Abstract:
An apparatus and method for sharing data between a cloud server and at last one terminal are provided. The method includes displaying, when a data type is selected on a setting menu screen of a cloud service, meta information of real data corresponding to the selected data type, the meta information being downloaded from a server, downloading, when a piece of meta information is selected, the real data corresponding to the selected piece of meta information from the server, and deleting, when the downloaded real data is consumed completely, the consumed real data.
Abstract:
An apparatus and method for sharing data between a cloud server and at last one terminal are provided. The method includes displaying, when a data type is selected on a setting menu screen of a cloud service, meta information of real data corresponding to the selected data type, the meta information being downloaded from a server, downloading, when a piece of meta information is selected, the real data corresponding to the selected piece of meta information from the server, and deleting, when the downloaded real data is consumed completely, the consumed real data.
Abstract:
A semiconductor device includes an active pattern, a gate electrode, a gate capping pattern, and a gate spacer. The active pattern extends in a first direction parallel to a top surface of the substrate. The gate electrode extends in a second direction parallel to the top surface of the substrate and intersects the active pattern. The gate capping pattern covers a top surface of the gate electrode and extends in a direction crossing the top surface of the substrate to cover a first sidewall of the gate electrode. The gate spacer covers a second sidewall of the gate electrode. The first sidewall and the second sidewall are opposite to each other in the second direction.
Abstract:
An electronic device capable of placing restrictions on processor usage is disclosed. The electronic device may include: a memory; and a processor including a first core and a second core. The memory may store instructions that, when executed by the processor, cause the first core to transition from an active state to an idle state in response to a restriction signal for the first core, and cause the first core to transition to a power save state when the first core remains in the idle state for at least a preset time. For hot-unplugging, as the electronic device does not transition a core to an offline state, it does not have to perform cleanup operation on the memory and variables. Hence, it is possible to reduce the latency time due to hot-unplugging.
Abstract:
A method for task scheduling and an electronic device using the same are provided. The method for scheduling tasks in an electronic device includes assigning a task to one of first processing units functionally connected to the electronic device, measuring a task load of the task, and controlling migration of the task to one of second processing units functionally connected to the electronic device based on the task load.
Abstract:
An autonomous driving control device according to various embodiments includes a sensor device including a biosensor, and a processor, wherein the processor is configured to control, as a first parameter value, a parameter related to a driving device for controlling a movement of an autonomous vehicle when the autonomous vehicle is driving with at least one autonomous driving function. The processor is also configured to monitor, via the biometric sensor, mental and physical states of an occupant on the basis of biometric information of the occupant located in the autonomous vehicle while the autonomous vehicle is driving with the autonomous driving function and adjust the first parameter value to a second parameter value in response to a change in the mental and physical states of the occupant from a stable state to an unstable state as a result of monitoring the mental and physical states of the occupant.
Abstract:
An electronic device may include: a communication module comprising communication circuitry, a processor operatively coupled to the communication module, and a memory storing instructions operatively coupled to the processor. The instructions, when executed, may cause the processor to: obtain driving route traffic information of a first driving route of a vehicle connected to the electronic device, analyze the first driving route traffic information and determine a traffic event occurrence requiring a change in a driving route or a driving lane of the vehicle connected to the electronic device, based on the traffic event occurring, determine a severity level of the traffic event based on a driving time increase and an accident risk, and control a display device to display at least one of line change information, lane change information and a traffic sign corresponding to the severity level on a display device.
Abstract:
An electronic device is provided. The electronic device includes a first device including a first housing having a first surface and a second surface facing opposite to the first surface, and a first display disposed in the first housing and visually exposed through the first surface, a second device including a second housing having a third surface, and a second display disposed in the second housing and visually exposed through the third surface, an assembly connecting the first device and the second device, a processor and a memory that stores instructions that, when executed, cause the processor to control the assembly so that the second surface faces the third surface and covers the second display in a first state, and control the assembly so that the second surface does not cover the second display in a second state.
Abstract:
Semiconductor devices are providing including a first isolation region configured to define a first fin active region protruding from a substrate, first gate patterns on the first fin active region, and a first epitaxial region in the first fin active region between the first gate patterns. Sidewalls of the first epitaxial region have first inflection points so that an upper width of the first epitaxial region is greater than a lower width of the first epitaxial region.
Abstract:
A semiconductor device includes an active pattern, a gate electrode, a gate capping pattern, and a gate spacer. The active pattern extends in a first direction parallel to a top surface of the substrate. The gate electrode extends in a second direction parallel to the top surface of the substrate and intersects the active pattern. The gate capping pattern covers a top surface of the gate electrode and extends in a direction crossing the top surface of the substrate to cover a first sidewall of the gate electrode. The gate spacer covers a second sidewall of the gate electrode. The first sidewall and the second sidewall are opposite to each other in the second direction.