General Cabinet

The integrated cabinet with a movable mounting bracket and guide rail system addresses space constraints, facilitating easy handling of uninterruptible power supplies and improving operational stability by separating AC and DC power distribution systems.

JP2026065671AActive Publication Date: 2026-04-15JINKO ENERGY STORAGE TECH CO LTD
View PDF 9 Cites 0 Cited by

Patent Information

Application Number
JP2026001680
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-11-14
Filing Date
2026-01-07
Publication Date
2026-04-15
Estimated Expiration
2044-07-30

AI Technical Summary

Technical Problem

The limited internal space in integrated cabinets makes it inconvenient for service personnel to handle uninterruptible power supplies during installation, removal, maintenance, and replacement.

Method used

An integrated cabinet design with a main body featuring a first and second accommodation cavity separated by a partition member, equipped with a guide rail allowing a mounting bracket for the uninterruptible power supply to move relative to the main body, enabling extension and retraction from the cavity for convenient operation outside the cabinet.

Benefits of technology

This design increases operational space, simplifies installation, maintenance, and replacement of the uninterruptible power supply, enhancing usability and operational stability by reducing interference between AC and DC power distribution systems.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 2026065671000001_ABST
    Figure 2026065671000001_ABST
Patent Text Reader

Abstract

The embodiment of the present invention provides a general-purpose cabinet. [Solution] The integrated cabinet includes a main body having a first housing cavity and a second housing cavity, a partition member and a mounting bracket. The partition member separates the first housing cavity and the second housing cavity, guide rails are provided on the side walls of the first housing cavity, and the mounting bracket is attached to the first housing cavity via the guide rails and is movable relative to the main body. The mounting bracket is used to mount an uninterruptible power supply. When the mounting bracket moves relative to the main body, at least a portion of the mounting bracket and at least a portion of the uninterruptible power supply can extend or retract relative to the first housing cavity. This design makes it convenient to insert and remove the uninterruptible power supply, and operations such as installation, maintenance, and replacement can be performed outside the first housing cavity, thereby increasing the operating space, reducing the difficulty of operation, and better meeting actual usage needs.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of energy storage, and more specifically to an integrated cabinet.

Background Art

[0002] An integrated cabinet is a commonly used device in the field of energy storage. The integrated cabinet is used for the installation of a power distribution system. Usually, an uninterruptible power supply is directly fixed and installed in the inner chamber of the integrated cabinet. However, due to the limited internal space of the integrated cabinet, the operation space is small during installation, removal, maintenance, and replacement, which is inconvenient for service personnel to handle the uninterruptible power supply.

Summary of the Invention

Problems to be Solved by the Invention

[0003] In view of this, this application provides an integrated cabinet that is advantageous for reducing the difficulty of inspecting an uninterruptible power supply.

Means for Solving the Problems

[0004] An embodiment of this application provides an integrated cabinet. The integrated cabinet includes a main body portion including a first accommodation cavity for installing an AC power distribution system and a second accommodation cavity for installing a DC power distribution system, a partition member located between the first accommodation cavity and the second accommodation cavity, and a mounting bracket located in the first accommodation cavity and used for installing an uninterruptible power supply. Here, a guide rail is provided on a side wall of the first accommodation cavity. The mounting bracket is attached to the guide rail and is movable relative to the main body portion along the guide rail, so that at least a part of the mounting bracket and at least a part of the uninterruptible power supply can extend out of the first accommodation cavity or retreat into the first accommodation cavity.

[0005] In one possible embodiment, at least two of the guide rails are provided on the side wall on the same side of the first housing cavity, and the same mounting bracket engages with at least two of the guide rails.

[0006] In one possible embodiment, the partition member is provided with an insulating layer, and / or the material of the partition member is an insulating material.

[0007] In one possible embodiment, the mounting bracket includes a main body and at least one position limiting portion, the position limiting portion being connected to the main body and forming an angle with respect to the main body, and the position limiting portion extending in a direction approaching the interior of the first housing cavity.

