Claims
- 1. A clutch comprising
an output hub on an output frame; an input shaft on an input frame, wherein the input shaft rotates within a bore in the output hub; an input hub on an end of the input shaft; a spring engaging the input hub and the output hub; and a circumferential spring clamp securing the spring to the input hub; wherein the input frame and the output frame are adjacent to one another on a side of the clutch opposite the input hub.
- 2. The clutch of claim 1, wherein the spring further comprises a control tang.
- 3. The clutch of claim 2, further comprising a substantially cylindrical control collar on an outer surface of the spring, wherein the control collar engages the control tang on the spring.
- 4. The clutch of claim 3, wherein the control collar abuts the output frame and comprises a longitudinal slot, and the control tang is carried in the slot.
- 5. The clutch of claim 1, wherein the input frame and the output frame are substantially planar, and a plane of the input frame is substantially parallel to a plane of the output frame.
- 6. The clutch of claim 5, wherein a longitudinal axis of the input shaft is substantially normal to the plane of the input frame.
- 7. The clutch of claim 1, wherein the input shaft rotates in flanged sleeve bearings in the bore of the output hub, and a flange on a bearing resides between the input hub and the output hub.
- 8. The clutch of claim 1, wherein the input shaft comprises a longitudinal keyway.
- 9. The clutch of claim 8, wherein the input hub has an interior surface adjacent the input shaft, and the interior surface of the input hub comprises a notch to engage a key.
- 10. The clutch of claim 8, wherein the input hub further comprises a radial set screw.
- 11. The clutch of claim 1, wherein a first end of the input shaft extends beyond the output hub and the first end of the input shaft has an octagonal cross section.
- 12. The clutch of claim 11, wherein an interior surface of the input hub has an octagonal cross section to engage the first end of the input shaft.
- 13. The clutch of claim 1, wherein the spring clamp comprises a tangential set screw.
- 14. The clutch of claim 1, wherein the output frame further comprises annular arcuate slots, and said arcuate slots engage a set screw on the input frame to limit the extent of relative rotation between the input frame and the output frame.
- 15. A clutch comprising:
an output frame, and a cylindrical output hub on the output frame, wherein the output hub comprises a bore and an outer surface; an input frame, and an input arbor on the input frame, wherein the input arbor and the output hub are concentric, and the input arbor is received in the bore in the output hub and free to rotate therein such that the output frame is adjacent the input frame; an input hub on the input arbor at an end distal the input frame, wherein the input hub is adjacent the output hub and comprises an outer surface; a cylindrical spring engaging the outer surface of the input hub and the outer surface of the output hub, wherein the spring further comprises a control tang; a cylindrical control collar engaging the control tang; and a circumferential spring clamp securing the spring to the input hub.
- 16. A clutch comprising:
a substantially planar output frame, and a cylindrical output hub attached to the output frame, wherein a longitudinal axis of the output hub is substantially normal to the plane of the output frame, and wherein the output hub comprises an interior aperture and an outer surface; a substantially planar input frame, and a cylindrical input arbor attached to the input frame, wherein a longitudinal axis of the input arbor is substantially normal to the plane of the input frame, wherein the input arbor is received in the aperture in the output hub and is free to rotate therein, and the input frame is adjacent the output frame; an input hub attached to an end of the input arbor, wherein the input hub is on a side of the output hub opposite the input frame and the output frame; a cylindrical spring engaging the outer surfaces of the input hub and the output hub, wherein when input frame rotates in a first direction so as to wrap down the spring, a torque is transmitted from the input hub to the output hub, and when the input frame rotates in a second direction opposite the first direction so as to unwrap the spring, the input hub moves freely with respect to the output hub; and a circumferential locking spring clamp, wherein an interior surface of the clamp engages the spring and locks the spring to the input hub.
- 17. The clutch of claim 16, wherein the spring further comprises a control tang, and wherein when said control tang is moved in the second direction, the input hub moves freely with respect to the output hub.
