Abstract:
There is disclosed a mobile terminal including a case comprising a control portion provided therein, a display coupled to the case, a main circuit board mounted in a predetermined portion of the control portion, a heat exchanger having a portion arranged adjacent to the main circuit board, with a plurality of micro-paths extended from the portion to the other portion, each of the micro-paths connected to a neighboring one to form a closed loop, and a working fluid configured to absorb heat in the portion and emit the heat in the other portion, to be liquefied, the working fluid configured to vibrate along the micro-paths, wherein a gaseous state working fluid and a liquid state working fluid are mixed intermittently.
Abstract:
There is disclosed a mobile terminal comprising a terminal body comprising a terminal body comprising a plurality of cases forming an external appearance of the mobile terminal; a waterproof member configured to prevent liquid from entering the mobile terminal between at least two of the plurality of cases; an air vent hole configured to allow air to pass between an interior and an exterior of the mobile terminal; a waterproof mesh disposed at the air vent hole and configured to allow air but not liquid to pass through the air vent hole; an antenna module provided in the plurality of cases and comprising an antenna radiator and a wireless integrated circuit; and a heat radiation unit having a first end adjacent to the antenna module and a second end adjacent to the air vent hole to allow heat from the antenna module to escape via the air vent hole.
Abstract:
There is disclosed a mobile terminal including a display unit comprising a drive IC provided in a predetermined portion, a frame provided in a rear surface of the display unit, a flexible printed circuit board having one portion connected to the drive IC of the display unit and the other portion bent toward the rear surface of the display unit, a main board coupled to the frame and configured to control the drive IC via the flexible printed circuit board, and a heat transfer sheet configured to cover a front surface of the display unit and a predetermined portion of the first surface of the flexible printed circuit board, wherein at least predetermined portion of the heat transfer sheet is in contact with the frame, so that the heat generated in the drive IC and the light source of the display unit may be transferred to the frame and that the performance deterioration of the mobile terminal caused by the local overheat may be reduced and the difficulty in the user's holding the mobile terminal may be also reduced.
Abstract:
There is disclosed a mobile terminal (100) comprising a terminal body comprising a terminal body comprising a plurality of cases forming an external appearance of the mobile terminal (100); a waterproof member (251) configured to prevent liquid from entering the mobile terminal (100) between at least two of the plurality of cases (210, 102); an air vent hole (255) configured to allow air to pass between an interior and an exterior of the mobile terminal (100); a waterproof mesh (252) disposed at the air vent hole (255) and configured to allow air but not liquid to pass through the air vent hole (255); an antenna module (230) provided in the plurality of cases and comprising an antenna radiator (232) and a wireless integrated circuit (233); and a heat radiation unit (241) having a first end adjacent to the antenna module (230) and a second end adjacent to the air vent hole (255) to allow heat from the antenna module (230) to escape via the air vent hole (255).
Abstract:
There is disclosed a mobile terminal including a case comprising an electric control unit in which electronic components are loaded; a display unit coupled to a front surface of the case; a frame coupled to the case and supporting a rear surface of the display unit, the frame comprising a metallic material; a mainboard loaded in the case; a drive chip loaded in the mainboard; a shield can covering components loaded in the mainboard, the shied comprising a hole formed, corresponding to the drive chip; a thermal conductivity sheet comprising one surface in contact with a top surface of the drive chip and the other surface in contact with an inner surface of the frame; and a flexible material insertedly filling in a space formed between the thermal conductivity sheet and the frame, so that the heat generated in the drive chip of the mobile terminal may be effectively emitted and that only the portion of the mobile terminal, where the drive chip is loaded, may be prevented from being heated when the user is using the mobile terminal and the other components may be prevented from being damaged by the heat.