1. Field of the Invention
The present invention relates to a portable charging system that improves the function of a traditional charging structure and the technology thereof. A controller memory method is adopted in the charging system for charging and discharging both charging system and discharging system of a mobile electronic device simultaneously by means of a programmable function or supplying an electric power from the original built-in battery of the original circuit to the mobile electronic device to meet the requirements for operating a mobile electronic device outdoors or in an indoor working area with other electric appliances. The present invention omits the adapter for a mobile electronic device, and thus can save the material cost of the adapter. The present invention is applicable for most mobile electronic devices and capable of enhancing the battery charging efficiency, giving a programmable effect, and offering longer battery operating hours.
2. Description of Related Art
As realized by related industries, enhancing the function of charging a mobile electronic device is a subject for mobile electronic device designers and a research and development topic for O.E.M. manufacturers in recent years. The technology and method adopted are similar to those used for automobile chargers or a new adapter connected to traditional power supplies, which are applicable for various different mobile electronic devices and meet the requirements for charging a battery. At present, an improved charging structure is a very important item, since most traditional charging assemblies come with a connector specifically designed for connecting to a fixed power supply, and any slight change may cause incompliance with the specification.
In general, an electric charging connector includes a universal serial bus (USB) port and a battery charger for PDAs and mobile phones. The market for USB connector assemblies has grown significantly in recent years. Since mobile electronic products tend to be lighter, thinner, shorter and smaller as time passes, charging equipment has become an industrial standard and involves long-hour battery operation technology. With the advancement of the small packaging technology, a small sized battery module creates a high demand for the charging module device, and also presents an excellent business opportunity to the power supply industry. To meet the requirements of mobile phones, communication products and other industries, the small charging module assembly is expected to continue its growth in the future.
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Therefore, it is a primary objective of the present invention to provide a charging device having an improved long operating hour feature and a programmable effect to be used in the battery charging method for most mobile electronic devices so as to lower costs and enhance quality.
To achieve the foregoing objective, the present invention uses a set of batteries connected in series as well as a protection circuit. The protection circuit is connected to a microprocessor unit (MCU), which can store a program, and the MCU further connects to a charging module and a discharging module. The charging and discharging modules are connected to an output module and an input module, respectively, for avoiding the issue of changing specifications of the traditional charging devices. With the structure of a basic main charging system and an expanded power subsystem, the function of charging and discharging a power supply is accomplished to economically define a battery charging assembly for practical applications. Therefore, the present invention has a higher practical value over the prior art, and also comes with an additional battery protection function.
The system and structure of the present invention are elaborated below. A basic main charging system comprises a mobile electronic device charge output port, a power input port, a program update input port, a chargeable/dischargeable battery, and a main system printed circuit board. The main system printed circuit board is coupled to the mobile electronic device charging output port, the power input port, the program update input port and the chargeable/dischargeable battery. The basic main charging system also comprises the following circuit modules. A charge/discharge interface module is coupled with the mobile electronic device charging output port and the power input port and has an input/output signal management function. A charging module is coupled with the charge/discharge interface module and has a charge signal management function. A discharging module is coupled with the charge/discharge interface module and is capable of managing a discharge signal. A battery control interface module is coupled with the chargeable/dischargeable battery, the charging module or discharging module and has a battery protection function. A control module has a memory and is capable of updating a control program through the program update input port.
The foregoing aspects and many of the attendant advantages of this invention will be more readily appreciated as the same becomes better understood by reference to the following detailed description, when taken in conjunction with the accompanying drawings, wherein:
The present invention will now be described more specifically with reference to the following embodiments. It is to be noted that the following descriptions of preferred embodiments of this invention are presented herein for purpose of illustration and description only; it is not intended to be exhaustive or limited to the precise form disclosed.
Reference is made to the following description for the operating principle of the present invention. The present invention installs a program in the memory of the MCU to facilitate the charging/discharging flow for electronic devices in different occasions, and uses a simple way to describe the flow of the present invention. A program is saved in the MCU for testing a charging/discharging device. After the plug or the connector of an electric charger is connected, the charging or discharging operation for an electronic device is performed. The plug or connector can be an electronic device/charger connector and generally is a notebook DCIN. Therefore, it is easier for the present invention to cope with a change of specifications of an electronic device. With an expanded power subsystem, a charging/discharging system with a multiple of functions can be defined to meet the requirements of the required applications. Furthermore, the MCU can be connected to a simple voltage regulating circuit for the desired functions.
In the present invention, the whole set of batteries is connected in series and connected to a protection circuit, and the protection circuit is connected to a microprocessor MCU capable of storing a program. The MCU is further connected to a charging module and a discharging module, and the charging and discharging module are connected to an output/input module to avoid the issue of a fixed specification of the prior-art charging devices. With the structure of a basic main charging system and an expanded power subsystem, the function of charging/discharging a power supply is accomplished to economically define a battery charger for practical applications. Therefore, the present invention has a higher value over the prior art, and also comes with an additional battery protection function.
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It is noteworthy that the present invention has the following advantages:
1. The present invention is applicable for different kinds of electronic devices and thus extending its applications. The present invention is accomplished by entering software operators and integrating a battery module into the printed circuit board of an electronic device to reduce a possible misuse of specifications and enhance the efficiency of charging a battery as to achieve the cost-effectiveness purpose.
2. The present invention integrates the charging and discharging function depending on the actual conditions and also integrates both the charging and discharging functions to maximize the scope of applicability for electronic devices to be used in different situations.
3. The present invention comes with an expansion module to be used conveniently for lowering the equipment cost and providing easy access (such as providing a steady current flow for an important circuit).
While the invention has been described in terms of what is presently considered to be the most practical and preferred embodiments, it is to be understood that the invention needs not be limited to the disclosed embodiment. On the contrary, it is intended to cover various modifications and similar arrangements included within the spirit and scope of the appended claims which are to be accorded with the broadest interpretation so as to encompass all such modifications and similar structures.