This application claims the priority benefit of Taiwan application serial no. 100105839, filed Feb. 22, 2011 The entirety of the above-mentioned patent application is hereby incorporated by reference herein and made a part of this specification.
1. Field of the Invention
The invention relates to an electronic device. More particularly, the invention relates to an electronic device which can be charged by electricity generated by a power motor.
2. Description of Related Art
With continuous advancement of technology, electronic products have been developed towards miniaturization. Common electronic products including tablet PCs, mobile phones, personal digital assistants (PDAs), and notebook computers become indispensable in people's daily lives. In consideration of portability, power required by the portable electronic devices is provided by rechargeable batteries configured in the electronic devices. Hence, the use time of the portable electronic devices is determined based on the power storage capacity of the rechargeable batteries. Given a user stays outdoors for over a long period of time and is thus unable to charge the rechargeable batteries, the exhausted batteries are no longer able to be used, which causes great inconvenience to the user. Accordingly, how to increase the electrical capacity of the electronic device in order to prolong the use of the electronic device becomes an essential topic.
The invention is directed to an electronic device of which electrical capacity can be increased, such that the use time of the electronic device can be extended.
The invention provides an electronic device that includes a power controller and a power motor. The power controller is used to electrically connect a power storage device. The power motor includes a magnetic part and a coil part. The coil part has a main coil and a electromagnetic inducting coil that are electrically connected to the power controller. The main coil is used to drive a relative rotation of the magnetic part and the coil part. The electromagnetic inducting coil generates electricity which is inducted by a magnetic field of the magnetic part. The power storage device is charged by the electricity (generated by the electromagnetic inducting coil) via the power controller.
According to an embodiment of the invention, the electronic device further includes a fan fixed to the magnetic part or the coil part. The relative rotation of the magnetic part and the coil part drives the fan to rotate. In addition, the magnetic part can be a rotor, the coil part can be a stator, and the fan is fixed to the magnetic part.
According to an embodiment of the invention, the electronic device further includes an eccentric fixed to the magnetic part or the coil part. The relative rotation of the magnetic part and the coil part drives the eccentric to rotate.
According to an embodiment of the invention, the electronic device further includes a circuit module electrically connected to the power controller. Besides, the main coil can be electrically connected to the power controller via the circuit module.
According to an embodiment of the invention, the power controller includes a rectifier and a power management chip. The main coil is electrically connected to the power management chip. The electromagnetic inducting coil is electrically connected to the rectifier. The rectifier is electrically connected to the power management chip. The power management chip is electrically connected to the power storage device.
According to an embodiment of the invention, the electronic device further includes a protection circuit electrically connected to the power controller and the electromagnetic inducting coil for cutting off the electrical connection between the power controller and the electromagnetic inducting coil before the power controller is overloaded or for restricting an amount of the electricity output to the power controller from the electromagnetic inducting coil before the power controller is overloaded.
According to an embodiment of the invention, the power storage device is a rechargeable battery.
Based on the above, the power motor of the electronic device has the electromagnetic inducting coil according to the embodiments of the invention. Therefore, when the power motor is operated, the electromagnetic inducting coil can generate electricity inducted by the magnetic field of the magnetic part. The power storage device can be charged by the electricity generated by the electromagnetic inducting coil, so as to extend the use time of the electronic device.
In order to make the aforementioned and other features and advantages of the invention more comprehensible, embodiments accompanying figures are described in detail below.
The accompanying drawings constituting a part of this specification are incorporated herein to provide a further understanding of the invention. Here, the drawings illustrate embodiments of the invention and, together with the description, serve to explain the principles of the invention.
In this embodiment, the power controller 120 includes a rectifier 122 and a power management chip 124. The main coil C12 is electrically connected to the power management chip 124. According to this embodiment, the main coil C12 is electrically connected to the power management chip 124 of the power controller 120 via the circuit module 110. The electromagnetic inducting coil C14 is electrically connected to the rectifier 122. The rectifier 122 is electrically connected to the power management chip 124. The electricity generated by the electromagnetic inducting coil C14 is often an alternating current, and the amount of the electricity is inconstant. Accordingly, the rectifier 122 is required for voltage boost and current stabilization. After that, the electricity is supplied to the power management chip 124. The power management chip 124 is electrically connected to the power storage device 50. Here, the power storage device 50 is a rechargeable battery, for instance. Note that the power storage device 50 is a component of the electronic device 100, and the electronic device 100 which is not equipped with the power storage device 50 does not go beyond the scope of the invention. At present, the charging procedures of the power storage device 50 in the market are rather complicated. Therefore, by means of the power management chip 124 that can control and monitor the charging procedures, the power storage device 50 can be ideally charged. For instance, the power management chip 124 manipulates the power charge of the power storage device 50 through a constant current approach in the primary stage of power charge. After an output voltage of the power storage device 50 stably reaches a predetermined value, the power management chip 124 manages to continually charge the power storage device 50 through the constant voltage approach.
With reference to
In light of the foregoing, the power motor in the electronic device of the invention has the electromagnetic inducting coil that can generate electricity inducted by the magnetic field. Therefore, when the power motor is in the required operation, the magnetic field of the magnetic part is simultaneously inducted to generate the electricity. As such, the electricity stored in the power storage device can be increased, and the use time of the electronic device can be extended. Namely, the environmental concern of reducing energy consumption and carbon emissions is taken into account. The design of recycling the electricity to extend the use time of the electronic device, as described in the embodiments of the invention, may be of great help to the user of the electronic device at the crucial moment.
Although the invention has been described with reference to the above embodiments, it will be apparent to one of the ordinary skill in the art that modifications to the described embodiments may be made without departing from the spirit of the invention. Accordingly, the scope of the invention will be defined by the attached claims rather than by the above detailed descriptions.
Number | Date | Country | Kind |
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100105839 | Feb 2011 | TW | national |