Abstract:
A method and electronic device for executing secure download and security function is provided. The method includes storing a unique identifier (ID) of the electronic device, receiving a binary update request, determining whether the stored unique ID matches a unique ID signed to the binary, and downloading the binary depending on whether the unique IDs match.
Abstract:
One or more embodiments provide a mobile terminal and a control method for setting a touch ignoring region on a touch screen of the mobile terminal. In the method, the mobile terminal detects a user's grip signal from at least one lateral side thereof. Then, based on the grip signal, the mobile terminal sets a touch ignoring region on the touch screen. In embodiments, the mobile terminal checks a gripped state thereof through a sensor and then sets the touch ignoring region. This not only prevents a wrong operation caused by an unintended touch due to a thin bezel of the mobile terminal, but also obviates any inconvenience.
Abstract:
An example electronic device may include a display including a main display area and at least one expansion display area expandable from the main display area; and a processor operatively coupled to the display. The processor is configured to, while the electronic device is in a slide-in state, display, on the main display area, a first screen corresponding to an application executed in the slide-in state; based on a portion of the expansion display area being slid out, generate a second screen to be displayed on the main display area and a portion of the slid-out expansion display area; generate a slide effect screen and display the same on at least a portion of the slid-out expansion display area, at least at the same time as the generation of the second screen; and based on the generation of the second screen being completed, remove the display of the slide effect screen and display the second screen on the main display area and the slid-out expansion display area.
Abstract:
An image sensor may include a pixel array a pixel array including an active pixel and an optical black pixel, the active pixel configured to generate a first pixel signal, and the optical black pixel configured to generate a second pixel signal, a first biasing circuit configured to bias the first pixel signal based on a first bias voltage, a first analog-to-digital converter configured to convert the biased first pixel signal into a first digital signal, a second biasing circuit configured to bias the second pixel signal based on a second bias voltage, and a second analog-to-digital converter configured to convert the biased second pixel signal into a second digital signal, the second digital signal configured to generate smaller random noise than the first analog-to-digital converter.
Abstract:
An electronic device is provided. An electronic device includes at least one antenna module, a first communication circuit configured to provide first communication via the at least one antenna module, a plurality of temperature sensor, at least one processor operationally connected to the first communication circuit and the plurality of temperature sensors, and a memory. The memory may store instructions which, when executed, cause the at least one processor to obtain a first temperature associated with the electronic device via the plurality of temperature sensors, identify a second temperature associated with the first communication based on the first temperature being equal to or higher than a first threshold value, identify an operation state of at least one application, in which data throughput associated with the first communication is equal to or more than designated throughput, based on the second temperature being equal to or higher than a second threshold value, and adjust first data throughput of a first application, which is operating in a background state, among the at least one application.
Abstract:
An electronic device includes a display including a plurality of regions, a display driver integrated circuit configured to drive a first region of the display at a first driving frequency and drive a second region of the display at a second driving frequency according to a configuration of the display, and a processor configured to provide display data to the display driver integrated circuit. The processor identifies a driving frequency of a first screen to be output on the display in response to reception of a first input; and controls the display to output at least a portion of the first screen on a region, of the plurality of regions, driven at a driving frequency corresponding to the driving frequency of the first screen. The display optimizes driving frequency, thus reducing heating problems and resource waste in the electronic device.
Abstract:
An electronic device and a method of an electronic device are provided. The electronic device includes a memory, a communication module, and a processor configured to identify application information stored in the memory, monitor network status using the communication module, and control a packet data unit (PDU) session based on the application information or the network status. The method includes identifying application information stored in a memory of the electronic device; monitoring network status using a communication module of the electronic device; and controlling a PDU session based on the application information or the network status.
Abstract:
An image sensor includes a pixel array including a plurality of shared pixels including a plurality of photoelectric conversion elements arranged in a first direction and a second direction and connected to a same floating diffusion node, and a plurality of column lines connected to the plurality of shared pixels, extending in the second direction, and arranged in parallel. The image sensor further includes an analog-to-digital conversion circuit including a plurality of analog-to-digital converters (ADCs) connected to the plurality of column lines. At least two first shared pixels consecutively arranged in parallel in at least one of the first and second directions and configured to sense an optical signal of a first color among the plurality of shared pixels are connected to different column lines among the plurality of column lines.
Abstract:
A method and a device are provided. The device includes an antenna module, an interface for delivery to a protocol for transmission, a memory, and a processor, wherein the processor is set to determine antenna information for each beam index based on a transmission beam that can be generated in the antenna module, generate beam book information based on the determined antenna information, and transmit the beam book information and device connection information, related to an electronic device present inside the coverage of a base station, to an external server through the interface.
Abstract:
An image sensor including: a pixel array disposed under a display panel, the pixel array including a plurality of pixels configured to perform a sensing operation by collecting a photo-charge generated by a light that penetrates the display panel; a row driver configured to drive the plurality of pixels row by row; and a controller configured to control the pixel array and the row driver such that a sensing sensitivity of blue pixels among the plurality of pixels is higher than a sensing sensitivity of red pixels and a sensing sensitivity of green pixels among the plurality of pixels.