Air conditioner outdoor unit and air conditioning equipment

By adopting a first sub-cavity and a second sub-cavity distribution layout in the outdoor unit of the air conditioner, with the compressor system located above the heat exchanger and the electronic control system distributed on the left and right sides of the compressor system, and protected by the casing, the problem of the non-compact internal layout of the outdoor unit of the air conditioner is solved, thereby improving space utilization and reducing costs.

CN223768994UActive Publication Date: 2026-01-06GD MIDEA HEATING & VENTILATING EQUIP CO LTD +1
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Patent Information

Application Number
CN202520174268.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-24
Publication Date
2026-01-06
Estimated Expiration
2035-01-24

AI Technical Summary

Technical Problem

The existing outdoor unit layout of air conditioners is not compact, resulting in wasted space and high installation costs.

Method used

The system employs a first and second sub-cavity distribution within the casing, with the compressor system located above the heat exchanger. The electrical control system and compressor system are distributed in the left-right direction, and the casing protects each component. Expansion chambers and partitions are provided to improve space utilization and safety.

Benefits of technology

This achieves a neat arrangement of internal components of the air conditioner outdoor unit, facilitating maintenance, reducing installation costs, and improving space utilization and operational safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an air conditioner outdoor unit and air conditioning equipment, the air conditioner outdoor unit comprises a shell, the shell is provided with a mounting cavity, the mounting cavity comprises a first sub-cavity and a second sub-cavity which are distributed along the left-right direction, air conditioner fan blades are mounted in the first sub-cavity, and a heat exchanger and a compressor system are arranged in the second sub-cavity; the compressor system is located above the heat exchanger. And the electric control system is installed in the second sub-cavity, and the electric control system and the compressor system are distributed in the left-right direction. According to the air conditioner outdoor unit, due to the fact that the installation cavity comprises the first sub-cavity and the second sub-cavity, parts inside the air conditioner outdoor unit can be arranged in order, later maintenance is facilitated, the compressor system is arranged above the heat exchanger, the space utilization rate can be increased, the arrangement cost can be reduced, and the air conditioner outdoor unit is suitable for popularization and application. And the electric control system and the compressor system are distributed in the left-right direction, so that the layout is more compact, the space utilization rate is further improved, and the setting cost is effectively reduced.
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Description

Technical Field

[0001] This utility model relates to the field of air conditioning technology, and in particular to an outdoor air conditioning unit and an air conditioning device having the outdoor air conditioning unit. Background Technology

[0002] Air conditioning equipment regulates indoor temperature, humidity, and airflow to provide users with a comfortable living or working environment. Air conditioning equipment consists of an indoor unit and an outdoor unit. The indoor unit delivers cool or warm air into the room, while the outdoor unit dissipates heat, compresses refrigerant, and handles electrical controls to ensure efficient heat exchange, thereby achieving indoor cooling or heating.

[0003] Existing air conditioning systems typically house the fan blades, heat exchanger, compressor system, and electrical control system inside the outdoor unit. Generally, the fan blades are located on the left side of the outdoor unit, the heat exchanger is located on the lower right side, and the compressor system is located on the upper right side. The electrical control system is usually located at the top or front of the overall structure. Both of these arrangements result in a less compact layout inside the outdoor unit, leading to wasted space and higher installation costs, indicating room for improvement. Utility Model Content

[0004] This utility model aims to solve at least one of the technical problems existing in the prior art. To this end, this utility model proposes an outdoor air conditioner unit that can install and protect the internal components of the outdoor air conditioner unit, ensuring the reliable operation of each component, and can neatly arrange the internal components of the outdoor air conditioner unit to facilitate later maintenance. In addition, it can make the layout more compact, thereby effectively improving space utilization and reducing installation costs.

[0005] An outdoor air conditioning unit according to an embodiment of the present utility model includes: a housing, wherein the housing forms an installation cavity, the installation cavity includes a first sub-cavity and a second sub-cavity distributed in a left-right direction, an air conditioning fan blade is installed in the first sub-cavity, and a heat exchanger and a compressor system are provided in the second sub-cavity, the compressor system being located above the heat exchanger; and an electronic control system, wherein the electronic control system is installed in the second sub-cavity, and the electronic control system and the compressor system are distributed in a left-right direction.

