Integrated cabinet and air conditioner control system cabinet

Through the partition design and reinforced structure of the integrated cabinet, the instrumentation and control components and electrical components are integrated into one cabinet, which solves the installation problem of the air-conditioning control system in space-constrained sites and achieves higher installation applicability and electromagnetic isolation effect.

CN223488583UActive Publication Date: 2025-10-28CHINA TECHENERGY
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Patent Information

Application Number
CN202422939014.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-10-28
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

The air conditioning control system has low installation suitability in installation sites with small spaces, and it is impossible to install electrical cabinets and instrumentation cabinets at the same time.

Method used

An integrated cabinet is designed, comprising a cabinet frame, a first integrated board, and a second integrated board, which are used to integrate instrumentation and control components and electrical components respectively. Space utilization and electromagnetic isolation are improved through partition design and reinforced structure.

Benefits of technology

The floor space of the air-conditioning control system cabinet is reduced, the installation applicability is improved, and the electromagnetic interference between the instrumentation and control components and the electrical components is reduced, thus enhancing the stability and convenience of the system.

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Abstract

The utility model discloses an integrated cabinet and an air conditioner control system cabinet, the integrated cabinet comprises a cabinet frame, a first integrated board and a second integrated board, the first integrated board and the second integrated board are fixedly connected in the cabinet frame, the first integrated board is used for integrating an instrument control component group, and the second integrated board is used for integrating an electrical component group. According to the air conditioner control system cabinet, the instrument control component group and the electrical component group are integrated in one integrated cabinet, so that the occupied area of the air conditioner control system cabinet is reduced, the air conditioner control system cabinet can be suitable for being installed in more spaces, and the installation applicability of the air conditioner control system is improved; and physical isolation between the instrument control component and the electrical component is formed through the first integrated board and the second integrated board, so that electromagnetic interference between the instrument control component and the electrical component is reduced.
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Description

Technical Field

[0001] This application relates to the field of air conditioning control technology, and more specifically, to an integrated cabinet and an air conditioning control system cabinet. Background Technology

[0002] Air conditioning control systems are typically controlled by a combination of electrical cabinets and instrumentation cabinets. In some installation sites with limited space, there is not enough space to install both electrical cabinets and instrumentation cabinets simultaneously, resulting in low applicability of the air conditioning control system installation.

[0003] In conclusion, improving the applicability of air conditioning control system installation is a problem that urgently needs to be solved by those skilled in the art. Summary of the Invention

[0004] In view of this, the purpose of this application is to provide an integrated cabinet and an air conditioning control system cabinet to improve the applicability of air conditioning control system installation.

[0005] To achieve the above objectives, this application provides the following technical solution:

[0006] An integrated cabinet includes: a cabinet frame, a first integrated board, and a second integrated board; wherein the first integrated board is fixed inside the cabinet frame and is used to integrate instrumentation and control components; the second integrated board is fixed inside the cabinet frame and is used to integrate electrical components.

[0007] In some embodiments, the first integrated board and the second integrated board are both parallel to the first direction, and the first integrated board and the second integrated board are distributed along the second direction, with an angle between the first direction and the second direction.

[0008] In some embodiments, the cabinet frame and the front side of the first integrated board form a first region, the first region being divided into an instrumentation and control area and a first wiring zone in a first direction; the cabinet frame and the rear side of the second integrated board form a second region, the second region being divided into an electrical area and a second wiring area in a first direction; a second wiring zone is formed between the cabinet frame, the first integrated board, and the second integrated board;

[0009] The instrumentation and control area is used to accommodate the instrumentation and control component group. The first wiring section and the second wiring section form a first wiring area, which is used to accommodate power cables. The electrical area is used to accommodate the electrical component group, and the second wiring area is used to accommodate signal cables.

[0010] In some embodiments, the cabinet frame includes: external columns, a first external crossbeam, and a second external crossbeam; there are four external columns, four first external crossbeams, and four second external crossbeams; the length of the first external crossbeam extends along a first direction; the length of the second external crossbeam extends along a second direction; the external columns, the first external crossbeams, and the second external crossbeams are at an angle to each other and are fixedly connected to each other.

