Claims
- 1. A chuck for use with a power driver having a driver housing and a motor disposed in the driver housing and having a rotatable output, said chuck comprising:
a. a spindle having a first end proximate the motor and a distal second end opposite the motor, said second end having an axial bore formed therein; b. a plurality of jaws movably disposed with respect to said spindle and in communication with said axial bore; c. a plurality of planetary gears mounted about said spindle operatively between the motor output and said spindle first end, so that the motor rotationally drives said spindle through said gear assembly; and d. a driver mounted about said spindle in operative engagement with said plurality of jaws so that activation of said driver in a closing direction moves said plurality of jaws toward an axis of said axial bore and activation of said driver in an opening direction moves said plurality of jaws away from said axis.
- 2. The power driver as in claim 1, including a lock between said spindle and said housing, said lock being configured to rotationally hold said spindle with respect to said housing against rotational force applied to said spindle distal end.
- 3. The power driver as in claim 1, including a cam disposed between said spindle and said housing so that rotation of said spindle due to rotational force applied to said spindle distal end drives said spindle to a rotationally fixed position with respect to said housing through said cam.
- 4. The power driver as in claim 1, further comprising:
a. a lock surface rotationally fixed to said housing, b. a cam in driving engagement with said spindle, c. a drive plate disposed with respect to said motor so that said motor rotationally drives said drive plate and that is disposed with respect to said cam so that said drive plate is rotatable with respect to said cam over a limited arc and drivingly engages said cam at either end of said arc, and d. a lock roller disposed between said cam and said lock surface, wherein said cam is spaced from said lock surface so that, upon rotation of said cam with respect to said drive plate, said cam wedges said lock roller between said cam and said lock surface.
- 5. The power driver as in claim 4, including a plurality of said lock rollers.
- 6. The power driver as in claim 1, wherein
a. said spindle includes a plurality of angularly disposed passageways formed in said distal end and intersecting said axial bore, b. respective one of said plurality of jaws are slidably positioned in one of each said passageways, each of said jaws having a jaw face formed on one side thereof, and c. said driver has a nut that is axially movably disposed about said spindle distal end in driving engagement with said jaws so that axial movement of said nut with respect to said spindle moves said jaws in said passageways.
- 7. The power driver as in claim 6 wherein said driver further comprises:
a. a generally cylindrical sleeve rotatably mounted about said spindle and defining a threaded inner circumferential surface, and b. a thread defined on an outer circumferential surface of said nut, wherein said sleeve threads engage said nut threads so that rotation of said sleeve drives said nut axially with respect to said spindle distal end.
- 8. The power driver as in claim 7 wherein said nut includes a plurality of slots therethrough and wherein each said jaw extends through a respective said slot so that said jaws rotationally fix said nut with respect to said spindle.
- 9. The power driver as in claim 6, wherein said nut defines a plurality of slots extending at least partially radially through said nut and wherein each said jaw includes a portion thereof that is shaped cooperatively with respect to, and is received by, a respective said slot so that said jaw is radially reciprocal with respect to said nut but cannot move axially forward with respect to said nut.
- 10. The power driver as in claim 1, wherein
a. said spindle includes a plurality of angularly disposed passageways formed in said distal end and intersecting said axial bore, b. respective one of said plurality of jaws are slidably positioned in one of each said passageways, each of said jaws having a jaw face formed on one side thereof, and c. said driver includes a nut that is rotatably mounted relative to said spindle and has threads engaging said jaw threads so that rotation of said nut relative to said spindle moves said jaws in said passageways.
