Claims
- 1. A toy comprising:a body having a movable body appendage; a first and second motor each including a rotatable motor output operatively connected to the movable body appendage; and a lockout subsystem configured to move between two positions, a first position blocking operative connection of the first motor to the movable body appendage, and a second position blocking operative connection of the second motor to the movable body appendage.
- 2. The toy of claim 1, wherein the lockout subsystem comprises:a first linkage connecting the rotatable motor output of the first motor to the body appendage and configured to drive a first movement of the body appendage; a second linkage connecting the rotatable motor output of the second motor to the body appendage and configured to drive a second movement of the body appendage which is opposed to the first movement; and a lockout mechanism configured to selectively limit one of the first movement of the body appendage and the second movement of the body appendage.
- 3. The toy of claim 2, wherein the first linkage includes a first contact region configured to engage the lockout mechanism and the second linkage includes a second contact region configured to engage the lockout mechanism.
- 4. The toy of claim 3, wherein the lockout mechanism is interposed the first and second linkage contact regions.
- 5. The toy of claim 4, wherein the lockout mechanism includes a shuttlecock having:at least one surface on a first end positioned to engage the first contact region; and at least one surface on a second end positioned to engage the second contact region.
- 6. The toy of claim 5, wherein the shuttlecock moves between two positions, a first position blocking the movement of the first linkage and a second position blocking the movement of the second linkage.
- 7. The toy of claim 6, wherein the at least one surface on the first end is angled to enable the first contact region to slide the shuttlecock from the first position to the second position when the first contact region engages the shuttlecock and the at least one surface on the second end is angled to enable the second contact region to slide the shuttlecock from the second position to the first position when the second contact region engages the shuttlecock.
- 8. The toy of claim 7, wherein the shuttlecock moves to the first position upon engagement of the second contact region with the at least one surface on the second end of the shuttlecock.
- 9. The toy of claim 7, wherein the shuttlecock moves to the second position upon engagement of the first contact region with the at least one surface on the first end of the shuttlecock.
- 10. The toy of claim 1, wherein the lockout subsystem comprises:a first drive gear configured to drive a first movement in the movable body appendage and to include a first contact region that travels along a first path; a second drive gear configured to drive a second movement in the movable body appendage and to include a second contact region that travels along a second path; and a lockout mechanism interposed the first and second drive gears, and configured: to be engaged by the first contact region and to respond by moving to extend over a portion of the second drive gear obstructing the travel of the second contact region along the second path while the first contact region engages the lockout mechanism, thereby limiting the rotation of the second drive gear; and to be engaged by the second contact region and to respond by moving to extend over a portion of the first drive gear obstructing the travel of the first contact region along the first path while the second contact region engages the lockout mechanism, thereby limiting the rotation of the first drive gear.
- 11. The toy of claim 10, wherein the lockout mechanism includes a shuttlecock having:at least one surface on a first end positioned to engage the first contact region; and at least one surface on a second end positioned to engage the second contact region.
- 12. The toy of claim 10, wherein the shuttlecock includes:a first end having a first clockwise surface configured to engage the first contact region as the first drive gear rotates clockwise and a first counterclockwise surface configured to engage the first contact region as the first drive gear rotates counterclockwise; and a second end having a second clockwise surface configured to engage the second contact region as the second drive gear rotates clockwise and a second counterclockwise surface configured to engage the second contact region as the second drive gear rotates counterclockwise.
- 13. A toy comprising:a body having a movable appendage; a gear assembly configured to drive movement in the movable appendage and having a first drive gear with a first contact region configured to travel along a first path and a second drive gear with a second contact region configured to travel along a second path; a motor assembly including a first motor having a first motor output and a second motor having a second motor output, wherein the first drive gear is mounted on the first motor output and the second drive gear is mounted on the second motor output and wherein the first and second motor outputs are positioned to selectively drive opposed movement in the appendage; and a lockout mechanism interposed the first and second drive gears for engagement with the contact region of each of the drive gears, wherein the lockout mechanism is configured to be moved by the first contact region when the second contact region is not engaged by the lockout mechanism, and to block movement of the first contact region when the second contact region is engaged by the lockout mechanism.
