Patents by Inventor Stefan Battlogg

Stefan Battlogg 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: 20230236680
    Abstract: The invention relates to a control device with a stator unit fastened via a stator connection to a support body, and a rotor unit rotatable about the stator unit. The rotatability of the rotor unit about the stator unit can be influenced in a targeted manner by means of a braking device. For its rotatability about the stator unit, the rotor unit is mounted on the support body by means of at least one bearing unit of a bearing device, so that a force acting on the rotor unit from radially outside can be diverted via the bearing unit into the support body, bypassing the stator unit and the stator connection.
    Type: Application
    Filed: May 6, 2021
    Publication date: July 27, 2023
    Inventor: Stefan Battlogg
  • Patent number: 11702879
    Abstract: A method for controlling door motions of a controllable door of a motor vehicle, wherein a control device and a sensor arrangement are assigned to the door, and the door includes a controllable motion influencing device. A motion of a door wing of the door can be controlled and influenced by the motion influencing device to alternate between a closed position and an open position. The sensor arrangement includes a surround sensor and monitors the surroundings of the door. The control device captures the signals from the sensor arrangement and evaluates the movement of an object in the surroundings of the door relative to the door and actively moves the door wing of the door, to prevent a collision with the object or to reduce its effects.
    Type: Grant
    Filed: June 4, 2020
    Date of Patent: July 18, 2023
    Assignee: INVENTUS Engineering GmbH
    Inventor: Stefan Battlogg
  • Patent number: 11634935
    Abstract: A door component has a controllable rotary damper and two connector units which can be moved relative to one another. One of the two connector units can be connected to a load-bearing construction and the other one can be connected to a movable door device of a vehicle, in order to damp a movement of the door device between a closed position and an open position in a controlled manner. Two mutually engaged spindle units are arranged between the two connector units, one spindle unit being a threaded spindle and the other being a spindle nut. A first spindle unit is fastened rotatably on a coupling rod connected to one of the connector units. A magnetorheological transmission device is arranged between the coupling rod and the first spindle unit, in order to brake a rotational movement of the first spindle unit as required.
    Type: Grant
    Filed: April 20, 2021
    Date of Patent: April 25, 2023
    Assignee: INVENTUS Engineering GmbH
    Inventor: Stefan Battlogg
  • Patent number: 11634939
    Abstract: A method and a device for controlling door movements of a controllable door of a motor vehicle. A control device and a sensor arrangement are assigned to the door and the door has a controllable motion influencing device. A motion of a door wing of the door is controlled and influenced by the motion influencing device to alternate between a closed position and an open position. The motion influencing device includes a driving device with a drive motor. The sensor arrangement includes a current sensor which detects the motor current of the drive motor. While closing the door wing the control device detects an obstacle when the door wing is not yet closed and the power input of the drive motor rises above a predetermined threshold. Then the control device stops the drive motor.
    Type: Grant
    Filed: June 4, 2020
    Date of Patent: April 25, 2023
    Assignee: INVENTUS Engineering GmbH
    Inventor: Stefan Battlogg
  • Publication number: 20230102886
    Abstract: A magnetorheological braking device with a fixed mount and with two braking components. One of the two braking components is non-rotatably affixed to the mount and the two braking components are continuously rotatable relative to one another. A first braking component extends in the axial direction. The second braking component has a hollow shell part that extends around the first braking component. A peripheral gap is filled with a magnetorheological medium. The first braking component has an electric coil and a core made from a magnetically conductive material. Magnetic field concentrators on the core and/or magnetic field concentrators on the shell part protrude into the gap, which results in a peripheral gap with a variable gap height. A magnetic field of the electric coil runs through the core and the magnetic field concentrators and through the gap into a wall of the shell part.
    Type: Application
    Filed: March 8, 2021
    Publication date: March 30, 2023
    Inventor: Stefan Battlogg
  • Publication number: 20230087434
    Abstract: A computer mouse for carrying out inputs into a computer unit that can be coupled to the mouse. The mouse has a mouse body that can be at least partially gripped and a mouse wheel that is rotatably supported on a carrying structure of the mouse body. The mouse wheel is able to be rotated by a finger to carry out an input. The mouse wheel has at least two actuation zones. A movement of the mouse wheel can be damped by a controllable brake device in a targeted manner in dependence on the actuation zone from which the mouse wheel is actuated and/or in dependence on which actuation zone has been previously activated.
    Type: Application
    Filed: February 15, 2021
    Publication date: March 23, 2023
    Inventor: Stefan Battlogg
  • Publication number: 20230080681
    Abstract: A sleeve or case for a mobile device, such as a smartphone or tablet or other types of hand-held device or mobile smart device, has a sleeve part for at least partially enclosing the mobile device and an input device arranged in the sleeve part for controlling the mobile device which can be received in the sleeve part. The input device includes a movable control element and a magnetorheological brake. Any movement of the control element can be selectively damped by way of the magnetorheological brake.
