Temperature control equipment, temperature control assembly and electric control cabinet

By using a detachable plug-in design for the temperature control device and the electrical control cabinet, the problem of increased design costs caused by the internal space limitation of the temperature control components is solved. This enables standardized and modular production and flexible adaptation of energy storage temperature control equipment, and reduces the design cost of the electrical control cabinet.

CN120896013APending Publication Date: 2025-11-04SHENZHEN ENVICOOL TECH
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Patent Information

Application Number
CN202511056965.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-28
Publication Date
2025-11-04

AI Technical Summary

Technical Problem

Due to the limited internal space of the temperature control components, the electrical control equipment needs to be selected and arranged specifically for different operating environments, which makes it difficult to standardize and modularize the production and layout of energy storage temperature control equipment, thus increasing design costs.

Method used

Design a temperature control device and an electrical control cabinet. The temperature control device and the electrical control components can be detachably plugged in through a connecting hub. The electrical control cabinet and the temperature control components are set separately, allowing the temperature control components to be designed separately according to user needs. Electrical connection and control are achieved through connecting wire harnesses.

Benefits of technology

It achieves flexible adaptation of temperature control components and independent optimization of electrical control cabinets, reduces design costs, facilitates maintenance, and eliminates the need to develop separate electrical control cabinets for each temperature control component, supporting standardized modular production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides temperature control equipment, a temperature control assembly and an electric control cabinet, the temperature control equipment comprises the temperature control assembly and the electric control cabinet, the temperature control assembly comprises a mounting frame body, a temperature control device and a connection concentrator, and the connection concentrator is electrically connected with the temperature control device; an electric control assembly is arranged in the electric control cabinet; the electric control assembly is configured to be electrically connected with a power supply, and the connection concentrator is detachably connected with the temperature control device and the electric control assembly in an inserted mode. According to the temperature control equipment provided by the embodiment of the invention, the part of the temperature control component can be independently designed according to user requirements so as to meet energy storage requirements, the connecting wire harness and the electric control cabinet part can be adapted to a plurality of temperature control components, and internal arrangement and production and manufacturing do not need to be independently designed, so that the design cost of the electric control cabinet can be effectively reduced.
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Description

Technical Field

[0001] This application relates to the field of energy storage equipment, specifically to a temperature control device, a temperature control component, and an electrical control cabinet. Background Technology

[0002] Energy storage containers are a type of energy storage device, characterized by convenient installation and transportation, high integration, small footprint, and good scalability. They are an important component in the development of distributed energy, smart grids, and the energy internet within the energy storage field. During operation, the internal batteries of energy storage containers generate a significant amount of heat; therefore, targeted temperature control equipment is required.

[0003] Due to varying energy storage requirements, the structure of the temperature control component needs to be designed specifically for those requirements. In existing technologies, the electrical control equipment within the temperature control component needs to be designed as an integral part of the component. Due to the limited internal space of the temperature control component, the electrical control equipment needs to be selected and arranged specifically for different operating environments, which greatly increases the design cost and makes it difficult to standardize and modularize the production and deployment of the entire energy storage temperature control equipment. Summary of the Invention

[0004] In view of this, the embodiments of this application aim to provide a temperature control device, a temperature control component, and an electrical control cabinet to solve the problem that due to the internal space limitation of the temperature control component, the electrical control equipment needs to be selected and arranged specifically for different operating environments, which greatly increases the design cost and makes it difficult to standardize and modularize the production and layout of the entire energy storage temperature control device.

[0005] The first aspect of this application provides a temperature control device, comprising:

[0006] A temperature control assembly, comprising a mounting frame, a temperature control device, and a connection hub, wherein the connection hub is electrically connected to the temperature control device.

[0007] An electrical control cabinet is provided, and an electrical control component is installed inside the electrical control cabinet. The electrical control component is configured to be electrically connected to a power supply, and the connection hub can be detachably plugged into the temperature control device and the electrical control component.

[0008] In one embodiment of this application, the connection hub is disposed on the wall surface of the mounting frame on the side away from the temperature control device.

[0009] In one embodiment of this application, a protective partition is provided on the mounting frame, and the temperature control device and the connecting hub are respectively provided on both sides of the protective partition.

