Fitness machine with continuously variable magnetic-controlled damping force and combined with manual emergency brake
09839810 · 2017-12-12
Inventors
Cpc classification
A63B22/0605
HUMAN NECESSITIES
International classification
A63B24/00
HUMAN NECESSITIES
A63B22/06
HUMAN NECESSITIES
A63B21/005
HUMAN NECESSITIES
Abstract
A fitness machine with continuously variable magnetic-controlled damping force and combined with a manual emergency brake includes a fitness bike, a console, a magnetically controlled damping device and a resistance and brake control device. The fitness bike generates and supplies power to the console, magnetically controlled damping device and resistance and brake control device by a rotating flywheel. The magnetically controlled damping device produces continuously variable electromagnetic damping force to the flywheel. The resistance and brake control device allows a user to operate in two different modes of the continuously variable electrically controlled brake and manual emergency brake, and the function of the continuously variable electrically controlled brake may control the flywheel to produce continuously variable electromagnetic damping, so as to achieve the results of generating and supplying the required electric power, providing the continuously variable controlled damping force of the fitness bike, and combining a gradual-change brake and a multifunctional brake.
Claims
1. A fitness machine with continuously variable magnetic-controlled damping force and combined with a manual emergency brake, comprising: a fitness bike; a console; a magnetically controlled damping device; and a resistance and brake control device, wherein the fitness bike has a bike body, a flywheel installed to the bike body and pedaled to rotate by a user's leg, a brake device installed adjacent to the flywheel, a control unit combined into the bike body, a power generating device installed in the flywheel for generating electric power through a rotating moment and supplying the electric power to the control unit; wherein the console is installed to the fitness bike and electrically coupled to the control unit and provided for the user's operation; wherein the magnetically controlled damping device is combined with the bike body of the flywheel and electrically coupled to the console or the control unit for controlling the magnetically controlled damping device to produce a magnetic damping force to the flywheel; wherein the resistance and brake control device includes a hand lever, a moving block combined with the lever body of the hand lever, a rotating member combined to a working end of the hand lever, a sensing unit installed to the moving block and configured to be corresponding to the rotating member, and a brake push rod combined to the hand lever or the moving block; wherein the hand lever is turned while the rotating member is being rotated, and the sensing unit senses the angle of rotation of the rotating member to generate and feedback a signal to the control unit and provided for the control unit to control the magnetically controlled damping device to produce a magnetic damping force to the flywheel; and wherein the hand lever is provided for being pressed or pushed to drive the brake push rod, and the brake push rod is provided for pushing the brake device of the fitness bike.
2. The fitness machine with continuously variable magnetic-controlled damping force and combined with a manual emergency brake according to claim 1, wherein the magnetically controlled damping device has a yoke, and an electromagnetic coil wound around the yoke, and the yoke has two magnetic poles extended to both sides of the flywheel respectively and electrically coupled to the console or the control unit.
3. The fitness machine with continuously variable magnetic-controlled damping force and combined with a manual emergency brake according to claim 1, wherein the rotating member is an encoding disk, and the sensing unit is an encoder for reading the angle of rotation of the encoding disk.
4. The fitness machine with continuously variable magnetic-controlled damping force and combined with a manual emergency brake according to claim 1, wherein the rotating member is a magnet, and the sensing unit is a Hall-effect sensor for sensing the angle of rotation of the magnet.
5. The fitness machine with continuously variable magnetic-controlled damping force and combined with a manual emergency brake according to claim 3, wherein the sensing unit is combined with a printed circuit board, and the printed circuit board is electrically coupled to the console or the control unit.
6. The fitness machine with continuously variable magnetic-controlled damping force and combined with a manual emergency brake according to claim 4, wherein the sensing unit is combined with a printed circuit board, and the printed circuit board is electrically coupled to the console or the control unit.
7. The fitness machine with continuously variable magnetic-controlled damping force and combined with a manual emergency brake according to claim 1, wherein the resistance and brake control device includes a housing; the hand lever has a rod and a hand knob, and an end of the rod is the working end and extended into the housing, and the hand knob is combined to the other end of the rod and disposed outside the housing; the moving block is slidably installed in the housing and rotatably coupled to the rod; the brake push rod has an end of combined to the moving block and the other end extended to the pushing end outside the housing, and the pushing end is provided for pushing the brake device of the fitness bike; and the brake push rod has an elastic member, and the elastic member is provided for pushing the brake push rod, the moving block and the hand lever to resume their original positions.
