Abstract:
The present invention relates to a method of displaying a pointer on an external device sharing an output video with a terminal, and an apparatus thereof. A method of controlling display of a pointer by a terminal so that the pointer is displayed on an external device according to an embodiment of the present invention includes transmitting an output video of the terminal to the external device, if a predetermined request exists; detecting a sensing value according to a input performed on a display area; generating a pointer displaying signal used for displaying a pointer at a position corresponding to a position where the detected sensing value is detected on the external device based on the detected sensing value; and transmitting the generated pointer displaying signal to the external device. According to the present invention, since a pointer is displayed on an external device sharing an output video with a terminal, the user may execute a desired function by looking at the external device, without looking at the terminal.
Abstract:
An electronic device and a method a provided. The electronic device includes a first surface, a second surface opposite to the first surface, and a side surface that surrounds at least part of a space between the first and second surfaces; a Radio Frequency (RF) communication circuit; an antenna radiator that forms at least part of at least one of the first surface, the second surface, and the side surface and is connected to the RF communication circuit; a sensor that detects whether an external object contacts the antenna radiator; a switching circuit connected to the antenna radiator and the sensor; and a processor configured to receive a first value from the sensor when the antenna radiator and the sensor are connected to each other and to receive a second value from the sensor when the antenna radiator and the sensor are separated from each other.
Abstract:
According to various embodiments, the electronic device may include: a glass plate having a first face that faces in a first direction, a second face that faces in a second direction opposite the first direction, and a side face that faces in a third direction perpendicular to the first direction; a flexible PCB having a first face that faces the second face of the glass plate in the first direction, and a second face that faces in the second direction; a flexible display layer having a flat portion that is disposed between the second face of the glass plate and the first face of the flexible PCB, and a bent portion that extends from the flat portion and is bent to be connected to the flexible PCB; a polymer layer having a first face that faces in the first direction and is attached to the second face of the flexible PCB and a second face that faces in the second direction; and a cover structure that is connected to the glass plate and the polymer layer so as to enclose at least a part of the flexible PCB, the flexible display layer, and the polymer layer.
Abstract:
An electronic device according to various embodiments of the present disclosure may include: a housing having first and second faces opposite to each other; a transparent substrate disposed on the first face of the housing; a display panel disposed below the transparent substrate; and an input sensing panel disposed below the display panel. The input sensing panel may include: a plurality of conductive patterns; and dummy patterns each disposed between each of the conductive patterns. Other various embodiments are also possible.
Abstract:
An electronic device is provided. The electronic device includes a display panel, a plurality of input sensing panels which are one of layered on and bonded to the display panel, a driver integrated circuit (IC) connected to the display panel and configured to generate a synchronization signal for controlling the display panel, and a plurality of input sensors connected to the plurality of input sensing panels and configured to scan a respective one of the plurality of input sensing panels, according to scan timing, which is time-divided with reference to the synchronization signal.
Abstract:
A wearable electronic device is provided. The wearable electronic device comprises a first part including a first electronic component, a second part including a second electronic component and being spaced apart from the first part, and a flexible connection part configured to interconnect the first part and the second part. The flexible connection part includes a sensor configured to sense whether at least a part of the flexible connection part is flexed, and a retention member configured to maintain a shape of the flexed at least a part of the flexible connection part
Abstract:
A portable terminal employing a near field communication antenna with a heat radiation function is provided. The portable terminal includes a cover provided for the portable terminal, and an antenna device mounted on an inner surface of the cover. The antenna device includes a near field communication antenna coupled to a location on the inner surface of the cover, a shield sheet coupled to an upper surface of the antenna, a heat radiation sheet coupled to an upper surface of the shield sheet so as to discharge heat transmitted from the portable terminal, and a protection cover coupled to an upper surface of the heat radiation sheet.