    Type: Application
    Filed: February 15, 2021
    Publication date: March 16, 2023
    Inventor: Stefan Battlogg
  • Patent number: 11603698
    Abstract: A method for controlling the movements of a controllable door of a motor vehicle that has two or more doors with movable door wings. One door is a main door and at least one other door is a secondary door. A control device and a sensor arrangement are associated to the doors. The secondary door includes a controllable motion influencing device, wherein a motion of the door wing of the secondary door can be at least partially controlled and influenced by way of the motion influencing device between a closed position and an open position. The motion influencing device brakes or arrests a door wing of the secondary door in the closed position for a predetermined time period after the main door has been opened, and/or in dependence on an identified situation.
    Type: Grant
    Filed: June 4, 2020
    Date of Patent: March 14, 2023
    Assignee: INVENTUS Engineering GmbH
    Inventor: Stefan Battlogg
  • Publication number: 20230036212
    Abstract: A magnetorheological braking device for setting operating states by way of rotational movements has an axle unit and a rotary body rotatable about the axle unit. The rotatability of the rotary body can be decelerated and/or blocked by a magnetorheological braking apparatus. A sensor apparatus has a magnetic ring unit and a magnetic field sensor for sensing a magnetic field of the magnetic ring unit. A shielding apparatus at least partially shields the sensor apparatus from a magnetic field of a coil unit of the braking apparatus. The shielding apparatus includes a shielding body surrounding the magnetic ring unit and a separating unit between the shielding body and the magnetic ring unit, and having a magnetic conductivity multiple times lower than the shielding body. A holding apparatus connects the shielding apparatus to the rotary body in an at least partially rotationally fixed manner.
    Type: Application
    Filed: November 18, 2020
    Publication date: February 2, 2023
    Inventor: Stefan Battlogg
  • Publication number: 20230031876
    Abstract: An apparatus for carrying out inputs in an input capturing unit that can be coupled to the apparatus. An operating device has a receiving part and an operating element that is rotatably mounted on the receiving part. The operating element can be rotated by a finger to effect an input. A torque for the rotation of the control element can be adjusted by way of a controllable braking device. In addition, the control element has at least two actuating zones. The resistance to movement for the movability of the operating element can be adjusted depending on from which actuation zone the operating element is actuated and/or which actuation zone was previously activated.
    Type: Application
    Filed: February 15, 2021
    Publication date: February 2, 2023
    Inventor: Stefan Battlogg
  • Publication number: 20230029016
    Abstract: A magnetorheological braking device with a fixed holder and a first and second braking component. One of the braking components is connected to the holder and does not rotate relative thereto. The two braking components are continuously rotatable relative to one another. The first braking component extends axially, and the second braking component has a hollow shell part extending around the first braking component. A peripheral gap, filled with a magnetorheological medium, is formed between the first and second braking component. The first braking component has an electric coil and a magnetically conductive core extending axially. Magnetic field concentrators, on the core and/or the shell part, protrude into the gap, creating variable gap height. The electric coil is wound around a section of the core. A magnetic field of the electric coil runs through the core, magnetic field concentrators, and the gap into a wall of the shell part.
    Type: Application
    Filed: December 18, 2020
    Publication date: January 26, 2023
    Inventor: Stefan Battlogg
  • Publication number: 20230003276
    Abstract: A device component has a magnetorheological brake device with a static holder and with two brake components. A first brake component is rotationally fixedly to the holder and extends in an axial direction. A second brake component has a hollow, rotary part which is rotatable about the first brake component. An encircling gap between the first and second brake components is filled with a magnetorheological medium. The first brake component has a core of magnetically conductive material which extends in the axial direction. An electrical coil is wound axially around the core and spans a coil plane. A magnetic field of the coil extends transversely through the first brake component. A maximum outer diameter of the electrical coil in a radial direction within the coil plane is greater than a minimum outer diameter of the core in a radial direction transversely to the coil plane.
    Type: Application
    Filed: December 18, 2020
    Publication date: January 5, 2023
    Inventor: Stefan Battlogg
  • Publication number: 20220413627
    Abstract: A method for operating an input device. An input element of the input device is manually operated to perform an input into a computer device operatively connected to the input device. Mobility of the input element can be selectively delayed, blocked, and enabled by a controllable magneto-rheological braking device. The mobility of the input element is selectively adjusted by the computer device at least as a function of at least one input condition stored in the computer device. The input device may be a computer mouse.