[0011] In some embodiments, the cabinet frame further includes: a first inner column, a second inner column, a third inner column, a fourth inner column, a first inner crossbeam, a second inner crossbeam, and a third inner crossbeam; wherein, the length of the first inner crossbeam extends along a second direction, and both ends of the first inner crossbeam are fixedly connected to the first outer crossbeam; the first inner column, the second inner column, the third inner column, and the fourth inner column are distributed sequentially along the second direction, and both ends of the first inner column, the second inner column, the third inner column, and the fourth inner column are fixedly connected to the first inner crossbeam; the lengths of the second inner crossbeam and the third inner crossbeam both extend along a first direction, and both ends of the second inner crossbeam and the third inner crossbeam are fixedly connected to the second outer crossbeam, and the second inner crossbeam and the third inner crossbeam are distributed sequentially along the second direction.

[0012] In some embodiments, the first integrated plate is fixed to the second inner crossbeam and the second inner column; the second integrated plate is fixed to the third inner crossbeam and the third inner column.

[0013] In some embodiments, the system further includes a first inner door and a second inner door distributed along a vertical direction, wherein the first inner door covers a portion of the first integrated panel, the second inner door covers a portion of the first integrated panel, and both the first inner door and the second inner door are mounted on the first inner column.

[0014] In some embodiments, the cabinet frame and the front side of the first integrated board form a first region, which is divided into an instrumentation and control area and a first wiring area by the first inner column and the second inner column; the cabinet frame and the rear side of the second integrated board form a second region, which is divided into an electrical area and a second wiring area by the third inner column and the fourth inner column; a second wiring area is formed between the cabinet frame and the first integrated board and the second integrated board; the instrumentation and control area is used to accommodate the instrumentation and control component group; the first wiring area and the second wiring area form a first wiring area, which is used to accommodate power cables; the electrical area is used to accommodate the electrical component group; and the second wiring area is used to accommodate signal cables.

[0015] In some embodiments, the outer column has a circumferential opening structure, and the outer column is provided with a reinforcing member, which closes the opening of the circumferential opening structure;

[0016] And / or, a first reinforcing beam extending along a second direction is provided between the outer columns, and there are multiple first reinforcing beams, which are distributed sequentially along the vertical direction; a second reinforcing beam extending along a first direction is provided between the first reinforcing beam and the second inner column, and between the first reinforcing beam and the third inner column.

[0017] In some embodiments, the outer column is a U-shaped structure, the reinforcing member is a U-shaped bracket, and the U-shaped bracket and the outer column form a closed loop structure.

[0018] In some embodiments, both the first reinforcing beam and the second reinforcing beam are provided with arrayed holes.

[0019] In some embodiments, the system further includes a base, which is fixedly connected to the bottom of the cabinet frame; wherein, the base has through holes on both sides in the second direction, and the base has a reinforcing structure around the through holes.

[0020] In some embodiments, the system further includes: a front door panel, a rear door panel, a first side door panel, and a second side door panel; wherein the front door panel is installed at the front end of the cabinet frame, the rear door panel is installed at the rear end of the cabinet frame, the first side door panel is installed on one side of the cabinet frame, and the second side door panel is installed on the other side of the cabinet frame.

[0021] An air conditioning control system cabinet includes: an integrated cabinet as described above, an instrumentation and control component group, and an electrical component group.

[0022] This application provides an integrated cabinet including a cabinet frame, and a first integrated board and a second integrated board fixedly connected inside the cabinet frame. The first integrated board is used to integrate instrumentation and control component groups, and the second integrated board is used to integrate electrical component groups. In this way, the instrumentation and control component groups and the electrical component groups are integrated into one integrated cabinet, reducing the floor space of the air conditioning control system cabinet, making the air conditioning control system cabinet applicable to more spaces, and improving the applicability of air conditioning control system installation; and the first integrated board and the second integrated board form physical isolation between the instrumentation and control components and the electrical components, reducing electromagnetic interference between the instrumentation and control components and the electrical components. Attached Figure Description

[0023] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only embodiments of this application. For those skilled in the art, other drawings can be obtained based on the provided drawings without creative effort.

