Abstract:
An electronic device may include: at least one protective member disposed in at least one area of the electronic device; at least one sensor configured to detect the drop of the electronic device; a protective member driving module configured to activate the protective member to change the shape of the protective member according to whether the drop of the electronic device is detected; and at least one processor configured to receive a drop sensing signal detected by the sensor and to control the protective member driving module to change the shape of the protective member.
Abstract:
A cradle having an anti-theft device of a wearable device is provided. The cradle includes a cradle body, a cradle head that supports a wearable device and is detachable from the cradle body, such that the cradle head is exchangeable, and an anti-theft device that connects the cradle body and the wearable device.
Abstract:
An electronic device is provided including a plurality of electronic parts; one or more housing components forming a space for receiving the plurality of electronic parts; and a cover detachable from the one or more housing components, the cover including a first member having a plurality of metal elements suspended in a non-metal base and a second member coupled to the first member.
Abstract:
According to various embodiments of the present disclosure, there is provided a fabrication method for fabricating an exterior member of an electronic device. The fabrication method may include a film disposing step of disposing a film on an exterior member in which one face is formed as a first curved face, and a lamination step of laminating the film on the exterior member. The fabrication method as described above may be variously implemented according to embodiments.
Abstract:
An electronic device and a method for manufacturing an outer housing of the electronic device are provided. The electronic device includes an outer housing including a portion including a base including a non-conductive material and a plurality of islands formed on or above the base, wherein the plurality of islands include metallic materials, wherein the plurality of islands are spaced apart from each other, and wherein the plurality of islands form a two-dimensional (2D) pattern. The method includes injection-molding a base and forming a plurality of islands on or above the base, wherein the plurality of islands include metallic materials, and wherein the plurality of islands are spaced apart from each other to form a 2D pattern.
Abstract:
A mobile communication terminal with a radiant-heat function is provided. The mobile communication terminal includes: a display module; a rear cover; an inner support structure positioned between the display module and the rear cover and including a first surface facing the display module and a second surface facing an opposite side to the display module; a first radiant-heat sheet positioned between the first surface of the support structure and the display module; a printed circuit board positioned between the first radiant-heat sheet and the first surface of the support structure; and a second radiant-heat sheet positioned between the second surface of the support structure and the rear cover.
Abstract:
An electronic device is provided. The electronic device includes a hollow body of a touch pen and the touch pen having a head rotatably fixed to the hollow body. The head includes a specific-length fixed shaft and one or more rotation washers through which the shaft passes and which can self-rotate, wherein the fixed shaft includes a magnet having a polarity different from that of a magnetic material disposed in a vicinity of a pen mounting hole for inserting the touch pen of the electronic device, and if the touch pen is abnormally inserted, the head can rotate to a normal insertion location by an attractive force between the magnet and the magnetic material.