    Inventors: Muhammad E. Abdallah, Clément Gosselin, Thierry Laliberte, Simon Foucault, Pascal Labrecque, James W. Wells
  • Publication number: 20180219452
    Abstract: A mechanism comprises a first Halbach cylinder having an inner cavity, the first Halbach cylinder magnetized to produce a first magnetic flux concentrated circumferentially inside the inner cavity. A second Halbach cylinder is concentrically received in the inner cavity of the first Halbach cylinder to concurrently form a rotational joint having a rotational axis. One of the Halbach cylinders is a rotor and the other of the Halbach cylinders is a stator, the second Halbach cylinder magnetized to produce a second magnetic flux concentrated circumferentially outwardly. An output is connected to the rotor to rotate therewith relative to the stator, the output applying a gravity load on the rotor, the gravity load being offset from the rotational axis, whereby the magnetic flux of the first Halbach cylinder and the second Halbach cylinder cooperatively produce a torque against the gravity load caused by the output.
    Type: Application
    Filed: July 28, 2016
    Publication date: August 2, 2018
    Inventors: Julien BOISCLAIR, Pierre-Luc RICHARD, Thierry LALIBERTE, Clément GOSSELIN
  • Publication number: 20180079629
    Abstract: An electromechanical system operates through physical interaction with an operator, and includes a plurality of joints providing multiple degrees of freedom (DOF), including actuated joints and unactuated joints. The unactuated joints are distal with respect to the actuated joints and are in redundant DOF to the actuated joints. The system includes a plurality of actuators each configured to actuate one or more of the actuated joints, and a plurality of sensors each positioned with respect to a respective one of the actuated and unactuated joints. Each sensor is configured to measure corresponding joint data indicative of a position or angle of the respective actuated or unactuated joints. A controller in communication with the sensors receives the measured joint data as feedback signals, generates control signals using the feedback signals, and transmits the control signals to the actuators to thereby control an actuation state of the actuators.
    Type: Application
    Filed: November 3, 2017
    Publication date: March 22, 2018
    Applicants: GM Global Technology Operations LLC, Université Laval
    Inventors: Muhammad E. Abdallah, Clement Gosselin, Thierry Laliberte, Simon Foucault, Pascal Labrecque, James W. Wells, Jerome Landure
  • Patent number: 9850108
    Abstract: A movement device is moved along an X axis and a Y axis by providing a sensor configured to measure angle of rotation of at least one of a first and a second kinematic link about a respective axis of rotation. A force is imparted on the first and second kinematic links such that an angular displacement of the first and second kinematic links about the respective axis of rotation is achieved. The angular displacement of the first and second kinematic links about the respective axis of rotation is determined. The movement device is moved along the X axis and/or the Y axis in response to the determination of the angle of rotation of the first and second kinematic links about the respective axis of rotation until first and second kinematic links are vertical.
    Type: Grant
    Filed: March 15, 2017
    Date of Patent: December 26, 2017
    Assignees: GM Global Technology Operations LLC, Universite Laval
    Inventors: Dalong Gao, Alexandre Lecours, Thierry Laliberte, Simon Foucault, Clement Gosselin, Boris Mayer-St-Onge, Roland J. Menassa, Pierre-Luc Belzile
  • Publication number: 20170183202
    Abstract: A movement device is moved along an X axis and a Y axis by providing a sensor configured to measure angle of rotation of at least one of a first and a second kinematic link about a respective axis of rotation. A force is imparted on the first and second kinematic links such that an angular displacement of the first and second kinematic links about the respective axis of rotation is achieved. The angular displacement of the first and second kinematic links about the respective axis of rotation is determined. The movement device is moved along the X axis and/or the Y axis in response to the determination of the angle of rotation of the first and second kinematic links about the respective axis of rotation until first and second kinematic links are vertical.
    Type: Application
    Filed: March 15, 2017
    Publication date: June 29, 2017
    Applicants: GM GLOBAL TECHNOLOGY OPERATIONS LLC, Univesite Laval
    Inventors: Dalong Gao, Alexandre Lecours, Thierry Laliberte, Simon Foucault, Clement Gosselin, Boris Mayer-St-Onge, Roland J. Menassa, Pierre-Luc Belzile
  • Patent number: 9630815
    Abstract: A movement device is moved along an X axis and a Y axis by providing a sensor configured to measure angle of rotation of at least one of a first and a second kinematic link about a respective axis of rotation. A force is imparted on the first and second kinematic links such that an angular displacement of the first and second kinematic links about the respective axis of rotation is achieved. The angular displacement of the first and second kinematic links about the respective axis of rotation is determined. The movement device is moved along the X axis and/or the Y axis in response to the determination of the angle of rotation of the first and second kinematic links about the respective axis of rotation until first and second kinematic links are vertical.
