CN209978178U - Vertical cabinet air conditioner and air conditioner - Google Patents

Vertical cabinet air conditioner and air conditioner Download PDF

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Publication number
CN209978178U
CN209978178U CN201920447558.2U CN201920447558U CN209978178U CN 209978178 U CN209978178 U CN 209978178U CN 201920447558 U CN201920447558 U CN 201920447558U CN 209978178 U CN209978178 U CN 209978178U
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China
Prior art keywords
air
air outlet
outlet
wind
air conditioner
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CN201920447558.2U
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Chinese (zh)
Inventor
许壮
李松
陈伟
孙品品
竺熔
袁科杰
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Aux Air Conditioning Co Ltd
Ningbo Aux Electric Co Ltd
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Aux Air Conditioning Co Ltd
Ningbo Aux Electric Co Ltd
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Priority to CN201920447558.2U priority Critical patent/CN209978178U/en
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Abstract

The utility model provides a cabinet vertical air conditioner and air conditioner, cabinet vertical air conditioner includes: the upper air outlet and an upper wind shielding assembly arranged at the upper air outlet are arranged on the upper air outlet; the lower air outlet and a lower wind shielding assembly arranged at the lower air outlet are arranged on the lower air outlet; the air duct is positioned between the upper air outlet and the lower air outlet; the air duct partition plate is at least partially abutted against the inner wall of the air duct in the circumferential direction to realize air outlet at double air outlets; or the circumferential direction of the air outlet pipe is not contacted with the inner wall of the air duct, so that air outlet from a single air opening is realized. The utility model discloses a cabinet vertical air conditioner and air conditioner can realize upper and lower independent air-out or upper and lower air-out simultaneously, has higher selection degree of freedom, can reach comfortable cold/hot-blast effect of sending, has improved user's experience and has felt.

