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 includes a printed circuit board (PCB), a first cover disposed to shield a first region of the PCB, and a second cover for shielding a second region which has at least a boundary with the first region. A corresponding boundary portion the first cover and the second cover include at least one protrusion portion and at least one recess portion which are fitted to face each other. Thus, since at least two shielding covers share the single boundary region, the component mounting region of the PCB can be efficiently utilized to thus contribute to slimness of the electronic device.
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:
According to various embodiments, an electronic device for charging a battery of an external device may include a coil and a first circuit configured to wirelessly transmit power to the external device through the coil. A second circuit may be configured to wirelessly receive information from the external device. A fan may be disposed adjacent to the coil to discharge heat to the exterior of the electronic device. A control circuit may adjust the driving speed of the fan based at least in part on the received information.
Abstract:
A method and apparatus for determining a control temperature to control a function of an electronic device by using an atmospheric temperature when controlling a temperature of the electronic device, and for controlling the function of the electronic device according to a control step of the determined control temperature are provided. A method of operating an electronic device includes measuring an atmospheric temperature, determining at least one control temperature corresponding to the measured atmospheric temperature, measuring an internal temperature of the electronic device, and controlling a function in accordance with the measured internal temperature of the electronic device and the determined at least one control temperature.
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:
Disclosed are various embodiments relating to an electronic device that includes a shield structure. According to an example embodiment, the electronic device may include: a housing that includes a first surface directed in a first direction and a second surface directed in a second direction that is opposite to the first direction; a printed circuit board included in the housing, wherein the printed circuit board includes a first surface directed in the first direction and a second surface directed in the second direction; at least one electronic component disposed on the first surface of the printed circuit board; and at least one shield structure configured to electro-magnetically shield the at least one electronic component, and the shield structure may include: a flexible sheet that includes a first sheet that covers the at least one electronic component and a second sheet that at least partially covers the space between the first sheet and the first surface of the printed circuit board, when viewed from above the first surface of the printed circuit board; and at least one frame structure that supports the first and second sheets.
Abstract:
An electronic device includes a printed circuit board (PCB), a first cover disposed to shield a first region of the PCB, and a second cover for shielding a second region which has at least a boundary with the first region. A corresponding boundary portion the first cover and the second cover include at least one protrusion portion and at least one recess portion which are fitted to face each other. Thus, since at least two shielding covers share the single boundary region, the component mounting region of the PCB can be efficiently utilized to thus contribute to slimness of the electronic device.
Abstract:
An electronic device includes a printed circuit board (PCB), a first cover disposed to shield a first region of the PCB, and a second cover for shielding a second region which has at least a boundary with the first region. A corresponding boundary portion the first cover and the second cover include at least one protrusion portion and at least one recess portion which are fitted to face each other. Thus, since at least two shielding covers share the single boundary region, the component mounting region of the PCB can be efficiently utilized to thus contribute to slimness of the electronic device.