Abstract:
The present disclosure relates to an integrated laundry treatment apparatus, in which a washing machine module and a drying machine module are integrally installed in a common cabinet, and a single drying module is provided to produce dry hot air, such that a size of a product may be reduced, a dried state of laundry being dried in a washing drum and a drying drum is detected in real time while drying processes are simultaneously performed in the washing drum and the drying drum by the common drying module, and the amount of supplied dry hot air and the amount of recovered dry hot air are differently controlled, such that an overall drying process time may be reduced and electric power consumption may be minimized, and the drying processes performed in the drying process and the drying machine of the washing machine are simultaneously completed, such that convenience for a user may be improved, and a method of controlling the same.
Abstract:
There is disclosed an outdoor unit an outdoor unit that may attach a cover to a case by using a magnetic member and have an empty space formed between the case and the cover as large as the thickness of the magnetic member, wherein air or a sound-proof or meta material may be filled in the empty space and a cover for covering the case of the outdoor unit may include several pieces that are detachably connected with each other like Lego pieces, and the cover may be attached to the other area of an outer surface of the outdoor unit except the area having an inlet for sucking external air and an outlet hole for discharging the external air drawn into the outdoor unit via the inlet outside again.
Abstract:
Disclosed herein is a laundry treatment apparatus (100). The laundry treatment apparatus (100) includes a main washing device (200) and an auxiliary washing device (300) for treating laundry, and the auxiliary washing device (300) includes a tub (320) accommodating wash water, a drum (330) rotatably provided in the tub, and a pulsator (400) rotatably provided in the drum (330) so as to be rotated due to friction with at least one of the wash water and the laundry accommodated in the drum. Since there is no need for components such as a clutch, the auxiliary washing device (300) can have a simple structure compared to when having a clutch, and the overall manufacturing costs of the laundry treatment apparatus (100) can be reduced.
Abstract:
The present disclosure relates to a clothing treatment apparatus comprising: a first cabinet forming the outer appearance; a first drum of a cylindrical shape having open front and rear surfaces; a second cabinet located under the first cabinet; a tub located in the second cabinet; a second drum located in the tub to be rotatable and accommodating clothing; a first air suction duct for sucking the air in the first drum; a second air suction duct for sucking the air in the tub; a connection duct connected to the first air suction duct and the second air suction duct and including a heat exchanger for exchanging heat with the sucked air; a first exhaust duct for discharging the air, which has exchanged heat via the heat exchanger, to the first drum; and a second exhaust duct for discharging the air, which has exchanged heat via the heat exchanger, to the tub.
Abstract:
The present disclosure provides an indoor apparatus (100) with a reduced refrigerant noise level in an air-conditioning system, wherein the apparatus includes: a heat-exchanger (110) for exchanging heat between refrigerant and indoor air; a fan (130) rotating to flow air to the heat-exchanger; and an expansion valve (150) for expanding refrigerant discharged from the heat-exchanger, the indoor apparatus further including: a first temperature sensor (160) disposed on a first conduit for supplying refrigerant to the heat-exchanger, wherein the first temperature sensor detects a first temperature of refrigerant to be fed into the heat-exchanger; a second temperature sensor (170) disposed on a second conduit for receiving refrigerant from the heat-exchanger, wherein the second temperature sensor detects a second temperature of refrigerant discharged from the heat-exchanger; a third temperature (180) sensor disposed on a housing of the indoor apparatus for detecting a discharge temperature of the indoor apparatus; and a controller configured for estimating a load of the indoor apparatus based on the discharge temperature detected by the third temperature sensor, and for increasing or decreasing an air flow rate of the fan based on the estimated load.
Abstract:
The present invention provides a laundry processing apparatus comprising: a cabinet provided with an opening; a drawer body provided to allow insertion and withdrawal from the cabinet through the opening; a drawer panel, fixed to the drawer body, for opening and closing the opening; a tub, provided in the drawer body, for providing a space for storing water; a drum, rotatably provided inside the tub, for providing a space for storing laundry; a detergent storage part, provided in the drawer panel, for providing a space for storing the detergent; and a detergent supply part for supplying the detergent stored in the detergent storage part to the tub.
Abstract:
The present invention relates to a laundry processing apparatus comprising: a tub for storing water and provided with an opening for putting in and taking out laundry; a drum, provided in the interior of the tub, for storing the laundry supplied through the opening; an agitator rotatably provided inside the drum; a rotating shaft connected to the agitator by penetrating the tub and drum; a driving part for rotating the rotating shaft; a connecting part having a connecting body fixed to the drum, and a body-penetrating hole which is provided so as to penetrate the connecting body and through which the rotating shaft is inserted; and a power transmission part, provided inside the body-penetrating hole and connecting the rotating shaft and connecting body, for transmitting the driving power provided by the rotating shaft to the connecting body only when the rotating shaft is rotating in either the clock-wise direction or counter-clock-wise direction.