US20070135272A1 - Continous tensioning system for fitness apparatus - Google Patents

Continous tensioning system for fitness apparatus Download PDF

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Publication number
US20070135272A1
US20070135272A1 US11/558,250 US55825006A US2007135272A1 US 20070135272 A1 US20070135272 A1 US 20070135272A1 US 55825006 A US55825006 A US 55825006A US 2007135272 A1 US2007135272 A1 US 2007135272A1
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cable
pulley
pair
braces
biasing
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US11/558,250
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Michael Stuckey
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Individual
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Individual
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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B21/00Exercising apparatus for developing or strengthening the muscles or joints of the body by working against a counterforce, with or without measuring devices
    • A63B21/06User-manipulated weights
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B21/00Exercising apparatus for developing or strengthening the muscles or joints of the body by working against a counterforce, with or without measuring devices
    • A63B21/15Arrangements for force transmissions
    • A63B21/151Using flexible elements for reciprocating movements, e.g. ropes or chains
    • A63B21/154Using flexible elements for reciprocating movements, e.g. ropes or chains using special pulley-assemblies
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B2225/00Miscellaneous features of sport apparatus, devices or equipment
    • A63B2225/30Maintenance

Definitions

  • the present invention relates generally to a fitness apparatus, and more particularly, to a tensioning system for a fitness apparatus.
  • a cable is engaged at one end with a resistance member, such as a weight stack, and engaged with a user interface, such as a bar, at the other end.
  • the length of the cable is engaged with a set of pulleys, which allow the cable to efficiently transmit resistance from the resistance member to the user interface.
  • the user engages the user interface to repeatedly raise and lower the resistance member by way of the cable and pulley system.
  • the cable and pulley system move smoothly and provide a substantially constant resistance to the user interface over the full range of motion.
  • frequent use of fitness apparatus and the high forces placed of the cable causes the cable to stretch, which adversely affects the performance of the fitness apparatus by introducing slack into the cable and pulley system.
  • the stretched cable will not work effectively over the full range of motion of the interface.
  • the user may have to engage and move the interface a distance before the cable and pulley system begin transmitting the resistance to the interface, sometimes referred to as a “dead-spot”. If allowed to stretch enough, the cable can become loose enough that it disengages from the pulleys. Routine maintenance must be performed on such fitness apparatus to reduce slack in the cable and pulley system as the cable continues to stretch.
  • FIG. 1 is a side elevation view of a fitness apparatus, which is provided with a tensioning system constructed in accordance with and embodying the present invention
  • FIG. 2 is a front elevation view of the fitness apparatus
  • FIG. 3 is an enlarged perspective view of the tensioning system of FIG. 1 ;
  • FIG. 4 is an enlarged perspective view of a first alternate embodiment of the tensioning system
  • FIG. 5 is an enlarged perspective view of a second alternate embodiment of the tensioning system.
  • FIG. 6 is an enlarged perspective view of a third alternate embodiment of the tensioning system
  • FIG. 7 is an enlarged perspective view of a fourth alternate embodiment of the tensioning system.
  • FIG. 8 is a partial enlarged side view of the fitness apparatus with a fifth alternate embodiment of the tensioning system.
  • the fitness apparatus 10 includes a frame 14 for supporting a resistance member 16 , such as weights, and a cable and pulley system 18 that connects between the resistance member 16 and first and second interface members 22 and 24 .
  • a user can select a desired resistance of the resistance member 16 , such as by selecting the desired weight (ie. 20lb, 40 lb, etc.), and engage either the first interface member 22 or second interface members 24 to perform various fitness exercises.
  • the desired weight ie. 20lb, 40 lb, etc.
  • the tensioning system 12 mounts to the frame 14 and engages the cable and pulley system 18 to apply a biasing force to maintain proper tension and eliminate any slack in the cable and pulley system 18 ( FIG. 3 ).
  • the frame 14 includes a base 30 with a first leg 32 extending upwardly from a rear portion of the base 30 in a generally vertical orientation and a second leg 34 extending upwardly from about a middle portion of the base 30 in a generally vertical orientation ( FIG. 1 ).
  • An arcuately-shaped upper portion of the second leg 34 extends generally rearward to connect to an upper portion of the first leg 32 for additional support.
  • a seating arm 36 extends generally forward from a lower portion of the second leg 34 in a generally horizontal orientation to support a seat 38 .
  • the seating arm 36 should be positioned at an appropriate height for seating, preferably about one third of the height of the second leg 34 .
  • a backrest 39 is attached to the second leg 34 at a location above and corresponding to the seat 38 .
  • the resistance member 16 operatively connects to the frame 14 with a bushing 40 that slidably couples with the first leg 32 . In this way, the bushing 40 and resistance member 16 can slide up and down along the first leg 32 .
  • any other appropriate means for connecting the resistance member 16 to the frame 14 can be used, such as bearings.
  • Support posts 42 extend outwardly from the bushing 40 , which are capable of receiving and supporting the resistance member 16 .
  • the resistance member 16 shown as weights, can be added or removed incrementally so that the user can select a desired resistance.
  • the first interface member 22 is a lever arm having a proximate end 44 that is pivotally attached to a distal end 46 of the seating arm 36 .
  • the cable and pulley system 18 attaches to a distal end 48 of the first interface member 22 , thereby operatively connecting the resistance member 16 to the first interface member 22 .
  • the first interface member 22 can be engaged by the user to perform leg exercises by pivoting the first interface member 22 upwardly and downwardly with his or her legs, thereby raising and lowering the resistance member 16 via the cable and pulley system 18 .
  • a cross member 50 attaches to the upper portion of the second leg 34 and is positioned in a generally horizontal position to support the second interface members 24 , shown in FIGS. 1-2 as handle straps, and the cable and pulley system 18 .
  • the cable and pulley system 18 attaches to each second interface member 24 , thereby operatively connecting the resistance member 16 to the second interface members 24 .
  • the second interface members 24 can be engaged by the user to perform various exercises, such as arm exercises, by pulling and releasing the second interface members 24 , thereby raising and lowering the resistance member 14 via the cable and pulley system 18 .
  • the first and second interface members 22 and 24 as shown in the present embodiment, respectively as a lever arm and handle straps, they can also comprise any appropriate type of cable attachment member, including, but not limited to bars, ropes, grips, and the like.
  • the cable and pulley system 18 includes various guide pulleys positioned to guide a first cable 26 and second cable 28 during operation of the fitness apparatus 10 ( FIG. 1 ).
  • Two upper pulleys 52 are positioned respectively at the upper portion of the first leg 32 and the upper portion of the second leg 34 .
  • Four lower pulleys 54 are positioned along the base 30 .
  • a guide pulley 56 is positioned at each end of the cross member 50 ( FIG. 2 ), such as with a hook.
  • a double-floating pulley 58 operatively connects the first cable 26 to the second cable 28 ( FIG. 1 ).
  • the first cable ends 60 attach respectively to the resistance member 16 and the first interface member 22 , such as with a snap-hook, with the length of the first cable 26 engaging the upper pulleys 52 and lower pulleys 54 .
  • the second cable ends 62 attach to the second interface members 24 , such as with a snap-hook, with the length of the second cable 28 engaging the guide pulleys 56 and a double floating pulley 58 .
  • Cable stops 64 attach to the second cable 28 proximate to the second cable ends 62 to prevent the second cable ends 62 from being drawn through and disengaging from the guide pulleys 56 .
  • the double floating pulley 58 includes a top pulley 66 and a bottom pulley 68 connected by a bracket 70 and positioned generally perpendicular to each other along a longitudinal axis ( FIG. 3 ).
  • the bottom pulley 68 engages the first cable 26 and the top pulley 66 engages the second cable 28 , so that the double floating pulley 58 is suspended therebetween.
  • the second cable 28 is operatively connected and to the resistance member 16 via the first cable 26 .
  • the tensioning system 12 includes a pair of floating pulleys 72 operatively engaged with the second cable 28 , and connected to the frame 14 with biasing members 74 , such as a helical tension spring, and a bracket 76 ( FIG. 3 ).
