Air conditioner

By clearly dividing the cable groups into sections and arranging them on both sides of the casing in the air conditioner, and using a specific cable routing structure, the problem of difficult cable disassembly and assembly during air conditioner maintenance is solved, improving disassembly and assembly efficiency and signal stability, and reducing the risk of equipment damage.

CN223512253UActive Publication Date: 2025-11-04GD MIDEA AIR CONDITIONING EQUIP CO LTD +1
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Patent Information

Application Number
CN202422825740.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-19
Publication Date
2025-11-04
Estimated Expiration
2034-11-19

AI Technical Summary

Technical Problem

In the existing technology, it is inconvenient to disassemble and install cables during the maintenance of air conditioners, resulting in low disassembly and assembly efficiency. Furthermore, the tangled cables can easily lead to difficulties in disassembly and assembly and the risk of damage.

Method used

The cable groups of the air conditioner are designed to be located on opposite sides of the casing. Through clear partitioning, crossing or overlapping is avoided. Specific cable holes and cable tray structures are used to ensure that the cable groups are arranged separately and clearly identifiable.

Benefits of technology

It improves maintenance efficiency, reduces the risk of misoperation and equipment damage, ensures the stability and cleanliness of signal transmission, and reduces heat accumulation and electromagnetic interference.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an air conditioner. The air conditioner comprises a shell; the function module is arranged in the shell; the electric control box is arranged in the shell; the electric control board is arranged in the electric control box; the first cable group is arranged in the shell, one end of the first cable group is electrically connected with the function module, and the other end of the first cable group is electrically connected with the electric control board; the second cable group is partially arranged in the shell, one end of the second cable group penetrates through the shell, and the other end of the second cable group is electrically connected with the electric control board; wherein the first cable group and the second cable group are respectively positioned on two opposite sides of the shell.
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Description

Technical Field

[0001] This application belongs to the field of electrical technology, specifically relating to an air conditioner. Background Technology

[0002] An air conditioner, or air conditioner, is a device that uses artificial means to regulate and control parameters such as temperature, humidity, and airflow within a building or structure. Air conditioning is an indispensable part of modern life, providing people with coolness and warmth.

[0003] Air conditioners have an electronic control board, which is connected to the air conditioner's functional modules, external power supply, and outdoor unit via multiple cables. However, in existing technology, it is inconvenient to disassemble and reassemble the cables when the air conditioner needs maintenance, thus reducing the efficiency of disassembly and assembly. Utility Model Content

[0004] To address the aforementioned technical problems, this utility model provides an air conditioner that aims to at least partially solve the technical problem of inconvenient cable disassembly and assembly, which reduces disassembly and assembly efficiency when air conditioners need to be repaired.

[0005] The technical solution of this utility model is as follows:

[0006] An air conditioner, characterized in that it comprises: a housing; a functional module disposed within the housing; an electrical control box disposed within the housing; an electrical control board disposed within the electrical control box; a first cable group disposed within the housing, one end of the first cable group being electrically connected to the functional module and the other end being electrically connected to the electrical control board; and a second cable group partially disposed within the housing, one end of the second cable group passing through the housing and the other end being electrically connected to the electrical control board; wherein the first cable group and the second cable group are located on opposite sides of the housing.

[0007] In some implementations, the housing has a first mounting area, a second mounting area, and a third mounting area, with the first mounting area and the third mounting area located on opposite sides of the second mounting area. The functional module is located in the first mounting area, the electrical control box is located in the second mounting area, and the third mounting area has a wire hole. The first cable group is located in the first mounting area, and the second cable group passes through the wire hole.

[0008] In some implementations, the electrical control box has a first wire through hole and a second wire through hole arranged opposite to each other, and the electrical control board is located between the first wire through hole and the second wire through hole; the first cable group passes through the first wire through hole and is electrically connected to the electrical control board; the second cable group passes through the second wire through hole and is electrically connected to the electrical control board.

[0009] In some implementations, the first wire hole is closer to the functional module than the second wire hole.

[0010] In some embodiments, the air conditioner further includes: a health module disposed within the housing and located on the same side of the housing as the second cable group; wherein the electrical control box is located between the health module and the functional module.

[0011] In some implementations, the electrical control box has a second wiring hole and a third wiring hole, the third wiring hole and the second wiring hole being located on the same side of the electrical control box and spaced apart. The air conditioner also includes: a first cable disposed inside the housing, one end of the first cable being electrically connected to the health module, and the other end passing through the third wiring hole and being electrically connected to the electrical control board; and a second cable group passing through the second wiring hole and being electrically connected to the electrical control board.

[0012] In some embodiments, the electrical control box includes: a box body disposed within the housing; a box cover detachably connected to the box body to form a receiving cavity; and a mounting member disposed within the receiving cavity and connected to the electrical control board.

[0013] In some embodiments, the electrical control box further includes: a first wire guide buckle disposed on the mounting member and forming a first wire guide groove with the inner wall of the box body; a second wire guide buckle disposed on the mounting member and located on opposite sides of the mounting member, the second wire guide buckle having a first opening; and a third wire guide buckle spaced apart from the second wire guide buckle on the mounting member and located on the same side of the mounting member, the third wire guide buckle having a second opening, the orientation of the first opening being opposite to the orientation of the second opening to form a second wire guide groove; wherein the first wire guide groove and the second wire guide groove are located on opposite sides of the mounting member, the first cable group passes through the first wire guide groove and is electrically connected to the electrical control board, and the second cable group passes through the second wire guide groove and is electrically connected to the electrical control board.

[0014] In some implementations, the electrical control box further includes: a fourth wire guide, one end of which is connected to the end face of the first wire guide away from the first wire guide groove, and the other end has a guide surface, the guide surface being spaced apart from the first wire guide, and the fourth wire guide having a third wire guide groove; the air conditioner further includes: a motor connector, disposed within the receiving cavity; and a second cable, one end of which is electrically connected to the motor connector, and the other end passing through the third wire guide groove and electrically connected to the electrical control board.

[0015] In some implementations, the mounting component has a first mounting slot and a second mounting slot, the first mounting slot, the second mounting slot, and the second cable group are located on the same side of the electronic control board. The air conditioner further includes: a second magnetic ring, embedded in the first mounting slot; a third cable, one end of which is electrically connected to the second magnetic ring, and the other end of which passes through the second cable tray and is electrically connected to the electronic control board; a reactor, embedded in the second mounting slot; and a fourth cable, one end of which is electrically connected to the reactor, and the other end of which passes through the second cable tray and is electrically connected to the electronic control board.

