Abstract:
An electronic device, according to various embodiments of the present invention, comprises: a display comprising a first region exposed on the front surface of the electronic device and a second region accommodated within the electronic device or exposed to the exterior of the electronic device; at least one sensor for detecting a change in the display structure of the display; at least one display processor for controlling the driving of the display; and a main processor, wherein the main processor identifies a display area in which image data is to be displayed on the display, according to the change in the display structure of the display on the basis of sensing information transmitted from the at least one sensor, determines a frame rate of the at least one display processor on the basis of the change in the display area, and drives the display at the determined frame rate.
Abstract:
A video encoding method and an electronic device adapted to the method are provided. The electronic device includes: a wireless communication circuit configured to communicate with a first electronic device, a touchscreen configured to display a user interface for performing a video call, a speaker, a microphone, one or more processors electrically connected to the communication circuit, the touchscreen, the speaker, and the microphone, and a memory electrically connected to the one or more processors, wherein the memory stores instructions that, when executed, cause the one or more processors to: receive a signal related to an incoming video call from the first electronic device via the wireless communication circuit, receive a user input accepting the video call via the user interface, transmit a signal accepting the video call to the first electronic device via the wireless communication circuit in response to the user input, receive a video stream from the first electronic device via the wireless communication circuit, wherein the video stream has been adapted at the first electronic device, based at least partly on: status information on the electronic device and/or status information on wireless communication between the electronic device and the first electronic device, display the received video stream on the touchscreen while providing voice from the video call, using the speaker, receive voice, using the microphone, and transmit the received voice to the first electronic device, using the wireless communication circuit.
Abstract:
According to an embodiment, a method may include segmenting a first image into a first block and a second block, generating first compression loss data corresponding to the first block and second compression loss data corresponding to the second block, identifying a first compression property, segmenting a second image into a third block and a fourth block and compressing the second image, wherein the compressing includes compressing the third block according to the first compression property, generating third compression loss data corresponding to the third block, when a difference between the first compression loss data and the third compression loss data meets a first predetermined condition, compressing the fourth block according to the first compression property, and when the difference meets a second predetermined condition, compressing the fourth block according to a second compression property. Other various embodiments are possible as well.
Abstract:
An electronic device and sound output method thereof are provided. The electronic device may include: an input unit comprising input circuitry configured to sense an input from outside of the electronic device; a plurality of piezo drivers including a first piezo driver and a second piezo driver; and a processor functionally connected with the input unit. The processor may be configured to detect an input through the input unit, to use a first piezo driver set including the first piezo driver to output sounds when the detected input corresponds to a first input, and to use a second piezo driver set including the second piezo driver to output sounds when the detected input corresponds to a second input.
Abstract:
A method and an apparatus for acquiring and using biometric information of a user in an electronic device are provided. According to an example embodiment of the present disclosure, the method may include executing a call function using a communication module included in the electronic device, outputting a voice signal depending on the execution of the call function through a sound output device included in the electronic device, and acquiring, by a sensor included in the electronic device, biometric information of the user of the electronic device while the call function is executed.
Abstract:
A method for managing a playback of contents in an electronic device is provided. The method includes recognizing a major section of the contents, obtaining at least one of setup information related a network speed, data remaining amount and playback, and playback time of the contents, and deciding a playback policy of the contents based on at least one of the recognized major section and the obtained information.
Abstract:
An authentication method using a password of an electronic device is provided. The method includes receiving a password. The method also includes determining whether the received password coincides with a password stored in advance. The method further includes determining whether an input condition at the time of password input coincides with a password input condition stored in advance when the received password coincides with the password stored in advance. The method includes executing a function when the input condition at the time of password input coincides with the password input condition stored in advance.
Abstract:
A wearable electronic device includes a camera; a display; a sensor; memory; and a processor configured to cause the device to obtain an image via the camera; perform pre-processing that calibrates a distortion area, of the image, generated from the camera; input, into a deep learning model, a default matrix related to a distance of an object in an image, first information input by a user, second information, obtained via the sensor, related to the user, or third information, obtained via the sensor, related to a surrounding environment; obtain, from the model, a matrix for adjusting the distance of the object; adjust the distance of the object based on the matrix; and display the image, wherein the model is trained based on user information or surrounding environment information, and at least one matrix for adjusting a distance of an object based on the user information or the surrounding environment information.
Abstract:
An electronic device includes a first housing; a second housing configured to be sliding relative to the first housing; a flexible display, wherein at least part of the flexible display is supported by the second housing and a size of the flexible display viewable from a front surface of the electronic device changes in accordance with a sliding of the second housing; a guide member configured to operatively connect at least part of the first housing and at least part of the second housing for the sliding of the second housing; and a conductive layer disposed between a portion of the second housing and the flexible display, wherein the second housing includes a first support portion supporting a first portion of the flexible display; and a second support portion supporting a second portion of the flexible display and allowing the second portion of the flexible display to be bent, and wherein the conductive layer is configured to electrically connect at least a part of the flexible display and the second support portion.
Abstract:
Disclosed is an electronic device. An electronic device according to an embodiment may comprise: a display panel of which at least a portion is flexible; a window disposed above at least the portion of the display panel; an anti-reflection layer (AR/LR) disposed above at least a portion of the window; and an anti-glare layer (AG) disposed below at least the portion of the window. Various other embodiments are also possible.