Air conditioner host

By using modular design and assembly components, the problem of insufficient cooling capacity of the air conditioning unit was solved, and an air conditioning structure with larger cooling capacity was realized, improving assembly efficiency and safety, and meeting the air conditioning needs of large-capacity computer rooms.

CN224135983UActive Publication Date: 2026-04-17EMERSON NETWORK POWER CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
EMERSON NETWORK POWER CO LTD
Filing Date
2025-04-23
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

The existing air conditioning units are single-cabinet structures, which are limited by the size of logistics and freight, resulting in limited cooling capacity and poor cooling effect, making it difficult to meet the air conditioning needs of large-capacity computer rooms.

Method used

The modular design divides the air conditioning unit into a first module and a second module. The modules are fixed together by assembly components and locking parts, combined with sealing parts and waterproof structure to achieve an air conditioning structure with a larger cooling capacity and improve assembly stability and waterproofness.

Benefits of technology

It overcomes the size limitations of logistics and freight, achieves greater cooling capacity, reduces modular assembly costs, improves assembly efficiency and the safety of the air conditioning unit, and meets the extension and expansion of different cooling capacity requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an air conditioner main unit. The air conditioner main unit comprises a first module, a second module and an assembling assembly. Each of the first module and the second module comprises a cabinet body, an outdoor fan and an evaporator, the splicing assembly comprises a sealing piece and a flexible connecting piece, the locking piece penetrates into the flexible connecting piece and is locked in the sealing piece, so that the first module and the second module are fixedly spliced, and a water retaining part is further arranged at the joint of the flexible connecting piece and the sealing piece. According to the air conditioner main unit, the cabinet bodies of the first module and the second module are fixedly spliced through the splicing assembly, the logistics freight size limitation can be effectively overcome, an air conditioner building structure with the larger refrigerating capacity is achieved, and the requirement of customers for the refrigerating capacity of an air conditioner with the larger granularity is met; in addition, the locking pieces penetrate through the flexible connecting pieces and are locked in the sealing pieces on the cabinet bodies of the first module and the second module, modular assembly can be achieved, and extension and expansion of different refrigerating capacity requirements are met.
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Description

Technical Field

[0001] This utility model relates to the field of air conditioning equipment technology, and in particular to air conditioning main units. Background Technology

[0002] Currently, most air conditioning units on the market are single-cabinet units. Due to the size limitations of logistics and freight, the cooling capacity of single-cabinet units is limited, resulting in poor cooling effect and low cooling efficiency, making it difficult to meet the cooling needs of large-capacity computer rooms. Utility Model Content

[0003] The purpose of this utility model is to solve the shortcomings of existing air conditioning units, which are single-cabinet units and have limited cooling capacity due to the size limitations of logistics and freight, resulting in poor cooling effect and low cooling efficiency, making it difficult to meet the cooling needs of large-capacity computer room air conditioning. This utility model provides an air conditioning unit.

[0004] The technical solution adopted by this utility model to solve its technical problem is: an air conditioning unit, including a first module, a second module, and an assembly component for assembling the first module and the second module; both the first module and the second module include a cabinet, an outdoor fan, and an evaporator; the assembly component for the first module and the second module includes a sealing element fixed to the cabinet of the first module and the second module, and a flexible connector connecting the cabinets of the first module and the second module; a plurality of locking elements are inserted into the flexible connector and locked in the sealing element, so that the first module and the second module are fixedly assembled; a water-blocking component is also provided at the connection between the flexible connector and the sealing element. By using modular components to securely assemble the cabinets of the first and second modules, the size limitations of logistics and freight can be effectively overcome, enabling the creation of air conditioning structures with larger cooling capacities to meet customers' demands for more granular cooling capacity. Furthermore, by using locking components that pass through the flexible connectors and lock into the seals on the cabinets of the first and second modules, the stability of the fixed assembly of the first and second modules can be effectively ensured while achieving modular assembly. This reduces the cost of fixing the first and second modules, simplifies on-site construction, improves assembly efficiency, and meets the needs of extending and expanding cooling capacity requirements. Simultaneously, the waterproof structure located at the connection between the seals and the flexible connectors effectively improves the waterproofness of the first and second modules after they are assembled and secured using the modular components, enhancing the safety of the air conditioning unit.