[0016] In some implementations, the mounting component has a mounting slot located on the same side of the electronic control board as the first cable group. The air conditioner also includes a second temperature sensor embedded in the mounting slot and electrically connected to the electronic control board.

[0017] In some implementations, the air conditioner further includes a humidity sensor connected to the electrical control box and located outside the electrical control box; wherein the humidity sensor is electrically connected to the electrical control board and is located on the same side of the electrical control board as the first cable group.

[0018] The air conditioner provided according to one or more embodiments of this application has functional modules housed within a casing, and an electrical control box housed within the casing. The casing supports and accommodates the functional modules and the electrical control box, providing a robust physical barrier that effectively prevents damage to the functional modules, collisions, or compression from external impacts, thus ensuring their safety and aesthetics. The electrical control board is housed within the electrical control box, which also provides a robust physical barrier, effectively preventing damage to the electrical control board from external impacts, collisions, or compression, thus ensuring its safety.

[0019] The first cable group is located inside the housing. One end of the first cable group is electrically connected to the functional module, and the other end is electrically connected to the electronic control board. The first cable group can realize signal transmission and power supply between the functional module and the electronic control board to ensure the normal operation of the functional module.

[0020] The second cable group is located inside the housing. One end of the second cable group passes through the housing, and the other end is electrically connected to the control board. The other part of the first cable group is located outside the housing to connect to the external power supply and the outdoor unit of the air conditioner. This enables the supply of power to the control board and also enables signal transmission and power delivery between the outdoor unit of the air conditioner and the control board, ensuring the normal operation of the air conditioner.

[0021] The first and second cable groups are located on opposite sides of the housing, preventing them from crossing or overlapping inside the housing. The clear division between the first and second cable groups ensures neat wiring, allowing maintenance personnel to quickly identify and locate them without spending extra time searching and confirming. This intuitive visibility reduces the time spent searching and confirming during maintenance, improves maintenance efficiency, and reduces errors caused by misoperation or confusion.

[0022] Because the first and second cable groups are clearly separated, they do not interfere with each other. When inspecting the control board, maintenance personnel can easily approach and operate the first and / or second cable groups, avoiding the difficulties or risks of disassembly and assembly caused by the mixing or overlap of the first and second cable groups. There is no need to worry about operational obstacles caused by cable crossing, which makes maintenance and replacement convenient, improves disassembly and assembly speed, reduces the risk of equipment damage due to improper operation, and ensures the smooth progress of the maintenance process.

[0023] Because the first and second cable groups are located on opposite sides of the housing, their dispersed arrangement within the housing reduces heat buildup caused by dense cable distribution, promoting more even heat distribution and dissipation. Furthermore, separating the first and second cable groups reduces electromagnetic interference between them, improving the accuracy and stability of signal transmission. Attached Figure Description

[0024] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0025] Figure 1 These are schematic diagrams of the structure of an air conditioner according to some embodiments;

[0026] Figure 2 for Figure 1 A bottom view of a central air conditioner;

[0027] Figure 3 for Figure 1 A cross-sectional view of a central air conditioner;

[0028] Figure 4 for Figure 1 A bottom view of the central air conditioner after the panel has been removed;

[0029] Figure 5 for Figure 4 Wiring diagram of the functional modules of a central air conditioner;

[0030] Figure 6 for Figure 1 A schematic diagram of the electrical control box of a central air conditioner;

[0031] Figure 7 for Figure 6 A schematic diagram showing the structure of the electrical control box with its cover removed.

[0032] Figure 8 for Figure 7 A schematic diagram of the mounting components for the central electrical control box;

[0033] Figure 9 for Figure 8 Enlarged view of point A of the mounting component;

[0034] Figure 10 for Figure 8 Enlarged schematic diagram of point B on the mounting component;

[0035] Figure 11 for Figure 8 Enlarged schematic diagram of point C of the mounting component;

[0036] Figure 12 for Figure 7 Another structural diagram of the mounting component;

[0037] Figure 13 for Figure 12 Enlarged view of point D;

[0038] Figure 14 for Figure 7 A schematic diagram of the structure of the central control box;

[0039] Figure 15 for Figure 6 A schematic diagram of the cover of the central control box.

[0040] In the attached image:

[0041] Housing 10, first mounting area 11, second mounting area 12, third mounting area 13, wiring hole 14, air outlet 15, panel 16;

[0042] Electrical control box 20, first wire hole 21, second wire hole 22, third wire hole 23, first reinforcing rib 24, box body 25, box cover 26, clearance groove 261, mounting part 27, first mounting groove 271, second mounting groove 272, mounting buckle 273, slot 274, limiting part 275, mounting slot 276, first wire buckle 28, second wire buckle 29, third wire buckle 210, reinforcing part 211, fourth wire buckle 212, guide surface 2121, third wire groove 2122, first connecting part 2123, support part 2124, second connecting part 2125, guide part 2126, fourth wire hole 213, second reinforcing rib 214, mounting hole 215;

[0043] 30 electronic control board;

[0044] First cable group 40, fifth cable 41, sixth cable 42, seventh cable 43, eighth cable 44;

[0045] Second cable group 50, power cord 51, outdoor unit connection cable 52, wired controller connection cable 53;

[0046] Functional module 60, fan assembly 61, water pump 62, float switch 63, heat exchanger 64, first temperature sensor 65, first driver 66;

[0047] Health Module 70;

[0048] First cable 80;

[0049] 90mm motor connector;

[0050] Second cable 100;

[0051] Second magnetic ring 110;

[0052] Third cable 120;

[0053] Reactor 130;

[0054] Fourth cable 140;

[0055] Second temperature sensor 150;

[0056] Display panel 160;

[0057] Air guide assembly 170;

[0058] Humidity sensor 180;

[0059] Water tray 190. Detailed Implementation

[0060] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0061] It should be noted that all directional indications in this utility model embodiment are only used to explain the relative positional relationship and movement of each component in a specific posture. If the specific posture changes, the directional indications will also change accordingly.

[0062] In this utility model, unless otherwise explicitly specified and limited, the terms "connection," "fixing," etc., should be interpreted broadly. For example, "fixing" can mean a fixed connection, a detachable connection, or an integral part; it can mean a mechanical connection or an electrical connection; it can mean a direct connection or an indirect connection through an intermediate medium; it can mean the internal communication of two components or the interaction between two components, unless otherwise explicitly limited. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0063] Furthermore, in this utility model, descriptions involving "first," "second," etc., are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of that feature. Additionally, the technical solutions of the various embodiments can be combined with each other, but only on the basis of being achievable by those skilled in the art. When the combination of technical solutions is contradictory or impossible to implement, such a combination of technical solutions should be considered non-existent and not within the scope of protection claimed by this utility model.

