IP Library › Granted Patent US 12,496,480
Granted Patent B2
US 12,496,480 · App. 18/278,792 · Granted Dec 16, 2025

Variable force pneumatic exercise staff and method

Inventor: Philippe Til (Woodland Hills, CA)
A63B21/00189A63B21/4035A63B21/4049
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Quick Facts
Patent No.
US 12,496,480
App. No.
18/278,792
Granted
Dec 16, 2025
Kind
B2
Abstract

An exemplary variable force pneumatic exercise staff comprises at least one staff segment including a pneumatic cylinder and a handle element. The pneumatic cylinder is elongated and has a handle engagement end and a staff first end disposed oppositely of one another. The pneumatic cylinder is actuatable between a compressed configuration and an extended configuration such that a cylinder length is greater in the extended configuration than in the compressed configuration. The handle element is affixed to the handle engagement end. The cylinder is configured to user-adjustably provide an extension resistance force for resisting the actuation toward the extended configuration, and a compression resistance force for resisting the actuation toward the compressed configuration. The cylinder may include a resistance controller allowing a user to manually adjust the extension and compression resistance forces. A segment coupler may be configured to rigidly couple the staff segment to a second staff segment.

Claims (55)

1 . A variable force pneumatic exercise staff comprising:

a staff segment including:

(a) a pneumatic cylinder elongated along a longitudinal axis, the pneumatic cylinder having a handle engagement end and a staff first end disposed oppositely of one another along the longitudinal axis, a cylinder length being defined by a distance between the handle engagement end and the staff first end, the pneumatic cylinder being actuatable between a compressed configuration and an extended configuration such that the cylinder length is greater in the extended configuration than in the compressed configuration; and

(b) a handle element affixed to the handle engagement end; wherein the pneumatic cylinder is configured to user-adjustably provide:

(i) an extension resistance force for resisting the actuation toward the extended configuration, and

(ii) a compression resistance force for resisting the actuation toward the compressed configuration; and

a segment coupler configured to rigidly couple the staff segment to a second said staff segment, wherein the segment coupler is configured to threadedly receive the staff first end of each said staff segment.

2 . The variable force pneumatic exercise staff as defined in claim 1 , wherein the pneumatic cylinder includes a resistance controller configured to allow a user of the variable force pneumatic exercise staff to manually adjust the extension resistance force and the compression resistance force.

3 . The variable force pneumatic exercise staff as defined in claim 2 , wherein the manual adjustment is by way of rotation of the resistance controller.

4 . The variable force pneumatic exercise staff as defined in claim 3 further comprising a setting indicator configured to visibly indicate a position of the resistance controller.

5 . The variable force pneumatic exercise staff as defined in claim 1 further comprising a dynamometer operably connected to the pneumatic cylinder.

6 . The variable force pneumatic exercise staff as defined in claim 1 further comprising a pressure gauge operably connected to the pneumatic cylinder.

7 . The variable force pneumatic exercise staff as defined in claim 1 , wherein the handle element defines a grip axis extending parallel to the longitudinal axis.

8 . The variable force pneumatic exercise staff as defined in claim 1 , wherein the handle element defines a grip axis extending perpendicularly to the longitudinal axis.

9 . The variable force pneumatic exercise staff as defined in claim 1 , wherein the handle element includes a hand grip surface which is frictionally enhanced.

10 . The variable force pneumatic exercise staff as defined in claim 9 , wherein the frictional enhancement is by way of a rubber coating, cloth tape or knurling.

11 . The variable force pneumatic exercise staff as defined in claim 1 , wherein the pneumatic cylinder is resiliently biased toward the compressed configuration.

12 . The variable force pneumatic exercise staff as defined in claim 11 , wherein the resilient bias is by way of a compression spring.

13 . The variable force pneumatic exercise staff as defined in claim 11 , wherein:

(a) the resilient bias is sufficient to autonomously return the pneumatic cylinder from the extended configuration to the compressed configuration without an application of force along the longitudinal axis by a user; and

(b) the autonomous return is pneumatically dampened.

14 . The variable force pneumatic exercise staff as defined in claim 1 , wherein the cylinder length is at least 6 inches greater when the pneumatic cylinder is in the extended configuration than when the pneumatic cylinder is in the compressed configuration.

