Claims
- 1. A bicycle control device, comprising:
a brake control mechanism; a shift control mechanism having a pulling direction and a release direction; a control lever operatively connected to the brake control mechanism and the shift control mechanism; wherein the control lever is operable in a brake operating plane to operate the brake control mechanism; and wherein the control lever is operable in a shifting plane to operate the shift control mechanism in the pulling direction and in the release direction.
- 2. The bicycle control device of claim 1 wherein the pulling direction is the direction of movement of the control lever downward, and the release direction is the direction of movement of the control lever upward.
- 3. The bicycle control device of claim 1 wherein the brake operating plane is substantially perpendicular to the shifting plane.
- 4. The bicycle control device of claim 1 wherein, in the shifting plane, the control lever is pivotable between an upshift position, a neutral position and a downshift position, wherein the upshift position is on a first side of the neutral position and the downshift position is on a second side of the neutral position opposite the first side.
- 5. The bicycle control device of claim 1 wherein the brake control mechanism comprises:
a bracket; a brake lever base pivotably connected to the bracket; a cable hook connected to the brake lever base, the cable hook configured to receive a brake cable; and wherein the operation of the control lever in the brake operating plane pivots the brake lever base on the bracket and actuates the cable hook.
- 6. The bicycle control device of claim 1 wherein the shift control mechanism comprises:
a support shaft; a cable pulling member rotatable in the pulling direction and in the release direction about the support shaft, the cable pulling member configured to receive a gear-shifting cable and pull the cable when the cable pulling member is rotated in the pulling direction and release the gear-shifting cable when the cable pulling member is rotated in the release direction; a winding mechanism operatively connected to the cable pulling member; and a released hold mechanism operatively connected to the cable pulling member.
- 7. The bicycle control device of claim 6 wherein the winding mechanism comprises a winding latch and a winding pawl configured to operate with the winding latch.
- 8. The bicycle control device of claim 6 wherein the release and mechanism comprises:
a first latching plate having a first latching segment formed at an circumferential edge of the first latching plate; a secon latching plate having a second latching segment formed at an circumferential edge of the second latching plate; a positioning pawl configured to engage with the first latching segment of the first latching plate; an interrupting pawl configured to engage with the second latching segment of the second latching plate; the interrupting pawl and positioning pawl alternately engaging the corresponding second latching segment and first latching segment when the pulling member operates in a release direction.
- 9. The bicycle control device of claim 8 wherein the pulling member is biased in the release direction.
- 10. The bicycle control device of claim 9 wherein the positioning pawl is biased toward the first latching segment formed on the first latching plate.
- 11. The bicycle control device of claim 10 wherein the brake control mechanism comprises:
a bracket; a brake lever base pivotably connected to the bracket; a cable hook connected to the brake lever base, the cable hook configured to receive a brake cable; wherein the operation of the control lever in the brake operating plane pivots the brake lever base on the bracket and actuates the cable hook; and wherein the support shaft is fixedly attached to the brake lever base.
- 12. A bicycle control device, comprising:
a brake control mechanism; a shift control mechanism having a pulling direction and a release direction; a control lever operatively connected to the brake control mechanism and the shift control mechanism; and wherein the control lever is operable in a first direction to operate the brake control mechanism, a second direction to operate the shift control mechanism in the pulling direction and a third direction to operate the shift control mechanism in the release direction.
- 13. The bicycle control device of claim 12 wherein the second and third directions lie along the same line.
- 14. The bicycle control device of claim 13 wherein the first direction is substantially perpendicular to the second and third directions.
- 15. A bicycle control device attachable to the bicycle handlebar, the bicycle control device comprising:
a brake control mechanism; a shift control mechanism having a pulling direction and a release direction; a control lever operatively connected to the brake control mechanism and the shift control mechanism; wherein the control lever is pivotable about a first axis to operate the brake control mechanism; and wherein the control lever is pivotable about a second axis to operate the shift control mechanism in the pulling direction and in the release direction.