[0008] In one possible embodiment, the mounting bracket includes at least two of the position limiting members, each of which is arranged sequentially along the height direction of the overall cabinet.

[0009] In one possible embodiment, the main body includes a first beam, a second beam, and a third beam, wherein the third beam is parallel to the height direction of the integrated cabinet, the first and second beams are perpendicular to the height direction of the integrated cabinet, the first and second beams are connected to each other to form a frame, the third beam is connected to the frame along the height direction of the integrated cabinet, and the opposing ends of the third beam are each connected to the corresponding frame along the extending direction of the third beam.

[0010] In one possible embodiment, the main body includes at least one fourth beam and at least two third beams, the opposing ends of each third beam being connected to the frame, the fourth beam being located between adjacent third beams, and the opposing ends of each fourth beam being connected to adjacent third beams.

[0011] In one possible embodiment, the fourth beam includes a main segment and a connecting segment, the opposing ends of the main segment each connected to the connecting segment, and the connecting segment and the main segment form an angle, and the main segment and the connecting segment are used to form a chamber. The same connecting segment is connected to an adjacent third beam.

[0012] In one possible embodiment, the connecting segment includes a first connecting segment and a second connecting segment, the first connecting segment and the second connecting segment being connected to each other and forming an angle, the first connecting segment being connected to the main segment, and the second connecting segment being connected to the third beam.

[0013] In one possible embodiment, the guide rail is attached to the fourth beam.

[0014] In one possible embodiment, the main body includes a corner brace, the corner brace includes a first connection, a second connection, and a third connection, the first and second connection being connected to each other and forming an angle, the third connection being connected to the first and / or second connection, the first connection being connected to the first beam, the second connection being connected to the second beam, and the third connection being connected to the third beam.

[0015] In one possible embodiment, the first connector is detachably connected to the first beam, the second connector is detachably connected to the second beam, and the third connector is detachably connected to the third beam.

[0016] In one possible embodiment, the corner brace includes a connecting plate and a connecting member, wherein at least one of the first connecting portion, the second connecting portion and the third connecting portion is connected to the connecting plate, and the connecting member is provided on the connecting plate.

[0017] In one possible embodiment, the integrated cabinet includes a base, the base being located below the main body along the height direction of the integrated cabinet. [Effects of the Invention]

[0018] This invention provides a modular cabinet. The modular cabinet includes a main body having a first housing cavity and a second housing cavity, a partition member, and a mounting bracket. The partition member is used to separate the first housing cavity and the second housing cavity, a guide rail is provided on the side wall of the first housing cavity, and the mounting bracket is attached to the first housing cavity via the guide rail and is movable relative to the main body. The mounting bracket is used to mount an uninterruptible power supply (UPS). When the mounting bracket moves relative to the main body, at least a portion of the mounting bracket and at least a portion of the UPS can extend or retract relative to the first housing cavity. This design makes it convenient to insert and remove the UPS, and operations such as installation, maintenance, and replacement can be performed outside the first housing cavity, thereby increasing the operating space, reducing the difficulty of operation, and better meeting the needs of actual use. To more clearly explain the technical concept of the embodiments of this application, the necessary drawings for the embodiments are briefly introduced below. Clearly, the drawings described below are only a few embodiments of this application, and those skilled in the art can obtain other drawings based on these drawings without any creative work. [Brief explanation of the drawing]

[0019] [Figure 1] This is a schematic diagram of the integrated cabinet according to the present invention. [Figure 2] This is a schematic diagram showing the frame of the integrated cabinet according to the present invention. [Figure 3] This is a partially enlarged view of position I in Figure 2. [Figure 4] This is a schematic diagram showing a localized section of the integrated cabinet according to the present invention. [Figure 5] This is a schematic diagram of the mounting bracket according to the present invention. [Figure 6] It is a schematic diagram of the fourth beam according to the present application. [Figure 7] It is a schematic diagram of the same corner brace according to the present application.

