Abstract:
A refrigerator includes an ice making compartment, an ice making unit producing ice in the ice making compartment, and a refrigeration cycle including a refrigerant pipe to supply cooling energy to the ice making compartment. Air present in the ice making compartment is cooled while undergoing direct heat exchange with at least one of the ice making unit and the refrigerant pipe.
Abstract:
A refrigerator is disclosed. The refrigerator includes a body, a carbonated water tank to produce carbonated water through mixing of clean water with carbon dioxide gas, a sensor unit inserted, at at least a portion thereof, into the carbonated water tank, to sense an internal state of the carbonated water tank, and a holding unit disposed at one side of the carbonated water tank while holding the sensor unit in a fixed state. Through this configuration, it is possible to achieve easy coupling of the sensor unit and lines to the carbonated water tank while preventing water leakage even when the internal pressure of the carbonated water tank is high.
Abstract:
A refrigerator includes a body provided with a freezing compartment, a refrigerating compartment and an ice making compartment provided in the refrigerating compartment; an ice making unit including an ice making tray to produce ice in the ice making compartment; an ice storage container to store the ice made by the ice making unit; and a refrigerant pipe protruding from an interior wall of the body to supply cooling energy to the ice making compartment. A drainage duct is disposed between the ice making unit and the ice storage container adapted to prevent water drops from the ice making unit falling into the ice storage container. The drainage duct include at least one fixer configured to push the refrigerant pipe to a lower surface of the ice making tray to contact the refrigerant pipe with the lower surface of the ice making tray.
Abstract:
A refrigerator includes a main body having a refrigerating compartment; a door to open and close the refrigerating compartment; an icemaker to make ice; a dispenser to dispense water; a filter to purify water to be fed from an external water source to the icemaker and the dispenser; a water tank in which the water, purified by the filter, is stored so as to be cooled by interior cold air of the refrigerating compartment; a valve provided at a junction of a hose connecting the filter to the water tank and the icemaker to selectively supply the water, purified by the filter, to the water tank or the icemaker; and a case to receive the filter, the water tank and the valve, the case being integrally positioned in the refrigerating compartment and between a front of the refrigerating compartment and a rear of the refrigerating compartment.
Abstract:
A structure of an ice making compartment of a side by side type refrigerator to enhance ice making efficiency and to reduce energy consumption. The ice making compartment may be separately provided between a refrigerating compartment and a freezing compartment and be insulated from the refrigerating compartment and the freezing compartment. A portion of a refrigerant pipe is inserted into the inside of the ice making compartment so as to directly cool down the ice making compartment. A front opening of the ice making compartment can be closed by an ice bucket, and the ice bucket can be inserted into or drawn from the ice making compartment with being accessible without opening a refrigerating compartment door and a freezing compartment door.
Abstract:
A refrigerator including an icemaker and an ice bucket provided at a door, a feeding unit to feed ice cubes stored in the ice bucket, a driving motor provided at a main body to drive the feeding unit, and a coupling device to transmit driving force from the driving motor to the feeding unit. When the door is closed, the driving motor is connected to the feeding unit. When the door is opened, the driving motor is disconnected from the feeding unit. Accordingly, the door has a simple structure, the ice bucket has an increased capacity, repair or replacement of the driving motor is easily achieved. The coupling device includes a first coupling unit and a second coupling unit which is engaged with the first coupling unit to receive driving force. The coupling device is configured to hide the coupling units when the door is opened.
Abstract:
A refrigerator is provided. The refrigerator includes an insulation structure and fastening structure of an ice-making compartment refrigerant pipe disposed at an inside an ice-making compartment configured to directly supply cooling energy by being in contact with an ice-making tray. The refrigerator includes an insulation member configured to surround the ice-making compartment refrigerant pipe, and a fixing member coupled to an outer circumferential surface of the insulation member in a shape of a loop to prevent the insulation member from being widened.