Abstract:
The present disclosure relates to a screen capable of varying a display area, a mobile terminal that incorporates an associated screen and a method of varying a display area of a screen display thereof. A screen capable of varying a display area, that is arranged on a mobile terminal, includes a main screen, a rolling screen capable of being rolled into a cylinder, a rolling screen rotating shaft for controlling rolling and/or unrolling of the rolling screen, and a rolling screen sensor for detecting a size of an unrolled area of the screen. The main screen may be arranged on a front of the mobile terminal. Two rolling screens may be included, which may be arranged at a respective side of the main screen, and one side edge of each rolling screen may be connected with the main screen.
Abstract:
A method and apparatus for high current charging of a smart terminal includes, when signal wires at positive and negative data cable terminals are in a short circuit status, switching a power supply to a high-current power supply, gradually incrementally increasing a charging current, and synchronously detecting a corresponding charging voltage. The method and apparatus for high current charging also includes determining if the charging current is over-current according to the charging voltage and decreasing the charging current when the charging current is over-current. Thereby, charging of a smart terminal at high current is realized, which shortens the charging time.
Abstract:
A method of adding a widget in a wireless communication apparatus is provided. The method comprises: listing an application icon comprising the widget to be an editable mode according to a preset operation of a user; zooming in or out the application icon according to an editing operation of the user on the application icon; adding a corresponding widget type to a desktop when monitoring that the application icon comprising the widget is zoomed in or out to the corresponding widget type. A wireless communication apparatus is further provided. In this way, the present disclosure can improve the efficiency of adding the widget and the user's experiences.
Abstract:
A mobile terminal using a common antenna to perform an NFC function and an FM-TX function is provided. The mobile terminal includes a baseband chip, an NFC chip, an FM chip, and an antenna. The NFC chip and the FM chip are connected to the baseband chip. The mobile terminal also comprises a selecting unit connected to the baseband chip, the NFC chip, the FM chip, and the antenna, for conducting the NFC chip and the antenna or conducting the FM chip and the antenna based on a control of the baseband chip. The mobile terminal proposes a single antenna for performing the NFC function and the FM-TX function. A passage between corresponding functions is conducted through the selecting unit. It is unnecessary to use an additional antenna inside the mobile terminal. Thus, the mobile terminal has more spacious capacity, and the cost of the mobile terminal is reduced.
Abstract:
An information cross-reference inputting method based on a mobile terminal and the mobile terminal are disclosed. The method comprises the following steps of defining an information region for cross-reference input as a region to be topped, receiving an operation instruction from a user by the mobile terminal to select the region to be topped, and saving the selected region to be topped; topping the region to be topped in a current display interface, and saving data of a region overlaid by the topped region; and receiving an operation instruction from the user by the mobile terminal to drag the topped region so that displaying of the data of the originally overlaid region is recovered. Therefore, the method is very convenient for the user to achieve the information cross-reference inputting without having to remember the related content or frequently switch between two windows.
Abstract:
A wireless communication transmitting and receiving system may comprise a wireless transmitting and receiving unit, a receiving processing circuit, a transmitting processing circuit, and a receiving aerial and a transmitting aerial. Both the receiving processing circuit and the transmitting processing circuit may be connected to the wireless transmitting and receiving unit, and the receiving aerial and the transmitting aerial may be connected to the receiving processing circuit and the transmitting processing circuit. The present invention also may use a dual-aerial structure in which a transmitting channel is separated from a receiving channel and the two channels use respective aerials for communication; the separate aerials may provide an isolation of approximately 10 dB, thus lowering the in-band noise receiving requirement for the transmitting channel.
Abstract:
The present disclosure discloses a mobile communication terminal comprising: a first antenna, being configured to receive a radio frequency (RF) signal from the outside; a wireless transceiver, being configured to obtain the RF signal and amplifies a down-converted signal in the RF signal into a baseband signal; a baseband processor, being configured to obtain the baseband signal from the wireless transceiver and demodulate the baseband signal to generate a to-be-transmitted signal; the wireless transceiver is further configured to convert the to-be-transmitted signal into an RF signal and output the RF signal from the signal transmitting port; and a second antenna, being configured to obtain the to-be-transmitted RF signal and transmit the to-be-transmitted RF signal. With the above technical solution, the present disclosure solves the problem of insertion loss caused by using a duplexer, thereby lowering the noise level in the transmitting path within the receiving frequency band.