1. Field of the Invention
The present invention relates to an earphone with dual communication modes and a related method for answering, in particular, the earphone is functioned with dual communication mode, and capable of answering incoming call by a dual-mode module.
2. Description of Related Art
The current widespread methods of communication are using cellular phone and regular phone through PSTN. These two methods operate independently. So that, the user may not answer a PSTN phone call simultaneously while he is taking a cellular phone call. Similarly, the user may not answer the cellular phone call when he is answering the PSTN incoming call.
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However, since the wireless dial-up phone 12 is functioned with wireless communication, the user may not use it for long time for the user may have pain in his hand.
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Although the handsfree earphone may be benefited by the Bluetooth communication technology, only the Bluetooth cell phone 20 performs the bi-directional communication instead of PSTN phoning. That is, the user may not answer the traditional PSTN call using the Bluetooth earphone 22. The PSTN call may be lost at the moment as the user uses the Bluetooth earphone 22 to answer a previous call.
In view of the conventional drawback, provided is a dual-mode earphone in accordance with the present invention. The claimed dual-mode earphone is capable of monitoring both incoming call from one Bluetooth device and one call from PSTN phone. Particularly, in the present invention, a Bluetooth communication and a DECT communication are used for processing a bi-directional communication or a three-way call.
In accordance with one embodiment of the present invention, the dual-mode earphone wirelessly communicates with a first remote device and a second remote device. In the dual-mode earphone, a first communication module, a second communication module, a microphone, a speaker and a microprocessor are included. The first communication module is preferably used for communicating with the first remote device, and outputting a first incoming signal when the first remote device receives an incoming call. The second communication module is used for wirelessly communicated with the second remote device, and outputting a second incoming signal when the second remote device receives the incoming call. The microphone the outputs a reply signal.
The microprocessor is coupled with the first communication module, the second communication module, the microphone and speaker. The microprocessor is controlled by a first control signal and used for transmitting the first incoming signal or the second incoming signal to the speaker. Further the microprocessor transmits the reply signal through the first communication module to the first remote device. Alternatively, the reply signal is transmitted to the second remote device through the second communication module.
Furthermore, the microprocessor is controlled by a second control signal, and is used to transmit the first incoming signal and the second incoming signal to the speaker simultaneously. At the same time, the reply signal is transmitted to the first remote device and second remote device via the first communication module and the second communication module.
Consequently, a user can only use the claimed dual-mode earphone to apply to two different network systems. In one embodiment, it is featured that an incoming call from one of the network systems selected to be answered so as to process a two-way call. Alternatively, the claimed earphone may simultaneously answer the incoming calls over two different network systems. In particular, the dual-mode earphone can be a channel for bridging the two network systems in order to process a three-way communication. Thus the dual-mode earphone in accordance with the present invention provides a more convenient way to answer an indoor call without losing call.
The foregoing aspects and many of the attendant advantages of this invention will be more readily appreciated as the same becomes better understood by reference to the following detailed description, when taken in conjunction with the accompanying drawings, wherein:
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The design using the magnetic material is benefited by the magnetic component 54 in the earphone slot 52. The magnetic-permeable component 30 of the earphone 3 is attracted by the component 54 as the dual-mode earphone 3 approaches the earphone slot 52 of the second remote device 5. Therefore, it is featured that the dual-mode earphone 3 can be quickly inserted into the earphone slot 52, and electrically connected to the second remote device 5.
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The microprocessor 33 is coupled to the Bluetooth communication module 31, the DECT module 32, the microphone 34, the speaker 35, the first answer key 36, the second answer key 37, and the volume adjustment key 38. The microprocessor 33 serves as a central processor communicating the every elements in the earphone.
The Bluetooth communication module 31 is used for communicating with the first remote device 4 wirelessly. A first incoming signal S1 is outputted when the first remote device 4 receives an incoming call. The DECT module 32 is used for wirelessly communicating with the second remote device 5. The DECT module 32 outputs a second incoming signal S2 when the second remote device 5 receives an incoming call. The microphone 34 then outputs replay signal S3 as answering.