Embodiments for Carrying out the Invention

[0020] To better understand the technical solution of the present application, the embodiments of the present application will be described in detail below with reference to the accompanying drawings.

[0021] It should be clear that the described embodiments are only some embodiments of the present application, not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without making inventive efforts shall fall within the protection scope of the present application.

[0022] The terms used in the embodiments of the present application are for the purpose of explaining specific embodiments only and are not intended to limit the present application. The singular forms of "a kind", "the foregoing" and "the said" used in the embodiments of the present application and the appended claims are also intended to include plural forms unless the context clearly indicates otherwise.

[0023] It should be understood that the term "and / or" used in this specification is only for explaining the relationship of related objects, and there may be three types of relationships. For example, A and / or B can represent the following relationships, and there are three situations where A exists alone, both A and B exist simultaneously, and B exists alone. Also, the symbol " / " in this specification generally indicates that the related objects before and after are in an "or" relationship.

[0024] As shown in Figure 1, an embodiment of the present invention provides a modular cabinet comprising a main body 1, a partition member 2, and a mounting bracket 3. The main body 1 comprises a first storage cavity 11 and a second storage cavity 12. The partition member 2 is located between the first storage cavity 11 and the second storage cavity 12 and is used to partition the two. The first storage cavity 11 is used to install an AC power distribution system, and the second storage cavity 12 is used to install a DC power distribution system. The mounting bracket 3 is located in the first storage cavity 11 and is used to install an uninterruptible power supply 5 (UPS). As shown in Figures 2 and 3, a guide rail 111 is provided on the side wall of the first storage cavity 11, and the mounting bracket 3 is attached to the guide rail 111 and can move relative to the main body 1 along the guide rail 111. The uninterruptible power supply (UPS) 5 is mounted to the first housing cavity 11 via a mounting bracket 3. As the mounting bracket 3 moves along the guide rail 111, at least a portion of it can extend out of or retract into the first housing cavity 11. The UPS 5 can move together with the mounting bracket 3, and at least a portion of the UPS 5 can extend out of or retract into the first housing cavity 11 together with the mounting bracket 3.

[0025] By providing a guide rail 111 on the side wall of the first housing cavity 11, the mounting bracket 3 and the uninterruptible power supply 5 can be moved relative to the main body 1, thereby allowing at least a portion of the mounting area and at least a portion of the uninterruptible power supply 5 to extend from or retract into the first housing cavity 11. Compared to a design in which the mounting bracket 3 and the uninterruptible power supply 5 are directly fixed to the side wall of the first housing cavity 11, the design according to the embodiment of the present invention is convenient for inserting and removing the uninterruptible power supply 5 by adding the guide rail 111. When installing, maintaining, or replacing the uninterruptible power supply 5, the mounting bracket 3 can be pulled out via the guide rail 111, and after the installation, maintenance, or replacement is completed, the mounting bracket 3 and the uninterruptible power supply 5 can be placed back into the first housing cavity 11 along the guide rail 111. With this design, installation, maintenance, and replacement can be performed outside the first housing cavity 11, thereby increasing the operating space, reducing the difficulty of operation, and better meeting the needs of actual use.

[0026] The first storage cavity 11 and the second storage cavity 12 are used to install an AC power distribution system and a DC power distribution system, respectively, and are separated by a partition member 2. This reduces the possibility of the AC power distribution system and the DC power distribution system interfering with each other during operation, thereby contributing to improved operational stability of the overall cabinet and better meeting actual usage needs.

[0027] As shown in Figure 4, in one possible embodiment, at least two guide rails 111 are provided on the same side wall of the housing cavity, and the same mounting bracket 3 engages with at least two guide rails 111.

[0028] The engagement of the mounting bracket 3 with at least two guide rails 111 is advantageous in improving the motion stability of the mounting bracket 3, and better meets the needs of actual use.

[0029] In one possible embodiment, the partition member is provided with an insulating layer, and / or the material of the partition member 2 is an insulating material.

