CA2503551A1

Three-dimensional force and torque converter

Abstract

A three-dimensional force and torque converter unit for measuring an external force or torque applied to the unit and converting it into a signal, whereby the signal may be used to control a system or device incorporating the converter unit. The converter unit includes a controller formed with four spaced apart arms having six or more degrees of constraint. A force or torque may be applied to the tip portions of each of the arms via a gripping means. Sensors are used to measure the deflection of the arms under an applied loading or torque and an output signal is generated.

CA2503551A1, drawing sheet 1
Sheet 1 of 9

Term

Term ended

Projected expiry passed 28 October 2023, 2.9 years ago.

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

18 claims: 16 independent, 2 dependent

  1. 1
    CA 02503551 2005-04-25 WO 2004/037497 PCT/AU2003/001420 - 12 Claims 1. A controller comprising four and only four arms extending from a body portion which is adapted to support the controller, the arms being spaced from one another in three dimensions and the device having six or more degrees of constraint, tip portions of each of the arms engaging in connection means providing restricted relative motion, the connection means being attached to a gripping means which can apply force and/or torque in a three dimensional sense, the controller including response detection means for monitoring responses in each of the four arms to provide an output signal representative or force and/or torque applied through the gripping means.
  2. 2
    A controller as defined in claim 1, and wherein the controller is arranged to control a system with the output signal.
  3. 4
    A controller as defined in any one of the preceding claims, wherein the arms are constrained such that the device has eight degrees of constraint.
  4. 5
    A controller as defined in any one of the preceding claims, wherein the tip of each arm has a portion with a part-spherical profile and is slidable along a cylindrical bore associated with the connection means and rotatable relative to the axis of the bore.
  5. 6
    A controller as defined in any one of the preceding claims, wherein each of the response detection means CA 02503551 2005-04-25 WO 2004/037497 PCT/AU2003/001420 - 13 includes a plurality of optical sensors each of which has an omitter and a detector, the optical sensors being arranged substantially in the same plane and having respective optical axes transverse to the axis of the associated arm.
  6. 7
    A controller as defined in claim 6, incorporating a total of 6 optical sensors disposed in pairs around three of the four arms.
  7. 8
    A computer system comprising a controller including four and only four arms extending from a body portion which is adapted to support the device, the arms being spaced from one another in three dimensions and the device having six or more degrees of constraint, tip portions of each of the arms engaging in connection means providing restricted relative motion, the connection means being attached to a gripping means which can apply force and/or torque in a three dimensional sense, the device including response detection means for monitoring responses in each of the four arms to provide an output signal representative or force and/or torque applied through the gripping means, the output signal being arranged to control the computer system.
  8. 9
    A computer system as defined in claim 8, wherein the arms are arranged in a tetrahedron shaped envelope and are almost equally mutually spaced in a symmetrical sense with a small degree of non-symmetry to provide pre-loading at the connection means.
  9. 10
    A computer system as defined in claim 8, wherein the arms are constrained such that the device has eight degrees of constraint.
  10. 11
    A computer system as defined in claim 11, wherein the tip of each arm has a portion with a part-spherical CA 02503551 2005-04-25 WO 2004/037497 PCT/AU2003/001420 - 14 profile and is slidable along a cylindrical bore associated with the connection means and rotatable relative to the axis of the bore.
  11. 12
    A computer system as defined in claim 8, wherein each of the response detection means includes a plurality of optical sensors which are concentric and disposed on the same plane.
  12. 13
    A computer system as defined in claim 13, incorporating a total of 6 optical sensors disposed in pairs around three of the four arms.
  13. 14
    A controller comprising four and only four arms extending from a body portion which is adapted to support the controller, the arms being spaced from one another in three dimensions and the device having six or more degrees of constraint, tip portions of each of the arms engaging in connection means providing restricted relative motion, the connection means being attached to a gripping means which can apply force and/or torque in a three dimensional sense, the controller including response detection means for monitoring responses in each of the four arms to provide an output signal representative or force and/or torque applied through the gripping means, and wherein the controller is arranged to control a system with the output signal, and wherein the arms are arranged in a tetrahedron shaped envelope and are almost equally mutually spaced in a symmetrical sense with a small degree of non-symmetry to provide pre-loading at the connection means, wherein the arms are constrained such that the device has eight degrees of constraint. CA 02503551 2005-04-25 WO 2004/037497 PCT/AU2003/001420 AMENDED CLAIMS [received by the International Bureau on 23 February 2004 (23.02.04);original claims 1 to 14 replaced by new claims 1 to 18;(5 pages)] 1. A controller comprising a aevice navmg a oody portion and four and only four arms extending from the 5 body portion which is adapted to support the controller, the arms being spaced from one another in three dimensions and the device having six or more degrees of constraint, tip portions of each of the arms engaging in connection means providing restricted relative motion, the connection 10 means being attached to a gripping means which can receive and transmit an applied force and/or torque in a three dimensional sense, the controller including response detection means for monitoring responses in at least three of the four arms to provide an output signal 15 representative of a three-dimensional force and/or a three-dimensional torque applied to the gripping means. 2. A controller as defined in claim 1, wherein the response detection means has means for directly monitoring 20 response in three and only three of the four arms and the device further comprises means for calculating from data representing the monitored response in the three arms the values of a response in the fourth arm. 25 3. A controller as defined in claim 1, and wherein the controller is arranged to control a system with the output signal. 4. A controller as defined in claim 1 or claim 2, 30 wherein the arms are arranged in a tetrahedron shaped envelope and are almost equally mutually spaced in a symmetrical sense with a small degree of non-symmetry to provide pre-loading at the connection means. 