Exercise Machine Rail System
US-2017165555-A1 · Jun 15, 2017 · US
US11794068B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11794068-B2 |
| Application number | US-202318172458-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 22, 2023 |
| Priority date | Mar 17, 2015 |
| Publication date | Oct 24, 2023 |
| Grant date | Oct 24, 2023 |
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An exercise machine monitoring and instruction system for the movement of an element of an exercise machine by an exerciser and providing automated feedback to the exerciser to help improve the exercise in real-time. The exercise machine monitoring and instruction system generally includes an exercise machine having a movable element that moves between a first position and a second position in a reciprocating manner, a sensor that detects a real-time position of the movable element, a processor in communication with the sensor to receive the real-time position data from the sensor related to a position of the movable element and a feedback device in communication with the processor that provides real-time instructions to the exerciser on how to adjust their workout to achieve a desired result.
Opening claim text (preview).
What is claimed is: 1. An exercise machine, comprising: a rail; a seat movably positioned upon the rail; a resistance flywheel connected to the rail and positioned near an end of the rail; an elongated object connected to the resistance flywheel, wherein the elongated object is adapted to move in a reciprocating manner with respect to the resistance flywheel; a handle attached to the elongated object; a first sensor adapted to detect a real-time position of the seat between a first position and a second position, wherein the first sensor transmits a position data in real-time corresponding to the real-time position of the seat on the rail; a processor in communication with the first sensor to receive the position data from the first sensor related to the real-time position of the seat on the rail, wherein the processor is adapted to calculate a state of the seat based on the position data received in real-time; and a feedback device in communication with the processor, wherein the processor controls the feedback device to provide real-time instruction to an exerciser when using the exercise machine on how to adjust a workout. 2. The exercise machine of claim 1 , further comprising a second sensor that continuously detects a position of the handle, wherein the second sensor transmits a position data to the processor in real-time corresponding to a real-time position of the handle, and wherein the processor is adapted to calculate a state of the handle based on the position data received from the second sensor in real-time. 3. The exercise machine of claim 1 , wherein the feedback device comprises a speaker that provides audible feedback to the exerciser. 4. The exercise machine of claim 1 , wherein the feedback device is comprised of a tactile feedback device that provides tactile feedback to the exerciser. 5. The exercise machine of claim 1 , wherein the feedback device comprises a display screen that displays a visual real-time instruction to the exerciser on how to adjust their workout. 6. The exercise machine of claim 1 , wherein the feedback device comprises a display screen that displays a visual real-time instruction to the exerciser on how to adjust their workout, wherein the visual real-time instruction is comprised of textual information. 7. The exercise machine of claim 1 , wherein the feedback device is comprised of a plurality of lights. 8. An exercise machine monitoring and instruction system, comprising: an exercise machine having a movable element that moves in a reciprocating manner; a first sensor adapted to detect a real-time position of the movable element between a first position and a second position, wherein the first sensor transmits a position data in real-time corresponding to the real-time position of the movable element; a processor in communication with the first sensor to receive the position data from the first sensor related to the real-time position of the movable element, wherein the processor is adapted to calculate a state of the movable element based on the position data received in real-time; and a feedback device in communication with the processor, wherein the processor controls the feedback device to provide real-time instruction to an exerciser when using the exercise machine on how to adjust a workout. 9. The exercise machine monitoring and instruction system of claim 8 , wherein the state of the movable element is comprised of a real-time velocity of the movable element. 10. The exercise machine monitoring and instruction system of claim 8 , wherein the state of the movable element is comprised of a real-time velocity of the movable element, wherein the feedback device provides feedback to the exerciser to decrease a velocity of the movable element if the real-time velocity of the movable element exceeds a maximum target velocity, and wherein the feedback device provides feedback to the exerciser to increase a velocity of the movable element if the real-time velocity of the movable element falls below a minimum target velocity. 11. The exercise machine monitoring and instruction system of claim 8 , wherein the feedback device provides feedback to the exerciser to decrease a distance between the first position and the second position if the distance between the first position and the second position exceeds a maximum target distance, and wherein the feedback device provides feedback to the exerciser to increase a distance between the first position and the second position if the distance between the first position and the second position falls below a minimum target distance. 12. The exercise machine monitoring and instruction system of claim 8 , wherein the processor calculates a real-time cycle rate between the first position and the second position during an exercise, wherein the feedback device provides feedback to the exerciser to decrease their cycle rate if the real-time cycle rate exceeds a maximum target cycle rate, and wherein the feedback device provides feedback to the exerciser to increase their cycle rate if the real-time cycle rate falls below a minimum target cycle rate. 13. The exercise machine monitoring and instruction system of claim 8 , wherein the first sensor is comprised of a string potentiometer connected to the movable element. 14. The exercise machine monitoring and instruction system of claim 8 , wherein the first sensor is comprised of an acoustic sensor. 15. The exercise machine monitoring and instruction system of claim 8 , wherein the first sensor is comprised of a laser sensor. 16. The exercise machine monitoring and instruction system of claim 8 , wherein the first sensor is comprised of a linear displacement sensor. 17. The exercise machine monitoring and instruction system of claim 8 , wherein the feedback device comprises a speaker that provides audible feedback to the exerciser. 18. The exercise machine monitoring and instruction system of claim 8 , wherein the feedback device is comprised of a tactile feedback device that provides tactile feedback to the exerciser. 19. The exercise machine monitoring and instruction system of claim 8 , wherein the feedback device comprises a display screen that displays a visual real-time instruction to the exerciser on how to adjust their workout. 20. The exercise machine monitoring and instruction system of claim 8 , wherein the feedback device comprises a display screen that displays a visual real-time instruction to the exerciser on how to adjust their workout, wherein the visual real-time instruction is comprised of textual information. 21. The exercise machine monitoring and instruction system of claim 8 , wherein the feedback device is comprised of at least one light. 22. The exercise machine monitoring and instruction system of claim 8 , wherein the feedback device is comprised of a plurality of lights. 23. The exercise machine monitoring and instruction system of claim 22 , wherein the plurality of lights are attached to the movable element. 24. The exercise machine monitoring and instruction system of claim 22 , wherein the plurality of lights are in series. 25. The exercise machine monitoring and instruction system of claim 22 , wherein the real-time instruction is comprised of the plurality of lights blinking at a faster rate or a slower rate to indicate to the exerciser to adjust their speed. 26. The exercise machine monitoring and instruction system of claim 22 , where
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