[0010] In one embodiment of this application, a connecting harness is further included, which is configured to be detachably plugged into and electrically connected to the connecting hub and the electronic control component, respectively, so that the electronic control component supplies power to the temperature control device and controls the temperature control device.

[0011] In one embodiment of this application, the connecting harness includes a high-voltage wire harness and a low-voltage wire harness;

[0012] The connection hub is provided with at least one high-voltage interface and at least one low-voltage interface. The first end of the high-voltage wire harness is provided with a high-voltage terminal, which is plugged into the high-voltage interface. The first end of the low-voltage wire harness is provided with a low-voltage terminal, which is plugged into the low-voltage interface.

[0013] In one embodiment of this application, the connecting harness includes a high-voltage wire harness and a low-voltage wire harness;

[0014] The connection hub includes a high-voltage hub and a low-voltage hub. The high-voltage hub is provided with at least one high-voltage interface, and the low-voltage hub is provided with at least one low-voltage interface. The first end of the high-voltage wire harness is provided with a high-voltage terminal, which is plugged into the high-voltage interface. The first end of the low-voltage wire harness is provided with a low-voltage terminal, which is plugged into the low-voltage interface.

[0015] In one embodiment of this application, the temperature control component further includes a detection sensor and / or a control pipeline, wherein a control valve is provided on the control pipeline;

[0016] The high-voltage interface is configured to be electrically connected to the temperature control device, and the low-voltage interface is configured to be electrically connected to the detection sensor or control valve respectively. The detection sensor is configured to acquire the temperature and / or humidity inside the energy storage container.

[0017] In one embodiment of this application, the connecting harness further includes an outer protective portion, which is respectively disposed around the outside of the high-voltage wire harness and the outside of the low-voltage wire harness to protect the high-voltage wire harness and the low-voltage wire harness.

[0018] In one embodiment of this application, the outer protective portion is at least one of cloth tape or protective tube.

[0019] In one embodiment of this application, at least two types of high-voltage interfaces and high-voltage terminals are provided, and different types of high-voltage interfaces and high-voltage terminals are configured to be non-interlocking.

[0020] And / or, the low-voltage interface and the low-voltage terminal are provided in at least two types, and the low-voltage interface and the low-voltage terminal of different types are configured to be non-pluggable.

[0021] In one embodiment of this application, the electrical control cabinet further includes a cabinet body, on which a high-voltage power inlet hole, a low-voltage power inlet hole, and a power supply inlet hole are provided;

[0022] The high-voltage wire harness is configured to pass through the high-voltage inlet hole;

[0023] The low-voltage cable harness is configured to pass through the low-voltage inlet hole;

[0024] The power supply and the electronic control component are electrically connected via a power cable harness, which is configured to pass through the power inlet hole.

[0025] In one embodiment of this application, the electrical control cabinet includes a cabinet body, and the electrical control components are sealed and disposed within the cabinet body; a waterproof lock head is sealed between the high-voltage power inlet and the high-voltage power harness, a waterproof lock head is sealed between the low-voltage power inlet and the low-voltage power harness, and a waterproof lock head is sealed between the power supply inlet and the power supply harness.

[0026] In one embodiment of this application, the temperature control device includes at least one of a compressor, a condenser, an evaporator, an electric heater, a water pump, and a fan.

[0027] Another aspect of this application provides a temperature control assembly, including a mounting frame, a temperature control device, and a connection hub, wherein the connection hub is electrically connected to the temperature control device; and the connection hub is detachably plugged into an external electrical control cabinet.

[0028] Another aspect of this application provides an electrical control cabinet, wherein an electrical control component is disposed therein; the electrical control component is configured to be detachably plugged into the connection hub.

[0029] In the design, internal layout, and manufacturing process of the temperature control device in this application embodiment, the temperature control components can be designed individually according to user needs to meet energy storage requirements. The connecting harness and electrical control cabinet can be adapted to multiple temperature control components, eliminating the need for separate internal layout design and manufacturing, thus effectively reducing the design cost of the electrical control cabinet. As long as the required power of the temperature control component is within the power range provided by the electrical control cabinet, it can be adapted simply by modifying the software parameters, without the need to develop a separate electrical control cabinet for each temperature control component.