[0005] Furthermore, the sealing element is a sealing strip, and the flexible connector is a flexible air duct. The cabinets of the first and second modules have splicing flanges for installing the sealing strip. By using a sealing strip as the sealing element, the sealing performance after the flexible air duct and the sealing strip are fixedly connected can be effectively guaranteed. Moreover, by installing the sealing strip at the splicing flange of the cabinets of the first and second modules, the positioning accuracy and stability of the sealing strip on the cabinets of the first and second modules can be effectively improved.

[0006] Furthermore, the flexible connecting duct has several first fixing holes, and the sealing element has several second fixing holes. The locking element passes through the first fixing holes and locks into the second fixing holes, thereby fixing the first module and the second module together. By passing bolts, studs, and pins through the first fixing holes of the flexible connecting duct and locking them into the second fixing holes of the sealing strip, the stability of the fixed connection between the flexible connecting duct and the sealing strip can be effectively improved, thus ensuring the stability of the first module and the second module fixedly assembled by the assembly assembly.

[0007] Furthermore, the water-blocking component is a flange-type water-blocking eave. By placing the flange-type water-blocking eave at the connection between the flexible duct and the sealing strip, the waterproofness and sealing performance after the flexible duct and the sealing strip are fixedly connected can be effectively improved, thereby ensuring the stability of the fixed connection between the flexible duct and the sealing strip.

[0008] Furthermore, the outdoor fans of the first and second modules can be positioned in one of the following ways: either on the side of the cabinet of the first and second modules to form a side-mounted unit, or on the top of the cabinet of the first and second modules to form a rooftop unit, to meet the needs of different usage scenarios.

[0009] Furthermore, the evaporator coil is a W-shaped coil, which effectively ensures the evaporator's cooling and heat exchange effects while meeting the needs of different usage scenarios.

[0010] Furthermore, the evaporator coil is either a slanted straight coil or a vertical coil, thereby effectively ensuring the evaporator's cooling and heat exchange performance while meeting the needs of different usage scenarios.

[0011] Furthermore, the cabinet of the first or second module has an electrical control system, and the side of the cabinet of the first or second module is provided with a maintenance door for the whole unit, thereby effectively improving the convenience of operators to perform maintenance operations on the air conditioning unit and meeting the maintenance needs of different usage scenarios.

[0012] The beneficial effects of the air conditioning unit provided by this utility model are as follows: By using assembly components to fix and assemble the cabinets of the first and second modules, the size limitations of logistics and freight can be effectively overcome, realizing an air conditioning unit structure with a larger cooling capacity to meet customers' needs for larger-granular cooling capacity. Furthermore, by using locking components that pass through the flexible connectors and lock into the seals on the cabinets of the first and second modules, the stability of the fixed assembly of the first and second modules can be effectively ensured while achieving modular assembly, reducing the cost of fixing and assembling the first and second modules, reducing on-site construction difficulty, improving assembly efficiency, and meeting the extension and expansion of different cooling capacity needs. Simultaneously, the waterproof structure set at the connection between the seals and the flexible connectors can effectively improve the waterproofness of the first and second modules after they are fixed by the assembly components, thus improving the safety of the air conditioning unit. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the structure of the air conditioning unit provided in the first embodiment of the present invention. Figure 1 ;

[0014] Figure 2 This is a schematic diagram of the structure of the air conditioning unit provided in the first embodiment of the present invention. Figure 2 ;

[0015] Figure 3 for Figure 2 A magnified view of a section at point A in the middle;

[0016] Figure 4 This is a schematic diagram of the structure of the air conditioning unit provided in the second embodiment of the present invention. Figure 1 ;

[0017] Figure 5 This is a schematic diagram of the structure of the air conditioning unit provided in the second embodiment of the present invention. Figure 2 ;

[0018] Figure 6 for Figure 5 A magnified view of a section at point B in the middle;

[0019] Figure 7 This is a schematic diagram of the structure of the air conditioning unit provided in the third embodiment of the present utility model;

[0020] Figure 8 This is a schematic diagram of the structure of the air conditioning unit provided in the fourth embodiment of the present invention;

[0021] Figure 9 This is a schematic diagram of the structure of the air conditioning unit provided in the fifth embodiment of the present utility model;