Description

Vertical cabinet air conditioner and air conditioner
Technical Field
The utility model relates to an air conditioner technical field, in particular to cabinet vertical air conditioner and air conditioner.
Background
At present, the vertical cabinet air conditioner in the prior art is generally provided with an air outlet at the upper part of the cabinet air conditioner, and cold air and hot air blown out are both sent out through the air outlet. In winter, when the air conditioner heats, the sent hot air rises, so that the heat exchange of the ground air is slow, and people can not feel warm when moving indoors; in summer, when the air conditioner performs refrigeration, the sent cold air can be blown to people, and the comfort is affected. Therefore, the vertical cabinet air conditioner in the prior art has the defects of single air outlet form, direct cold air blowing, slow falling of hot air and greatly reduced user experience.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model provides a cabinet vertical air conditioner, include: the upper air outlet and an upper wind shielding assembly arranged at the upper air outlet are arranged on the upper air outlet; the lower air outlet and a lower wind shielding assembly arranged at the lower air outlet are arranged on the lower air outlet; the air duct is positioned between the upper air outlet and the lower air outlet; the air duct partition plate is at least partially abutted against the inner wall of the air duct in the circumferential direction to realize air outlet at double air outlets; or the circumferential direction of the air outlet pipe is not contacted with the inner wall of the air duct, so that air outlet from a single air opening is realized. Therefore, the air duct partition plate and the upper/lower air blocking assembly can realize independent air outlet from top to bottom or simultaneously air outlet from top to bottom, have higher selection freedom degree, and can achieve the effect of comfortably sending cold air and/or hot air.
In order to achieve the above purpose, the technical scheme of the utility model is realized like this:
compared with the prior art, vertical cabinet air conditioner and air conditioner have following advantage:
(1) the utility model discloses independent air-out and upper and lower air-out function simultaneously about having: when heating, hot air is sent out from the lower air outlet, so that indoor air gradually exchanges heat from the ground to the roof, and the comfort of a user is prevented from being influenced by direct blowing of the user during refrigeration; during refrigeration, cold air is sent out from the upper air outlet, so that indoor air is subjected to heat exchange gradually from the roof to the ground, a comfortable and uniform temperature field can be formed in an indoor environment, the heating comfort is improved, and the effect of comfortable cold/hot air sending is achieved; when the air is discharged from the upper air outlet and the lower air outlet simultaneously, the cold air/hot air is blown out from the upper air outlet and the lower air outlet simultaneously, so that the indoor heat exchange efficiency is accelerated. From this, the user can select the air-out mode according to actual need, improves user's use and feels.
(2) The upper/lower wind blocking component has two different realization modes, one is an upper/lower wind blocking door, the other is an upper/lower volute and an upper/lower wind blocking plate, in addition, a user can select an upper wind outlet/lower wind outlet mode according to the actual refrigeration/heating requirement, so that the upper/lower wind blocking component is controlled to be opened and closed, and the state of the air duct partition plate is controlled to realize the upper and lower independent wind outlet or the upper and lower simultaneous wind outlet functions of the vertical cabinet air conditioner.
(3) Go up air outlet and lower air outlet department and set up one respectively and sweep wind mechanism down, guide the wind direction to ground, establish comfortable even temperature field indoor fast, promoted user experience.
(4) The circumference of the air duct partition plate and/or the air duct inner wall are/is provided with the elastic material, so that the abrasion and the noise of the circumference of the air duct partition plate and the air duct inner wall can be reduced when the circumference of the air duct partition plate is contacted with the air duct inner wall, the sealing effect is enhanced, the air duct can be divided into an upper air duct and a lower air duct, and the function of air outlet at the same time is realized.
Drawings
The accompanying drawings, which form a part hereof, are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the invention without undue limitation. In the drawings:
fig. 1 is an exploded schematic view of a vertical cabinet air conditioner according to a first embodiment of the present invention;
FIG. 2 is a schematic view of a portion B in FIG. 1 at a single outlet;
FIG. 3 is a schematic view of a portion B in FIG. 1 at a position where air is discharged from two air outlets;
fig. 4 is a schematic perspective view of a vertical cabinet air conditioner according to a second embodiment of the present invention;
< description of symbols >
1-vertical cabinet air-conditioner; 2-an upper air outlet; 3-lower air outlet; 4-an upper wind shield assembly; 5-a lower wind shield assembly; 6-air duct; 7-air duct partition board; 8-an upper damper; 9-lower air damper; 10-a front housing; 11-a drive motor; 12-upper volute; 13-upper wind shield; 14-front baffle.
