Claims
- 1. An assembly for providing a variable output torque based upon a constant input force, the assembly comprising:
an actuator for providing a constant input force; and at least one link operatively coupled to the actuator and to a pivot point such the constant input force from the actuator is converted to the variable output torque at the pivot point.
- 2. The assembly according to claim 1, wherein the at least one link includes a first link, a second link, and a third link, each link having respective first and second ends, the first end of the first link is constrained to pivotal movement about a first axis, the second end of the first link is pivotally connected to the first end of the second link, the second end of the second link is pivotally connected to the first end of the third link, the second end of the third link is constrained to pivotal movement about a second axis, and an output element is fixedly connected to the third link for pivotal movement about the second axis.
- 3. The assembly according to claim 2, wherein the actuator comprises an angular actuator fixedly connected to the first end of the first link and driving the first link pivotally about the first axis.
- 4. The assembly according to claim 2, wherein the actuator comprises a linear actuator, the linear actuator having a first end pivotally mounted with respect to a fixed pivot and a second end pivotally connected to the first link at a distance from the first end of the first link, the actuator driving the first link pivotally about the first axis.
- 5. The assembly according to claim 4, wherein the actuator is pivotally connected to the second end of the first link.
- 6. The assembly according to claim 2, wherein the first link is angularly oriented relative to the second link at a first angle and the third link is angularly oriented relative to the second link at a second angle, the second angle is different than the first angle.
- 7. The assembly according to claim 2, wherein the first axis is parallel and offset with respect to the second axis.
- 8. An assembly for providing a variable output torque based upon a constant input force, the assembly comprising:
first and second links each having a first end pivotally mounted about a respective axis and each having a second end operatively coupled together an additional link, each of the first and second links having a different angular orientation relative to an imaginary line extending between the axes; and an actuator driving the first link pivotally about its axis at the constant input such that the second link is driven pivotally about its axis at the variable output.
- 9. The assembly according to claim 8, wherein the actuator comprises an angular actuator fixedly connected to the first end of the first link and driving the first link pivotally about its axis.
- 10. The assembly according to claim 8, wherein the actuator comprises a linear actuator, the linear actuator having a first end pivotally mounted with respect to a fixed pivot and a second end pivotally connected to the first link at a distance from the first end of the first link, the actuator driving the first link pivotally about its axis.
- 11. The assembly according to claim 10, wherein the actuator is pivotally connected to the second end of the first link.
- 12. The assembly according to claim 8, wherein the axes are parallel and offset with respect to one another.
- 13. An assembly for controlling the position of a throttle valve rotating about a first axis between a first position and a second position, the assembly comprising:
a motor for moving an actuator between two positions; and at least one link coupling the actuator and to the valve and imparting to the valve a first torque when the valve is in the first position and a second torque when the valve is in the second position, the second torque being less than the first torque.
- 14. The assembly according to claim 13, wherein the first and second torques are imparted to the valve while torque provided by the motor remains substantially constant.
- 15. The assembly according to claim 13, wherein the motor is a rotary motor, the assembly further comprises a first crank pivotally coupled to the actuator at a point offset from the axis of rotation of the motor, and a second crank coupled to the valve, a first end of the actuator being pivotally coupled to first crank and a second end of the actuator pivotally coupled to the second crank.
- 16. The assembly according to claim 15, wherein the second crank is fixed to the valve.
- 17. The assembly according to claim 13, wherein the actuator comprises a first link, a second link and a third link, each having respective first and second ends, the first link is coupled at the first end to the actuator and at the second end to the first end of a second link, a second end of the second link is coupled to the first end of a third link and the third link coupled at a second end to the valve.
- 18. A method for controlling the position of a throttle valve, the valve being pivotal about an axis of rotation, comprising:
applying a first torque with an actuator to the valve when the valve is in a first position; and applying a second torque with the actuator to the valve when the valve is in a second position.
- 19. The method according to claim 18, further comprising:
providing an angular actuator having an axis of rotation; and providing a link having a first end pivotally coupled to the actuator at a point offset from the actuator axis of rotation and a second end coupled to the valve at a point offset from the valve axis of rotation.
- 20. The method according to claim 20, further comprising:
providing a first crank coupling the first end of the link to the actuator; and providing a second crank coupling the second end of the link to the valve.
- 21. A method for determining the position of a valve in a throttle, wherein the valve is driven by an electric motor and a relationship has been established between the current drawn by the motor and the position of the valve, the method comprising:
measuring the current drawn by the motor; and determining the position of the valve from an established relationship between the current drawn by the motor and the position of the valve.
- 22. The method according to claim 21, further comprising:
providing the established relationship between the current drawn by the motor and the position of the valve by (a) measuring the current and the position of the valve at points in time and (b) storing the time-related values.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of the earlier filing date of U.S. Provisional Application No. 60/126,199, filed on Mar. 25, 1999, which is incorporated by reference herein in its entirety.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60126199 |
Mar 1999 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
09534009 |
Mar 2000 |
US |
Child |
10102650 |
Mar 2002 |
US |