8. A fitness machine with continuously variable magnetic-controlled damping force and combined with a manual emergency brake, comprising: a fitness bike; a console; a magnetically controlled damping device; and a resistance and brake control device, wherein the fitness bike has a bike body, a flywheel installed to the bike body and pedaled to rotate by a user's leg, a brake device installed adjacent to the flywheel, a control unit combined into the bike body, and a power generating device installed in the flywheel for generating electric power through a rotating moment and supplying the electric power to the control unit; wherein the console is installed to the fitness bike and electrically coupled to the control unit and provided for the user's operation; the magnetically controlled damping device is combined with the bike body of the flywheel and electrically coupled to the console or the control unit for controlling the magnetically controlled damping device to produce a magnetic damping force to the flywheel; wherein the resistance and brake control device includes a hand lever, a moving block combined with the lever body of the hand lever, a rotating member combined to a working end of the hand lever, a sensing unit installed to the moving block and configured to be corresponding to the rotating member, and a brake cable combined to the hand lever or the moving block; wherein the hand lever is turned while the rotating member is being rotated, and the sensing unit senses the angle of rotation of the rotating member to generate and feed back a signal to the control unit and provided for the control unit to control the magnetically controlled damping device to produce a magnetic damping force to the flywheel; and wherein the hand lever is provided for being pressed or pushed to drive the brake push rod, and the brake push rod is provided for pushing the brake device of the fitness bike.
9. The fitness machine with continuously variable magnetic-controlled damping force and combined with a manual emergency brake according to claim 8, wherein the magnetically controlled damping device has a yoke, and an electromagnetic coil wound around the yoke, and the yoke has two magnetic poles extended to both sides of the flywheel respectively and electrically coupled to the console and/or the control unit.
10. The fitness machine with continuously variable magnetic-controlled damping force and combined with a manual emergency brake according to claim 8, wherein the rotating member is an encoding disk, and the sensing unit is an encoder for reading the angle of rotation of the encoding disk.
11. The fitness machine with continuously variable magnetic-controlled damping force and combined with a manual emergency brake according to claim 8, wherein the rotating member is a magnet, and the sensing unit is a Hall-effect sensor for sensing the angle of rotation of the magnet.
12. The fitness machine with continuously variable magnetic-controlled damping force and combined with a manual emergency brake according to claim 10, wherein the sensing unit is combined to a printed circuit board, and the printed circuit board is electrically coupled to the console or the control unit.
13. The fitness machine with continuously variable magnetic-controlled damping force and combined with a manual emergency brake according to claimll, wherein the sensing unit is combined to a printed circuit board, and the printed circuit board is electrically coupled to the console or the control unit.
14. The fitness machine with continuously variable magnetic-controlled damping force and combined with a manual emergency brake according to claim 8, wherein the resistance and brake control device includes a housing; the hand lever has a rod and a hand knob, and an end of the rod is the working end and extended into the housing, and the hand knob is combined to the other end of the rod and disposed outside the housing; the moving block is slidably installed in the housing and rotatably coupled to the rod; the brake push rod has an end of combined to the moving block and the other end extended to the pushing end outside the housing, and the pushing end is provided for pushing the brake device of the fitness bike; and the brake push rod has an elastic member, and the elastic member is provided for pushing the brake push rod, the moving block and the hand lever to resume their original positions.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF THE INVENTION
(12) The above and other objects, features and advantages of this disclosure will become obvious from the following detailed description accompanied by the drawings.
(13) With reference to
(14) In
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(18) In an embodiment, the housing 41 has a cylindrical casing 411, and two covers 412 for sealing both upper and lower ends of the cylindrical casing 411, and the hand lever 42 has a rod 422 and a hand knob 423, wherein an end of the rod 422 is the working end 421 extended from the upper cover 412 into the housing 41, and the hand knob 423 is combined to the other end of the rod 422 and disposed at the top outside the housing 41. The moving block 43 may be a rectangular frame slidably installed in the housing 41 and rotatably combined with the rod 422 of the hand lever 42, so that the hand lever 42 can be rotated by itself and used for pressing or pushing the moving block 43. The brake push rod 46 has an end passing through the lower cover 412 to enter into the housing 41 and combined with the moving block 43 and the other end extended to the pushing end 461 outside the housing 41, and the pushing end 461 is provided for pushing the brake device 13 of the fitness bike 1, and the lever body of the brake push rod 46 has an elastic member 47 provided for pushing the brake push rod 46, the moving block 43 and the hand lever 42 to resume their original positions.
(19) When the resistance and brake control device 4 of the first embodiment of the present invention is used as shown in
(20) In the resistance and brake control device 4 of the first embodiment as shown in
(21) With reference to
(22) While the invention has been described by means of specific embodiments, numerous modifications and variations could be made thereto by those skill in the art without departing from the scope and spirit of the invention set forth in the claims.