[0006] According to the embodiment of the present utility model, the outdoor unit of the air conditioner can install and protect the internal components of the outdoor unit by setting a shell, ensuring the reliable operation of each component. The installation cavity includes a first sub-cavity and a second sub-cavity, which can neatly arrange the internal components of the outdoor unit for easy maintenance. Furthermore, setting the compressor system above the heat exchanger can improve space utilization and reduce installation costs. The distribution of the electronic control system and the compressor system in the left-right direction can make the layout more compact, further improving space utilization and effectively reducing installation costs.

[0007] According to some embodiments of the present invention, in the outdoor unit of an air conditioner, the electronic control system is located on the side of the compressor system away from the first sub-cavity.

[0008] According to some embodiments of the present invention, in an outdoor unit of an air conditioner, the second sub-cavity includes an expansion cavity, which is formed by protruding from the side of the second sub-cavity away from the first sub-cavity, and at least a portion of the electronic control system is located within the expansion cavity.

[0009] According to some embodiments of the present invention, the outdoor unit of the air conditioner includes a removable maintenance cover, and the expansion cavity is formed within the maintenance cover.

[0010] According to some embodiments of the present invention, the maintenance cover of the outdoor unit of the air conditioner is further provided with a handle groove.

[0011] According to some embodiments of the present invention, the outdoor unit of the air conditioner is further provided with a first partition inside the housing. The first partition is located between the electronic control system and the compressor system, and separates the electronic control system from the compressor system.

[0012] According to some embodiments of the present invention, the outdoor unit of the air conditioner is further provided with a partition baffle inside the housing, and at least part of the electronic control system is located above the partition baffle and is used to separate the heat exchanger from the electronic control system.

[0013] According to some embodiments of the present invention, the outdoor unit of the air conditioner includes an electrical control system comprising a sealed housing containing components; wherein the heat exchanger is provided with a refrigerant pipeline, the refrigerant pipeline comprising at least two pipe sections welded together, the sealed housing being located above the partition baffle, and the refrigerant pipeline being located below the partition baffle and separated from the sealed housing.

[0014] According to some embodiments of the present invention, the outdoor unit of the air conditioner is further provided with a top baffle inside the housing. The top baffle covers the top of the compressor system and separates the top of the compressor system from the top of the electronic control system.

[0015] According to some embodiments of the present invention, the outdoor unit of the air conditioner is further provided with a middle partition plate inside the housing, and the first sub-cavity and the second sub-cavity are respectively located on both sides of the middle partition plate.

[0016] According to some embodiments of the present invention, the outdoor unit of the air conditioner has an air inlet communicating with the second sub-cavity, and an air intake port communicating between the first sub-cavity and the second sub-cavity in the middle partition. An air intake channel is formed between the air inlet and the air intake port, and the air intake channel is adapted to exchange heat with the electronic control system.

[0017] According to some embodiments of the present invention, in an outdoor unit of an air conditioner, the air inlet is located below the compressor system, the air intake and the electronic control system are distributed in the left-right direction, and the air intake and the electronic control system are respectively located on both sides of the compressor system. The airflow at the air inlet is adapted to flow upward toward the electronic control system and the compressor system and then toward the air intake.

[0018] According to some embodiments of the present invention, the outdoor unit of the air conditioner includes a detachable panel, and the air inlet is disposed on the panel.

[0019] This utility model also proposes an air conditioning device.

[0020] The air conditioning equipment according to the embodiments of the present utility model includes the outdoor unit of the air conditioner described in any one of the above-mentioned embodiments.

[0021] The air conditioning equipment described above and the outdoor air conditioning unit mentioned above have the same advantages over the prior art, and will not be repeated here.

[0022] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0023] The above and / or additional aspects and advantages of this utility model will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:

[0024] Figure 1 This is a schematic diagram of the structure of an outdoor air conditioner unit according to an embodiment of the present utility model. Figure 1 ;

[0025] Figure 2 This is a schematic diagram of the structure of an outdoor air conditioner unit according to an embodiment of the present utility model. Figure 2 ;

[0026] Figure 3 This is a schematic diagram of the structure of an outdoor air conditioner unit according to an embodiment of the present utility model. Figure 3 ;

[0027] Figure 4 This is a schematic diagram of the structure of an outdoor air conditioner unit according to an embodiment of the present utility model. Figure 4 .

[0028] Figure label:

[0029] Air conditioner outdoor unit 100,

[0030] Housing 1, mounting cavity 11, first sub-cavity 111, second sub-cavity 112, air conditioning fan blade 12, heat exchanger 13, refrigerant piping 131, pipe section 1311, compressor system 14, maintenance cover 15, handle groove 151, partition baffle 16, top baffle 17, middle partition 18, air intake 181, panel 19, air inlet 191, first partition 20.

