Claims
- 1. A portable power tool, comprising:
a housing; a motor in the housing and including a motor output member; a driven member; and a transmission in the housing and operatively associated with the motor output member and the driven member, the transmission having at least three distinct speed ratios.
- 2. The portable power tool of claim 1, further comprising a speed selector associated with the housing and engaging the transmission, the speed selector being configured to change between the speed ratios in response to an input.
- 3. The portable power tool of claim 2, wherein a first one of the speed ratios is disengaged and a second one of the speed ratios is engaged in response to the input to the speed selector.
- 4. The portable power tool of claim 2, wherein the speed selector is rotatably connected to the housing.
- 5. The portable power tool of claim 1, wherein the transmission includes at least one movable element that is selectively positionable to effect a change from a first one of the speed ratios to another one of the speed ratios.
- 6. The portable power tool of claim 5, wherein the transmission includes at least one planetary gearset, the planetary gearset having a sun gear, a planet gear and a ring gear; and
wherein the movable element includes at least one of the sun gear, the planet gear and the ring gear.
- 7. The portable power tool of claim 6, wherein the at least one of the sun gear, the planet gear and the ring gear is axially movable to engage a locking structure.
- 8. The portable power tool of claim 7, wherein the locking structure includes a tooth element formed into the housing.
- 9. The portable power tool of claim 7, wherein engagement of the at least one of the sun gear, the planet gear and the ring gear to the locking structure inhibits relative rotation between the sun gear, the planet gear and the ring gear.
- 10. The portable power tool of claim 6, further comprising a speed selector, the speed selector including an actuator that is configured to exert a force against a surface of the at least one of the sun gear, the planet gear and the ring gear, the surface being oriented generally perpendicular to a longitudinal axis of the driven member and wherein exertion of the force onto the surface translates the at least one of the sun gear, the planet gear and the ring gear to at least partially effect the change between the speed ratios.
- 11. The portable power tool of claim 10, wherein the surface is an annular wall formed about the ring gear.
- 12. The portable power tool of claim 1, further comprising a clutch assembly coupled to at least one of the transmission and the driven member, the clutch assembly being operable for limiting a torque output that is transmitted through the driven member.
- 13. The portable power tool of claim 12, wherein the transmission includes a planetary gearset having a ring gear, the clutch assembly being operable in a first condition wherein interaction between the clutch assembly and the ring gear maintains the ring gear in a non-rotating condition, the clutch assembly also being operable in a second condition wherein the ring gear is permitted to rotate.
- 14. A hand-held power tool, comprising:
a driven member; a motor output member for providing an input torque; and a transmission in operative association with the driven member and the motor output member, the transmission having at least three different speed ratios, each of the speed ratios being operable for rotating the driven member.
- 15. The hand-held power tool of claim 14, wherein the transmission includes at least one planetary gearset.
- 16. The hand-held power tool of claim 15, wherein the planetary gearset includes a sun gear, a planet gear and a ring gear; and
wherein at least one of the sun gear, the planet gear and the ring gear is movable to at least partially affect an overall gear reduction of the transmission.
- 17. The hand-held power tool of claim 16, wherein the one of the sun gear, the planet gear and the ring gear is selectively engagable with another portion of the transmission to place the planetary gearset into an inactive condition.
- 18. The hand-held power tool of claim 17, wherein the another portion of the transmission is a planet carrier, the planet carrier rotatably supporting the planet gear for meshing engagement with the ring gear.
- 19. The hand-held power tool of claim 18, wherein the planet carrier includes a locking element and the ring gear includes a mating locking element that is engagable with the locking element to inhibit relative rotation between the planet carrier and the ring gear.
- 20. The hand-held power tool of claim 19, wherein the locking element is a tooth and wherein the mating locking element is a plurality of gear teeth that are in meshing engagement with the planet gear.
- 21. A power tool, comprising:
a housing; a motor disposed in the housing, the motor having an output member; a driven member; a transmission including a first reduction gearset and a second reduction gearset, each of the first and second reduction gearsets being operable in an active mode and an inactive mode; and a speed selector mechanism coupled to the transmission and being configured to selectively change one or both of the first and second gearsets into the active or inactive modes to provide the power tool with at least three overall gear reduction ratios.
- 22. The power tool of claim 21, further comprising a clutch assembly coupled to the transmission and being operable in a first condition, which permits torque transmission from the motor to the driven member, and a second condition, which inhibits torque transmission from the motor to the driven member.
- 23. The power tool of claim 22, wherein the transmission further comprises a third reduction gearset, the third reduction gearset coupling the output member to an input member of the first reduction gearset.
- 24. The power tool of claim 23, wherein the clutch assembly has a clutch face and an engagement assembly, the clutch face being coupled to a gear in one of the first, second and third reduction gearsets and having a predetermined clutch profile, the engagement assembly having a follower member, the follower member abutting the clutch face and cooperating with the clutch profile to inhibit relative rotation between the gear and the follower member when a torque is applied to the one the first, second and third reduction elements having a magnitude that is less than a predetermined maximum torque.