- 18. The clutch of claim 17, further comprising a substantially cylindrical circumferential control collar, wherein an interior surface of the control collar engages the spring, wherein the interior surface of the control collar comprises a longitudinal notch to engage the control tang on the spring.
- 19. The clutch of claim 18, wherein the control collar abuts the output frame.
- 20. The clutch of claim 18, wherein the clamp abuts the control collar.
- 21. The clutch of claim 18, wherein the control collar further comprises a yoke on an outer surface thereof.
- 22. A prosthetic joint apparatus, comprising
(a) a clutch comprising:
an output hub on an output frame; an input shaft on an input frame, wherein the input shaft rotates within a bore in the output hub; an input hub on an end of the input shaft; a spring engaging the input hub and the output hub; and a circumferential spring clamp securing the spring to the input hub; wherein the input frame and the output frame are adjacent one another on a side of the clutch opposite the input hub; (b) a first strut attached to the input frame; and (c) a second strut attached to the output frame.
- 23. The apparatus of claim 22, wherein the spring further comprises a control tang, and the clutch comprises a substantially cylindrical control collar on an outer surface of the spring, wherein the control collar has an interior surface with a longitudinal slot engaging the control tang on the spring.
- 24. The apparatus of claim 23, wherein an exterior surface of the control collar comprises a yoke.
- 25. The apparatus of claim 24, further comprising an electrically actuated device attached to one of the first and second struts, wherein said device comprises an output shaft attached to the yoke on the control collar.
- 26. The apparatus of claim 25, wherein the electrically actuated device is a linear solenoid.
- 27. The apparatus of claim 22, further comprising a first prosthetic member attached to the first strut and a second prosthetic member attached to the second strut.
- 28. The apparatus of claim 27, further comprising contact sensors attached to at least one of the first and second prosthetic members and acted upon by a walking surface, wherein the sensors generate an electrical signal corresponding to the degree of contact between the prosthetic member and the walking surface.
- 29. The apparatus of claim 28, further comprising a kinematic sensor generating an electrical signal based on the relative position and/or movement of the input frame with respect to the output frame.
- 30. The apparatus of claim 25, further comprising electronic circuitry receiving electrical input signals from the contact sensors and the kinematic sensors signals to operate the device.
- 31. An orthotic joint control apparatus, comprising
(a) a clutch comprising:
an output hub on an output frame; an input shaft on an input frame, wherein the input shaft rotates within a bore in the output hub; an input hub on an end of the input shaft; a spring engaging the input hub and the output hub; and a circumferential spring clamp securing the spring to the input hub; wherein the input frame and the output frame are adjacent one another on a side of the clutch opposite the input hub; (b) a first strut attached to the input frame; and (c) a second strut attached to the output frame.
- 32. The apparatus of claim 31, wherein the spring further comprises a control tang, and the clutch comprises a substantially cylindrical control collar on an outer surface of the spring, wherein the control collar has an interior surface with a longitudinal slot engaging the control tang on the spring.
- 33. The apparatus of claim 32, wherein an exterior surface of the control collar comprises a yoke.
- 34. The apparatus of claim 33, further comprising an electrically actuated device attached to one of the first and second struts, wherein said solenoid comprises an output shaft attached to the yoke on the control collar.
- 35. The apparatus of claim 34, wherein the device is a linear solenoid.
- 36. The apparatus of claim 31, further comprising a first orthotic member attached to the first strut and a second orthotic member attached to the second strut.
- 37. The apparatus of claim 35, further comprising contact sensors attached to at least one of the first and second orthotic members and acted upon by a walking surface, wherein the sensors generate an electrical signal corresponding to the degree of contact between the orthotic member and the walking surface.
- 38. The apparatus of claim 37, further comprising a kinematic sensor generating an electrical signal based on the relative position and/or movement of the input frame with respect to the output frame.
- 39. The apparatus of claim 38, further comprising electronic circuitry receiving electrical input signals from the contact sensors and the kinematic sensors, and generating electrical output signals to operate the device.