Detailed Description
It should be noted that, in the present invention, the embodiments and features of the embodiments may be combined with each other without conflict.
The present invention will be described in detail with reference to the following embodiments and accompanying drawings.
The utility model provides a cabinet vertical air conditioner 1, include:
the upper air outlet 2 and the upper wind shielding component 4 are arranged at the upper air outlet 2;
the lower air outlet 3 and the upper wind shielding assembly 5 are arranged at the lower air outlet 3;
the air duct 6 is positioned between the upper air outlet 2 and the lower air outlet 3 and comprises an evaporator, a front baffle 14, an upper centrifugal fan, a lower centrifugal fan and a cavity formed by the components;
the air duct partition 7 (driven by the driving motor 11 disposed on the front baffle 14 to rotate) may be a circular plate or other irregular shape, and the present invention is not limited thereto. At least part of the circumferential direction of the air duct partition 7 abuts against the inner wall of the air duct 6, and the realization forms thereof include but are not limited to the following cases: the diameter of the circular plate-shaped air duct partition plate 7 is completely the same as that of the air duct 6, so that the circumferential direction of the air duct partition plate 7 is completely attached to the interior of the air duct 6; or in order to reduce the abrasion and noise when the circumferential direction of the partition plate is contacted with the inner wall of the air duct, the diameter of the circular plate-shaped air duct partition plate 7 is completely the same as that of the air duct 6, and at least one notch can be arranged on the circumferential direction of the air duct partition plate 7, so that the notch is not contacted with the inner wall of the air duct 6; or the shape of the air duct partition 7 is irregular, and only part of the circumferential direction is abutted against the air duct 6 in the rotating process. Therefore, the air duct 6 is divided into an upper sub air duct and a lower sub air duct which are independent, air is simultaneously exhausted from the upper air duct and the lower air duct under the action of the centrifugal fan blade, the air duct can be used in a refrigerating mode and a heating mode, and air outlet with double air ports is realized. When the circumferential direction of the air duct partition plate 7 is not contacted with the inner wall of the air duct 6, single-air-port air outlet is realized. The double-air-outlet mode refers to that the vertical cabinet air conditioner 1 is in an upper and lower simultaneous air-outlet mode, and the single-air-outlet mode refers to that the vertical cabinet air conditioner 1 is in an upper air-outlet mode or a lower air-outlet mode.
More specifically, when at least part of the circumferential direction of the air duct partition plate 7 abuts against the inner wall of the air duct 6, the air duct partition plate 7 divides the air duct into an upper sub-air duct and a lower sub-air duct, and the upper centrifugal fan blade and the lower centrifugal fan blade respectively enable the upper air outlet 2 and the lower air outlet 3 to blow out cold air or hot air simultaneously, so that an upper and lower simultaneous air-out mode is realized; when the circumferential direction of the air duct partition plate 7 is not in contact with the inner wall of the air duct 6, the air duct is not divided, namely, only one air duct is provided, and an upper air outlet mode (the vertical cabinet air conditioner 1 is in a refrigerating state) or a lower air outlet mode (the vertical cabinet air conditioner 1 is in a heating state) can be selected by controlling the opening and closing of the upper air baffle component 4 and the lower air baffle component 5.
That is to say, when the vertical cabinet air conditioner 1 heats, the lower centrifugal fan blade enables hot air to be sent out from the lower air outlet 3, so that indoor air gradually exchanges heat from the ground to the roof, and the comfortable sensation of a user is prevented from being influenced by directly blowing the user during refrigeration; during refrigeration, the upper centrifugal fan blade enables cold air to be sent out from the upper air outlet 2, indoor air is enabled to gradually exchange heat from a roof to the ground, a comfortable and uniform temperature field can be formed in an indoor environment, heating comfort is improved, and therefore the effect of comfortable cold/hot air sending is achieved; when the air flows out from the upper part and the lower part simultaneously, the upper centrifugal fan blade and the lower centrifugal fan blade respectively enable the upper air outlet 2 and the lower air outlet 3 to blow out cold air/hot air simultaneously, and the indoor heat exchange efficiency is accelerated. From this, the user can select the air-out mode according to actual need, improves user's use and feels.
And simultaneously, the utility model discloses go up the preferred 1200 ~ 1800mm of distance on air outlet 2 and ground, the preferred 0 ~ 600mm of distance on lower air outlet 3 and ground prevents that vertical cabinet air conditioner 1 from directly blowing the user to improve the comfort when the user uses.