- 25. The power tool of claim 24, wherein the gear is a ring gear and the ring gear includes an annular flange to which the clutch face is coupled.
- 26. The power tool of claim 25, wherein the annular flange and the clutch face are unitarily formed.
- 27. The power tool of claim 25, wherein the clutch face is defined by an annular member that is disposed over a portion of the ring gear into abutment with the annular flange.
- 28. The power tool of claim 21, wherein each of the first and second reduction gearsets is a planetary gearset.
- 29. The power tool of claim 28, wherein each planetary gearset includes a sun gear, a planet gear, a ring gear and a planet carrier, and wherein the speed selector mechanism is operable for selectively translating at least one of the sun gear, the planet gear, the ring gear and the planet carrier along an axis of the transmission to change the planetary gearset between the active and inactive modes.
- 30. A power tool, comprising a housing, a motor for driving an output spindle through a multiple speed transmission, and a speed selector mechanism, the multiple speed transmission providing a plurality of selectively settable gear reductions between the motor and the output spindle, the transmission including a first gear assembly having an active mode and an inactive mode and a second gear assembly having an active mode and an inactive mode, the speed selector mechanism coupled to the housing and engaging the transmission to selectively operate the first and second gear assemblies in the active or inactive modes to provide at least three different overall gear reductions for transmitting torque between the motor and the output spindle.
- 31. The power tool of claim 30, further comprising a clutch assembly coupled to the transmission and being operable in a first condition, which permits torque transmission from the motor to the output spindle, and a second condition, which inhibits torque transmission from the motor to the output spindle.
- 32. The power tool of claim 31, wherein the transmission further comprises a third reduction gearset coupled to at least one of the first and second reduction gearsets, the third reduction gearset being operable in an active mode.
- 33. The power tool of claim 32, wherein the third reduction gearset is disposed between the motor and the first reduction gearset to couple the motor to an input member of the first reduction gearset.
- 34. The power tool of claim 32, wherein the clutch assembly has a clutch face and an engagement assembly, the clutch face being coupled to a gear in one of the first, second and third reduction gearsets and having a predetermined clutch profile, the engagement assembly having a follower member, the follower member abutting the clutch face and cooperating with the clutch profile to inhibit relative rotation between the gear and the follower member when a torque is applied to the one the first, second and third reduction elements having a magnitude that is less than a predetermined maximum torque.
- 35. The power tool of claim 34, wherein the gear is a ring gear and the ring gear includes an annular flange to which the clutch face is coupled.
- 36. The power tool of claim 30, wherein the speed selector mechanism sequentially disengages a first one of the overall gear reductions and engages a second one of the overall gear reductions in response to receipt of a manual input.
- 37. The power tool of claim 36, wherein the speed selector mechanism is rotatably coupled to the housing.
- 38. The power tool of claim 36, wherein the transmission includes at least one movable element that is selectively positioned by the speed selector mechanism to effect a change between two of the overall gear reductions.
- 39. The power tool of claim 38, wherein the transmission includes at least one planetary gearset, the planetary gearset having a sun gear, a planet gear and a ring gear; and
wherein the movable element includes at least one of the sun gear, the planet gear and the ring gear.
- 40. The power tool of claim 39, wherein the at least one of the sun gear, the planet gear and the ring gear is axially movable to engage a structure to inhibit relative rotation between the sun gear, the planet gear and the ring gear.
- 41. A power tool comprising a housing, a motor for driving an output spindle through a multiple speed transmission, and a speed selector mechanism, the multiple speed transmission providing a plurality of selectively settable gear reductions between the motor and the output spindle, the transmission including a first gear assembly having an active and an inactive mode and a second gear assembly having an active and an inactive mode, the speed selector mechanism coupled to the housing and engaging the transmission to selectively provide at least three of the following operating conditions:
the first gear assembly in the active mode and the second gear assembly in the inactive mode; the first gear assembly in the active mode and the second gear assembly in the active mode; the first gear assembly in the inactive mode and the second gear assembly in the inactive mode; and the first gear assembly in the inactive mode and the second gear assembly in the active mode.
- 42. The power tool of claim 41, further comprising a clutch assembly coupled to at least one of the multiple speed transmission and the output spindle, the clutch assembly being operable for limiting a torque output that is transmitted through the output spindle.
- 43. The power tool of claim 42, wherein the clutch assembly has a clutch face and an engagement assembly, the clutch face being coupled to a gear in the multiple speed transmission and having a predetermined clutch profile, the engagement assembly having a follower member, the follower member abutting the clutch face and cooperating with the clutch profile to inhibit relative rotation between the gear and the follower member when a torque having a magnitude that is less than a predetermined maximum torque is applied to the clutch face.