[0024] Figure 1 This is a schematic diagram of the overall structure of the integrated cabinet provided in the embodiments of this application;

[0025] Figure 2 This is a schematic diagram of the cabinet frame of the integrated cabinet provided in the embodiments of this application;

[0026] Figure 3 A cross-sectional view of the reinforcing member of the outer column in the cabinet frame of the integrated cabinet provided in this embodiment of the application;

[0027] Figure 4 for Figure 2 A top view of the cabinet frame of the integrated cabinet shown;

[0028] Figure 5 A schematic diagram of the reinforcing beam of the integrated cabinet provided in the embodiments of this application;

[0029] Figure 6 A schematic diagram of the base of the integrated cabinet provided in an embodiment of this application;

[0030] Figure 7 This is a front view of the first and second inner doors in the instrument control area;

[0031] Figure 8 This is a front view of the instrument control area;

[0032] Figure 9 This is a front view of the electrical area.

[0033] Explanation of reference numerals in the attached figures:

[0034] 100-Rack frame, 110-Outer column, 111-U-shaped bracket, 121-First outer crossbeam, 122-Second outer crossbeam, 131-First inner column, 132-Second inner column, 133-Third inner column, 134-Fourth inner column, 141-First inner crossbeam, 142-Second inner crossbeam, 143-Third inner crossbeam, 151-First reinforcing beam, 152-Second reinforcing beam;

[0035] 210 - First integrated board, 220 - Second integrated board, 230 - First inner door, 231 - Display screen, 240 - Second inner door;

[0036] 310-Front door panel, 320-First side door panel, 330-Top cover, 341-Front door lintel, 342-Rear door lintel, 350-Hanging ring, 360-Rear door panel;

[0037] 400 - Base, 410 - Through hole, 420 - First reinforcing rib, 430 - Second reinforcing rib, 440 - Mounting hole;

[0038] 510 - Instrumentation and Control Area, 520 - Electrical Area, 530 - First Cabling Area, 540 - Second Cabling Area;

[0039] 600-Instrumentation and Control Components Group;

[0040] 700 - Electrical Components Group. Detailed Implementation

[0041] 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.

[0042] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. The terminology used in the following embodiments is for the purpose of describing specific embodiments only and is not intended to be a limitation of this application. As used in the specification and appended claims of this application, the singular expressions "a," "an," "the," "the," "the," and "this" are intended to also include expressions such as "one or more," unless the context clearly indicates otherwise. It should also be understood that in the embodiments of this application, "one or more" refers to one, two, or more; "and / or" describes the relationship between related objects, indicating that three relationships may exist; for example, A and / or B can represent: A alone, A and B simultaneously, or B alone, where A and B can be singular or plural. The character " / " generally indicates that the preceding and following related objects are in an "or" relationship.

[0043] References to "one embodiment" or "some embodiments" as described in this specification mean that one or more embodiments of this application include a specific feature, structure, or characteristic described in connection with that embodiment. Therefore, the phrases "in one embodiment," "in some embodiments," "in other embodiments," "in still other embodiments," etc., appearing in different parts of this specification do not necessarily refer to the same embodiment, but rather mean "one or more, but not all, embodiments," unless otherwise specifically emphasized. The terms "comprising," "including," "having," and variations thereof mean "including but not limited to," unless otherwise specifically emphasized.

[0044] The "multiple" mentioned in the embodiments of this application refers to two or more. It should be noted that in the description of the embodiments of this application, terms such as "first" and "second" are used only for the purpose of distinguishing descriptions and should not be construed as indicating or implying relative importance, nor should they be construed as indicating or implying order.