15 . The variable force pneumatic exercise staff as defined in claim 1 , wherein the handle element is rotatable about the longitudinal axis with respect to the pneumatic cylinder.

16 . The variable force pneumatic exercise staff as defined in claim 15 , wherein the rotatability is unrestricted.

17 . The variable force pneumatic exercise staff as defined in claim 1 , wherein the pneumatic cylinder includes a cylinder housing, a piston, a piston rod and a resistance controller;

wherein the cylinder housing has

(a) defined therein a proximal chamber and a distal chamber, wherein the piston is in sealing relationship between the proximal chamber and the distal chamber,

(b) a resistance control port in fluid communication between the proximal chamber and an ambient environment, and

(c) a vent port in fluid communication between the distal chamber and the ambient environment; and

wherein the resistance controller is threadedly received by the resistance control port and is configured to be rotated to adjust a degree to which the resistance controller seals the proximal chamber from the ambient environment, thereby allowing a user of the variable force pneumatic exercise staff to manually adjust the extension resistance force and the compression resistance force.

18 . The variable force pneumatic exercise staff as defined in claim 17 , further comprising a second said staff segment.

19 . The variable force pneumatic exercise staff as defined in claim 1 , wherein the staff first end includes an auxiliary aperture extending therethrough perpendicularly to the longitudinal axis.

20 . The variable force pneumatic exercise staff as defined in claim 1 , wherein:

(a) the handle element includes a staff second end and a cylinder engagement end;

(b) the variable force pneumatic exercise staff includes a center point defined equidistant from the staff first end and the staff second end; and

(c) the variable force pneumatic exercise staff is asymmetrically weighted about the center point.

21 . The variable force pneumatic exercise staff as defined in claim 1 , wherein the pneumatic cylinder is at least three times heavier than the handle element.

22 . A method of using a variable force pneumatic exercise staff, the method comprising:

selecting the variable force pneumatic exercise staff, the variable force pneumatic exercise staff comprising a segment coupler and a staff segment, the staff segment including:

(a) a pneumatic cylinder elongated along a longitudinal axis, the pneumatic cylinder having a handle engagement end and a staff first end disposed oppositely of one another along the longitudinal axis, a cylinder length being defined by a distance between the handle engagement end and the staff first end, the pneumatic cylinder being actuatable between a compressed configuration and an extended configuration such that the cylinder length is greater in the extended configuration than in the compressed configuration; and

(b) a handle element affixed to the handle engagement end;

wherein the pneumatic cylinder is configured to provide:

(i) an extension resistance force for resisting the actuation toward the extended configuration, and

(ii) a compression resistance force for resisting the actuation toward the compressed configuration;

grippingly engaging the variable force pneumatic exercise staff simultaneously with a first hand of a user and a second hand of the user;

moving the first hand toward the second hand during said gripping engagement, thereby causing actuation of the pneumatic cylinder toward the compressed configuration;

moving the first hand away from the second hand during said gripping engagement, thereby causing actuation of the pneumatic cylinder toward the extended configuration; and

rigidly coupling the staff segment to a second said staff segment, wherein the rigid coupling is by way of placing the segment coupler in threaded receipt of the staff first end of each said staff segment.

23 . The method as defined in claim 22 , wherein:

the pneumatic cylinder includes a resistance controller; and

the method further comprises the step of manually adjusting the extension resistance force or the compression resistance force by way of the resistance controller.

24 . The method as defined in claim 22 , wherein the gripping engagement is by way of the pneumatic cylinder being gripped by the first hand and the handle element being gripped by the second hand.

25 . The method as defined in claim 22 , wherein the gripping engagement is by way of the handle element of each said staff segment being gripped by a respective one of said hands.

26 . The method as defined in claim 22 , wherein each of said movements of the first and second hands is simultaneous with a corresponding outward or inward motion of the arms of the user with respect to a torso of the user.

27 . The method as defined in claim 22 , wherein each of said movements of the first and second hands is simultaneous with a corresponding rotation of the handle element about the longitudinal axis with respect to the pneumatic cylinder.

Continuity (3)
Provisional Application 63153228 · Feb 24, 2021
Related Publication 20240131379A1 · Apr 25, 2024
Related Publication 20240226634A9 · Jul 11, 2024
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