    Type: Application
    Filed: December 18, 2020
    Publication date: December 29, 2022
    Inventor: Stefan Battlogg
  • Publication number: 20220412416
    Abstract: A device component has a magnetorheological braking apparatus with a stationary holder and at least two brake components. One of the two brake components is connected to the holder for conjoint rotation and extends in the axial direction. The two brake components can be rotated relative to each other. The second brake component has a hollow sleeve part and surrounds the first brake component. A closed chamber is formed between the brake components. The second brake component is rotatably accommodated on the first brake component at a first end of the closed chamber. The closed chamber is substantially filled with a magnetorheological medium. A magnetic-field generator forms a magnetic field to influence the medium in the closed chamber. The second brake component is axially slidable on the first brake component to change a volume of the closed chamber to compensate for temperature-related and/or leakage-related volume changes.
    Type: Application
    Filed: December 18, 2020
    Publication date: December 29, 2022
    Inventor: Stefan Battlogg
  • Publication number: 20220412147
    Abstract: A method of controlling the movements of at least one controllable door of a motor vehicle and a motor vehicle component. A control device and a sensor arrangement are assigned to the door, and the door has a controllable motion influencing device. A motion of a door wing of the door can be controlled and influenced by way of the motion influencing device in between a closed position and an open position. The sensor arrangement includes a distance sensor in the movable door wing that captures distance data during the motion, and obtains from the distance data captured with the distance sensor in different angular positions, the position of at least one object in the surrounding area of the door wing, by way of triangulation.
    Type: Application
    Filed: June 4, 2020
    Publication date: December 29, 2022
    Inventor: STEFAN BATTLOGG
  • Publication number: 20220403897
    Abstract: A magnetorheological brake device for adjusting operating states by way of rotational movements includes an axle unit and a rotary body that can be rotated relative to the axle unit. A torque for the rotation of the rotary body can be varied in a targeted manner by a magnetorheological brake. A sensor device functions to detect a rotational position of the rotary body and includes a magnet ring unit and a magnet field sensor rotationally fixed to the axle unit and arranged radially and/or axially next to the magnet ring unit. The magnet field sensor is also arranged at least partially within the axle unit.
    Type: Application
    Filed: October 31, 2020
    Publication date: December 22, 2022
    Inventor: Stefan Battlogg
  • Patent number: 11530568
    Abstract: A method for controlling door movements of a controllable door of a motor vehicle, and a motor vehicle component. A control device and a sensor arrangement are attributed to the door. The door has a controllable motion influencing device, wherein a motion of a door wing of the door can be controlled and influenced by way of the motion influencing device to alternate between a closed position and an open position. The control device obtains position data which are representative of the geographic position of the motor vehicle and the control device controls movements of the door wing in dependence on the position data.
    Type: Grant
    Filed: June 4, 2020
    Date of Patent: December 20, 2022
    Assignee: INVENTUS Engineering GmbH
    Inventor: Stefan Battlogg
  • Publication number: 20220364407
    Abstract: A method and a device for controlling door movements of a controllable door of a motor vehicle. A control device and a sensor arrangement are assigned to the door and the door has a controllable motion influencing device. A motion of a door wing of the door is controlled and influenced by the motion influencing device to alternate between a closed position and an open position. The motion influencing device includes a driving device with a drive motor. The sensor arrangement includes a current sensor which detects the motor current of the drive motor. While closing the door wing the control device detects an obstacle when the door wing is not yet closed and the power input of the drive motor rises above a predetermined threshold. Then the control device stops the drive motor.
    Type: Application
    Filed: June 4, 2020
    Publication date: November 17, 2022
    Inventor: STEFAN BATTLOGG
  • Patent number: 11439521
    Abstract: A prosthesis device has a rotary damper and a displacing device with a magnetorheological fluid in a damper volume of a housing. Two partition units divide the damper volume into two or more variable chambers. The partition units include a partition wall connected with the housing and a partition wall connected with a damper shaft. Radial gaps are formed in the radial direction between the partition wall on the housing and the damper shaft, and between the partition wall on the damper shaft and the housing. An axial gap is formed in the axial direction between the partition unit, the damper shaft and the housing. The magnetic field of the magnetic field source passes through at least two of the gaps.
    Type: Grant
    Filed: February 26, 2018
    Date of Patent: September 13, 2022
    Assignee: INVENTUS Engineering GmbH
    Inventor: Stefan Battlogg
  • Publication number: 20220283602
    Abstract: An input apparatus, in particular a joystick, has an operating device, a magnetorheological braking device, and a control device for actuating the braking device. The operating device has a support and an operating lever that is pivotable about at least one pivot axis. A sensor senses a pivot angle of the operating lever. The braking device is coupled to the pivot axis in order to damp, in a controlled manner by way of the control device, a pivot movement of the operating lever. The control device actuates the braking device depending on a control command and converts the control command into a haptic signal, preferably a defined sequence of deceleration torques, which can be perceived on the operating lever. A user, as a result of an input made, can receive haptic feedback (so-called force feedback).
    Type: Application
    Filed: August 5, 2020
    Publication date: September 8, 2022
    Inventor: Stefan Battlogg