  • the biasing members 74 are shown in FIG. 3 as helical tension springs, but can be any other type of biasing member, such as, a compression spring, a torsion spring, a volute spring, a conical spring, a gas spring, a spiral spring, a wire form, an elastic band, and the like.
  • various biasing members 74 can be used to increase or decrease the biasing force.
  • Each floating pulley 72 is pivotally mounted, such as with a fastener 78 , within a generally C-shaped housing 80 .
  • the housing 80 includes a tab 82 with a hole 84 for connecting to the biasing member 74 , such as with a pin 86 .
  • the second cable 28 is disposed between the pulley 72 and the housing 80 . In this way, the housing 80 helps maintain engagement of the second cable 28 with the pulley 72 by shielding the area of engagement from interference by foreign objects.
  • the tensioning system 12 maintains tension on the second cable 28 by applying a generally perpendicular force to the second cable 28 along the longitudinal axis of the biasing member 74 . This forces the second cable 28 away from its natural travel path (shown as the dotted line in FIG. 3 ) between the double floating pulley 58 and the guide pulleys 56 , which effectively makes the travel path of the second cable 28 longer and removes slack.
  • the tension maintained on the second cable 28 is continuous during both operation and non-operation of the apparatus 10 . In this way, the tensioning system 12 automatically adjusts the travel path of the second cable 28 as it stretches. Therefore, no manual adjustment of the apparatus 10 is needed to compensate for the stretching of the second cable 28 .
  • FIG. 4 illustrates a first alternate embodiment of the tensioning system 112 , which include includes a pair of floating pulleys 172 operatively engaged with the second cable 28 , and pivotally connected to the top pulley 66 of the double floating pulley 58 with a pair of braces 176 .
  • a biasing member 174 such as a helical compression spring, connects between the braces 176 , such as with a fastener, at about the mid-point of each brace 176 and applies an outwardly extending force along the longitudinal axis of the biasing member 174 to the braces 176 .
  • the biasing member 174 is shown in FIG.
  • each floating pulley 172 is pivotally mounted, such as with a fastener 178 , within a generally C-shaped housing 180 .
  • the second cable 28 is disposed between the pulley 174 and the housing 180 . In this way, the housing 180 helps maintain engagement of the second cable 28 with the pulley 174 by shielding the area of engagement from interference by foreign objects.
  • the tensioning system 112 maintains tension on the second cable 28 by applying a generally perpendicular force to the second cable 28 along the longitudinal axis of the biasing member 174 . This forces the second cable 28 away from its natural travel path between the double floating pulley 58 and the guide pulleys 56 , which effectively makes the travel path of the second cable 28 longer and removes slack.
  • FIG. 5 illustrates a second alternate embodiment of the tensioning system 212 , which include includes a pair of floating pulleys 272 operatively engaged with the second cable 28 , and pivotally connected to the top pulley 66 of the double floating pulley 58 with a pair of braces 276 .
  • Three biasing members 274 such as a helical tension spring, connect between the ends of the braces 276 and a common junction 282 .
  • the biasing members 274 apply an inwardly extending force towards the common junction 282 to the braces 276 .
  • the biasing members 274 are shown in FIG.
  • Each floating pulley 272 is pivotally mounted, such as with a fastener 278 , within a generally C-shaped housing 280 . When assembled, the second cable 28 is disposed between the pulley 272 and the housing 280 . In this way, the housing 280 helps maintain engagement of the second cable 28 with the pulley 272 by shielding the area of engagement from interference by foreign objects.
  • the tensioning system 212 maintains tension on the second cable 28 by applying a generally perpendicular force to the second cable 28 along towards the common junction 282 . This forces the second cable 28 away from its natural travel path between the double floating pulley 58 and the guide pulleys 56 , which effectively makes the travel path of the second cable 28 longer and removes slack.
  • FIG. 6 illustrates a third alternate embodiment of the tensioning system 312 , which include includes a pair of floating pulleys 372 operatively engaged with the second cable 28 , and pivotally connected to the top pulley 66 of the double floating pulley 58 with a pair of braces 376 .
  • Three biasing members 374 such as a helical tension spring, connect from a common junction 382 to a respective pulley 372 and the frame 14 , such as with a bracket 377 .
  • the biasing members 374 apply an inwardly extending force towards the common junction 382 to the braces 376 .
  • the biasing members 374 are shown in FIG.
  • each floating pulley 372 is pivotally mounted, such as with a fastener 378 , within a generally C-shaped housing 380 .
  • the second cable 28 is disposed between the pulley 372 and the housing 380 .
  • the housing 380 helps maintain engagement of the second cable 28 with the pulley 372 by shielding the area of engagement from interference by foreign objects.
  • the tensioning system 312 maintains tension on the second cable 28 by applying a generally perpendicular force to the second cable 28 towards the common junction 382 . This forces the second cable 28 away from its natural travel path between the double floating pulley 372 and the guide pulleys 56 , which effectively makes the travel path of the second cable 28 longer and removes slack.
  • FIG. 7 illustrates a fourth alternate embodiment of the tensioning system 412 , which include includes a pair of floating pulleys 472 operatively engaged with the second cable 28 , and pivotally connected to the top pulley 66 of the double floating pulley 58 with a pair of braces 476 .
  • Two biasing members 474 such as a helical compression spring, connect from about the mid-point of each brace 476 , such as with a fastener, to the lower pulley 68 of the double floating pulley 58 .
  • the biasing members 474 apply an outwardly extending force along the longitudinal axis of the biasing member 474 to the braces 476 .
  • the biasing members 474 are shown in FIG.
  • Each floating pulley 472 is pivotally mounted, such as with a fastener 478 , within a generally C-shaped housing 480 . When assembled, the second cable 28 is disposed between the pulley 472 and the housing 480 . In this way, the housing 480 helps maintain engagement of the second cable 28 with the pulley 472 by shielding the area of engagement from interference by foreign objects.
  • the tensioning system 412 maintains tension on the second cable 28 by applying a generally perpendicular force to the second cable 28 along the longitudinal axis of the biasing member 474 . This forces the second cable 28 away from its natural travel path between the double floating pulley 58 and the guide pulleys 56 , which effectively makes the travel path of the second cable 28 longer and removes slack.
  • FIG. 8 illustrates a fifth alternate embodiment of the tensioning system 512 , which include includes a first floating pulley 590 and second floating pulley 592 operatively engaged with the first cable 26 , and connected to the frame 14 .
  • a biasing member 594 such as a helical compression spring, connects from the frame 14 , such as with a fastener, to the first pulley 590 .
  • the second pulley 592 is connected to the first pulley 590 with a rigid member 596 , such as a bracket.
  • the rigid member 596 can be replaced with a biasing member.
  • the biasing member 594 applies a force to the first and second pulley 590 and 592 along the longitudinal axis of the biasing member 594 towards the frame 14 .
  • the biasing member 594 is shown in FIG. 8 as a helical tension spring, but can be any other type of biasing member, such as, a torsion spring, a volute spring, a conical spring, a gas spring, a spiral spring, a wire form, an elastic band, and the like.
  • various biasing members 574 can be used to increase or decrease the biasing force.
  • Each floating pulley 590 and 592 is pivotally mounted, such as with a fastener 578 , within a generally C-shaped housing 580 .
  • the first cable 26 When assembled, the first cable 26 is disposed between the pulley 590 and 592 and respective housing 580 .
  • the housing 580 helps maintain engagement of the first cable 26 with the pulleys 590 and 592 by shielding the area of engagement from interference by foreign objects.
  • the tensioning system 512 maintains tension on the first cable 26 by applying a generally perpendicular force to the first cable 26 along the longitudinal axis of the biasing member 594 . This forces the first cable 26 away from its natural travel path between the upper pulley 52 and the lower pulleys 54 , which effectively makes the travel path of the first cable 26 longer and removes slack.
  • the present invention may be utilized to provide biased cable tension in various types of fitness apparatus having a cable and pulley mechanisms by suitable selection and placement of biasing elements to apply generally perpendicular loads to the selected cables.
  • Alternate embodiments can have fitness apparatus with more or less engagement members, including a single engagement member.
  • the frame can have other arrangements, including more or less legs to support the cable and pulley assembly and associated resistance members.
  • any number of arrangements of the pulleys can be used, including more or less pulleys, and more or less cables.

