IP Library Granted Patent US 10,888,139
Granted Patent B2
US 10,888,139 · App. 16/126,507 · Granted Jan 12, 2021

Tightening mechanisms and applications including same

Inventors: Robert E. Burns (Denver, CO); Gary R. Hammerslag (Steamboat Springs, CO); Eric C. Irwin (Denver, CO); Kristopher C. Lovett (Denver, CO); Michael J. Nickel (Golden, CO); Mark S. Soderberg (Conifer, CO)
Assignee: Boa Technology Inc.
A43C11/165A43B13/14A43C1/04A43C11/20A61F5/0118
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Quick Facts
Patent No.
US 10,888,139
App. No.
16/126,507
Granted
Jan 12, 2021
Kind
B2
Abstract

This disclosure relates to articles that include a tightening mechanism, such as reel-based lace tightening mechanism, configured to tighten the article by rotation of a knob. The articles can include a concealing portion that is configured to conceal or protect at least a portion of the tightening mechanism, such as the knob. The concealing portion can be configured to prevent unintentional actuation of the tightening mechanism, such as during contact sports. The concealing portion can be configured to hide the tightening mechanism from view to improve the visual appearance of the article. The concealing portion can be collapsible such that a user can press the concealing portion down to expose the knob of the tightening mechanism.

Claims (36)

1. A reel based device for use in a lacing system, the reel based device comprising:

a housing;

a plurality of teeth;

a spool rotatably positioned within the housing, the spool being rotatable in a tightening direction to wind a tension member about the spool and thereby tighten the lacing system and the spool being rotatable in a loosening direction to unwind the tension member from about the spool and thereby loosen the lacing system;

a knob supported by the housing, the knob being rotatable with respect to the housing, the knob being coupled to the spool such that a rotation of the knob in the tightening direction causes the spool to also rotate in the tightening direction; and

a knob core that is separate from the knob and removably couplable thereto, the knob core including one or more pawls, in which at least one of the one or more pawls includes a pawl beam and a pawl spring integrally formed with the pawl beam, the pawl beam being movable between a first position and a second position and the pawl spring being configured to bias the pawl beam toward the first position;

wherein:

in the first position, a distal end of the pawl beam engages with the teeth to prevent the spool from rotating in the loosening direction when a loosening force is applied to the spool; and

in the second position, the distal end of the pawl beam is displaced away from the teeth to allow the spool to rotate within the housing.

2. The reel based device of claim 1 , wherein the pawl beam and the pawl spring extend from a pawl base in the same general direction and the pawl spring is curved away from the pawl beam.

3. The reel based device of claim 1 , wherein the pawl spring comprises a flexible arm configured to assume a more flexed configuration as the pawl beam is displaced toward the second position, thereby biasing the pawl beam toward the first position.

4. The reel based device of claim 1 , wherein an operation of the knob displaces the distal end of the pawl beam away from the teeth to allow the spool to rotate in the loosening direction.

5. The reel based device of claim 4 , wherein displacement of the distal end of the pawl beam from the teeth allows the spool to freely rotate in the loosening direction.

6. The reel based device of claim 4 , wherein the operation of the knob causes the knob core to move axially within the housing and thereby displaces the distal end of the pawl beam away from the teeth.

7. The reel based device of claim 6 , wherein the operation of the knob is an axial movement of the knob relative to the housing.

8. The reel based device of claim 6 , wherein the spool comprises spool teeth and the knob core comprises knob teeth that are configured to engage the spool teeth to enable the knob core and spool to rotate together, and wherein axial movement of the knob core within the housing disengages the knob teeth from the spool teeth so that the spool is free to rotate in the loosening direction within the housing.

9. The reel based device of claim 1 , wherein the plurality of teeth are formed on an inner surface of the housing.

10. The reel based device of claim 1 , wherein the distal end of the pawl beam includes one or more teeth.

11. The reel based device of claim 1 , wherein rotation of the knob in the tightening direction displaces the distal end of the pawl beam away from the teeth and allows the spool to rotate in the tightening direction within the housing.

12. A reel based device comprising:

a housing;

a plurality of teeth operably coupled with the housing;

a spool rotatably positioned within the housing;

a knob operably coupled with the housing; and

a knob core that is operably coupled with the knob and the spool so that a rotation of the knob relative to the housing causes the spool to rotate within the housing in a tightening direction and thereby wind a tension member about the spool, the knob core including one or more pawls that include a pawl beam and a pawl spring integrally formed with the pawl beam, the pawl beam being movable between a first position and a second position and the pawl spring being configured to bias the pawl beam toward the first position;

wherein:

in the first position, a distal end of the pawl beam engages with the teeth to prevent the spool from rotating in a loosening direction within the housing and thereby prevents the tension member from unwinding from about the spool when a loosening force is applied to the spool; and

in the second position, the distal end of the pawl beam is displaced away from the teeth to allow the spool to rotate within the housing.

13. The reel based device of claim 12 , wherein the pawl beam and the pawl spring extend from a pawl base in the same general direction and the pawl spring is curved away from the pawl beam.

14. The reel based device of claim 12 , wherein the pawl spring comprises a flexible arm that assumes a more flexed configuration as the pawl beam is displaced toward the second position, thereby biasing the pawl beam toward the first position.

15. The reel based device of claim 12 , wherein an operation of the knob displaces the distal end of the pawl beam away from the teeth to allow the spool to rotate in the loosening direction within the housing.

16. The reel based device of claim 15 , wherein the operation of the knob causes the knob core to move axially within the housing and thereby displaces the distal end of the pawl beam away from the teeth.

17. The reel based device of claim 16 , wherein the operation of the knob is an axial movement of the knob relative to the housing.

18. The reel based device of claim 16 , wherein the spool comprises spool teeth and the knob core comprises knob teeth that are configured to engage the spool teeth to enable the knob core and spool to rotate together, and wherein axial movement of the knob core within the housing disengages the knob teeth from the spool teeth so that the spool is free to rotate in the loosening direction within the housing.

19. The reel based device of claim 12 , wherein the plurality of teeth are formed on an inner surface of the housing.

20. The reel based device of claim 12 , wherein rotation of the knob in the tightening direction displaces the distal end of the pawl beam away from the teeth and allows the spool to rotate in the tightening direction within the housing.

Assignments (2)
SECURITY INTEREST Recorded Oct 23, 2020
From: BOA TECHNOLOGY, INC.
To: COMPASS GROUP DIVERSIFIED HOLDINGS LLC
Reel/Frame 054217/0646 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 10, 2018
From: BURNS, ROBERT E.; HAMMERSLAG, GARY R.; IRWIN, ERIC C.; LOVETT, KRISTOPHER C.; NICKEL, MICHAEL J.; SODERBERG, MARK S.
To: BOA TECHNOLOGY INC.
Reel/Frame 046829/0850 →
Continuity (8)
Continuation 15231562 · Aug 8, 2016
Continuation In Part 15191281 · Jun 23, 2016
Continuation 13829601 · Mar 14, 2013
Continuation In Part 13973917 · Aug 22, 2013
Continuation 13098276 · Apr 29, 2011
Provisional Application 61611418 · Mar 15, 2012
Provisional Application 61330129 · Apr 30, 2010
Related Publication 20190000189A1 · Jan 3, 2019
Cited By (2)
US 12,402,695 US 12,708,545