IP Library Granted Patent US 12,005,295
Granted Patent B2
US 12,005,295 · App. 17/504,022 · Granted Jun 11, 2024

Exercise machine arm with single-handed adjustment

Inventors: Mark Peter McNally (San Francisco, CA); Michael Valente (San Francisco, CA); Anya Richardson Quenon (Berkeley, CA); Patricia Holloway Howes (San Francisco, CA); Scott Thomas Rider (Pleasant Hill, CA); Daniel Jordan Kayser (Mill Valley, CA); David Mallard (Mill Valley, CA); David Jonathan Zimmer (Exeter, CA); Maxwell Walter Davis (Oakland, CA)
Assignee: Tonal Systems, Inc.
A63B21/153A63B21/159A63B21/4035A63B21/4047
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Quick Facts
Patent No.
US 12,005,295
App. No.
17/504,022
Granted
Jun 11, 2024
Kind
B2
Abstract

An exercise device includes a resistance unit having a connecting gear. It further includes a cable. It further includes an arm that routes the cable to an actuator. The arm is rotatable relative to the resistance unit about the connecting gear, the arm having a central axis. The arm includes a control that mechanically disengages a locking mechanism from the connecting gear. The control is activated by an activation force substantially directed either toward the central axis of the arm, along a length of the arm, or about the central axis. The activation force is mechanically converted into linear force along the arm that disengages the locking mechanism from the connecting gear.

Claims (19)

1. An exercise device, comprising:

a resistance unit having a first connecting gear and a second connecting gear; and

an arm being rotatable relative to the resistance unit about the first connecting gear, the arm having a central axis;

wherein the arm mechanically disengages a locking mechanism from a third connecting gear;

wherein the arm is activated by an activation force directed either along a length of the arm or about the central axis;

wherein the activation force is mechanically converted into a linear force along the arm that disengages the locking mechanism from the third connecting gear; and

wherein a lever is connected to a linkage that is connected to a second arm, wherein linkage is connected to the first connecting gear that is connected to the second connecting gear, the second connecting gear being connected to the second arm, wherein the lever is configured to be pressed down such that the lever rotates the linkage causing the second arm to rotate, and wherein the second arm is configured to rotate such that the second arm pulls out the locking mechanism that is engaged with the third connecting gear.

2. The exercise device of claim 1 , wherein the arm comprises the lever, and wherein the lever is activated by pushing down on an end of the lever.

3. The exercise device of claim 2 , wherein the activation force rotates the lever, wherein the locking mechanism is connected to a portion of the lever, and wherein rotation of the lever causes linear travel of the locking mechanism that disengages the locking mechanism from the third connecting gear.

4. The exercise device of claim 2 , wherein the activation force rotates the lever, and wherein the arm comprises the linkage coupled to the lever that converts rotation of the lever into linear travel of the locking mechanism that disengages the locking mechanism from the third connecting gear.

5. The exercise device of claim 4 , wherein the linkage comprises two rotation points and a fixed axis.

6. The exercise device of claim 5 , wherein a first rotation point is coupled to the lever, and wherein a second rotation point is coupled to a rod that is connected to the locking mechanism.

7. The exercise device of claim 4 , wherein the arm comprises two balanced linkages coupled to the lever.

8. The exercise device of claim 7 , wherein the balanced linkages are coupled to the locking mechanism via a split rod.

9. The exercise device of claim 2 , wherein the activation force rotates the lever.

10. The exercise device of claim 2 , wherein the activation force rotates the lever, and wherein the arm is coupled to the first and second connecting gears that converts rotation of the lever into linear travel of the locking mechanism that disengages the locking mechanism from the third connecting gear.

11. The exercise device of claim 1 , wherein the activation force is mechanically converted into the linear force along the arm via a wedge coupled to the locking mechanism, and wherein activation of a button causes the wedge to travel in a direction that causes the locking mechanism to disengage from the third connecting gear.

12. The exercise device of claim 1 wherein the activation force is mechanically converted into the linear force along the arm via the second connecting gear, wherein an extension arm is coupled to the second connecting gear, wherein the locking mechanism is coupled to the extension arm, and wherein activation of a button causes the second connecting gear to rotate, disengaging the locking mechanism from the third connecting gear.

13. The exercise device of claim 1 , wherein the activation force is mechanically converted into the linear force along the arm via the linkage, wherein the linkage is coupled to a bar that is coupled to the locking mechanism, and wherein activation of a button causes the linkage to sweep the bar, disengaging the locking mechanism from the third connecting gear.

Assignments (3)
SECURITY INTEREST Recorded Mar 31, 2026
From: TONAL SYSTEMS, INC.
To: HERCULES CAPITAL, INC., AS AGENT
Reel/Frame 075306/0212 →
SECURITY INTEREST Recorded Oct 24, 2025
From: TONAL SYSTEMS, INC.
To: CUSTOMERS BANK
Reel/Frame 073255/0161 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 19, 2021
From: MCNALLY, MARK PETER; VALENTE, MICHAEL; QUENON, ANYA RICHARDSON; HOWES, PATRICIA HOLLOWAY; RIDER, SCOTT THOMAS; KAYSER, DANIEL JORDAN; MALLARD, DAVID; ZIMMER, DAVID JONATHAN; DAVIS, MAXWELL WALTER
To: TONAL SYSTEMS, INC.
Reel/Frame 058170/0716 →
Continuity (2)
Provisional Application 63093654 · Oct 19, 2020
Related Publication 20220118304A1 · Apr 21, 2022