Lift mechanism systems and methods
US-9687073-B2 · Jun 27, 2017 · US
US10267451B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10267451-B2 |
| Application number | US-201615165924-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 26, 2016 |
| Priority date | May 20, 2003 |
| Publication date | Apr 23, 2019 |
| Grant date | Apr 23, 2019 |
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The invention includes a display positioning assembly comprising a support, a display supported by the support, and a balance mechanism carried by the display and operatively connected to the support. The invention also includes an article for selectively exposing a display comprising a generally planar support surface having a first side and a second side opposite the first side. A balance mechanism operatively connected to a display may be positionable between a storage position proximate the first side of the generally planar support surface and an exposed position proximate the second side of the generally planar support surface. The invention also includes an assembly for arresting the free fall of an object. The assembly may comprise an outer slide in sliding or rolling engagement with an inner slide, and a brake comprising at least one pivot member may be coupled to the inner slide.
Opening claim text (preview).
What is claimed is: 1. A lift mechanism, comprising: a fixed component having proximal and distal ends; a movable component disposed in sliding or rolling engagement with the fixed component; a wheel pivotally supported by one of the components about a pivot axis, the wheel comprising a pulley member and a cam member with an eccentric shape; a first cable connecting the cam member of the wheel to a spring for biasing the wheel to rotate in a first direction; a spring plate disposed between one or more coils of the spring, wherein the spring plate is coupled to one of the first cable, the movable component, or the fixed component; and a second cable connecting the pulley member to one of the components so that the wheel rotates when the movable component is moved relative to the fixed component. 2. The lift mechanism of claim 1 , wherein the spring comprises an extension spring. 3. The lift mechanism of claim 1 , wherein the cam member is shaped and positioned so that a torque applied to the wheel by the first cable is substantially constant while a force applied to the cam member by the first cable varies. 4. The lift mechanism of claim 1 , wherein the cam member is shaped and positioned so that a torque applied to the wheel by the first cable varies. 5. The lift mechanism of claim 1 , wherein the cam member is shaped so that the bias urging the wheel to rotate in the first direction is substantially constant or varied as an output of the spring changes. 6. The lift mechanism of claim 1 , wherein an effective radius of the cam member varies as a function of the angular orientation of the wheel. 7. The lift mechanism of claim 1 , wherein an effective radius of the cam member varies as a function of an output of the spring. 8. The lift mechanism of claim 1 , wherein the apparatus includes an adjustment system adapted to vary an output of the spring. 9. The lift mechanism of claim 1 , wherein the wheel is pivotally supported by the fixed component and the spring has an end fixed with respect to the fixed component. 10. The apparatus of claim 1 , wherein the first cable includes a tensile polymer. 11. The apparatus of claim 1 , wherein the spring has a first end with a first spring diameter and a second end with a second spring diameter, the first spring diameter being smaller than the second spring diameter, wherein the first cable is coupled to the spring by a bullet mechanism having a larger diameter than a diameter of the first cable that is configured to contact an inner surface of the spring at the first end. 12. The apparatus of claim 1 , wherein the engagement includes a contracted configuration in which the movable component is disposed a minimum distance from the fixed component distal end and an expanded configuration in which the movable component is disposed a maximum distance from the fixed component distal end, wherein the wheel has a rotational range of travel from a first angular orientation corresponding to the expanded configuration of the fixed and movable components to a second angular orientation corresponding to the contracted configuration of the fixed and movable components, and wherein the cam member is shaped and positioned so that the first cable contacts the cam member at a first intersection disposed a first distance from the pivot axis when the wheel is disposed in the first angular orientation and the first cable contacts the cam member at a second intersection disposed a second distance from the pivot axis when the wheel is disposed in the second angular orientation, the first distance being different than the second distance. 13. An apparatus, comprising: a support surface; one or more legs configured to support the support surface; and a lift mechanism positioned under the support surface, including: a fixed component having proximal and distal ends, a movable component disposed in sliding or rolling engagement with the fixed component, a wheel pivotally supported by one of the components about a pivot axis, the wheel comprising a pulley member and a cam member with an eccentric shape, a first cable connecting the cam member of the wheel to a spring for biasing the wheel to rotate in a first direction, a spring plate disposed between one or more coils of the spring, wherein the spring plate is coupled to one of the first cable, the movable component, or the fixed component, and a second cable connecting the pulley member to one of the components so that the wheel rotates when the movable component is moved relative to the fixed component. 14. The apparatus of claim 13 , wherein the spring comprises an extension spring. 15. The apparatus of claim 13 , wherein the cam member is shaped and positioned so that a torque applied to the wheel by the first cable is substantially constant while a force applied to the cam member by the first cable varies. 16. The apparatus of claim 13 , wherein the cam member is shaped and positioned so that a torque applied to the wheel by the first cable varies. 17. The apparatus of claim 13 , wherein the cam member is shaped so that the bias urging the wheel to rotate in the first direction is substantially constant or varied as an output of the spring changes. 18. The apparatus of claim 13 , wherein an effective radius of the cam member varies as a function of the angular orientation of the wheel. 19. The apparatus of claim 13 , wherein an effective radius of the cam member varies as a function of an output of the spring. 20. The apparatus of claim 13 , wherein the apparatus includes an adjustment system adapted to vary an output of the spring. 21. The apparatus of claim 13 , wherein the wheel is pivotally supported by the fixed component and the spring has an end fixed with respect to the fixed component. 22. The apparatus of claim 13 , wherein the first cable includes a tensile polymer. 23. The apparatus of claim 13 , wherein the spring has a first end with a first spring diameter and a second end with a second spring diameter, the first spring diameter being smaller than the second spring diameter, wherein the first cable is coupled to the spring by a bullet mechanism having a larger diameter than a diameter of the first cable that is configured to contact an inner surface of the spring at the first end. 24. The apparatus of claim 13 , wherein the engagement includes a contracted configuration in which the movable component is disposed a minimum distance from the fixed component distal end and an expanded configuration in which the movable component is disposed a maximum distance from the fixed component distal end, wherein the wheel has a rotational range of travel from a first angular orientation corresponding to the expanded configuration of the fixed and movable components to a second angular orientation corresponding to the contracted configuration of the fixed and movable components, and wherein the cam member is shaped and positioned so that the first cable contacts the cam member at a first intersection disposed a first distance from the pivot axis when the wheel is disposed in the first angular orientation and the first cable contacts the cam member at a second intersection disposed a second distance from the pivot axis when the wheel is disposed in the second angular orientation, the first distance being different than the second distance. 25. A lift mechanism, comprising: a fixed component having proximal and distal ends; a
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