[0030] In the arrangement of the temperature control equipment in this embodiment, to ensure the heat dissipation requirements of the energy storage container, the energy storage container and temperature control components can be installed outdoors, while the electrical control cabinet can be installed separately from the temperature control components. The electrical control cabinet can be installed in a designated location outdoors or indoors as needed. The electrical control cabinet and the connection hub of the temperature control components are electrically connected through a connecting harness. During the operation of the temperature control equipment in this embodiment, the electrical control components can supply power to the temperature control device through the connecting harness and control the temperature control device.

[0031] When staff need to inspect and maintain the electrical control cabinet, there is no need to inspect and maintain it inside the temperature control component, making maintenance more convenient. Furthermore, since there is no direct connection or coupling between the electrical control cabinet and the temperature control component, the two are completely physically separated. The layout of the electrical control cabinet can be optimized or upgraded as needed without modifying the temperature control component. Attached Figure Description

[0032] Figure 1 A schematic diagram of the overall structure of the temperature control device according to an embodiment of this application is shown;

[0033] Figure 2 A schematic diagram of the temperature control component according to an embodiment of this application is shown;

[0034] Figure 3 A schematic diagram of the electrical control cabinet according to an embodiment of this application is shown;

[0035] Figure 4 A schematic diagram of the structure of a connection hub according to an embodiment of this application is shown;

[0036] Figure 5 A schematic diagram of the structure of the low-voltage wire harness and the outer protection part according to an embodiment of this application is shown;

[0037] Figure 6 A schematic diagram of the structure of the high-voltage power harness and the outer protective part according to an embodiment of this application is shown.

[0038] Attached image labels:

[0039] 10. Temperature control component; 11. Mounting frame; 12. Temperature control device; 13. Connecting hub; 131. High-voltage interface; 132. Low-voltage interface; 14. Detection sensor; 15. Control valve; 20. Connecting harness; 21. High-voltage harness; 211. High-voltage terminal; 22. Low-voltage harness; 221. Low-voltage terminal; 23. External protection unit; 30. Electrical control cabinet; 31. Electrical control component; 32. Cabinet; 321. High-voltage inlet hole; 322. Low-voltage inlet hole; 323. Power supply inlet hole; 40. Power supply. Detailed Implementation

[0040] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0041] It should be noted that, unless otherwise specifically stated, the relative arrangement, numerical expressions, and values ​​of the components and steps set forth in these embodiments do not limit the scope of this application. In all examples shown and discussed herein, any specific values ​​should be interpreted as merely exemplary and not as limitations. Therefore, other examples of exemplary embodiments may have different values.

[0042] Many specific details are set forth in the following description to provide a full understanding of this application. However, this application can be implemented in many other ways than those described herein, and those skilled in the art can make similar extensions without departing from the spirit of this application; therefore, this application is not limited to the specific embodiments disclosed below. Techniques, methods, and apparatus known to those skilled in the art may not be discussed in detail, but where appropriate, such techniques, methods, and apparatus should be considered part of the specification.

[0043] The terminology used in one or more embodiments of this application is for the purpose of describing particular embodiments only and is not intended to be limiting of the one or more embodiments of this application. The singular forms “a,” “the,” and “the” used in one or more embodiments of this application and the appended claims are also intended to include the plural forms unless the context clearly indicates otherwise. It should also be understood that the term “and / or” used in one or more embodiments of this application refers to and includes any or all possible combinations of one or more associated listed items.

[0044] It should be understood that although the terms first, second, etc., may be used to describe various information in one or more embodiments of this application, such information should not be limited to these terms. These terms are only used to distinguish information of the same type from one another. For example, first may also be referred to as second without departing from the scope of one or more embodiments of this application, and similarly, second may also be referred to as first. Depending on the context, the word “if” as used herein may be interpreted as “when”, “in response to a determination”, or “upper”, “lower”, “front”, “back”, “left”, “right”, etc., are used only to indicate the relative positional relationship between related parts, and not to limit the absolute position of these related parts. In this document, “equal”, “same”, etc., are not strict mathematical and / or geometric limitations, and also include errors that are understandable to those skilled in the art and permissible in manufacturing or use. Unless otherwise stated, numerical ranges in this document include not only the entire range within its two endpoints, but also several sub-ranges contained therein.

