IP Library Granted Patent US 10,618,369
Granted Patent B2
US 10,618,369 · App. 16/395,012 · Granted Apr 14, 2020

Methods and apparatus for suspending vehicles

Inventors: Andrew Laird (Los Gatos, CA); Sante M. Pelot (Freedom, CA); William M. Becker (Aptos, CA); Dennis K. Wootten (Milford, NH)
Assignee: Fox Factory, Inc.
B60G17/052B60G11/27B60G17/048B62K25/08F16F9/0209F16F9/0236F16F9/063F16F9/46F16F9/48F16F9/486B60G2202/152B60G2300/12B60G2500/2064B60G2500/22B60G2600/21
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Quick Facts
Patent No.
US 10,618,369
App. No.
16/395,012
Granted
Apr 14, 2020
Kind
B2
Abstract

A method and apparatus for a shock absorber for a vehicle having a gas spring with first and second gas chambers, wherein the first chamber is utilized during a first travel portion of the shock absorber and the first and second chambers are both utilized during a second portion of travel. In one embodiment, a travel adjustment assembly is configured to selectively communicate a first gas chamber with a negative gas chamber.

Claims (26)

1. A pressure-sensitive shock absorber for a vehicle comprising:

a gas spring having a main gas chamber and a secondary gas chamber, said secondary gas chamber separated from said main gas chamber by a sealed positionally-fixed bulkhead, a volume of said secondary gas chamber not altered by movement of said pressure-sensitive shock absorber, a pressure within said second chamber not altered by said movement of said pressure-sensitive shock absorber until a pressure in said main gas chamber reaches a preset valve cracking pressure;

a first valve disposed along a first fluid path coupling said main gas chamber and said secondary gas chamber, said first valve having an open position which allows fluid to flow from said main gas chamber to said secondary gas chamber when said pressure in said main gas chamber reaches said preset valve cracking pressure, said first valve having a closed position which prevents said fluid from flowing from said main gas chamber to said secondary gas chamber;

a user-operable adjustment rod coupled with said first valve, said user-operable adjustment rod configured to control a compression placed on said first valve to select said preset valve cracking pressure; and

a second valve disposed along a second fluid path coupling said main gas chamber and said secondary gas chamber, said second valve having an open position which allows said fluid to flow from said secondary gas chamber to said main gas chamber, said second valve having a closed position which prevents said fluid from flowing from said secondary gas chamber to said main gas chamber, said main gas chamber and said secondary gas chamber operable in combination to increase a range of travel for said pressure-sensitive shock absorber during which said pressure-sensitive shock absorber achieves a linear portion of a spring curve.

2. The pressure-sensitive shock absorber of claim 1 wherein said secondary gas chamber has an annular shape.

3. The pressure-sensitive shock absorber of claim 1 further comprising:

a spring coupled with said first valve and said user-operable adjustment rod, said spring biasing said first valve in said closed position.

4. The pressure-sensitive shock absorber of claim 1 wherein said user-operable adjustment rod controls an amount of compression applied to said spring.

5. The pressure-sensitive shock absorber of claim 1 further comprising:

a spring coupled with said second valve, said spring biasing said second valve in said closed position.

6. The pressure-sensitive shock absorber of claim 1 wherein said first valve and said second valve are integrated into a common assembly.

7. The pressure-sensitive shock absorber of claim 1 wherein said first valve at least partially surrounds said second valve.

8. A pressure-sensitive air shock comprising:

a main gas chamber at a first pressure;

a secondary gas chamber at a second pressure, said secondary gas chamber separated from said main gas chamber by a sealed positionally-fixed bulkhead, a volume of said secondary gas chamber not altered by movement of said pressure-sensitive air shock, a pressure within said second chamber not altered by said movement of said pressure-sensitive shock absorber until a pressure in said main gas chamber reaches a preset valve cracking pressure;

a first valve disposed along a first fluid path coupling said main gas chamber and said secondary gas chamber, said first valve having an open position which allows fluid to flow from said main gas chamber to said secondary gas chamber, said first valve having a closed position which prevents said fluid from flowing from said main gas chamber to said secondary gas chamber, said first valve moving to said open position provided said first pressure reaches said preset valve cracking pressure;

a user-operable adjustment rod coupled with said first valve, said user-operable adjustment rod configured to control a compression placed on said first valve to adjust a value of said preset valve cracking pressure at which said first valve moves from said closed position to said open position;

a spring coupled with said first valve and said user-operable adjustment rod, said spring biasing said first valve in said closed position said user-operable adjustment rod controls an amount of compression applied to said spring; and

a second valve disposed along a second fluid path coupling said main gas chamber and said secondary gas chamber, said second valve having an open position which allows said fluid to flow from said secondary gas chamber to said main gas chamber, said second valve having a closed position which prevents said fluid from flowing from said secondary gas chamber to said main gas chamber, said main gas chamber and said secondary gas chamber operable in combination to increase a range of travel for said pressure-sensitive shock absorber during which said pressure-sensitive shock absorber achieves a linear portion of a spring curve, wherein said second valve moves to said open position provided said second pressure reaches a pressure difference with respect to said first pressure.

9. The pressure-sensitive air shock of claim 8 wherein said secondary gas chamber has an annular shape.

10. The pressure-sensitive air shock of claim 8 wherein said preset valve cracking pressure is set during manufacture of said pressure-sensitive air shock.

11. The pressure-sensitive air shock of claim 8 further comprising:

a spring coupled with said second valve, said spring biasing said second valve in said closed position.

12. The pressure-sensitive air shock of claim 8 wherein said first valve and said second valve are integrated into a common assembly.

13. The pressure-sensitive air shock of claim 8 wherein said first valve at least partially surrounds said second valve.

Assignments (5)
SECURITY INTEREST Recorded Oct 27, 2025
From: FOX FACTORY, INC.
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 073270/0027 →
RELEASE OF SECURITY INTEREST Recorded Apr 13, 2022
From: BANK OF AMERICA, N.A.
To: FOX FACTORY, INC.
Reel/Frame 059588/0805 →
SECURITY INTEREST Recorded Apr 5, 2022
From: FOX FACTORY, INC.
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 059616/0435 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 10, 2020
From: LAIRD, ANDREW; PELOT, SANTE M.; BECKER, WILLIAM M.; WOOTTEN, DENNIS K.
To: FOX FACTORY, INC.
Reel/Frame 054377/0847 →
PATENT SECURITY AGREEMENT Recorded Mar 13, 2020
From: FOX FACTORY, INC.
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 052163/0728 →
Continuity (8)
Continuation 15597875 · May 17, 2017
Continuation 14849143 · Sep 9, 2015
Continuation 13751879 · Jan 28, 2013
Continuation In Part 12407610 · Mar 19, 2009
Provisional Application 61591565 · Jan 27, 2012
Provisional Application 61157541 · Mar 4, 2009
Provisional Application 61038015 · Mar 19, 2008
Related Publication 20190248204A1 · Aug 15, 2019