Triceps press exercise machine with a moving user support
10737131 ยท 2020-08-11
Assignee
Inventors
- Jeffrey O. Meredith (Del Mar, CA, US)
- Bruce Hockridge (San Diego, CA, US)
- Billy Y. Kim (San Diego, CA, US)
Cpc classification
A63B21/4045
HUMAN NECESSITIES
F16B7/105
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A63B23/03525
HUMAN NECESSITIES
A63B23/0405
HUMAN NECESSITIES
A63B23/1254
HUMAN NECESSITIES
A63B23/1209
HUMAN NECESSITIES
A63B23/00
HUMAN NECESSITIES
F16B7/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A63B21/005
HUMAN NECESSITIES
A63B21/4043
HUMAN NECESSITIES
A63B23/1263
HUMAN NECESSITIES
A63B23/03533
HUMAN NECESSITIES
A63B21/00069
HUMAN NECESSITIES
International classification
A63B21/062
HUMAN NECESSITIES
A63B22/00
HUMAN NECESSITIES
F16B7/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A63B21/005
HUMAN NECESSITIES
A63B23/02
HUMAN NECESSITIES
A63B23/12
HUMAN NECESSITIES
A63B23/035
HUMAN NECESSITIES
A63B21/00
HUMAN NECESSITIES
A63B23/00
HUMAN NECESSITIES
Abstract
An exercise machine for performing triceps press exercises, including a moving user support that supports a user in a seated position. The exercise machine includes a linkage assembly that allows the moving user support to tilt as the user performs the triceps press exercise. As the user extends his or her arms from an exercise starting position to an exercise ending position, a user support frameand thus the user's torsoreclines progressively backwards. The user's natural reaction to this reclining sensation is to bring his or her head forward, which encourages the user to plant his or her lower back firmly into a stable position against a back pad and in turn reduces a risk of injury associated with excessively arching of the lower back.
Claims
1. A triceps exercise machine, comprising: (a) a stationary frame; (b) a user support frame moveably connected to the stationary frame, the user support frame comprising a seat, a back support and a foot pad, wherein the seat, the back support and the foot pad are configured to support a seated user in a forward-facing position; (c) a user engagement linkage assembly configured to be positioned behind the seated user, the user engagement linkage assembly connected to both the stationary frame and the user support frame; and (d) at least one exercise arm connected to the user engagement linkage assembly, wherein the at least one exercise arm is configured to be pulled in a forward direction by the seated user over a head of the seated user, thereby causing the user engagement linkage assembly to rotate, thereby rotating the user support frame with respect to the stationary frame, and thereby causing the seat and back support to tilt backwards, and wherein the at least one exercise arm is configured such that the seated user pulls forward on the at least one exercise arm by forwardly rotating forearms of the seated user in an arcuate path around elbows of the seated user while keeping the elbows of the seated user fixed relative to a torso of the seated user.
2. The triceps exercise machine of claim 1, wherein the user engagement linkage assembly is pivotally connected to both the stationary frame and the user support frame.
3. The triceps exercise machine of claim 1, wherein the backwards tilting of the user support frame when the at least one exercise arm is pulled in the forward direction is configured to reduce arching of a back of the seated user.
4. The triceps exercise machine of claim 1, wherein the foot pad elevates when the seat and back support tilt backwards.
5. The triceps exercise machine of claim 1, wherein the at least one exercise arm comprises a pair of exercise arms.
6. The triceps exercise machine of claim 5, wherein each of the exercise arms is configured to be inwardly angled in front of the seated user.
7. The triceps exercise machine of claim 5, wherein each of the exercise arms has outwardly extending arm grips.
8. The triceps exercise machine of claim 5, wherein each of the exercise arms are independently moveable both vertically up-and-down and horizontally side-to-side.
9. The triceps exercise machine of claim 1, wherein the user engagement linkage assembly is pivotally connected both to the stationary frame and to the user support frame.
10. The triceps exercise machine of claim 9, wherein the user engagement linkage assembly is pivotally connected to a back of the back support.
11. The triceps exercise machine of claim 9, wherein a connection point between the user engagement linkage assembly and the user support frame rotates around a stationary connection point between the user engagement linkage assembly and the stationary frame.
12. The triceps exercise machine of claim 1, further comprising: a cable mount connected to a bottom of the user engagement linkage assembly.