[0030] The partition member 2 may be made of insulating material such as gypsum or foam, or it may be fitted with an insulating coating or insulating material. The partition member 2 can partition the first housing cavity 11 and the second housing cavity 12 and also provide insulation, thereby reducing the possibility of heat generated during operation between the components of the first housing cavity 11 and the components of the second housing cavity 12 affecting each other. Furthermore, the temperature of the housing cavities rises due to heat exchange between the first housing cavity 11 and the second housing cavity 12, which reduces the possibility of affecting the normal operation of the internal components, thus better meeting the needs of actual use.

[0031] As shown in Figure 5, in one possible embodiment, the mounting bracket 3 includes a main body and at least one position limiting portion 31 connected to the main body and forming an angle with respect to the main body. The position limiting portion 31 extends along a direction approaching the interior of the first chamber 163.

[0032] The position limiting unit 31 is used to limit the position of the uninterruptible power supply 5 along the height direction of the overall cabinet.

[0033] In one possible embodiment, the extension direction of the position limiting portion 31 is perpendicular to the height direction of the overall cabinet.

[0034] This design increases the contact area between the position limiting unit 31 and the uninterruptible power supply 5, making it convenient for position limiting the uninterruptible power supply 5, thereby improving the precision of the installation of the uninterruptible power supply 5 and better meeting actual usage needs.

[0035] As shown in Figure 5, in one possible embodiment, the mounting bracket 3 includes at least two position limiting sections 31, each position limiting section 31 being arranged sequentially along the height direction of the overall cabinet.

[0036] This design allows the mounting bracket 3 to restrict the position of multiple uninterruptible power supplies 5, and since both the upper and lower sides of an uninterruptible power supply 5 located between adjacent position-restricting sections 31 are restricted by the position-restricting section 31, it is advantageous for improving the accuracy of the mounting position of the uninterruptible power supply 5 and better meets the needs of actual use.

[0037] As shown in Figures 2 and 4, in one possible embodiment, the main body 1 includes a first beam 13, a second beam 14, and a third beam 15, where the first beam 13 and the second beam 14 are provided perpendicular to the height direction of the cabinet, and the third beam 15 is provided parallel to the height direction of the cabinet. The first beam 13 and the second beam 14 are connected to each other to form a frame, and the third beam 15 is connected to the frame enclosed by the first beam 13 and the second beam 14, and along the extending direction of the third beam 15, the opposing ends of the third beam 15 are each connected to the corresponding frames.

[0038] The first beam 13 and the second beam 14 may also serve as cross members of the overall cabinet, and the third beam 15 may also serve as a side member of the overall cabinet. The first beam 13 and the second beam 14 may be perpendicular to each other. For example, the first beam 13 may extend along the length of the overall cabinet, and the second beam 14 may extend along the width of the overall cabinet. The frame may include two first beams 13 and two second beams 14, and the frame may be a rectangular frame. With such a design, the frame of the overall cabinet can be constructed using the first beam 13, the second beam 14 and the third beam 15, thereby increasing the structural strength of the overall cabinet.

[0039] As shown in Figure 2, in one possible embodiment, the main body 1 includes at least one fourth beam 16 and at least two third beams 15, with each of the opposing ends of each third beam 15 connected to a frame, and frames provided on both opposing sides of the cabinet along the height direction of the cabinet. A fourth beam 16 is provided between two adjacent third beams 15, and the opposing ends of the fourth beam 16 are each connected to an adjacent third beam 15.

[0040] By providing the fourth beam 16, it can serve as reinforcement to the main body 1, thereby increasing the structural strength of the main body 1 and reducing the possibility of deformation of the main body 1. This increases the overall structural strength of the cabinet and better meets the needs of actual use.