[0064] In order to control the air conditioner, the control board is connected to various functional components inside the air conditioner, the external power supply, and the outdoor unit of the air conditioner through various cables to realize the transmission of signals and the delivery of electrical energy, so that the air conditioner can cool or heat normally.

[0065] In related technologies, various cables are tangled together inside the housing, making it difficult to identify the connected cables when the control board needs maintenance, increasing the time spent searching and confirming during the maintenance process. Moreover, when the cable that needs to be disassembled is found, the multiple cables intertwined can interfere with each other, making disassembly difficult and even damaging other cables that do not need to be disassembled, thus reducing the efficiency of disassembly and assembly.

[0066] Based on the above-mentioned technical problems, this application provides an air conditioner that aims to at least partially solve the technical problem that it is inconvenient to disassemble and assemble cables when the air conditioner needs to be repaired, thus reducing the efficiency of disassembly and assembly.

[0067] The design concept of this application is that the first cable group and the second cable group are located on opposite sides of the housing to avoid the first cable group and the second cable group crossing or overlapping inside the housing, thus achieving clear partitioning of the first cable group and the second cable group and improving disassembly and assembly efficiency.

[0068] Based on the above design concept, in the first aspect of this application, an embodiment of this application provides an air conditioner. Combined with... Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 The air conditioner includes: a housing 10, a functional module 60, an electrical control box 20, an electrical control board 30, a first cable group 40, and a second cable group 50. The functional module 60 is located inside the housing 10. The electrical control box 20 is located inside the housing 10. The electrical control board 30 is located inside the electrical control box 20. The first cable group 40 is located inside the housing 10, with one end electrically connected to the functional module 60 and the other end electrically connected to the electrical control board 30. The second cable group 50 is partially located inside the housing 10, with one end passing through the housing 10 and the other end electrically connected to the electrical control board 30. The first cable group 40 and the second cable group 50 are located on opposite sides of the housing 10.

[0069] The functional module 60 and the electrical control box 20 are both housed within the housing 10. The housing 10 supports and accommodates the functional module 60 and the electrical control box 20, providing a robust physical barrier that effectively prevents damage to the functional module 60, the electrical control box 20 from external impacts, collisions, or compression, thus ensuring their safety and aesthetics. The electrical control board 30 is housed within the electrical control box 20. The electrical control box 20 houses and supports the electrical control board 30, providing a robust physical barrier that effectively prevents damage to the electrical control board 30 from external impacts, collisions, or compression, thus ensuring its safety.

[0070] The first cable group 40 is located inside the housing 10. One end of the first cable group 40 is electrically connected to the functional module 60, and the other end is electrically connected to the electronic control board 30. The first cable group 40 can realize signal transmission and power transmission between the functional module 60 and the electronic control board 30 to ensure the normal operation of the functional module 60.

[0071] The second cable group 50 is partially located inside the housing 10. One end of the second cable group 50 passes through the housing 10, and the other end is electrically connected to the control board 30. The other part of the first cable group 40 is located outside the housing 10 to connect to the external power supply and the outdoor unit of the air conditioner. This enables the power supply to the control board 30, and at the same time, it enables the signal transmission and power delivery between the outdoor unit of the air conditioner and the control board 30, ensuring the normal operation of the air conditioner.

[0072] The first cable group 40 and the second cable group 50 are located on opposite sides of the housing 10, respectively, to prevent the first cable group 40 and the second cable group 50 from crossing or overlapping inside the housing 10. The first cable group 40 and the second cable group 50 are clearly separated, ensuring the neatness of the wiring. This allows maintenance personnel to quickly identify and locate the first cable group 40 and the second cable group 50 without spending extra time searching and confirming. The intuitive visibility reduces the search and confirmation time during the maintenance process, improves maintenance efficiency, and reduces errors caused by misoperation or confusion.

[0073] Because the first cable group 40 and the second cable group 50 are clearly separated, they will not interfere with each other. When the control board 30 is being repaired, the maintenance personnel can easily approach and operate the first cable group 40 and / or the second cable group 50. This avoids the difficulties in disassembly or the risk of damage caused by the mixing or overlapping of the first cable group 40 and the second cable group 50. There is no need to worry about operational obstacles caused by cable crossing. Maintenance and replacement can be carried out conveniently, the disassembly and assembly speed is improved, the risk of equipment damage caused by improper operation is reduced, and the maintenance process is ensured to proceed smoothly.

[0074] Since the first cable group 40 and the second cable group 50 are located on opposite sides of the housing 10, their dispersed arrangement within the housing 10 reduces heat accumulation caused by dense cable distribution, thus promoting uniform heat distribution and dissipation. Furthermore, separating the first cable group 40 and the second cable group 50 reduces electromagnetic interference between them, improving the accuracy and stability of signal transmission.

[0075] Combination Figure 4 and Figure 5 In some embodiments, to clearly separate the first cable group 40 and the second cable group 50, the housing 10 has a first mounting area 11, a second mounting area 12, and a third mounting area 13. The first mounting area 11 and the third mounting area 13 are located on opposite sides of the second mounting area 13. The functional module 60 is located in the first mounting area 11, the electrical control box 20 is located in the second mounting area 12, and the third mounting area 13 has a wire-passing hole 14. The first cable group 40 is located in the first mounting area 11, and the second cable group 50 passes through the wire-passing hole 14.

[0076] The first cable group 40 can be wired within the first installation area 11. Since the functional module 60 is located in the first installation area 11, the first cable group 40 and the functional module 50 are located in the same installation area. The first cable group 40 can be directly electrically connected to the functional module 60, making the wiring of the first cable group 40 simpler and more direct. It does not require laying cables across multiple areas or complex spatial structures, thereby reducing installation difficulty and time costs.

[0077] The second cable group 50 can be wired within the third installation area 13 and pass through the cable hole 14 to exit the housing 10 to connect with the external power supply and the outdoor unit of the air conditioner. This allows the second cable group 50 and the first cable group 40 to be located in different installation areas within the housing 10, thus achieving a clear division between the first cable group 40 and the second cable group 50.

[0078] Combination Figure 6 and Figure 7 In some embodiments, to further prevent the first cable group 40 and the second cable group 50 from crossing or overlapping within the housing 10, the electrical control box 20 has a first cable passage hole 21 and a second cable passage hole 22 disposed opposite to each other, and the electrical control board 30 is located between the first cable passage hole 21 and the second cable passage hole 22. The first cable group 40 passes through the first cable passage hole 21 and is electrically connected to the electrical control board 30. The second cable group 50 passes through the second cable passage hole 22 and is electrically connected to the electrical control board 30.