13. A triceps exercise machine, comprising: (a) a stationary frame; (b) a user support frame moveably connected to the stationary frame, the user support frame comprising a seat, a back support and a foot pad, wherein the seat, the back support and the foot pad are configured to support a seated user in a forward-facing position; (c) a user engagement linkage assembly configured to be positioned behind the seated user, the user engagement linkage assembly connected to both the stationary frame and the user support frame; and (d) at least one exercise arm connected to the user engagement linkage assembly, wherein the at least one exercise arm is configured to be pulled in a forward direction by the seated user over a head of the seated user, thereby causing the user engagement linkage assembly to rotate, thereby rotating the user support frame with respect to the stationary frame, and thereby causing the seat and back support to tilt backwards, wherein the foot pad elevates when the seat and back support tilt backwards, wherein a connection point between the user engagement linkage assembly and the user support frame is higher than a the connection point between the user engagement linkage assembly and the stationary frame prior to the at least one exercise arm being pulled in the forward direction, and wherein the connection point between the user engagement linkage assembly and the user support frame is lower than the connection point between the user engagement linkage assembly and the stationary frame after the at least one exercise arm has been pulled in the forward direction.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Preferred features of the embodiments of the present invention are disclosed in the accompanying drawings, wherein similar reference characters denote similar elements throughout the several views, and wherein:
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DETAILED DESCRIPTION
(21) The embodiments of the present invention will now be described more fully hereinafter with reference to the accompanying drawings, in which preferred embodiments of the invention are shown. This invention may, however, be embodied in many different forms and should not be construed as limited to the illustrated embodiments set forth herein. Rather, these illustrated embodiments are provided so that this disclosure will be thorough and complete and will convey the scope of the invention to those skilled in the art.
(22) In the following description, like reference characters designate like or corresponding parts throughout the figures. It is to be understood that the phraseology and terminology used in the following description are used for the purpose of description and enablement, and should not be regarded as limiting. Additionally, in the following description, it is understood that terms such as top, bottom, side, front, back, inner, outer, and the like, are words of convenience and are not to be construed as limiting terms.
(23) A triceps press exercise machine including a moving user support is described herein. The embodiments of the present invention are designed to provide a triceps press exercise machine with a user support that tilts as the user performs a triceps press exercise. More specifically, as the user extends his or her arms from the exercise starting position to the exercise ending position, the user supportand thus the user's torsoreclines progressively backwards. The user's natural reaction to this reclining sensation is to bring his or her head forward, which encourages the user to plant his or her lower back firmly into a stable position against the back pad. This, in turn, avoids excessive arching of the lower back by maintaining the user's body in a more ergonomically sound position throughout the exercise motion.
(24) An embodiment of the present invention includes a triceps press exercise machine 100 as depicted in
(25) The main frame 110 also includes a connecting linkage mount 115, which is located at the upper end of the upwardly extending support member 112. The connecting linkage mount 115 includes a pivot sleeve 116 and bearings 117 for pivotally mounting the connecting linkage assembly 150 on the main frame 110. The pivot sleeve 116 forms a generally horizontal pivot axis 118. One of ordinary skill in the art will appreciate that the pivot sleeve 116 and bearings 117 could alternatively be associated with the connecting linkage assembly 150 itself, rather than the connecting linkage mount 115.
(26) The main frame 110 also includes a user support mount 119 for pivotally mounting the user support frame 130 on the main frame 110. The user support mount 119 is located at the upper end of the user support strut 114. In this embodiment, the user support mount 119 is a U-shaped mounting bracket with aligned through holes 120, which form a generally horizontal pivot axis 121. The main frame 110 further includes support feet 122 at both ends of the horizontal base strut 111. The forward end of the horizontal base strut 111 includes an upwardly directed stop 123 that engages foot support bar 143 when the triceps press exercise machine 100 is in the exercise starting position, as illustrated in
(27) The triceps press exercise machine 100, as depicted in
(28) The pivot mounting of the user support frame 130 on the main frame 110 defines a vertical gravitational center line of the pivotal movement. According to the embodiment depicted in
(29) In one embodiment, the portions of the combined weight of the user and user support frame 130 that are positioned on each of the respective sides of the vertical gravitational center line may be substantially equal. In another embodiment, a greater portion of the combined weight of the user and user support frame 130 is positioned on the rearward side of the gravitational center line (i.e., the side that the user support frame 130 is pivoting towards) in the exercise starting position. This reduces the initial lifting resistance. In yet another embodiment, a greater portion of the combined weight of the user and user support frame 130 is positioned on the forward side of the gravitational center line (i.e., the side that the user support frame 130 is pivoting away from) in the exercise ending position. By finishing the exercise with a greater portion of the combined weight of the user and user support frame 130 on the trailing side of the gravitational center line, resistance dropoff at the end of an exercise is reduced.