[0045] like Figures 1 to 6 As shown in the illustration, this application provides a temperature control device, which includes a temperature control component 10 and an electrical control cabinet 30. The temperature control component 10 includes a mounting frame 11, a temperature control device 12, and a connecting hub 13, which is electrically connected to the temperature control device 12. The electrical control cabinet 30 houses an electrical control component 31, which is configured to be electrically connected to a power supply 40. The connecting hub 13 is detachable and pluggable to both the temperature control device 12 and the electrical control component 31. Because the electrical control component 31 in the electrical control cabinet 30 is electrically connected to the power supply 40, the power supply 40 can be used to supply power to the temperature control device 12.

[0046] For the temperature control device in this application embodiment, the temperature control component 10 can be designed separately according to user needs to meet energy storage requirements. The connecting harness 20 and the electrical control cabinet 30 can be adapted to multiple temperature control components 10 without the need for separate internal layout design and manufacturing, thereby effectively reducing the design cost of the electrical control cabinet 30. As long as the required power of the temperature control component 10 is within the power range that the electrical control cabinet 30 can provide, it can be adapted and used simply by modifying the software parameters, without the need to develop a separate electrical control cabinet 30 for each temperature control component 10.

[0047] Since the connecting hub 13 can be detached and plugged into the temperature control device 12 and the electrical control component 31, when the staff needs to inspect and maintain the electrical control cabinet 30, there is no need to perform inspection and maintenance inside the temperature control component 10, making maintenance more convenient. Furthermore, since the connecting hub 13 can be detached and plugged into the temperature control device 12 and the electrical control component 31, there is no direct connection or coupling between the electrical control cabinet 30 and the temperature control component 10, achieving complete physical separation between the two. The layout of the electrical control cabinet 30 can be optimized or upgraded as needed without modifying the temperature control component 10.

[0048] Understandably, the temperature control component 10 is installed inside the energy storage container, which contains an energy storage battery pack. The mounting frame 11 is used to install the temperature control device 12 and the connection hub 13. The temperature control device 12 is used to control the temperature inside the energy storage container to ensure that the energy storage battery pack is within a suitable operating temperature range.

[0049] In the arrangement of the temperature control equipment in this application embodiment, in order to ensure the heat dissipation requirements of the energy storage container, the energy storage container and the temperature control component 10 can be set outdoors, while the electrical control cabinet 30 can be set separately from the temperature control component 10. The electrical control cabinet 30 can be set in a designated location outdoors or indoors as needed.

[0050] Specifically, such as Figure 2 As shown, in one embodiment of this application, the mounting frame 11 can be a square three-dimensional frame as a whole, and the electrical control cabinet 30 can be a square three-dimensional cabinet. In another embodiment of this application, the mounting frame 11 and the electrical control cabinet 30 can also be other shapes, which are not limited here.

[0051] like Figure 2 As shown, in one embodiment of this application, the connecting hub 13 is disposed on the wall of the mounting frame away from the temperature control device 12. This can effectively utilize the installation space on the mounting frame 11, while increasing the distance between the temperature control device 12 and the connecting hub 13, thereby reducing the impact of the temperature control device 12 on the normal operation of the connecting hub 13.

[0052] Furthermore, in one embodiment of this application, a protective partition is provided on the mounting frame 11, with the temperature control device 12 and the connecting hub 13 respectively located on both sides of the protective partition. By providing the protective partition, the interior of the energy storage container can be divided into two different spaces, with the temperature control device 12 and the connecting hub 13 located in the two different spaces, further preventing the temperature control device 12 from affecting the normal operation of the connecting hub 13. Specifically, in one embodiment of this application, the temperature control device 12 includes at least one of a compressor, a condenser, an evaporator, an electric heater, a water pump, and a fan. The compressor, condenser, evaporator, electric heater, water pump, and fan can cool or heat the interior of the energy storage container to meet the temperature control requirements within the energy storage container.