[0079] Since the first cable pass-through hole 21 and the second cable pass-through hole 22 are arranged opposite each other and are located at both ends of the control board 30, when the first cable group 40 passes through the first cable pass-through hole 21 and the second cable group 50 passes through the second cable pass-through hole 22, it can be ensured that the first cable group 40 and the second cable group 50 travel along a predetermined path inside the housing 10, so that the routing positions of the first cable group 40 and the second cable group 50 are different, realizing physical isolation, avoiding the crossing or overlap between the first cable group 40 and the second cable group 50, and improving the disassembly and assembly efficiency.

[0080] Since the first cable group 40 and the second cable group 50 are respectively passed through the first wire passage hole 21 and the second wire passage hole 22, the installer can directly select the first cable group 40 and the second cable group 50 according to the first wire passage hole 21 and the second wire passage hole 22 when disassembling and assembling the first cable group 40 and the second cable group 50, so as to complete the disassembly and assembly work of the first cable group 40 and the second cable group 50 more quickly and accurately.

[0081] Combination Figure 4 and Figure 7In some embodiments, to facilitate the electrical connection between the first cable group 50 and the functional module 60, the first through hole 21 is closer to the functional module 60 than the second through hole 22. This allows the first cable group 50 to reach the installation position of the functional module 60 directly after passing through the first through hole 21. The first cable group 40 can be directly electrically connected to the functional module 60, making the wiring of the first cable group 40 simpler and more direct, eliminating the need to lay cables across multiple areas or complex spatial structures, thereby reducing installation difficulty and time costs. The second through hole 22 is farther away from the functional module 60, keeping the second cable group 50 away from the functional module 60 and the cable group 40, preventing them from crossing or overlapping, and also reducing electromagnetic interference between the second cable group 50 and the functional module 60.

[0082] Combination Figure 4 In some embodiments, for indoor sterilization and dust removal, the air conditioner further includes a health module 70. The health module 70 is located within the housing 10 and electrically connected to the control board 30 to facilitate signal transmission between the control board 30 and the health module 70. When the health module 70 is activated, it generates negative ions, positive and negative ions, and / or ion clouds, effectively removing dust, pollen, smoke, and other particles from the air, while simultaneously disrupting the biological structures of bacteria and viruses, achieving sterilization and disinfection, ensuring fresher and cleaner indoor air, and further improving the user experience. The health module 70 can be a positive and negative ion module or an ion cloud module, such as a Be (beryllium) ion cloud module.

[0083] Since the functional module 70 and the second cable group 50 are located on the same side of the housing 10, and the control box 20 is located between the health module 70 and the functional module 60, that is, the health module 70 and the functional module 60 are located at opposite ends of the control box 20, the health module 70 and the functional module 60 are kept at a certain distance in space. This allows the health module 70 to be kept away from the functional module 60. When the health module 70 is running for a long time, the possibility of negative ions, positive and negative ions and / or ion clouds generated by the health module 70 accumulating in the functional module 60 can be reduced, thus avoiding interference with the operation of the internal components of the functional module 60, ensuring good signal processing of the functional module 60, and ensuring the stability of the operation of the functional module 60.

[0084] Furthermore, since the health module 70 is far from the functional module 60, meaning that the health module 70 and the functional module 60 are located in different areas of the housing 10, the space inside the housing 10 can be fully utilized, improving the compactness of the product.

[0085] Combination Figure 7In some embodiments, to achieve electrical connection between the functional module 70 and the control board 30, the control box 20 is provided with a second wiring hole 22 and a third wiring hole 23. The third wiring hole 23 and the second wiring hole 22 are located on the same side of the control box 20 and are spaced apart. The air conditioner also includes a first cable 80. The first cable 80 is disposed inside the housing 10. One end of the first cable 80 is electrically connected to the health module 70, and the other end passes through the third wiring hole 23 and is electrically connected to the control board 30. A second cable group 50 passes through the second wiring hole 22 and is electrically connected to the control board 30.

[0086] The third wire hole 23 and the second wire hole 22 are located on the same side of the electrical control box 20. The first cable 80 passes through the third wire hole 23. That is to say, the first cable 80 and the first cable group 40 are located on opposite sides of the housing 10, so that the first cable 80 and the first cable group 40 are clearly separated and there is no crossing or overlap between them.

[0087] The third cable pass-through hole 23 is spaced apart from the second cable pass-through hole 22, ensuring clear routing of the first cable 80 and the second cable group 50, preventing interference between them. During maintenance of the control board 30, personnel can easily access and operate the first cable 80 and / or the second cable group 50, avoiding difficulties in disassembly or damage risks caused by the intertwining or overlapping of the first cable 80 and the second cable group 50. There is no need to worry about operational obstacles caused by cable tangling, facilitating maintenance and replacement, increasing disassembly and assembly speed, reducing the risk of equipment damage due to improper operation, and ensuring a smooth maintenance process. Simultaneously, the spaced arrangement of the first cable 80 and the second cable group 50 reduces electromagnetic interference between them, improving the accuracy and stability of signal transmission.

[0088] Specifically, the electrical control box 20 is provided with a first reinforcing rib 24, which is located between the third wire hole 23 and the second wire hole 22 to ensure the structural strength of the electrical control box 20.

[0089] Furthermore, the edges of the third wire hole 23 and the second wire hole 22 are both provided with overlapping edges to prevent the hole walls of the third wire hole 23 and the second wire hole 22 from scratching or cutting the first cable 80 and the second cable group 50, thus ensuring the safety of the first cable 80 and the second cable group 50.

[0090] The electrical control box 20 has a first notch that communicates with the second wire passage hole 22. The opening of the first notch is smaller than the diameter of the second wire passage hole 22 to form a constricted structure to prevent the second cable group 50 from coming out.

[0091] The electrical control box 20 has a second notch that communicates with the third wire passage hole 23. The opening of the second notch is smaller than the diameter of the third wire passage hole 23 to form a constricted structure to prevent the first cable 80 from coming out.

[0092] Combination Figure 6 and Figure 7 In some embodiments, for mounting the electronic control board 30, the electronic control box 20 includes a box body 25, a box cover 26, and a mounting member 27. The box body 25 is disposed within the housing 10. The box cover 26 is detachably connected to the box body 25 to form a receiving cavity. The mounting member 27 is disposed within the receiving cavity and connected to the electronic control board 30. Exemplarily, a first wire through hole 21, a second wire through hole 22, and a third wire through hole 23 are all formed in the box body 26.

