Claims
- 1. A transmission, comprising:
an input shaft; at least one camming device coupled to said input shaft; at least two levers coupled to said camming device in a manner that causes said at least two levers to pivot in an oscillating manner upon rotation of said input shaft; at least one one-way clutch coupled to said at least two levers where movement of said at least two levers causes rotational movement of said at least one one-way clutch; and an output shaft coupled to said at least one one-way clutch, said at least one one-way clutch capable of causing rotation of said output shaft.
- 2. The transmission of claim 1, wherein said camming device comprises a cam shaft having at least one drive cam thereon and further comprising at least one cam follower coupled to said at least one drive cam and to one of said at least two levers, such that movement of said at least one cam follower relative to said cam shaft causes oscillation of said one of said at least two levers.
- 3. The transmission of claim 2, further comprising biasing means associated with said at least one cam follower for biasing said at least one cam follower into contact with said at least one drive cam.
- 4. The transmission of claim 1, wherein said at least two levers comprises a first lever and a second lever that oscillate in opposite directions upon rotation of said input shaft.
- 5. The transmission of claim 1, further comprising at least one selectively positionable power take-off coupled to said at least two levers, wherein adjustment of said at least one power take-off relative to said at least two levers causes a proportional change in the rotational speed of said output shaft.
- 6. The transmission of claim 5, further including a control mechanism coupled to said power take-off, said control mechanism being controllable by a user to alter the rotational output of the output shaft.
- 7. The transmission of claim 2, wherein said cam shaft comprises a concentric shaft slidably splined on said input shaft and wherein said at least one cam follower and said at least two levers are selectively movable with said cam shaft.
- 8. The transmission of claim 7, wherein movement of said cam shaft, at least one cam follower and said at least two levers relative to a longitudinal axis of said input shaft changes the rotational speed of the output shaft.
- 9. The transmission of claim 7, further comprising displacement means coupled to said concentric shaft for selectively displacing said concentric shaft relative to said input shaft and for holding said concentric shaft in the selected position.
- 10. The transmission of claim 9, further including a housing, said input shaft and said output shaft being journaled to said housing.
- 11. The transmission of claim 7 wherein said displacement means comprises at least two opposing linear one-way clutches.
- 12. The transmission of claim 11, wherein said at least two opposing linear one-way clutches comprises a first portion and a second portion, said first portion defining at least one opposing set of cammed linear races, said second portion defining a flat race, and at least two wedgeable rollers biased in movable cages coupled to external control members.
- 13. The transmission of claim 12, wherein forces from said at least two levers when exerted on said control slide provide power shifting under load.
- 14. The transmission of claim 7, further comprising a biasing cam coupled to said concentric shaft and at least one cam follower wheel coupled to said cam follower and in contact with said biasing cam, said biasing cam contoured to maintain contact between said cam follower wheel and said drive cam.
- 15. The transmission of claim 14, wherein said biasing cam and said at least one cam follower wheel are configured to provide constant speed during a portion of a rotation of said input shaft, said biasing cam being concentric with said drive cam and said at least one cam follower wheel and a biasing cam wheel coupled together and positioned on opposite sides of said drive cam to maintain contact between said drive cam and said at least one cam follower wheel.
- 16. The transmission of claim 1, wherein said input shaft comprises the crank of a bicycle.
- 17. The transmission of claim 1, wherein said input shaft is coupled to the engine of an automobile.
- 18. A transmission, comprising:
an input shaft; at least two oscillating members, each pivotable about an axis and coupled to said input shaft such that rotation of said input shaft causes oscillation of said oscillating members; at least one camming device coupled to said at least two oscillating members to provide ripple free power from said oscillating members; at least one one-way clutch coupled to said at least two oscillating members; and an output shaft coupled to said at least one one-way clutch, said output shaft being driven by oscillation of said at least two oscillating members which in turn drives said one-way clutch to rotate said output shaft.
- 19. The transmission of claim 18, wherein rotation of said input shaft causes rotation of said camming device.
- 20. The transmission of claim 18, wherein said at least two oscillating members are coupled to said input shaft.
- 21. The transmission of claim 20, wherein said at least one camming device comprises a pair of cam members coupled to said at least two oscillating members and further including a pair of sprocket segments coupled to said pair of cam members, said pair of sprocket segments driving a pair of chains engaging said at least one one-way clutch.
- 22. The transmission of claim 19, wherein said camming device comprises a cam-shaped race and further including a pair of sprocket segments coupled to said cam-shaped race such that rotation of said cam-shaped race causes oscillation of said sprocket segments, said sprocket segments driving a pair of chains engaging said at least one one-way clutch.
