Abstract:
The present disclosure relates to the technical field of mobile terminals, and discloses a mobile terminal and a volume adjusting method and device thereof. The volume adjusting method comprises the following steps of: acquiring a noise pressure signal from surroundings of the mobile terminal; comparing a volume value corresponding to the acquired noise pressure signal with a volume control value currently set in the mobile terminal; adjusting the volume control value of the mobile terminal according to the comparison result; and controlling a volume level of the mobile terminal according to the volume control value that has been adjusted.
Abstract:
The present invention provides a method and an apparatus for controlling terminal power. The method includes the following steps of: determining whether a power control level set in the terminal is reached or not when controlling the terminal power; if yes, then adjusting a power of the power control level based on a calibration parameter configured in the terminal within a rated output power range corresponding to the power control level; wherein the calibration parameter is 1 dBm; controlling an output power of the terminal according to the adjusted power. The present invention can further perform an accurate terminal power control for reducing power consumption, conserving resources, and increasing system capacity based on a compatibility with conventional power control.
Abstract:
A portable terminal and a wireless module are disclosed. The portable terminal comprises a terminal body and a wireless module. The terminal body comprises a front surface and a back surface opposite to each other, side surfaces connected to the front surface and the back surface, and a terminal circuit board disposed in a space defined by the front surface, the back surface and the side surfaces together; and a display region is disposed on the front surface. The terminal body is provided on one of the side surfaces thereof with a slot for the wireless module to be inserted therein. Disposed on a module circuit board of the wireless module is an SIM card that is electrically connected to the module circuit board. In this way, the present disclosure can selectively reduce the cost of the portable terminal and substantially not increase the size of the portable terminal.
Abstract:
A penta-band internal antenna and a mobile communication terminal may include: a first high-frequency branch, a second high-frequency branch, and a low-frequency branch of an antenna radiating element, and a first slotted hole and a second slotted hole arranged on a printed circuit board. The first slotted hole may be arranged along a direction substantially perpendicular to the current flow direction of the printed circuit board. The open-circuit end of the low-frequency branch may be fitted into the first slotted hole and the open-circuit end of the second high-frequency branch may be fitted into the second slotted hole.
Abstract:
A quad-band internal antenna may include an antenna radiating element, a first slotted hole and a second slotted hole arranged on a printed circuit board. The first slotted hole may be arranged along a direction perpendicular to the current flow direction of the printed circuit board, and the second slotted hole may be arranged between a ground pin and a feed pin of the antenna radiating element, such that the first slotted hole and the second slotted hole are both open slotted holes.
Abstract:
The present disclosure generally relates to the technical field of communications, and discloses a method of using a base station signal to quickly set call forwarding and a mobile communication terminal. The method comprises the following steps of: A. carrying out setting of call forwarding, and saving a base station information of a wireless network where the call forwarding is set; and B. reading a call forwarding target phone number that is set, sending a call forwarding request to the wireless network, and after a confirmation is obtained from the wireless network, activating a check timer to complete the setting of call forwarding.
Abstract:
A grounded antenna may include cross-shaped high-impedance surface metal strips and a wireless communication device having said antenna. The antenna may include an antenna radiation unit and a ground plate and may be set inside of a housing. Multiple high-impedance surface units may be arranged on the ground plate in intervals.
Abstract:
The invention relates to the technical field of mobile terminals and discloses a mobile terminal and a method and device for updating the setup information thereof. The method comprises: obtaining a National Marine Electronics Association (NMEA) position message through the Global Positioning System (GPS); interpreting the NMEA message to obtain the current time and the current position information of the mobile terminal; obtaining a nation to which the current position belongs according to the position information, recognizing the language of the nation; and updating the setup information of the mobile terminal according to the recognized language and the current time. Through the invention, the setup information of the mobile terminal can be updated according to the location of the mobile terminal.
Abstract:
The present disclosure is suitable for use in a mobile communication terminal, and provides a data account management method for a mobile communication terminal. The method comprises the following steps of: a. choosing one of SIM (subscriber identity module) cards of the mobile communication terminal when an application of the mobile communication terminal needs to use a data account; b. searching for a corresponding data account group of the SIM card, and choosing data accounts, which are stored in the data account group, in sequence according to priority orders of the data accounts; and c. activating the data accounts that are chosen.
Abstract:
Disclosed in the present application are a task scheduling method and apparatus, and a terminal device and a storage medium. When tasks to be executed are generated, said tasks are firstly stored in task scheduling queues; a terminal determines a queue scheduling sequence for the task scheduling queues according to the execution priority levels of the task types of said tasks; and an arrangement sequence of said tasks is determined according to the queue scheduling sequence. In this way, the terminal can preferentially process a task to be executed in the foreground, thereby effectively controlling a processing time delay of the task to be executed in the foreground.