1. Field of the Invention
The present invention relates to an apparatus for controlling power of an external device in an audio receiver.
2. Background of the Related Art
A general audio reproduction apparatus includes audio receiver with an external device that can transmit and/or receive audio data wirelessly for reproduction by a speaker so a user can listen to sound outputted from the audio receiver. However, the related art audio reproduction apparatus have various disadvantages. For example, since power of the external device is managed independent of that of the audio receiver, it is applied to the external device even while the audio receiver is not used. Thus, the related art can cause unnecessary power consumption and operation of the external device. Further, there is the trouble of having to manually apply or cut off power to the external device in a separate manner from power-on/off of the audio receiver.
The above references are incorporated by reference herein where appropriate for appropriate teachings of additional or alternative details, features and/or technical background.
An object of the invention is to solve at least the related art problems and/or disadvantages or to provide at least the advantages described hereinafter.
Another object of the present invention is to provide an apparatus which is capable of controlling power of an external device in association with an audio receiver.
Another object of the present invention is to provide an apparatus which is capable of controlling power of an external device in an audio receiver by controlling power of the external device such as a wireless transmitter module according to a speaker output signal of the audio receiver.
In order to achieve at least the above objects or other advantages in a whole or in part, in accordance with one aspect of the present invention, there is provided an apparatus for controlling power of an external device for an audio receiver that includes a detector configured to detect an audio signal outputted from the audio receiver to the external device and a controller configured to control the power of the external device according to a result of the detection.
To further achieve at least the above objects or other advantages in a whole or in part, in accordance with one aspect of the present invention, there is provided a method for controlling power of an external device for an audio receiver that includes detecting an audio signal outputted from the audio receiver to the external device and controlling the power of the external device according to a result of the detection.
To further achieve at least the above objects or other advantages in a whole or in part, in accordance with one aspect of the present invention, there is provided an apparatus for controlling power of an external device for an audio receiver that includes a receiver module configured to generate an audio signal, an external wireless transmitter module configured to receive the audio signal and output a corresponding wireless signal, a wireless receiver module configured to receive the wireless signal and output a corresponding converted audio signal, a speaker configured to output the converted audio signal as sound, a detector configured to detect the audio signal outputted from the audio receiver to the external wireless transmitter module and a controller configured to control the power of the external wireless transmitter module according to a result of the detection.
Additional advantages, objects, and features of the invention will be set forth in part in the description which follows and in part will become apparent to those having ordinary skill in the art upon examination of the following or may be learned from practice of the invention. The objects and advantages of the invention may be realized and attained as particularly pointed out in the appended claims.
The invention will be described in detail with reference to the following drawings in which like reference numerals refer to like elements wherein:
The optical disc player 100 includes a disc reader 11 for reading audio data recorded on an optical disc 10 such as a DVD or CD and a decoder 12. The decoder 12 is for decoding Sony Philips digital interface format (SPDIF) audio data read by the disc reader 11 into pulse code modulation (PCM) audio data and outputting the PCM audio data.
The audio receiver 200 includes a digital audio processor 20 for converting the PCM audio data from the optical disc player 100 into pulse width modulation (PWM) audio data and outputting the PWM audio data, a digital amplifier 21 and a low pass filter (LPF) 22. The digital amplifier 21 is for amplifying the PWM audio data from the digital audio processor 20. The low pass filter 22 is for filtering an output signal from the digital amplifier 21 at an audio frequency band and outputting the resulting audio signal to the speaker.
In operation, when a user of the audio reproduction apparatus of
A transmitter module 300 of a local-area wireless communication device, such as Bluetooth, is adapted to convert the audio signal into data for wireless transmission and transmit the converted data wirelessly. A Bluetooth receiver module 400 is adapted to receive the wirelessly transmitted data, perform conversion, amplification and filtering operations with respect to the received data and output the resulting audio-frequency sound through the speaker.
Accordingly, using the Bluetooth transmitter and receiver modules, the user can listen to the audio-frequency sound outputted from the audio receiver through a remote speaker.
The audio receiver 200 can include a digital audio processor 20 for converting PCM audio data into PWM audio data and outputting the PWM audio data, a digital amplifier 21 for amplifying the PWM audio data from the digital audio processor 20, and an LPF 22 for filtering an output signal from the digital amplifier 21 at an audio frequency band and outputting the resulting audio signal.