- 23. The transmission of claim 21, further including a slidably adjustable power take off for selective attachment to a crank of a bicycle such that the torque required to pedal the bicycle is increased as the power take off is moved further from the center of rotation of said crank.
- 24. The transmission of claim 22, further comprising a pair of power take offs coupled to said pair of sprocket segments for selective adjustment by a user of the degree of oscillation of the pair of sprocket segments for each rotation of said input shaft.
- 25. The transmission of claim 19, wherein said camming device comprises a cam shaft having at least one drive cam thereon and further comprising at least one cam follower coupled to said at least one drive cam and to one of said at least two oscillating members, such that movement of said at least one cam follower relative to said cam shaft causes oscillation of said one of said at least two oscillating members.
- 26. The transmission of claim 25, further comprising biasing means associated with said at least one cam follower for biasing said at least one cam follower into contact with said at least one drive cam.
- 27. The transmission of claim 26, wherein said at least two oscillating members comprises a first lever and a second lever that oscillate in opposite directions upon rotation of said input shaft.
- 28. The transmission of claim 27, further comprising a first selectively positionable power take-off coupled to said first lever and a second selectively positionable power take-off coupled to said second levers, wherein adjustment of said first and second power take-offs relative to said first and second levers causes a proportional change in the rotational speed of said output shaft.
- 29. The transmission of claim 28, further including a control mechanism coupled to said first and second power take-offs, said control mechanism being controllable by a user to alter the rotational output of the output shaft.
- 30. The transmission of claim 29, wherein said cam shaft comprises a concentric shaft slidably splined on said input shaft and wherein said at least one cam follower and said first and second levers are selectively movable with said cam shaft.
- 31. The transmission of claim 30, wherein movement of said cam shaft, at least one cam follower and said first and second levers relative to a longitudinal axis of said input shaft changes the rotational speed of the output shaft.
- 32. The transmission of claim 30, further comprising displacement means coupled to said concentric shaft for selectively displacing said concentric shaft relative to said input shaft and for holding said concentric shaft in the selected position.
- 33. The transmission of claim 32, further including a housing, said input shaft and said output shaft being journaled to said housing.
- 34. The transmission of claim 32, wherein said displacement means comprises at least two opposing linear one-way clutches.
- 35. The transmission of claim 34, wherein said at least two opposing linear one-way clutches comprises a first portion and a second portion, said first portion defining at least one opposing set of cammed linear races, said second portion defining a flat race, and at least two wedgeable rollers biased in movable cages coupled to external control members.
- 36. The transmission of claim 35, wherein forces from said at least two levers when exerted on said control slide provide power shifting under load.
- 37. The transmission of claim 30, further comprising a biasing cam coupled to said concentric shaft and at least one cam follower wheel coupled to said cam follower and in contact with said biasing cam, said biasing cam contoured to maintain contact between said cam follower wheel and said drive cam.
- 38. The transmission of claim 37, wherein said biasing cam and said at least one cam follower wheel are configured to provide constant speed during a portion of a rotation of said input shaft, said biasing cam being concentric with said drive cam and said at least one cam follower wheel and a biasing cam wheel coupled together and positioned on opposite sides of said drive cam to maintain contact between said drive cam and said at least one cam follower wheel.
- 39. A transmission, comprising:
an input shaft; an output shaft; at least one oscillator driven by said input shaft; at least two oscillator followers moveable by said at least one oscillator; at least two levers, each coupled to one of said at least two oscillator followers for movement therewith and each pivotable about a fulcrum; and at least two slide members, each coupled to one of said at least two levers for back-and-forth movement of said at least two slide members along with the movement of said at least two levers, said at least two slide members driving said output shaft; whereby translation of said at least two levers relative to said slide members varies the rate of rotation of said output shaft relative to said input shaft.
- 40. The transmission of claim 39, wherein said at least one oscillator comprises a cam shaft having at least one drive cam thereon and wherein said at least two oscillator followers comprises at least one cam follower coupled to said at least one drive cam and to one of said at least two levers, such that movement of said at least one cam follower relative to said cam shaft causes oscillation of said one of said at least two levers.
- 41. The transmission of claim 40, further comprising biasing means associated with said at least one cam follower for biasing said at least one cam follower into contact with said at least one drive cam.
- 42. The transmission of claim 39, wherein said at least two levers comprises a first lever and a second lever that oscillate in opposite directions upon rotation of said input shaft.
- 43. The transmission of claim 39, further comprising at least one selectively positionable power take-off coupled to said at least two levers, wherein adjustment of said at least one power take-off relative to said at least two levers causes a proportional change in the rotational speed of said output shaft.
