IP Library Granted Patent US 11,999,229
Granted Patent B2
US 11,999,229 · App. 18/121,116 · Granted Jun 4, 2024

Electronic throttle control pedal assembly

Inventor: Matthew Vyskocil (Ridgetown, CA)
Assignee: KSR IP HOLDINGS, LLC
B60K26/021G05G5/03B60K2026/023G05G1/38G05G1/44
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Quick Facts
Patent No.
US 11,999,229
App. No.
18/121,116
Granted
Jun 4, 2024
Kind
B2
Abstract

An electronic throttle control pedal assembly includes a housing having a friction generating surface, a pedal arm, a spring carrier, and at least one spring. The pedal arm includes a hub portion and a friction generating member. The friction generating member has a lobe connected to a cross member and is positioned on a side surface of the hub portion. The cross member extends within the hub portion. The spring carrier has a friction generating portion. As the pedal arm is depressed, a portion of the spring carrier engages the friction generating portion against the cross member positioned within the hub aperture and pivotally engages a portion of the lobe of the friction generating member against the friction generating surface of the housing thereby creating at least two independent friction generating surfaces to create a hysteresis proportional to the depression of the pedal arm.

Claims (61)

1. An electronic throttle control pedal assembly for a vehicle, the assembly comprising:

a housing having a friction generating surface;

a pedal arm having a hub portion and a friction generating member, the friction generating member having a lobe, the lobe having an opening and positioned on a side surface of the hub portion such that at least a portion of the side surface of the hub portion is received within the opening, the pedal arm is pivotally connected to the housing at the hub portion;

a spring carrier coupled to the pedal arm and received within the housing; and

at least one spring positioned to be in contact with the pedal arm and the spring carrier,

wherein when the pedal arm is depressed, the at least one spring and the spring carrier leverages a load applied by the at least one spring by movement of the pedal arm to pivotally engage at least a portion of the lobe of the friction generating member against the friction generating surface of the housing thereby creating a hysteresis proportional to the depression of the pedal arm.

2. The assembly of claim 1 , wherein:

the hub portion includes a another side surface opposite the side surface, each of the side surfaces are curvilinear shaped, the side surfaces are separated by a hub aperture and connected by an upper surface of the pedal arm.

3. The assembly of claim 2 , wherein:

the friction generating member includes a second lobe spaced apart from the lobe, the second lobe having a second opening and is positioned on the another side surface of the hub portion such that at least a portion of the another side surface of the hub portion is received within the opening.

4. The assembly of claim 3 , wherein each of the lobe and the second lobe of the friction generating member are shaped to geometrically match the curvilinear shape of the side surface and the another side surface of the hub portion.

5. The assembly of claim 3 , wherein:

the pedal arm further includes an exterior surface and an opposite inner surface;

the at least one spring extending between the inner surface of the pedal arm and the spring carrier; and

the hub aperture extends through an inner surface and an opposite exterior surface of the hub portion and a portion of the spring carrier positioned within the hub aperture to engage with a portion of the friction generating member positioned within the hub aperture when the load from the at least one spring is applied to the spring carrier.

6. The assembly of claim 5 , wherein the spring carrier further comprises:

a spring receiving portion; and

an arm portion extending from and integrally formed with the spring receiving portion,

wherein the at least one spring is received by the spring receiving portion.

7. The assembly of claim 6 , wherein the at least one spring further comprises:

an outer spring having an inner diameter and extending between the inner surface of the pedal arm and the spring receiving portion of the spring carrier; and

an inner spring positioned within the inner diameter of the outer spring and extending between the inner surface of the pedal arm and the spring receiving portion of the spring carrier.

8. The assembly of claim 6 , wherein the friction generating portion is positioned on an upper surface of the arm portion.

9. The assembly of claim 1 , further comprising:

a sensor assembly having:

a coupler rotatably mounted to one side of the hub portion;

at least one receiver coil positioned adjacent to the coupler; and

at least one transmitter coil,

wherein movement of the coupler is detected by the at least one receiver coil.