- 40. A knee-ankle-foot orthotic device, comprising:
(a) a medial thigh strut and a medial shank strut, wherein the medial thigh strut and the medial shank strut are attached at a hinge rotating about a flexion extension axis; (b) a lateral thigh strut and a lateral shank strut, wherein the lateral thigh strut and the lateral shank strut are attached to a wrap spring clutch rotating about the flexion extension axis; (c) a first orthotic member adapted to engage the thigh, wherein a medial side of the first orthotic member is attached to the medial thigh strut and a lateral side of the first orthotic member is attached to the lateral thigh strut; (d) a second orthotic member adapted to engage at least one of the lower limb and foot, wherein a medial side of the second orthotic member is attached to the medial shank strut and a lateral side of the second orthotic member is attached to the lateral shank strut; (e) an electrically actuated device attached to one of the first and second lateral struts, wherein said electrically activated device, when activated, disengages the clutch; (f) contact sensors attached to an underside of the second orthotic member and acted upon by a walking surface, wherein the contact sensors generate an electrical signal corresponding to the degree of contact between the second orthotic member and the surface; (g) a kinematic sensor generating an electrical signal based on the relative position and/or movement of the input frame with respect to the output frame; and (h) an electronic control module, wherein the module comprises a electronic circuitry to receive electrical input signals from the contact sensors and the kinematic sensors, and generate electrical output signals to actuate the electrically actuated device.
- 41. The device of claim 40, wherein the electronic control module further comprises a battery pack.
- 42. The device of claim 41, wherein the battery pack comprises batteries selected from disposable and rechargeable batteries.
- 43. The device of claim 40, wherein the electronic control module is housed in a pouch at the waist of the wearer.
- 44. The device of claim 40, wherein the electronic control module is attached to the orthotic device.
- 45. The device of claim 40, wherein the electronic circuitry in the electronic control module receives manual electrical input and override signals from the wearer of the device and generate electrical output signals to control the electrically activated device.
- 46. The device of claim 40, wherein the clutch is on a side of a knee joint of a wearer of the device.
- 47. The device of claim 40, wherein the clutch controls a knee joint of a wearer of the device.
- 48. A knee-ankle-foot orthotic device, comprising:
(a) a medial thigh strut and a medial shank strut, wherein the medial thigh strut and the medial shank strut are attached at a hinge rotating about a flexion extension axis; (b) a lateral thigh strut and a lateral shank strut, wherein the lateral thigh strut and the lateral shank strut are attached to a clutch, wherein said clutch rotates about the flexion/extension axis, and wherein the clutch comprises:
an output hub on an output frame attached to the lateral shank strut; an input shaft on an input frame attached to the lateral thigh strut, wherein the input shaft rotates within a bore in the output hub; an input hub on an end of the input shaft, wherein the input frame and the output frame are adjacent one another on a side of the clutch opposite the input hub; a spring engaging the input hub and the output hub, wherein the spring comprises a control tang; a substantially cylindrical control collar on an outer surface of the spring, wherein the control collar has an interior surface with a longitudinal slot engaging the control tang on the spring, and an exterior surface of the control collar comprising a yoke; and a circumferential spring clamp securing the spring to the input hub; (c) a first orthotic member adapted to engage the thigh, wherein a medial side of the first orthotic member is attached to the medial thigh strut and a lateral side of the first orthotic member is attached to the lateral thigh strut; (d) a second orthotic member adapted to engage at least one of the lower limb and foot, wherein a medial side of the second orthotic member is attached to the medial shank strut and a lateral side of the second orthotic member is attached to the lateral shank strut; (e) an electrically actuated solenoid attached to one of the first and second lateral struts, wherein said solenoid comprises an output shaft attached to the yoke on the control collar; (f) contact sensors attached to the second orthotic member and acted upon by a walking surface, wherein the contact sensors generate an electrical signal corresponding to the degree of contact between the orthotic member and the surface; (g) a kinematic sensor generating an electrical signal based on the relative position and/or movement of the input frame with respect to the output frame; and (h) an electronic control module, wherein the module comprises electronic circuitry to receive electrical input signals from the contact sensors and the kinematic sensors, and generate electrical output signals to operate the solenoid.