[0031] Electrical control system 2, sealed housing 21,

[0032] Base 3. Detailed Implementation

[0033] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.

[0034] In the description of this utility model, it should be understood that the terms "center," "longitudinal," "transverse," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," and "circumferential," etc., indicating the orientation or positional relationship shown in the accompanying drawings, are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, features defined with "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this utility model, unless otherwise stated, "a plurality of" means two or more.

[0035] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0036] The following is for reference. Figures 1-4According to the embodiment of the present utility model, the outdoor unit 100 of the air conditioner can be neatly arranged by making the mounting cavity 11 include a first sub-cavity 111 and a second sub-cavity 112, so as to facilitate later maintenance. Furthermore, by placing the compressor system 14 above the heat exchanger 13, the space utilization rate can be improved and the installation cost can be reduced. Moreover, by distributing the electronic control system 2 and the compressor system 14 in the left and right directions, the layout can be made more compact, thereby further improving the space utilization rate and effectively reducing the installation cost.

[0037] like Figures 1-4 As shown, an outdoor unit 100 of an air conditioner according to an embodiment of the present invention includes: a housing 1 and an electronic control system 2.

[0038] The housing 1 has a mounting cavity 11, which includes a first sub-cavity 111 and a second sub-cavity 112 distributed in the left-right direction. An air conditioning fan blade 12 is installed in the first sub-cavity 111, and a heat exchanger 13 and a compressor system 14 are provided in the second sub-cavity 112. The compressor system 14 is located above the heat exchanger 13. An electronic control system 2 is installed in the second sub-cavity 112, and the electronic control system 2 and the compressor system 14 are distributed in the left-right direction.

[0039] Specifically, the air conditioning equipment includes an indoor unit and an outdoor unit 100. The indoor unit is used to deliver cool or warm air into the room, while the outdoor unit 100 is used to discharge heat, compress refrigerant, and perform electrical control to ensure that the air conditioning equipment can effectively exchange heat, thereby realizing the cooling or heating function of the air conditioning equipment.

[0040] The outdoor unit 100 of the air conditioner is provided with a housing 1. The housing 1 is used to install and protect the components installed inside the outdoor unit 100 from external physical damage. The housing 1 forms an installation cavity 11, which is used to install the components inside the outdoor unit 100. The installation cavity 11 includes a first sub-cavity 111 and a second sub-cavity 112 distributed in the left-right direction. The components inside the outdoor unit 100 can be installed through the first sub-cavity 111 and the second sub-cavity 112. The first sub-cavity 111 can be set to the left or right of the second sub-cavity 112, so that the first sub-cavity 111 and the second sub-cavity 112 are distributed in sequence. The components inside the outdoor unit 100 can be set in the first sub-cavity 111 and the second sub-cavity 112 respectively, so that the internal structure of the outdoor unit 100 is neat and orderly, which facilitates later maintenance.

[0041] In such Figure 1 and Figure 4In the embodiment shown, the second sub-cavity 112 is located to the right of the first sub-cavity 111. In actual design, the second sub-cavity 112 can also be located to the left of the first sub-cavity 111. Both the first sub-cavity 111 and the second sub-cavity 112 can be used to install the components inside the outdoor unit 100 of the air conditioner.

[0042] Meanwhile, an air conditioning fan blade 12 is installed inside the outdoor unit 100 of the air conditioner. The air conditioning fan blade 12 is used to accelerate the airflow, promote heat exchange, and improve the efficiency of the air conditioning equipment. The air conditioning fan blade 12 is installed in the first sub-cavity 111, so that the air conditioning fan blade 12 can be installed inside the housing 1, and the housing 1 can be used to protect the air conditioning fan blade 12 and ensure the reliable operation of the air conditioning fan blade 12. In addition, a heat exchanger 13 and a compressor system 14 are also installed inside the outdoor unit 100 of the air conditioner. The heat exchanger 13 is used to regulate the indoor temperature by promoting heat exchange between the refrigerant and the external environment. The compressor system 14 is used to compress the refrigerant, increase its pressure and temperature, and drive the operation of the air conditioning equipment. The heat exchanger 13 and the compressor system 14 are set in the second sub-cavity 112, so that the heat exchanger 13 and the compressor system 14 can both be installed inside the housing 1, so that the housing 1 can be used to protect the heat exchanger 13 and the compressor system 14 and ensure the reliable operation of the heat exchanger 13 and the compressor system 14.