(30) A seat pad 138 is adjustably mounted on the base portion 132 via seat support post 139 which is telescopically engaged in an open upper end of a seat support tube 140 on the base portion 132. Seat support post 139 has a series of openings (not shown) for selectable engagement with spring-biased pull pin 142 to adjust the height of the seat pad 138, based on user size and preference. The base portion 132 of the moving frame member 131 extends forward from the seat support tube 140, and a foot support bar 143 is transversely mounted at the forward end of base portion 132. A footrest 144 is mounted at each end of foot support bar 143 for engagement by a user's feet. A back pad 145 is mounted on the upright portion 133 of the moving frame member 131.
(31) The upright portion 133 of the moving frame member 131 also includes a user engagement linkage mount 146. The user engagement linkage mount 146 is located on the upright portion 133, above mounting location 134. The user engagement linkage mount 146 includes a pivot sleeve 147 and bearings 148 for pivotally connecting the user support frame 130 to the user engagement linkage assembly 170. The pivot sleeve 147 forms a generally horizontal pivot axis 149. One of ordinary skill in the art will appreciate that the pivot sleeve 147 and bearings 148 could alternatively be associated with the user engagement linkage assembly 170 itself, rather than the user engagement linkage mount 146 of the user support frame 130.
(32) The triceps press exercise machine 100, as depicted in
(33) The linkage bar 151 further includes an upper mount 155 located opposite the lower mount 152. The upper mount 155 includes a pivot sleeve 156 and bearings 157 for pivotally connecting the connecting linkage assembly 150 and the user engagement linkage assembly 170. The pivot sleeve 156 forms a generally horizontal pivot axis 158. One of ordinary skill in the art will appreciate that the pivot sleeve 156 and bearings 157 could alternatively be associated with the user engagement linkage assembly 170, rather than the upper mount 155 of the connecting linkage assembly 150.
(34) The linkage bar 151 also includes a standoff feature 159 with a rubber stop 160 that engages the stop bar 179 on the user engagement linkage assembly 170 when the triceps press exercise machine 100 is in the exercise starting position. Accordingly, the stop 123 located on the horizontal base strut 111 (which engages the foot support bar 143) and the stop 160 of the linkage bar 151 (which engages the user engagement linkage assembly 170) together define the exercise starting position for the triceps press exercise machine 100.
(35) The triceps press exercise machine 100, as depicted in
(36) The linkage brackets 171 also include a central mount 175 for pivotally mounting the user engagement linkage assembly 170 to the connecting linkage assembly 150 for relative rotation about pivot axis 158. More specifically, the central mount 175 includes a second pair of aligned through holes 176, one in each of the linkage brackets 171. A pivot pin 177 passes through the pivot sleeve 156, bearings 157, and through holes 176 to provide a pivotal connection between the user engagement linkage assembly 170 and the connecting linkage assembly 150.
(37) The engagement linkage assembly 170 further includes a cable mount 178 pivotally mounted to one or both of the linkage brackets 171. A stop bar 179 is mounted between the linkage brackets 171 and provides a surface for engaging with the stop 160 located on the connecting linkage assembly 150. A linkage bar 180 is fixedly connected to both of the linkage brackets 171. The linkage bar 180 extends generally transverse to the linkage brackets 171 in order to provide a pair of spaced apart ends 181. Each of the two spaced apart ends 181 includes a respective inner mount plate 182. The inner mount plates 182 lie in generally vertical planes and are generally parallel with each other. The locations of the spaced apart ends 181 of the linkage bar 180and their respective inner mount plates 182will principally determine the pivot locations for the exercise arms 190.
(38) Coupled to each of the respective inner mount plates 182 is an outer cover plate 183. The outer cover plates 183 lie in generally vertical planes and are generally parallel with the inner mount plates 182. Each of the outer cover plates 183 is mounted to the respective inner mount plate 182 with spacers 184 between the outer and inner plates. Plastic guards 185 are mounted on the inner mount plates 182 and on the outer cover plates 183, in order to prevent damage to the plates 182, 183 and/or the exercise arms 190.