- 16. The bicycle control device of claim 15 wherein the first axis is substantially perpendicular to the second axis.
- 17. The bicycle control device of claim 15 wherein the handlebar comprises a flat-bar type handlebar.
- 18. A bicycle control device, comprising:
a brake control mechanism having a bracket, a brake lever base pivotably connected to the bracket, and a cable hook connected to the brake lever base, the cable hook configured to receive a brake cable; a shift control mechanism having:
a support shaft fixedly connected to the brake lever base of the brake control mechanism; a pulling member rotatable in the pulling direction and in the release direction about the support shaft, the pulling member biased in the release direction and configured to receive a gear-shifting cable, wherein the gear-shifting cable is pulled when the pulling member is rotated in the pulling direction and released when the pulling member is rotated in the release direction; a winding mechanism comprising a winding latch and a winding pawl biased toward the winding latch and configured to cooperate with the winding latch to rotate the pulling member in a pulling direction; and a release and hold mechanism comprising a first latching plate having a first latching segment, a second latching plate having a second latching segment, a positioning pawl biased toward the first latching segment and configured to engage with the first latching segment, an interrupting pawl configured to engage with the second latching segment, wherein the interrupting pawl and positioning pawl alternately engage the corresponding second latching segment and first latching segment when the pulling member operates in the release direction; and a control lever operatively connected to the brake control mechanism and the shift control mechanism wherein the control lever is operable in a first direction to operate the brake control mechanism, a second direction to operate the shift control mechanism in the pulling direction and a third direction to operate the shift control mechanism in the release direction.
- 19. The bicycle control device of claim 18, further comprising:
a fixed plate fixedly connected to a mounting member of the brake lever base; a releasing plate biased toward the fixed plate on a first side of the fixed plate; a winding plate biased toward the fixed plate on a second side of the fixed plate, opposite the first side; an operating plate operatively connected to the releasing plate and the winding plate wherein during a release operation, the operating plate operates the release plate in the release direction and wherein during a winding operation, the operating plate operates the winding plate in the pulling direction.
- 20. The bicycle control device of claim 19 further comprising a supplemental release lever extending from the releasing plate.
- 21. A shift control mechanism, comprising:
a support shaft; a pulling member rotatable in a pulling direction and in a release direction about the support shaft, the pulling member biased in the release direction and configured to receive a gear-shifting cable, wherein the gear-shifting cable is pulled when the pulling member is rotated in the pulling direction and released when the pulling member is rotated in the release direction; a winding mechanism comprising a winding latch and a winding pawl biased toward the winding latch and configured to operate with the winding latch to rotate the pulling member in a pulling direction; a release and hold mechanism comprising a first latching plate having a first latching segment, a second latching plate having a second latching segment, a positioning pawl biased toward the first latching segment and configured to engage with the first latching segment, an interrupting pawl configured to engage with the second latching segment, wherein the interrupting pawl and positioning pawl alternately engage the corresponding second latching segment and first latching segment when the pulling member operates in the release direction; and a control lever operable in a first direction to operate the shift control mechanism in the pulling direction and a second direction to operate the shift control mechanism in the release direction.
- 22. The shift control mechanism of claim 21, further comprising:
a fixed plate fixedly connected to the control lever; a releasing plate biased toward the fixed plate from a first direction; a winding plate biased toward the fixed plate from a second direction, opposite the first direction; an operating plate operatively connected to the releasing plate and the winding plate wherein during a release operation, the operating plate operates the release plate in the release direction and wherein during a winding operation, the operating plate operates the winding plate in the pulling direction.
- 23. A method of operating a shift control mechanism and a brake control mechanism, comprising the steps of:
providing a shift control mechanism operative in a pulling direction and a release direction, a brake control mechanism and a control lever; actuating the control lever in a first direction to operate the brake control mechanism; actuating the control lever in a second direction to operate the shift control mechanism in the pulling direction; and actuating the control lever in a third direction to operate the shift control mechanism in the release direction.
