Integrated air conditioner
Abstract
An integrated air conditioner comprises: a housing partitioned into a first housing on the upper side thereof and a second housing on the lower side thereof, wherein the first housing has a first intake port through which external air is introduced thereinto and a first exhaust port through which internal air is exhausted therefrom, and the second housing has a second intake port through which external air is introduced thereinto and a second exhaust port through which internal air is exhausted therefrom; a compressor provided in the interior of the housing to compress a refrigerant; a condenser that is provided on a second fluid channel, which connects the second intake port and the second exhaust port, and condenses the compressed refrigerant, supplied from the compressor, into a liquid phase; an expansion unit that expands the refrigerant, condensed in the condenser, into a low-pressure refrigerant; and an evaporator that is provided on a first fluid channel, which connects the first intake port and the first exhaust port, to correspond to the upper end of the condenser and returns the low-temperature and low-pressure refrigerant, supplied from the expansion unit, to the compressor. Therefore, the integrated air conditioner can be made compact and portable, thereby offering convenience.
Claims
exact text as granted — not AI-modified1 . An integrated air conditioner comprising:
a housing partitioned into a first housing on an upper side thereof and a second housing on a lower side thereof; a first intake port and a first exhaust port provided in the first housing so that external air flows in and out; a second intake port and a second exhaust port provided in the second housing so that external air flows in and out; an evaporator which evaporates a refrigerant having a low temperature and low pressure on a first fluid channel connecting the first intake port and the first exhaust port and performs heat exchange with surroundings thereof; a compressor provided in the housing to compress the refrigerant from the evaporator; a condenser provided on a second fluid channel connecting the second intake port and the second exhaust port to condense the refrigerant compressed by the compressor into a liquid state; an expansion unit which expands the refrigerant condensed by the condenser into the refrigerant in a low pressure state; and a water storage tray provided between the evaporator and the condenser and configured to store condensate generated from the evaporator and discharge the condensate to the condenser.
2 . The integrated air conditioner of claim 1 , wherein the water storage tray further includes a drain hole configured to discharge the stored condensate to the condenser.
3 . The integrated air conditioner of claim 2 , wherein the water storage tray includes:
a first water storage region provided under the evaporator; and a second water storage region provided above the condenser, wherein the second water storage region is provided with the drain hole.
4 . The integrated air conditioner of claim 1 , wherein at least parts of the first intake port and the second intake port are vertically disposed.
5 . The integrated air conditioner of claim 1 , wherein the evaporator and the condenser are disposed adjacent to the first intake port and the second intake port, respectively.
6 . The integrated air conditioner of claim 1 , wherein the first intake port and the second intake port are vertically and regularly provided at one side of the housing, and the evaporator and the condenser are respectively provided to be adjacent to the first intake port and the second intake port.
7 . The integrated air conditioner of claim 1 , wherein the first exhaust port and the second exhaust port are provided at different sides in the housing.
8 . The integrated air conditioner of claim 1 , wherein the housing includes:
a left panel in which the first intake port and the second intake port are provided; a right panel in which the second exhaust port is provided; and a front panel in which the first exhaust port is provided.
9 . The integrated air conditioner of claim 1 , further comprising an upper blower fan provided on the first fluid channel and configured to discharge internal air.
10 . The integrated air conditioner of claim 1 , further comprising a partition provided between the first housing and the second housing and configured to partition the first housing and the second housing.
11 . The integrated air conditioner of claim 10 , wherein a region where an upper blower fan is positioned in the partition includes a concave lower side.
12 . The integrated air conditioner of claim 1 , wherein the compressor is provided on the second fluid channel between the condenser and the second exhaust port.
13 . The integrated air conditioner of claim 1 , wherein the expansion unit is formed with a capillary tube.
14 . An integrated air conditioner comprising:
a housing partitioned into a first housing on an upper side thereof and a second housing on a lower side thereof; a first intake port through which external air flows in and a first exhaust port through which internal air is discharged, which are provided in the first housing; a second intake port through which external air flows in and a second exhaust port through which internal air is discharged, which are provided in the second housing; a first blower fan provided on a first fluid channel which connects the first intake port and the first exhaust port, and a second blower fan provided on a second fluid channel which connects the second intake port and the second exhaust port; a partition which partitions the first housing and the second housing; and a seating portion which includes a convex portion whose outer surface is formed convexly as compared with a bottom surface of the partition, and a concave portion in which a rear surface of the convex portion is formed concavely as compared with a top surface of the partition, wherein the first blower fan is seated on the concave portion and the second blower fan is provided on a side of the convex portion.
15 . The integrated air conditioner of claim 14 , further comprising:
a compressor provided in the housing and configured to compress a refrigerant; a condenser provided on the second fluid channel and configured to condense the refrigerant compressed by the compressor into in a liquid state; an expansion unit configured to expand the refrigerant condensed by the condenser into the refrigerant in a low pressure state; and an evaporator provided on the first fluid channel to correspond to an upper end of the condenser and configured to return the refrigerant having a low temperature and low pressure from the expansion unit to the compressor.
16 . The integrated air conditioner of claim 14 , wherein the housing includes:
a left panel in which the first intake port and the second intake port are provided; a right panel in which the second exhaust port is provided; and a front panel in which the first exhaust port is provided.
17 . The integrated air conditioner of claim 14 , wherein the first blower fan includes a centrifugal fan.
18 . The integrated air conditioner of claim 14 , wherein the second blower fan includes an axial fan.
19 . The integrated air conditioner of claim 14 , wherein at least parts of the first intake port and the second intake port are vertically provided, and an evaporator and a condenser are respectively provided adjacent to the first intake port and the second intake port.
20 - 22 . (canceled)
23 . An integrated air conditioner comprising:
a housing partitioned into a first housing on an upper side thereof and a second housing on a lower side thereof; a compressor provided in the housing and configured to compress a refrigerant; a condenser provided in the second housing and configured to compress the refrigerant compressed by the compressor into a liquid state; a capillary tube which expands the refrigerant compressed by the condenser into the refrigerant in a low pressure state; an evaporator provided in the second housing and configured to return the refrigerant expanded by the capillary tube to the compressor; a first intake port through which external air flows in and a first exhaust port through which internal cold air is discharged, which are provided in the first housing; and a second intake port, through which external air flows in, provided under the first intake port, and a second exhaust port through which internal warm air flows out, which are provided in the second housing, wherein the first exhaust port and the second exhaust port are separately provided in a lateral direction.
24 - 29 . (canceled)Join the waitlist — get patent alerts
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