[0053] like Figure 1 As shown, in one embodiment of this application, the temperature control device further includes a connecting harness 20, which is configured to be electrically connected to the connecting hub 13 and the electronic control component 31, respectively, so that the electronic control component 31 supplies power to the temperature control device 12 and controls the temperature control device 12. During the operation of the temperature control device in this embodiment, the electronic control component 31 can supply power to the temperature control device 12 through the connecting harness 20 and control the temperature control device 12.

[0054] like Figures 4 to 6 As shown, in one embodiment of this application, the connecting harness 20 includes a high-voltage harness 21 and a low-voltage harness 22; the connecting hub 13 is provided with at least one high-voltage interface 131 and at least one low-voltage interface 132, the first end of the high-voltage harness 21 is provided with a high-voltage terminal 211, the high-voltage terminal 211 is plugged into the high-voltage interface 131, the first end of the low-voltage harness 22 is provided with a low-voltage terminal 221, the low-voltage terminal 221 is plugged into the low-voltage interface 132.

[0055] That is, Figure 5 and Figure 6 As shown, the connecting harness 20 includes a high-voltage harness 21 and a low-voltage harness 22. The high-voltage harness 21 mainly provides power supply, while the low-voltage harness 22 is mainly used for signal transmission and control functions. Figure 4 As shown, the connecting hub 13 is provided with at least one high-voltage interface 131 and at least one low-voltage interface 132. The high-voltage terminal 211 of the first end of the high-voltage wire harness 21 is plugged into the high-voltage interface 131 on the connecting hub 13, and the low-voltage terminal 221 of the first end of the low-voltage wire harness 22 is plugged into the low-voltage interface 132 on the connecting hub 13, so that both the high-voltage wire harness 21 and the low-voltage wire harness 22 are electrically connected to the connecting hub 13, thereby enabling the temperature control component 10 and the electrical control cabinet 30 to be electrically connected only through a single connecting hub 13.

[0056] In another embodiment of this application, the connecting harness 20 includes a high-voltage harness 21 and a low-voltage harness 22; the connecting hub 13 includes a high-voltage hub and a low-voltage hub. The high-voltage hub is provided with at least one high-voltage interface 131, and the low-voltage hub is provided with at least one low-voltage interface 132. The first end of the high-voltage harness 21 is provided with a high-voltage terminal 211, which is plugged into the high-voltage interface 131. The first end of the low-voltage harness 22 is provided with a low-voltage terminal 221, which is plugged into the low-voltage interface 132.

[0057] Since the connecting hub 13 includes a high-voltage hub and a low-voltage hub, the high-voltage terminal 211 on the high-voltage cable harness 21 is plugged into the high-voltage interface 131 on the high-voltage hub, and the low-voltage terminal 221 on the low-voltage cable harness 22 is plugged into the low-voltage interface 132 on the low-voltage hub. This facilitates the separation of high-voltage and low-voltage circuits on the temperature control component 10 and makes it easier to install and wire various devices within the temperature control component 10.

[0058] It is understood that the aforementioned high-voltage terminals 211, high-voltage interfaces 131, low-voltage terminals 221, and low-voltage interfaces 132 can all be selected to meet waterproof requirements, thereby improving waterproof performance and ensuring the normal operation of the temperature control device in this embodiment. Furthermore, the electrical connection between the connecting harness 20 and the connecting junction box via the aforementioned high-voltage terminals 211, high-voltage interfaces 131, low-voltage terminals 221, and low-voltage interfaces 132 can greatly improve assembly efficiency while ensuring system compatibility and safety.

[0059] Specifically, such as Figure 1 As shown, in one embodiment of this application, the temperature control component 10 further includes a detection sensor 14 or a control pipeline, and a control valve 15 is provided on the control pipeline; the high-voltage interface 131 is configured to be electrically connected to the temperature control device 12, and the low-voltage interface 132 is configured to be electrically connected to the detection sensor 14 or the control valve 15 respectively, and the detection sensor 14 is configured to acquire the temperature and / or humidity inside the temperature control component 10.

[0060] Since the high-voltage interface 131 is electrically connected to the temperature control device 12, and the low-voltage interface 132 is electrically connected to the detection sensor 14 or the control valve 15 respectively, the detection sensor 14 acquires the temperature and / or humidity inside the energy storage container. The electrical control component 31 can use the high-voltage wiring harness 21 to supply power to the temperature control device 12, and use the low-voltage wiring harness 22 to acquire information such as temperature and / or humidity inside the energy storage container collected by the detection sensor 14, or control the opening and closing of the control valve 15 on the control pipeline inside the temperature control component 10.