(39) For each of the exercise arms 190, the spatial relationships between the inner mount plate 182, outer cover plate 183, spacers 184, and plastic guards 185 provide a pocket area 186 for receiving a universal joint 187. The universal joint 187 mounts the exercise arm 190 for swinging rotation about at least two pivot axes. The pocket areas 186 also limit the swing path of the exercise arms 190 and provide a rest location for the exercise arms 190. More specifically, the spacers 184 located above and below an exercise arm 190 limit the upward/downward rotation of the exercise arm 190 relative to the user engagement linkage assembly 170 (i.e., rotation about a horizontal pivot axis defined by the universal joint 187). And the plastic guards 185 to the left and right of the exercise arm 190 limit the left/right rotation of the exercise arm 190 relative to the user engagement linkage assembly 170 (i.e., rotation about a vertical pivot axis defined by the universal joint 187). Further, when the triceps press exercise machine 100 is not in use, the exercise arms 190 will fall to a rest position defined by the pocket area 186. Accordingly, when a user begins to use the triceps press exercise machine 100, the exercise arms 190 will preferably be within easy reach of the user.
(40) The exercise arms 190 each include an elongate arm member 191. One end of the arm member 191 includes an exercise arm mount 192. The exercise arm mount 192 is adapted to receive the universal joint 187, which couples the exercise arm 190 to the user engagement linkage assembly 170 for rotation about at least two pivot axes. The opposite end of the arm member 191 includes a grip area 193 for the user to grasp when performing triceps press exercises. One of ordinary skill in the art will appreciation that the grip area 193 may be in numerous shapes or configurations (including a straight horizontal bar or bars, straight vertical bars, or bars bent into a U, V, or W shape) in order to provide alternate hand grips or wrist angles, if desired.
(41) The triceps press exercise machine 100 further includes a source of resistance, which in the case of the embodiment depicted in
(42) The triceps press exercise machine 100 depicted in
(43) The operation and use of the embodiment depicted in
(44) The user begins in the exercise starting position (
(45) As the user moves his hands and forearms forward (from the exercise starting position toward the exercise ending position), the exercise arms 190 move in a generally upward and forward direction. As discussed above, the exercise arms 190 are linked to the user engagement linkage assembly 170 through universal joints 187. Consequently, as the exercise arms 190 move generally upward and forward, the rear portion of the user engagement linkage assembly 170 similarly moves in a generally upward and forward direction. As the rear portion of the user engagement linkage assembly 170 moves upward, the end of cable 202 that is anchored to the user engagement linkage assembly 170 at cable mount 178, is also pulled upward. The cable 202 is thus pulled along its routed path in pulley assembly 210, such that the opposite end of the cable 202 lifts the lifting rod 201 and selected weight plates 203 within the selectorized weight stack 200.
(46) Additionally, as the rear portion of the user engagement linkage assembly 170 moves upward and forward, the user engagement linkage assembly 170 rotates about pivot axis 158. As a result of this rotation, the forward end of the user engagement linkage assembly 170 is driven downward. This, in turn, pushes the user support frame 130 downward at pivot axis 149. Consequently, the user support frame 130 rotates rearwardly about pivot axis 121. That is, the user support frame 130 reclines progressively backward about pivot axis 121 as the user moves the exercise arms 190 from the exercise starting position to the exercise ending position.
(47) Additional embodiments of the present invention include triceps press exercise machines such as those depicted in
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(49) The linkage mount assembly 310 pivotally links the connecting linkage assembly 150, the user support frame 130, and the user engagement linkage assembly 350. Further, the linkage mount assembly 310 provides a pivotal mounting point and rotational adjustment for the user engagement linkage assembly 350, in order to adjust the exercise starting and exercise ending positions for the exercise arms 190. Similar to the user engagement linkage assembly 170 depicted in
(50) The linkage mount assembly 310 also includes a rear mount 320 for pivotally connecting the user engagement linkage assembly 350 to the linkage mount assembly 310. The rear mount 320 includes a pivot sleeve 321 for pivotally mounting the user engagement linkage assembly 350. The pivot sleeve 321 forms a generally horizontal pivot axis 323 and also engages the stop 160 on the connecting linkage assembly 150 when the triceps press exercise machine 310 is in the exercise starting position. One of ordinary skill in the art will appreciate that the pivot sleeve 321 could alternatively be associated with the user engagement linkage assembly 350, rather than the linkage mount assembly 310. The rear mount 320 further includes a plurality of range-of-motion indexing holes 325.