- 44. The transmission of claim 43, further including a control mechanism coupled to said power take-off, said control mechanism being controllable by a user to alter the rotational output of the output shaft.
- 45. The transmission of claim 40, wherein said cam shaft comprises a concentric shaft slidably splined on said input shaft and wherein said at least one cam follower and said at least two levers are selectively movable with said cam shaft.
- 46. The transmission of claim 45, wherein movement of said cam shaft, at least one cam follower and said at least two levers relative to a longitudinal axis of said input shaft changes the rotational speed of the output shaft.
- 47. The transmission of claim 45, further comprising displacement means coupled to said concentric shaft for selectively displacing said concentric shaft relative to said input shaft and for holding said concentric shaft in the selected position.
- 48. The transmission of claim 47, further including a housing, said input shaft and said output shaft being journaled to said housing.
- 49. The transmission of claim 47, wherein said displacement means comprises at least two opposing linear one-way clutches.
- 50. The transmission of claim 49, wherein said at least two opposing linear one-way clutches comprises a first portion and a second portion, said first portion defining at least one opposing set of cammed linear races, said second portion defining a flat race, and at least two wedgeable rollers biased in movable cages coupled to external control members.
- 51. The transmission of claim 50, wherein forces from said at least two levers when exerted on said control slide provide power shifting under load.
- 52. The transmission of claim 45, further comprising a biasing cam coupled to said concentric shaft and at least one cam follower wheel coupled to said cam follower and in contact with said biasing cam, said biasing cam contoured to maintain contact between said cam follower wheel and said drive cam.
- 53. The transmission of claim 52, wherein said biasing cam and said at least one cam follower wheel are configured to provide constant speed during a portion of a rotation of said input shaft, said biasing cam being concentric with said drive cam and said at least one cam follower wheel and a biasing cam wheel coupled together and positioned on opposite sides of said drive cam to maintain contact between said drive cam and said at least one cam follower wheel.
- 54. The transmission of claim 39, wherein said input shaft comprises the crank of a bicycle.
- 55. The transmission of claim 39, wherein said input shaft is coupled to the engine of an automobile.
- 56. A transmission, comprising:
a housing having a first wall and a second wall; an input shaft journaled through said first wall of said housing; an out put shaft journaled through said second wall of said housing; a concentric shaft slidably splined on said input shaft; a control slide fixedly coupled to said concentric shaft and being slidably guidable relative to said housing; at least one cam defining a cam surface, said cam surface being substantially parallel to said concentric shaft and fixedly secured to said concentric shaft; at least one biased cam follower longitudinally fixed relative to said concentric shaft; at least one lever rotatably coupled to each said at least one cam follower; biasing means for biasing said at least one cam follower into contact with said cam surface of said at least one cam; at least one selectively locatable, self-locking power take-off on each said at least one lever; and connection means for interconnecting said power take-off to said output shaft.
- 57. The transmission of claim 56, wherein said at least two levers comprises a first lever and a second lever that oscillate in opposite directions upon rotation of said input shaft.
- 58. The transmission of claim 56, wherein adjustment of said power take-off relative to said at least one lever causes a proportional change in the rotational speed of said output shaft.
- 59. The transmission of claim 58, wherein said control slide is controllable by a user to alter the rotational output of the output shaft.
- 60. The transmission of claim 56, wherein movement of said at least one cam, said at least one biased cam follower and said at least one lever relative to a longitudinal axis of said input shaft changes the rotational speed of the output shaft.
- 61. The transmission of claim 56, further comprising displacement means coupled to said concentric shaft for selectively displacing said concentric shaft relative to said input shaft and for holding said concentric shaft in the selected position.
- 62. The transmission of claim 56, wherein said connection means comprises at least two one-way clutches.
- 63. The transmission of claim 56, wherein forces from said at least one lever when exerted on said control slide provide power shifting under load.
- 64. The transmission of claim 56, wherein said biasing means comprises a biasing cam coupled to said concentric shaft and at least one cam follower wheel coupled to said cam follower and in contact with said biasing cam, said biasing cam contoured to maintain contact between said cam follower wheel and said drive cam.
- 65. The transmission of claim 56, wherein said biasing means comprises a biasing cam, a biasing cam wheel, and at least one cam follower wheel configured to provide constant speed during a portion of a rotation of said input shaft, said at least one cam follower wheel and said biasing cam wheel coupled together and positioned on opposite sides of said biasing cam to maintain contact between said biasing cam and said at least one cam follower wheel.
BACKGROUND OF THE INVENTION
[0001] This patent application claims priority to U.S. Provisional Patent Application Serial No. 60/238,888 filed on Oct. 10, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60238888 |
Oct 2000 |
US |