- 44. The power tool of claim 43, wherein the gear is a ring gear and the ring gear includes an annular flange to which the clutch face is coupled.
- 45. The power tool of claim 41, wherein the speed selector mechanism includes an actuator that moves an element into engagement with a mating element to maintain an associated one of the selectively settable gear reductions in the active mode and wherein one of the element and the mating element is coupled to a gear in the associated one of the selectively settable gear reductions.
- 46. The power tool of claim 45, wherein engagement of the element and the mating element is effected through sliding of the actuator.
- 47. The power tool of claim 46, wherein the element is a tooth formed onto an exterior surface of the gear and wherein the mating element is coupled to a housing that houses the transmission.
- 48. The power tool of claim 47, wherein at least one of the selectively settable gear reductions is a planetary gearset.
- 49. A method of using a motor-driven hand-held power tool having an output member, the method comprising:
selecting a desired speed ratio from a transmission having at least three speed ratios; and operating the power tool so that the output member is driven by the transmission within a speed range determined by the selected speed ratio.
- 50. The method of claim 49, wherein the step of selecting the desired speed ratio includes the step of manipulating a speed selector to effect movement of a gear element in the transmission.
- 51. The method of claim 50, wherein the transmission includes at least one planetary gearset, the planetary gearset having a sun gear, a planet gear and a ring gear and wherein the gear element is one of the sun gear, the planet gear and the ring gear.
- 52. The method of claim 50, wherein the step of manipulating the speed selector includes effecting axial translation of an actuator to change a position of the gear element.
- 53. The method of claim 52, wherein the actuator is a wire element that contacts the gear element.
- 54. The method of claim 53, wherein the gear element is a ring gear and the wire element includes a semi-circular portion that engages the ring gear.
- 55. The method of claim 53, wherein the actuator includes a rotary cam that moves the wire element in an axial direction in response to a rotary input.
- 56. A method of drilling a hole, comprising:
providing a tool having a transmission with at least two planetary gearsets, each of the planetary gearsets having a movable portion that permits the transmission to be operated in at least three distinct gear ratios; translating the movable portion of at least one of the planetary gearsets from a first position to a second position; and drilling a hole with the tool operating at a speed within a speed range determined by the second position of said translated movable portion.
- 57. The method of claim 56, wherein movement of the movable portion into one of the first and second positions inhibits relative rotation of the movable portion relative to a remaining portion of the planetary gearset.
- 58. The method of claim 57, wherein movement of the movable portion the other one of the first and second positions permits relative rotation of the movable portion relative to a remaining portion of the planetary gearset.
- 59. The method of claim 58, wherein the movable portion of at least one of the planetary gearsets is a ring gear.
- 60. The method of claim 56, wherein the step of translating the movable portion includes providing at least one input to the tool.
- 61. The method of claim 60, wherein the at least one input is received by a speed selector that is operatively associated with the movable portion.
- 62. The method of claim 61, wherein the at least one input is a rotary input.
- 63. The method of claim 61, wherein the movable portion includes a gear element that is moved into and out of engagement with another portion of the transmission through operation of the speed selector.
- 64. The method of claim 63, wherein the speed selector moves the gear element in a direction that is substantially parallel to the axis of the at least one of the planetary gearsets.
- 65. The method of claim 64, wherein the gear element is a ring gear.
- 66. The method of claim 65, wherein the another portion of the transmission is a planet carrier.
- 67. A method of forming a hole comprising:
providing a hand-held portable drill having an electric motor, a chuck and a transmission disposed between the electric motor and the chuck, the electric motor being coupled to a source of electric power and having a motor output, the transmission operating to transmit torque between the motor output and the chuck, the transmission including at least three gear ratios; selectively engaging a desired gear ratio from the at least three gear ratios; and operating the hand-held portable drill at a speed determined by the desired gear ratio and a speed of the motor output.
- 68. The method of claim 67, wherein the step of engaging the desired gear ratio includes providing at least one input to the power tool.
- 69. The method of claim 68, wherein the input is provided in a rotational direction.
- 70. The method of claim 68, wherein the transmission includes two planetary gearsets and the input is configured to move a portion of at least one of the planetary gearsets in an axial direction along a respective axis of the at least one planetary gearset.
PRIORITY & CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a divisional of U.S. application No. Ser. No. 09/964,078filed Sep. 26, 2001 entitled First Stage Clutch, which claims the benefit of U.S. Provisional Application No. 60/263,379, filed Jan. 23, 2001. Other features of the present invention are discussed and claimed in commonly assigned U.S. Pat. No. 6,431,289 issued Aug. 13, 2002, as well as commonly assigned copending U.S. application Ser. No. 09/965,108 entitled 360 Degree Clutch Collar and U.S. application Ser. No. 09/963,905 entitled Housing with Functional Overmold Member.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60263379 |
Jan 2001 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
09964078 |
Sep 2001 |
US |
Child |
10384809 |
Mar 2003 |
US |