[0093] The control board 30 is mounted on the mounting member 27, which supports and carries the control board 30. The mounting member 27 is installed inside the receiving cavity, and the cover 26 is connected to the box body 25 to form a closed receiving cavity. The cavity wall provides a robust physical barrier for the control board 30, effectively preventing damage caused by external impacts, collisions, or compression, and avoiding exposure of the control board 30, thus ensuring its safety.

[0094] Combination Figure 7 and Figure 8 In some embodiments, to facilitate the accommodating of the first cable group 40 and the second cable group 50 within the cavity for wiring, the electrical control box 20 further includes: a first wire guide buckle 28, a second wire guide buckle 29, and a third wire guide buckle 210. The first wire guide buckle 28 is disposed on the mounting member 27 and forms a first wire guide groove with the inner wall of the box. The second wire guide buckle 29 is disposed on the mounting member 27 and is located on opposite sides of the mounting member 27, respectively, and has a first opening. The third wire guide buckle 210 is spaced apart from the second wire guide buckle 29 and is located on the same side of the mounting member 27, and has a second opening. The orientation of the first opening is opposite to the orientation of the second opening, forming a second wire guide groove. The first opening and the second opening are positioned opposite to each other.

[0095] The first cable group 40 is run through the first cable tray and electrically connected to the control board 30. The second cable group 50 is run through the second cable tray and electrically connected to the control board 30. Since the first and second cable trays are located on opposite sides of the mounting component 27, the first cable group 40 and the second cable group 50 are routed along opposite sides of the mounting component 27, avoiding crossing and confusion between them, making the entire cabling system clearer and neater. If repair or replacement of one of the first cable group 40 or the second cable group 50 is required, that cable group can be more easily located and accessed without interfering with other cable groups, avoiding mutual interference between the first cable group 40 and the second cable group 50, and improving the convenience and efficiency of maintenance.

[0096] The first cable tray can guide the first cable group 40 in an orderly manner, and the second cable tray can guide the second cable group 50 in an orderly manner, preventing the cables from being scattered randomly in the space, thereby improving the neatness and aesthetics of the overall layout.

[0097] The first cable group 40 and the second cable group 50 are routed along opposite sides of the mounting member 27, respectively, which realizes separate wiring. This can reduce electromagnetic interference between the first cable group 40 and the second cable group 50, which are routed along opposite sides of the mounting member 27, and improve the stability and accuracy of signal transmission.

[0098] Combination Figure 10 Specifically, the third wire pass buckle 210 can be located below the second wire pass buckle 29. The third wire pass buckle 210 is provided with a reinforcing member 211 to ensure the structural strength of the third wire pass hole 210.

[0099] Magnetic rings can be used to suppress electromagnetic interference. Under the influence of an external electromagnetic field, a magnetic ring generates magnetic reluctance. This reluctance absorbs and disperses electromagnetic radiation, thus reducing the transmission of interference signals. The magnetic ring absorbs and suppresses electromagnetic waves through its magnetic material. When electromagnetic waves pass through the ring, eddy currents are generated inside. These eddy currents dissipate the energy of the electromagnetic waves, thereby suppressing electromagnetic interference. Furthermore, the magnetic ring has high permeability, which guides and absorbs magnetic fields, forming a magnetic shielding layer. This guides interference signals to the area around the ring, protecting the affected equipment. The magnetic ring acts like a shield, keeping interference signals out and maintaining normal equipment operation. The magnetic ring also has a high magnetic saturation point. When the external magnetic field reaches a certain intensity, the permeability of the ring decreases, so it no longer absorbs the magnetic field but guides it to a region with lower magnetic permeability, reducing the transmission of interference signals.

[0100] Combination Figure 7In some embodiments, to reduce electromagnetic interference from the control board 30, the air conditioner further includes a motor connector 90 and a second cable 100. The motor connector 90 is disposed within a receiving cavity. One end of the second cable 100 is electrically connected to the motor connector 90, and the other end is electrically connected to the control board 30, so that the motor connector 90 can reduce electromagnetic interference from the control board 30.

[0101] To facilitate the routing of the second cable 100, combined with Figure 7 , Figure 8 and Figure 9 The electrical control box 20 also includes a fourth wire pass 212. One end of the fourth wire pass 212 is connected to the end face of the first wire pass 28 opposite to the first wire pass groove, and the other end has a guide surface 2121. The guide surface 2121 is spaced apart from the first wire pass 28. The fourth wire pass 212 has a third wire pass groove 2122. The second cable 100 can enter the third wire pass groove 2122 through the guide surface 2121. The third wire pass groove 2122 can guide the second cable 100 in an orderly manner, avoiding the cable from being scattered randomly in the space, thereby improving the neatness and aesthetics of the overall layout.

[0102] Since the third cable tray 2122 and the first cable tray are located on opposite sides of the first cable clip 28, the first cable group 40 and the second cable 100 are routed along opposite sides of the first cable clip 28, avoiding crossing and confusion between the first cable group 40 and the second cable 100, making the entire cabling system clearer and neater. If repair or replacement of either the first cable group 40 or the second cable 100 is required, that cable group can be more easily located and accessed without interfering with other cable groups, preventing mutual interference between the first cable group 40 and the second cable 100, and improving the convenience and efficiency of maintenance.

[0103] Specifically, the guide surface 2121 is inclined so that the second cable 100 can enter the third cable tray 2122.

[0104] Combination Figure 9Furthermore, to form the third cable tray 2122, a fourth cable catch 212 is provided on the end face of the first cable catch 28 opposite to the first cable tray. The fourth cable catch 212 includes: a first connecting portion 2123, a supporting portion 2124, a second connecting portion 2125, and a guiding portion 2126. The first connecting portion 2123 is connected to the end face of the first cable catch 28 opposite to the first cable tray. The supporting portion 2124 is connected to the first connecting portion 2123 at an angle and is spaced apart from the first cable catch 28 to form the third cable tray 2122. The second connecting portion 2125 is connected to the end face of the supporting portion 2124 opposite to the first connecting portion 2123. The guiding portion 2126 is inclined to the end face of the second connecting portion 2125 opposite to the supporting portion 2124 so that the guiding portion 2126 can guide the second cable 100 to enter the third cable tray 2122. Among them, the guide surface 2121 is located in the guide section 2126.