[0045] The terms "parallel" and "perpendicular" used in this application refer to "basically parallel" and "basically perpendicular" in practical operation. "Basically parallel" can be understood as parallelism with a certain degree of error, and similarly, "basically perpendicular" can be understood as perpendicularity with a certain degree of error.

[0046] like Figures 1-9 As shown in the figure, the integrated cabinet provided in this application embodiment includes a cabinet frame 100, a first integrated board 210, and a second integrated board 220. The first integrated board 210 is fixed inside the cabinet frame 100 and is used to integrate instrumentation and control component group 600; the second integrated board 220 is fixed inside the cabinet frame 100 and is used to integrate electrical component group 700. In this way, the instrumentation and control component group 600 and the electrical component group 700 are integrated into one integrated cabinet, reducing the floor space occupied by the air conditioning control system cabinet, allowing the air conditioning control system cabinet to be installed in more spaces, and improving the applicability of the air conditioning control system installation.

[0047] It should be noted that in the air conditioning control system, the instrumentation and control component group 600 is used to receive signals from the unit compressor, electric heater, condenser fan and other equipment, and monitor the above equipment. Then, the instrumentation and control component group 600 transmits the received equipment signals to the electrical component group 700, and the electrical component group 700 controls the start and stop of the above equipment.

[0048] To ensure stable operation between the instrumentation and control component group 600 and the electrical component group 700, such as Figures 8-9As shown, the first integrated board 210 and the second integrated board 220 are both parallel to the first direction, and the first integrated board 210 and the second integrated board 220 are distributed along the second direction, with an angle between the first direction and the second direction. In this way, the first integrated board 210 and the second integrated board 220 form a physical isolation between the instrumentation and control component group 600 and the electrical component group 700, reducing electromagnetic interference between the instrumentation and control component group 600 and the electrical component group 700.

[0049] It should be noted that the angle between the first direction and the second direction can be acute, obtuse, or right. In this embodiment of the application, the first direction and the second direction are perpendicular to ensure the strength of the integrated cabinet.

[0050] like Figure 2 As shown, the cabinet frame 100 includes: outer columns 110, first outer crossbeams 121, and second outer crossbeams 122. There are four outer columns 110, four first outer crossbeams 121, and four second outer crossbeams 122. The length of the first outer crossbeam 121 extends along a first direction, and the length of the second outer crossbeam 122 extends along a second direction. Each pair of outer columns 110, first outer crossbeams 121, and second outer crossbeams 122 forms an included angle and is fixed in pairs to form the outer frame of the cabinet frame 100. Specifically, the top of each outer column 110 is fixedly connected to the adjacent first outer crossbeam 121, and the top of each outer column 110 is fixedly connected to the adjacent second outer crossbeam 122. The first outer crossbeam 121 and the second outer crossbeam 122 connected to the top of the same outer column 110 are also fixedly connected. The bottom end of each of the outer columns 110 is fixedly connected to the adjacent second outer beam 122; the first outer beam 121 and the second outer beam 122 connected to the bottom end of the same outer column 110 are also fixedly connected.

[0051] In some embodiments, the outer column 110, the first outer beam 121, and the second outer beam 122 are welded together to ensure the connection strength of the cabinet frame 100.

[0052] In some other embodiments, the outer column 110, the first outer beam 121, and the second outer beam 122 are connected by threaded fasteners to provide more installation fit options and improve the applicability of the cabinet installation.

[0053] like Figure 1 and Figure 4As shown, the cabinet frame 100 is equipped with a front door panel 310, a rear door panel 360, a first side door panel 320, and a second side door panel (not shown in the figure). The front door panel 310 is installed at the front end of the cabinet frame 100, the rear door panel 360 is installed at the rear end of the cabinet frame 100, and the first side door panel 320 and the second side door panel are installed on both sides of the cabinet frame 100. A top cover panel 330 is also installed on the top of the cabinet frame 100. In this way, the instrumentation and control component group 600 and the electrical component group 700 located in the integrated cabinet can be protected, ensuring the stable operation of the instrumentation and control component group 600 and the electrical component group 700.