[0061] like Figure 5 and Figure 6As shown, in one embodiment of this application, the connecting harness 20 further includes an outer protective portion 23, which is respectively disposed around the outside of the high-voltage harness 21 and the low-voltage harness 22 to protect the high-voltage harness 21 and the low-voltage harness 22. By providing the outer protective portion 23, the high-voltage harness 21 and the low-voltage harness 22 can be effectively protected, avoiding situations such as harness leakage and aging.

[0062] Specifically, in one embodiment of this application, the outer protective part 23 is a cloth-based adhesive tape. When the outer protective part 23 is a cloth-based adhesive tape, it is wrapped around the outside of the high-voltage wire harness 21 and the outside of the low-voltage wire harness 22 by a winding method. This can achieve good tensile strength, grease resistance, aging resistance, temperature resistance, waterproofing, and corrosion resistance, effectively reducing the aging risk of the outer insulation layer of the high-voltage wire harness 21 and the low-voltage wire harness 22.

[0063] In another embodiment of this application, the outer protection part 23 is a protective tube. The outer protection part 23 only needs to be fitted on the outside of the high power wire harness 21 and / or the outside of the low power wire harness 22. This not only makes installation convenient and provides protection for the high power wire harness 21 and the low power wire harness 22, but the metal protective tube can also shield electromagnetic interference, thereby improving the electromagnetic compatibility of the high power wire harness 21 and / or the low power wire harness 22.

[0064] In one embodiment of this application, at least two types of high-voltage interface 131 and high-voltage terminal 211 are provided, and different types of high-voltage interface 131 and high-voltage terminal 211 are configured to be non-interconnectable; similarly, in one embodiment of this application, at least two types of low-voltage interface 132 and low-voltage terminal 221 are provided, and different types of low-voltage interface 132 and low-voltage terminal 221 are configured to be non-interconnectable.

[0065] Since different types of high-voltage interfaces 131 and high-voltage terminals 211 cannot be connected, and different types of low-voltage interfaces 132 and low-voltage terminals 221 cannot be connected, it can ensure that the staff can connect the high-voltage interface 131 to the corresponding high-voltage terminal 211 and the low-voltage interface 132 to the corresponding low-voltage terminal 221, preventing the equipment from burning out due to incorrect connection.

[0066] like Figure 3As shown, in one embodiment of this application, the electrical control cabinet 30 further includes a cabinet 32, which is provided with a high-voltage power inlet 321, a low-voltage power inlet 322, and a power supply inlet 323. A high-voltage power harness 21 is configured to pass through the high-voltage power inlet 321; a low-voltage power harness 22 is configured to pass through the low-voltage power inlet 322; and a power supply 40 is electrically connected to the electrical control component 31 via a power harness, which is configured to pass through the power supply inlet 323. Thus, during the arrangement of the temperature control equipment in this embodiment, the high-voltage power harness 21 can pass through the high-voltage power inlet 321 on the cabinet 32; the low-voltage power harness 22 can pass through the low-voltage power inlet 322 on the cabinet 32; and the power supply harness can pass through the power supply inlet 323 on the cabinet 32.

[0067] Furthermore, the electrical control cabinet 30 includes a cabinet body 32, and the electrical control component 31 is sealed inside the cabinet body 32; a waterproof lock is sealed between the high-voltage power inlet 321 and the high-voltage power harness 21, a waterproof lock is sealed between the low-voltage power inlet 322 and the low-voltage power harness 22, and a waterproof lock is sealed between the power inlet 323 and the power harness.

[0068] Because waterproof lock heads are sealed between the high-voltage inlet 321 and the high-voltage wire harness 21, between the low-voltage inlet 322 and the low-voltage wire harness 22, and between the power inlet 323 and the power harness, external water can be effectively prevented from entering the cabinet 32 ​​through the high-voltage inlet 321 and the high-voltage wire harness 21, the low-voltage inlet 322 and the low-voltage wire harness 22, and the power inlet 323 and the power harness. This prevents water from entering the electrical control components 31 inside the cabinet 32 ​​and causing them to malfunction, and ensures that the electrical control components 31 can also function normally when the electrical control cabinet 30 is installed outdoors.