- 49. A process for electromechanically controlling the knee joint, comprising:
(a) providing a prosthetic device comprising a thigh strut and a shank strut, wherein the thigh strut and the shank strut are attached to a wrap spring clutch rotating about a flexion extension axis; a first prosthetic member adapted to engage the thigh, wherein the first prosthetic member is attached to the thigh strut, and a second prosthetic member, wherein the second prosthetic member is attached to the shank strut; and activating the clutch using electrical input signals generated by at least one contact sensor on the second prosthetic member and electrical input signals generated by a kinematic sensor corresponding to the relative position and/or movement of the first and second prosthetic members.
- 50. A process for electromechanically controlling a knee joint in an orthotic device, comprising:
(a) providing a orthotic device comprising a thigh strut and a shank strut, wherein the thigh strut and the shank strut are attached to a wrap spring clutch rotating about a flexion extension axis; a first orthotic member adapted to engage the thigh, wherein the first orthotic member is attached to the thigh strut, and a second orthotic member adapted to engage at least one of the lower limb and foot, wherein a the second orthotic member is attached to the shank strut; activating the clutch using electrical input signals generated by at least one contact sensor on the second orthotic member and electrical input signals generated by a kinematic sensor corresponding to the relative position and/or movement of the first and second orthotic members.
- 51. A process for electromechanically controlling a joint in an orthotic device, comprising:
(a) providing a orthotic device comprising a first strut and a second strut, wherein wherein the first strut and the second strut are attached to a wrap spring clutch rotating about a flexion extension axis; a first orthotic member attached to the first strut and a second orthotic member attached to the second strut; activating the clutch using electrical input signals generated by at least one contact sensor on the second orthotic member and electrical input signals generated by a kinematic sensor corresponding to the relative position and/or movement of the first and second orthotic members.
- 52. A process for electromechanical control of a human knee joint, comprising:
(a) providing an orthotic device comprising a medial thigh strut and a medial shank strut, wherein the medial thigh strut and the medial shank strut are attached at a hinge rotating about an flexion extension axis; and a lateral thigh strut and a lateral shank strut, wherein the lateral thigh strut and the lateral shank strut are attached to a wrap spring clutch rotating about the flexion extension axis; a first orthotic member adapted to engage the thigh, wherein a medial side of the first orthotic member is attached to the medial thigh strut and a lateral side of the first orthotic member is attached to the lateral thigh strut and a second orthotic member adapted to engage at least one of the lower limb and foot, wherein a medial side of the second orthotic member is attached to the medial shank strut and a lateral side of the second orthotic member is attached to the lateral shank strut; (b) providing an electrically actuated device attached to one of the first and second lateral struts, wherein said device, when activated, disengages the clutch; (c) generating electrical signals with contact sensors attached to the second orthotic member and acted upon by a walking surface, wherein the contact sensors generate an electrical signal corresponding to the degree of contact between the second orthotic member and the surface; (g) generating electrical signals with a kinematic sensor corresponding to the relative position and/or movement of the first member with respect to the second member; and (h) receiving electrical input signals from the contact sensors and the kinematic sensors in an electronic circuit, wherein the circuit generates electrical output signals to operate the device.
STATEMENT REGARDING FEDERALLY SPONSORED RESEARCH AND DEVELOPMENT
[0001] The U.S. Government has a paid-up license in this invention and the right in limited circumstances to require the patent owner to license others on reasonable terms as provided for by the terms of contract number R01HD30150 awarded by the National Institute of Health (NIH).
Divisions (1)
|
Number |
Date |
Country |
Parent |
09545420 |
Apr 2000 |
US |
Child |
10288886 |
Nov 2002 |
US |