The embodiment of the present invention provides an upper wind-shielding assembly 4 and a lower wind-shielding assembly 5, which can be implemented in two different ways: the upper wind shielding component 4 can be an upper wind shielding door 8, and the lower wind shielding component 5 can be a lower wind shielding door 9; or the upper wind shielding assembly 4 is an upper wind shielding plate 13 positioned at the upper volute 12, and the lower wind shielding assembly 5 is a lower wind shielding plate (not shown) positioned at the lower volute. The user can be according to actual need, selects the implementation of upper/lower wind-blocking subassembly 5 to through opening and closing of control upper/lower wind-blocking subassembly 5, and through the state of wind channel baffle 7, realize vertical cabinet air conditioner 1's upper and lower independent air-out or upper and lower air-out function simultaneously.
More specifically, when the upper wind shielding assembly 4 is closed, the upper wind shielding door 8 is closed, or the upper wind shielding plate 13 completely shields the wind outlet of the upper volute 12; when the upper wind shielding assembly 4 is opened, the upper wind shielding door 8 is opened, or the upper wind shielding plate 13 does not completely shield the wind outlet position of the upper volute 12;
when the lower wind shield assembly 5 is closed, the lower wind shield 9 is closed, or the lower wind shield completely shields the wind outlet of the lower volute; when the lower wind shield assembly 5 is opened, the lower wind shield 9 is opened, or the lower wind shield does not completely shield the wind outlet of the lower volute.
In a preferred embodiment, the circumferential direction of the air duct partition 7 and/or the inner wall of the air duct 6 is provided with an elastic material, so that the problem of abrasion of the circumferential direction of the air duct partition 7 when the circumferential direction of the air duct partition is in contact with the inner wall of the air duct 6 is prevented, and meanwhile, the sealing performance can be enhanced.
In some embodiments of the present invention, in order to accelerate the formation of comfortable and uniform temperature field, the wind direction of the upper/lower air outlet needs to be guided to the ground, so the vertical cabinet air conditioner 1 may further include:
and the upper wind sweeping mechanism and the lower wind sweeping mechanism are respectively arranged at the upper wind outlet 2 and the lower wind outlet 3 and are used for guiding the wind direction to the ground.
The following will explain in detail the first embodiment and the second embodiment.
(first embodiment)
In the present embodiment, the upper damper assembly 4 is an upper damper 8, and the lower damper assembly 5 is a lower damper 9. Fig. 1 is an exploded schematic view of a vertical cabinet air conditioner according to the first embodiment of the present invention, as shown in fig. 1, an upper damper 8 and a lower damper 9 are both located on a front housing 10, and are respectively disposed at an upper air outlet 2 and a lower air outlet 3.
Fig. 2 is a schematic view of a portion B in fig. 1 at a single-tuyere air outlet, and as shown in fig. 2, when the single-tuyere air outlet is in an upper air outlet mode, the upper damper 8 is opened, that is, the upper damper assembly 4 is opened; the lower damper 9 is closed, namely the lower damper assembly 5 is closed; and the circumference of the air duct partition plate 7 is not contacted with the inner wall of the air duct 6, the upper centrifugal fan blade enables cold air to be sent out from the upper air outlet 2, and the vertical cabinet air conditioner 1 is in an upper air outlet mode and is in a refrigeration state.
Referring to fig. 2 again, when the single-tuyere outlet air is in the lower outlet mode, the lower damper 9 is opened, that is, the lower damper assembly 5 is opened; the upper damper door 8 is closed, namely the upper damper assembly 4 is closed; and the circumference of the air duct partition plate 7 is not contacted with the inner wall of the air duct 6, the lower centrifugal fan blade enables hot air to be sent out from the lower air outlet 3, and the vertical cabinet air conditioner 1 is in a lower air outlet mode and in a heating state.
Fig. 3 is a schematic view of a portion B in fig. 1 at a double-tuyere outlet, and as shown in fig. 3, the upper damper 8 and the lower damper 9 are opened simultaneously, that is, the upper damper assembly 4 and the lower damper assembly 5 are opened simultaneously; and at least part of the circumferential direction of the air duct partition plate 7 is abutted against the inner wall of the air duct 6, at the moment, the upper centrifugal fan blade and the lower centrifugal fan blade respectively enable the upper air outlet 2 and the lower air outlet 3 to simultaneously blow out cold air/hot air, and the vertical cabinet air conditioner 1 is in an upper and lower simultaneous air-out mode and is in a refrigerating/heating state.
Further, in order to more conveniently control the rotation of the air duct partition 7, the upper damper 8 and the lower damper 9, the cabinet vertical air conditioner 1 may further include: a first drive assembly for controlling the opening and closing of the upper damper 8 and/or the lower damper 9.
(second embodiment)
In the present embodiment, the upper wind shielding assembly 4 is an upper wind shielding plate 13, and the lower wind shielding assembly 5 is a lower wind shielding plate, and in the second embodiment, the similar description to the first embodiment will be omitted, and the differences from the first embodiment will be emphasized.