- 14. The toy of claim 13, wherein the movable appendage is a head.
- 15. The toy of claim 14, wherein the first drive gear and the second drive gear each have a perimeter that is circular.
- 16. The toy of claim 15, wherein the first drive gear and the second drive gear each include a toothed region positioned along a portion of the perimeter of each of the first and second drive gears.
- 17. The toy of claim 15, wherein the first and second contact regions of the first and second drive gears extend axially from each drive gear and are positioned along a portion of the perimeter of that drive gear.
- 18. The toy of claim 15, wherein the lockout mechanism includes a shuttlecock having surfaces configured to interact with the contact regions of each of the drive gears.
- 19. The toy of claim 18, wherein the shuttlecock surfaces include a pair of clockwise surfaces that interact with the contact regions when the drive gears are rotating clockwise and wherein the shuttlecock surfaces include a pair of counterclockwise surfaces that interact with the contact regions when the drive gears are rotating counterclockwise.
- 20. A toy comprising:a body having a movable appendage; a gear assembly configured to drive the motion of the movable appendage, wherein the gear assembly includes at least two independent drive gears configured to selectively drive the movable appendage in opposed directions; and a lockout mechanism configured to limit drive motion of the independent drive gears preventing the drive gears from driving the movable appendage in opposed directions at the same time, wherein: the lockout mechanism includes a shuttlecock that is moveable to a first position in which the shuttlecock prevents a first of the two independent drive gears from moving through a first predefined angular sweep; and the shuttlecock is moveable to a second position in which the shuttlecock prevents a second of the two drive gears from moving through a second predefined angular sweep.
- 21. The toy of claim 20, wherein each of the two independent drive gears include a toothed region extending along a portion of each drive gear, and wherein the toothed region of each drive gear is configured to drive the moveable appendage as each drive gear rotates through a predefined angular sweep.
- 22. The toy of claim 21, wherein each of the two independent drive gears includes a lockout ridge positioned to engage the shuttlecock when the toothed region of each drive gear begins to rotate through the predefined angular sweep of that drive gear.
- 23. The toy of claim 22, wherein the shuttlecock has two positions, a first position in which the lockout ridge of a first of the two independent drive gears engages the shuttlecock as that gear rotates through the predefined angular sweep of that drive gear, and a second position in which the lockout ridge of a second of the two independent drive gears engages the shuttlecock as the second of the two independent drive gears rotates through the predefined angular sweep of that second drive gear.
- 24. The toy of claim 21, wherein the movable appendage driven by the independent drive gears includes a head.
- 25. The toy of claim 14, wherein the first drive gear and the second drive gear each have a perimeter that includes an arcuate portion.
- 26. A toy comprising:a body having a movable body appendage; a first and second motor each including a rotatable motor output operatively connected to the movable body appendage; and a lockout subsystem configured to prevent the movable body appendage from being driven in opposed directions, wherein the lockout subsystem comprises: a first drive gear configured to drive a first movement in the movable body appendage and to include a first contact region that travels along a first path; a second drive gear configured to drive a second movement in the movable body appendage and to include a second contact region that travels along a second path; and a lockout mechanism interposed the first and second drive gears, and configured: to be engaged by the first contact region and to respond by moving to extend over a portion of the second drive gear obstructing the travel of the second contact region along the second path while the first contact region engages the lockout mechanism, thereby limiting the rotation of the second drive gear; and to be engaged by the second contact region and to respond by moving to extend over a portion of the first drive gear obstructing the travel of the first contact region along the first path while the second contact region engages the lockout mechanism, thereby limiting the rotation of the first drive gear.
- 27. The toy of claim 26, wherein the lockout mechanism includes a shuttlecock having:at least one surface on a first end positioned to engage the first contact region; and at least one surface on a second end positioned to engage the second contact region.
