Storable multi-functional exercise apparatus
Abstract
A storable multi-functional exercise apparatus is provided. The storable multi-functional exercise apparatus includes a main body, a first seat that is disposed on the main body, and at least one resistance mechanism. The resistance mechanism includes a damping module, a fixing sleeve, and a rod body. The fixing sleeve is connected to one end of the rod body, the fixing sleeve has a fixing hole, and the damping module is disposed in the fixing hole. The rod body is movably disposed on the main body, so that the fixing sleeve and the damping module are configured to move out of the main body or be stored in the main body.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A storable multi-functional exercise apparatus, comprising:
a main body; a first seat disposed on the main body; and at least one resistance mechanism including a damping module, a fixing sleeve, and a rod body; wherein the fixing sleeve is connected to one end of the rod body, the fixing sleeve includes a fixing hole configured to accommodate the damping module, and wherein the rod body is movably disposed on the main body, so that the fixing sleeve and the damping module are configured to move out of the main body or be stored within the main body.
2 . The storable multi-functional exercise apparatus according to claim 1 , wherein the rod body of the at least one resistance mechanism is configured to be inserted into an opening of the main body and to be fixed by a fixing mechanism.
3 . The storable multi-functional exercise apparatus according to claim 1 , wherein at least one latch structure is disposed in the fixing hole, and wherein, when the damping module is placed in the fixing hole, the damping module is secured by the at least one latch structure.
4 . The storable multi-functional exercise apparatus according to claim 1 , wherein the rod body is rotatably disposed on the main body, and wherein the fixing sleeve and the damping module are moved out of the main body or are stored within the main body by rotating the rod body.
5 . The storable multi-functional exercise apparatus according to claim 4 , wherein the rod body includes a first segment, a second segment, and a third segment; wherein the first segment is pivotally connected to the main body, the second segment is connected between the first segment and the third segment, and the fixing sleeve is connected to one end of the third segment.
6 . The storable multi-functional exercise apparatus according to claim 5 , wherein the first segment is fixed to the main body by a fixing mechanism, so that the rod body is fixed when the rod body is rotated into the main body or is rotated out of the main body.
7 . The storable multi-functional exercise apparatus according to claim 5 , wherein the first segment is arranged horizontally, the second segment is perpendicular to the first segment, and the third segment is perpendicular to the second segment.
8 . The storable multi-functional exercise apparatus according to claim 1 , wherein the fixing sleeve and the damping module are detachable from the main body.
9 . The storable multi-functional exercise apparatus according to claim 1 , wherein a shape of the main body is shaped as a rectangular cuboid, an accommodating space is formed inside the main body to store dumbbells, a slot is formed on a side of the main body, and the first seat is pivotally connected to the main body and is stacked on the main body, so that the first seat is accommodated in the slot and is rotated upward to a predetermined angle through a supporting rod.
10 . The storable multi-functional exercise apparatus according to claim 9 , wherein the first seat includes a plurality of fixing members that are disposed on an inner side of the first seat and are spaced apart from each other along a longitudinal direction of the first seat, and the damping module is combined with at least one of the fixing member through a hanging manner.
11 . The storable multi-functional exercise apparatus according to claim 1 , wherein a quantity of the resistance mechanism is two, the two resistance mechanisms are respectively defined to a first damping module and a second damping module; wherein the storable multi-functional exercise apparatus further includes an exercise assembly, wherein the exercise assembly includes an offset angle sensor that is configured to sense an offset angle of the exercise assembly; wherein a first damping module and a second damping module are connected to the exercise assembly, wherein each of the first damping module and the second damping module includes a resistance sensor, and the resistance sensor is configured to sense a resistance that is applied to the exercise assembly by each of the first damping module and the second damping module; wherein the first damping module is communicatively connected to the exercise assembly and the second damping module for forming a synchronous network; and wherein, when the offset angle sensor detects that the offset angle of the exercise assembly exceeds an angle threshold, the first damping module controls a magnitude of the resistance provided by the second damping module.
12 . The storable multi-functional exercise apparatus according to claim 11 , wherein a procedure for forming the synchronous network includes:
establishing a whitelist, wherein a plurality of damping modules and the exercise assembly are listed on the whitelist; and activating one of the damping modules to search a surrounding environment for another one of the damping modules that is on the whitelist and already activated; wherein, in response to not detecting the another one of the damping modules, the one of the damping modules becomes a coordinator, and is communicatively connected to other ones of the damping modules that are on the whitelist and activated at a later time, so as to jointly form the synchronous network; wherein, in response to detecting the another one of the damping modules, the one of the damping modules becomes an end device, and is communicatively connected to the another one of the damping modules that is already activated, so as to jointly form the synchronous network.
13 . The storable multi-functional exercise apparatus according to claim 1 , further comprising an exercise assembly that is connected to the damping module, wherein the damping module includes:
a pull rope, wherein one end of the pull rope is connected to the exercise assembly; a resistance source connected to another one end of the pull rope; wherein the resistance source is configured to output an output resistance and control an extended length of the pull rope; a linear displacement sensor electrically coupled to the resistance source; wherein the linear displacement sensor is operated to sense the extended length of the pull rope to generate a linear displacement sensing signal; a resistance sensor electrically coupled to the resistance source; wherein the resistance sensor is operated to sense the output resistance of the resistance source to generate a resistance sensing signal; and a processor electrically coupled to the resistance source, the linear displacement sensor, and the resistance sensor, wherein the processor is operated to calculate an exercising frequency according to the linear displacement sensing signal and the resistance sensing signal, and the processor is operated to compare the exercise frequency and a predetermined exercise frequency to control the output resistance of the resistance source.
14 . The storable multi-functional exercise apparatus according to claim 1 , wherein the exercise assembly includes an acceleration sensor that is operated to monitor a movement trajectory of the exercise assembly to generate a trajectory sensing signal, wherein the processor obtains an action trajectory curve according to the trajectory sensing signal, and the processor is operated to compare a difference between the action trajectory curve and a predetermined trajectory curve to calculate a similarity index, and wherein, when the processor determines that the similarity index is lower than a predetermined threshold, the processor is operated to issue a warning message.Join the waitlist — get patent alerts
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