1. Technical Field
The present disclosure relates to USB adapters and, particularly, to a USB adapter used for data transmission.
2. Description of Related Art
A USB adapter converts mains electricity to a regulated voltage for a USB device, and cannot be used for data transmission. Adding data transmission function to a USB adaptor would be desirable in consolidating more functions into a single USB adaptor.
The components of the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the present disclosure. Moreover, in the drawings, like reference numerals designate corresponding parts throughout several views.
The embodiments of the present disclosure are described with reference to the drawings.
The power supply unit 11 receives mains electricity and converts the mains electricity to a first voltage supplied to the USB control chip 13 and a second voltage supplied to the communication unit 15. The first voltage, such as 5V, satisfies the power needs of a first external load 2. The second voltage, such as 13V, satisfies the power needs of a second external load 3. The first external load 2 may be a mouse or a keyboard. The second external load 3 may be a driver for other devices.
The USB interface unit 12 connects to the first external load 2.
The USB control chip 13 is connected to the USB interface unit 12. The USB control chip 13 identifies the first external load 2 connected to the USB interface unit 12, provides the first voltage to the first external load 2 via the USB interface unit 12, and receive USB-compatible data from the first external load 2 via the USB interface unit 12.
The line control chip 14 is connected between the USB control chip 13 and the communication unit 15. The line control chip 14 receives the USB-compatible data from the USB control chip 13, converts the data received from the USB control chip 13 to IEEE802.3 data, and outputs the converted IEEE802.3 data to the communication unit 15.
The communication unit 15 is connected to the line control chip 14 and communicates with the second external load 3. The communication unit 15 provides the second voltage and the converted IEEE802.3 data to the second external load 3. In the embodiment, the communication unit 15 communicates with the second external load 3 via a transmission cable 4.
In the embodiment, the line control chip 14 further receives IEEE802.3 data from the second external load 3, converts the received IEEE802.3 data to USB-compatible data, and outputs the converted data to the USB control chip 13. The USB control chip 13 further provides the converted data to the first external load 2 via the USB interface unit 12. Thus, data can be exchanged between the first external load 2 and the second external load 3, in other words, data from the first external load 2 can be transmitted to the second external load 3 and data from the second external load 3 can be transmitted to the first external load 2.
With this structure, the data is carried in only one cable without the power losses that occur in other types of the transmission lines, thus the data transmission distance between the first external load 2 and the second external load 3 is increased. Moreover, the coaxial cable 4 contains the characteristics of high bandwidth, thus the data speed transmission between the first external load 2 and the second external load 3 is increased.
Although the present disclosure has been specifically described on the basis of an exemplary embodiment thereof, the disclosure is not to be construed as being limited thereto. Various changes or modifications may be made to the embodiment without departing from the scope and spirit of the disclosure.
Number | Date | Country | Kind |
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102103103 | Jan 2013 | TW | national |