[0054] like Figure 1 As shown, the top of the cabinet frame 100 is also equipped with lifting rings 350 at the four corners. In this way, when the ground space is small, the integrated cabinet can be installed at a higher position through the lifting rings 350, so that the integrated cabinet can be used in more installation environments and further improve the applicability of the integrated cabinet installation.

[0055] like Figure 2 As shown, the cabinet frame 100 also includes: a first inner column 131, a second inner column 132, a third inner column 133, a fourth inner column 134, a first inner crossbeam 141, a second inner crossbeam 142, and a third inner crossbeam 143; wherein, the length of the first inner crossbeam 141 extends along the second direction, both ends of the first inner crossbeam 141 are fixedly connected to the first outer crossbeam 121, and there is a gap between the first inner crossbeam 141 and the second outer crossbeam 122; the first inner column 131, the second inner column 132, the third inner column 133, and the fourth inner column 134 are arranged sequentially along the second direction. The inner beams are distributed such that both ends of the first inner column 131, the second inner column 132, the third inner column 133, and the fourth inner column 134 are fixedly connected to the first inner beam 141; the lengths of the second inner beam 142 and the third inner beam 143 extend along the first direction, and both ends of the second inner beam 142 and the third inner beam 143 are fixedly connected to the second outer beam 122; the second inner beam 142 and the third inner beam 143 are distributed sequentially along the second direction, and there are gaps between the first outer beam 121, the second inner beam 142, and the third inner beam 143.

[0056] It should be noted that the first inner column 131, the second inner column 132, the third inner column 133, the fourth inner column 134, the first inner crossbeam 141, the second inner crossbeam 142, the third inner crossbeam 143, the first outer crossbeam 121, and the second outer crossbeam 122 can be connected by threaded fasteners or by welding. This application embodiment does not limit this.

[0057] like Figure 2 , Figure 8 , Figure 9As shown, the first integrated plate 210 is fixed to the second inner crossbeam 142 and the second inner column 132, and the first integrated plate 210 can abut against both the first side door panel 320 and the second side door panel. In this way, the first integrated plate 210 can be distributed across the entire mounting surface to ensure the isolation between the instrumentation component group 600 and the power cables described later, thereby reducing electromagnetic interference. The second integrated plate 220 is fixed to the third inner crossbeam 143 and the third inner column 133, and the second integrated plate 220 can abut against both the first side door panel 320 and the second side door panel. In this way, the second integrated plate 220 can be distributed across the entire mounting surface to ensure the isolation between the electrical component group 700 and the power cables described later, thereby reducing electromagnetic interference. In this way, the instrumentation and control component group 600 can be inspected and maintained by opening the front door panel 310, and the electrical component group 700 can be inspected and maintained by opening the rear door panel 360. The instrumentation and control component group 600 and the electrical component group 700 are integrated into one cabinet, which reduces space occupation and improves the convenience of operation.

[0058] In practice, both the first integrated board 210 and the second integrated board 220 are provided with mounting holes for the required components and power supply to pass through, so as to ensure the normal connection operation of the instrumentation component group 600 and the electrical component group 700.

[0059] Since the instrumentation and control component group 600 includes multiple control buttons and requires frequent operation, further protection for the instrumentation and control component group 600 is necessary, such as... Figure 7 As shown, a first inner door 230 and a second inner door 240 are also provided on the front side of the instrumentation and control component group 600, distributed vertically. The first inner door 230 and the second inner door 240 can respectively shield a portion of the first integrated board 210. Both the first inner door 230 and the second inner door 240 are installed on the first inner column 131. In this way, when it is necessary to operate the control button, it can be operated directly by opening the front door panel 310. The first inner door 230 and the second inner door 240 can protect other instrumentation and control components. When it is necessary to inspect different instrumentation and control components, it can be done by opening the first inner door 230 or the second inner door 240 respectively. At the same time, the first inner door 230 or the second inner door 240 also provides secondary shielding against electromagnetic interference, further ensuring the stable operation of the instrumentation and control component group 600.