The digital amplifier 21 can be adapted to amplify PWM audio data of square-wave pulses using a half-bridge circuit or full-bridge circuit. As shown in
The signal switched about DC 15 V can be filtered by the LPF 22 and then inputted as a speaker output signal of the audio frequency band to the Bluetooth transmitter module 300. A potential difference of 15 V can be generated between the speaker output signal (+/−) and ground GND. However, when the audio receiver 200 is powered off, the potential of the speaker output signal becomes 0 V.
In the embodiment of
In the embodiment of
Therefore, in embodiments of the audio receiver, it is possible to control the supply of power to the external device such as the Bluetooth transmitter module according to the DC potential, level of the speaker output signal or the like. Alternatively, the power controller may be contained in another embodiment of an audio receiver or the Bluetooth transmitter module.
The input buffer 61 can receive a speaker output signal, for example, a balanced transformer-less (BTL) signal, reduce the level of the received signal, and output a single ended signal using a differential amplifier.
The on detector 62 can directly or automatically control the power supply 66 according to the potential of the speaker output signal. For example, the on detector 62 can detect, from the speaker output signal, a power-on state of the receiver that outputs the speaker output signal, and control the power supply 66 of the Bluetooth transmitter module 310 on the basis of the detection result.
For distinction between a low volume state of the speaker output and a power-off state of the receiver, the on detector 62 can measure the potential of the speaker output signal and detect the power-on/off state of the receiver on the basis of the measured potential. When the receiver is powered on, the on detector 62 can turn on the power supply 66 of the Bluetooth transmitter module 310 at once. When the receiver is powered off, the on detector 62 preferably turns off the power supply 66 of the Bluetooth transmitter module 310 gradually after 20 minutes.
The power supply 75 of the Bluetooth receiver module 410 can be operated in three modes to control power of the digital amplifier 73. In a standby mode, the power supply 75 can output DC power of 5 V to wait until a signal from the Bluetooth transmitter module is transmitted. In the active mode, the power supply 75 can automatically turn on the power of the digital amplifier 73. In the passive mode, the power supply 75 can automatically turn off the power of the digital amplifier 73.
Any reference in this specification to “one embodiment,”“an embodiment,”“example embodiment,” etc., means that a particular feature, structure, or characteristic described in connection with the embodiment is included in at least one embodiment of the invention. The appearances of such phrases in various places in the specification are not necessarily all referring to the same embodiment. Further, when a particular feature, structure, or characteristic is described in connection with any embodiment, it is submitted that it is within the purview of one skilled in the art to effect such feature, structure, or characteristic in connection with other ones of the embodiments. Furthermore, for ease of understanding, certain method procedures may have been delineated as separate procedures; however, these separately delineated procedures should not be construed as necessarily order dependent in their performance. That is, some procedures may be able to be performed in an alternative ordering, simultaneously, etc.
As described above, embodiments of methods and apparatus for controlling power for an audio receiver according to the present invention have various advantages. For example, embodiments can control power of an external device coupled to an audio receiver, such as a Bluetooth transmitter module, in association with a power state of the audio receiver. Further, embodiments according to the present invention reduce or prevent unnecessary power consumption of an external device connected to an audio receiver, such as a Bluetooth transmitter module. Embodiments can remove the trouble of having to additionally turn on/off power of an external device connected to an audio receiver in a separate manner from power-on/off of the audio receiver. In addition, embodiments of an apparatus for controlling power of an external device connected to an audio receiver, such as a Bluetooth transmitter module, can be simply and conveniently implemented using only a speaker output signal of the audio receiver, without the addition of a separate signal line.
The foregoing embodiments and advantages are merely exemplary and are not to be construed as limiting the present invention. The present teaching can be readily applied to other types of apparatuses. The description of the present invention is intended to be illustrative, and not to limit the scope of the claims. Many alternatives, modifications, and variations will be apparent to those skilled in the art. In the claims, means-plus-function clauses are intended to cover the structures described herein as performing the recited function and not only structural equivalents but also equivalent structures.
Number | Date | Country | Kind |
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10-2004-0022375 | Mar 2004 | KR | national |