- 11. A chuck for use with a power driver having a driver housing and a motor disposed in the driver housing and having a rotatable output, said chuck comprising:
a. a spindle having a first end proximate the motor and a distal second end opposite the motor, said second end having an axial bore formed therein; b. a plurality of jaws movably disposed with respect to said spindle and in communication with said axial bore; c. a gear assembly mounted about said spindle operatively between the motor output and said spindle first end, and secured with respect to said spindle independently of said driver housing, so that the motor rotationally drives said spindle through said gear assembly; and d. a driver mounted about said spindle in operative engagement with said plurality of jaws so that activation of said driver in a closing direction moves said plurality of jaws toward an axis of said axial bore and activation of said driver in an opening direction moves said plurality of jaws away from said axis.
- 12. The power driver as in claim 11, including a lock between said spindle and said housing, said lock being configured to rotationally hold said spindle with respect to said housing against rotational force applied to said spindle distal end.
- 13. The power driver as in claim 11, including a cam disposed between said spindle and said housing so that rotation of said spindle due to rotational force applied to said spindle distal end drives said spindle to a rotationally fixed position with respect to said housing through said cam.
- 14. The power driver as in claim 11, further comprising:
a. a lock surface rotationally fixed to said housing, b. a cam in driving engagement with said spindle, c. a drive plate disposed with respect to said motor so that said motor rotationally drives said drive plate and that is disposed with respect to said cam so that said drive plate is rotatable with respect to said cam over a limited arc and drivingly engages said cam at either end of said arc, and d. a lock roller disposed between said cam and said lock surface, wherein said cam is spaced from said lock surface so that, upon rotation of said cam with respect to said drive plate, said cam wedges said lock roller between said cam and said lock surface.
- 15. The power driver as in claim 14, including a plurality of said lock rollers.
- 16. The power driver as in claim 11, wherein
a. said spindle includes a plurality of angularly disposed passageways formed in said distal end and intersecting said axial bore, b. respective one of said plurality of jaws are slidably positioned in one of each said passageways, each of said jaws having a jaw face formed on one side thereof, and c. said driver has a nut that is axially movably disposed about said spindle distal end in driving engagement with said jaws so that axial movement of said nut with respect to said spindle moves said jaws in said passageways.
- 17. The power driver as in claim 16 wherein said driver further comprises:
a. a generally cylindrical sleeve rotatably mounted about said spindle and defining a threaded inner circumferential surface, and b. a thread defined on an outer circumferential surface of said nut, wherein said sleeve threads engage said nut threads so that rotation of said sleeve drives said nut axially with respect to said spindle distal end.
- 18. The power driver as in claim 17 wherein said nut includes a plurality of slots therethrough and wherein each said jaw extends through a respective said slot so that said jaws rotationally fix said nut with respect to said spindle.
- 19. The power driver as in claim 16, wherein said nut defines a plurality of slots extending at least partially radially through said nut and wherein each said jaw includes a portion thereof that is shaped cooperatively with respect to, and is received by, a respective said slot so that said jaw is radially reciprocal with respect to said nut but cannot move axially forward with respect to said nut.
- 20. The power driver as in claim 11, wherein
a. said spindle includes a plurality of angularly disposed passageways formed in said distal end and intersecting said axial bore, b. respective one of said plurality of jaws are slidably positioned in one of each said passageways, each of said jaws having a jaw face formed on one side thereof, and c. said driver includes a nut that is rotatably mounted relative to said spindle and has threads engaging said jaw threads so that rotation of said nut relative to said spindle moves said jaws in said passageways.
CLAIM OF PRIORITY
[0001] This is a continuation of application Ser. No. 09/729,572 filed Dec. 4, 2000, which is a continuation-in-part of application Ser. No. 09/455,223 filed Dec. 6, 1999, and claims the benefit of U.S. Provisional Application No. 60/226,631 filed Aug. 21, 2000. Each of these applications is incorporated by reference herein.
Provisional Applications (1)
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Number |
Date |
Country |
|
60226631 |
Aug 2000 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
09729572 |
Dec 2000 |
US |
Child |
10837970 |
May 2004 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09455223 |
Dec 1999 |
US |
Child |
09729572 |
Dec 2000 |
US |