IP Library Patent Application 11394324
Patent Application
App. No. 11/394,324

Pump mechanism for a vertical seat lift assembly

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Quick Facts
Patent No.
US None
App. No.
11/394,324
Abstract

A pump mechanism for a vertical seat lift assembly includes a control handle pivotable in each direction from a neutral position, a stationary housing assembly, a rotatable drive member for operating the vehicle lift assembly, a clutch assembly operably connecting the drive member to the housing assembly to selectively permit rotation of the drive member relative to the housing assembly in either direction, and control assembly operably connecting the control handle to the clutch assembly to selectively rotate the drive member. The control assembly is located radially outward of the clutch assembly so that the control assembly does not increase the thickness of the pump mechanism.

Claims (44)

1 . A pump mechanism for a vertical seat lift assembly comprising, in combination:

a control handle pivotable in each direction from a neutral position;

a stationary housing assembly;

a rotatable drive member for operating the vehicle lift assembly;

a clutch assembly operably connecting the drive member to the housing assembly to selectively permit rotation of the drive member relative to the housing assembly in either direction;

control assembly operably connecting the control handle to the clutch assembly to selectively rotate the drive member; and

wherein the control assembly is located radially outward of the clutch assembly so that the control assembly does not increase the thickness of the pump mechanism.

2 . The pump mechanism according to claim 1 , wherein the clutch assembly includes at least two rolling elements located between a rubbing surface fixed to the housing and first and second angled engagement surfaces fixed to the drive member for rotation therewith so that rotation of the drive member in one direction is prevented by engagement of one of the rolling elements with the first angled engagement surface and rotation of the drive member in the other direction is prevented by engagement of the other rolling element with the second angled engagement surface.

3 . The pump mechanism according to claim 2 , wherein the rolling elements comprise rollers.

4 . The pump mechanism according to claim 2 , wherein the clutch assembly further comprises spring members resiliently biasing the rolling elements into engagement with the first and second angled engagement surfaces.

5 . The pump mechanism according to claim 4 , wherein the spring members comprise resilient rollers.

6 . The pump mechanism according to claim 2 , wherein the rubbing surface is located radially inward of the first and second angled engagement surfaces.

7 . The pump mechanism according to claim 2 , wherein the clutch assembly further includes a rotatable position controller having tabs adjacent the rolling elements so that rotation of the position controller in one direction disengages the one of the rolling elements engaged with the first angled engagement surface and rotation of the position controller in the other direction disengages the other rolling element from the second angled engagement surface.

8 . The pump mechanism according to claim 7 , wherein the control assembly includes a handle support secured to the control handle and at least control two rolling elements located between an engagement surface of the position controller and first and second angled control engagement surfaces fixed to the handle support for rotation therewith so that rotation of the handle support in one direction rotates the position controller in one direction and rotation of the handle support in the other direction rotates the position controller in the other direction.

9 . The pump mechanism according to claim 8 , wherein the control rolling elements comprise rollers.

10 . The pump mechanism according to claim 8 , wherein the clutch assembly further comprises control spring members resiliently biasing the control rolling elements into engagement with the first and second angled control engagement surfaces.

11 . The pump mechanism according to claim 10 , wherein the control spring members comprise helical coil compression springs.

12 . A pump mechanism for a vertical seat lift assembly comprising, in combination:

a control handle pivotable in each direction from a neutral position;

a stationary housing assembly;

a rotatable drive member for operating the vehicle lift assembly;

a clutch assembly operably connecting the drive member to the housing assembly to selectively permit rotation of the drive member relative to the housing assembly in either direction;

wherein the clutch assembly includes at least two rolling elements located between a rubbing surface fixed to the housing and first and second angled engagement surfaces fixed to the drive member for rotation therewith so that rotation of the drive member in one direction is prevented by engagement of one of the rolling elements with the first angled engagement surface and rotation of the drive member in the other direction is prevented by engagement of the other rolling element with the second angled engagement surface;

wherein the clutch assembly further includes a rotatable position controller having tabs adjacent the rolling elements so that rotation of the position controller in one direction disengages the one of the rolling elements engaged with the first angled engagement surface and rotation of the position controller in the other direction disengages the other rolling element from the second angled engagement surface;

control assembly operably connecting the control handle to the clutch assembly to selectively rotate the drive member; and

wherein the control assembly includes a handle support secured to the control handle and at least control two rolling elements located between an engagement surface of the position controller and first and second angled control engagement surfaces fixed to the handle support for rotation therewith so that rotation of the handle support in one direction rotates the position controller in one direction and rotation of the handle support in the other direction rotates the position controller in the other direction.

13 . The pump mechanism according to claim 12 , wherein the rolling elements comprise rollers.

14 . The pump mechanism according to claim 12 , wherein the clutch assembly further comprises spring members resiliently biasing the rolling elements into engagement with the first and second angled engagement surfaces.

15 . The pump mechanism according to claim 14 , wherein the spring members comprise resilient rollers.

16 . The pump mechanism according to claim 12 , wherein the control assembly is located radially outward of the clutch assembly so that the control assembly does not increase the thickness of the pump mechanism.

17 . The pump mechanism according to claim 12 , wherein the control rolling elements comprise rollers.

