The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the invention and, together with the description, serve to explain the principles of the invention.
Reference will now be made in detail to the present preferred embodiments of the invention, examples of which are illustrated in the accompanying drawings. Wherever possible, the same reference numbers are used in the drawings and the description to refer to the same or like parts.
When the transmission pin 110 is in a floating state, the transmission pin 110 outputs a floating voltage. Because the resistor R1 will not generate a voltage difference, the floating voltage at the transmission pin 100 is substantially logic high. When the connector 120 is coupled to the transmission pin 100, the transmission pin 110 outputs a connection voltage. The connection voltage depends on the resistance ratio between the resistor R1 and the resistor R3. In the present embodiment, the transmission pin 100 obviously outputs an logic low voltage. By using the DC voltage level outputted from the transmission pin 110 (the output of transmission pin 110 is logic high in the floating state and logic low when the transmission pin 110 is coupled to the connector 120), the coupling state between the transmission pin 110 and the connector 120 can be judged.
In the present embodiment, the transmission pin 110 can be disposed on a video output apparatus (for example, a DVD player) and the connector 120 can be disposed on a video display apparatus (for example, a television). When the television is connected to the DVD player through the connector 120, the DVD player identifies whether the connecting action between the connector 120 of the television and the transmission pin 110 is completed via the connection voltage outputted by the transmission pin 110, so as to output a specification compatible video signal to the television. Conversely, the connector 120 can be disposed on the video output apparatus and the transmission pin 110 can be disposed on the video display apparatus, and the coupling relationship between the transmission pin 110 and the connector 120 can be similarly detected. Since those skilled in the art may easily deduce the techniques involved, a detailed description is omitted.
In general, video output apparatus have a number of video transmission specifications. Furthermore, each transmission specification transmits signals through a different transmission pin 110 or a socket. The embodiment of the present invention is also suitable for a transmission interface having a plurality of transmission specifications to identify which transmission specification is selected.
The transmission pins 210 and 220 are responsible for transmitting video signals of different specifications (for example, NTSC and PAL) respectively. The connector module determines whether the connector 230 is coupled to the transmission pin 210 or 220 according to the output voltage level of the transmission pins 210 and 220. When the connector 230 is coupled to the transmission pin 210, the transmission pin 210 outputs a connection voltage with logic low, while the transmission pin 220 is maintained in a floating state and outputs a floating voltage with logic high, and vice versa. Hence, the connector module is able to know which transmission pin is used to couple between the video output apparatus and the video display apparatus and outputs a specification compatible video signal accordingly.
When the connector 230 is coupled to one of the transmission pins 210 and 220, the DC voltage of the corresponding transmission pin 210 or 220 is converted to logic low. When the DC voltage of the connection voltage outputted by the transmission pin 210 isis logic low, this implies that the connector 230 is coupled to the transmission pin 210. Then, the switch unit 315 outputs a video signal matching the specification through the transmission pin 210 to the connector 230. On the contrary, if the connection voltage outputted by the transmission pin 220 is logic low, the switch unit 315 outputs a video signal matching the video specification of the transmission pin 220 to the connector 230 through the transmission pin 220. In
In summary, when the connector is coupled to a selected transmission pin, the selected transmission pin will generate a change in potential as a result of resistive voltage division. Thus, through the change in potential in the transmission pin, the transmission pin actually in use can be determined and the corresponding video signal is outputted for displaying the video signal correctly. Similarly, the embodiment of the present invention is also suitable for a video transmission module having a plurality of transmission pins and supporting a plurality of video signal specifications. Using the techniques described in the foregoing embodiments with reference to
Because most video output apparatus use different transmission pins or sockets to distinguish between video signals having different specifications, the detection method in the present invention can be utilized to automatically detect the transmission pin or socket used by the user. Thus, the specification of the video display apparatus is known and a video signal with a suitable specification is output from the correct transmission pin or socket. As a result, the convenience of using the video output apparatus is improved.
It will be apparent to those skilled in the art that various modifications and variations can be made to the structure of the present invention without departing from the scope or spirit of the invention. In view of the foregoing, it is intended that the present invention cover modifications and variations of this invention provided they fall within the scope of the following claims and their equivalents.
Number | Date | Country | Kind |
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95131990 | Aug 2006 | TW | national |