[0022] Figure 10This is a schematic diagram of the structure of the air conditioning unit provided in the sixth embodiment of the present utility model;

[0023] In the picture:

[0024] 100-Air Conditioning Unit

[0025] 10-Module 1, 20-Module 2, 30-Assembly Components, 31-Sealing Strip, 32-Flexible Connector Air Duct

[0026] 33-Water-blocking component, 40-Cabinet body, 41-Assembly flange, 50-Outdoor fan, 60-Evaporator,

[0027] 70 - Electrical control system; 80 - Maintenance door. Detailed Implementation

[0028] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0029] See Figure 1-10 The present invention provides an air conditioning unit 100, which includes a first module 10, a second module 20, and an assembly component 30 for assembling the first module 10 and the second module 20. The first module 10 and the second module 20 each include a cabinet 40, an outdoor fan 50, and an evaporator 60. The assembly component 30 includes a sealing element fixed to the cabinet 40 of the first module 10 and the second module 20, and a flexible connector connecting the cabinet 40 of the first module 10 and the second module 20. Multiple locking elements are inserted into the flexible connector and locked in the sealing element to fix the first module 10 and the second module 20 together. A water-blocking component 33 is also provided at the connection between the flexible connector and the sealing element. By using the assembly component 30 to fix and assemble the cabinet 40 of the first module 10 and the second module 20, the size limitations of logistics and freight can be effectively overcome, enabling a larger cooling capacity air conditioning unit structure to meet customers' needs for larger granular cooling capacity. Furthermore, by using locking components that pass through the flexible connectors and lock into the seals on the cabinet 40 of the first module 10 and the second module 20, the stability of the fixed assembly of the first module 10 and the second module 20 can be effectively guaranteed while achieving modular assembly. This reduces the cost of fixing and assembling the first module 10 and the second module 20, reduces on-site construction difficulty, improves assembly efficiency, and meets the extension and expansion of different cooling capacity requirements. Simultaneously, the waterproof structure set at the connection between the seals and the flexible connectors effectively improves the waterproofness of the first module 10 and the second module 20 after being assembled and fixed by the assembly component 30, enhancing the safety of the air conditioning unit 100.

[0030] like Figure 3 and Figure 6 As shown, in the embodiment provided by this utility model, the sealing element is a sealing strip 31, the flexible connector is a flexible air duct 32, and the cabinet 40 of the first module 10 and the second module 20 has a splicing flange 41 for installing the sealing strip 31. By using the sealing strip 31 as the sealing element, the sealing performance after the flexible air duct 32 and the sealing strip 31 are fixedly connected can be effectively guaranteed. Furthermore, by installing the sealing strip 31 at the splicing flange 41 of the cabinet 40 of the first module 10 and the second module 20, the positioning accuracy and stability of the sealing strip 31 on the cabinet 40 of the first module 10 and the second module 20 can be effectively improved.

[0031] Furthermore, the flexible connection duct 32 provided by this utility model has multiple first fixing holes, and the sealing element has multiple second fixing holes. Locking elements pass through the first fixing holes and are locked within the second fixing holes, thus fixing the first module 10 and the second module 20 together. By passing bolts, studs, and pins through the first fixing holes of the flexible connection duct 32 and locking them within the second fixing holes of the sealing strip 31, the stability of the fixed connection between the flexible connection duct 32 and the sealing strip 31 can be effectively improved, thereby ensuring the stability of the fixed assembly of the first module 10 and the second module 20 through the assembly assembly 30.

[0032] like Figure 3 and Figure 6 As shown, the water-blocking component 33 provided by this utility model is a flange water-blocking eave. By setting the flange water-blocking eave at the connection between the flexible connection duct 32 and the sealing strip 31, the waterproofness and sealing performance after the flexible connection duct 32 and the sealing strip 31 are fixedly connected can be effectively improved, thereby ensuring the stability of the fixed connection between the flexible connection duct 32 and the sealing strip 31.

[0033] like Figure 1 and Figure 2 As shown, in the first embodiment provided by this utility model, the outdoor fans 50 of the first module 10 and the second module 20 are located on the side of the cabinet 40 of the first module 10 and the second module 20 to form a side-mounted unit, thus meeting the needs of different usage scenarios. Furthermore, in this embodiment, the coil of the evaporator 60 is a W-shaped coil, thereby effectively ensuring the cooling and heat exchange effects of the evaporator 60 while meeting the needs of different usage scenarios.

