Claims
- 1. A ramp assembly comprising:
a frame; a ramp platform mounted in the frame defining trailing and forward ends and extendible and retractable along a length of the frame between stowed and deployed positions, the ramp platform being arranged when deployed such that the forward end extends down toward the ground; a first locking mechanism that locks the ramp platform into a fully deployed position; a second locking mechanism that locks the ramp platform into a fully stowed position; a reciprocating mechanism for extending and retracting the ramp platform along a length of the frame between the stowed and deployed positions; and a time delay circuit associated with the reciprocating mechanism to delay actuation of the reciprocating mechanism for a predetermined period of time.
- 2. The ramp assembly of claim 1, wherein the first locking mechanism comprises a first latch plate attached to the frame and a first latch arm operatively associated with the ramp platform to extend and retract with the ramp platform and configured and arranged so as to engage and lock onto the first latch plate when the ramp platform is in the fully deployed position.
- 3. The ramp assembly of claim 2, wherein the first latch plate is adjustable along a longitudinal axis of the frame.
- 4. The ramp assembly of claim 2, wherein the first locking mechanism comprises a second latch plate attached to the frame and a second latch arm operatively associated with the ramp platform to extend and retract with the ramp platform and configured and arranged so as to engage and lock onto the second latch plate when the ramp platform is in the fully deployed position.
- 5. The ramp assembly of claim 4, wherein the first and second latch plates are adjustable along a longitudinal axis of the frame.
- 6. The ramp assembly of claim 4, wherein the second locking mechanism comprises a stowed latch plate attached to the frame that is engaged by and locked onto by the second latch arm when the ramp platform is in the fully stowed position.
- 7. The ramp assembly of claim 4, further comprising a coupling linking movement of the first and second latch arms.
- 8. The ramp assembly of claim 7, further comprising a spring arranged to bias the first and second latch arms to engage and lock onto the first and second latch plates, respectively.
- 9. The ramp assembly of claim 8, further comprising a solenoid actuator operatively associated with the second latch arm so that actuation of the solenoid actuator disengages the first and second latch arms from the first and second latch plates, respectively, in the fully deployed position, and disengages the second latch arm from the stowed latch plate in the fully stowed position.
- 10. The ramp assembly of claim 9, wherein the time delay circuit is configured to delay the actuation of the reciprocating mechanism until after actuation of the solenoid actuator, so that the first and second latch arms are fully disengaged from the first and second latch plates, respectively, before actuation of the reciprocating mechanism in the fully deployed position, and so that the second latch arm is fully disengaged from the stowed latch plate before actuation of the reciprocating mechanism in the fully stowed position.
- 11. The ramp assembly of claim 10, wherein the time delay circuit is further configured to simultaneously deactuate the solenoid actuator and actuate the reciprocating mechanism.
- 12. The ramp assembly of claim 2, wherein the second locking mechanism comprises a stowed latch plate attached to the frame that is engaged by and locked onto by the first latch arm when the ramp platform is in the fully stowed position.
- 13. The ramp assembly of claim 12, further comprising a spring arranged to bias the first latch arm to engage and lock onto the first latch plate.
- 14. The ramp assembly of claim 13, further comprising a solenoid actuator operatively associated with the first latch arm so that actuation of the solenoid actuator disengages the first latch arm from the first latch plate in the fully deployed position, and disengages the first latch arm from the stowed latch plate in the fully stowed position.
- 15. The ramp assembly of claim 14, wherein the time delay circuit is configured to delay the actuation of the reciprocating mechanism until after actuation of the solenoid actuator, so that the first latch arm is fully disengaged from the first latch plate before actuation of the reciprocating mechanism in the fully deployed position, and so that the first latch arm is fully disengaged from the stowed latch plate before actuation of the reciprocating mechanism in the fully stowed position.
- 16. The ramp assembly of claim 15, wherein the time delay circuit is further configured to simultaneously deactuate the solenoid actuator and actuate the reciprocating mechanism.
- 17. The ramp assembly of claim 1, further comprising a single manual release mechanism, actuation of which (1) releases the first locking mechanism when the ramp assembly is in the fully deployed position and (2) releases the second locking mechanism when the ramp platform is in the fully stowed position.
- 18. The ramp assembly of claim 17, wherein the first locking mechanism comprises a first latch plate attached to the frame and a first latch arm operatively associated with the ramp platform to extend and retract with the ramp platform and configured and arranged so as to engage and lock onto the first latch plate when the ramp platform is in the fully deployed position.
- 19. The ramp assembly of claim 18, wherein the first latch plate is adjustable along the longitudinal axis of the frame.
- 20. The ramp assembly of claim 18, wherein the first locking mechanism comprises a second latch plate attached to the frame and a second latch arm operatively associated with the ramp platform to extend and retract with the ramp platform and configured and arranged so as to engage and lock onto the second latch plate when the ramp platform is in the fully deployed position.
- 21. The ramp assembly of claim 20, wherein the first and second latch plates are adjustable along a longitudinal axis of the frame.
- 22. The ramp assembly of claim 20, wherein the second locking mechanism comprises a stowed latch plate attached to the frame that is engaged by and locked onto by the second latch arm when the ramp platform is in the fully stowed position.
