Abstract:
An electronic device is provided. The electronic device includes a first housing, a second housing, a flexible display, a printed circuit board, an antenna radiator, and a flexible printed circuit board. The second housing slides in a first direction to be pulled out of the first housing and slides in a second direction opposite to the first direction to be pulled into the inside of the first housing. The flexible display is disposed in the first housing and the second housing. The printed circuit board is disposed in the second housing and may move according to sliding of the second housing. The antenna radiator is disposed on a side surface of the first housing. The flexible printed circuit board electrically connects the printed circuit board and the antenna radiator. The first housing includes a through hole formed in a side surface thereof, and at least a portion of the antenna radiator may be inserted via the through hole into the inside of the first housing. The antenna radiator may move on the side surface of the first housing according to sliding of the second housing.
Abstract:
An electronic device including an interposer is provided. The electronic device includes a first circuit board having a first connection terminal formed thereon, an application processor (AP) connected to the first connection terminal and deployed on the first circuit board, an interposer having a via formed therein and having a first surface attached to the first circuit board, the interposer at least partly surrounding at least a partial region of the first circuit board and a first end portion of the via being electrically connected to the first connection terminal, a second circuit board having a second connection terminal formed thereon and attached to a second surface of the interposer in an opposite direction to the first surface, the second connection terminal being electrically connected to a second end portion of the via and the second circuit board forming an inner space together with the first circuit board and the interposer, a communication processor (CP) connected to the second connection terminal and deployed on the second circuit board, and an antenna electrically connected to the CP.
Abstract:
An electronic device includes a camera, a sensor for detecting a distance value relative to an object, a memory for storing calibration data for correcting a lens location of the camera based on the distance value detected by the sensor, and a processor. The memory stores instructions that, when executed, cause the processor to determine the lens location of the camera based on the distance value when the camera is operated, obtain lens location data for the distance value and the determined lens location, update the calibration data based on the lens location data, and determine the lens location of the camera based on the updated calibration data.
Abstract:
An electronic device includes a housing including a recess; an internal structure disposed in the recess; and a display disposed in the recess and supported by the internal structure, where the display includes a display panel including a first region and a second region, where the second region forms at least part of an edge of the display panel; and a flexible polymer layer forming an outer surface of the display panel, where the flexible polymer layer includes a first portion covering the first region and the second region, and a second portion extending from the first portion, enclosing the at least part of the edge of the display panel, and extending inward. Thereby, foreign material can be prevented from entering into the display. Various other embodiments are possible.
Abstract:
An electronic device includes a housing, a display, a power management circuit, and a processor. The processor is configured to control the display to operate based on a first designated scheme during operation in a first designated state. The processor is also configured to control the display to operate based on a second designated scheme corresponding to a second designated state when a first event for switching a state of the electronic device is confirmed. The processor is further configured to control the power management circuit to receive a voltage lower than a voltage applied to the processor in the first state. The display is configured to display at least one object in the second designated state. The display also is configured to change and display a display state of the at least one object when information indicating confirmation of a second event with respect to the electronic device is acquired from the processor.
Abstract:
An electronic device including an interposer is provided. The electronic device includes a first circuit board having a first connection terminal formed thereon, an application processor (AP) connected to the first connection terminal and deployed on the first circuit board, an interposer having a via formed therein and having a first surface attached to the first circuit board, the interposer at least partly surrounding at least a partial region of the first circuit board and a first end portion of the via being electrically connected to the first connection terminal, a second circuit board having a second connection terminal formed thereon and attached to a second surface of the interposer in an opposite direction to the first surface, the second connection terminal being electrically connected to a second end portion of the via and the second circuit board forming an inner space together with the first circuit board and the interposer, a communication processor (CP) connected to the second connection terminal and deployed on the second circuit board, and an antenna electrically connected to the CP.
Abstract:
An electronic device is provided The electronic device includes a housing including a first surface facing a first direction, a second surface facing a second direction opposite to the first direction, and a side member configured to enclose at least some of a space between the first surface and the second surface, a first conductive coil positioned inside the housing and configured to form a first magnetic field in a direction substantially perpendicular to the first direction or the second direction, a second conductive coil spaced apart from the first conductive coil within the housing and configured to form a second magnetic field in a direction substantially parallel to the first direction or the second direction, a communication circuit positioned inside the housing and electrically connected to the first and second conductive coils, and a processor positioned inside the housing and electrically connected to the communication circuit.
Abstract:
The present disclosure relates to a method and apparatus for determining whether an electronic device contacts a fluid or not. The electronic device may include: a housing; at least one sensor arranged in the housing; a coupling member connected to a part of the housing and configured to detachably couple the electronic device to a part of a body of a user; a conductive member arranged on a surface of the housing or on a surface of the coupling member and exposed to an outside while being electrically connectible to the at least one sensor; a processor electrically connected to the at least one sensor and the conductive member; and a memory electrically connected to the processor. The processor determines whether the conductive member has contacted a fluid or not using the at least one sensor and executes a second action at least partially based on the determination.
Abstract:
Disclosed are an electronic device for controlling attributes of one-handed mode screen on the basis of a grip shape and a method for controlling same. An electronic device according to an embodiment of the present document may be configured to display, on a flexible display, a one-handed mode screen which is reduced and displayed according to a predetermined ratio so as to correspond to a first screen, detect, while the one-handed mode screen is displayed, that a first housing is moved, and determine, on the basis of the detection of the movement of the first housing, the direction of expansion of the one-handed mode screen depending on whether a grip of a portion of a user's body on the top portion of the first housing is sensed by a first grip sensor, among grip sensors, which is disposed on the edge of the first housing.
Abstract:
An electronic device and a touch control method therefor are provided. The electronic device includes a housing, a flexible display that is drawn into or out of the housing by a sliding operation, a transparent window disposed in the housing so that a partial region of the flexible display drawn into the housing passes therethrough, and a transparent electrode layer disposed between the transparent window and the flexible display. At least one first touch electrode may be disposed in the transparent electrode layer. The at least one first touch electrode disposed in the transparent electrode layer may be activated. At least one second touch electrode arranged in the partial region of the flexible display may be deactivated.