IP Library Granted Patent US 12,168,379
Granted Patent B2
US 12,168,379 · App. 17/529,122 · Granted Dec 17, 2024

Shock absorber with a bearing housing bypass assembly

Inventor: Ivan Tong (Odenton, MD)
Assignee: Fox Factory, Inc.
B60G17/0272B60G15/065B60G17/0152B60G17/016B60G2202/312B60G2400/10B60G2400/20B60G2400/25B60G2401/11B60G2401/17B60G2500/22B60G2600/22
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12,168,379
App. No.
17/529,122
Granted
Dec 17, 2024
Kind
B2
Abstract

A shock assembly is disclosed. The assembly includes a damper chamber having an outer wall with a first inner diameter (ID). A secondary chamber within the damper chamber, the secondary chamber comprising an exterior wall with an external diameter (ED) less than the ID of the outer wall to form an annular region therebetween. A damping piston coupled to a piston rod, the damping piston disposed in the secondary chamber and axially movable relative to the secondary chamber, the damping piston to bifurcate the secondary chamber into a compression side and a rebound side. A valve to control a flow of a working fluid between the annular region and the secondary chamber.

Claims (53)

1. A shock assembly comprising:

a damper chamber comprising:

an outer wall with a first inner diameter (ID);

a secondary chamber within said damper chamber, said secondary chamber comprising an exterior wall with an external diameter (ED) less than said ID of said outer wall to form an annular region therebetween;

a damping piston coupled to a piston rod, said damping piston disposed in said secondary chamber and axially movable relative to said secondary chamber, said damping piston to bifurcate said secondary chamber into a compression side and a rebound side;

a valve to control a flow of a working fluid between said annular region and said secondary chamber; and

a refill hole located within a ride zone portion of said damper chamber.

2. The shock assembly of claim 1 further comprising:

at least two orifices selected from a group consisting of:

at least one bearing bypass aperture at said rebound side of said secondary chamber, said at least one bearing bypass aperture fluidly coupled with said annular region;

at least one compression-side bypass orifice at said compression side of said secondary chamber, said at least one compression-side bypass orifice fluidly coupled with said annular region; and

at least one rebound-side bypass orifice at said rebound side of said secondary chamber, said at least one rebound-side bypass orifice fluidly coupled with said annular region.

3. The shock assembly of claim 2 further comprising:

said valve configured to allow said working fluid to flow from said annular region into said rebound side, and limit a flow of said working fluid from said rebound side and into said annular region, via said at least one rebound-side bypass orifice during a compression stroke; and

said valve located internal to said exterior wall of said secondary chamber and proximate said at least one rebound-side bypass orifice.

4. The shock assembly of claim 2 further comprising:

said valve configured to allow said working fluid to flow from said annular region into said rebound side, and limit a flow of said working fluid from said rebound side and into said annular region, via said at least one bearing bypass aperture during a compression stroke; and

said valve located internal to said exterior wall of said secondary chamber and proximate said at least one bearing bypass aperture.

5. The shock assembly of claim 2 further comprising:

said valve configured to allow said working fluid to flow from said compression side into said annular region, and limit a flow of said working fluid from said annular region into said compression side, via said at least one compression-side bypass orifice during a compression stroke.

6. The shock assembly of claim 5 further comprising:

said valve located external of said exterior wall of said secondary chamber and proximate said at least one compression-side bypass orifice.

7. The shock assembly of claim 2 further comprising:

said valve to allow said working fluid to flow from said annular region into said compression side, and limit a flow of said working fluid from said compression side and into said annular region, via said at least one compression-side bypass orifice during a rebound stroke.

8. The shock assembly of claim 7 further comprising:

said valve located internal to said exterior wall of said secondary chamber and proximate said at least one compression-side bypass orifice.

9. The shock assembly of claim 2 further comprising:

said valve configured to allow said working fluid to flow from said rebound side into said annular region, and limit a flow of said working fluid from said rebound side into said annular region, via said at least one rebound-side bypass orifice during a rebound stroke.

10. The shock assembly of claim 9 further comprising:

said valve located external of said exterior wall of said secondary chamber and proximate said at least one rebound-side bypass orifice.

11. A shock assembly comprising:

a damper chamber comprising:

an outer wall with a first inner diameter (ID);

a tubular body within said damper chamber, said tubular body comprising an exterior wall with an external diameter (ED) less than said ID of said outer wall to form an annular region therebetween; and

a fluid bypass within a portion of said annular region;

a damping piston coupled to a piston rod, said damping piston disposed in said tubular body and axially movable relative to said tubular body, said damping piston to bifurcate said tubular body into a compression side and a rebound side;

a valve to control a flow of a working fluid between said fluid bypass and said tubular body; and

a refill hole located within a ride zone portion of said damper chamber.

12. The shock assembly of claim 11 further comprising:

at least one compression-side bypass orifice at said compression side of said tubular body, said at least one compression-side bypass orifice fluidly coupled with said annular region; and

at least one rebound-side bypass orifice at said rebound side of said tubular body, said at least one rebound-side bypass orifice fluidly coupled with said annular region.

13. The shock assembly of claim 12 further comprising:

said valve configured to allow said working fluid to flow from said annular region into said rebound side, and limit a flow of said working fluid from said rebound side and into said annular region, via said at least one rebound-side bypass orifice during a compression stroke; and

said valve located internal to said exterior wall of said tubular body and proximate said at least one rebound-side bypass orifice.

14. The shock assembly of claim 12 further comprising:

said valve configured to allow said working fluid to flow from said compression side into said annular region, and limit a flow of said working fluid from said annular region into said compression side, via said at least one compression-side bypass orifice during a compression stroke; and

said valve located external of said exterior wall of said tubular body and proximate said at least one compression-side bypass orifice.

15. The shock assembly of claim 12 further comprising:

said valve to allow said working fluid to flow from said annular region into said compression side, and limit a flow of said working fluid from said compression side and into said annular region, via said at least one compression-side bypass orifice during a rebound stroke; and

said valve located internal to said exterior wall of said tubular body and proximate said at least one compression-side bypass orifice.

16. The shock assembly of claim 12 further comprising:

said valve configured to allow said working fluid to flow from said rebound side into said annular region, and limit a flow of said working fluid from said rebound side into said annular region, via said at least one rebound-side bypass orifice during a rebound stroke; and

said valve located external of said exterior wall of said tubular body and proximate said at least one rebound-side bypass orifice.

Assignments (3)
SECURITY INTEREST Recorded Oct 27, 2025
From: FOX FACTORY, INC.
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 073270/0027 →
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 17, 2021
From: TONG, IVAN
To: FOX FACTORY, INC.
Reel/Frame 058144/0201 →