[0105] Specifically, the second connecting part 2125 has a first end connected to the support part 2124 and a second end connected to the guide part 2126. The distance between the first end of the second connecting part 2125 and the first wire pass buckle 28 is greater than the distance between the second end of the second connecting part 2125 and the first wire pass buckle 28, so as to form a narrowing structure, so as to facilitate the second cable 100 to enter the third wire pass groove 2122 and prevent the second cable 100 from coming out of the third wire pass groove 2122.

[0106] The guide portion 2126 has a third end and a fourth end connected to the second connecting portion 2125. The distance between the third end of the guide portion 2126 and the first wire pass buckle 28 is smaller than the distance between the fourth end of the guide portion 2126 and the first wire pass buckle 28, so that the guide portion 2126 can guide the second cable 100 so that the second cable 100 can enter the third wire pass groove 2122.

[0107] Combination Figure 7 , Figure 12 and Figure 13In some embodiments, to reduce electromagnetic interference of the control board 30 and ensure the stability of its circuitry, the mounting component 27 has a first mounting slot 271 and a second mounting slot 272. The first mounting slot 271, the second mounting slot 272, and the second cable group 50 are located on the same side of the control board 30. The air conditioner also includes a second magnetic ring 110, a third cable 120, a reactor 130, and a fourth cable 140. The second magnetic ring 110 is embedded in the first mounting slot 271. One end of the third cable 120 is electrically connected to the second magnetic ring 110, and the other end passes through the second cable tray and is electrically connected to the control board 30. This allows the second magnetic ring 110 to reduce electromagnetic interference of the control board 30, and the second cable tray to guide the third cable 120 in an orderly manner, preventing the cables from being scattered randomly in space, thereby improving the neatness and aesthetics of the overall layout. The reactor 130 is embedded in the second mounting slot 272. One end of the fourth cable 140 is electrically connected to the reactor 130, and the other end is passed through the second cable tray and electrically connected to the control board 30. This allows the reactor 130 to ensure the stability of the circuit of the control board 30. The second cable tray can guide the fourth cable 140 in an orderly manner, preventing the cable from being scattered randomly in the space, thereby improving the neatness and aesthetics of the overall layout.

[0108] The third cable 120 is run through the second cable tray and electrically connected to the control board 30. The fourth cable 140 is run through the second cable tray and electrically connected to the control board 30. Since the first cable tray and the second cable tray are located on opposite sides of the mounting component 27, the third cable 120 and the fourth cable 140 will not interfere with the routing of the second cable group 50, which can avoid the crossing and mess between cables, making the entire wiring system clearer and neater.

[0109] Combination Figure 13 Specifically, to facilitate the installation of the second magnetic ring 110, the mounting component 27 further includes two mounting buckles 273. The two mounting buckles 273 are positioned opposite each other on both sides of the first mounting groove 271, and the second magnetic ring 110 is located between the mounting buckles 273 and the bottom of the first mounting groove 271.

[0110] When installing the magnetic ring 110, the second magnetic ring 110 is placed between the mounting buckle 273 and the bottom of the first mounting groove 271. The mounting hole 273 can hold the second magnetic ring 110 in place, so as to facilitate the installation of the second magnetic ring 110 and at the same time ensure the stability of the installation of the second magnetic ring 110.

[0111] Combination Figure 13To facilitate the installation of the reactor 130, the mounting component 27 has a slot 274 that communicates with the second mounting groove 272. The second mounting groove 272 is provided with a limiting component 275. When the reactor 130 is to be installed, the plug on the reactor 130 is inserted into the slot 274 and abuts against the limiting component 275 to achieve the pre-installation of the reactor 130. Then, the reactor 130 is locked in the second mounting groove 272 by the locking component, which improves the installation efficiency.

[0112] The second magnetic ring 110 is integrated with the reactor 130 and mounted on the mounting plate 27, which improves integration, reduces mounting parts, and lowers costs.

[0113] Combination Figure 7 and Figure 15 The reactor 130 is relatively large, and the cover 26 is provided with a clearance groove 261. When the cover 26 is connected to the box body 25, the controller 130 can be placed in the clearance groove 261 so that the cover 26 can be connected to the box body 25. The bottom of the clearance groove 261 protrudes in the direction away from the box body 25 to form a reinforcing structure and ensure the structural strength of the cover 26.

[0114] Combination Figure 7 and Figure 11 In some embodiments, for detecting indoor temperature, the mounting component 27 has a mounting slot 276, which is located on the same side of the control board 30 as the first cable group 40. The air conditioner also includes a second temperature sensor 150. The second temperature sensor 150 is embedded in the mounting slot 276 and electrically connected to the control board 30, and the indoor temperature is detected by the second temperature sensor 150. The detection probe of the second temperature sensor 150 can be inserted into the housing 25 and located inside the housing 10.

[0115] When installing the second temperature sensor 150, the second temperature sensor 150 can be directly embedded in the mounting slot 276 to facilitate the installation of the second temperature sensor 150 and improve installation efficiency.

[0116] Integrating a second temperature sensor 150 into the electrical control box 20 can improve the production efficiency of the final assembly.

[0117] Combination Figure 4 and Figure 5In some embodiments, the functional module 60 includes a fan assembly 61, a water pump 62, a float switch 63, a heat exchanger 64, and a first temperature sensor 65 for detecting the refrigerant temperature of the heat exchanger 64. The fan assembly 61, water pump 62, float switch 63, heat exchanger 64, and first temperature sensor 65 are all housed within the housing 10. When the air conditioner needs to cool or heat, the fan assembly 61 is activated, allowing indoor air to enter the housing 10 and exchange heat with the heat exchanger 64. The heated air is then returned to the room, thus lowering or raising the indoor temperature. When the air conditioner is cooling, condensate will be generated on the heat exchanger 64. The condensate will fall into the air conditioner's drip tray 190. The level of the drip tray 190 is detected by the float switch 63. When the level in the drip tray 190 reaches the set value, the water pump 62 is started to drain the condensate in the drip tray 190 to prevent the condensate from overflowing and improve the user experience.

