Nova Patents
EP2246770A2

Force feedback control knobs

Abstract

A knob controller device comprises: a knob coupled to a grounded surface, said knob rotatable in a rotary degree of freedom about an axis extending through said knob, said knob also moveable in one or more of:- • a transverse direction approximately perpendicular to said axis; • a linear degree of freedom approximately parallel to said axis; a rotational sensor that detects a position of said knob in said rotary degree of freedom; one or more of:- • a transverse sensor operative to detect a position of said knob in said transverse direction; • a linear sensor operative to detect a position of said knob in said linear degree of freedom; and an actuator coupled to said knob and operative to output a force in said rotary degree of freedom about said axis.

EP2246770A2, drawing sheet 1
Sheet 1 of 19

Term

Term ended

Projected expiry passed 24 March 2019, 7.5 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

23 claims: 16 independent, 7 dependent

  1. 1
    A knob controller device comprising:a knob coupled to a grounded surface, said knob rotatable in a rotary degree of freedom about an axis extending through said knob, said knob also moveable in one or more of:- • a transverse direction approximately perpendicular to said axis;• a linear degree of freedom approximately parallel to said axis;a rotational sensor that detects a position of said knob in said rotary degree of freedom;one or more of:- • a transverse sensor operative to detect a position of said knob in said transverse direction;• a linear sensor operative to detect a position of said knob in said linear degree of freedom;and an actuator coupled to said knob and operative to output a force in said rotary degree of freedom about said axis.
  2. 4
    A knob controller device as recited in any one of claims 1 to 3, wherein said knob is moveable in a plurality of transverse directions, and wherein said transverse sensor is operative to detect when said knob is moved in any of said transverse directions.
  3. 7
    A knob controller device as recited in any one of claims 1 to 6, further comprising a microprocessor coupled to said rotational sensor and to said transverse sensor, said microprocessor receiving sensor signals from said sensors and controlling a function of a device in response to said sensor signals.
  4. 9
    A knob controller device as recited in any one of claims 1 to 8, further comprising a microprocessor coupled to said rotational sensor and to said transverse sensor, said microprocessor receiving sensor signals from said sensors and controlling a function of a device in response to said sensor signals, said microprocessor sending force feedback signals to said actuator to control forces output by said actuator.
  5. 10
    A knob controller device as recited in any one of claims1 to 9, further comprising a display, wherein an image on said display is changed in response to manipulation of said knob in said transverse direction.
  6. 11
    A knob controller device as recited in any one of claims 1 to 10, wherein a flexible member is coupled between said knob and said actuator to allow said movement in said transverse direction.
  7. 14
    A knob controller device as recited in any one of claims 1 to 13, further comprising a microprocessor coupled to said rotational sensor and to said linear sensor, said microprocessor receiving sensor signals from said sensors and controlling a function of a device in response to said sensor signals, said microprocessor sending force feedback signals to said actuator to control forces output by said actuator.
  8. 15
    A knob controller device as recited in any one of claims 1 to 14 further comprising a spring member for biasing said knob to a center position in said linear degree of freedom.
  9. 16
    A knob controller device as recited in any one of claims 1 to 15, wherein said linear sensor detects a position of said knob within a detectable continuous range of motion of said knob, and wherein said linear sensor outputs a sensor signal indicative of said position.
  10. 17
    An interface device for interfacing a user's input with a host computer and providing force feedback to said user, said interface device comprising:a user manipulandum contacted and manipulated by a user and moveable in a planar workspace with respect to a ground surface;a manipulandum sensor coupled to said user manipulandum for detecting a position of said user manipulandum in said planar workspace and operative to send a position signal to said host computer indicating a position of said user manipulandum in said workspace;a rotatable wheel coupled to said user manipulandum and rotatable about a wheel axis;a wheel sensor coupled to said wheel and providing a wheel signal to said host computer indicating a rotary position of said wheel;a wheel actuator coupled to said rotatable wheel and operative to apply a computer-modulated force to said rotatable wheel about said wheel axis, wherein said force is modulated as a function of time or wheel position about said wheel axis.
  11. 18
