Fitness equipment and automatic oxygen-generating fitness equipment
First Claim
1. An automatic oxygen-generating fitness equipment, comprising:
- a power unit, comprising a belt drive turnplate, a belt and a magnetic wheel, wherein rotation of the belt drive turnplate drives the belt to operate so that the magnetic wheel is driven to rotate;
a sensor unit configured to detect the belt drive turnplate and generate an activation signal when the belt drive turnplate is rotating;
an oxygen-generating assembly, comprising a control unit, a motor and an oxygen generator, wherein the control unit is configured to receive the activation signal so that the motor is activated to drive the oxygen generator to operate.
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Accused Products
Abstract
A fitness equipment and an automatic oxygen-generating fitness equipment are disclosed. The fitness equipment comprises a power unit, a sensor unit and an oxygen-generating assembly. The power unit comprises a belt drive turnplate, a belt and a magnetic wheel. Rotation of the belt drive turnplate drives the belt to operate so that the magnetic wheel is driven to rotate. The sensor unit is adapted to detect the belt drive turnplate and generate an activation signal when the belt drive turnplate is rotating. The oxygen-generating assembly comprises a control unit, a motor and an oxygen generator. The control unit is configured to receive the activation signal from the sensor so that the motor is activated to drive the oxygen generator to operate. The control unit may also control the equipment to switch between an oxygen-generating mode and a non-oxygen-generating mode.
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Citations
19 Claims
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1. An automatic oxygen-generating fitness equipment, comprising:
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a power unit, comprising a belt drive turnplate, a belt and a magnetic wheel, wherein rotation of the belt drive turnplate drives the belt to operate so that the magnetic wheel is driven to rotate; a sensor unit configured to detect the belt drive turnplate and generate an activation signal when the belt drive turnplate is rotating; an oxygen-generating assembly, comprising a control unit, a motor and an oxygen generator, wherein the control unit is configured to receive the activation signal so that the motor is activated to drive the oxygen generator to operate. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10)
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11. A fitness equipment, comprising:
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a support; a power unit disposed on the support, the power unit comprising a pedaling and rotating mechanism and a load wheel in drive connection with the pedaling and rotating mechanism; an oxygen-rich film assembly, being adapted to suck in and filter air to form oxygen-rich air; an air compression assembly, comprising an integrated air compressor disposed on the support and connected with an output gas path of the oxygen-rich film assembly, the integrated air compressor being adapted to be activated in response to rotation of the pedaling and rotating mechanism to compress the oxygen-rich air to form an oxygen-rich air flow with a pressure difference for supply to the exerciser; and a housing disposed on the support to cover the power unit, the oxygen-rich film assembly and the air compression assembly; wherein the air compression assembly further comprises; a first socketing piece disposed on the integrated compressor; a supporting plate disposed on the support and having a second socketing piece; and a first elastic piece, having one end thereof socketed to the first socketing piece and the other end socketed to the second socketing piece; the support comprises; a base frame, being adapted to support the supporting plate; a humidifying assembly in fluid communication with the integrated air compressor, being adapted to receive the oxygen-rich air with a pressure difference that is inputted from the integrated air compressor and humidify the oxygen-rich air with a pressure difference; a supporting frame disposed on the base frame to support the humidifying assembly; a fixing rod disposed to be spaced apart from the supporting frame, being adapted to support and assemble the oxygen-rich film assembly; a supporting pipe disposed to be spaced apart from the supporting frame; and a horizontal connecting frame, having one end thereof connected with the supporting frame and the other end connected with the supporting pipe; the humidifying assembly comprises; a baseplate disposed on the supporting frame; a fixing mount disposed on the baseplate; a humidifying box, a bottom portion of which mates with the fixing mount and an end of the humidifying box having a third socketing piece; and a fastening frame disposed to be apart from the fixing mount and movably connected with the baseplate or the housing to fasten the humidifying box into the fixing mount. - View Dependent Claims (12, 13, 14, 15, 16, 17)
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18. A fitness equipment, comprising:
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a support; a power unit disposed on the support, the power unit comprising a pedaling and rotating mechanism and a load wheel in drive connection with the pedaling and rotating mechanism; an oxygen-rich film assembly, being adapted to suck in and filter air to form oxygen-rich air; an air compression assembly, comprising an integrated air compressor disposed on the support and connected with an output gas path of the oxygen-rich film assembly, the integrated air compressor being adapted to be activated in response to rotation of the pedaling and rotating mechanism to compress the oxygen-rich air to form an oxygen-rich air flow with a pressure difference for supply to the exerciser; and a housing disposed on the support to cover the power unit, the oxygen-rich film assembly and the air compression assembly; wherein the air compression assembly further comprises; a first socketing piece disposed on the integrated compressor; a supporting plate disposed on the support and having a second socketing piece; and a first elastic piece, having one end thereof socketed to the first socketing piece and the other end socketed to the second socketing piece; the support comprises; a base frame, being adapted to support the supporting plate; a humidifying assembly in fluid communication with the integrated air compressor, being adapted to receive the oxygen-rich air with a pressure difference that is inputted from the integrated air compressor and humidify the oxygen-rich air with a pressure difference; a supporting frame disposed on the base frame to support the humidifying assembly; a fixing rod disposed to be spaced apart from the supporting frame, being adapted to support and assemble the oxygen-rich film assembly; a supporting pipe disposed to be spaced apart from the supporting frame; and a horizontal connecting frame, having one end thereof connected with the supporting frame and the other end connected with the supporting pipe; the support further comprises; a vertical rod vertically disposed on the base frame; an inclined rod obliquely disposed on a bottom portion of the base frame; a seat plate disposed on the vertical rod and the inclined rod to bear the exerciser; and a reinforcing plate disposed on the base frame and abutting against the vertical rod; the pedaling and rotating mechanism comprises; a drive wheel in drive connection with the load wheel; a crank hinged with the drive wheel to the supporting frame; a pedal connected with the crank, being adapted to provide a power for rotating the drive wheel so that the load wheel is driven to rotate; the power unit further comprises; a sensor unit disposed at one side of the drive wheel to detect the drive wheel and generate an activation signal when the drive wheel is rotating; and a control unit disposed on the supporting frame, being configured to receive the activation signal to control activation or deactivation of the integrated air compressor. - View Dependent Claims (19)
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Specification