[0118] Combination Figure 4 and Figure 5 In some embodiments, to achieve electrical connection between the functional module 60 and the electronic control board 30, the first cable group 40 includes: a fifth cable 41, a sixth cable 42, a seventh cable 43, and an eighth cable 44. The fifth cable 41 is located inside the housing 10. One end of the fifth cable 41 is electrically connected to the first driver 66 of the fan assembly 61, and the other end passes through the first wire hole 21 and is electrically connected to the electronic control board 30, thereby enabling signal transmission between the first driver 66 and the electronic control board 30. The sixth cable 42 is located inside the housing 10. One end of the sixth cable 42 is electrically connected to the water pump 62, and the other end passes through the first wire hole 21 and is electrically connected to the electronic control board 30, thereby enabling signal transmission between the water pump 62 and the electronic control board 30. The seventh cable 43 is located inside the housing 10. One end of the seventh cable 43 is electrically connected to the float switch 63, and the other end passes through the first wire hole 21 and is electrically connected to the electronic control board 30, thereby enabling signal transmission between the float switch 63 and the electronic control board 30. The eighth cable 44 is located inside the housing 10. One end of the eighth cable 44 is electrically connected to the first temperature sensor 65, and the other end passes through the first wire hole 21 and is electrically connected to the electronic control board 30 to realize the signal transmission between the first temperature sensor 65 and the electronic control board 30.

[0119] It is understandable that if the functional module 60 also includes an electronic expansion valve, then the first cable group 40 also includes a twelfth cable. The electronic expansion valve is electrically connected to the electronic control board 30 through the twelfth cable to realize the signal transmission between the electronic expansion valve and the electronic control board 30.

[0120] Combination Figure 4In some embodiments, the second cable group 50 includes: a power cord 51, an outdoor unit connection cable 52, and a wired controller connection cable 53. The power cord 51 is partially located inside the housing 10, with one end passing through the housing 10 and located outside for electrical connection to an external power source. The other end of the power cord 51 passes through a second cable hole 22 and is electrically connected to the control board 30 to transmit electrical energy from the external power source to the control board 30. The outdoor unit connection cable 52 is partially located inside the housing 10, with one end passing through the housing 10 and located outside for electrical connection to the outdoor unit of the air conditioner. The other end of the outdoor unit connection cable 52 passes through the second cable hole 22 and is electrically connected to the control board 30 to enable signal transmission between the outdoor unit of the air conditioner and the control board 30. The wired controller connection line 53 is located inside the housing 10. One end of the wired controller connection line 53 passes through the housing 10 and is located outside the housing 10 to be electrically connected to the wired controller. The other end of the wired controller connection line 53 passes through the second wire hole 22 and is electrically connected to the electronic control board 30 to realize the signal transmission between the wired controller and the electronic control board 30.

[0121] Combination Figure 2 In some embodiments, the air conditioner further includes a display panel 160, a wireless module, and an air guide assembly 170. The display panel 160 is disposed on the housing 10. Exemplarily, the display panel is located on the panel 16 of the housing 10 to display parameters of the air conditioner. The wireless module is disposed on the housing 10 to enable wireless connection with external devices. Exemplarily, the wireless module can be a WiFi module. The air guide assembly 170 is disposed on the housing 10. Exemplarily, the air guide assembly 170 is located at the air outlet 15 of the housing 10 to guide the airflow from the air conditioner.

[0122] Furthermore, the control box 20 has a fourth wiring hole 213, which is located on the same side of the control box 20 as the first wiring hole 21. The air conditioner also includes a ninth cable, a tenth cable, and an eleventh cable. The ninth cable is located inside the housing 10. One end of the ninth cable is electrically connected to the display panel 160, and the other end passes through the fourth wiring hole 213 and is electrically connected to the display panel, so as to realize signal transmission between the display panel 160 and the control board 30. The tenth cable is located inside the housing 10. One end of the tenth cable is electrically connected to the wireless module, and the other end passes through the fourth wiring hole 213 and is electrically connected to the control board 30, so as to realize signal transmission between the wireless module and the control board 30. The eleventh cable is located inside the housing 10. One end of the eleventh cable is electrically connected to the second driver of the air guide assembly 170, and the other end passes through the fourth wiring hole 213 and is electrically connected to the control board 30, so as to realize signal transmission between the second driver and the control board 30.

[0123] Since the fourth wire pass hole 213 and the first wire pass hole 21 are located on the same side of the electrical control box 20, the ninth cable, the tenth cable, and the eleventh cable are all passed through the fourth wire pass hole 213. That is to say, the cable group formed by the ninth cable, the tenth cable, and the eleventh cable and the first cable group 40 are located on opposite sides of the housing 10, so that the cable group formed by the ninth cable, the tenth cable, and the eleventh cable and the first cable group 40 are clearly separated, and there is no crossing or overlap between them.

[0124] The fourth cable pass-through hole 213 is spaced apart from the first cable pass-through hole 21, which clearly defines the routing of the cable group formed by the ninth, tenth, and eleventh cables and the routing of the first cable group 40, preventing interference between them. During maintenance of the control board 30, maintenance personnel can easily access and operate the cable group formed by the ninth, tenth, and eleventh cables and / or the first cable group 40, avoiding difficulties in disassembly and assembly or the risk of damage caused by the intertwining or overlapping of the cable group and the first cable group 40. There is no need to worry about operational obstacles caused by cable crossing, facilitating maintenance and replacement, improving disassembly and assembly speed, reducing the risk of equipment damage due to improper operation, and ensuring the smooth progress of the maintenance process. Simultaneously, the spaced arrangement of the cable group formed by the ninth, tenth, and eleventh cables and the first cable group 40 reduces electromagnetic interference between them, improving the accuracy and stability of signal transmission.

[0125] Combination Figure 14 Specifically, the electrical control box 20 is provided with a second reinforcing rib 214, which is located between the third wire hole 23 and the second wire hole 22 to ensure the structural strength of the electrical control box 20.

[0126] Furthermore, the edges of the first wire through hole 21 and the fourth wire through hole 213 are provided with overlapping edges to prevent the hole walls of the first wire through hole 21 and the fourth wire through hole 213 from scratching or cutting the ninth cable, the tenth cable, the eleventh cable and the first cable group 40, thus ensuring the safety of the ninth cable, the tenth cable, the eleventh cable and the first cable group 40.

[0127] The electrical control box 20 has a third notch that communicates with the first wire passage hole 21. The opening of the third notch is smaller than the diameter of the first wire passage hole 21 to form a constricted structure to prevent the first cable group 40 from coming out.

[0128] The electrical control box 20 has a fourth notch that communicates with the fourth wire passage hole 213. The opening of the fourth notch is smaller than the diameter of the fourth wire passage hole 213 to form a constricted structure to prevent the ninth, tenth, and eleventh cables from coming out.

[0129] Combination Figure 7 and Figure 14 In some embodiments, the air conditioner further includes a humidity sensor 180 for detecting indoor humidity. The humidity sensor 180 is connected to the control box 20 and is located outside the control box 20. The humidity sensor 180 is electrically connected to the control board 30. The humidity sensor 180 can detect indoor humidity and send the humidity signal to the control board 30 to realize signal transmission between the humidity sensor 180 and the control board 30.

