Abstract:
Systems and methods for automatically switching scene modes of a monitor may comprise processes and corresponding modules for sending a request to a driver to activate hardware modules of a graphics processing unit (GPU) based on a requirement of a launched application program and then recording identifiers of the activated hardware modules on a list. A record of a scene mode associated with one or more activated hardware modules on the list is located within a scene mode profile table and then the corresponding monitor parameters previously associated with the scene mode are read. The monitor is then automatically adjusted according to the monitor parameters read.
Abstract:
A wireless communication system includes: a first wireless communication terminal to register an external device, wherein a subscriber information management device transmits a location of the external device to the first wireless communication terminal based on a search result of the external device based on a search request for the external device, the search request being transmitted from the subscriber information management device to a second wireless communication terminal within a search target area, the second wireless communication terminal being identified by the subscriber information management device based on registration information including certain information and location information of the external device.
Abstract:
A portable computer system is disclosed according to the invention. The portable computer system comprises: a multi-functional processing unit with power consumption of no more than approximately 10 watts consisting of a single chip having a plurality of processors thereon, wherein each processor is operable for at least one task selected from a group consisting of computing, graphic processing and audio processing; a mother board to which the multi-functional processing unit is connected; a memory unit connected to the motherboard and in communication with the multi-functional processing unit; and an I/O interface connected to the motherboard and in communication with the multi-functional processing unit, the portable computer system is configured to insert into a interface of a peripheral device to communicate between the portable computer system and the peripheral device.
Abstract:
The present invention provides a semiconductor chip with voltage adjustable function, said semiconductor chip is supplied with a power supply device and comprises a voltage regulating module for adjusting the voltage supplied to said semiconductor chip from said power supply device, based on the best operating voltage at which said semiconductor chip operates.
Abstract:
An Optimized Personal Computer (OPC) system may be a multi-functional processing unit with ultra-low power consumption and may consist of a single chip having a plurality of processors thereon. Each processor may be specialized for tasks including computing, graphic processing and audio processing. The OPC may be connected to a mother board, a memory unit and an I/O interface. The OPC may be connected to a primary PC (either in an expansion slot or in a drive bay) via a USB connection, for example, and be configured to run continuously and take over certain tasks from the primary PC as needed while the primary PC hibernates. The OPC may also be embedded in a monitor or other peripheral devices.
Abstract:
Systems and methods for automatically switching scene modes of a monitor may comprise processes and corresponding modules for sending a request to a driver to activate hardware modules of a graphics processing unit (GPU) based on a requirement of a launched application program and then recording identifiers of the activated hardware modules on a list. A record of a scene mode associated with one or more activated hardware modules on the list is located within a scene mode profile table and then the corresponding monitor parameters previously associated with the scene mode are read. The monitor is then automatically adjusted according to the monitor parameters read.
Abstract:
A DC-DC converter adopted in a mobile device, for converting a DC input voltage to a DC output voltage is provided. The converter comprises an input circuit, a control circuit, and a switch. The input circuit is connected in series with a line for supplying the DC input voltage and includes a parallel connection of a first capacitor and a snubber circuit. The control circuit is provided for producing a control signal. The switch, connected with the input circuit, is adapted to turn ON or OFF in accordance with the control signal, so as to produce the DC output voltage.
Abstract:
An electronic device including a processor communicably coupled to a display component wherein the processor is configured to generate and display an interactive icon on the display component. The interactive icon includes a primary item and at least one alternative item, and the processor is configured to visually prioritize the presentation of the primary item on the display component relative to the presentation of the alternative item.