Claims
- 1. A vehicle acceleration control and release device operatively connectable to a vehicle acceleration device, comprising:
a device body; a lever operatively connected to the device body and pivotable is about a first axis for controlling vehicle acceleration and pivotable about a second axis for releasing acceleration control, the first axis being perpendicular to the second axis.
- 2. The control device of claim 1, further comprising:
a pulley mounted perpendicular to the first axis, the pulley having a connection for connecting to an accelerator cable and, via a force applied by the pulley to the accelerator cable, to the vehicle acceleration device; and connecting elements connecting the pulley to the lever and rotating the pulley in common with movement of the lever, wherein,
with no force applied by a driver to the lever, the lever and the pulley rest in a neutral position calling for no acceleration from the vehicle acceleration device with no force being applied by the pulley on the accelerator cable, when the driver applies a first force in a first direction to the lever to cause the lever to move from the neutral position and pivot about the first axis, the pulley is pivoted to create a force on the accelerator cable and call for acceleration from the vehicle acceleration device, and when the lever is out of the neutral position and the driver applies a second force in a second direction perpendicular to the first direction and toward the pulley, the pulley is automatically returned to the neutral position so that the pulley calls for no acceleration from the vehicle acceleration device.
- 3. The control device of claim 1, further comprising:
a pulley mounted perpendicular to the first axis, the pulley having a connection for connecting to an accelerator cable and, via a force applied by the pulley to the accelerator cable, to the vehicle acceleration device; and connecting elements releasably connecting the pulley to the lever and rotating the pulley in common with movement of the lever, wherein,
with no force applied to the lever, the pulley and lever rest in a neutral position calling for no acceleration from the vehicle acceleration device, a first force applied in a first direction to the lever causes the lever to pivot about the first axis and causes the pulley to rotate about the first axis, the rotation of the pulley creating a force on the accelerator cable calling for acceleration from the vehicle acceleration device, with the pulley out of the neutral position, a second force in a second direction perpendicular to the first direction and toward the pulley, causes the connecting elements to disconnect the pulley from the lever and return the pulley to the neutral position, and with the lever out of the neutral position a longitudinal axis of the second axis rotates about the first axis while maintaining a perpendicular relationship to the first axis.
- 4. The control device of claim 2, wherein,
the connecting elements comprise
a pin, the pulley being connected to a first end of the pin, a plate connected to a second end of the pin, and a relief extending from the plate; the device body comprises a hole, the pin being mounted through the hole of the device body; the lever terminating at one end with a forked end having two arms and blind hole, free ends of arms including holes, the pin extending through an opening formed by the forked end and through the hole of the device body, when the driver applies the first force in the first direction to the lever to cause the lever to move from the neutral position and pivot about the first axis, the relief engages into the blind hole, with the relief engaged into the blind hole, upward and downward movements of the lever translated via the plate through the pin and the pulley to the accelerator cable, causing acceleration and deceleration.
- 5. The control device of claim 4, wherein,
the connecting elements further comprise
a first sleeve mounted between the holes of the fork arms, a sleeve pin retaining the first sleeve within the fork arms, and a first hindering spring mounted between an upper surface end of the first sleeve and an upper arm of the forked end, the first hindering spring biasing the forked end against the plate to engage the relief in the blind hole.
- 6. The control device of claim 5, wherein,
the connecting elements further comprise
a second sleeve mounted on the pin between the device body and the plate, and a second hindering spring mounted coaxially to second sleeve biasing movement of the lever toward the neutral position.
- 7. A device for automatic release of the acceleration during a braking action, comprising:
interfacing means (16) for interfacing with a vehicle acceleration device; lever means (1) for an acceleration action to control acceleration and for a braking action to release acceleration for braking, the acceleration action occurring from a force applied to the lever means in a first direction (A) and the braking action occurring from a force applied to the lever means in a second direction (B) substantially perpendicular to the first direction, coupling means (10, 11) for integrally coupling of the interfacing means with the lever means, the coupling means including releasable coupling means (6, 12) for releasably connecting the lever means to the interfacing means, the releasable coupling means including a hindering spring (8) biasing the coupling means into a coupling position; and return elastic means (13) biasing the lever means to return to the acceleration device to a neutral position.
- 8. The device according to claim 7,
wherein the lever means (1) comprises a forked end the two arms, the hindering spring (8) being mounted at ends of the two arms (3).
- 9. The device according to claim 8, wherein,
during the braking action occurring from the force applied to the lever means in the second direction (B) substantially perpendicular to the first direction, the relief (12) provided on the plate (11), decouples from the blind hole to release the interfacing means from the lever means.
- 10. An acceleration device, comprising:
an accelerator pulley; a lever coupled with said accelerator pulley, said lever to control acceleration and release acceleration for braking, the control of acceleration and the release of acceleration for braking occurring according to substantially perpendicular movements of said lever; a coupler coupling said lever with said accelerator pulley; a connector releasably disconnecting and connecting said coupler to said lever; a first spring hindering the releasable disconnecting of said coupler from said lever; and a second spring for returning said accelerator pulley to a neutral position.
- 11. The device according to claim 10, wherein said coupler comprises a pin, said pin having on one end a plate releasably coupled with said lever.
- 12. The device according to claim 10, wherein said lever is provided on one end with a two arm fork, at the ends of said arms said first spring is mounted.
- 13. The device according to claim 11, further comprising a relief provided on said plate, the relief coupling with a blind hole in said lever, to releasably couple the plate to the lever.
- 14. The control device of claim 2, wherein,
the connecting elements comprise
a pin, the pulley being connected to a first end of the pin, a plate connected to a second end of the pin, and a notch (12′) located with from the plate; the device body comprises a relief (6′), the pin being mounted through the hole of the device body; the lever terminating at one end with a forked end having two arms and blind hole, free ends of arms including holes, the pin extending through an opening formed by the forked end and through the hole of the device body, when the driver applies the first force in the first direction to the lever to cause the lever to move from the neutral position and pivot about the first axis, the relief engages into the notch, with the relief engaged into the notch, upward and downward movements of the lever translated via the plate through the pin and the pulley to the accelerator cable, causing acceleration and deceleration.
- 15. The control device of claim 14, wherein,
the connecting elements further comprise
a first sleeve mounted between the holes of the fork arms, a sleeve pin retaining the first sleeve within the fork arms, and a first hindering spring mounted between an end of the first sleeve and an arm of the forked end, the first hindering spring biasing the forked end against the plate to engage the relief in the notch.
- 16. The control device of claim 15, wherein,
the connecting elements further comprise
a second sleeve mounted around the pin between the device body and the plate, and a second hindering spring mounted coaxially to second sleeve biasing movement of the lever toward the neutral position.
Priority Claims (1)
Number |
Date |
Country |
Kind |
RM98A 000429 |
Jun 1998 |
IT |
|
Parent Case Info
[0001] This application is a continuation in part of U.S. patent application Ser. No. 09/720,455.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09720455 |
Feb 2001 |
US |
Child |
10434178 |
May 2003 |
US |