    A handheld force feedback remote control device for providing input to an electronic device located remotely from said remote control device, the remote control device comprising:a wheel rotatably coupled to a housing of said remote control device and rotatable about an axis, said wheel being manipulated by a user;an actuator coupled to said wheel for outputting a computer-modulated force detent on said wheel, said force detent felt by said user, wherein said force detent is provided at a predetermined rotational position of said wheel;and a sensor that senses rotation of said wheel and provides a wheel signal to said electronic device indicating a rotary position of said wheel.
  12. 19
    A force feedback wheel device for providing input to an electronic radio, the wheel device comprising:a wheel rotatably coupled to a housing of said electronic radio and rotatable about an axis, said wheel being manipulated by a user;an actuator coupled to said wheel for outputting a computer-modulated force detent on said wheel, said force detent felt by said user, wherein said force detent is provided at a predetermined user-preferred rotational position of said wheel;and a sensor that senses rotation of said wheel and provides a wheel signal to said electronic device indicating a rotary position of said wheel.
  13. 20
    A method for providing a force feedback mouse wheel on a mouse interface device, said mouse interface device coupled to a host computer, the method comprising:sensing a position of a mouse of said mouse interface device in a planar workspace and sending an indication of said position to a host computer;sensing a rotation of said mouse wheel about an axis of rotation and sending a wheel signal to said host computer indicating a current position of said wheel about said axis;and applying a force to said mouse wheel about said axis using a wheel actuator coupled to said mouse wheel, wherein said force is coordinated with an event occurring in said graphical environment.
  14. 21
    An interface control device including force feedback and providing rate control and position control modes, the interface control device comprising:a knob grasped by a user and movable in a degree of freedom;an actuator coupled to said knob and providing forces on said knob in said degree of freedom;a sensor that detects a position of said knob in said degree of freedom and outputs a sensor signal including information representing said position;a microprocessor coupled to said actuator and to said sensor, said microprocessor controlling said forces provided by said actuator and receiving said sensor signal from said sensor, wherein said microprocessor commands either a position control mode or a rate control mode for said knob, wherein said position control mode controls a value based on a position of said knob in said degree of freedom, and wherein said rate control mode controls a rate of change of said value based on a position of said knob in said degree of freedom, wherein said rate control mode provides a force on said knob using said actuator, said force being applied in a direction opposing a movement of said knob away from an origin position.
  15. 22
    A method for providing detent forces for a force feedback control, the method comprising:outputting a first force for a first detent on a user manipulatable object contacted by a user and moveable in a degree of freedom, said first force being output when said user manipulatable object is moved within a range of said first detent, said first force being output by a electronically-controlled actuator, wherein said first force assists movement of said user manipulatable object toward an origin position of said first detent and wherein said first force resists movement of said user manipulatable object away from said origin position of said first detent;and outputting a second force for a second detent on said user manipulatable object when said user manipulatable object is moved within a range of said second detent, said second force being output by said actuator and said second detent having an origin position different from said origin position of said first detent, wherein said second force assists movement of said user manipulatable object toward an origin position of said second detent and wherein said second force resists movement of said user manipulatable object away from said origin position of said second detent, wherein a portion of said range of said first detent overlaps a portion of said range of said second detent.
  16. 23
    A method for providing detent forces for a force feedback control, the method comprising:defining a periodic wave;using at least a portion of said periodic wave to define a detent force curve, said detent force curve defining a force to be output on a user manipulatable object based on a position of said user manipulatable object in a degree of freedom, said user manipulatable object being contacted and moveable by a user;and using said detent force curve to command said force on said user manipulatable object, said force being output by a electronically-controlled actuator.
Independent claims16