[0130] Since the humidity sensor 180 and the first cable group 40 are located on the same side of the control board 30, and the mounting slot 276 and the first cable group 40 are located on the same side of the control board 30, and the second temperature sensor 150 is mounted in the mounting slot 276, that is, the humidity sensor 180 and the second temperature sensor 150 are both located on the same side of the control board 30, making the installation positions of the humidity sensor 180 and the second temperature sensor 150 close, and making the consistency of the detection of air temperature and humidity more accurate.

[0131] Integrating a humidity sensor 180 into the electrical control box 20 can improve the production efficiency of the final assembly.

[0132] Specifically, the electrical control box 20 has a mounting hole 215, and the humidity sensor 180 can be installed in the mounting hole 215 to facilitate the installation of the humidity sensor 180.

[0133] In the description of this application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this application 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. Therefore, they should not be construed as limitations on this application.

[0134] Furthermore, the use of terms such as "first" and "second" in this application is for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the technical solutions of the various embodiments can be combined with each other, but only on the basis of being achievable by those skilled in the art. If the combination of technical solutions is contradictory or impossible to implement, such a combination of technical solutions should be considered non-existent and not within the scope of protection claimed in this application.

[0135] In the description of this utility model, unless otherwise expressly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.

[0136] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "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 this application. 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. In addition, those skilled in the art can combine and integrate the different embodiments or examples described in this specification.

[0137] Although preferred embodiments of this application have been described, those skilled in the art, upon learning the basic inventive concept, can make other changes and modifications to these embodiments. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments as well as all changes and modifications falling within the scope of this application.

[0138] Obviously, those skilled in the art can make various modifications and variations to this application without departing from the spirit and scope of this application. Therefore, if such modifications and variations fall within the scope of the claims of this application and their equivalents, this application also intends to include such modifications and variations.

Claims

1. An air conditioner, characterized in that, include: case; The functional modules are located within the housing; The electrical control box is located inside the housing; The control board is located inside the control box; A first cable group is disposed inside the housing, with one end of the first cable group electrically connected to the functional module and the other end electrically connected to the electronic control board; The second cable group is partially located inside the housing. One end of the second cable group passes through the housing, and the other end is electrically connected to the electronic control board. The first cable group and the second cable group are located on opposite sides of the housing.

2. The air conditioner according to claim 1, characterized in that, The housing has a first mounting area, a second mounting area and a third mounting area. The first mounting area and the third mounting area are respectively located on opposite sides of the second mounting area. The functional module is located in the first mounting area, the electrical control box is located in the second mounting area, and the third mounting area has a wire hole. The first cable group is located in the first installation area, and the second cable group passes through the cable hole.

3. The air conditioner according to claim 1, characterized in that, The electrical control box has a first wire pass hole and a second wire pass hole that are arranged opposite to each other, and the electrical control board is located between the first wire pass hole and the second wire pass hole; The first cable group passes through the first cable hole and is electrically connected to the electronic control board; The second cable group passes through the second cable hole and is electrically connected to the electronic control board.

4. The air conditioner according to claim 3, characterized in that, The first wire hole is closer to the functional module than the second wire hole.

5. The air conditioner according to claim 1, characterized in that, The air conditioner also includes: The health module is located inside the housing and on the same side of the housing as the second cable group; The electrical control box is located between the health module and the functional module.

6. The air conditioner according to claim 5, characterized in that, The electrical control box has a second wiring hole and a third wiring hole. The third wiring hole and the second wiring hole are located on the same side of the electrical control box and are spaced apart. The air conditioner also includes: A first cable is disposed inside the housing. One end of the first cable is electrically connected to the health module, and the other end passes through the third cable hole and is electrically connected to the electronic control board. The second cable group passes through the second cable hole and is electrically connected to the electronic control board.

7. The air conditioner according to any one of claims 1-6, characterized in that, The electrical control box includes: The box body is disposed within the shell; The lid is detachably connected to the box body to form a receiving cavity; The mounting component is located inside the receiving cavity and is connected to the electronic control board.

8. The air conditioner according to claim 7, characterized in that, The electrical control box also includes: A first wire guide buckle is provided on the mounting component and forms a first wire guide groove with the inner wall of the box body; The second wire guide buckle is provided on the mounting component and is located on opposite sides of the mounting component as the first wire guide buckle. The second wire guide buckle has a first opening. The third wire guide buckle is spaced apart from the second wire guide buckle on the mounting component and is located on the same side of the mounting component as the second wire guide buckle. The third wire guide buckle has a second opening, and the orientation of the first opening is opposite to the orientation of the second opening to form a second wire guide groove. The first cable tray and the second cable tray are located on opposite sides of the mounting component. The first cable group passes through the first cable tray and is electrically connected to the electronic control board. The second cable group passes through the second cable tray and is electrically connected to the electronic control board.

9. The air conditioner according to claim 8, characterized in that, The electrical control box also includes: The fourth wire guide buckle has one end connected to the end face of the first wire guide buckle opposite to the first wire guide groove, and the other end has a guide surface. The guide surface is spaced apart from the first wire guide buckle, and the fourth wire guide buckle has a third wire guide groove. The air conditioner also includes: The motor connector is located inside the receiving cavity; The second cable has one end electrically connected to the motor connector and the other end passing through the third cable tray and electrically connected to the control board.

10. The air conditioner according to claim 8, characterized in that, The mounting component has a first mounting slot and a second mounting slot. The first mounting slot, the second mounting slot, and the second cable group are located on the same side of the electronic control board. The air conditioner also includes: The second magnetic ring is embedded in the first mounting groove; The third cable has one end electrically connected to the second magnetic ring, and the other end passes through the second wire groove and is electrically connected to the electronic control board. The reactor is embedded in the second mounting slot; The fourth cable has one end electrically connected to the reactor and the other end passing through the second cable tray and electrically connected to the control board.

11. The air conditioner according to claim 7, characterized in that, The mounting component has a mounting slot, which is located on the same side of the electronic control board as the first cable group. The air conditioner also includes: The second temperature sensor is embedded in the mounting slot and electrically connected to the electronic control board.

12. The air conditioner according to any one of claims 1-6, characterized in that, The air conditioner also includes: A humidity sensor is connected to the electrical control box and is located outside the electrical control box; The humidity sensor is electrically connected to the electronic control board and is located on the same side of the electronic control board as the first cable group.