Abstract:
Various embodiments of the present disclosure provide an electronic device comprising: a communication module comprising communication circuitry, a memory, and a processor operatively connected to the communication module and the memory, wherein the processor is configured to: control the electronic device to establish a connection to a wearable display device through the communication module, receive gaze information from the wearable display device, determine a first application and a second application corresponding to the gaze information to be displayed on a screen, identify profiles of the determined first application and second application, and combine graphic data corresponding to the first application and graphic data corresponding to the second application and transmit the combined graphic data to the wearable display device, or transmit each of graphic data corresponding to the first application and graphic data corresponding to the second application to the wearable display device, based on the identified profiles.
Abstract:
A method and an electronic device are provided for compensating for changed touch sensitivity of a touch panel of the electronic device. It is detected whether a rollable display of the electronic device is expanded. It is detected whether the touch sensitivity of the touch panel of the rollable display is changed, in case that the rollable display is expanded. A rolling direction and a length of extension of the rollable display is changed, in case that the touch sensitivity is changed. It is detected whether a resistance of an expansion area of the rollable display is changed. The touch sensitivity of the touch panel is compensated for, in case that the resistance is changed.
Abstract:
An electronic device and method are disclosed. The electronic device includes a first camera configured to capture a frontal external environment of the electronic device, a second camera oriented opposite to the first camera and configured to capture gaze directions of a user's left eye and right eye, a first display panel corresponding to the left eye, a second display panel corresponding to the right eye, a memory, and a processor that implements the method, including: identifying, using the second camera, a dominant eye and a non-dominant eye among the left eye and right eye, identifying a dominant display panel from among the first and second display panels corresponding to the dominant eye, and a non-dominant display panel from among the first and second display panels corresponding to the non-dominant eye, and changing settings of the dominant display panel to be different from settings of the non-dominant display panel.
Abstract:
According to various embodiments, an electronic device may include a housing including an opening connected to an internal space; a tray socket disposed to be connected to the outside through the opening in the internal space and including a tray reception space; a tray inserted into the tray reception space, wherein the tray includes a tray body including at least one space configured to receive at least one external component; and a tray cover including a pin insertion hole configured to guide a tray ejecting pin to the opening; an eject bar movably disposed in a tray mounting direction or ejecting direction in the tray reception space and facing the pin insertion hole; and a rotation lever configured to press the tray in the ejection direction according to pressing of the eject bar in the tray reception space, wherein the eject bar is disposed at a position at least partially overlapped with the tray body when viewed from above the tray socket.
Abstract:
An electronic device is provided. The electronic device includes a housing including a first plate, a second plate, and a side member, the side member being attached to or integrally formed with at least one of the first plate or the second plate, a display positioned inside the housing and configured to form a display area through the first plate, a first touch panel positioned inside the housing and interposed between the display and the first plate or integrally formed with the display and including a first plurality of sensing elements having a first touch point density, a second touch panel positioned inside the housing, adjacent to the side member, and oriented to face a portion of the side member, and including a second plurality of sensing elements having a second touch point density lower than the first touch point density, and a processor.
Abstract:
A method for detecting a plurality of available sound output devices when audio data is played back, and for detecting user position information and user direction information is provided. The method includes generating a plurality of pieces of sound information from the audio data, based on at least one of the detected user position information and the user direction information, and distributing each of the plurality of pieces of sound information to a corresponding sound output device from among the plurality of sound output devices.
Abstract:
Provided is a wearable electronic device including an anti-fog structure, the wearable electronic device including: a main body portion; a lens module including a lens and a barrel structure, wherein the barrel structure surrounds the lens and is on one surface of the main body portion; and at least one heat source, wherein the barrel structure includes a thermal conductive material thermally connected to the at least one heat source and at least partially extending in a first direction, and wherein the thermal conductive material is configured to transfer heat from the at least one heat source to the lens.
Abstract:
A wearable device according to an embodiment includes: at least one camera configured for eye tracking, at least one display configured to be aligned with eyes of a user wearing the wearable device, and at least one processor comprising processing circuitry. At least one processor, individually and/or collectively, is configured to: control the wearable device to display a screen on the at least one display; obtain gaze data related to an object in the screen through the at least one camera; determine whether to recognize the gaze data as an input for the object, using an area for the object that has size set based on an overall brightness level of the screen; and execute a function provided from the object based on the gaze data recognized as the input.
Abstract:
According to certain embodiments, an electronic device comprises a first housing; a second housing; a hinge disposed between the first housing and the second housing such that the second housing is foldable at one end of the first housing; and a flexible display disposed on a surface of the first housing and a surface of the second housing, wherein the flexible display comprises a display panel, and a glass layer disposed on the display panel, such that the display panel is between the glass layer and the surface of the first housing and the surface of the second housing, wherein the glass layer comprises: a bendable portion configured to be flat in an unfolded state when the first housing and the second housing are disposed horizontally adjacent, and to be bent in a folded state when the first housing and the second housing are vertically adjacent; and a first flat portion adjacent to the bending portion to form a boundary and a second flat portion disposed to extend from the first flat portion to an edge of the glass layer, wherein the glass layer comprises a glass member, wherein the glass member has a first thickness in the second flat portion, has a second thickness at the center of the bending portion, and has a third thickness less than the first thickness and greater than the second thickness in a section between the first flat portion and the center of the bending portion, and wherein the thickness of the glass member gradually decreases from the first flat portion to the center of the bending portion forming a concave portion.
Abstract:
An electronic device including a flexible display is provided. The electronic device includes a first housing, a second housing slidably coupled to the first housing, and a flexible display in which a size of a display area, which is an externally visible part of the electronic device is reduced or expanded based on slide-in or slide-out driving of the second housing, wherein the flexible display includes a panel layer including a display panel, a protective layer disposed in one direction of the panel layer and configured to protect the panel layer, a lattice layer disposed in another direction of the panel layer, a plurality of intermediate layers disposed between the protective layer and the panel layer and including at least one impact absorption layer, and a plurality of adhesive layers, each disposed between two adjacent layers of the other layers included in the flexible display and the protective layer includes a first area having one surface in which the plurality of adhesive layers and the other layers are stacked, the first area having a first thickness, and a second area extended from one end of the first area in a direction parallel to the first area, wherein the second area includes at least a portion having a second thickness smaller than the first thickness.