[0060] like Figure 7 As shown, a display screen 231 is also installed on the first inner door 230. The display screen 231 can display the real-time status of the unit compressor, electric heater, condenser fan and other equipment monitored by the instrument control component group 600, so as to ensure the stability of the air conditioning system operation.

[0061] like Figure 8 and Figure 9As shown, a front door lintel 341 is installed at the top of the front door panel 310, and a rear door lintel 342 is installed at the top of the rear door panel 360. Indicator lights are provided on both the front door lintel 341 and the rear door lintel 341 to warn of the status of the instrument control component group 600 and the electrical component group 700, respectively, to ensure the stable operation of the air conditioning system.

[0062] like Figure 2 and Figure 4 As shown, the cabinet frame 100 and the front side of the first integrated board 210 form a first area, which is divided into an instrumentation and control area 510 and a wiring first zone by the first inner column 131 and the second inner column 132; the cabinet frame 100 and the rear side of the second integrated board 220 form a second area, which is divided into an electrical area 520 and a wiring area 540 by the third inner column 133 and the fourth inner column 134; a wiring second zone is formed between the cabinet frame 100 and the first integrated board 210 and the second integrated board 220.

[0063] The instrumentation and control area 510 is used to house the instrumentation and control component group 600. The first wiring area 530 is formed by the first wiring area and the second wiring area, which is used to house power cables. The electrical area 520 is used to house the electrical component group 700, and the second wiring area 540 is used to house signal cables. In this way, by dividing and isolating the instrumentation and control component group 600, the electrical component group 700, the power cables, and the signal cables, physical protection between the areas is ensured, electromagnetic interference between the areas is reduced, the stable operation of the air conditioning system is guaranteed, and the service life of the air conditioning control system is extended.

[0064] To improve the strength of the cabinet frame 100, when the outer column 110 has a circumferential opening structure, a reinforcing member is provided on the outer column 110. The reinforcing member can close the opening of the circumferential opening structure, thus improving the strength of the outer column 110 and ensuring the stability of the cabinet frame 100.

[0065] For example, such as Figure 3 As shown, the outer column 110 has a U-shaped structure, and the reinforcing member is a U-shaped bracket 111. The U-shaped bracket 111 is fixed inside the U-shaped opening of the outer column 110, and the U-shaped bracket 111 can form a closed loop structure with the outer column 110, which improves the strength of the outer column 110.

[0066] To further improve the strength of the rack frame 100, such as Figure 5As shown, multiple first reinforcing beams 151 extending along a second direction are provided between the outer columns 110, and these multiple first reinforcing beams 151 are distributed sequentially along the vertical direction. Second reinforcing beams 152 extending along a first direction are provided between the first reinforcing beams 151 and the second inner column 132, and between the first reinforcing beams 151 and the third inner column 133. In this way, the cabinet frame 100 is reinforced in both the first and second directions by the first reinforcing beams 151 and the second reinforcing beams 152, improving the strength of the cabinet frame 100 and ensuring the overall stability of the integrated cabinet.

[0067] like Figure 5 As shown, array holes are provided on both the first reinforcing beam 151 and the second reinforcing beam 152, which can reduce the weight of the first reinforcing beam 151 and the second reinforcing beam 152, improve the portability of the cabinet frame 100, and ensure the installation requirements of components and cables through the array holes.

[0068] The first reinforcing beam 151 and the second reinforcing beam 152 can be connected to the outer column 110, the second inner column 132, and the third inner column 133 by threaded fasteners or welding. This application embodiment does not limit this.