[0069] This application embodiment also provides a temperature control component 10, which includes a mounting frame 11, a temperature control device 12, and a connecting hub 13. The connecting hub 13 is electrically connected to the temperature control device 12, and the connecting hub 13 is detachably plugged into an external electrical control cabinet 30.

[0070] The temperature control component 10 in this embodiment can be designed separately according to user needs to meet energy storage requirements. As long as the required power of the temperature control component 10 is within the power range that the electrical control cabinet 30 can provide, it can be adapted for use simply by modifying the software parameters, without the need to develop a separate electrical control cabinet 30 for each temperature control component 10.

[0071] Since the connection hub 13 between the electrical control cabinet 30 and the temperature control component 10 is detachable and pluggable, there is no direct connection or coupling between the electrical control cabinet 30 and the temperature control component 10. The two are completely physically separated, and the electrical control cabinet 30 can be optimized or upgraded as needed without modifying the temperature control component 10.

[0072] This application embodiment also provides an electrical control cabinet 30, which is provided with an electrical control component 31; the electrical control component 31 is configured to be detachably plugged into the connection hub 13 according to claim 1.

[0073] The electrical control cabinet 30 of this embodiment can be adapted to multiple temperature control components 10 without requiring separate internal layout design and manufacturing, thereby effectively reducing the design cost of the electrical control cabinet 30. As long as the required power of the temperature control component 10 is within the power range that the electrical control cabinet 30 can provide, it can be adapted and used simply by modifying the software parameters, without the need to develop a separate electrical control cabinet 30 for each temperature control component 10. During the operation of the temperature control device of this embodiment, the electrical control component 31 can supply power to the temperature control device 12 through the connecting wiring harness 20 and control the temperature control device 12.

[0074] When staff need to inspect and maintain the electrical control cabinet 30, there is no need to inspect and maintain it inside the temperature control component 10, making maintenance more convenient. Furthermore, since there is no direct connection or coupling between the electrical control cabinet 30 and the temperature control component 10, the two are completely physically separated. The electrical control cabinet 30 can be optimized or upgraded as needed without modifying the temperature control component 10.

[0075] The above are merely preferred embodiments of this application and are not intended to limit this application. Any modifications, equivalent substitutions, etc., made within the spirit and principles of this application should be included within the protection scope of this application. Many modifications and variations will be apparent to those skilled in the art without departing from the scope and spirit of the described embodiments. The terminology used herein is chosen to best explain the principles, practical applications, or technical improvements to the market of the embodiments, or to enable other those skilled in the art to understand the embodiments disclosed herein. The scope of this application is defined by the appended claims.

Claims

1. A temperature control device, characterized in that, include: Temperature control assembly (10), the temperature control assembly (10) includes a mounting frame (11), a temperature control device (12) and a connecting hub (13), the connecting hub (13) being electrically connected to the temperature control device (12); An electrical control cabinet (30) is provided with an electrical control component (31); the electrical control component (31) is configured to be electrically connected to a power supply (40), and the connection hub (13) can be detachably plugged into the temperature control device (12) and the electrical control component (31).

2. The temperature control device according to claim 1, characterized in that, The connecting hub (13) is disposed on the wall surface of the mounting frame on the side away from the temperature control device (12).

3. The temperature control device according to claim 1, characterized in that, The mounting frame (11) is provided with a protective partition, and the temperature control device (12) and the connecting hub (13) are respectively located on both sides of the protective partition.

4. The temperature control device according to claim 1, characterized in that, It also includes a connecting harness (20) configured to be detachably plugged into and electrically connected to the connecting hub (13) and the electronic control component (31), respectively, so that the electronic control component (31) supplies power to the temperature control device (12) and controls the temperature control device (12).