10. The assembly of claim 1 , wherein the pedal arm is formed from a multi-shot injection molding.

11. The assembly of claim 1 , wherein the friction generating surface of the housing is arcuate in shape.

12. The assembly of claim 1 , wherein the pedal arm is a universal connector for a plurality of lower pedal arms.

13. A pedal assembly for a vehicle, the assembly comprising:

a housing having a friction generating surface; and

a pedal arm assembly having a pedal arm having an exterior surface and an opposite inner surface, the pedal arm further having:

a hub portion and a friction generating member, the hub portion is curvilinear in shape, the friction generating member having a pair of spaced apart lobes, each of the pair of lobes having an opening and positioned on a respective side surface of the hub portion such that at least a portion of the respective side surface of the hub portion is received within the respective opening, each of the pair of lobes of the friction surface are shaped to geometrically match the curvilinear shape of the hub portion, the pedal arm is pivotally connected to the housing at the hub portion,

a spring carrier coupled to the pedal arm and received within the housing, the spring carrier having a friction generating portion extending from a rear surface; and

at least one spring extending between the inner surface of the pedal arm and the spring carrier,

wherein when the pedal arm is depressed, the at least one spring and the spring carrier leverages a load applied to the at least one spring by movement of the pedal arm to engage the friction generating portion against a portion of each of the pair of lobes of the friction generating member to pivotally engage against the friction generating surface of the housing thereby creating a hysteresis proportional to the depression of the pedal arm.

14. The pedal assembly of claim 13 , wherein the pedal arm further comprises:

a hub aperture extending through the inner surface and the exterior surface of the hub portion.

15. The pedal assembly of claim 13 , wherein the spring carrier further comprises:

a spring receiving portion at a first end; and

an arm portion extending from the spring receiving portion to a distal tip, the arm portion extends from and integrally formed with the spring receiving portion, the arm portion having the friction generating portion positioned on the rear surface.

16. The pedal assembly of claim 13 , further comprising:

an outer spring having an inner diameter and extending between the inner surface of the pedal arm and spring receiving portion of the spring carrier; and

an inner spring positioned within the inner diameter of the outer spring and extending between the inner surface of the pedal arm and the spring receiving portion of the spring carrier,

wherein the outer spring and the inner spring are each received by the spring receiving portion.

17. The pedal assembly of claim 13 , further comprising:

a sensor assembly having:

a coupler rotatably mounted to one side of the hub portion;

at least one receiver coil positioned adjacent to the coupler; and

at least one transmitter coil,

wherein movement of the coupler is detected by the at least one receiver coil.

18. The pedal assembly of claim 13 , wherein the friction generating surface of the housing is arcuate in shape.

19. The pedal assembly of claim 13 , wherein the pedal arm is a universal connector for a plurality of lower pedal arms.

20. A method of a final assembly of installing a pedal arm assembly into a housing, the method comprising:

inserting an inner spring with an outer diameter into an inner diameter of an outer spring to form a spring package, the outer diameter of the inner spring is smaller than the inner diameter of the outer spring;

inserting one end of the spring package into a spring receiving portion of a pedal arm;

inserting another end of the spring package into a spring receiving portion of a spring carrier; and

inserting the spring carrier and the pedal arm into a hub receiving cavity of the housing such that the pedal arm and the spring carrier are pivotally mounted to the housing, the pedal arm having a hub portion and a friction generating member, the friction generating member having a lobe, the lobe having an opening and positioned on a side surface of the hub portion such that at least a portion of the side surface of the hub portion is received within the opening.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Jul 7, 2025
From: WELLS FARGO CAPITAL FINANCE CORPORATION CANADA
To: KSR IP HOLDINGS LLC
Reel/Frame 071918/0562 →
SECURITY INTEREST Recorded May 27, 2025
From: KSR IP HOLDINGS LLC
To: WELLS FARGO CAPITAL FINANCE CORPORATION CANADA
Reel/Frame 071229/0986 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 3, 2023
From: VYSKOCIL, MATTHEW
To: KSR IP HOLDINGS, LLC
Reel/Frame 064137/0601 →
Continuity (3)
Continuation 17824154 · May 25, 2022
Provisional Application 63192808 · May 25, 2021
Related Publication 20230226906A1 · Jul 20, 2023