[0043] Furthermore, by placing the compressor system 14 above the heat exchanger 13, the internal space of the outdoor unit 100 can be utilized more efficiently, making the internal layout of the outdoor unit 100 more compact. It also allows the compressor system 14 and the heat exchanger 13 to be closer together, facilitating the flow of refrigerant from the compressor system 14 to the heat exchanger 13. This can shorten the length of the refrigerant pipe and reduce installation costs.

[0044] Furthermore, an electronic control system 2 is installed inside the outdoor unit 100 of the air conditioner. The electronic control system 2 is a key component of the air conditioning equipment. It is equivalent to the "brain" of the air conditioning equipment and is responsible for directing and coordinating the operation of various components inside the air conditioning equipment. By installing the electronic control system 2 in the second sub-cavity 112, the electronic control system 2 can be installed inside the housing 1, so that the housing 1 can protect the electronic control system 2 and ensure its reliable operation. Moreover, by distributing the electronic control system 2 and the compressor system 14 in the left and right directions, the electronic control system 2 can be set on the left or right side of the compressor system 14. The electronic control system 2 and the compressor system 14 can both be set above the heat exchanger 13, so that the electronic control system 2 and the compressor system 14 can share the space above the heat exchanger 13, so as to make reasonable use of space and make the layout more compact.

[0045] According to the embodiment of the present utility model, the outdoor unit 100 of the air conditioner can install and protect the internal components of the outdoor unit 100 by setting the housing 1, ensuring the reliable operation of each component. The mounting cavity 11 includes a first sub-cavity 111 and a second sub-cavity 112, which can neatly arrange the internal components of the outdoor unit 100 for easy maintenance. Furthermore, the compressor system 14 is set above the heat exchanger 13, which can improve space utilization and reduce installation costs. The distribution of the electronic control system 2 and the compressor system 14 in the left and right directions can make the layout more compact, further improving space utilization and effectively reducing installation costs.

[0046] In some embodiments, the electronic control system 2 is located on the side of the compressor system 14 away from the first sub-cavity 111.

[0047] Specifically, such as Figure 1 , Figure 2 and Figure 4 As shown, the second sub-cavity 112 is located to the right of the first sub-cavity 111, and the electronic control system 2 and the compressor system 14 are distributed in the left and right directions. By setting the electronic control system 2 on the side of the compressor system 14 away from the first sub-cavity 111, the electronic control system 2 can be set to the right of the compressor system 14, which means that the electronic control system 2 can be set between the compressor system 14 and the housing 1, so as to utilize the gap between the compressor system 14 and the housing 1, making the internal layout of the air conditioner outdoor unit 100 more compact, effectively improving the space utilization rate and reducing the installation cost.

[0048] In some embodiments, the second sub-cavity 112 includes an expansion cavity, which is formed by protruding from the side of the second sub-cavity 112 away from the first sub-cavity 111, and at least a portion of the electronic control system 2 is located within the expansion cavity.

[0049] Specifically, the second sub-cavity 112 is used to accommodate some components inside the outdoor unit 100 of the air conditioner. An expansion cavity is provided inside the second sub-cavity 112, that is, the expansion cavity is part of the second sub-cavity 112 and can also be used to accommodate some components inside the outdoor unit 100 of the air conditioner. The expansion cavity is formed by protruding on the side of the second sub-cavity 112 away from the first sub-cavity 111, so that the expansion cavity is located on the right side of the second sub-cavity 112, so that the first sub-cavity 111 and the expansion cavity are separated by the second sub-cavity 112, avoiding interference between the first sub-cavity 111 and the expansion cavity, which would cause the internal space of the first sub-cavity 111 to become smaller. Furthermore, the expansion cavity extends from the second sub-cavity 112 to the side away from the second sub-cavity 112, so that the expansion cavity can be used as an extension of the second sub-cavity 112 to increase the internal space of the second sub-cavity 112, so as to facilitate the installation of some components inside the outdoor unit 100 in the second sub-cavity 112.

[0050] Furthermore, at least a portion of the electronic control system 2 is located within the expansion cavity, meaning that part or all of the electronic control system 2 can be placed within the expansion cavity. Thus, by providing the second sub-cavity 112 and the expansion cavity, it can be ensured that the electronic control system 2 can be installed.

[0051] In some embodiments, the housing 1 includes a removable service cover 15, and an expansion cavity is formed within the service cover 15.