While one of the first remote device 4 and the second remote device 5 receives the incoming call, the first answer key 36 may be used to generate a first control signal S4. In the meantime, the microprocessor 33 is controlled by this first control signal S4, and used to transmit the corresponding first incoming signal S1 or the second incoming signal S2 to the speaker 35. More, the microprocessor 33 may be simultaneously receives the signal S3 from the microphone 34 and transmits the signal S3 to the first remote device 4 through the Bluetooth communication module 31, or alternatively, transmits the reply signal S3 to the second remote device 5 through the DECT module 32. No matter the first remote device 4 or the second remote device 5 receives the incoming cal, the dual-mode earphone 3, according to the present invention, may be used for processing the communication on the incoming call received by the first remote device 4 or by the second remote device 5 by handheld means. Therefore, a bi-directional communication with a remote user is carried out.
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Meanwhile, the microprocessor 33 is also controlled by the second control signal S5, and used to transmit the first incoming signal S1 to the second remote device through the DECT module 32. Further, the second incoming signal S2 is transmitted to the first remote device 4 through the Bluetooth communication module 31. The microprocessor 33 serves as a bridge between the first remote device 4 and the second remote device 5. The user may use the claimed dual-mode earphone 3 links to the first remote device 4 and the second remote device 5 simultaneously for wireless communication by handheld means when any incoming call is received. The first remote device 4 may also be vocally communicated with the second remote device 5 via the dual-mode earphone 3. Thus a three-way communication is carried out.
In addition to the microprocessor 33 being respectively controlled by the first control signal S4 and the second control signal S5, the microprocessor 33 may be controlled by a volume control signal S6 outputted from the volume adjustment key. The microprocessor 33 may adjust the output volume from the speaker 35 according to the volume control signal S6. And further, the microprocessor 33 may receive a hang-up signal S7, and accordingly hang up the call. In which the hang-up signal S7 is preferably generated by the abovementioned first answer key 36. In accordance with one of the embodiments, when first click is pressed on the first answer key 36, the first answer key 36 generates the first control signal S4, so as to control the answering function made by the microprocessor 33. If a next click is then pressed on the first answer key 36, the first answer key 36 may generate the hang-up signal S7 for hanging up the call. Furthermore, if the first answer key 36 is continuously pressed for a while, for example 5 seconds, the claimed dual-mode earphone 3 may be shutdown.
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When the first communication module of the dual-mode earphone 3 detects an incoming call from the first remote device 4, it is then determined that whether the incoming call is received (step S102). If the incoming call is not received, it means “no” and goes back to step S100 for further detection. However, if the incoming call is received, it means that the first communication module has been communicated with handshake process with the first remote device 4 over Bluetooth communication. Then it successfully performs a bi-directional communication with the remote end. In the meantime, the second communication module may still detect any incoming call from others (step S103).
Furthermore, when the second communication module has detected an insertion signal from the second remote device 5, the step S107 in the method is to determine whether or not the insertion signal is answered. If the insertion signal is not answered, the step goes back to step S103 and continuously performs detection. Otherwise, if the insertion signal is answered after the step S107, it means “yes”. Along with the first communication module, the first remote device 4 is linked using the Bluetooth communication, the second communication module is simultaneously linked with the second remote device 5 by means of DECT communication. Therefore, a three-way communication is carried out (step S110).
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In the occasion of the described first communication module detects an insertion signal from the first remote device 4, the step is then determined whether or not the insertion signal is answered (step S109). If the insertion signal is not answered, it means “no” and goes back to step S105 for further detection. However, if the insertion signal is answered, the first communication module will establish a communication with the first remote device 4 using Bluetooth communication. Meanwhile, the second communication module has established a DECT communication with the second remote device 5. After that, the three-way communication is carried out (step S110).
To sum up the above description, according to the present invention, any user may only use the claimed dual-mode earphone to process vocal communication over the two heterogeneous network environments. Once the earphone answers one incoming call from one of the networks, two-way communication is performed. Alternatively, two incoming calls may be simultaneously answered for performing three-way communication. The claimed dual-mode earphone brings very convenient way to process the phone call without lost.
The above-mentioned descriptions represent merely the preferred embodiment of the present invention, without any intention to limit the scope of the present invention thereto. Various equivalent changes, alternations or modifications based on the claims of present invention are all consequently viewed as being embraced by the scope of the present invention.