[0069] To enable integrated cabinets to adapt to different installation surfaces, such as Figure 1 and Figure 6 As shown, the integrated cabinet also includes a base 400, which is formed by welding four standard channel steels together. A first reinforcing rib 420, which is an angled reinforcing plate, is fixed between two adjacent channel steels to improve the connection strength between the two channel steels. The base 400 has mounting holes 440, through which it is fixedly connected to the bottom of the cabinet frame 100. To provide installation space for the base 400 and the cabinet frame 100, the base 400 has mounting holes 440 on both sides in the second direction. The through hole 410 allows for the installation of the cabinet frame 100 and the base 400 after the cabinet frame 100 is placed on top of the base 400. To compensate for the strength loss caused by the through hole 410, the base 400 is provided with a second reinforcing rib 430 around the through hole 410. In the first direction, the second reinforcing rib 430 is located on both sides of the through hole 410, and the length of the second reinforcing rib 430 extends vertically to improve the strength of the base 400 and ensure the overall stability of the integrated cabinet.

[0070] During the use of the integrated cabinet provided in this application embodiment, the instrumentation and control component group 600 integrated on the first integrated board 210 can be inspected and maintained by opening the front door panel 310, and the electrical component group 700 integrated on the second integrated board 220 can be inspected and maintained by opening the rear door panel 360. When necessary, the internal cables can be maintained by opening the side door panel, thereby realizing the integration of the air conditioning control system, reducing the space occupation, and further reducing the space occupation of the cables by routing the cables in the internal area of ​​the integrated cabinet, so that the air conditioning control system can be applied to more installation areas and improve the applicability of the air conditioning control system installation.

[0071] This application also provides an air conditioning control system cabinet, which includes the integrated cabinet, instrumentation and control component group 600, and electrical component group 700 as described in the above embodiments.

[0072] Since the aforementioned integrated cabinet has the aforementioned technical effects, and the aforementioned air conditioning control system cabinet includes the aforementioned integrated cabinet, the aforementioned air conditioning control system cabinet also has the corresponding technical effects, which will not be elaborated here.

[0073] The above description of the disclosed embodiments enables those skilled in the art to make or use this application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of this application. Therefore, this application is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. An integrated cabinet, characterized in that, include: Rack frame (100), first integrated board (210), and second integrated board (220); The first integrated board (210) is fixed inside the cabinet frame (100), and the first integrated board (210) is used to integrate the instrumentation and control component group (600). The second integration board (220) is fixed inside the cabinet frame (100), and the second integration board (220) is used to integrate electrical component groups (700).

2. The integrated cabinet according to claim 1, characterized in that, The first integrated plate (210) and the second integrated plate (220) are both parallel to the first direction, and the first integrated plate (210) and the second integrated plate (220) are distributed along the second direction, with an angle between the first direction and the second direction.

3. The integrated cabinet according to claim 2, characterized in that, The cabinet frame (100) and the front side of the first integrated board (210) form a first area, which is divided into an instrumentation and control area (510) and a wiring first zone in a first direction; The cabinet frame (100) and the rear side of the second integrated board (220) form a second region, which is divided into an electrical area (520) and a second wiring area (540) in a first direction. The cabinet frame (100) forms a second wiring zone with the first integrated board (210) and the second integrated board (220); The instrumentation control area (510) is used to accommodate the instrumentation control component group (600), the first wiring section and the second wiring section form a first wiring area (530), the first wiring area (530) is used to accommodate power cables, the electrical area (520) is used to accommodate the electrical component group (700), and the second wiring area (540) is used to accommodate signal cables.

4. The integrated cabinet according to claim 1, characterized in that, The cabinet frame (100) includes: an outer column (110), a first outer crossbeam (121), and a second outer crossbeam (122); There are four outer columns (110), four first outer crossbeams (121), and four second outer crossbeams (122); The length of the first outer crossbeam (121) extends along a first direction; the length of the second outer crossbeam (122) extends along a second direction; The outer column (110), the first outer beam (121) and the second outer beam (122) are at an angle to each other and are fixedly connected to each other.

