The receiver 106 receives wireless signals from the wireless communication system 3, and the microphone 105 receives sound. The power management unit 112 is configured for connecting to the rechargeable battery 113 for supplying power to all units of the mobile phone 1. The first RF module 104 is configured for communicating with the wireless communication system 3, that is, the first RF module 104 is configured for sending/receiving signals to/from another mobile communication terminal (not shown) via the wireless communication system 3. The second RF module 110 is connected with the converting unit 109 and the switch unit 111, and is configured for transmitting wireless signals to the multimedia system 2. The converting unit 109 is configured for converting received signals. The converting unit 109 includes a digital to analog converter (DAC) 107 for converting digital signals into analog digitals and the converting unit 109 also includes an analog to digital converter (ADC) 108 for converting analog signals into digital signals. The processing unit 100 is configured for processing digital signals from the converting unit 109 and controlling the mobile phone 1 according to operations on the keypad 102.
The mobile phone 1 has a plurality of operation modes. In each of the operation modes, the mobile phone 1 can perform a particular function. For simplicity, in this embodiment, the mobile phone 1 has two modes, e.g., a normal mode 21 and a microphone mode 22 (see
In the normal mode 21, the processing unit 100 disables the switch unit 111, thus the mobile phone disconnects with the multimedia system 2. The first RF module 104 sends/receives wireless signals to/from the wireless communication system 3. That is, the mobile phone 1 can perform a real-time communication function with another mobile communication terminal via the receiver 106 and the microphone 105.
In the microphone mode 22, the processing unit 100 enables the switch unit 111, thus the second RF module 110 connects with the multimedia system 2. When the microphone 105 receives analog signals from a user, the ADC 108 converts the analog signals into digital signals, and the processing unit 100 processes and sends the digital signals to the converting unit 109. The DAC 107 converts the processed digital signals into analog signals, and the second RF module 110 transmits the wireless signals to the multimedia system 2. After receiving the wireless signals from the second RF module 110, the multimedia system 2 processes the signals and outputs audio signals. In another preferred embodiment, the switch unit 111 may be a toggle switch. When the switch unit 111 is actuated to control the mobile phone 1 to be in the normal mode 21, the second RF module 110 with the multimedia system 2 is disconnected. When the switch unit 111 is actuated to enable the microphone mode 22, the processing unit 100 turns on the switch unit 111, the second RF module 110 connects with the multimedia system 2 and the mobile phone 1 enters the microphone mode 22.
When the mobile phone 1 is in the microphone mode 22, the switch unit 111 is on, and the first RF module 104 still connects with the wireless communication system 3. Moreover, when the mobile phone 1 receives an incoming call signal from another mobile communication terminal, and if the incoming call is answered, the processing unit 100 immediately turns off the switch unit 111 and enters the normal mode 21, that is, the microphone mode 22 is disabled. The first RF module 104 receives wireless signals from the wireless communication system 3. The mobile phone 1 is configured for communicating with another mobile communication terminal via the wireless communication system 3. If the incoming call is not answered, the mobile phone 1 remains in the microphone mode, and the second RF module 110 continues to transmit wireless signals to the multimedia system 2.
In other embodiments, the mobile phone system does not include the switch unit 111, thus the processing unit 100 directly connects with the second RF module 110. Therefore, the processing unit 100 controls the second RF module 110 to transmit wireless signals to the multimedia system 2 or controls the first RF module 104 to transmit wireless signals to the wireless communication system 3 according to the operation modes. When entering the microphone mode operation on the keypad 102, the processing unit 100 controls and enables the second RF module 110 to transmit wireless signals to the multimedia system 2. When exiting the microphone mode operation on the keypad 102, the processing unit 100 controls and disabled the second RF module 110 to connect with the multimedia system 2.
Although the present invention has been explained in relation to its preferred embodiment and preferred methods, it is to be understood that many other possible modifications and variations can be made without departing from the spirit and scope of the invention as hereinafter claimed.
Number | Date | Country | Kind |
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200610061566.0 | Jul 2006 | CN | national |