IP Library Granted Patent US 10,001,804
Granted Patent B2
US 10,001,804 · App. 12/228,260 · Granted Jun 19, 2018

Force-feedback device and method

Inventors: Francois Conti (Menlo Park, CA); Sebastien Grange (Sion, CH); Patrick Helmer (Preverenges, CH); Patrice Rouiller (Trelex, CH)
Assignee: FORCE DIMENSION S.A.R.L.
G05G9/047G05G5/03G05G2009/04766
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Quick Facts
Patent No.
US 10,001,804
App. No.
12/228,260
Granted
Jun 19, 2018
Kind
B2
Abstract

A force-feedback device comprising a first member; a first kinematics bond being coupled with said first member; said first kinematics bond being constructed to provide at least one degree of freedom for movements of said first member; said first kinematics bond comprising a braking device being constructed to constrain movements of the said first member in at least one of said at least one degree of freedom; and a energy storing/release device being constructed to store energy in response to a movement of said first member in at least one of said at least one degree of freedom constrained by said braking device. A method of providing force-feedback including constraining a movement of a member of a haptic device in at least one degree of freedom; moving the member, by an externally applied force, in at least one of the at least one constraint degree of freedom; storing energy generated by the moving of the member; determining a force required to move the member in at least one of the at least one constraint degree of freedom; releasing at least a portion of the stored energy to generate at least a portion of the required force and transmitting the at least a portion of the required force to the member.

Claims (26)

1. A force-feedback apparatus for a haptic device, comprising:

a first member;

a first kinematics bond being coupled with said first member;

a second member;

a brake controller;

said first kinematics bond being constructed to provide at least one degree of freedom for movements of said first member in relation to said second member;

said first kinematics bond comprising

a braking device being controlled by said brake controller and constructed to constrain, by braking action, movements of the said first member in at least one of said at least one degree of freedom, wherein

the braking device is controlled to assume a released state, in which the braking device provides no braking action to constrain movements of the said first member in at least one of said at least one degree of freedom, and

an at least partially actuated state, in which the braking device provides braking action constraining movements of the said first member in at least one of said at least one degree of freedom;

a energy storing/release device being operatively coupled to said braking device and constructed to store energy in an amount which is a function of movement of said first member and said second member in relation to each other in at least one of said at least one degree of freedom, wherein

said energy storing/release device stores energy in an amount which is a function of movement of said first member and said second member in relation to each other in at least one of said at least one degree of freedom in the case said braking device is in said an at least partially actuated state and

does not store energy in an amount which is a function of movement of said first member and said second member in relation to each other in at least one of said at least one degree of freedom in the case said braking device is in said release state; and

an actuator actuation device being constructed to actuate, in dependence from a determined relative displacement between said first member and said second member, a movement of said first member in at least one of said at least one degree of freedom for said first member.

2. The apparatus of claim 1 , wherein said energy storing/release device is constructed to release, in dependence from the determined relative displacement between said first member and said second member, stored energy for actuating a movement of the said first member in at least one of said at least one degree of freedom for said first member.

3. The apparatus of claim 1 , wherein said energy storing/release device is constructed to release, in dependence from the determined relative displacement between said first member and said second member, stored energy for actuating a movement of said first member in at least one of said at least one degree of freedom for said first member.

4. The apparatus of claim 1 , wherein said first member is an output member or an input member.

5. The apparatus of claim 1 , wherein

said second member has a first end and a second end, and said first kinematics bond is coupled with said first end, and further comprising a second kinematics bond being coupled with said second end and a third member, said second kinematics bond being constructed to provide at least one degree of freedom for movements of said third member in relation to said second member; and

said second kinematics bond comprises a braking device being constructed to constrain movements of the said second member in at least one of said at least one degree of freedom for said third member, and an energy storing/release device being constructed to store energy in response to a movement of said second member and said third member in relation to each other in at least one of said at least one degree of freedom for said third member after being constrained by said braking device of said second kinematics bond.

6. The apparatus of claim 1 , wherein said braking device includes at least one selected from a clutch, a brake, an electromagnetic brake, a magnetic particle brake, a linear eddy current brake, and a circular eddy current brake.

7. The apparatus of claim 1 , wherein the energy storing/release device includes at least one selected from a spring; a cable; a wire; a string; a tendon; a band; a deformable solid state hinge; a deformable beam; a deformable bar; a deformable membrane; and an elastic constraining element.

8. The apparatus of claim 1 , wherein the actuation device includes at least one selected from a rotative actuator, a linear actuator, an electrical DC motor, an electrical brushless motor, a piezo-electrical actuator, a stick and slip actuator, an inertial drive actuator, an impact drive actuator, an ultra-sound actuator, a voice-coil actuator, a moving magnet actuator, a hydraulic actuator, a pneumatic actuator, a direct drive actuator, a transmission stage, gears, a timing belt, a cable, a band, a screw drive, an elastic constraining element, an artificial muscle actuator, and a polymer actuator.

9. A haptic device comprising the force-feedback apparatus of claim 1 .

10. The apparatus of claim 1 , wherein said energy storing/release device is constructed to provide at least one of a torque feedback and force feedback to said first member, said feedback being a function of the energy being stored by said energy storing/release device.

11. The apparatus of claim 1 , wherein said first kinematics bond comprises at least one sensor device including at least one position sensor, said at least one sensor device being adapted to determine energy stored by said energy storing/release device by determining a relative displacement between said braking device and said second member.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 25, 2018
From: FORCE DIMENSION S.A.R.L.
To: FORCE DIMENSION TECHNOLOGIES SARL
Reel/Frame 045904/0495 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 27, 2009
From: CONTI, FRANCOIS; GRANGE, SEBASTIEN; HELMER, PATRICK; ROUILLER, PATRICE
To: FORCE DIMENSION S.A.R.L.
Reel/Frame 022161/0249 →
Continuity (1)
Related Publication 20100032255A1 · Feb 11, 2010