1. Field of the Invention
The present invention relates to the data transmission and power supply in a computer system or computer systems.
2. Description of the Related Art
Acer Inc provides a daisy chain computer system for integrating the advantage of desktop computers and laptop computers.
As shown in
To simplify the daisy chain computer system, in some designs, one transmission interface which can either transmit data or supply power, such as a universal serial bus (USB) or thunderbolt interface, is used. In the prior art, although the power supplied by the interface is strong enough for driving the peripheral devices of a computer, it is usually unable to drive another computer system due to its limited capacity.
Therefore, the present invention provides a power docking station and a universal transmission interface to overcome the defects in the prior art.
A power docking station is provided. The power docking station comprises: at least one first interface, for connecting to a data transmission interface; at least one second interface, for connecting to a power transmission interface; and an interface control module, coupled to the at least one first interface and the at least one second interface, for allotting power which is transmitted to the first and the second interface.
A universal transmission interface is provided. The universal transmission interface comprises a data transmission interface; and a power transmission interface, wherein the power transmission interface comprises a power positive end and a power negative end.
A detailed description is given in the following embodiments with reference to the accompanying drawings.
The present invention can be more fully understood by reading the subsequent detailed description and examples with references made to the accompanying drawings, wherein:
The following description is of the best-contemplated mode of carrying out the invention. This description is made for the purpose of illustrating the general principles of the invention and should not be taken in a limiting sense. The scope of the invention is best determined by reference to the appended claims.
The first interface 214 and 216 of the power docking station M1 are respectively used for connecting with the data transmission interface 212 of the (laptop) computer system 220 and the data transmission interface 218 of an electrical devices M2 of the daisy chain computer system 210. The “data transmission interface”, for example, is an USB interface, a thunderbolt interface, or any interface which can either transmit data or supply power. Universally, the USB interface can provide a voltage of 5V and current of at most 500 mA; while the thunderbolt interface can provides two voltages, 3.3V and 12V, and current of at most 1 A. Since the thunderbolt interface can supply higher power, in a preferred embodiment, the first interface of the power docking station M1 of the present invention is the thunderbolt interface.
The second interface 224 and 226 of the power docking station M1 are respectively used for connecting with the power transmission interface 222 of the (laptop) computer system 220 and the power transmission interface 228 of the electrical devices M2. The “power transmission interface” of the present invention is purely used for supplying power. In the laptop computer system 220, for example, the power transmission interface 222 can be a power socket hole for connecting with a 19V power line. It should be noted that in some embodiments, for simplifying the combination of the electrical devices (i.e., M1˜M5) in the daisy chain computer system 210, the power transmission interface is usually omitted, and only the transmission interface which can either transmit data or supply power remains, which is shown by the male connectors MC and the female connectors FC in
The interface control module 260 of the present invention is coupled to the first interface 214 and 216, the second interface 224 and 228, and power input end 230. The main use of the interface control module 260 is to allot power transmitted to the first interface 214 and 216 and the second interface 224 and 228. The interface control module 260 can operate in various modes as follows:
(1) First mode—when the power input end 230 is not connected to the power:
At this moment, the interface control module 260 controls the first interface 214 and 216 of the power docking station M1 to connect to each other, so that the computer systems 210 and 220 can transmit data with each other. In this mode, only data is transmitted between the two computer systems; since there is no power supplied from the outside, it is not necessary for the second interface 224 and 226 to connect to each other.
(2) Second mode—when the power input end 230 is appropriately connected to the power, and the first interfaces (214/216) and the second interfaces (224/226) are respectively connected to the data transmission interfaces (212/218) and the power transmission interfaces (222/228) of the other devices:
At this moment, the interface control module 260 allots the power obtained by the power input end 230 to the second interfaces 224 and 226 so that the computer system 220 and the electrical devices M2 acquire the power. In this mode, the interface control module 260 connects the first interfaces 214 and 216 of the power docking station M1 to each other.
(3) Third mode—when the power input end 230 is appropriately connected to the power, the first interfaces (214/216) are connected to the data transmission interfaces (212/218) of the other devices, but the second interfaces (224/226) are not connected to the power transmission interfaces (222/228):
At this moment, the interface control module 260 operates in a way, where it controls the power input end 230 and the first interfaces (214/216) to connect to each other, re-allots the obtained power to the first interfaces (214/216), and transmits the power to the first interfaces (214/216) and then to the data transmission interfaces (212/218) of the other devices (220/M2). For example, the interface control module 260 directs the power (e.g., 19V), which is originally provided to the second interfaces (224/226), to the first interfaces (214/216), without the limitation from the voltage upper limit of the data transmission interfaces (212/218) (for example, the thunderbolt interface has a 12V voltage upper limit).
It should be noted that the interface control module 260 of the power docking station M1 of the present invention can be embodied by combining various switches and voltage converters. Since those skilled in the art can establish the power docking station of the present invention by using various electrical components, further description will be omitted herein.
In the embodiment shown in
While the invention has been described by way of example and in terms of the preferred embodiments, it is to be understood that the invention is not limited to the disclosed embodiments. To the contrary, it is intended to cover various modifications and similar arrangements (as would be apparent to those skilled in the art). Therefore, the scope of the appended claims should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements.
Number | Date | Country | Kind |
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100147902 | Dec 2011 | TW | national |
This Non-provisional application claims priority under 35 U.S.C.§119(a) on Patent Application No(s). 100147902, filed in Taiwan, Republic of China on Dec. 22, 2011, and Patent Application No(s). 61/510,502, filed in United State of America on Jul. 22, 2011, the entire contents of which are hereby incorporated by reference.
Number | Date | Country | |
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61510502 | Jul 2011 | US |