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 sacrificial layer is formed to cover the gate structures. The sacrificial layer is patterned to form a first opening in the sacrificial layer. A preliminary contact is formed in the first opening and the sacrificial layer is selectively removed. An insulating layer is formed to cover the gate structures and to expose the preliminary contact. The preliminary contact is removed to form a second opening in the insulating layer, and then a contact is formed in the second opening.
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:
An apparatus is provided comprising a memory and a processor configured to: execute a device driver for operating a device; detect a data throughput associated with the device driver; identify a configuration setting based on the data throughput; and re-configure the apparatus based on the configuration setting.
Abstract:
A method for determining task priorities in an electronic device is provided. The method includes receiving, at the electronic device, a request to perform a task, identifying a threshold parameter and a weighted value in accordance with a type of the requested task, measuring the threshold parameter of the task based on the identified weighted value, and assigning the requested task to one of a first operational unit and a second operational unit based on the measured threshold parameter and weighted value.
Abstract:
In various embodiments, devices and methods for controlling the operation of at least one arithmetic and logic unit are disclosed. In various embodiments, methods and devices for controlling an arithmetic logic unit are disclosed. More particularly, devices may comprise at least one arithmetic and logic unit for processing a task, and a processor for controlling the arithmetic and logic unit according to an electric current consumed by the arithmetic and logic unit at an operating frequency of the arithmetic and logic unit.
Abstract:
A method of providing an augmented reality (AR) content in a vehicle, and/or a wearable AR device and an electronic device for performing a method. The wearable AR device may include a processor and a memory storing instructions. The processor, when executing the instructions, causes the wearable AR device to: set reference points corresponding to positions of anchor devices on first spatial map data corresponding to a space of a vehicle, determine a position and a direction of the wearable AR device on the first spatial map data based on the reference points and a positional relationship between the wearable AR device and anchor devices, and control output AR content based on the determined position and the determined direction of the wearable AR device.
Abstract:
The present disclosure relates to a vehicle-mounted electronic device sharing content in a vehicle, a method of operating the electronic device, and a user terminal. According to an embodiment, the vehicle-mounted electronic device may include a communication module configured to communicate with two or more user terminals inside the vehicle. The vehicle-mounted electronic device may include a display module configured to display a shared user interface (UI) in response to a connection to the two or more user terminals. The vehicle-mounted electronic device may include a processor configured to receive content information to be shared from each of the two or more user terminals via the communication module. The vehicle-mounted electronic device may include the processor configured to synchronize the two or more user terminals such that they display the shared UI for displaying the content information and vehicle-related information at once.
Abstract:
A wearable device comprises a display, a sensor, a communication circuit, memory comprising instructions, and at least one processor. The instructions, when executed by the at least one processor, cause the wearable device to identify a context representing a situation of a user and a position of an object associated with the context based on information obtained through the sensor and the communication circuit, display a first visual object superimposed on a periphery of the object based on verifying that the object is positioned within a first area in a field of view (FoV) area of the wearable device, display by blinking the first visual object based on verifying that the object is positioned within a second area in the FoV area, and display a second visual object representing the object in the FoV area based on verifying that the object is positioned outside of the FoV area.