5. The temperature control device according to claim 4, characterized in that, The connecting harness (20) includes a high-voltage wire harness (21) and a low-voltage wire harness (22); The connecting hub (13) is provided with at least one high-voltage interface (131) and at least one low-voltage interface (132). The first end of the high-voltage cable harness (21) is provided with a high-voltage terminal (211), which is plugged into the high-voltage interface (131). The first end of the low-voltage cable harness (22) is provided with a low-voltage terminal (221), which is plugged into the low-voltage interface (132).

6. The temperature control device according to claim 4, characterized in that, The connecting harness (20) includes a high-voltage wire harness (21) and a low-voltage wire harness (22); The connection hub (13) includes a high-voltage hub and a low-voltage hub. The high-voltage hub is provided with at least one high-voltage interface (131), and the low-voltage hub is provided with at least one low-voltage interface (132). The first end of the high-voltage wire harness (21) is provided with a high-voltage terminal (211), which is plugged into the high-voltage interface (131). The first end of the low-voltage wire harness (22) is provided with a low-voltage terminal (221), which is plugged into the low-voltage interface (132).

7. The temperature control device according to claim 5 or 6, characterized in that, The temperature control assembly (10) also includes a detection sensor (14) and / or a control pipeline, wherein a control valve (15) is provided on the control pipeline; The high-voltage interface (131) is configured to be electrically connected to the temperature control device (12), and the low-voltage interface (132) is configured to be electrically connected to the detection sensor (14) or the control valve (15) respectively. The detection sensor (14) is configured to acquire the temperature and / or humidity inside the energy storage container.

8. The temperature control device according to claim 5 or 6, characterized in that, The connecting harness (20) also includes an outer protective part (23), which is respectively arranged around the outside of the high power harness (21) and the outside of the low power harness (22) to protect the high power harness (21) and the low power harness (22).

9. The temperature control device according to claim 8, characterized in that, The outer protective part (23) is at least one of cloth tape or protective tube.

10. The temperature control device according to claim 5 or 6, characterized in that, The high-voltage interface (131) and the high-voltage terminal (211) are provided in at least two types, and the high-voltage interface (131) and the high-voltage terminal (211) of different types are constructed to be non-pluggable; And / or, the low-voltage interface (132) and the low-voltage terminal (221) are provided in at least two types, and the low-voltage interface (132) and the low-voltage terminal (221) of different types are configured to be non-pluggable.

11. The temperature control device according to claim 5 or 6, characterized in that, The electrical control cabinet (30) also includes a cabinet body (32), which is provided with a high-voltage power inlet hole (321), a low-voltage power inlet hole (322) and a power supply inlet hole (323); The high-voltage cable harness (21) is configured to pass through the high-voltage inlet hole (321); The low-voltage cable harness (22) is configured to pass through the low-voltage cable inlet hole (322); The power supply (40) is electrically connected to the electronic control component (31) via a power cable harness, which is configured to pass through the power inlet hole (323).

12. The temperature control device according to claim 11, characterized in that, The electrical control cabinet (30) includes a cabinet body (32), and the electrical control component (31) is sealed inside the cabinet body (32). A waterproof lock head is sealed between the high-voltage power inlet hole (321) and the high-voltage power harness (21), a waterproof lock head is sealed between the low-voltage power inlet hole (322) and the low-voltage power harness (22), and a waterproof lock head is sealed between the power supply inlet hole (323) and the power supply harness.

13. The temperature control device according to claim 1, characterized in that, The temperature control device (12) includes at least one of a compressor, a condenser, an evaporator, an electric heater, a water pump, and a fan.

14. A temperature control component, characterized in that, It includes a mounting frame (11), a temperature control device (12), and a connecting hub (13), wherein the connecting hub (13) is electrically connected to the temperature control device (12); and the connecting hub (13) is detachably plugged into an external electrical control cabinet (30).

15. An electrical control cabinet, characterized in that, The electrical control cabinet (30) is provided with an electrical control component (31); the electrical control component (31) is configured to be detachably plugged into the connection hub (13) according to claim 13.

Citation Information

Patent Citations

  • Concentrator and air conditioner

    CN108344130A

  • Wall-mounted air conditioner indoor unit and air conditioner

    CN113028513A

  • Control cabinet strong current and signal line hybrid wiring device

    CN209150495U

  • Air conditioner and electric control assembly thereof

    CN219247196U

  • Energy storage cabinet

    CN222052697U