18 . The pump mechanism according to claim 12 , wherein the clutch assembly further comprises control spring members resiliently biasing the control rolling elements into engagement with the first and second angled control engagement surfaces.

19 . The pump mechanism according to claim 18 , wherein the control spring members comprise helical coil compression springs.

20 . A pump mechanism for a vertical seat lift assembly comprising, in combination:

a control handle pivotable in each direction from a neutral position;

a stationary housing assembly;

a rotatable drive member for operating the vehicle lift assembly;

a clutch assembly operably connecting the drive member to the housing assembly to selectively permit rotation of the drive member relative to the housing assembly in either direction;

wherein the clutch assembly includes at least two rolling elements located between a rubbing surface fixed to the housing and first and second angled engagement surfaces fixed to the drive member for rotation therewith so that rotation of the drive member in one direction is prevented by engagement of one of the rolling elements with the first angled engagement surface and rotation of the drive member in the other direction is prevented by engagement of the other rolling element with the second angled engagement surface;

wherein the clutch assembly further includes a rotatable position controller having tabs adjacent the rolling elements so that rotation of the position controller in one direction disengages the one of the rolling elements engaged with the first angled engagement surface and rotation of the position controller in the other direction disengages the other rolling element from the second angled engagement surface;

wherein the rubbing surface is located radially inward of the first and second angled engagement surfaces;

control assembly operably connecting the control handle to the clutch assembly to selectively rotate the drive member;

wherein the control assembly includes a handle support secured to the control handle and at least control two rolling elements located between an engagement surface of the position controller and first and second angled control engagement surfaces fixed to the handle support for rotation therewith so that rotation of the handle support in one direction rotates the position controller in one direction and rotation of the handle support in the other direction rotates the position controller in the other direction; and

wherein the control assembly is located radially outward of the clutch assembly so that the control assembly does not increase the thickness of the pump mechanism.

Assignments (7)
RELEASE OF SECURITY INTEREST Recorded Feb 10, 2010
From: WILMINGTON TRUST COMPANY
To: DURA GLOBAL TECHNOLOGIES, INC.; ATWOOD MOBILE PRODUCTS, INC.; DURA AUTOMOTIVE SYSTEMS CABLE OPERATIONS, INC.; DURA OPERATING CORP.
Reel/Frame 023915/0548 →
RELEASE OF SECURITY INTEREST IN PATENTS AS RECORDE Recorded Jan 26, 2010
From: GENERAL ELECTRIC CAPITAL CORPORATION, AS COLLATERAL AGENT
To: DURA GLOBAL TECHNOLOGIES, INC.; ATWOOD MOBILE PRODUCTS, INC.; DURA AUTOMOTIVE SYSTEMS CABLE OPERATIONS, INC.; DURA OPERATING CORP.
Reel/Frame 023963/0961 →
SECURITY AGREEMENT Recorded Apr 1, 2009
From: DURA GLOBAL TECHNOLOGIES, INC.; ATWOOD MOBILE PRODUCTS, INC. (AN ILLINOIS CORPORATION); DURA OPERATING CORP. (A DELAWARE CORPORATION); DURA AUTOMOTIVE SYSTEMS CABLE OPERATIONS, INC. (A DELAWARE CORPORATION)
To: GENERAL ELECTRIC CAPITAL CORPORATION, AS AGENT
Reel/Frame 022482/0336 →
SECOND LIEN PATENT SECURITY AGREEMENT Recorded Sep 29, 2008
From: DURA GLOBAL TECHNOLOGIES, INC.
To: WILMINGTON TRUST COMPANY, AS SECOND LIEN COLLATERAL AGENT
Reel/Frame 021590/0917 →
TERMINATION AND RELEASE Recorded Feb 8, 2008
From: GOLDMAN SACHS CREDIT PARTNERS, L.P., AS COLLATERAL AGRENT
To: DURA OPERATING CORP.; UNIVERSAL TOOL & STAMPING COMPANY, INC.; DURA AUTOMOTIVE SYSTEMS CABLE OPERATIONS, INC.; DURA GLOBAL TECHNOLOGIES, INC.; ATWOOD MOBILE PRODUCTS, INC.; DURA AUTOMOTIVE SYSTEMS, INC.
Reel/Frame 020478/0674 →
SECURITY AGREEMENT Recorded Nov 10, 2006
From: DURA AUTOMOTIVE SYSTEMS, INC.; ATWOOD MOBILE PRODUCTS, INC.; UNIVERSAL TOOL & STAMPING COMPANY, INC.; DURA OPERATING CORP.; DURA GLOBAL TECHNOLOGIES, INC.; DURA AUTOMOTIVE SYSTEMS CABLE OPERATIONS, INC.; DURA AUTOMOTIVE SYSTEMS (CANDA) LTD.; TRIDENT AUTOMOTIVE CANADA INC.
To: GOLDMAN SACHS CREDIT PARTNERS, LP
Reel/Frame 018654/0176 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 5, 2006
From: CABRIT, SEBASTIEN; BOUZID, FAROUK; TERRENOIRE, LUC
To: DURA GLOBAL TECHNOLOGIES, INC.
Reel/Frame 017948/0299 →