[0041] As shown in Figure 6, in one possible embodiment, the fourth beam 16 includes a main segment 161 and a connecting segment 162, with each of the opposing ends of the main segment 161 connected to the connecting segment 162, and the connecting segment 162 and the main segment 161 forming an angle, and the main segment 161 and the connecting segment 162 are used to enclose the chamber 163. The cross-section of the fourth beam 16 may be "C" shaped. The same connecting segment is connected to an adjacent third beam.

[0042] This design increases the structural strength of the fourth beam 16, thereby enhancing its reinforcing effect on the main body 1, and is advantageous in improving the overall structural strength of the cabinet. At the same time, the fourth beam 16 may have a hollow structure, which provides a buffering effect and reduces weight, thus contributing to a reduction in the overall weight of the cabinet and better meeting actual usage needs.

[0043] As shown in Figure 2, in one possible embodiment, the main body 1 may include four first beams 13, four second beams 14, and four third beams 15, where two first beams 13 and two second beams 14 are used to form a rectangular frame, and the opposing ends of the four third beams 15 are each connected to the frame to form a substantially rectangular frame. At least one fourth beam 16 is provided between two adjacent third beams 15. The fourth beams 16 are used to serve a reinforcing role. The number of fourth beams 16 can be set according to the actual needs, and two, three, four, or more fourth beams 16 can be set between two adjacent third beams 15 to further increase the structural strength of the main body 1.

[0044] The main body 1 may further include baffle plates, hinged doors, etc., which are connected to the corresponding first beam 13, second beam 14, and third beam 15 and form a cabinet.

[0045] As shown in Figure 6, in one possible embodiment, the connecting segment 162 includes a first connecting segment 162a and a second connecting segment 162b, the first connecting segment 162a and the second connecting segment 162b being connected to each other and forming an angle between them, the first connecting segment 162a being connected to the main segment 161 and the second connecting segment 162b being connected to the third beam 15.

[0046] This design facilitates the connection between the fourth beam 16 and the third beam 15. The angle formed between the first connecting segment 162a and the second connecting segment 162b allows the first connecting segment 162a to be more firmly attached to the third beam 15, which is advantageous in increasing the contact area between the first connecting segment 162a and the third beam 15, and further improves the connection stability of the second beam 14 between them.

[0047] In one possible embodiment, the third beam 15 has a first connecting surface, and the first connecting segment 162a has a second connecting surface, the second connecting surface being located on the side of the first connecting segment 162a facing the third beam 15, and the first and second connecting surfaces being parallel. Such a design allows for a further increase in the contact area between the third beam 15 and the first connecting segment 162a, improving the stability of the connection between them and further contributing to an improvement in the overall structural strength of the cabinet.

[0048] In one possible embodiment, the guide rail 111 is attached to the fourth beam 16.

[0049] This design makes it easy to position the guide rail 111 during installation, which is advantageous for improving the relative positional accuracy of the guide rail 111.

[0050] As shown in Figures 4 and 7, in one possible embodiment, the main body 1 may further include a corner brace 17 including a first connecting portion 171, a second connecting portion 172, and a third connecting portion 173, wherein the first connecting portion 171 is connected to the second connecting portion 172, and the first connecting portion 171 and the second connecting portion 172 form an angle. The third connecting portion 173 is connected to the first connecting portion 171 and / or the second connecting portion 172. The first connecting portion 171 is connected to the first beam 13, the second connecting portion 172 is connected to the second beam 14, and the third connecting portion 173 is connected to the third beam 15.

[0051] This design allows for easy connection of the first beam 13, the second beam 14, and the third beam 15, enabling them to be integrally connected by the corner brace 17, and further allowing them to be combined with the frame of a comprehensive cabinet.

[0052] In one possible embodiment, the first beam 13 and the first connector 171 are detachably connected to each other, the second beam 14 and the second connector 172 are detachably connected to each other, and the third beam 15 and the third connector 173 are detachably connected to each other.

[0053] This design allows for easy assembly and disassembly of the main body 1 of the integrated cabinet, reducing the difficulty of operation. Assembly may also be performed after transport to the designated location. The structures, such as the first beam 13, second beam 14, and third beam 15, can be transported in component form, saving space and making transportation convenient.