[0034] like Figure 4 and Figure 5As shown, in the second embodiment provided by this utility model, the outdoor fans 50 of the first module 10 and the second module 20 are located on top of the cabinet 40 of the first module 10 and the second module 20 to form a rooftop unit, meeting the needs of different usage scenarios. Furthermore, in this embodiment, the coil of the evaporator 60 is a W-shaped coil, thereby effectively ensuring the cooling and heat exchange effects of the evaporator 60 while meeting the needs of different usage scenarios.

[0035] like Figure 7 As shown, in the third embodiment provided by this utility model, the coil of the evaporator 60 of the side unit is a slanted I-shaped coil or a vertical coil, thereby effectively ensuring the cooling and heat exchange effect of the evaporator 60 while meeting the needs of different usage scenarios.

[0036] like Figure 8 As shown, in the fourth embodiment provided by this utility model, the coil of the evaporator 60 of the rooftop unit is a slanted I-shaped coil or a vertical coil, thereby effectively ensuring the cooling and heat exchange effect of the evaporator 60 while meeting the needs of different usage scenarios.

[0037] like Figure 9 As shown, in the fifth embodiment provided by this utility model, the cabinet 40 of the first module 10 or the second module 20 of the side unit has an electrical control system 70, and the side of the cabinet 40 of the first module 10 or the second module 20 is provided with a whole unit maintenance door 80, thereby effectively improving the convenience of operators to perform maintenance operations on the air conditioning unit 100, while meeting the maintenance needs of different usage scenarios.

[0038] like Figure 10 As shown, in the sixth embodiment provided by this utility model, the cabinet 40 of the first module 10 or the second module 20 of the rooftop unit has an electrical control system 70, and the side of the cabinet 40 of the first module 10 or the second module 20 is provided with a whole unit maintenance door 80, thereby effectively improving the convenience of operators to perform maintenance operations on the air conditioning unit 100, while meeting the maintenance needs of different usage scenarios.

[0039] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. An air conditioning unit, comprising a first module (10) and a second module (20), wherein both the first module (10) and the second module (20) include a cabinet (40), an outdoor fan (50), and an evaporator (60), characterized in that, It also includes an assembly component (30) for assembling the first module (10) and the second module (20); The assembly component (30) includes a sealing element fixed to the cabinet (40) of the first module (10) and the second module (20) and a flexible connector connecting the cabinet (40) of the first module (10) and the second module (20). Several locking elements are inserted into the flexible connector and locked in the sealing element, so that the first module (10) and the second module (20) are fixedly assembled. A water-blocking component (33) is also provided at the connection between the flexible connector and the sealing element.

2. The air conditioning main unit as claimed in claim 1, wherein The sealing element is a sealing strip (31), the flexible connector is a flexible air duct (32), and the cabinet (40) of the first module (10) and the second module (20) has a splicing flange (41) for installing the sealing strip (31).

3. The air conditioning main unit as claimed in claim 2, wherein The flexible connection air duct (32) has several first fixing holes, and the sealing member has several second fixing holes. The locking member passes through the first fixing holes and is locked in the second fixing holes, so that the first module (10) and the second module (20) are fixedly assembled.

4. The air conditioning main unit as claimed in claim 3, wherein The water-blocking component (33) is a flange-type water-blocking eave.

5. The air conditioning main unit according to any one of claims 1 to 4, wherein The outdoor fan (50) of the first module (10) and the second module (20) is positioned in one of the following ways: on the side of the cabinet (40) of the first module (10) and the second module (20) to form a side-mounted unit or on the top of the cabinet (40) of the first module (10) and the second module (20) to form a roof unit.

6. The air conditioning main unit as claimed in claim 5, wherein The evaporator (60) has a W-type coil.

7. The air conditioning main unit as claimed in claim 5, wherein The evaporator (60) has either a slanted or vertical coil.

8. The air conditioning main unit as claimed in claim 5, wherein The cabinet (40) of the first module (10) or the second module (20) has an electrical control system (70), and the side of the cabinet (40) of the first module (10) or the second module (20) is provided with a whole machine maintenance door (80).