[0052] Specifically, the housing 1 is used to protect the components housed inside the outdoor unit 100 of the air conditioner. The housing 1 includes a removable maintenance cover 15, meaning that the maintenance cover 15, as part of the housing 1, can also be used to protect the components inside the outdoor unit 100. The maintenance cover 15 is designed to be removable, allowing for easy connection or separation from the housing 1. When the maintenance cover 15 is connected to the housing 1, the housing 1 and the maintenance cover 15 together protect the components inside the outdoor unit 100. When the maintenance cover 15 is separated from the housing 1, it allows maintenance personnel to easily inspect and repair the components inside the outdoor unit 100. The housing 1 and the maintenance cover 15 can be connected using bolts or other connecting parts, and the connection method is simple, reliable, and easy to operate.

[0053] Furthermore, the expansion cavity is formed within the maintenance cover 15, which can be constructed as a box, allowing the expansion cavity to be formed within the maintenance cover 15. This facilitates the installation of the electronic control system 2 and protects it using the maintenance cover 15. The maintenance cover 15 is also detachable, which facilitates the installation and maintenance of the electronic control system 2. Additionally, the projected area of ​​the maintenance cover 15 in the left-right direction is larger than the projected area of ​​the electronic control system 2 in the left-right direction, further improving the convenience of installing or maintaining the electronic control system 2.

[0054] In addition, in actual design, a separate maintenance cover 15 may not be provided. Instead, a side panel that can be completely detached may be used to facilitate the installation or maintenance of the electronic control system 2, etc.

[0055] In some embodiments, the maintenance cover 15 is further provided with a handle groove 151.

[0056] Specifically, the maintenance cover 15, as part of the housing 1, can be used to protect the components inside the outdoor unit 100 of the air conditioner. The maintenance cover 15 is detachable from the housing 1 to facilitate the inspection and maintenance of the components inside the outdoor unit 100, such as... Figure 4As shown, a handle groove 151 is provided on the maintenance cover 15. The handle groove 151 is constructed to be recessed from the outer surface of the maintenance cover 15 to the inside of the expansion cavity, so as to provide a position for maintenance personnel to apply force. When it is necessary to remove the maintenance cover 15, the maintenance personnel can first remove the connector used to connect the housing 1 and the maintenance cover 15, and then pull the maintenance cover 15 through the handle groove 151 to easily remove the maintenance cover 15. The handle groove 151 can be constructed to adapt to the shape of the human hand to improve the convenience of operation.

[0057] In some embodiments, the housing 1 is further provided with a first partition 20, which is located between the electronic control system 2 and the compressor system 14 and separates the electronic control system 2 and the compressor system 14.

[0058] Specifically, the electronic control system 2 and the compressor system 14 are distributed in the left-right direction. A first partition 20 is also provided inside the housing 1. The first partition 20 is placed between the electronic control system 2 and the compressor system 14, which can separate the electronic control system 2 and the compressor system 14 to protect the compressor system 14. This prevents the flames from rushing towards the compressor system 14 when the electronic control system 2 catches fire due to excessive temperature or other unexpected situations, thereby avoiding the flames from igniting the compressor system 14 and improving the safety of the outdoor unit 100 of the air conditioner.

[0059] The first partition 20 can be constructed as a plate to increase the installation area of ​​the first partition 20, thereby improving the reliability of separating the compressor system 14 and the electronic control system 2 using the first partition 20, which can improve the reliability of protecting the compressor system 14 using the first partition 20. The first partition 20 can be made of metal or other flame-retardant materials to improve the reliability of protecting the compressor system 14.

[0060] In some embodiments, the housing 1 is further provided with a partition baffle 16, at least a portion of the electrical control system 2 is located above the partition baffle 16, and is used to separate the heat exchanger 13 from the electrical control system 2.

[0061] Specifically, at least a portion of the electrical control system 2 can be positioned above the partition baffle 16, meaning that part or all of the electrical control system 2 can be positioned above the partition baffle 16 to separate the heat exchanger 13 from the electrical control system 2. This partition baffle 16 can protect the electrical control system 2, preventing damage or failure of the electrical control system 2 in the event of an accidental leak of high-pressure refrigerant from the heat exchanger 13. Furthermore, the partition baffle 16 can be constructed as a plate to increase its installation area, thereby improving the reliability of separating the electrical control system 2 from the heat exchanger 13 using the partition baffle 16, and thus improving the reliability of protecting the electrical control system 2 using the partition baffle 16.

[0062] For example, such as Figure 2 As shown, the electronic control system 2 is completely located above the partition baffle 16, and the heat exchanger 13 is located below the partition baffle 16. The partition baffle 16 can separate the electronic control system 2 and the heat exchanger 13, thereby effectively reducing the risk of high-pressure refrigerant flowing to the electronic control system 2 and further improving the safety of the outdoor unit 100 of the air conditioner.

