Abstract:
A method and an electronic device for displaying an image photographed by a photographing device are provided. The electronic device may select a first photographing device from a plurality of omnidirectional photographing devices arranged in different locations within a specified area and display an image photographed by the first photographing device on a display. When a second photographing device is selected while an image photographed by the first photographing device is displayed, the electronic device may determine a user's viewpoint viewing the displayed image and display an image of an object view in which an object corresponding to the user's viewpoint is photographed among images photographed by the second photographing device on the display.
Abstract:
A method of controlling vibration is provided. The method includes determining whether the electronic device is located on a flat surface if a vibration event of an electronic device occurs, measuring a first noise signal level before driving a vibration motor by using a microphone of the electronic device if the electronic device is located on the flat surface, measuring a second noise signal level after driving the vibration motor at a minimum vibration intensity, and controlling a driving intensity of the vibration motor by comparing the first noise signal level and the second noise signal level. Accordingly, an excessive noise may be avoided if a portable terminal vibrates on a hard surface such as a desk.
Abstract:
An electronic device comprising: a memory; a display unit; a communication unit; and at least one processor operatively coupled to the memory, the display unit, and the communication unit, configured to: output a light pattern by using one or more pixels that are part of the display unit; receive, via the communication unit, one or more signals that are transmitted by a wearable device in response to the light pattern; identify a screen display area corresponding to the wearable device based on respective positions of the one or more pixels and the one or more signals.