    Type: Grant
    Filed: October 31, 2012
    Date of Patent: April 25, 2017
    Assignees: GM Global Technology Operations LLC, Universite Laval
    Inventors: Dalong Gao, Alexandre Lecours, Thierry Laliberte, Simon Foucault, Clement Gosselin, Boris Mayer-St-Onge, Roland J. Menassa, Pierre-Luc Belzile
  • Publication number: 20170108098
    Abstract: An articulated compliance mechanism for use with a support structure includes a carriage and a pair of parallel four-bar linkage arrangements. The arrangements collectively have a first set of links configured to rigidly connect to the support structure, a second set of links rotatably coupled to the carriage a distance from the first set of links, and a third set of links rotatably coupled to and spanning the distance. The compliance mechanism supports and provides the carriage, e.g., a rectangular shaped frame, with a stable equilibrium point using a gravitational restoring force, and provides the carriage with a passive translational degree of freedom along a horizontal axis in response to an input force from an operator. An additional compliance mechanism may be serially connected to provide a passive translational degree of freedom along a vertical axis. A system includes the compliance mechanism and support structure.
    Type: Application
    Filed: October 3, 2016
    Publication date: April 20, 2017
    Applicants: GM GLOBAL TECHNOLOGY OPERATIONS LLC, Université Laval
    Inventors: Muhammad E. Abdallah, Clément Gosselin, Thierry Laliberte, Simon Foucault, Pascal Labrecque, James W. Wells
  • Patent number: 9266440
    Abstract: A robotic charging station for charging a battery of an electric vehicle includes a base plate, a riser coupled with the base plate and extending substantially transverse to the base plate, and a robotic arm. The robotic arm extends from the riser and supports an end effector. The end effector includes a plurality of electrical contacts configured to couple with a receptacle disposed on the electric vehicle. The robotic arm is configured to move the end effector in three degrees of motion.
    Type: Grant
    Filed: May 31, 2012
    Date of Patent: February 23, 2016
    Assignees: GM Global Technology Operations LLC, Universite Laval
    Inventors: Dalong Gao, Neil David McKay, Matthew J Reiland, Simon Foucault, Marc-Antoine LaCasse, Thierry Laliberte, Boris Mayer-St-Onge, Alexandre Lecours, Clement Gosselin, David E. Milburn, Linda Y. Harkenrider
  • Patent number: 9085308
    Abstract: A movement system includes a rail, a trolley, and a braking system. The trolley is movably attached to the rail and configured to support the payload. The braking system is operatively attached to the rail. The braking system includes a braking module having a base, operatively attached to the trolley, and a wheel assembly, operatively attached to the base. The wheel assembly has a shaft, a clutch, and a braking wheel. The clutch is rigidly attached to the shaft and configured for rotation with the shaft about the rolling axis. The braking wheel axially surrounds the clutch and is in continuous rolling contact with a surface of the rail. The clutch is configured to selectively allow rotation of the braking wheel relative to the shaft in only one direction of rotation to decelerate movement of the trolley along the rail.
    Type: Grant
    Filed: October 31, 2012
    Date of Patent: July 21, 2015
    Assignees: GM Global Technology Operations LLC, Universite Laval
    Inventors: Thierry Laliberte, Clement Gosselin, Dalong Gao, Marc-Antoine Lacasse, Roland J. Menassa
  • Patent number: 8985354
    Abstract: A movement system includes a bridge crane, a trolley, and a movement device. The movement device includes an attachment portion, a plurality of housings, first and second curved elements, a cable, and a cable angle sensor. The curved elements are pivotally attached to housings and perpendicularly overlap with one another such that a first slot defined in the first curved element is perpendicular to a second slot defined in the second curved element. The first curved element is pivotable about a first axis and the second curved element is configured to pivot about a second axis. The cable extends from the attachment portion and through each of the slots. The cable is pivotable to angularly displace at least one of the curved elements about a respective axis. The cable angle sensor is configured to measure the angular displacement of the at least one of the first and second curved elements.
    Type: Grant
    Filed: October 31, 2012
    Date of Patent: March 24, 2015
    Assignees: GM Global Technology Operations LLC, Univerersite Laval
    Inventors: Alexandre Lecours, Simon Foucault, Thierry Laliberte, Clement Gosselin, Boris Mayer-St-Onge, Dalong Gao, Roland J. Menassa
  • Patent number: 8644980
    Abstract: The cable lift system provides assistance to movement of a flexibly suspended payload actuated by operator input into one or more sensing devices attached to the payload. The sensing device is configured to collect information about the typical push-pull and lift-lower motions of an operator moving the payload horizontally and/or vertically, such that the operator's input to the sensor is intuitive and is provided in a manner which is substantially transparent to the operator. The assist mechanisms included in the system are actuated by a controller processing signals received from the one or more sensing devices on the payload. Movement assistance is provided such that the manual effort required by the operator to overcome the inertia of the payload in a starting or stopping event is substantially relieved, thus minimizing the ergonomic impact of the starting and stopping events on the operator.
    Type: Grant
    Filed: November 30, 2009
    Date of Patent: February 4, 2014
    Assignees: GM Global Technology Operations LLC, Universite Laval
    Inventors: Dalong Gao, Diana Marie Wegner, Roland J. Menassa, Alexandre Lecours, Clement Gosselin, Thierry Laliberte, Simon Foucault, Vincent Duchaine