Abstract:
A computer input system and an input method thereof are disclosed. The computer input system includes a storage unit, a representative number obtaining module and a coding module. The storage unit stores four carry radices, and the four carry radix have one-to-one correspondences to an amount of initial consonants, an amount of head vowels, an amount of vowels and an amount of tones of a phonetic notation symbol, respectively. After the representative number obtaining module obtains four symbol representative numbers according to a Chinese character phonetic notation, the coding module generates a coding number of the Chinese character according to the symbol permutation order, the four carry radices and the four symbol representative numbers.
Abstract:
A computer input system and an input method thereof are disclosed. The computer input system includes a storage unit, a representative number obtaining module and a coding module. The storage unit stores four carry radices, and the four carry radix have one-to-one correspondences to an amount of initial consonants, an amount of head vowels, an amount of vowels and an amount of tones of a phonetic notation symbol, respectively. After the representative number obtaining module obtains four symbol representative numbers according to a Chinese character phonetic notation, the coding module generates a coding number of the Chinese character according to the symbol permutation order, the four carry radices and the four symbol representative numbers.
Abstract:
A mobile communication device includes a control circuit unit, a first interface, a status change detecting circuit, and an embedded controller. The control circuit unit is operated in either a normal working mode or a power-saving mode. The first interface is connected with the data card and the control circuit unit. The status change detecting circuit is connected with the first interface. The embedded controller is connected with the status change detecting circuit and the control circuit unit. If the control circuit unit is operated in the power-saving mode and the data card is switched from a standby status to a working status, the data card generates a status-changing signal to the status change detecting circuit. In response to the status-changing signal, the control circuit unit is controlled to be switched from the power-saving mode to the normal working mode by the embedded controller.
Abstract:
An electronic apparatus includes a host controller, a device receptacle, a multiplexer, an outside voltage detecting and controlling circuit, an interface converting unit, and a storage unit. The host controller includes a first data terminal and a first power voltage output terminal for outputting a first power voltage. The device receptacle includes a second data terminal and a second power voltage output terminal. The multiplexer has two input terminals respectively connected with the first data terminal and the second data terminal. If a second power voltage is issued from the second power voltage output terminal of the device receptacle to the outside voltage detecting and controlling circuit, the third power voltage output terminal of the outside voltage detecting and controlling circuit issues the second power voltage, and the output terminal of the multiplexer is connected with the second data terminal.
Abstract:
A notebook computer having a display port capable of outputting a vertical synchronous signal, a horizontal synchronous signal, a red signal, a green signal, and a blue signal to an external display device to display an image is disclosed. The notebook computer includes a monitor device built in the notebook computer, an embedded controller capable of outputting an enable signal and a detecting circuit receiving a first signal, a second signal and the enable signal. The first signal is the vertical synchronous signal or the horizontal synchronous signal. The second signal is the red signal, the green signal or the blue signal. When the external display device is disconnected with the display port, the detecting circuit may determine the second signal according to the actuation of the enable signal at a blanking interval of the first signal and switch the image to the monitor device automatically.
Abstract:
A mobile communication device includes a control circuit unit, a first interface, a status change detecting circuit, and an embedded controller. The control circuit unit is operated in either a normal working mode or a power-saving mode. The first interface is connected with the data card and the control circuit unit. The status change detecting circuit is connected with the first interface. The embedded controller is connected with the status change detecting circuit and the control circuit unit. If the control circuit unit is operated in the power-saving mode and the data card is switched from a standby status to a working status, the data card generates a status-changing signal to the status change detecting circuit. In response to the status-changing signal, the control circuit unit is controlled to be switched from the power-saving mode to the normal working mode by the embedded controller.
Abstract:
A booting access method and a storage device of an embedded system are provided. The booting access method of the embedded system is applied to the storage device which includes a master boot record (MBR) section, a hidden section and a public section to improve access precision of embedded memory data. The access method includes: using the MBR section to access data of the public section when a normal booting signal is received; using a boot loader in the hidden section to update the MBR section and then accessing data of the public section when a trigger update signal is received.
Abstract:
A notebook computer having a display port capable of outputting a vertical synchronous signal, a horizontal synchronous signal, a red signal, a green signal, and a blue signal to an external display device to display an image is disclosed. The notebook computer includes a monitor device built in the notebook computer, an embedded controller capable of outputting an enable signal and a detecting circuit receiving a first signal, a second signal and the enable signal. The first signal is the vertical synchronous signal or the horizontal synchronous signal. The second signal is the red signal, the green signal or the blue signal. When the external display device is disconnected with the display port, the detecting circuit may determine the second signal according to the actuation of the enable signal at a blanking interval of the first signal and switch the image to the monitor device automatically.
Abstract:
A universal serial bus (USB) port module for connecting an electronic apparatus with a USB is provided. The USB port module includes a USB controller and a detection circuit. The USB controller is coupled to the USB. The detection circuit is coupled to at least one of a first data line and a second data line in the USB and outputs a voltage thereon. The USB controller is disabled when the first data line and the second data line are both at a low voltage level. The USB controller is enabled when at least one of the first data line and the second data line is at a high voltage level.