(51) The triceps press exercise machine 300, as depicted in
(52) The remaining features of the current embodiment (e.g., main frame 110, user support frame 130, connecting linkage assembly 150, exercise arms 190, selectorized weight stack assembly 200, and a pulley assembly 210) may be substantially the same as that of the embodiment depicted in
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(54) As in the previously described embodiments, the main frame 510 supports the weight of the user and provides a fixed structure to which all moving assemblies are connected. The main frame 510 is a fixed frame structure and includes a horizontal base strut 511, an upwardly extending support member 512, a bracing member 513, and a user support strut 514 extending from the bracing member 513. The main frame 510 al so includes a user support mount 515 for pivotally mounting the user support frame 130 on the main frame 510. The user support mount 515 is located at the upper end of the user support strut 514 and defines a generally horizontal pivot axis 516.
(55) The main frame 510 further includes a user engagement linkage support strut 517, which extends upwardly and forwardly from the upwardly extending support member 512. A user engagement linkage mount 518 is located at the end of the user engagement support strut 517. The user engagement linkage mount 518 provides pivotal mounting of the user engagement linkage assembly 570 and forms a horizontal pivot axis 519. The main frame 510 further includes support feet 520 at both ends of the horizontal base strut 511. The forward end of the horizontal base strut 511 includes an upwardly directed stop 521 that engages foot support bar 143 when the triceps press exercise machine 500 is in the exercise starting position, as illustrated in
(56) The triceps press exercise machine 500 further includes a connecting linkage assembly 550 that links the user support frame 130 and the user engagement linkage assembly 570. The connecting linkage assembly 550 includes a pair of linkage brackets 551. The linkage brackets 551 lie in generally vertical planes and are generally parallel with each other. The linkage brackets 551 include a forward mount 552 for pivotally mounting the connecting linkage assembly 550 to the user support frame 130 for relative rotation about pivot axis 149. The linkage brackets 551 also include a rear mount 553 for pivotally mounting the connecting linkage assembly 550 to the user engagement linkage assembly 570. The rear mount 553 defines a generally horizontal pivot axis 554.
(57) The triceps press exercise machine 500 further includes a user engagement linkage assembly 570 that pivotally links the connecting linkage assembly 550, the main frame 510, and the exercise arm 590. The user engagement linkage assembly 570 includes a linkage bar 571. The linkage bar 571 includes a forward mount 572 for pivotally mounting the user engagement linkage assembly 570 to the connecting linkage assembly 550 for relative rotation about pivot axis 554. The linkage bar 571 also includes a central mount 573 for pivotally mounting the user engagement linkage assembly 570 to the main frame 510 for relative rotation about pivot axis 519. The linkage bar 571 further includes a rear mount 574 for pivotally mounting the exercise arm 590. The rear mount 574 defines a generally horizontal pivot axis 575. The linkage bar 571 also includes a standoff feature 576 with a rubber stop 577 that engages the user support frame 130 when the triceps press exercise machine 500 is in the exercise starting position. Accordingly, the stop 521 located on the horizontal base strut 511 (which engages the foot support bar 143) and the stop 577 of the linkage bar 571 (which engages the exercise arm 190) together define the exercise starting position for the triceps press exercise machine 500. The user engagement linkage assembly 570 further includes a cable mount 578.
(58) The exercise arm 590 of the current embodiment is one unitary component, unlike the independently mounted exercise arms 190 depicted in
(59) The triceps press exercise machine 500 depicted in
(60) The remaining features of the current embodiment (e.g., user support frame 130 and selectorized weight stack assembly 200) may be substantially the same as that of the embodiment depicted in
(61) The operation and use of the embodiment depicted in
(62) The user begins in the exercise starting position (
(63) As the user moves his hands and forearms forward (from the exercise starting position toward the exercise ending position), the exercise arm 590 moves in a generally upward and forward direction. As discussed above, the exercise arm 590 is pivotally linked to the user engagement linkage assembly 570 for rotation about pivot axis 575. Consequently, as the exercise arm 590 moves generally upward and forward, the rear portion of the user engagement linkage assembly 570 similarly moves in a generally upward and forward direction. As the rear portion of the user engagement linkage assembly 570 moves upward, the end of cable 602 that is anchored to the user engagement linkage assembly 570 at cable mount 578, is also pulled upward. The cable 602 is thus pulled along its routed path in pulley assembly 610, such that the opposite end of the cable 602 lifts the lifting rod 201 and weight plates 203 within the selectorized weight stack 200.
