Refrigerator and method for controlling the same

US2016018146A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2016018146-A1
Application numberUS-201514735296-A
CountryUS
Kind codeA1
Filing dateJun 10, 2015
Priority dateJul 16, 2014
Publication dateJan 21, 2016
Grant date

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A refrigerator includes a refrigerating compartment temperature sensor, a cooling apparatus, in a state when driving time points of a refrigerating compartment and a freezing compartment are synchronized, to maintain an inside temperature of the refrigerating compartment by performing a cooling operation of the refrigerating compartment on the basis of a cut-off temperature of the refrigerating compartment that is varied by a difference between a temperature of the refrigerating compartment at a driving time point of the refrigerating compartment that is sensed by the refrigerating compartment temperature sensor and a cut-in temperature of the refrigerating compartment, and a control unit to control the driving of the cooling apparatus by varying the cut-off temperature of the cooling apparatus according to the difference between the temperature of the refrigerating compartment at the driving time point of the refrigerating compartment and the cut-in temperature of the refrigerating compartment.

First claim

Opening claim text (preview).

What is claimed is: 1 . A refrigerator, comprising: a refrigerating compartment; a freezing compartment; a refrigerating compartment temperature sensor to sense a temperature of the refrigerating compartment; a cooling apparatus, in a state when driving time points of the refrigerating compartment and the freezing compartment are synchronized, to maintain an inside temperature of the refrigerating compartment by performing a cooling operation of the refrigerating compartment; and a controller to control the cooling apparatus by varying a cut-off temperature of the cooling apparatus according to a difference between the sensed temperature of the refrigerating compartment at a driving time point of the refrigerating compartment and a cut-in temperature of the refrigerating compartment. 2 . The refrigerator of claim 1 , wherein: the cooling apparatus comprises a compressor to compress refrigerant at a high pressure; a condenser to release heat of the compressed refrigerant; an expansion valve for the refrigerating compartment to decompress the condensed refrigerant; and an evaporator for the refrigerating compartment to absorb heat by use of the refrigerant and deliver the evaporated refrigerant to the compressor. 3 . The refrigerator of claim 2 , wherein: the cooling apparatus further comprises a flow path converting valve to selectively deliver the condensed refrigerant at the condenser to the expansion valve for the refrigerating compartment such that the refrigerant delivered to the expansion valve for the refrigerating compartment is blocked in a case when the inside temperature of the refrigerating compartment reaches the cut-off temperature of the refrigerating compartment. 4 . The refrigerator of claim 2 , further comprising: a refrigerating compartment blower fan to blow the heat-exchanged air at the evaporator for the refrigerating compartment to the refrigerating compartment. 5 . The refrigerator of claim 1 , wherein: the controller comprises a temperature sensor to sense an inside temperature of the refrigerating compartment from the refrigerating compartment temperature sensor; a driver to control the driving of the cooling apparatus according to the temperature of the refrigerating compartment at the driving time point and the cut-off temperature of the refrigerating compartment; and a temperature setter to variably set the cut-off temperature of the refrigerating compartment to stably maintain the temperature of the refrigerating compartment according to the difference between the temperature of the refrigerating compartment at the driving time point of the refrigerating compartment and the cut-in temperature of the refrigerating compartment. 6 . The refrigerator of claim 5 , wherein: the temperature setter variably sets the cut-off temperature of the refrigerating compartment as much as the difference between the temperature of the refrigerating compartment at the driving time point of the refrigerating compartment and the cut-in temperature of the refrigerating compartment. 7 . The refrigerator of claim 6 , wherein: the temperature setter variably adjusts the cut-off temperature of the refrigerating compartment so that a temperature increase of the refrigerating compartment at the driving time point of the refrigerating compartment and a temperature decrease of the cut-off temperature of the refrigerating compartment are equal to each other while having an average temperature of the refrigerating compartment as a reference. 8 . The refrigerator of claim 5 , wherein: the temperature setter maintains the cut-off temperature of the refrigerating compartment in a set state, in a case when the temperature of the refrigerating compartment at the driving time point is equal to the cut-in temperature of the refrigerating compartment. 9 . A controlling method of a refrigerator, comprising: driving, by the refrigerator, a cooling apparatus of a refrigerating compartment and a freezing compartment; sensing a temperature of the refrigerating compartment at a driving time point of the refrigerating compartment; determining if the temperature at the driving time point of the refrigerating compartment is equal to a cut-in temperature of the refrigerating compartment; variably adjusting a cut-off temperature of the refrigerating compartment according to a difference between a temperature of the refrigerating compartment at a driving time point of the refrigerating compartment and a cut-in temperature of the refrigerating compartment, in a case when the temperature of the refrigerating compartment at the driving time point of the refrigerating compartment is not equal to the cut-in temperature of the refrigerating compartment; and finishing a driving of the cooling apparatus of the refrigerating compartment, in a case when an inside temperature of the refrigerating compartment reaches the cut-off temperature of the refrigerating compartment. 10 . The controlling method of the refrigerator of claim 9 , wherein in the variably adjusting of the cut-off temperature of the refrigerating compartment according to the difference between the temperature of the refrigerating compartment at the driving time point and the cut-in temperature of the refrigerating compartment, the cut-off temperature is variably set as much as the difference between the temperature of the refrigerating compartment at the driving time point of the refrigerating compartment and the cut-in temperature of the refrigerating compartment. 11 . The controlling method of the refrigerator of claim 10 , wherein: the cut-off temperature of the refrigerating compartment is variably adjusted so that a temperature increase of the refrigerating compartment at the driving time point and a temperature decrease of the cut-off temperature of the refrigerating compartment are equal to each other while having an average temperature of the refrigerating compartment as a reference. 12 . The controlling method of the refrigerator of claim 9 , wherein: in a case when the temperature of the refrigerating compartment at the driving time point of the refrigerating compartment is equal to the cut-in temperature of the refrigerating compartment, the cut-off temperature of the refrigerating compartment is maintained at a set state. 13 . A method comprising: initiating a cooling operation of a first food storage compartment and a second food storage compartment based on a temperature of the first food storage compartment; measuring a temperature of the second food storage compartment when the cooling operation is initiated; adjusting, by a controller, a cut-off temperature of the cooling operation based on a difference between the measured temperature of the second food storage compartment when the cooling operation is initiated and a predetermined cut-in temperature of the second food storage compartment; and ending the cooling operation when the temperature of the second food storage compartment reaches the cut-off temperature. 14 . The method of claim 13 , wherein the adjusting the cut-off temperature comprises calculating the difference between the measured temperature of the second food storage compartment when the cooling operation is initiated and the predetermined cut-in temperature of the second food storage compartment; and adding the calculated difference to the cut-off temperature.

Assignees

Inventors

Classifications

  • F25B49/00Primary

    Arrangement or mounting of control or safety devices · CPC title

  • F25D11/022Primary

    with two or more evaporators · CPC title

  • more than one sensor measuring the inside temperature in a compartment · CPC title

Patent family

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Frequently asked questions

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What does patent US2016018146A1 cover?
A refrigerator includes a refrigerating compartment temperature sensor, a cooling apparatus, in a state when driving time points of a refrigerating compartment and a freezing compartment are synchronized, to maintain an inside temperature of the refrigerating compartment by performing a cooling operation of the refrigerating compartment on the basis of a cut-off temperature of the refrigerating…
Who is the assignee on this patent?
Samsung Electronics Co Ltd
What technology area does this patent fall under?
Primary CPC classification F25B49/00. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Thu Jan 21 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).