Abstract:
A terminal having plural audio signal output ports and an audio signal output method thereof are provided. The audio signal output method of a terminal having at least two audio signal output ports includes setting allocation information on which audio signal source is allocated to each of the audio signal output ports according to a user input, extracting the set allocation information, and outputting an audio signal of an audio signal source through a corresponding audio signal output port according to the extracted allocation information. An audio signal output apparatus capable of variously using an audio signal output port according to the need of a user, and a method thereof may be provided.
Abstract:
Provided are an electronic device for supporting vehicle-to-everything (V2X) communication on which an autonomous driving vehicle technology, a cooperative-intelligent transport systems (C-ITS) technology, etc. are based and an operation method of the electric device. The electronic device mounted to a vehicle to support wireless mobile communication for the vehicle includes: a dedicated short range communication (DSRC) module configured to perform wireless communication by using DSRC technology; a cellular V2X (C-V2X) module configured to perform wireless communication by using C-V2X technology; an antenna; and a processor configured to control a switch to connect one of the DSRC module and the C-V2X module to the antenna.
Abstract:
Provided is a high frequency communication apparatus for vehicle. The high frequency communication apparatus includes a single cable; a communication module connected to an end of the single cable and configured to transmit a radio frequency (RF) signal and a transmit (TX) serial communication signal, the communication module including a TX serial communication modulation circuit and a receive (RX) serial communication demodulation circuit; and an antenna module connected to the other end of the single cable and configured to receive and branch the RF signal and the TX serial communication signal, the antenna module including a front end module, a TX serial communication demodulation circuit, a controller configured to receive a demodulated TX serial communication signal to control the front end module and output an RX serial communication signal, and an RX serial communication modulation circuit.
Abstract:
A method for detecting a memory safety bug and an electronic device supporting the same are provided. The electronic device supporting multiple domains includes memory storing one or more computer programs, and one or more processors communicatively coupled to the memory and operable in a first domain and a second domain, wherein The one or more computer programs include computer-executable instructions that, when executed by the one or more processors individually or collectively, cause the electronic device to detect a shared memory use request by the first domain or the second domain, allocate shared memory for communication between multiple domains including the first domain and the second domain based on a memory area designated in the memory, based on the shared memory use request, register a tag for the shared memory in a first memory area of the first domain and a second memory area of the second domain, and detect a memory safety bug for the shared memory shared between the first domain and the second domain, based on the tag.
Abstract:
Provided is a high frequency communication apparatus and method for vehicle. The high frequency communication apparatus for vehicle includes a communication module configured to process a radio frequency (RF) signal; a cable having one end connected to the communication module; and an antenna module connected to the other end of the cable and configured to transmit through an antenna the RF signal delivered from the communication module, the antenna module including a compensator configured to compensate for a loss of the RF signal in the cable and a controller configured to determine an amount of compensation for the loss in the cable based on power of the RF signal transmitted from the compensator.
Abstract:
A wearable device includes at least one lens, an output device, at least one sensor, and at least one processor. The at least one processor is configured to identify a level of light sensed through the at least one sensor. The at least one processor is also configured to provide a notification related to the level of the light by using the output device when the level of the light satisfies a preset condition.