Abstract

A fitness apparatus including a frame, at least one resistance member operatively mounted on the frame, and at least one user interface member. A cable and pulley system operatively connects between the at least one resistant member and the at least one interface member. Floating pulleys engage with the a cable of the cable and pulley system. Biasing elements are enagaged between the frame and the floating pulleys, so that the biasing element applies a generally perpendicular force to the cable and removes the slack in the cable and pulley system.

Description

    CROSS-REFERENCE TO RELATED APPLICATIONS
  • This application is related to U.S. Provisional Patent Application No. 60/597,554 filed Dec. 8, 2005 from which priority is claimed, and is hereby incorporated by reference.
  • STATEMENT REGARDING FEDERALLY SPONSORED RESEARCH
  • Not Applicable.
  • BACKGROUND OF THE INVENTION
  • The present invention relates generally to a fitness apparatus, and more particularly, to a tensioning system for a fitness apparatus.
  • Many fitness apparatus use various arrangements of cable and pulley systems to provide weight training exercises. Generally, a cable is engaged at one end with a resistance member, such as a weight stack, and engaged with a user interface, such as a bar, at the other end. The length of the cable is engaged with a set of pulleys, which allow the cable to efficiently transmit resistance from the resistance member to the user interface. In operation, the user engages the user interface to repeatedly raise and lower the resistance member by way of the cable and pulley system.
  • It is desirable that the cable and pulley system move smoothly and provide a substantially constant resistance to the user interface over the full range of motion. However, frequent use of fitness apparatus and the high forces placed of the cable causes the cable to stretch, which adversely affects the performance of the fitness apparatus by introducing slack into the cable and pulley system. As a result, the stretched cable will not work effectively over the full range of motion of the interface. The user may have to engage and move the interface a distance before the cable and pulley system begin transmitting the resistance to the interface, sometimes referred to as a “dead-spot”. If allowed to stretch enough, the cable can become loose enough that it disengages from the pulleys. Routine maintenance must be performed on such fitness apparatus to reduce slack in the cable and pulley system as the cable continues to stretch.
  • Therefore, what is needed is a device that maintains tension on the cable and pulley system to compensate for cable stretch.
  • DESCRIPTION OF THE DRAWINGS
  • In the accompanying drawings which form part of the specification:
  • FIG. 1 is a side elevation view of a fitness apparatus, which is provided with a tensioning system constructed in accordance with and embodying the present invention;
  • FIG. 2 is a front elevation view of the fitness apparatus;
  • FIG. 3 is an enlarged perspective view of the tensioning system of FIG. 1;
  • FIG. 4 is an enlarged perspective view of a first alternate embodiment of the tensioning system;
  • FIG. 5 is an enlarged perspective view of a second alternate embodiment of the tensioning system; and
  • FIG. 6 is an enlarged perspective view of a third alternate embodiment of the tensioning system;
  • FIG. 7 is an enlarged perspective view of a fourth alternate embodiment of the tensioning system; and
  • FIG. 8 is a partial enlarged side view of the fitness apparatus with a fifth alternate embodiment of the tensioning system.
  • Corresponding reference numerals indicate corresponding parts throughout the several figures of the drawings.
  • DETAILED DESCRIPTION
  • The following detailed description illustrates the invention by way of example and not by way of limitation. The description clearly enables one skilled in the art to make and use the invention, describes several embodiments, adaptations, variations, alternatives, and uses of the invention, including what is presently believed to be the best mode of carrying out the invention. Additionally, it is to be understood that the invention is not limited in its application to the details of construction and the arrangements of components set forth in the following description or illustrated in the drawings. The invention is capable of other embodiments and of being practiced or being carried out in various ways. Also, it is to be understood that the phraseology and terminology used herein is for the purpose of description and should not be regarded as limiting.
  • As shown in FIGS. 1-3, an embodiment of the present invention, generally referred to as a fitness apparatus 10, is shown having a tensioning system 12. The fitness apparatus 10 includes a frame 14 for supporting a resistance member 16, such as weights, and a cable and pulley system 18 that connects between the resistance member 16 and first and second interface members 22 and 24. A user can select a desired resistance of the resistance member 16, such as by selecting the desired weight (ie. 20lb, 40 lb, etc.), and engage either the first interface member 22 or second interface members 24 to perform various fitness exercises. For various reasons, there may be some slack or looseness present in the cable and pulley system 18, such as stretching in the cables 26 and 28 due to repeated use. The tensioning system 12 mounts to the frame 14 and engages the cable and pulley system 18 to apply a biasing force to maintain proper tension and eliminate any slack in the cable and pulley system 18 (FIG. 3).
  • The frame 14 includes a base 30 with a first leg 32 extending upwardly from a rear portion of the base 30 in a generally vertical orientation and a second leg 34 extending upwardly from about a middle portion of the base 30 in a generally vertical orientation (FIG. 1). An arcuately-shaped upper portion of the second leg 34 extends generally rearward to connect to an upper portion of the first leg 32 for additional support. A seating arm 36 extends generally forward from a lower portion of the second leg 34 in a generally horizontal orientation to support a seat 38. The seating arm 36 should be positioned at an appropriate height for seating, preferably about one third of the height of the second leg 34. A backrest 39 is attached to the second leg 34 at a location above and corresponding to the seat 38.
  • The resistance member 16 operatively connects to the frame 14 with a bushing 40 that slidably couples with the first leg 32. In this way, the bushing 40 and resistance member 16 can slide up and down along the first leg 32. However, any other appropriate means for connecting the resistance member 16 to the frame 14 can be used, such as bearings. Support posts 42 extend outwardly from the bushing 40, which are capable of receiving and supporting the resistance member 16. The resistance member 16, shown as weights, can be added or removed incrementally so that the user can select a desired resistance.
  • The first interface member 22 is a lever arm having a proximate end 44 that is pivotally attached to a distal end 46 of the seating arm 36. The cable and pulley system 18 attaches to a distal end 48 of the first interface member 22, thereby operatively connecting the resistance member 16 to the first interface member 22. Thus, the first interface member 22 can be engaged by the user to perform leg exercises by pivoting the first interface member 22 upwardly and downwardly with his or her legs, thereby raising and lowering the resistance member 16 via the cable and pulley system 18.
  • A cross member 50 attaches to the upper portion of the second leg 34 and is positioned in a generally horizontal position to support the second interface members 24, shown in FIGS. 1-2 as handle straps, and the cable and pulley system 18. The cable and pulley system 18 attaches to each second interface member 24, thereby operatively connecting the resistance member 16 to the second interface members 24. Thus, the second interface members 24 can be engaged by the user to perform various exercises, such as arm exercises, by pulling and releasing the second interface members 24, thereby raising and lowering the resistance member 14 via the cable and pulley system 18. While the first and second interface members 22 and 24 as shown in the present embodiment, respectively as a lever arm and handle straps, they can also comprise any appropriate type of cable attachment member, including, but not limited to bars, ropes, grips, and the like.
  • The cable and pulley system 18 includes various guide pulleys positioned to guide a first cable 26 and second cable 28 during operation of the fitness apparatus 10 (FIG. 1). Two upper pulleys 52 are positioned respectively at the upper portion of the first leg 32 and the upper portion of the second leg 34. Four lower pulleys 54 are positioned along the base 30. A guide pulley 56 is positioned at each end of the cross member 50 (FIG. 2), such as with a hook. A double-floating pulley 58 operatively connects the first cable 26 to the second cable 28 (FIG. 1). The first cable ends 60 attach respectively to the resistance member 16 and the first interface member 22, such as with a snap-hook, with the length of the first cable 26 engaging the upper pulleys 52 and lower pulleys 54. The second cable ends 62 attach to the second interface members 24, such as with a snap-hook, with the length of the second cable 28 engaging the guide pulleys 56 and a double floating pulley 58. Cable stops 64 attach to the second cable 28 proximate to the second cable ends 62 to prevent the second cable ends 62 from being drawn through and disengaging from the guide pulleys 56.
  • The double floating pulley 58 includes a top pulley 66 and a bottom pulley 68 connected by a bracket 70 and positioned generally perpendicular to each other along a longitudinal axis (FIG. 3). The bottom pulley 68 engages the first cable 26 and the top pulley 66 engages the second cable 28, so that the double floating pulley 58 is suspended therebetween. In this way, the second cable 28 is operatively connected and to the resistance member 16 via the first cable 26.
  • The tensioning system 12 includes a pair of floating pulleys 72 operatively engaged with the second cable 28, and connected to the frame 14 with biasing members 74, such as a helical tension spring, and a bracket 76 (FIG. 3). The biasing members 74 are shown in FIG. 3 as helical tension springs, but can be any other type of biasing member, such as, a compression spring, a torsion spring, a volute spring, a conical spring, a gas spring, a spiral spring, a wire form, an elastic band, and the like. In addition, various biasing members 74 can be used to increase or decrease the biasing force. Each floating pulley 72 is pivotally mounted, such as with a fastener 78, within a generally C-shaped housing 80. The housing 80 includes a tab 82 with a hole 84 for connecting to the biasing member 74, such as with a pin 86. When assembled, the second cable 28 is disposed between the pulley 72 and the housing 80. In this way, the housing 80 helps maintain engagement of the second cable 28 with the pulley 72 by shielding the area of engagement from interference by foreign objects.
