The present invention relates to an electric scooter, and more particularly to a power assembly of an electric scooter.
Typically, a conventional electric scooter is driven by a motor, and a gearbox is provided to be connected to the motor to increase torque or reduce speed of the motor. In view of an optimal working condition of the motor, the gearbox must be precisely worked according to the output of the motor. In order to achieve this purpose, a controller is provided to sense the outputs of the motor and the gearbox and control the motor accordingly.
In the conventional electric scooter, the motor, the gearbox, and the controller are three independent devices mounted in the electric scooter. It takes a lot of space to mount and connect the motor, the gearbox, and the controller.
Besides, there are a lot of wires to connect the motor, the gearbox, and the controller for sensing and controlling. Usually, these wires are exposed and disorder, and they are bad for mounting and repairing.
In view of the above, the primary objective of the present invention is to provide a power assembly of an electric scooter, which is smaller than the prior art and has no exposed wires.
The power assembly of the electric scooter of the present invention integrates the motor, the gearbox, and the controller into a single case, and let the wires, which connects the motor, the gearbox, and the controller, run in the case to reduce the size and make the assembling task easier.
In order to achieve the objective of the present invention, a power assembly of an electric scooter includes a case having a base, wherein the base is provided with a separating layer to divide a space in the base into a first space and a second space; an electric motor, which is provided in the case, having an output shaft and a driving gear connected to the output shaft, wherein the driving gear is received in the first space of the base; a driven gear, which is received in the first space of the base and mesh with the driving gear, wherein a gear shaft is connected to the driven gear, and the gear shaft has an end extending out of the case; and a controller provided in the second space of the base and electrically connected to the electric motor.
As a result, the electric motor, the driven gear, and the controller are integrated in the case to reduce the size. Besides, the controller is electrically connected to the electric motor, so that both the controller and the electric motor are received in the case and the wires for connecting the controller and the electric motor are received in the case as well to make the assembling task easier.
The present invention will be best understood by referring to the following detailed description of some illustrative embodiments in conjunction with the accompanying drawings, in which
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The driven gear 50 is fixed to a gear shaft 52, wherein the driven gear 50 is received in the second gear room 30 of the first space 24 to mesh with the driving gear 44, and the gear shaft 52 extends out of the case 10 through the second axial bore 34.
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The present invention integrates the electric motor 40, the driven gear 50, and the controller 80 in the case 10, so that the size of the present invention is smaller than the prior art. In addition, wires (not shown), which electrically connected the controller 80 and the electric motor 40 will run in the case 10 to make the assembling task easier.
It must be pointed out that the embodiments described above are only some preferred embodiments of the present invention. All equivalent structures which employ the concepts disclosed in this specification and the appended claims should fall within the scope of the present invention.