[0063] In some embodiments, the electronic control system 2 includes a sealed housing 21, which contains components; wherein, the heat exchanger 13 is provided with a refrigerant pipeline 131, which includes at least two pipe sections 1311 welded together; the sealed housing 21 is located above the partition baffle 16, and the refrigerant pipeline 131 is located below the partition baffle 16 and separated from the sealed housing 21.

[0064] Specifically, the electronic control system 2 is used to command and coordinate the operation of various components within the air conditioning equipment. The electronic control system 2 includes a sealed housing 21, within which components are installed. That is, components are installed in the electronic control system 2, allowing the electronic control system 2 to control the operation of various components within the air conditioning equipment through these components. This ensures that the air conditioning equipment can effectively exchange heat, thereby realizing the cooling or heating function of the air conditioning equipment. Furthermore, by placing the components within the sealed housing 21, the components can be sealed, protecting them from corrosion by moisture and dust, which helps to extend the service life of the components and thus improves the reliability and lifespan of the electronic control system 2.

[0065] The heat exchanger 13 is provided with a refrigerant pipeline 131, which allows the refrigerant to flow inside it and exchange heat with the external environment during the flow to regulate the indoor temperature. The refrigerant pipeline 131 includes at least two pipe sections 1311 that are welded together. That is, the number of pipe sections 1311 in the refrigerant pipeline 131 can be two, three or more. By connecting at least two pipe sections 1311 by welding, the connection reliability between adjacent pipe sections 1311 can be ensured, so that the refrigerant can flow between at least two pipe sections 1311 in sequence to facilitate heat exchange with the external environment.

[0066] Furthermore, by placing the sealed box 21 above the partition baffle 16 and the refrigerant pipe 131 below the partition baffle 16, the partition baffle 16 can separate the sealed box 21 from the refrigerant pipe 131, thereby protecting the sealed box 21 and preventing the weld between two adjacent pipe sections 1311 from breaking, which would cause high-pressure refrigerant to flow into the sealed box 21 and damage or failure of the internal components of the sealed box 21.

[0067] In some embodiments, the housing 1 is further provided with a top baffle 17, which covers the top of the compressor system 14 and separates the top of the compressor system 14 from the top of the electronic control system 2.

[0068] Specifically, the top baffle 17 is used to shield and protect the compressor system 14. By placing the top baffle 17 above the compressor system 14, the compressor system 14 can be shielded and protected from above. The top baffle 17 can also separate the top of the compressor system 14 from the top of the electronic control system 2, thereby providing further protection for the compressor system 14. This prevents flames from rushing towards the compressor system 14 in the event of a fire caused by excessive temperature or other unexpected circumstances in the electronic control system 2, thus avoiding the flames igniting the compressor system 14 and improving the safety of the outdoor unit 100. The top baffle 17 can be constructed as a plate to increase its installation area and improve the reliability of protecting the compressor system 14 with the top baffle 17. The top baffle 17 can be made of metal or other flame-retardant materials, such as flame-retardant ABS.

[0069] Additionally, it should be noted that a filler is typically placed above the compressor system 14. This filler can reduce vibration and noise during compressor system 14 operation and also provide some heat insulation, reducing the impact of heat generated by compressor system 14 on the surrounding environment. The common filler material is sponge, which is flammable. If the electronic control system 2 catches fire accidentally, it can ignite the sponge. A top baffle 17 is placed above the compressor system 14 to separate the sponge from the compressor system 14, preventing the flames from the ignited sponge from further igniting the compressor system 14, thereby effectively improving the safety of the outdoor unit 100.

[0070] In some embodiments, the housing 1 is further provided with a middle partition 18, and the first sub-cavity 111 and the second sub-cavity 112 are respectively located on both sides of the middle partition 18.

[0071] Specifically, the housing 1 has an installation cavity 11, which includes a first sub-cavity 111 and a second sub-cavity 112 distributed in the left-right direction. The first sub-cavity 111 and the second sub-cavity 112 can jointly install the components inside the outdoor unit 100 of the air conditioner. A middle partition 18 is also provided inside the housing 1. The first sub-cavity 111 and the second sub-cavity 112 are located on both sides of the middle partition 18, so that the middle partition 18 can be set vertically to separate the installation cavity 11 into the first sub-cavity 111 and the second sub-cavity 112. In other words, the middle partition 18 can separate the first sub-cavity 111 and the second sub-cavity 112, so that the components inside the outdoor unit 100 of the air conditioner can be arranged neatly and orderly, which is convenient for later maintenance.

