摘要:
A refrigerator including a main body with a first storage compartment and a first evaporation compartment provided within the main body in order to cool the first storage compartment. The refrigerator also includes a second storage compartment independently provided in the first storage compartment and maintained at a temperature lower than a temperature of the first storage compartment; and a second evaporation compartment located at a rear side of the second storage compartment to cool the second storage compartment.
摘要:
A vegetable container (100) for refrigerators and a refrigerator having the same are disclosed. The vegetable container (100) includes a case (110) having an opening formed at a front thereof, the case (110) being provided with a receiving space to receive objects to be stored defined therein, a drawer (120) to hermetically seal an interior of the case (110), a discharge port (180) formed through a bottom surface of the case to discharge water from the case (110), a negative pressure part to form over-vacuum in the case (110), and an opening and closing valve (170) to open and close the discharge port (180).
摘要:
The present invention relates to refrigerators, and more particularly, to a refrigerator which can measure an amount of frost on an evaporator in real time and determine a frost removing time; and a method for controlling the same. The refrigerator includes a body having at least one storage space for low temperature storage, a compressor in the body for compressing refrigerant, an evaporator for making heat exchange between the refrigerant from the compressor and air in the storage space, a frost removal heater for removing frost from the evaporator, an optical sensor having a light emitting unit for directing a light to the evaporator and a light receiving unit for receiving the light from the light emitting unit, and a control unit for controlling operation of the frost removal heater with reference to a quantity of the light received at the light receiving unit.
摘要:
The present invention relates to refrigerators, and more particularly, to a refrigerator which can measure an amount of frost on an evaporator in real time and determine a frost removing time; and a method for controlling the same. The refrigerator includes a body having at least one storage space for low temperature storage, a compressor in the body for compressing refrigerant, an evaporator for making heat exchange between the refrigerant from the compressor and air in the storage space, a frost removal heater for removing frost from the evaporator, an optical sensor having a light emitting unit for directing a light to the evaporator and a light receiving unit for receiving the light from the light emitting unit, and a control unit for controlling operation of the frost removal heater with reference to a quantity of the light received at the light receiving unit.
摘要:
A refrigerator including a main body with a first storage compartment and a first evaporation compartment provided within the main body in order to cool the first storage compartment. The refrigerator also includes a second storage compartment independently provided in the first storage compartment and maintained at a temperature lower than a temperature of the first storage compartment; and a second evaporation compartment located at a rear side of the second storage compartment to cool the second storage compartment.
摘要:
A refrigerator includes a main body (10) in which a first storage compartment (12, 13) is defined, and a heat exchange chamber (105) defined in the main body (10). An evaporator (E) received in the heat exchange chamber (105). A second storage compartment is provided in the first storage compartment (12, 13) and a quick cooling module (40) to cool an inside of the second storage compartment is provided, where the quick cooling module heat-exchanges with a refrigerant pipe of the evaporator (E). The quick cooling module includes a thermal conductive unit (44) in thermal conduction with the refrigerant pipe, and a thermoelectric device (41) having a first surface in thermal conduction with the thermal conductive unit (44) to heat-exchange with the thermal conductive unit (44) when current is supplied and a second surface facing the second storage compartment.
摘要:
A method for controlling a refrigerator includes driving a compressor, operating a switching valve to allow a refrigerant to flow into at least one main expansion valve, opening a cool air passage connecting a refrigerating compartment to a main evaporator to cool the refrigerating compartment, operating the switching valve to switching a flow direction of the refrigerant into at least one deep-freezing expansion valve when a temperature of the refrigerating compartment is cooled to a temperature lower than a set temperature, thereby cooling the deep-freezing storage chamber, and operating the heater.
摘要:
A refrigerator with a main body including a refrigerating compartment at a temperature higher than a freezing temperature and a freezing compartment at a temperature lower than the freezing temperature, a deep-freezing storage chamber within the main body at a temperature lower than that of the freezing compartment. The refrigerator further includes a compressor, a condenser connected to an outlet-side of the compressor, a first expansion valve connected to an outlet-side of the condenser, a first evaporator connected to an outlet-side of the first expansion valve, and a heater disposed outside the first expansion valve.
摘要:
A refrigerator includes a main body (10) in which a freezing compartment (13) is defined, and a heat exchange chamber (105) defined in the main body (10). An evaporator (E) received in the heat exchange chamber (105). A deep freezing storage compartment is provided in the freezing compartment (13) and a quick cooling module (40) to cool an inside of the deep freezing storage compartment is provided, where the quick cooling module (40) heat-exchanges with a refrigerant pipe of the evaporator (E). The quick cooling module (40) includes a thermal conductive unit (44) in thermal conduction with the refrigerant pipe, and a thermoelectric device (41) having a first surface in thermal conduction with the thermal conductive unit (44) to heat-exchange with the thermal conductive unit (44) when current is supplied and a second surface facing the deep freezing storage compartment.