(64) Additionally, as the rear portion of the user engagement linkage assembly 570 moves upward and forward, the user engagement linkage assembly 570 rotates about pivot axis 519. As a result of this rotation, the forward end of the user engagement linkage assembly 570 is driven downward. This, in turn, pushes the connecting linkage assembly 550 downward at pivot axis 554. As the connecting linkage assembly 550 is forced downward, it causes a downward movement on the user support frame 130 at pivot axis 149. Consequently, the user support frame 130 rotates rearwardly about pivot axis 516. Thus, the user support frame 130 reclines progressively backward about pivot axis 516 as the user moves the exercise arm 590 from the exercise starting position to the exercise ending position.
LIST OF REFERENCE NUMERALS
(65) TABLE-US-00001 100 - triceps press exercise machine 110 - main frame 111 - horizontal base strut 112 - upwardly extending support member 113 - bracing member 114 - user support strut 115 - connecting linkage mount 116 - pivot sleeve 117 - bearings 118 - pivot axis 119 - user support mount 120 - through hole 121 - pivot axis 122 - support foot 123 - stop 130 - user support frame 131 - moving frame member 132 - base portion 133 - upright portion 134 - mounting location 135 - pivot sleeve 136 - bearings 137 - pivot pin 138 - seat pad 139 - seat support post 140 - seat support tube 142 - pull pin 143 - foot support bar 144 - footrest 145 - back pad 146 - user engagement linkage mount 147 - pivot sleeve 148 - bearings 149 - pivot axis 150 - connecting linkage assembly 151 - linkage bar 152 - lower mount 153 - through holes 154 - pivot pin 155 - upper mount 156 - pivot sleeve 157 - bearings 158 - pivot axis 159 - standoff feature 160 - stop 170 - user engagement linkage assembly 171 - linkage brackets 172 - forward mount 173 - through holes 174 - pivot pin 175 - central mount 176 - through holes 177 - pivot pin 178 - cable mount 179 - stop bar 180 - linking bar 181 - spaced apart end 182 - inner mount plate 183 - outer cover plate 184 - spacer 185 - plastic guard 186 - pocket area 187 - universal joint 190 - exercise arm 191 - arm member 192 - exercise arm mount 193 - grip area 200 - selectorized weight stack 201 - lifting rod 202 - cable 203 - weight plates 204 - guide rods 205 - housing 206 - openings 207 - pin 208 - upper weight stack strut 209 - lower weight stack strut 210 - pulley assembly 211 - first pulley 212 - second pulley 300 - triceps press exercise machine 310 - linkage mount assembly 311 - forward mount 315 - central mount 320 - rear mount 321 - pivot sleeve 323 - pivot axis 325 - indexing holes 350 - user engagement linkage assembly 351 - mount 352 - pull pin 500 - triceps press exercise machine 510 - main frame 511 - horizontal base strut 512 - upwardly extending support member 513 - bracing member 514 - user support strut 515 - user support mount 516 - pivot axis 517 - user engagement linkage support strut 518 - user engagement linkage mount 519 - pivot axis 520 - support fleet 521 - stop 550 - connecting linkage assembly 551 - linkage brackets 552 - forward mount 553 - rear mount 554 - pivot axis 570 - user engagement linkage assembly 571 - linkage bar 572 - forward mount 573 - central mount 574 - rear mount 575 - pivot axis 576 - standoff feature 577 - stop 578 - cable mount 590 - exercise arm 591 - arm member 592 - exercise arm mount 593 - grip area 602 - cable 610 - pulley assembly 611 - first pulley 612 - second pulley 613 - third pulley
The list of reference numerals is provided for convenience and is intended to aid understanding of the illustrated embodiments described above. The embodiments of the present invention may be described in many different forms and should not be construed as limited to the illustrated embodiments. Likewise, the list above setting forth the reference numerals and associated components comprising the illustrated embodiments do not limit the scope of the invention as recited in the claims that follow.