Claims
- 1. An exerciser comprising:
- at least one load member having a predetermined range of movement through a positive stroke and a negative stroke for producing a load throughout the predetermined range of movement in response to the application of torque thereto;
- an electromechanical meter for providing a torque throughout the period during which the exerciser is in use;
- variable torque means for selectively applying the torque provided by said motor to said load member, said variable torque means including an adjustable clutch for receiving the torque from said motor and for selectively varying the magnitude of the torque applied to said load member throughout the positive stroke and the negative stroke of the load member;
- sensor means for detecting the location and direction of movement of said load member relative to the predetermined range of movement; and
- programmable means operatively connected to said clutch and said sensing means for controlling the magnitude of the torque applied to said load member by said clutch as a function of the location and direction of movement of said load members.
- 2. The exerciser of claim 1 wherein said adjustable clutch includes a magnetic particle clutch.
- 3. The exerciser according to claim 1, wherein said progammable means includes digital processor means.
- 4. The exerciser according to claim 3, wherein said sensor means comprises a motion transducer.
- 5. The exerciser according to claim 3, wherein said sensor means comprises a potentiometer.
- 6. The exerciser according to claim 3, further comprising:
- input means connected to said digital processor means for selectively inputting data thereto which represents at least one parameter utilized by a program of said digital processor means; and
- a display means for visually presenting data from said digital processor.
- 7. The exerciser according to claim 3, further comprising safety means for selectively interrupting the application of torque to said load member.
- 8. A physical training apparatus comprising:
- an electromechanical motor for providing torque throughout the period during which the apparatus is in use;
- a plurality of load members, each such load member for producing a load throughout a positive stroke and a negative stroke of a predetermined range of movement in response to the application of torque thereto;
- a transmission for transmitting and appJying the torque from said motor to said load member, said transmission including an adjustable clutch for receiving torque from said motor and selectively varying the torque transmitted to said load member by said transmission throughout the positive stroke and the negative stroke of the load member;
- a sensor for detecting the location and direction of movement of said load member relative to said predetermined range of movement; and
- a programmable digital processor operatively connected to said clutch and said sensor for varying the torque transmitted to said load member by said transmission as a function of the location and direction of movement of said load member relative to the predetermined range of movement.
- 9. The physical training apparatus of claim 8, further comprising a safety means for selectively deactivating said motor and said clutch.
- 10. The physical training apparatus of claim 8 wherein said adjustable clutch includes a magnetic particle clutch.
- 11. The physical training apparatus of claim 8, further comprising a keyboard connected to said digital processor for inputting at least one parameter to a program of said digital processor to selectively vary the torque transmitted to said load member by said transmission as a function of the location and direction of movement of said load member relative to the predetermined range of movement.
- 12. The physical training apparatus of claim 11, further comprising a display connected to said digital processor for outputting visually receivable data from said digital processor.
- 13. The physical training apparatus according to claim 8, further comprising:
- a safety means for selectively deactivating said motor and said clutch;
- a keyboard connected to said digital processor for inputting at least one parameter to a program of said digital processor to selectively vary the torque transmitted to said load member by said transmission as a function of the location and direction of movement of said load member relative to the predetermined range of movement; and
- a display connected to said digital processor for outputting visually receivable data from said digital processor.
- 14. A method for controlling the load applied by an exercising apparatus comprising:
- providing an electromechanical motor for supplying a torque throughout the period during which the exercising apparatus is in use;
- providing an adjustable clutch for receiving and selectively transmitting said torque from said motor within a predetermined range;
- transmitting said torque in the form of a load to a portion of an individual throughout a predetermined range of movement including a positive stroke and a negative stroke;
- detecting the location and direction of movement of the portion of the individual relative to the predetermined range of movement;
- producing an electrical signal representing the location and direction of movement of the portion of the individual relative to the predetermined range of movement;
- processing said electrical signal in accordance with an algorithm to formulate an electrical output signal, said output signal representing the degree of variance of the load which is necessary to substantially compensate for changes in muscle leverage of the individual throughout the predetermined range of movement; and
- adjusting said clutch in response to said output signal to vary the load applied to the individual throughout the positive stroke and negative stroke of movement in response to said output signal.
- 15. The method for controlling the load applied by an exercising apparatus according to claim 14, wherein said load is varied to maintain a substantially constant tension in the muscles resisting the load throughout the predetermined range of movement.
- 16. The method for controlling the load applied by an exercising apparatus according to claim 14 wherein said step of providing an adjustable clutch includes providing a magnetic particle clutch.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a continuation of application Ser. No. 637,055, filed Aug. 2, 1984, now abandoned.
US Referenced Citations (20)
Foreign Referenced Citations (1)
Number |
Date |
Country |
51377 |
Dec 1982 |
EPX |
Continuations (1)
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Number |
Date |
Country |
Parent |
637055 |
Aug 1984 |
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