- 28. The toy of claim 26, wherein the shuttlecock includes:a first end having a first clockwise surface configured to engage the first contact region as the first drive gear rotates clockwise and a first counterclockwise surface configured to engage the first contact region as the first drive gear rotates counterclockwise; and a second end having a second clockwise surface configured to engage the second contact region as the second drive gear rotates clockwise and a second counterclockwise surface configured to engage the second contact region as the second drive gear rotates counterclockwise.
- 29. A toy comprising:a body having a movable body appendage; a fist motor including a rotatable motor output operatively connected to the movable body appendage through a first drive gear having a first axis of rotation; a second motor including a rotatable motor output operatively connected to the movable body appendage through a second drive gear having a second axis of rotation; a lockout subsystem configured to prevent the movable body appendage from being driven in opposed directions, wherein the lockout subsystem includes a shuttlecock interposed the first and second drive gears and aligned with the first axis of rotation and the second axis of rotation.
- 30. The toy of claim 29, wherein the lockout subsystem comprises:a first linkage connecting the rotatable motor output of the first motor to the body appendage and configured to drive a first movement of the body appendage; a second linkage connecting the rotatable motor output of the second motor to the body appendage and configured to drive a second movement of the body appendage which is opposed to the first movement; and a shuttlecock configured to selectively limit one of the first movement of the body appendage and the second movement of the body appendage.
- 31. The toy of claim 30, wherein the first linkage includes a first contact region configured to engage the shuttlecock and the second linkage includes a second contact region configured to engage the shuttlecock.
- 32. The toy of claim 31, wherein the shuttlecock is interposed the first and second linkage contact regions.
- 33. The toy of claim 32, wherein the shuttlecock includes:at least one surface on a first end positioned to engage the first contact region; and at least one surface on a second end positioned to engage the second contact region.
- 34. The toy of claim 33, wherein the shuttlecock moves between two positions, a first position blocking the movement of the first linkage and a second position blocking the movement of the second linkage.
- 35. The toy of claim 34, wherein the at least one surface on the first end is angled to enable the first contact region to slide the shuttlecock from the first position to the second position when the first contact region engages the shuttlecock and the at least one surface on the second end is angled to enable the second contact region to slide the shuttlecock from the second position to the first position when the second contact region engages the shuttlecock.
- 36. The toy of claim 35, wherein the shuttlecock moves to the first position upon engagement of the second contact region with the at least one surface on the second end of the shuttlecock.
- 37. The toy of claim 35, wherein the shuttlecock moves to the second position upon engagement of the first contact region with the at least one surface on the first end of the shuttlecock.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is based upon and claims priority under 35 U.S.C. §119(e) to the following U.S. provisional patent application, which is incorporated herein by reference in its entirety for all purposes: Ser. No. 60/224,697, entitled “Motorized Doll,” filed Aug. 11, 2000. This application is a continuation-in-part and claims priority under 35 U.S.C §120 to U.S. patent application Ser. No. 09/908,971 entitled “Animated Toy with Geneva Mechanism” filed Jul. 18, 2001, the disclosures of which are incorporated herein by reference.
US Referenced Citations (34)
Foreign Referenced Citations (5)
Number |
Date |
Country |
60241110 |
Nov 1985 |
JP |
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JP |
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JP |
5253866 |
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Non-Patent Literature Citations (4)
Entry |
Selected pages from a book entitled “Machine Devices and Instrumentation”, Kinematics of Intermittent Mechanisms 1—The External Geneva Wheel and Kinematics of Intermittent Mechanisms II—The Internal Geneva Wheel, Copyright 1966. |
Herbert Herkiner, ed., Engineers' Illustrated Thesaurus, W. M. Pem Publishing, 1952, pp. 172-173. |
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Provisional Applications (1)
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Number |
Date |
Country |
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60/224697 |
Aug 2000 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09/908971 |
Jul 2001 |
US |
Child |
09/927910 |
|
US |