35 5. A controller as defined in any one of the preceding claims, wherein the arms are constrained such that the device has eight degrees of constraint. AMENDED SHEET (ARTICLE 19) CA 02503551 2005-04-25 WO 2004/037497 PCT/AU2003/001420 6. A controller as defined in any one of the preceding claims, wherein the tip of each arm has a portion with a part-spherical profile and is slidable along a cylindrical 5 bore associated with the connection means and rotatable relative to the axis of the bore. 7. A controller as defined in any one of the preceding claims, wherein each of the response detection means 10 includes a plurality of optical sensors each of which has an emitter and a detector, the optical sensors being arranged substantially in the same plane and having respective optical axes transverse to the axis of the associated arm. 8. A controller as defined in claim 7, incorporating a total of 6 optical sensors disposed in pairs around three of the four arms. 20 9. A controller as defined in claim 1, and including a total of eight sensors provided in an array so that displacements in an X-Y set of responses for each of the four arms is achieved giving eight readings which can be resolved to give the required output signal. 10. A computer system comprising a controller including four and only four arms extending from a body portion which is adapted to support the device, the arms being spaced from one another in three dimensions and the device 30 having six or more degrees of constraint, tip portions of each of the arms engaging in connection means providing restricted relative motion, the connection means being attached to a gripping means which can receive and transmit an applied force and/or torque in a three 35 dimensional sense, the device including response detection means for monitoring responses in at least three of the four arras to provide an output signal representative of a AMENDED SHEET (ARTICLE 19) CA 02503551 2005-04-25 WO 2004/037497 PCT/AU2003/001420 three-dimensional force and/or a three-dimensional torque to the gripping means, the output signal being arranged to control the computer system. 5 11. A computer system as defined in claim 10, wherein the response detection means has means for directly monitoring response in three and only three of the four arms and the device further comprises means for calculating from data representing the monitored response in the three arms the 10 values of a response in the fourth arm. 12. A computer system as defined in claim 10 or claim 11, wherein the arms are arranged in a tetrahedron shaped envelope and are almost equally mutually spaced in a 15 symmetrical sense with a small degree of non-symmetry to provide pre-loading at the connection means. 13. A computer system as defined in any one of claims 1012, wherein the arms are constrained such that the device 20 has eight degrees of constraint. 14. A computer system as defined in claim 13, wherein the tip of each arm has a portion with a part-spherical profile and is slidable along a cylindrical bore 25 associated with the connection means and rotatable relative to the axis of the bore.
  14. 15
    A computer system as defined in any one of claims 1014, wherein each of the response detection means includes 30 a plurality of optical sensors which are concentric and disposed on the same plane.
  15. 16
    A computer system as defined in claim 15, incorporating a total of 6 optical sensors disposed in 35 pairs around three of the four arms.
  16. 17
    A controller comprising four and only four arms AMENDED SHEET (ARTICLE 19) CA 02503551 2005-04-25 WO 2004/037497 PCT/AU2003/001420 extending from a body portion which is adapted to support the controller, the arms being spaced from one another in three dimensions and the device having six or more degrees of constraint, tip portions of each of the arms engaging 5 in connection means providing restricted relative motion, the connection means being attached to a gripping means which can receive and transmit an applied force and/or torque in a three dimensional sense, the controller including response detection means for monitoring 10 responses in three of the four arms to provide an output signal representative of a three-dimensional force and/or a three-dimensional torque applied to the gripping means and the device further comprising means for calculating from representing the monitored response in the three arms 15 the values of a response in the fourth arm, and wherein the controller is arranged to control a system with the output signal, and wherein the arms are arranged in a tetrahedron shaped envelope and are almost equally mutually spaced in a symmetrical sense with a small degree 20 of non-symmetry to provide pre-loading at the connection means, wherein the arms are constrained such that the device has eight degrees of constraint.
  17. 18
    A controller comprising four and only four arms 25 extending from a body portion which is adapted to support the controller, the arms being spaced from one another in three dimensions and the device having six or more degrees of constraint, tip portions of each of the arms engaging in connection means providing restricted relative motion, 30 the connection means being attached to a gripping means which can receive and transmit an applied force and/or torque in a three dimensional sense, the controller including response detection means for monitoring responses in three of the four arms to provide an output 35 signal representative of a three-dimensional force and/or a three-dimensional torque applied to the gripping means and the device further comprising means for calculating AMENDED SHEET (ARTICLE 19) CA 02503551 2005-04-25 WO 2004/037497 PCT/AU2003/001420 from representing the monitored response in the three arms the values of a response in the fourth arm, and wherein the controller is arranged to control a system with the output signal, and wherein the arms are arranged in a 5 tetrahedron shaped envelope and are almost equally mutually spaced in a symmetrical sense with a small degree of non-symmetry to provide pre-loading at the connection means, wherein the arms are constrained such that the device has eight degrees of constraint. AMENDED SHEET (ARTICLE 19) CA 02503551 2005-04-25 WO 2004/037497 PCT/AU2003/001420 STATEMENT UNDER ARTICLE .19(1) An express basis for all the amendments is contained in the original specification. We refer to page 2 lines 3-15 which most broadly indicates the invention, with the express example referred to at page 3 lines 9-13. More specifical ly page 8 lines 2-7 refer to the illustrated embodiment having three optics sub-assemblies 36 and each of the lower printed circuit boards 32 and page 10 lines 8-22 which includes the statement:'‘Clearly, a device with four pairs of sensors, a pair for each arm, is functional, A device with three pairs of sensors can be used if the fourth 2D force vector eon be calculatedfrom the other three. Finally, page 11 lines 1-4 contain a further disclosure as follows;It is also theoretically possible to have a device with two pairs of sensors 21 on two arms 14 and two single sensors 21, appropriately oriented, on the other two arms 14. “
Independent claims17