[0072] In some embodiments, the housing 1 is provided with an air inlet 191 communicating with the second sub-cavity 112, and the intermediate partition 18 is provided with an air intake 181 communicating between the first sub-cavity 111 and the second sub-cavity 112. An air intake channel is formed between the air inlet 191 and the air intake 181, and the air intake channel is adapted to exchange heat with the electronic control system 2.

[0073] Specifically, an air inlet 191 is provided on the housing 1 to allow external airflow to enter the interior of the housing 1. The air inlet 191 is connected to the second sub-cavity 112 so that airflow can flow from the external environment to the second sub-cavity 112 through the air inlet 191. An air intake 181 is provided on the intermediate partition 18 to connect the first sub-cavity 111 and the second sub-cavity 112 so that airflow in the second sub-cavity 112 can flow further to the first sub-cavity 111 through the air intake 181. An air intake channel is formed between the air inlet 191 and the air intake 181, that is, the air intake channel is provided in the second sub-cavity 112. Airflow can flow from the air inlet 191 to the air intake 181 in the second sub-cavity 112 along the air intake channel. Thus, external airflow can enter the second sub-cavity 112 from the air inlet 191, flow along the air intake channel in the second sub-cavity 112 to the air intake 181 and enter the first sub-cavity 111.

[0074] It should be noted that an air conditioning fan blade 12 is provided in the first sub-cavity 111. The air conditioning fan blade 12 can blow the airflow in the first sub-cavity 111 out of the housing 1, thereby realizing the unidirectional flow of airflow in the housing 1.

[0075] Furthermore, the electronic control system 2 generates heat during operation. If this heat cannot be effectively dissipated, it will cause the electronic control system 2 to overheat, affecting its performance and reliability, and even damaging components. The air inlet channel is suitable for heat exchange with the electronic control system 2. That is, when the airflow flows along the air inlet channel from the air inlet 191 to the air intake 181, it can exchange heat with the electronic control system 2 in the second sub-cavity 112 to cool down the electronic control system 2, improve the safety and reliability of the electronic control system 2, and thus improve the cooling and heating efficiency of the air conditioning equipment. Moreover, the airflow within the housing 1 is unidirectional, which can improve the reliability of cooling the electronic control system 2. It should be noted that multiple air inlets 191 can be provided to improve the efficiency of cooling the electronic control system 2.

[0076] In some embodiments, the air inlet 191 is located below the compressor system 14, the air intake 181 and the electronic control system 2 are distributed in the left and right directions, and the air intake 181 and the electronic control system 2 are located on both sides of the compressor system 14 respectively. The airflow at the air inlet 191 is adapted to flow upward towards the electronic control system 2 and the compressor system 14 and then flow towards the air intake 181.

[0077] Specifically, by placing the air inlet 191 below the compressor system 14, the air inlet 191 is located in the lower area of ​​the outdoor unit 100 of the air conditioner. This reduces the possibility of debris such as leaves and paper scraps entering the outdoor unit 100, and also helps to reduce the accumulation of dust on the heat exchanger 13. It also helps to prevent rainwater from directly entering the outdoor unit 100, thereby protecting the internal components of the outdoor unit 100. At the same time, by distributing the air intake 181 and the electronic control system 2 in the left-right direction, and placing the air intake 181 and the electronic control system 2 on both sides of the compressor system 14, the airflow after exchanging heat with the electronic control system 2 can pass through the area where the compressor system 14 is located while flowing towards the air intake 181. This means that it can also exchange heat with the compressor system 14, thereby improving the safety of the compressor system 14.

[0078] Furthermore, the airflow at the air inlet 191 can flow towards the electronic control system 2 and the compressor system 14 and then towards the air intake 181, thus placing both the electronic control system 2 and the compressor system 14 in the airflow path. This allows the airflow to exchange heat with the electronic control system 2 and the compressor system 14 as it flows from the air inlet 191 to the air intake 181, thereby improving the reliability and safety of the operation of the electronic control system 2 and the compressor system 14.

[0079] In some embodiments, the housing 1 includes a removable panel 19, and an air inlet 191 is disposed on the panel 19.