  • The tensioning system 12 maintains tension on the second cable 28 by applying a generally perpendicular force to the second cable 28 along the longitudinal axis of the biasing member 74. This forces the second cable 28 away from its natural travel path (shown as the dotted line in FIG. 3) between the double floating pulley 58 and the guide pulleys 56, which effectively makes the travel path of the second cable 28 longer and removes slack. The tension maintained on the second cable 28 is continuous during both operation and non-operation of the apparatus 10. In this way, the tensioning system 12 automatically adjusts the travel path of the second cable 28 as it stretches. Therefore, no manual adjustment of the apparatus 10 is needed to compensate for the stretching of the second cable 28.
  • FIG. 4 illustrates a first alternate embodiment of the tensioning system 112, which include includes a pair of floating pulleys 172 operatively engaged with the second cable 28, and pivotally connected to the top pulley 66 of the double floating pulley 58 with a pair of braces 176. A biasing member 174, such as a helical compression spring, connects between the braces 176, such as with a fastener, at about the mid-point of each brace 176 and applies an outwardly extending force along the longitudinal axis of the biasing member 174 to the braces 176. The biasing member 174 is shown in FIG. 4 as a helical compression spring, but can be any other type of biasing member, such as, a torsion spring, a volute spring, a conical spring, a gas spring, a spiral spring, a wire form, an elastic band, and the like. The biasing member 174 can attach to other locations along the braces 176 to increase or decrease the force to the braces 176. In addition, various biasing members 174 can be used to increase or decrease the biasing force. Each floating pulley 172 is pivotally mounted, such as with a fastener 178, within a generally C-shaped housing 180. When assembled, the second cable 28 is disposed between the pulley 174 and the housing 180. In this way, the housing 180 helps maintain engagement of the second cable 28 with the pulley 174 by shielding the area of engagement from interference by foreign objects.
  • The tensioning system 112 maintains tension on the second cable 28 by applying a generally perpendicular force to the second cable 28 along the longitudinal axis of the biasing member 174. This forces the second cable 28 away from its natural travel path between the double floating pulley 58 and the guide pulleys 56, which effectively makes the travel path of the second cable 28 longer and removes slack.
  • FIG. 5 illustrates a second alternate embodiment of the tensioning system 212, which include includes a pair of floating pulleys 272 operatively engaged with the second cable 28, and pivotally connected to the top pulley 66 of the double floating pulley 58 with a pair of braces 276. Three biasing members 274, such as a helical tension spring, connect between the ends of the braces 276 and a common junction 282. The biasing members 274 apply an inwardly extending force towards the common junction 282 to the braces 276. The biasing members 274 are shown in FIG. 5 as a helical compression spring, but can be any other type of biasing member, such as, a torsion spring, a volute spring, a conical spring, a gas spring, a spiral spring, a wire form, an elastic band, and the like. The biasing members 274 can attach to other locations along the braces 276 to increase or decrease the force to the braces 276. In addition, various biasing members 274 can be used to increase or decrease the biasing force. Each floating pulley 272 is pivotally mounted, such as with a fastener 278, within a generally C-shaped housing 280. When assembled, the second cable 28 is disposed between the pulley 272 and the housing 280. In this way, the housing 280 helps maintain engagement of the second cable 28 with the pulley 272 by shielding the area of engagement from interference by foreign objects.
  • The tensioning system 212 maintains tension on the second cable 28 by applying a generally perpendicular force to the second cable 28 along towards the common junction 282. This forces the second cable 28 away from its natural travel path between the double floating pulley 58 and the guide pulleys 56, which effectively makes the travel path of the second cable 28 longer and removes slack.
  • FIG. 6 illustrates a third alternate embodiment of the tensioning system 312, which include includes a pair of floating pulleys 372 operatively engaged with the second cable 28, and pivotally connected to the top pulley 66 of the double floating pulley 58 with a pair of braces 376. Three biasing members 374, such as a helical tension spring, connect from a common junction 382 to a respective pulley 372 and the frame 14, such as with a bracket 377. The biasing members 374 apply an inwardly extending force towards the common junction 382 to the braces 376. The biasing members 374 are shown in FIG. 6 as a helical tension spring, but can be any other type of biasing member, such as, a torsion spring, a volute spring, a conical spring, a gas spring, a spiral spring, a wire form, an elastic band, and the like. The biasing members 374 can attach to other locations along the braces 376 to increase or decrease the force to the braces 376. In addition, various biasing members 374 can be used to increase or decrease the biasing force. Each floating pulley 372 is pivotally mounted, such as with a fastener 378, within a generally C-shaped housing 380. When assembled, the second cable 28 is disposed between the pulley 372 and the housing 380. In this way, the housing 380 helps maintain engagement of the second cable 28 with the pulley 372 by shielding the area of engagement from interference by foreign objects.
  • The tensioning system 312 maintains tension on the second cable 28 by applying a generally perpendicular force to the second cable 28 towards the common junction 382. This forces the second cable 28 away from its natural travel path between the double floating pulley 372 and the guide pulleys 56, which effectively makes the travel path of the second cable 28 longer and removes slack.
  • FIG. 7 illustrates a fourth alternate embodiment of the tensioning system 412, which include includes a pair of floating pulleys 472 operatively engaged with the second cable 28, and pivotally connected to the top pulley 66 of the double floating pulley 58 with a pair of braces 476. Two biasing members 474, such as a helical compression spring, connect from about the mid-point of each brace 476, such as with a fastener, to the lower pulley 68 of the double floating pulley 58. The biasing members 474 apply an outwardly extending force along the longitudinal axis of the biasing member 474 to the braces 476. The biasing members 474 are shown in FIG. 7 as a helical tension spring, but can be any other type of biasing member, such as, a torsion spring, a volute spring, a conical spring, a gas spring, a spiral spring, a wire form, an elastic band, and the like. The biasing members 374 can attach to other locations along the braces 376 to increase or decrease the force to the braces 376. In addition, various biasing members 474 can be used to increase or decrease the biasing force. Each floating pulley 472 is pivotally mounted, such as with a fastener 478, within a generally C-shaped housing 480. When assembled, the second cable 28 is disposed between the pulley 472 and the housing 480. In this way, the housing 480 helps maintain engagement of the second cable 28 with the pulley 472 by shielding the area of engagement from interference by foreign objects.
  • The tensioning system 412 maintains tension on the second cable 28 by applying a generally perpendicular force to the second cable 28 along the longitudinal axis of the biasing member 474. This forces the second cable 28 away from its natural travel path between the double floating pulley 58 and the guide pulleys 56, which effectively makes the travel path of the second cable 28 longer and removes slack.
  • FIG. 8 illustrates a fifth alternate embodiment of the tensioning system 512, which include includes a first floating pulley 590 and second floating pulley 592 operatively engaged with the first cable 26, and connected to the frame 14. A biasing member 594, such as a helical compression spring, connects from the frame 14, such as with a fastener, to the first pulley 590. The second pulley 592 is connected to the first pulley 590 with a rigid member 596, such as a bracket. In an alternate embodiment, the rigid member 596 can be replaced with a biasing member. The biasing member 594 applies a force to the first and second pulley 590 and 592 along the longitudinal axis of the biasing member 594 towards the frame 14. The biasing member 594 is shown in FIG. 8 as a helical tension spring, but can be any other type of biasing member, such as, a torsion spring, a volute spring, a conical spring, a gas spring, a spiral spring, a wire form, an elastic band, and the like. In addition, various biasing members 574 can be used to increase or decrease the biasing force. Each floating pulley 590 and 592 is pivotally mounted, such as with a fastener 578, within a generally C-shaped housing 580. When assembled, the first cable 26 is disposed between the pulley 590 and 592 and respective housing 580. In this way, the housing 580 helps maintain engagement of the first cable 26 with the pulleys 590 and 592 by shielding the area of engagement from interference by foreign objects.
  • The tensioning system 512 maintains tension on the first cable 26 by applying a generally perpendicular force to the first cable 26 along the longitudinal axis of the biasing member 594. This forces the first cable 26 away from its natural travel path between the upper pulley 52 and the lower pulleys 54, which effectively makes the travel path of the first cable 26 longer and removes slack.
  • It will be understood that changes can be made in the above constructions without departing from the scope of the invention, and it is intended that all matter contained in the above description or shown in the accompanying drawings shall be interpreted as illustrative and not in a limiting sense. For example, the present invention may be utilized to provide biased cable tension in various types of fitness apparatus having a cable and pulley mechanisms by suitable selection and placement of biasing elements to apply generally perpendicular loads to the selected cables. Alternate embodiments can have fitness apparatus with more or less engagement members, including a single engagement member. The frame can have other arrangements, including more or less legs to support the cable and pulley assembly and associated resistance members. In addition, any number of arrangements of the pulleys can be used, including more or less pulleys, and more or less cables.