- 23. The ramp assembly of claim 22, further comprising a coupling linking movement of the first and second latch arms.
- 24. The ramp assembly of claim 23, wherein the single manual release mechanism comprises a handle (1) operatively associated with the first latch arm when the ramp platform is in the deployed position such that actuation of the handle causes the first and second latch arms to release the first and second latch plates, and (2) operatively associated with the first latch arm when the ramp platform is in the stowed position such that actuation of the handle causes the second latch arm to release the stowed latch plate.
- 25. The ramp assembly of claim 24, further comprising a spring arranged to bias the first and second latch arms to engage and lock onto the first and second latch plates, respectively.
- 26. The ramp assembly of claim 22, further comprising a solenoid actuator operatively associated with the second latch arm so that actuation of the solenoid actuator disengages the first and second latch arms from the first and second latch plates, respectively, in the fully deployed position, and disengages the second latch arm from the stowed latch plate in the fully stowed position.
- 27. The ramp assembly of claim 2, wherein the second locking mechanism comprises a stowed latch plate attached to the frame that is engaged by and locked onto by a second latch arm when the ramp platform is in the fully stowed position.
- 28. The ramp assembly of claim 27, wherein the first and second latch arms each comprise a single latch arm.
- 29. The ramp assembly of claim 27, further comprising a solenoid actuator operatively associated with the first and second latch arms so that actuation of the solenoid actuator disengages the first latch arm from the first latch plate in the fully deployed position, and disengages the second latch arm from the stowed latch plate in the fully stowed position.
- 30. The ramp assembly of claim 29, wherein the time delay circuit configured to delay the actuation of the reciprocating mechanism until after actuation of the solenoid actuator, so that the first latch arm is fully disengaged from the first latch plate before actuation of the reciprocating mechanism in the fully deployed position, and so that the second latch arm is fully disengaged from the stowed latch plate before actuation of the reciprocating mechanism in the fully stowed position.
- 31. The ramp assembly of claim 30, wherein the time delay circuit is further configured to simultaneously deactuate the solenoid actuator and actuate the reciprocating mechanism.
- 32. A ramp assembly comprising:
a frame; a ramp platform mounted in the frame defining trailing and forward ends and extendible and retractable along a length of the frame between stowed and deployed positions, the ramp platform being arranged when deployed such that the forward end extends down toward the ground; a first locking mechanism actuatable between a locked position, wherein the ramp platform is locked into a fully deployed position, and an unlocked position; a release mechanism that unlocks the ramp platform in the fully deployed position and unlocks the ramp platform in the fully stowed position; a reciprocating mechanism for extending and retracting the ramp platform along a length of the frame between the stowed and deployed positions; and a time delay circuit associated with the reciprocating mechanism and configured to selectively delay actuation of the reciprocating mechanism until the first locking mechanism is in the unlocked position.
- 33. The ramp assembly of claim 32, wherein the first locking mechanism comprises a first latch plate attached to the frame and a first latch arm operatively associated with the ramp platform to extend and retract with the ramp platform and configured and arranged so as to engage and lock onto the first latch plate when the ramp platform is in the fully deployed position.
- 34. The ramp assembly of claim 33, wherein the first locking mechanism comprises a second latch plate attached to the frame and a second latch arm operatively associated with the ramp platform to extend and retract with the ramp platform and configured and arranged so as to engage and lock onto the second latch plate when the ramp platform is in the fully deployed position.
- 35. The ramp assembly of claim 33, further comprising a second locking mechanism that locks the ramp platform into a fully stowed position, wherein the second locking mechanism comprises a stowed latch plate attached to the frame that is engaged by and locked onto by a second latch arm when the ramp platform is in the fully stowed position.
- 36. The ramp assembly of claim 35, wherein the release mechanism comprises a cam lever having a camming surface, the camming surface configured to engage the first latch arm when the ramp platform is in the fully deployed position so that when the cam lever is actuated the first latch arm disengages the first latch plate.
- 37. The ramp assembly of claim 36, further comprising a cable attached to the cam lever and configured and arranged so as to be operatively associated with the second latch arm when the ramp assembly is in the stowed position, and wherein actuation of the cam lever causes the cable to disengage the second latch arm from the stowed latch plate.
REFERENCE TO RELATED APPLICATIONS
[0001] This is a continuation application of U.S. patent application Ser. No. 09/563,774, filed May 2, 2000, now U.S. Pat. No. 6,409,458, issued Jun. 25, 2002, which is a continuation of U.S. patent application Ser. No. 09/164,434, now abandoned, filed Sep. 30, 1998, which is a continuation-in-part of U.S. patent application Ser. No. 09/060,948, filed Apr. 15, 1998, now U.S. Pat. No. 6,186,733, issued Feb. 13, 2001, all of which are hereby expressly incorporated by reference.
Continuations (2)
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Number |
Date |
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09563774 |
May 2000 |
US |
Child |
10180469 |
Jun 2002 |
US |
Parent |
09164434 |
Sep 1998 |
US |
Child |
09563774 |
May 2000 |
US |
Continuation in Parts (1)
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09060948 |
Apr 1998 |
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09164434 |
Sep 1998 |
US |