- 24. The operating method of claim 23 wherein the second and third directions lie along the same line.
- 25. The operating method of claim 24 wherein the first direction is perpendicular to the second and third directions.
- 26. A method of operating a shift control mechanism and a brake control mechanism attached to a handlebar using a rider's fingers:
providing a shift control mechanism operative in a pulling direction and a release direction, a brake control mechanism having a brake lever; and actuating the shift control mechanism in the pulling direction and the release direction while maintaining the rider's fingers on the brake lever and the rider's thumb on the handlebar.
- 27. The bicycle control device of claim 1 further comprising a hydraulic brake bracket operatively connected to the control lever.
- 28. The bicycle control device of claim 27 wherein the brake control mechanism comprises:
a fluid reservoir; an outlet spaced apart from the fluid reservoir; and a piston operatively connected to the control lever, wherein the movement of the piston controls fluid communication between the reservoir and the outlet.
- 29. A bicycle control device, comprising:
a hydraulic brake control mechanism; a shift control mechanism having a pulling direction and a release direction; a control lever operatively connected to the brake control mechanism and the shift control mechanism; wherein the control lever is operable in a brake operating plane to operate the brake control mechanism; and wherein the control lever is operable in a shifting plane to operate the shift control mechanism in the pulling direction and in the release direction.
- 30. The bicycle control device of claim 10 wherein the brake control mechanism comprises:
a fluid reservoir; an outlet spaced apart from the fluid reservoir; and a piston operatively connected to the control lever, wherein the movement of the piston controls fluid communication between the reservoir and the outlet.
- 31. A bicycle control device, comprising:
a brake control mechanism having a bracket, a brake lever base pivotably connected to the bracket, a fluid reservoir, an outlet spaced apart from the fluid reservoir and a piston operatively connected to the control lever, wherein the movement of the piston controls fluid communication between the reservoir and the outlet; a shift control mechanism having:
a support shaft fixedly connected to the brake lever base of the brake control mechanism; a pulling member rotatable in the pulling direction and in the release direction about the support shaft, the pulling member biased in the release direction and configured to receive a gear-shifting cable, wherein the gear-shifting cable is wound on the pulling member when the pulling member is rotated in the pulling direction and released when the pulling member is rotated in the release direction; a winding mechanism comprising a winding latch and a winding pawl biased toward the winding latch and configured to cooperate with the winding latch to rotate the pulling member in a pulling direction; and a release and hold mechanism comprising a first latching plate having a first latching segment, a second latching plate having a second latching segment, a positioning pawl biased toward the first latching segment and configured to engage with the first latching segment, an interrupting pawl configured to engage with the second latching segment, wherein the interrupting pawl and positioning pawl alternately engage the corresponding second latching segment and first latching segment when the pulling member operates in the release direction; and a control lever operatively connected to the brake control mechanism and the shift control mechanism wherein the control lever is operable in a first direction to operate the brake control mechanism, a second direction to operate the shift control mechanism in the pulling direction and a third direction to operate the shift control mechanism in the release direction.
- 32. The shift control device of claim 6 wherein the gear-shifting cable is wound on the cable pulling member when the cable pulling member is rotated in the pulling direction.
- 33. The shift control device of claim 18 wherein the gear-shifting cable is wound on the cable pulling member when the cable pulling member is rotated in the pulling direction.
- 34. The shift control device of claim 21 wherein the gear-shifting cable is wound on the cable pulling member when the cable pulling member is rotated in the pulling direction.
- 35. A bicycle control device, comprising:
a brake control mechanism; a shift control mechanism having a pulling direction and a release direction; a control lever operatively connected to the brake control mechanism and the shift control mechanism; wherein the control lever is operable in a brake operating plane to operate the brake control mechanism; a gear-shifting cable received by the shift control mechanism at a substantially parallel relationship to the control lever, wherein the cable is operatively connected to the control lever and the shift control mechanism, and wherein the control lever operates the shift control mechanism in the pulling direction and in the release direction.
