IP Library Granted Patent US 7,448,986
Granted Patent B1
US 7,448,986 · App. 10/781,038 · Granted Nov 11, 2008

Exercise equipment with automatic adjustment of stride length and/or stride height based upon the heart rate of a person exercising on the exercise equipment

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Quick Facts
Patent No.
US 7,448,986
App. No.
10/781,038
Granted
Nov 11, 2008
Kind
B1
Abstract

The invention is an exercise device comprising (i) a frame, (ii) first and second foot supports operably associated with the frame for traveling along a closed loop path relative to a transverse axis defined by the frame, (iii) a heart rate monitor, and (iv) a means for automatically adjusting the stride length and/or stride height of the closed loop path traveled by the foot supports based upon the sensed heart rate of person exercising on the exercise device.

Claims (22)

1. An exercise device comprising (a) a frame defining a transverse axis, (b) first and second foot supports operably associated with the frame for traveling along a closed loop path relative to the transverse axis wherein the closed loop path defines a stride length, (c) a heart rate monitor, (d) a means for automatically adjusting the stride length of the closed loop path traveled by the foot supports based upon a heart rate sensed by the heart rate monitor, (e) a guide arm pivotally attached to the frame, (f) a transversely extending drive shaft rotatably attached to the frame and extending along the transverse axis, (g) an extension element extending away from the transverse axis and fixedly attached to the drive shaft for unitary rotation with the drive shaft, and (h) first and second foot links each supporting a foot support and having (i) first and second ends, (ii) a first end portion pivotally attached to the extension element at a point spaced from the transverse axis for travel along a closed loop path relative to the transverse axis, and (iii) a second end portion pivotally supported by the guide arm for longitudinal travel of the second end portion of the foot link along an arcuate reciprocating path.

2. The exercise device of claim 1 wherein the closed loop path is an elliptical path.

3. The exercise device of claim 1 wherein the extension element is a drive pulley.

4. The exercise device of claim 1 wherein the extension element is a crank shaft.

5. The exercise device of claim 1 wherein the first end portion of each foot link is directly pivotally attached to the extension element.

6. The exercise device of claim 1 wherein the first end portion of each foot link is indirectly pivotally attached to the extension element.

7. The exercise device of claim 1 wherein the first end portion of each foot link is indirectly pivotally attached to the extension element via an intermediate linkage system wherein the intermediate linkage system is (i) pivotally attached at a proximal point to the foot link, (ii) pivotally attached at a distal point to the frame, and (iii) pivotally attached to the extension element intermediate the proximal and distal points of attachment.

8. The exercise device of claim 7 wherein the first end of each foot link travels along a non-circular arcuate path relative to the transverse axis.

9. An exercise device comprising (a) a frame defining a transverse axis, (b) first and second foot supports operably associated with the frame for traveling along a closed loop path relative to the transverse axis wherein the closed loop path defines a stride height, (c) a heart rate monitor, (d) a means for automatically adjusting the stride height of the closed loop path traveled by the foot supports based upon a heart rate sensed by the heart rate monitor, (e) a guide arm pivotally attached to the frame, (f) a transversely extending drive shaft rotatably attached to the frame and extending along the transverse axis, (g) an extension element extending away from the transverse axis and fixedly attached to the drive shaft for unitary rotation with the drive shaft, and (h) first and second foot links each supporting a foot support and having (i) first and second ends, (ii) a first end portion pivotally attached to the extension element at a point spaced from the transverse axis for travel along a closed loop path relative to the transverse axis, and (iii) a second end portion pivotally supported by the guide arm for longitudinal travel of the second end portion of the foot link along an arcuate reciprocating path.

10. The exercise device of claim 9 wherein the closed loop path is an elliptical path.

11. The exercise device of claim 9 wherein the means for automatically adjusting the stride height of the closed loop path traveled by the foot supports comprises a means for adjusting the distance between the point at which the guide arm is pivotally attached to the frame and the point at which the guide arm is pivotally attached to the second end portion of each foot link.

12. The exercise device of claim 9 wherein the extension element is a drive pulley.

13. The exercise device of claim 9 wherein the extension element is a crank shaft.

14. The exercise device of claim 9 wherein the first end portion of each foot link is directly pivotally attached to the extension element.

15. The exercise device of claim 9 wherein the first end portion of each foot link is indirectly pivotally attached to the extension element.

