This application claims the priority benefit of Taiwan application Ser. No. 90105274, filed Mar. 7, 2001.
1. Field of the Invention
The present invention relates to an audio chip structure. More particularly, the present invention relates to the connection of an audio chip to a motherboard or sound card.
2. Description of the Related Art
Conventionally, a personal computer is principally composed of a motherboard provided with at least a central processing unit (CPU), a plurality of memory modules, interface cards, and peripheral members. The interface cards that compose the conventional personal computer generally are the sound card, display card, network card, and small computer system interface card (SCSI).
In the former sound cards, the audio chip has only one single audio output end. When it is connected to the sound card, the circuit layout of the audio output end is simple. In most of the current sound cards, the audio chip comprises at least a master output end and a headphone output end connected to an operational amplifier. Thus, when the audio chip is assembled within the sound card, the operator often substitutes the headphone output end for the master output end, such that the user, through the software program controlling the sound output end, cannot normally adjust the volume of the sound.
With respect to the manufacturer of audio chips, the audio chips are delivered to different manufacturers of sound cards and assembled within different types of sound cards according to different audio output layouts that are not predictable by the manufacturer of the audio chips. As a result, the program controlling the sound volume adjustment is incompatible with the actual audio output layout. A cumbersome modification of the driver program of the audio chip is then necessary to cure this deficiency.
One major aspect of the present invention is to provide an audio chip with switchable audio output pathways that can be assembled within a circuit board with a flexible audio output layout, without modifying a driver program of the audio chip
To attain the above and other objectives of the invention, an audio chip with switchable audio output pathways according to a first embodiment of the present invention comprises, two ports, a OP amplifier, a master output end, a headphone output end, a status input end, and a status register. Within the above audio chip, a first audio signal is outputted out of the audio chip from a first port and through the master output end A second audio signal is delivered from a second port, amplified through the OP amplifier, and outputted out of the audio chip via the headphone output end. When the audio chip of the invention is connected to an external circuit board, the configuration of the connection of the master output end and headphone output end of the audio chip with respect to the external circuit board is stored via the status input end into the status register. The stored information about the connection layout of the audio output ends can be represented by, for example, high and low voltages applied onto the status input end. For example, a high voltage indicates that the master output end of the audio chip is connected to a master output end of the external circuit board while the headphone output end of the audio chip is connected to a headphone output end of the external circuit board. In turn, a low voltage would indicate that the master output end of the audio chip is connected to the headphone output end of the external circuit board and the headphone output end of the audio chip is connected to the master output end of the circuit board. A driver program controlling the sound volume can therefore read in the status register the actual connection configuration of the audio output ends and adequately addresses a plurality of sound volume adjusters of a software interface to the right ports.
To attain the foregoing and other aspects of the present invention, an audio chip with switchable audio output end pathways according to a second embodiment of the present invention comprises, two ports, an OP amplifier, a master output end, a headphone output end, a status input end, and a means for connection switch. Within the above audio chip, a first audio signal is outputted out of the audio chip through the means for connection switch and the master output end. A second audio signal is outputted out of the audio chip via the means for connection switch, and the OP amplifier, to the headphone output end. The means for connection switch can be, for example, a router that comprises a first and second input end, a first and second output end, and a control input end. The first and second input ends of the router respectively receive the first and second audio signals, and the first and second output ends are respectively connected to the master output end and the input end of the OP amplifier. Meanwhile, the control input end of the router is connected to the status input end. The router operates by having its first input end connected to its first output end and its second input end connected to its second output end when a high voltage is applied onto the status input end. When a low voltage is applied onto the status input end, the first input end and the second output end of the router are connected to each other while the second input end and the first output end of the router are connected to each other.
The foregoing audio chip with switchable audio output pathways may further comprise a status register connected to the status input end. The status register stores the configuration of connection of the master and headphone output ends of the audio chip with respect to the external circuit board.
It is to be understood that both the foregoing general description and the following detailed description are exemplary, and are intended to provide further explanation of the invention as claimed.
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. In the drawings,
The following detailed description of the embodiments and examples of the present invention with reference to the accompanying drawings is only illustrative and not limiting.
