Abstract:
An electronic device including a shielding structure is provided. The electronic device includes a housing, a first board disposed in an inner space of the housing and including a first electrical element and a first ground layer, a second board disposed in the inner space to be spaced apart from the first board and including a second electrical element, and an interposer disposed between the first board and the second board so as to electrically connect the first board and the second board to each other. The second board includes a first surface facing the first board, a second surface facing away from the first surface, insulating layers disposed between the first surface and the second surface, first slits formed at a predetermined interval in a first conductive area disposed in a first insulating layer among the insulating layers, and second slits formed at a predetermined interval in a second conductive area disposed in a second insulating layer between the first insulating layer and the second surface. The first slits are disposed at a position where the plurality of first slits do not overlap the plurality of second slits in case the second board is viewed from above.
Abstract:
An electronic device includes a housing including a first face, a second face oriented in a direction that is opposite the first face, and a side face between the first face and the second face. The housing also includes a first conductive coil configured to generate a magnetic flux in a first or second direction and a second conductive coil located next to the first conductive coil, and connected to the first conductive coil. The second conductive coil is configured to generate a magnetic flux in a direction opposite a direction of the magnetic flux generated by the first conductive coil. The housing also includes a magnetic guide body configured to guide a magnetic flux radiated in the first or the second direction to a third direction substantially perpendicular to the first or the second direction or to a fourth direction opposite the third direction.
Abstract:
Electronic device operating technology based on touch pressure is provided. A method for operating an electronic device includes determining touch pressure caused by a touch occurring on a display unit, comparing the touch pressure with predefined damage data, and performing a predefined specific process when the touch pressure is determined as abnormal touch pressure as a result of the comparison.