In the present embodiment, the upper wind deflector 13 is disposed on the lower end surface of the upper volute 12 in a sliding manner or in a rotating manner with the center of gravity thereof as a center point; the lower wind shield slides or the center of gravity of the lower wind shield is arranged on the upper end surface of the lower volute in a rotating mode. The user can select the moving mode of the lower wind shield according to actual needs.
Fig. 4 is a schematic perspective view of a vertical cabinet air conditioner according to a second embodiment of the present invention, in which the vertical cabinet air conditioner 1 is a single outlet, and the upper wind deflector 13 does not completely shield the outlet of the lower volute, that is, the upper wind deflector 4 is opened; the lower wind shield completely shields the wind outlet of the lower volute, namely the lower wind shield component 5 is closed; and the circumference of the air duct partition plate 7 is not contacted with the inner wall of the air duct 6, the upper centrifugal fan blade enables cold air to be sent out from the upper air outlet 2, and the vertical cabinet air conditioner 1 is in an upper air outlet mode and is in a refrigeration state.
Referring to fig. 4 again, the cabinet vertical air conditioner 1 is a single outlet air outlet, and the upper wind shield 13 completely shields the outlet air of the upper volute 12, that is, the upper wind shield assembly 4 is closed; the lower wind shield does not completely shield the air outlet of the lower volute, namely the lower wind shield assembly 5 is opened, the circumferential direction of the air duct partition plate 7 is not contacted with the inner wall of the air duct 6, the lower centrifugal fan blade enables hot air to be sent out from the lower air outlet 3, and the vertical cabinet air conditioner 1 is in a lower air outlet mode and is in a heating state.
Referring to fig. 4 again, the cabinet vertical air conditioner 1 is in a double-outlet air outlet mode, i.e., an upper and lower simultaneous air outlet mode, the upper wind shield 13 does not completely shield the air outlet of the lower volute, i.e., the upper wind shield assembly 4 is turned on, and the lower wind shield does not completely shield the air outlet of the lower volute, i.e., the lower wind shield assembly 5 is turned on; and at least part of the circumferential direction of the air duct partition plate 7 is abutted against the inner wall of the air duct 6, the upper centrifugal fan blade and the lower centrifugal fan blade respectively enable the upper air outlet 2 and the lower air outlet 3 to simultaneously blow out cold air/hot air, and the vertical cabinet air conditioner 1 is in an upper and lower simultaneous air-out mode and is in a heating/refrigerating state.
Further, in order to more conveniently control the rotation of the air duct partition 7, the upper wind deflector 13 and the lower wind deflector, the cabinet vertical air conditioner 1 may further include: and the second driving assembly is used for controlling the opening and closing of the upper wind shield 13 and/or the lower wind shield.
Preferably, the upper volute 12 and the lower volute are arranged oppositely, so that when the vertical cabinet air conditioner 1 is in an upper and lower simultaneous air outlet mode, the air sweeping areas of hot/cold air blown out from the upper air outlet 2 and the lower air outlet 3 are the same, and the experience of a user is enhanced.
So far, the description of the first embodiment and the second embodiment of the present invention is completed.
Furthermore, the embodiment of the utility model provides an air conditioner is still provided, including the off-premises station, still include aforementioned cabinet air conditioner 1, the off-premises station with cabinet air conditioner 1 is connected.
To sum up, the utility model discloses independent air-out and upper and lower air-out function simultaneously about having: when heating, hot air is sent out from the lower air outlet, so that indoor air gradually exchanges heat from the ground to the roof, and the comfort of a user is prevented from being influenced by direct blowing of the user during refrigeration; during refrigeration, cold air is sent out from the upper air outlet, so that indoor air is subjected to heat exchange gradually from the roof to the ground, a comfortable and uniform temperature field can be formed in an indoor environment, the heating comfort is improved, and the effect of comfortable cold/hot air sending is achieved; when the air is discharged from the upper air outlet and the lower air outlet simultaneously, the cold air/hot air is blown out from the upper air outlet and the lower air outlet simultaneously, so that the indoor heat exchange efficiency is accelerated. From this, the user can select the air-out mode according to actual need, improves user's use and feels.
The present invention has been described in detail so far with reference to the accompanying drawings. From the above description, those skilled in the art should clearly understand the vertical cabinet air conditioner and the air conditioner of the present invention.
The above description is only a preferred embodiment of the present invention, and should not be taken as limiting the invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (11)