Claims (18)

1. A tensioning system for a fitness apparatus having a frame and a cable and pulley assembly, comprising:
at least one floating pulley operatively engaged with at least one cable of the cable and pulley assembly; and
at least one biasing element operatively connected between the at least one floating pulley and the frame for applying a tensioning force to the at least one cable.
2. The tensioning system of claim 1, wherein the biasing element forces the at least one floating pulley and at least one cable away from a natural travel path.
3. The tensioning system of claim 1 wherein the generally perpendicular force acts substantially along the longitudinal axis of the at least one biasing element.
4. The tensioning device of claim 1, wherein the cable and pulley device include a first cable and a second cable, further comprising:
a double floating pulley operatively engaged between the first cable and the second cable;
a pair of pulleys operatively engaged with the first cable;
a pair of braces connected between the double floating pulley and the respective pair of pulleys; and
a biasing element connected between the pair of braces, said biasing element configured to apply a biasing force to each of said braces, whereby a tensioning force is applied to at least said first cable.
5. The tensioning device of claim 1, wherein the cable and pulley device include a first cable and a second cable, further comprising:
a double floating pulley operatively engaged between the first cable and the second cable;
a pair of pulleys operatively engaged with the first cable;
a pair of braces connected between the double floating pulley and the respective of pulleys; and
at least two biasing element connected between the pair of braces and a common junction, said biasing elements configured to apply a biasing force to each of said braces, whereby a tensioning force is applied to at least said first cable.
6. The tensioning device of claim 5, further comprising:
a third biasing element connected between the frame and said common junction.
7. The tensioning device of claim 1, wherein the cable and pulley device include a first cable and a second cable, further comprising:
a double floating pulley operatively engaged between the first cable and the second cable;
a pair of pulleys operatively engaged with the first cable;
a pair of braces connected between the double floating pulley and the respective pair of pulleys; and
a pair of biasing elements, a first biasing element in said pair connected between a first brace in said pair of braces and the double floating pulley, and a second biasing element in said pair connected between a second brace in said pair of braces and the double floating pulley, whereby said biasing elements are configured to apply a biasing force to each of said braces and a tensioning force is applied to at least said first cable.
8. The tensioning device of claim 1, further comprising:
at least two pulleys operatively engaged with at least one cable of the cable and pulley assembly; and
a rigid member connected between the at least two pulleys.
9. A fitness apparatus, comprising:
a frame;
at least one resistance member operatively mounted on the frame;
at least one interface member;
a cable and pulley system operatively connected between the at least one resistance member and the at least one interface member, said cable and pulley system having at least one cable;
at least one floating pulley engaged with said at least one cable; and
at least one biasing element engaged between said frame and said at least one floating pulley, wherein the biasing element applies a tensioning force to said at least one cable.
10. The tensioning system of claim 9, wherein said biasing element is configured to displace said at least one floating pulley and said at least one cable from a natural travel path between said at least one resistance member and said at least one interface member.
11. The tensioning system of claim 9 wherein said tensioning force acts substantially along the longitudinal axis of the at least one biasing element.
12. The tensioning device of claim 9, further comprising:
a first cable;
a second cable;
a double floating pulley operatively engaged between the first cable and the second cable;
a pair of floating pulleys operatively engaged with the first cable;
a pair of braces connected between the double floating pulley and the respective floating pulleys; and
a biasing element connected between the pair of braces, said biasing element configured to apply a biasing force to each of said braces in said pair of braces, whereby a tensioning force is applied to at least said first cable.
13. The tensioning device of claim 9, further comprising:
a first cable;
a second cable;
a double floating pulley operatively engaged between the first cable and the second cable;
a pair of floating pulleys operatively engaged with the first cable;
a pair of braces connected between the double floating pulley and the respective pair of floating pulleys; and
at least two biasing element connected between the pair of braces and a common junction, said biasing elements configured to apply a biasing force to each of said braces in said pair of braces, whereby a tensioning force is applied to at least said first cable.
14. The tensioning device of claim 13, further comprising:
a third biasing element connected between the frame and the common junction.
15. The tensioning device of claim 9, further comprising:
a first cable;
a second cable;
a double floating pulley operatively engaged between the first cable and the second cable;
a pair of floating pulleys operatively engaged with the first cable;
a pair of braces connected between the double floating pulley and the respective pair of floating pulleys; and
at least one biasing element connected between the pair of braces and the double floating pulley, said biasing element is configured to apply a biasing force to each of said braces, whereby a tensioning force is applied to at least said first cable.
16. The tensioning device of claim 9, further comprising:
at least two pulleys operatively engaged with at least one cable of the cable and pulley assembly; and
a rigid member connected between the at least two pulleys.
17. A fitness apparatus, comprising:
a frame;
at least one resistance member operatively mounted to said frame;
at least one interface member;
a cable and pulley system operatively connected between said at least one resistance member and said at least one interface member, said cable and pulley system having at least one cable;
at least one floating pulley engaged with said at least one cable; and
a means for biasing said at least one pulley in a generally perpendicular direction from a longitudinal axis of said cable to apply a tensioning force to said cable.
18. A method for maintaining cable tension in a fitness apparatus having at least one cable operatively coupling at least one interface member with at least one resistance member mounted on a frame, comprising:
applying a generally perpendicular biasing force to the at least one cable, said biasing force displacing said at least one cable from a travel path to maintain a tension in the at least one cable.
US11/558,250 2005-12-08 2006-11-09 Continous tensioning system for fitness apparatus Abandoned US20070135272A1 (en)