- 36. The bicycle control device of claim 19 further comprising a detent assembly engageable with a slot in the operating plate, when the operating plate is in a neutral position.
- 37. The bicycle control device of claim 36 wherein the detent assembly further comprises a spring and a ball, wherein the spring biases the ball toward the slot in the operating plate.
- 38. The bicycle control device of claim 37 wherein the ball and spring are housed in a mounting member of the brake lever base.
- 39. The bicycle control device of claim 22 further comprising a detent assembly engageable with a slot in the operating plate, when the operating plate is in a neutral position.
- 40. The bicycle control device of claim 39 wherein the detent assembly further comprises a spring and a ball, wherein the spring biases the ball toward the slot in the operating plate.
- 41. The bicycle control device of claim 40 wherein the ball and spring are housed in a mounting member of the brake lever base.
- 42. A bicycle control device, comprising:
a brake control mechanism; a shift control mechanism having an operating plate, the operating plate operable in a pulling direction and a release direction; a control lever operatively connected to the brake control mechanism and the shift control mechanism; wherein the control lever is operable in a brake operating plane to operate the brake control mechanism; wherein the control lever is operable in a shifting plane to operate the shift control mechanism in the pulling direction and in the release direction; and wherein in a neutral position, the operating plate is held stationary using a detent assembly.
- 43. A bicycle control device, comprising:
a brake control mechanism; a shift control mechanism having a pulling direction and a release direction; a bearing assembly operatively connected to the shift control mechanism to minimize friction and smoothly operate the shift control mechanism in the pulling and release directions; a control lever operatively connected to the brake control mechanism and the shift control mechanism; wherein the control lever is operable in a brake operating plane to operate the brake control mechanism; and wherein the control lever is operable in a shifting plane to operate the shift control mechanism in the pulling direction and in the release direction.
- 44. The bicycle control device of claim 42 wherein the control lever is connected to the operating plate via fasteners and is removable therefrom.
- 45. The bicycle control device of claim 44 wherein the control lever comprises a narrow portion.
- 46. A bicycle control device, comprising:
a brake control mechanism; a shift control mechanism having a pulling direction and a release direction; a control lever operatively connected to the brake control mechanism and the shift control mechanism; wherein the control lever is operable in a brake operating plane to operate the brake control mechanism; wherein the control lever is operable in a shifting plane to operate the shift control mechanism in the pulling direction and in the release direction; and a supplemental release lever operatively connected to the shift control mechanism and configured to operate the shift control mechanism in the release direction.
- 47. The bicycle control device of claim 46 wherein the supplemental release lever is detachable from the shift control mechanism.
- 48. A control lever operable in a pulling direction, releasing direction and a braking direction, the control lever comprising:
a releasing surface; a pulling surface opposite the releasing surface; a braking surface adjacent the pulling surface and the releasing surface; the pulling surface defining a first projection at a distal end thereof; the releasing surface defining a second projection at a distal end thereof; and the braking surface defining a third projection at a distal end thereof.
- 49. The control lever of claim 48 wherein the first, second and third projections are configured to facilitate the operation of the control lever.
- 50. The control lever of claim 48 further comprising a proximal end opposite the distal end, the proximal end defining a narrow portion.
- 51. The control lever of claim 48 wherein the third projection is larger than the first projection.
- 52. The control lever of claim 51 wherein the first projection is larger than the second projection.
- 53. The control lever of claim 48 wherein the first projection is larger than the second projection.
- 54. The control lever of claim 48 wherein the third projection is larger than the second projection.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation-in-part of pending U.S. application Ser. No. 09/823,287 filed Mar. 30, 2001.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09995060 |
Nov 2001 |
US |
Child |
10371687 |
Feb 2003 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09823287 |
Mar 2001 |
US |
Child |
09995060 |
Nov 2001 |
US |