IP Library › Granted Patent US 12,344,345
Granted Patent B2
US 12,344,345 · App. 18/535,901 · Granted Jul 1, 2025

Suspension handlebar assembly and stem for bicycle

Inventor: Christopher William Huber (San Jose, CA)
B62K21/14B62K21/12B62K21/20B62K21/22
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Quick Facts
Patent No.
US 12,344,345
App. No.
18/535,901
Granted
Jul 1, 2025
Kind
B2
Abstract

A bicycle handlebar stem or stem/handlebar assembly has an inclined linear travel approximately 45 degrees from horizontal. This inclined path mimics a rider's natural arm inclination and pitching moment. 45 degrees is nearly ideal for most dropped bar road bicycles but different style bicycles may have an ideal angle between 30 and 60 degrees.

Claims (31)

1. A suspension handlebar assembly, comprising:

a handlebar;

a slider centered along the handlebar and extending below the handlebar;

a stem having an upper surface, a first end, and a second end;

a ramp at the first end of the stem below the upper surface and extending below the stem; and

a connector at the second end of the stem,

wherein the ramp is configured to engage the slider allowing for slideable movement between the ramp and the slider,

wherein a spring is located in the ramp and configured to provide resistance to movement between the ramp and the slider to absorb impact energy;

a damper to dissipate energy stored in the spring;

a dial configured to adjust compression of the damper, the dial located at the top of the ramp; and

an aperture located at a junction of the handlebar and the stem, the aperture configured to allow access to the dial.

2. The suspension handlebar assembly of claim 1 , further comprising at least one bearing located between the ramp and the slider to facilitate the movement between the ramp and the slider.

3. The suspension handlebar assembly of claim 2 , wherein the at least one bearing comprises roller bearings.

4. The suspension handlebar assembly of claim 1 , wherein said ramp has a hexagonal cross-section.

5. The suspension handlebar assembly of claim 4 , wherein said slider has a hexagonal cross-section that is larger than said hexagonal cross-section of said ramp wherein said slider is slidable over said ramp.

6. The suspension handlebar assembly of claim 5 , wherein the dial is located at a top end of the ramp.

7. The suspension handlebar assembly of claim 6 , further comprising a cover covering the dial.

8. The suspension handlebar assembly of claim 7 , further comprising a restraint strap configured to secure the dial in a desired position, such that unintentional changes in the stiffness of the damper are avoided.

9. A suspension handlebar assembly, comprising:

a handlebar;

a slider having a cross-sectional shape and centered along the handlebar and extending below the handlebar;

a stem having an upper surface, a first end, and a second end;

a ramp at the first end of the stem, the ramp having a top end and a bottom end and a cross-sectional shape sized smaller than said slider and slidable thereon, and the bottom end extending below the stem;

a connector at the second end of the stem; and

an aperture at a junction of the handlebar and stem, the aperture allowing access to the top of the ramp,

wherein the ramp is configured to engage the slider allowing for slideable movement between the ramp and the slider;

a spring and a damper located within the ramp and configured to absorb the impact of jolts; and

a dial configured to adjust the stiffness of the damper.

10. The suspension handlebar assembly of claim 9 , wherein the dial is located at the top end of the ramp.

11. The suspension handlebar assembly of claim 10 , further comprising a cover covering the dial.

12. The suspension handlebar assembly of claim 11 , further comprising a restraint strap configured to secure the dial in a desired position, such that unintentional changes in the stiffness of the damping apparatus are avoided.

Continuity (5)
Continuation 17988610 · Nov 16, 2022
Continuation 17317704 · May 11, 2021
Continuation In Part 17163340 · Jan 29, 2021
Provisional Application 62967534 · Jan 29, 2020
Related Publication 20240227976A1 · Jul 11, 2024
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