IP Library › Granted Patent US 12,553,649
Granted Patent B2
US 12,553,649 · App. 18/136,015 · Granted Feb 17, 2026

Air conditioner

Inventors: Jusu Kim (Seoul, KR); Sungoh Choi (Seoul, KR); Beomchan Kim (Seoul, KR); Hyeri Park (Seoul, KR); Hyungsoon Kim (Seoul, KR)
Assignee: LG ELECTRONICS INC.
F25B41/26F25B13/00F25B41/40F25B47/00F25B47/022F25B39/00F25B2313/027F25B2400/0403F25B2400/0409F25B2600/2501
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Quick Facts
Patent No.
US 12,553,649
App. No.
18/136,015
Granted
Feb 17, 2026
Kind
B2
Abstract

An air conditioner includes an outdoor unit comprising a compressor and an outdoor heat exchanger, and an indoor unit connected to the outdoor unit and provided with an indoor heat exchanger. The indoor unit includes a first refrigerant flow tube connecting an inlet side of the indoor heat exchanger to the outdoor unit, a second refrigerant flow tube connecting an outlet side of the indoor heat exchanger to the outdoor unit, a first bypass tube branched from a first branch point of the first refrigerant flow tube and joined to a first joining point of the second refrigerant flow tube, a second bypass tube branched from a second branch point of the first refrigerant flow tube and joined to a second joining point of the second refrigerant flow tube, and a flow switching valve disposed between the first and second joining points of the second refrigerant flow tube.

Claims (44)

1 . An air conditioner, comprising:

an outdoor unit comprising a compressor and an outdoor heat exchanger; and

an indoor unit connected to the outdoor unit and comprising:

an indoor heat exchanger,

a first refrigerant flow tube configured to connect an inlet side of the indoor heat exchanger to the outdoor unit;

a second refrigerant flow tube configured to connect an outlet side of the indoor heat exchanger to the outdoor unit;

a first bypass tube branched from a first branch point of the first refrigerant flow tube and joined to a first joining point of the second refrigerant flow tube;

a second bypass tube branched from a second branch point of the first refrigerant flow tube and joined to a second joining point of the second refrigerant flow tube;

a first bypass valve provided on the first bypass tube;

a second bypass valve provided on the second bypass tube;

a flow switching valve positioned between the first joining point and the second joining point of the second refrigerant flow tube; and

a check valve provided on the second bypass tube, wherein the check valve functions to restrict flow of the refrigerant to only one direction,

wherein, in a cooling mode and a heating mode of the air conditioner, the first bypass valve and the second bypass valve are closed, and the flow switching valve is opened,

wherein, in a freezing mode of the air conditioner, the first bypass valve and the second bypass valve are opened, and the flow switching valve is closed such that the refrigerant flowing through the first bypass tube is introduced into the outlet side of the indoor heat exchanger and then is discharged to the inlet side of the indoor heat exchanger, and the refrigerant flowing through the second bypass tube is introduced into an outlet side of the flow switching valve and then flows into a valve device of the outdoor unit.

2 . The air conditioner according to claim 1 , wherein the valve device includes a first port connected to an outlet side of the compressor, a second port connected to the outdoor heat exchanger, a third port connected to the indoor heat exchanger, and a fourth port connected to an inlet side of the compressor.

3 . The air conditioner according to claim 2 , wherein the outdoor unit further comprises an expansion valve provided on a connection tube configured to connect the outdoor heat exchanger to the first refrigerant flow tube of the indoor heat exchanger.

4 . The air conditioner according to claim 3 , wherein the first branch point is positioned between the expansion valve and the indoor heat exchanger, and the first joining point is positioned between the indoor heat exchanger and the flow switching valve.

5 . The air conditioner according to claim 4 , wherein the second branch point is positioned between the first branch point and the indoor heat exchanger, and the second joining point is positioned between the flow switching valve and the valve device.