[0080] Specifically, the housing 1 is used to protect the components housed inside the outdoor unit 100 of the air conditioner. The housing 1 includes a detachable panel 19, meaning that the panel 19, as part of the housing 1, can also be used to protect the components inside the outdoor unit 100. The detachable design of the panel 19 facilitates its connection to or separation from the housing 1. When the panel 19 is connected to the housing 1, the housing 1 and the panel 19 together protect the components inside the outdoor unit 100. When the panel 19 is separated from the housing 1, maintenance personnel can easily inspect or replace the components inside the outdoor unit 100 or the housing 1. The housing 1 and the panel 19 can be connected using bolts or other fasteners, and the connection method is simple, reliable, and easy to operate.

[0081] And, as Figure 3 As shown, by setting the air inlet 191 on the panel 19, the inner and outer sides of the housing 1 can be connected through the air inlet 191, and the external environment can be connected to the second sub-cavity 112. This allows external airflow to enter the second sub-cavity 112 from the air inlet 191, so as to exchange heat with the electronic control system 2 in the second sub-cavity 112, thereby improving the safety and reliability of the electronic control system 2 and improving the cooling and heating efficiency of the air conditioning equipment.

[0082] And, such as Figures 1-4 As shown, a base 3 is also connected to the bottom of the housing 1. The base 3 is used to fix the outdoor unit 100 of the air conditioner to prevent the outdoor unit 100 of the air conditioner from falling due to natural factors such as wind and earthquakes, so as to avoid personal and property damage. There are two bases 3, and the two bases 3 are set at a distance from each other at the bottom of the housing 1, which can improve the reliability and stability of fixing the outdoor unit 100 of the air conditioner.

[0083] This utility model also proposes an air conditioning device.

[0084] The air conditioning equipment according to the embodiments of this utility model includes an outdoor unit 100 of any of the above-mentioned features. By providing the housing 1, the internal components of the outdoor unit 100 can be installed and protected, ensuring the reliable operation of each component. Furthermore, the mounting cavity 11 includes a first sub-cavity 111 and a second sub-cavity 112, allowing for the neat arrangement of the internal components of the outdoor unit 100 for easier maintenance. Additionally, placing the compressor system 14 above the heat exchanger 13 improves space utilization and reduces installation costs. Distributing the electronic control system 2 and the compressor system 14 in the left-right direction makes the layout more compact, further improving space utilization and effectively reducing installation costs.

[0085] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "illustrative embodiment," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0086] Although embodiments of the present invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the claims and their equivalents.

Claims

1. An air conditioner outdoor unit characterized by comprising: The application relates to an air conditioner outdoor unit. The application relates to an air conditioner outdoor unit. The application relates to an air conditioner outdoor unit.

2. The air conditioner outdoor unit according to claim 1, characterized by The application relates to an air conditioner outdoor unit.

3. The air conditioner outdoor unit according to claim 2, characterized by The application relates to an air conditioner outdoor unit.

4. The air conditioner outdoor unit according to claim 3, characterized by The application relates to an air conditioner outdoor unit.

5. The air conditioner outdoor unit according to claim 4, characterized in that, The application relates to an air conditioner outdoor unit.

6. The air conditioner outdoor unit according to claim 1, characterized by The application relates to an air conditioner outdoor unit.

7. The air conditioner outdoor unit according to claim 6, characterized by The application relates to an air conditioner outdoor unit.

8. The air conditioner outdoor unit according to claim 7, characterized by The application relates to an air conditioner outdoor unit. The application relates to an air conditioner outdoor unit.

9. The air conditioner outdoor unit according to any one of claims 6-8, characterized by, The application relates to an air conditioner outdoor unit.

10. The air conditioner outdoor unit according to claim 1, characterized by The application relates to an air conditioner outdoor unit.

11. The air conditioner outdoor unit according to claim 10, characterized by The application relates to an air conditioner outdoor unit.

12. The air conditioner outdoor unit according to claim 11, characterized by The application relates to an air conditioner outdoor unit. 13.The outdoor unit of claim 11, wherein The application relates to an air conditioner outdoor unit.

14. An air conditioning apparatus characterized by comprising: The application relates to an air conditioner outdoor unit. The application relates to an air conditioner outdoor unit. The application relates to an air conditioner outdoor unit. The application relates to an air conditioner outdoor unit. The application relates to an air conditioner outdoor unit. The application relates to an air conditioner outdoor unit. The application relates to an air conditioner outdoor unit. The application relates to an air conditioner outdoor unit. The application relates to an air conditioner outdoor unit. The application relates to an air conditioner outdoor unit. The application relates to an air conditioner outdoor unit. The application relates to an air conditioner outdoor unit. The application relates to an air conditioner outdoor unit. The application relates to an air conditioner outdoor unit. The application relates to an air conditioner outdoor unit. 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