IP Library Granted Patent US 12691721
Granted Patent B2
US 12691721 · App. 19/303,970 · Granted Jul 28, 2026

Suspension damping for a vehicle

Inventor: Tyler M. Jameson (Tucson, AZ)
Assignee: ADS Performance Group LLC
B60G17/08B60G13/08B60G2202/24B60G2204/62B60G2206/41B60G2500/104B60G2500/114B60G2600/21B60G2800/162B60G2800/916
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Quick Facts
Patent No.
US 12691721
App. No.
19/303,970
Granted
Jul 28, 2026
Kind
B2
Abstract

Present embodiments relate to suspension damping for a vehicle. More specifically, but without limitation, present embodiments relate to bypass valve assemblies which provide for adjustment of fluid bypass within the suspension damper to tune the suspension system of the vehicle.

Claims (20)

1 . A suspension damper, comprising:

an external cylinder and a piston movable within said external cylinder;

said piston having a piston rod;

an internal sleeve, positioned within said external cylinder, said internal sleeve having one or more thru holes for transfer of fluid from within said internal sleeve to between said internal sleeve and said external cylinder, and a plurality of detents disposed on said internal sleeve;

a fluid reservoir which houses a damping fluid, said fluid reservoir in fluid communication with said external cylinder by connection with first and second fluid conduits;

two or more bypass valve assemblies disposed between said internal sleeve and said external cylinder, each of said bypass valve assemblies comprising:

a fixed valve seat positioned on an exterior of said internal sleeve;

a floating valve ring; and,

an adjustable valve seat, wherein a position of said adjustable valve seat may be varied to adjust a gap between said adjustable valve seat and said floating valve ring.

2 . The suspension damper of claim 1 , said internal sleeve further comprising a fixed detent for positioning of said fixed valve seat.

3 . The suspension damper of claim 1 , said plurality of detents comprising a helical arrangement to provide differing axial spacing between said adjustable valve seat and said floating valve ring.

4 . The suspension damper of claim 3 , said thru hole positioned between said floating valve ring and said adjustable valve seat.

5 . The suspension damper of claim 4 , said adjustable valve seat being rotatable to different positions of said helical arrangements of said plurality of detents.

6 . The suspension damper of claim 5 , said different positions changing said axial spacing between said adjustable valve seat and said floating valve ring.

7 . The suspension damper of claim 1 , said adjustable valve seat and said floating valve ring each having an axially oriented spring seat.

8 . The suspension damper of claim 7 , further comprising a spring disposed in said axially oriented spring seat between said adjustable valve seat and said floating valve ring.

9 . The suspension damper of claim 8 , wherein said two or more bypass valve assemblies are spaced apart axially between said external cylinder and said internal sleeve.

10 . The suspension damper of claim 9 , said two or more bypass valve assemblies being spaced apart axially along said internal sleeve.

11 . The suspension damper of claim 1 , each of said two or more bypass valve assemblies allowing variation of flow rate therethrough.

12 . The suspension damper of claim 11 , said two or more bypass valve assemblies allowing for tuning of bypass flow at different locations along an axial length of said internal sleeve to change the force needed to move said piston.