16. The exercise device of claim 9 wherein the first end portion of each foot link is indirectly pivotally attached to the extension element via an intermediate linkage system wherein the intermediate linkage system is (i) pivotally attached at a proximal point to the foot link, (ii) pivotally attached at a distal point to the frame, and (iii) pivotally attached to the extension element intermediate the proximal and distal points of attachment.

17. The exercise device of claim 16 wherein the first end of each foot link travels along a non-circular arcuate path relative to the transverse axis.

18. An exercise device comprising (a) a frame defining a transverse axis, (b) first and second foot supports operably associated with the frame for traveling along a closed loop path relative to the transverse axis wherein the closed loop path defines a stride length and a stride height, (c) a heart rate monitor, (d) a means for automatically adjusting the stride length and stride height of the closed loop path traveled by the foot supports based upon a heart rate sensed by the heart rate monitor, (e) a guide arm pivotally attached to the frame (f) a transversely extending drive shaft rotatable attached to the frame and extending along the transverse axis, (g) an extension element extending away from the transverse axis and fixedly attached to the drive shaft for unitary rotation with the drive shaft, and (h) first and second foot links each supporting a foot support and having (i) first and second ends (ii) a first end portion pivotally attached to the extension element at a point spaced from the transverse axis for travel along a closed loop path relative to the transverse axis, and (iii) a second end portion pivotally supported by the guide arm for longitudinal travel of the second end portion of the foot link along an arcuate reciprocating path.

19. The exercise device of claim 18 wherein the closed loop path is an elliptical path.

20. The exercise device of claim 18 wherein the means for automatically adjusting the stride length and stride height of the closed loop path traveled by the foot supports comprises a means for adjusting the distance between the point at which the guide arm is pivotally attached to the frame and the point at which the guide arm is pivotally attached to the second end portion of each foot link.

21. The exercise device of claim 18 wherein the first end portion of each foot link is indirectly pivotally attached to the extension element via an intermediate linkage system wherein the intermediate linkage system is (i) pivotally attached at a proximal point to the foot link, (ii) pivotally attached at a distal point to the frame, and (iii) pivotally attached to the extension element intermediate the proximal and distal points of attachment.

22. The exercise device of claim 21 wherein the first end of each foot link travels along a non-circular arcuate path relative to the transverse axis.

Assignments (9)
RELEASE OF SECURITY INTEREST Recorded Oct 14, 2020
From: WELLS FARGO BANK, NATIONAL ASSOCIATION
To: OCTANE FITNESS, LLC
Reel/Frame 054054/0917 →
SECURITY INTEREST Recorded Jan 31, 2020
From: NAUTILUS, INC.; OCTANE FITNESS, LLC
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 051763/0734 →
RELEASE OF SECURITY INTEREST Recorded Jan 31, 2020
From: JPMORGAN CHASE BANK, N.A.
To: NAUTILUS, INC.; OF HOLDINGS, INC.; OCTANE FITNESS, LLC
Reel/Frame 051765/0492 →
SECURITY INTEREST Recorded Apr 1, 2019
From: NAUTILUS, INC.; OF HOLDINGS, INC.; OCTANE FITNESS, LLC
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 048751/0963 →
RELEASE OF SECURITY INTEREST Recorded Jan 4, 2016
From: GOLUB CAPITAL LLC (AS SUCCESSOR IN INTEREST TO GOLUB CAPITAL INCORPORATED) AS ADMINISTRATIVE AGENT
To: OCTANE FITNESS, LLC
Reel/Frame 037640/0574 →
SECURITY AGREEMENT Recorded Mar 15, 2007
From: OCTANE FITNESS, LLC; OF HOLDINGS, INC.
To: GOLUB CAPITAL INCORPORATED, AS ADMINISTRATIVE AGENT
Reel/Frame 019009/0932 →
RELEASE OF SECURITY INTEREST Recorded Mar 14, 2007
From: CAPITALSOURCE FINANCE LLC
To: OCTANE FITNESS, LLC
Reel/Frame 019009/0243 →
PATENT SECURITY AGREEMENT AND COLLATERAL ASSIGNMENT Recorded Feb 10, 2005
From: OCTANE FITNESS, LLC; OF HOLDINGS, INC.
To: CAPITALSOURCE FINANCE LLC
Reel/Frame 015667/0675 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 23, 2004
From: PORTH, TIMOTHY J.
To: OCTANE FITNESS, LLC
Reel/Frame 014768/0839 →