6 . The air conditioner according to claim 1 , wherein, in the freezing mode of the air conditioner, the outdoor heat exchanger operates as a condenser, and the indoor heat exchanger operates as an evaporator.

7 . The air conditioner according to claim 6 , wherein the freezing mode of the air conditioner comprises a first freezing mode, in which the inlet side of the indoor heat exchanger is frozen, and a second freezing mode, in which the outlet side of the indoor heat exchanger is frozen.

8 . The air conditioner according to claim 7 ,

wherein, in the first freezing mode, a refrigerant is circulated inside the indoor heat exchanger in a first direction, and

wherein, in the second freezing mode, the refrigerant is circulated inside the indoor heat exchanger in a second direction that is opposite to the first direction.

9 . The air conditioner according to claim 8 , further comprising an indoor fan provided at a side of the indoor heat exchanger,

wherein, in the first freezing mode, the indoor fan provided is operated in a first rotational direction, and

wherein, in the second freezing mode, the indoor fan provided is operated in a second rotational direction that is opposite to the first rotational direction.

10 . The air conditioner according to claim 7 ,

wherein, in the first freezing mode, a refrigerant discharged from the outdoor heat exchanger is introduced into the indoor heat exchanger and then is discharged to the outlet side of the indoor heat exchanger, and

wherein, in the second freezing mode, the refrigerant discharged from the outdoor heat exchanger is introduced into the outlet side of the indoor heat exchanger through the first bypass tube and is discharged to the inlet side of the indoor heat exchanger and is then introduced into an outlet side of the flow switching valve.

11 . The air conditioner according to claim 7 , wherein the first freezing mode and the second freezing mode are sequentially performed.

12 . The air conditioner according to claim 11 , wherein the indoor unit further comprises a tube temperature sensor provided at the inlet side or the outlet side of the indoor heat exchanger, and the first freezing mode and the second freezing mode are alternately performed according to a temperature detected by the tube temperature sensor.

13 . The air conditioner according to claim 6 , wherein, when the freezing mode of the air conditioner is terminated, a defrosting mode in which the indoor heat exchanger is defrosted is performed.

14 . The air conditioner according to claim 13 , wherein, when the defrosting mode of the air conditioner starts, blowing and drying using the indoor fan are performed when an outdoor temperature exceeds a reference temperature, and the defrosting mode is switched into the heating mode to perform heating and drying when the outdoor temperature does not exceed the reference temperature.

15 . The air conditioner according to claim 1 ,

wherein the valve device includes including a first port connected to an outlet side of the compressor, a second port connected to the outdoor heat exchanger, a third port connected to the indoor heat exchanger, and a fourth port connected to an inlet side of the compressor, and

wherein, in the cooling mode and the freezing mode of the air conditioner, the valve device is configured to connect the first port to the second port and connect the third port to the fourth port.

16 . The air conditioner according to claim 1 ,

wherein the valve device includes a first port connected to an outlet side of the compressor, a second port connected to the outdoor heat exchanger, a third port connected to the indoor heat exchanger, and a fourth port connected to an inlet side of the compressor, and

wherein, in the heating mode and the freezing mode of the air conditioner, the valve device is configured to connect the first port to the third port and connect the second port to the fourth port.

17 . The air conditioner according to claim 1 ,

wherein the check valve is disposed between the second bypass valve and the second joining point of the second refrigerant flow tube.

18 . The air conditioner according to claim 1 ,

wherein, in the cooling mode and heating mode of the air conditioner, the check valve is closed, and

wherein, in the freezing mode of the air conditioner, the check valve is opened.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 18, 2023
From: KIM, JUSU; CHOI, SUNGOH; KIM, BEOMCHAN; PARK, HYERI; KIM, HYUNGSOON
To: LG ELECTRONICS INC.
Reel/Frame 063359/0949 →
Priority Claims (1)
KR 10-2022-0167007 · Dec 2, 2022 · national
Continuity (1)
Related Publication 20240183593A1 · Jun 6, 2024
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