Referring now to
Practically, the audio chip 10 controls, for example via respectively two ports (02) and (04), the outputs of the sound signal delivered to the external circuit board 8 via the master output end 14 and headphone output end 16. The master and headphone output ends of the audio chip 10 are coupled with the master and headphone output ends of the circuit board 8 through a plurality of pins of the audio chip 10 (not shown). The status register 20 indicates whether the master output ends 14, 6 and the headphone output ends 16, 4 are correspondingly connected or crossly connected. A cross-connection means that a master output end of the audio chip is connected to a headphone output end of the circuit board 8 while a corresponding connection means that master output ends are connected to each other and headphone output ends are connected to each other. In the present invention, the above configurations of the outputs of the audio chip 10 with respect to the outputs of the circuit board 8 can be represented by, for example, high and low voltages. For example, a high voltage may represent a corresponding connection between both master output ends and between both headphone output ends while a low voltage would indicate a cross-connection between the master/headphone output end of the audio chip 10 and the headphone/master output end of circuit board 8. As a result, a driver program of the audio chip 10 (not shown), reading the configuration of the master and headphone output ends in the status register 20, can set up an adjuster of the master output end and an adjuster of the headphone output end (not shown). The adjuster of the master output end and the adjuster of the headphone output end, typically set within a software interface for controlling the sound volume, can be thereby coupled with the right port (02) or (04) in accordance with the configuration recorded in the status register 20. The configuration of connection between the output ends of the audio chip 10 vis-à-vis the output ends of the circuit board 8 is recorded within the status register 20 by the manufacturer of the circuit board 8 after the audio chip 10 is assembled onto the circuit board 8. For example, if the status register 20 indicates a corresponding connection between the master output ends and the headphone output ends of the audio chip 10 and circuit board 8, the driver program will set the adjuster of the master output end to the port (02) while the adjuster of the headphone output end will be set to the port (04).
Referring to
The router 34 comprises a first input end 48, a second input end 50, a first output end 44, a second output end 46, and a control input end 52. The first and second inputs 48 and 50 are respectively connected to the ports (02) and (04) The first output end 44 of the router 34 is connected to the master output end 38, while the second output end 46 is connected to the operational amplifier 32. A signal applied to the control input end 52 connected to the status input end 42 commands the router 34 in accordance with the desired configuration of connection of the outputs of the audio chip.
For example, the router 34 may be designed so that if the control input end 52 receives a high voltage from the status input end 42, the first output end 44 is connected to the first input end 48 and the second output end 46 is connected to the second input end 50. In contrast, if a low voltage is received, the second output end 46 is connected to the first input end 48 and the first output end 44 is connected to the second input end 50 Consequently, if the port (02) is connected to, for example, the master output end 38 while the port (04) is connected to the headphone output end 40, a high voltage is applied onto the status input end 42 to establish the adequate connections. On the other hand, if the port (02) is connected to the headphone output end 40 while the port (04) is connected to the master output end 38, a low voltage is applied onto the status input end 42. Thus, when the audio chip is connected to the circuit board, an operator can switch the router 34 by applying an adequate command signal to the control input end 52, thus establishing an adequate connection of the ports (02) and (04) in accordance with the external layout. Such an operation is principally different from the previous embodiment because it is software transparent.
Referring to
Accordingly, with the audio chip provided by the present invention, the manufacturer of sound cards or motherboards can advantageously apply a desired output layout without causing any incompatibility problems with respect to the driver program of the audio chips. Furthermore, the driver program of the audio chip advantageously does not need to be modified by the manufacturers of motherboards or sound cards to adapt to each specific layout used, which therefore advantageously increases the convenience and efficiency of the manufacture of motherboards and sound cards.
It will be apparent to those skilled in the art that various modifications and variations can be made to the structure and elements of the present invention without departing from the scope or spirit of the invention.
| Number | Date | Country | Kind |
|---|---|---|---|
| 90105274 A | Mar 2001 | TW | national |
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|---|---|---|---|
| 5719866 | Du et al. | Feb 1998 | A |
| 5734729 | Tran | Mar 1998 | A |
| 5910991 | Farrar | Jun 1999 | A |
| 6321278 | Phu et al. | Nov 2001 | B1 |
| Number | Date | Country | |
|---|---|---|---|
| 20020128738 A1 | Sep 2002 | US |