1. A cabinet vertical air conditioner, comprising:
the upper air outlet (2) and an upper wind shielding assembly (4) arranged at the upper air outlet (2);
the lower air outlet (3) and a lower wind shielding assembly (5) arranged at the lower air outlet (3);
the air duct (6) is positioned between the upper air outlet (2) and the lower air outlet (3);
the air duct partition plate (7) is at least partially abutted against the inner wall of the air duct (6) in the circumferential direction to realize air outlet with double air outlets; or the circumferential direction of the air outlet pipe is not contacted with the inner wall of the air duct (6), so that air outlet at a single air port is realized.
2. The cabinet vertical air conditioner according to claim 1, wherein the upper wind shielding assembly (4) is an upper wind shielding door (8) or an upper wind shielding plate (13) located at an upper volute (12) of the cabinet vertical air conditioner;
and the lower wind shielding assembly (5) is a lower wind shielding door (9) or a lower wind shielding plate positioned at a lower volute of the vertical cabinet air conditioner.
3. The cabinet vertical air conditioner according to claim 2, wherein when the upper wind shield assembly (4) is closed, the upper wind shield door (8) is closed, or the upper wind shield plate (13) completely shields the wind outlet of the upper volute (12); when the upper wind shielding assembly (4) is opened, the upper wind shielding door (8) is opened, or the upper wind shielding plate (13) does not completely shield the wind outlet position of the upper volute (12);
when the lower wind shield assembly (5) is closed, the lower wind shield (9) is closed, or the lower wind shield plate completely shields the wind outlet position of the lower volute; when the lower wind shield assembly (5) is opened, the lower wind shield (9) is opened, or the lower wind shield plate does not completely shield the wind outlet of the lower volute.
4. A cabinet vertical air conditioner according to claim 2,
when the single-air-outlet mode is an upper air-outlet mode, the lower wind shielding assembly (5) is closed, the lower air outlet (3) is closed, the upper wind shielding assembly (4) is opened, the upper air outlet (2) is opened, the upper centrifugal fan blade enables cold air to be blown out from the upper air outlet (2), and the vertical cabinet air conditioner (1) is in a refrigerating state;
when the single-air-outlet mode is the lower air-outlet mode, the upper air damper (8) component is closed, the upper air outlet (2) is closed, the lower air damper (5) is opened, the lower air outlet (3) is opened, the lower centrifugal fan blade enables hot air to be blown out from the lower air outlet (3), and the vertical cabinet air conditioner (1) is in a heating state;
the air outlet of the double air outlets is in an upper and lower simultaneous air outlet mode, the upper air baffle assembly (4) is opened, the upper air outlet (2) is opened, the lower air baffle assembly (5) is opened, the lower air outlet (3) is opened, and the upper centrifugal fan blade and the lower centrifugal fan blade of the vertical cabinet air conditioner (1) respectively enable the upper air outlet (2) and the lower air outlet to simultaneously blow out cold air or hot air.
5. The cabinet vertical air conditioner of claim 2, further comprising:
a first drive assembly for controlling the opening and closing of the upper damper (8) and/or the lower damper (9).
6. The cabinet vertical air conditioner of claim 2, further comprising:
and the second driving assembly is used for controlling the opening and closing of the upper wind shield (13) and/or the lower wind shield.
7. Vertical cabinet air conditioner according to claim 2, characterized in that the circumferential direction of the air duct partition (7) and/or the inner wall of the air duct (6) is provided with an elastic material.
8. The cabinet vertical air conditioner of claim 5, further comprising:
and the upper air sweeping mechanism and the lower air sweeping mechanism are respectively arranged at the upper air outlet (2) and the lower air outlet (3) and are used for guiding the air direction of the air outlet of the upper air outlet (2) and/or the lower air outlet (3) to the ground.
9. Vertical cabinet air conditioner according to claim 2, characterized in that the upper wind deflector (13) slides or rotates around its center of gravity, and is disposed on the lower end surface of the upper volute (12); the lower wind shield slides or rotates by taking the gravity center of the lower wind shield as a central point and is arranged on the upper end surface of the lower volute.
10. The cabinet vertical air conditioner as claimed in claim 1, wherein the distance between the upper air outlet (2) and the ground is 1200-1800 mm; and/or the distance between the lower air outlet (3) and the ground is 0-600 mm.
11. An air conditioner comprising an outdoor unit, further comprising the cabinet vertical air conditioner of any one of claims 1 to 10, wherein the outdoor unit is connected to the cabinet vertical air conditioner.
CN201920447558.2U 2019-04-03 2019-04-03 Vertical cabinet air conditioner and air conditioner Active CN209978178U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920447558.2U CN209978178U (en) 2019-04-03 2019-04-03 Vertical cabinet air conditioner and air conditioner

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920447558.2U CN209978178U (en) 2019-04-03 2019-04-03 Vertical cabinet air conditioner and air conditioner

Publications (1)

Publication Number Publication Date
CN209978178U true CN209978178U (en) 2020-01-21

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920447558.2U Active CN209978178U (en) 2019-04-03 2019-04-03 Vertical cabinet air conditioner and air conditioner

Country Status (1)

Country Link
CN (1) CN209978178U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109990388A (en) * 2019-04-03 2019-07-09 宁波奥克斯电气股份有限公司 Vertical air conditioner cabinet and air conditioner

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109990388A (en) * 2019-04-03 2019-07-09 宁波奥克斯电气股份有限公司 Vertical air conditioner cabinet and air conditioner
CN109990388B (en) * 2019-04-03 2024-06-14 宁波奥克斯电气股份有限公司 Cabinet air conditioner and air conditioner

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