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Cited By (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20080051269A1 (en) * 2006-08-24 2008-02-28 Vectra Fitness, Inc. Exercise Assemblies Having Foot-Retaining Apparatus
US7517304B1 (en) * 2007-01-25 2009-04-14 Brunswick Corporation Exercise apparatus with cartridge loading pulley swivel
US20100145240A1 (en) * 2008-12-10 2010-06-10 Thomas Cromie Combined massage and exercise device
KR101112709B1 (en) 2009-06-12 2012-02-24 임정수 Aerobic exercise machine for the upper part of human body
US20140336018A1 (en) * 2013-05-10 2014-11-13 Precor Incorporated Fitness equipment unit
US20170203144A1 (en) * 2016-01-14 2017-07-20 Preventive Medical Health Care Co., Ltd. Direction-reversing device and exercise equipment
US10188890B2 (en) 2013-12-26 2019-01-29 Icon Health & Fitness, Inc. Magnetic resistance mechanism in a cable machine
US10252109B2 (en) 2016-05-13 2019-04-09 Icon Health & Fitness, Inc. Weight platform treadmill
US10279212B2 (en) 2013-03-14 2019-05-07 Icon Health & Fitness, Inc. Strength training apparatus with flywheel and related methods
US10293211B2 (en) 2016-03-18 2019-05-21 Icon Health & Fitness, Inc. Coordinated weight selection
US10426989B2 (en) 2014-06-09 2019-10-01 Icon Health & Fitness, Inc. Cable system incorporated into a treadmill
US10441840B2 (en) 2016-03-18 2019-10-15 Icon Health & Fitness, Inc. Collapsible strength exercise machine
US10449416B2 (en) 2015-08-26 2019-10-22 Icon Health & Fitness, Inc. Strength exercise mechanisms
US10661114B2 (en) 2016-11-01 2020-05-26 Icon Health & Fitness, Inc. Body weight lift mechanism on treadmill
US10940360B2 (en) 2015-08-26 2021-03-09 Icon Health & Fitness, Inc. Strength exercise mechanisms

