1. Field
The present invention relates to the fields of architectures and designs of power adapters.
More specifically, the present invention pertains to an improved power adapter design for mobile devices that employs a portable power module utilizing a retractable power cord for an efficient power delivery system design.
2. Prior Art
The following is a tabulation of some prior art that presently appears relevant:
Current power delivery systems for low-power applications typically employ a wall socket connected to an AC (alternating current) adapter to convert the high-power AC into usable DC electricity. After conversion, the electricity then flows into the object, such as a computer or a kitchen appliance, for use to power the object. Due to their relatively old design, these AC adapters tend to be bulky, heavy, energy inefficient, and non-universal. The non-universality means that each AC adapter is tailored specifically for the object it was designed for, potentially unable to be used with other appliances. While most of these issues are not a problem for larger, immobile household objects such as televisions or ovens, these qualities become drawbacks and even problems for more mobile appliances such as a laptop computer.
One solution to combat this problem for mobile devices has been to use a retractable power cord. The resulting advances in research can be witnessed in household appliances such as rice cookers, irons, USB extension cords, etc. These retractable cord adapter systems usually incorporate the AC adapter into the product itself, with just the AC power delivery line lying external to the appliance. This means that the DC line is connected to a self-winding mechanism, with a mechanism in place to: wind back the cord if not pulled to extension, a mechanism for holding the cord at a desired length, and a retracting mechanism for pulling the cord back when storage or mobility is needed. However, research and efforts have primarily been focused on house-hold appliances as listed above, without much effort being put into more practical applications such as laptop computers or portable GPS (global positioning system) handsets. However, these retractable cord supply units also tend to be bulkier and heavier than normally corded power supplies. This is because the retracting mechanism takes up more space. Additionally, the AC adapter must be separate from the winding mechanism, meaning increased space usage and decreased efficiency.
For the foregoing reasons, there is a need in mobile appliance power adapter design that focuses on a more practical solution for lengthy and cumbersome power cords. Furthermore, there is a need to either eliminate or come up with a more efficient design for the AC adapter that is necessary for all mobile appliances. An embodiment of the present invention involves utilizing a retracting mechanism for the DC power cord, a more efficient method of storing the power adapter, as the issue of tangled lines is eliminated, as well as a more efficient and low-profile design of the power supply unit itself. The present invention calls for a retractable cord with integration of the power supply unit into the device itself.
The present invention provides an improved architecture and method of power supply unit design, specifically with regard to the design of AC power adapters and power cords. In particular, the retractable mobile device power module focusing on improved power supply design comprises: an electric power delivery module with an integrated AC adapter, a power cord, and a self-retracting mechanism for the power cord, all integrated into the desired mobile device.
In an embodiment of the invention, the retractable cord power supply unit is directly integrated into a mobile device, i.e. a laptop. One of the features of the power supply unit is that it is removable. In this embodiment, the AC adapter is also integrated into the power supply unit, and only the retractable power cord when at full length will be external to the mobile device itself.
An additional embodiment of the invention involves altering the position of the AC adapter. Instead of integrating the adapter into the power supply unit itself as suggested with the previous embodiment, the adapter is instead manifested as a wall mount external to the power supply. The DC power cord is the only cord that is present in the power supply unit.
In a further embodiment of the invention, the power supply unit may be integrated into other mobile devices, such as an external hard disk drive or a media player such as an iPod or an MP3 player.
With embodiments described later, but not limited to, mobile devices become more convenient because: the power supply unit exhibits a lower profile, utilizes physical space more efficiently, with the convenience level being higher than traditional designs with an external adapter. Additionally, the self-retracting cord mechanism acts as a means to keep wires kempt, reducing the possibility of cord entanglements and facilitating cord storage. For these reasons, the design, ultimately, is more convenient and functional over traditional power supply module designs.
Further advantages and applications of embodiments will become clear to those skilled in the art by examination of the following detailed. Reference will be made to the attached sheets of drawing that will first be described briefly.
One embodiment of the retractable mobile device power module is shown in
As shown in
Detailed retracting mechanism is shown in
Another method to implement such a design with regard to a laptop computer is shown in
Previous discussed embodiments possess several advantages as following. With described designs, laptop, including power supply, becomes much more compact and convenient than traditional design. It helps get rid of problems of forgetting one's power supply, or tangled power cords. Additionally, the retractable power module is portable in relation to the laptop. The user can exercise the option of bringing the mobile power device module with the desired electronic device.
Besides the embodiment described previously, another implementation of the retractable mobile device power module may also be shown to be useful and practical. As shown in
High voltage power cords are usually much thicker and heavier than low voltage. In the present embodiment, the high voltage power cord is totally eliminated. Instead, the low power voltage cord is the only cord that is necessary; the AC adapter is essentially connected directly to the outlet, thus, laptop becomes even more portable than previous designs. The major drawback is the extra equipment that is manifested in the external AC adapter and extra bulk as a result of implementing a self-winding mechanism.
Alternative embodiments of the present invention are not limited to laptop computers. This design can be applied to all kinds of mobile devices as shown in
Fixed retractable mobile device power module 304 is integrated with mobile device 302.
As shown in
This application claims the benefit, pursuant to 35 U.S.C. §119(e), of U.S. provisional application Ser. No. 61/381,381, filed Sep. 9, 2010. This application, pursuant to 35 U.S.C. §1.125(b), contains no new matter in the substitute specification. This application, pursuant to 35 U.S.C. §1.125(c), is the accompanying clean version with no changes present.
Number | Date | Country | |
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61381381 | Sep 2010 | US |