5. The integrated cabinet according to claim 4, characterized in that, The cabinet frame (100) further includes: a first inner column (131), a second inner column (132), a third inner column (133), a fourth inner column (134), a first inner crossbeam (141), a second inner crossbeam (142), and a third inner crossbeam (143). The length of the first inner crossbeam (141) extends along the second direction, and both ends of the first inner crossbeam (141) are fixedly connected to the first outer crossbeam (121). The first inner column (131), the second inner column (132), the third inner column (133), and the fourth inner column (134) are distributed sequentially along the second direction, and the two ends of the first inner column (131), the two ends of the second inner column (132), the two ends of the third inner column (133), and the two ends of the fourth inner column (134) are all fixedly connected to the first inner crossbeam (141). The lengths of the second inner crossbeam (142) and the third inner crossbeam (143) both extend along the first direction. Both ends of the second inner crossbeam (142) and the third inner crossbeam (143) are fixedly connected to the second outer crossbeam (122), and the second inner crossbeam (142) and the third inner crossbeam (143) are distributed sequentially along the second direction.

6. The integrated cabinet according to claim 5, characterized in that, The first integrated plate (210) is fixed to the second inner crossbeam (142) and the second inner column (132); The second integrated plate (220) is fixed to the third inner crossbeam (143) and the third inner column (133).

7. The integrated cabinet according to claim 6, characterized in that, It also includes a first inner door (230) and a second inner door (240) distributed in a vertical direction. The first inner door (230) covers a portion of the first integrated panel (210), and the second inner door (240) covers a portion of the first integrated panel (210). Both the first inner door (230) and the second inner door (240) are installed on the first inner column (131).

8. The integrated cabinet according to claim 5, characterized in that, The cabinet frame (100) and the front side of the first integrated board (210) form a first area, which is divided into an instrumentation and control area (510) and a wiring first zone by the first inner column (131) and the second inner column (132); The cabinet frame (100) and the rear side of the second integrated board (220) form a second area, which is divided into an electrical area (520) and a second wiring area (540) by the third inner column (133) and the fourth inner column (134). The cabinet frame (100) forms a second wiring zone with the first integrated board (210) and the second integrated board (220); The instrumentation control area (510) is used to accommodate the instrumentation control component group (600), the first wiring section and the second wiring section form a first wiring area (530), the first wiring area (530) is used to accommodate power cables, the electrical area (520) is used to accommodate the electrical component group (700), and the second wiring area (540) is used to accommodate signal cables.

9. The integrated cabinet according to claim 5, characterized in that, The outer column (110) has a circumferential opening structure, and the outer column (110) is provided with a reinforcing member, which closes the opening of the circumferential opening structure; And / or, a first reinforcing beam (151) extending along a second direction is provided between the outer columns (110), and there are multiple first reinforcing beams (151), and the multiple first reinforcing beams (151) are distributed sequentially along the vertical direction; a second reinforcing beam (152) extending along a first direction is provided between the first reinforcing beam (151) and the second inner column (132), and between the first reinforcing beam (151) and the third inner column (133).

10. The integrated cabinet according to claim 9, characterized in that, The outer column (110) has a U-shaped structure, and the reinforcing member is a U-shaped bracket (111). The U-shaped bracket (111) and the outer column (110) form a closed loop structure.

11. The integrated cabinet according to claim 9, characterized in that, Both the first reinforcing beam (151) and the second reinforcing beam (152) are provided with array holes.

12. The integrated cabinet according to any one of claims 1-11, characterized in that, It also includes a base (400), which is fixedly connected to the bottom of the cabinet frame (100); The base (400) has through holes (410) on both sides in the second direction, and the base (400) has a reinforcing structure around the through holes (410).

13. The integrated cabinet according to any one of claims 1-11, characterized in that, Also includes: A front door panel (310), a rear door panel (360), a first side door panel (320), and a second side door panel; wherein the front door panel (310) is installed at the front end of the cabinet frame (100), the rear door panel (360) is installed at the rear end of the cabinet frame (100), the first side door panel (320) is installed on one side of the cabinet frame (100), and the second side door panel is installed on the other side of the cabinet frame (100).

14. An air conditioning control system cabinet, characterized in that, include: The integrated cabinet as described in any one of claims 1-13, the instrumentation and control component group (600), and the electrical component group (700).