Citations (65)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US931699A (en) * 1909-02-02 1909-08-17 Fred Medart Mfg Company Exercising apparatus.
US3306611A (en) * 1964-04-27 1967-02-28 Gaul Martin Exercising apparatus
US3806992A (en) * 1973-08-13 1974-04-30 Gte Automatic Electric Lab Inc Cable tensioner
US3874659A (en) * 1973-04-30 1975-04-01 Benjamin M Aharoni Exercising machine
US3910130A (en) * 1974-10-29 1975-10-07 Jr Charles W Traughber Self-tensioning cable drive
US4479647A (en) * 1981-12-30 1984-10-30 Smith Robert S Resistance exerciser
US4540159A (en) * 1983-07-22 1985-09-10 Retsco, Inc. Hydropneumatic cable tensioner
US4638978A (en) * 1983-07-22 1987-01-27 Jordan Larry B Hydropneumatic cable tensioner
US4644938A (en) * 1985-01-22 1987-02-24 Danninger Medical Technology Hand exerciser
US4669723A (en) * 1985-10-16 1987-06-02 Panaram Alpine Corporation Inc. Ski trainer
US4685670A (en) * 1984-10-01 1987-08-11 Harold Zinkin Elastic tension exercising apparatus with multiple pass cable and pulley
US4765615A (en) * 1987-04-21 1988-08-23 Case William S Exercising apparatus
US4811946A (en) * 1988-03-18 1989-03-14 Pelczar Stanley J Weight lifting apparatus
US4902006A (en) * 1988-05-20 1990-02-20 Stallings Jr Glenn E Arm exercise apparatus
US4944511A (en) * 1989-01-23 1990-07-31 Paul S. Francis Adjustable resilient reel exerciser
US4961544A (en) * 1988-11-09 1990-10-09 Lange International S. A. Cable tensioner with a winding drum for a ski boot
US4982955A (en) * 1989-02-21 1991-01-08 Heasley Raymond E Exercise device
US4988098A (en) * 1989-10-26 1991-01-29 Sport Supply Group, Inc. Rotator cuff exercise machine
US5009353A (en) * 1990-02-01 1991-04-23 Lake Shore, Inc. Cable tensioning device
US5013033A (en) * 1989-02-01 1991-05-07 Proform Fitness Products, Inc. Rowing apparatus
US5048826A (en) * 1990-08-23 1991-09-17 Ryan William C Safety apparatus for use with barbell assembly
US5221245A (en) * 1992-01-31 1993-06-22 Jonathan Yeh Multifunction exercise apparatus
US5236406A (en) * 1991-02-20 1993-08-17 Fitness Warehouse, Inc. Constant tension exercise device
US5290214A (en) * 1993-04-30 1994-03-01 Chen Tsung Yu Exerciser
US5308304A (en) * 1992-07-22 1994-05-03 Pacific Fitness Corporation Multi-hip exerciser
US5336153A (en) * 1993-02-09 1994-08-09 Joong Chenn Industry Co., Ltd. Multipurpose gymnastic apparatus
US5354251A (en) * 1993-11-01 1994-10-11 Sleamaker Robert H Multifunction excercise machine with ergometric input-responsive resistance
US5398781A (en) * 1992-02-05 1995-03-21 C. Haushahn Gmbh & Co. Cable tensioning device for elevators
US5417634A (en) * 1989-08-30 1995-05-23 Pacific Fitness Corporation Exercise machine with pre-stretch adjustment feature
US5518477A (en) * 1994-02-04 1996-05-21 Lumex, Inc. Multi-station exercise machine with a common weight stack and cable tension isolation
US5597257A (en) * 1994-03-23 1997-01-28 Habing; Theodore G. Adjustable press arm
US5613928A (en) * 1994-08-08 1997-03-25 Laudone; James A. Jointed bar for an exercise machine
US5624362A (en) * 1993-12-29 1997-04-29 Wilson; Thomas I. Punching handle accessory
US5709636A (en) * 1995-05-24 1998-01-20 Vallone; Anthony J. Portable exercise device
US5823921A (en) * 1994-03-11 1998-10-20 Dawson; Jeffrey S. Freeweight barbell lifting exercise machine with user controllable lift assist and safety device
US5823920A (en) * 1995-01-26 1998-10-20 Grider; Sherman P. Exercise machine
US5924966A (en) * 1998-01-12 1999-07-20 Havlovic; David A. Apparatus for exercising triceps muscles
US5928117A (en) * 1996-10-11 1999-07-27 Vittone; Larry W. Motion-resisting exercise apparatus utilizing concentric frames
US5951444A (en) * 1997-11-24 1999-09-14 Webber; Randall T. Cable and pulley linkage for exercise machine
US6004244A (en) * 1997-02-13 1999-12-21 Cybex International, Inc. Simulated hill-climbing exercise apparatus and method of exercising
US6019704A (en) * 1998-07-27 2000-02-01 Mark A. Morgan Exercise machine to exercise the wrist and forearm muscles
US6027433A (en) * 1998-02-09 2000-02-22 Flynn; Brian M. Multi-function exercise apparatus that utilizes a single cable pulley system
USD427034S (en) * 1999-07-09 2000-06-27 Omni Mount Systems, Inc. Cable tensioner
US6090020A (en) * 1991-02-20 2000-07-18 Webber; Randall T. Constant tension exercise device
US6102835A (en) * 1998-01-29 2000-08-15 Webber; Randall T. Weight stack housing for exercise machine
US6142919A (en) * 1999-04-12 2000-11-07 Jorgensen; Adam A. Multi-purpose low profile physical exercising device
US6159133A (en) * 1999-03-04 2000-12-12 Shugg; Robert C. Seat mounted workout station system
US20020013200A1 (en) * 2000-03-06 2002-01-31 Scott Sechrest Functional trainer
US20030041980A1 (en) * 2001-09-06 2003-03-06 Schulte Peter S. Cable tensioner for a door
US20030056993A1 (en) * 2001-09-25 2003-03-27 Ingersoll-Rand Company Drilling machine having a feed cable tensioner
US6569065B1 (en) * 1998-11-09 2003-05-27 Elmar Menold Exercise apparatus
US6582346B1 (en) * 2000-02-07 2003-06-24 Vectra Fitness, Inc. Cable-and-pulley devices having intermediate tension isolators for exercise machines
US6584731B2 (en) * 2001-03-19 2003-07-01 Meritor Light Vehicle Systems-France Vehicle window lifter with cable tensioning device
US20030176261A1 (en) * 1999-09-14 2003-09-18 Free Motion Fitness, Inc. Cable crossover exercise apparatus
US20030178158A1 (en) * 2001-09-06 2003-09-25 Schulte Peter S. Cable tensioner and shock absorber for a door
US6719673B1 (en) * 2002-10-15 2004-04-13 Laplaca Jack Cable system for exercise machine with multiple exercise stations
US20040077465A1 (en) * 1996-05-31 2004-04-22 David Schmidt Differential motion machine
US6726607B1 (en) * 2002-06-18 2004-04-27 Stephen P. Ihli Portable personal training and exercise device with a cable and pulley mechanism
US6746385B1 (en) * 1993-12-20 2004-06-08 Nautilus, Inc. Upper body exercise machine
US20040134140A1 (en) * 2003-01-14 2004-07-15 Gaddie William R. Cable system and method for wind-resistant buildings
US20040255516A1 (en) * 2003-06-20 2004-12-23 Fabien Dufour Cable tensioner
US20040256064A1 (en) * 2003-06-19 2004-12-23 Bennett Thomas B. Sectional door cable tensioner
US20040262442A1 (en) * 2003-06-27 2004-12-30 Mustapha Mazouzi Cable tensioner and window regulator equipped with a cable tensioner
US20050116079A1 (en) * 2003-12-02 2005-06-02 Stevens Daniel W. Level wind winch cable tensioner
US7083554B1 (en) * 1997-02-27 2006-08-01 Nautilus, Inc. Exercise machine with infinite position range limiter and automatic belt tensioning system

