IP Library › Granted Patent US 9,481,420
Granted Patent B2
US 9,481,420 · App. 14/446,173 · Granted Nov 1, 2016

Saddle adjustment system

Inventors: Michael McAndrews (Capitola, CA); Ron Powers (Morgan Hill, CA); Brandon D. Sloan (Morgan Hill, CA); Jeffrey Keith Bowers (San Jose, CA); Ian Thomas McPherson (Hillsborough, CA)
Assignee: SPECIALIZED BICYCLE COMPONENTS, INC.
B62J1/08B62J2001/085
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Quick Facts
Patent No.
US 9,481,420
App. No.
14/446,173
Granted
Nov 1, 2016
Kind
B2
Abstract

A saddle adjustment assembly comprising an adjustable height saddle post, the adjustable height saddle post comprising a first support and a second support, the second support configured to slidably move relative to the first support between at least a raised position and a lowered position, the first support configured to attach to a bicycle frame; a saddle angle adjustment mechanism coupled to the second support, the saddle angle adjustment mechanism comprising a rotatably coupled saddle support configured to couple to a bicycle saddle; wherein the saddle angle adjustment mechanism is configured to enable rotation of the saddle support relative to the second support as a result of the first support moving relative to the second support.

Claims (29)

1. A bicycle assembly comprising a saddle adjustment assembly, the saddle adjustment assembly comprising:

an adjustable height saddle post, the adjustable height saddle post comprising a first support and a second support, the second support configured to slidably move relative to the first support between at least a raised position and a lowered position, the first support configured to attach to a bicycle frame;

a saddle angle adjustment mechanism coupled to the second support, the saddle angle adjustment mechanism comprising a rotatably coupled saddle support configured to couple to a bicycle saddle;

wherein the saddle angle adjustment mechanism is configured to enable rotation of the saddle support relative to the second support as a result of the first support moving relative to the second support.

2. The bicycle assembly of claim 1 , wherein the saddle angle adjustment mechanism further comprises an actuation surface positioned to contact a portion of the saddle post when the first and second supports are in a predetermined relative position, wherein movement of the actuation surface caused by the first support moving relative to the second support enables the rotation of the saddle support.

3. The bicycle assembly of claim 2 , wherein the predetermined relative position is at or near the lowered position.

4. The bicycle assembly of claim 1 , wherein the saddle angle adjustment mechanism is configured to enable rotation of the saddle support relative to the second support in a first direction when the second support is at or near the lowered position and in a second direction opposite the first direction when the second support is not at or near the lowered position.

5. The bicycle assembly of claim 4 , wherein rotation of the saddle support in the second direction is caused by a force generated by the saddle angle adjustment mechanism, and wherein rotation of the saddle support in the first direction is cause by an external force applied to the saddle support.

6. The bicycle assembly of claim 4 , wherein the saddle angle adjustment mechanism further comprises first and second stop surfaces, the first stop surface configured to limit an amount of rotation of the saddle support in the first direction, the second stop surface configured to limit an amount of rotation of the saddle support in the second direction.

7. The bicycle assembly of claim 1 , wherein the saddle angle adjustment mechanism further comprises a damping mechanism that damps the rotation of the saddle support in at least one direction.

8. The bicycle assembly of claim 1 , wherein the saddle post further comprises a locking mechanism configured to selectively lock the second support in position relative to the first support in the raised position, the lowered position, and a plurality of positions therebetween.

9. The bicycle assembly of claim 8 , wherein the locking mechanism comprises a collet positioned at least partially within an interior cavity of the second support.

10. The bicycle assembly of claim 1 , wherein said saddle support is configured to rotate between a predetermined first rotational position and a predetermined second rotational position.

11. The bicycle assembly of claim 1 , wherein said saddle angle adjustment mechanism rotates said saddle support relative the second support as the second support moves relative the first support to the lowered position.

12. The bicycle assembly of claim 1 , further comprising a controller, the actuation of which permits the height of the adjustable height saddle post to be selectively adjusted while the bicycle is in motion.

13. The bicycle assembly of claim 1 , wherein said saddle adjustment assembly further comprises a piston and wherein force exerted by the piston on the saddle support causes the saddle support to rotate relative to the second support.

14. The bicycle assembly of claim 1 , further comprising a bicycle frame.

15. A bicycle assembly, comprising a saddle adjustment assembly comprising:

a saddle angle adjustment mechanism configured to be supported by a bicycle seat post, the saddle angle adjustment mechanism comprising a body and a rotating assembly;

wherein the rotating assembly is configured to couple to a bicycle saddle and wherein the rotating assembly is rotatably coupled to the body;

a controller, wherein the actuation of the controller enables the saddle adjustment assembly to permit the rotating assembly to rotate relative the body of the saddle angle adjustment mechanism, said controller configured to be manually actuated during riding; and

an adjustable height saddle post having a first support and a second support movable relative one another and wherein movement of said first support and said second support relative one another permits the rotating assembly to rotate relative the body of the saddle angle adjustment mechanism.

16. The bicycle assembly of claim 15 , wherein the saddle angle adjustment mechanism further comprises a stored energy device that rotates the rotating assembly.

17. The saddle angle adjustment mechanism of claim 16 , wherein the stored energy device comprises at least one of the following: a mechanical spring, an air spring, a resilient member.

18. A method of adjusting a saddle angle of a bicycle saddle comprising:

affixing a first support of an adjustable height seat post to the seat tube of a bicycle, the adjustable height seat post having a second support slidably coupled to the first support and configured to adjust the saddle height of the bicycle saddle, the second support having a saddle angle adjustment mechanism affixed to the second support, the bicycle saddle rotatably coupled to the saddle angle adjustment mechanism;

selectively adjusting the saddle height of the bicycle saddle while riding the bicycle, wherein adjusting the saddle height of the bicycle slides the second support relative to the first support and permits the bicycle saddle to be rotated.

19. The method of claim 18 , wherein movement of the second support relative to the first support creates a force which rotates the saddle relative to said saddle angle adjustment mechanism.

20. The method of claim 18 , wherein movement of the second support relative to the first support creates a force which enables rotation of the saddle relative to said saddle angle adjustment mechanism.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 25, 2014
From: MCANDREWS, MICHAEL A.; POWERS, RON; SLOAN, BRANDON D.; BOWERS, JEFFREY KEITH; MCPHERSON, IAN THOMAS
To: SPECIALIZED BICYCLE COMPONENTS, INC.
Reel/Frame 033822/0024 →
Continuity (2)
Provisional Application 61861348 · Aug 1, 2013
Related Publication 20150034779A1 · Feb 5, 2015