The present invention relates to an electric scooter, and more particularly to a controlling system of an electric scooter.
A conventional electric scooter is driven by an electric motor, and a gearbox is provided to transmit the power of the motor to the wheels. Typically, a controlling system is provided to control the running of the electric motor.
In a conventional electric scooter, the electric motor is mounted in a case, and the controlling system has a circuit board mounted in a box. The case and the box are two independent elements, so that a plurality of wires are provided to electrically connect the circuit board in the box to the electric motor in the case.
Since the case and the box are two independent elements, they need a large space in the electric scooter to receive them. Some improved electric scooters provide the circuit board in the case. However, the case has to receive the rectangular circuit board therein, so it does not reduce the space as much as expected.
In view of the above, the primary objective of the present invention is to provide a controlling system of an electric scooter, which takes a space smaller than the prior art.
A secondary objective of the present invention is to provide a controlling system of an electric scooter, which integrates a circuit board in a case beside a driving axle of an electric motor to reduce the size of the case.
A third objective of the present invention is to provide a lubrication system of a power assembly of an electric scooter, which provides a heat dissipating room beside the circuit board to enhance the effect of heat dissipation.
In order to achieve the objective of the present invention, a controlling system of an electric scooter includes a case having a mounting room therein, and a circuit board received in the mounting room of the case and having a recess portion at an edge thereof. A driving shaft of an electric motor has at least a section in the mounting room of the case and received in the recess portion of the circuit board, and the circuit board is electrically connected to the electric motor.
Therefore, the circuit board is closer to the driving shaft because of the recess portion to reduce a size of the case.
In an embodiment, the case further has a heat dissipating room on an opposite side of the mounting room to dissipate a heat of the circuit board.
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 circuit board 60 is closer to the driving shaft 16 because of the recess portion 62. It reduces the space for the driving shaft 16 and the circuit board 60 to decrease a size of the case 10. Furthermore, the heat dissipating room 70 is filled with a lubricant L, which is helpful to heat dissipation.
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In conclusion, the controlling system includes the circuit board and the heat dissipating structure. A specified shape of the circuit make the circuit board closer to the driving shaft of the electric motor to reduce a size of the case. The circuit board is attached to the separating layer to transfer the heat of the circuit board via the separating layer and dissipate in the heat dissipating room. Furthermore, the heat dissipating room is filled with lubricant for lubricity of the electric motor and the driven gear, and the lubricant is helpful to the heat dissipation without further devices.
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.
Number | Name | Date | Kind |
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6031306 | Permuy | Feb 2000 | A |
8860265 | Galli | Oct 2014 | B2 |
Number | Date | Country | |
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20200047847 A1 | Feb 2020 | US |