Patent Citations (72)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US931699A (en) * 1909-02-02 1909-08-17 Fred Medart Mfg Company Exercising apparatus.
US3306611A (en) * 1964-04-27 1967-02-28 Gaul Martin Exercising apparatus
US3874659A (en) * 1973-04-30 1975-04-01 Benjamin M Aharoni Exercising machine
US3806992A (en) * 1973-08-13 1974-04-30 Gte Automatic Electric Lab Inc Cable tensioner
US3910130A (en) * 1974-10-29 1975-10-07 Jr Charles W Traughber Self-tensioning cable drive
US4479647A (en) * 1981-12-30 1984-10-30 Smith Robert S Resistance exerciser
US4540159A (en) * 1983-07-22 1985-09-10 Retsco, Inc. Hydropneumatic cable tensioner
US4638978A (en) * 1983-07-22 1987-01-27 Jordan Larry B Hydropneumatic cable tensioner
US4685670A (en) * 1984-10-01 1987-08-11 Harold Zinkin Elastic tension exercising apparatus with multiple pass cable and pulley
US4644938A (en) * 1985-01-22 1987-02-24 Danninger Medical Technology Hand exerciser
US4669723A (en) * 1985-10-16 1987-06-02 Panaram Alpine Corporation Inc. Ski trainer
US4765615A (en) * 1987-04-21 1988-08-23 Case William S Exercising apparatus
US4811946A (en) * 1988-03-18 1989-03-14 Pelczar Stanley J Weight lifting apparatus
US4902006A (en) * 1988-05-20 1990-02-20 Stallings Jr Glenn E Arm exercise apparatus
US4961544A (en) * 1988-11-09 1990-10-09 Lange International S. A. Cable tensioner with a winding drum for a ski boot
US4944511A (en) * 1989-01-23 1990-07-31 Paul S. Francis Adjustable resilient reel exerciser
US5013033A (en) * 1989-02-01 1991-05-07 Proform Fitness Products, Inc. Rowing apparatus
US4982955A (en) * 1989-02-21 1991-01-08 Heasley Raymond E Exercise device
US5417634A (en) * 1989-08-30 1995-05-23 Pacific Fitness Corporation Exercise machine with pre-stretch adjustment feature
US4988098A (en) * 1989-10-26 1991-01-29 Sport Supply Group, Inc. Rotator cuff exercise machine
US5009353A (en) * 1990-02-01 1991-04-23 Lake Shore, Inc. Cable tensioning device
US5048826A (en) * 1990-08-23 1991-09-17 Ryan William C Safety apparatus for use with barbell assembly
US5401227A (en) * 1991-02-20 1995-03-28 Fitness Warehouse, Inc. Constant tension exercise device
US5236406A (en) * 1991-02-20 1993-08-17 Fitness Warehouse, Inc. Constant tension exercise device
US5681247A (en) * 1991-02-20 1997-10-28 Webber; Randall T. Constant tension exercise device
US6090020A (en) * 1991-02-20 2000-07-18 Webber; Randall T. Constant tension exercise device
US5221245A (en) * 1992-01-31 1993-06-22 Jonathan Yeh Multifunction exercise apparatus
US5437347A (en) * 1992-02-05 1995-08-01 C. Haushahn Gmbh & Co. Cable tensioning device for elevators
US5398781A (en) * 1992-02-05 1995-03-21 C. Haushahn Gmbh & Co. Cable tensioning device for elevators
US5468202A (en) * 1992-07-22 1995-11-21 Pacific Fitness Corporation Multi-hip exerciser
US5308304A (en) * 1992-07-22 1994-05-03 Pacific Fitness Corporation Multi-hip exerciser
US5336153A (en) * 1993-02-09 1994-08-09 Joong Chenn Industry Co., Ltd. Multipurpose gymnastic apparatus
US5290214A (en) * 1993-04-30 1994-03-01 Chen Tsung Yu Exerciser
US5354251A (en) * 1993-11-01 1994-10-11 Sleamaker Robert H Multifunction excercise machine with ergometric input-responsive resistance
US6746385B1 (en) * 1993-12-20 2004-06-08 Nautilus, Inc. Upper body exercise machine
US5624362A (en) * 1993-12-29 1997-04-29 Wilson; Thomas I. Punching handle accessory
US5518477A (en) * 1994-02-04 1996-05-21 Lumex, Inc. Multi-station exercise machine with a common weight stack and cable tension isolation
US5823921A (en) * 1994-03-11 1998-10-20 Dawson; Jeffrey S. Freeweight barbell lifting exercise machine with user controllable lift assist and safety device
US5597257A (en) * 1994-03-23 1997-01-28 Habing; Theodore G. Adjustable press arm
US5613928A (en) * 1994-08-08 1997-03-25 Laudone; James A. Jointed bar for an exercise machine
US5823920A (en) * 1995-01-26 1998-10-20 Grider; Sherman P. Exercise machine
US5709636A (en) * 1995-05-24 1998-01-20 Vallone; Anthony J. Portable exercise device
US20040077465A1 (en) * 1996-05-31 2004-04-22 David Schmidt Differential motion machine
US5928117A (en) * 1996-10-11 1999-07-27 Vittone; Larry W. Motion-resisting exercise apparatus utilizing concentric frames
US6004244A (en) * 1997-02-13 1999-12-21 Cybex International, Inc. Simulated hill-climbing exercise apparatus and method of exercising
US7083554B1 (en) * 1997-02-27 2006-08-01 Nautilus, Inc. Exercise machine with infinite position range limiter and automatic belt tensioning system
US5951444A (en) * 1997-11-24 1999-09-14 Webber; Randall T. Cable and pulley linkage for exercise machine
US5924966A (en) * 1998-01-12 1999-07-20 Havlovic; David A. Apparatus for exercising triceps muscles
US6102835A (en) * 1998-01-29 2000-08-15 Webber; Randall T. Weight stack housing for exercise machine
US6027433A (en) * 1998-02-09 2000-02-22 Flynn; Brian M. Multi-function exercise apparatus that utilizes a single cable pulley system
US6019704A (en) * 1998-07-27 2000-02-01 Mark A. Morgan Exercise machine to exercise the wrist and forearm muscles
US6569065B1 (en) * 1998-11-09 2003-05-27 Elmar Menold Exercise apparatus
US6159133A (en) * 1999-03-04 2000-12-12 Shugg; Robert C. Seat mounted workout station system
US6142919A (en) * 1999-04-12 2000-11-07 Jorgensen; Adam A. Multi-purpose low profile physical exercising device
USD427034S (en) * 1999-07-09 2000-06-27 Omni Mount Systems, Inc. Cable tensioner
US20030176261A1 (en) * 1999-09-14 2003-09-18 Free Motion Fitness, Inc. Cable crossover exercise apparatus
US20040198565A1 (en) * 2000-02-07 2004-10-07 Lines L. Kent Cable-and-pulley devices having intermediate tension isolators for exercise machines
US6582346B1 (en) * 2000-02-07 2003-06-24 Vectra Fitness, Inc. Cable-and-pulley devices having intermediate tension isolators for exercise machines
US20020013200A1 (en) * 2000-03-06 2002-01-31 Scott Sechrest Functional trainer
US6584731B2 (en) * 2001-03-19 2003-07-01 Meritor Light Vehicle Systems-France Vehicle window lifter with cable tensioning device
US20030041980A1 (en) * 2001-09-06 2003-03-06 Schulte Peter S. Cable tensioner for a door
US20030178158A1 (en) * 2001-09-06 2003-09-25 Schulte Peter S. Cable tensioner and shock absorber for a door
US6926061B2 (en) * 2001-09-06 2005-08-09 Rite-Hite Holding Corporation Cable tensioner and shock absorber for a door
US20030056993A1 (en) * 2001-09-25 2003-03-27 Ingersoll-Rand Company Drilling machine having a feed cable tensioner
US6726607B1 (en) * 2002-06-18 2004-04-27 Stephen P. Ihli Portable personal training and exercise device with a cable and pulley mechanism
US6719673B1 (en) * 2002-10-15 2004-04-13 Laplaca Jack Cable system for exercise machine with multiple exercise stations
US20040134140A1 (en) * 2003-01-14 2004-07-15 Gaddie William R. Cable system and method for wind-resistant buildings
US6843027B2 (en) * 2003-01-14 2005-01-18 William R. Gaddie Cable system and method for wind-resistant buildings
US20040256064A1 (en) * 2003-06-19 2004-12-23 Bennett Thomas B. Sectional door cable tensioner
US20040255516A1 (en) * 2003-06-20 2004-12-23 Fabien Dufour Cable tensioner
US20040262442A1 (en) * 2003-06-27 2004-12-30 Mustapha Mazouzi Cable tensioner and window regulator equipped with a cable tensioner
US20050116079A1 (en) * 2003-12-02 2005-06-02 Stevens Daniel W. Level wind winch cable tensioner

Cited By (17)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20080051269A1 (en) * 2006-08-24 2008-02-28 Vectra Fitness, Inc. Exercise Assemblies Having Foot-Retaining Apparatus
US8128538B2 (en) * 2006-08-24 2012-03-06 Vectra Fitness, Inc. Exercise assemblies having foot-retaining apparatus
US7517304B1 (en) * 2007-01-25 2009-04-14 Brunswick Corporation Exercise apparatus with cartridge loading pulley swivel
US20100145240A1 (en) * 2008-12-10 2010-06-10 Thomas Cromie Combined massage and exercise device
KR101112709B1 (en) 2009-06-12 2012-02-24 임정수 Aerobic exercise machine for the upper part of human body
US10279212B2 (en) 2013-03-14 2019-05-07 Icon Health & Fitness, Inc. Strength training apparatus with flywheel and related methods
US20140336018A1 (en) * 2013-05-10 2014-11-13 Precor Incorporated Fitness equipment unit
US9320937B2 (en) * 2013-05-10 2016-04-26 Precor Incorporated Fitness equipment unit
US10188890B2 (en) 2013-12-26 2019-01-29 Icon Health & Fitness, Inc. Magnetic resistance mechanism in a cable machine
US10426989B2 (en) 2014-06-09 2019-10-01 Icon Health & Fitness, Inc. Cable system incorporated into a treadmill
US10449416B2 (en) 2015-08-26 2019-10-22 Icon Health & Fitness, Inc. Strength exercise mechanisms
US10940360B2 (en) 2015-08-26 2021-03-09 Icon Health & Fitness, Inc. Strength exercise mechanisms
US20170203144A1 (en) * 2016-01-14 2017-07-20 Preventive Medical Health Care Co., Ltd. Direction-reversing device and exercise equipment
US10293211B2 (en) 2016-03-18 2019-05-21 Icon Health & Fitness, Inc. Coordinated weight selection
US10441840B2 (en) 2016-03-18 2019-10-15 Icon Health & Fitness, Inc. Collapsible strength exercise machine
US10252109B2 (en) 2016-05-13 2019-04-09 Icon Health & Fitness, Inc. Weight platform treadmill
US10661114B2 (en) 2016-11-01 2020-05-26 Icon Health & Fitness, Inc. Body weight lift mechanism on treadmill

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