[0054] As shown in Figure 7, in one possible embodiment, the corner brace 17 includes a connecting plate 174 and a connecting member 175, wherein at least one of the first connecting portion 171, the second connecting portion 172, and the third connecting portion 173 is connected to the connecting plate 174, and the connecting member 175 is provided on the connecting plate 174.

[0055] The connecting member 175 may be a component such as a suspension ring and is used to transport and engage equipment in the integrated cabinet. By integrating the connecting member 175 into the corner brace 17, the structure of the integrated cabinet can be simplified, avoiding the problem of separately installing suspension ring mounting parts in the integrated cabinet, thereby reducing the volume of the integrated cabinet, saving space, lowering costs, and better meeting actual usage needs.

[0056] The connecting member 175 may be attached to the connecting plate 174 of the corner brace 17 by a screw connection method.

[0057] As shown in Figure 7, in one possible embodiment, the first connecting portion 171 and the second connecting portion 172 are perpendicular to each other, the third connecting portion 173 is connected to the first connecting portion 171, and the third connecting portion 173 and the first connecting portion 171 may be located in the same plane. The connecting plate 174 is connected to the first connecting portion 171 and the second connecting portion 172, that is, the connecting plate 174 may be perpendicular to both the first connecting portion 171 and the second connecting portion 172, and the connecting member 175 may be located on the side of the connecting plate 174 away from the first connecting portion 171 and the second connecting portion 172.

[0058] This design allows the first connection section 171, the second connection section 172, and the connecting plate 174 to be enclosed in a roughly triangular pyramidal structure, thereby increasing the architectural strength of the corner brace 17 and better meeting the needs of actual use.

[0059] As shown in Figure 1, in one possible embodiment, the integrated cabinet may be located below the main body 1 along the height direction of the integrated cabinet and may include a base 4 for raising the main body 1.

[0060] By installing the base 4, a gap can be created between the main unit 1 and the ground or other surface when it is placed, allowing the main unit 1 to be positioned higher, which is advantageous in improving the moisture-proof capacity of the overall cabinet. Furthermore, positioning the main unit 1 higher is convenient for installing cables at the bottom of the main unit 1, better meeting actual usage needs.

[0061] In one possible embodiment, the base 4 may be welded to the first beam 13 and the second beam 14, and / or the base 4 and the corner brace 17 may be detachably connected to each other.

[0062] In one possible embodiment, a forklift hole may be provided in the base 4, allowing the integrated cabinet to be transported by a forklift. By providing a forklift hole in the base 4, it is convenient for transporting the integrated cabinet by forklift, and the possibility of mutual interference between the forklift and the main body 1 during the transport process is reduced, thus better meeting the needs of actual use.

[0063] An embodiment of the present invention provides an integrated cabinet. The integrated cabinet includes a main body having a first housing cavity 11 and a second housing cavity 12, a partition member 2, and a mounting bracket 3. The partition member 2 is used to separate the first housing cavity 11 and the second housing cavity 12. A guide rail 111 is provided on the side wall of the first housing cavity 11. The mounting bracket 3 is attached to the first housing cavity 11 via the guide rail 111 and is movable relative to the main body 1. The mounting bracket 3 is used to mount an uninterruptible power supply 5. When the mounting bracket 3 moves relative to the main body 1, at least a portion of the mounting bracket 3 and at least a portion of the uninterruptible power supply 5 can extend or retract relative to the first housing cavity 11. This design makes it convenient to insert and remove the uninterruptible power supply 5, and allows operations such as installation, maintenance, and replacement to be performed outside the first housing cavity 11, thereby increasing the operating space, reducing the difficulty of operation, and better meeting the needs of actual use.

[0064] Similar parts between the embodiments in this specification can be referenced to one another. In particular, the descriptions of the apparatus embodiments and terminal embodiments are relatively simple, as they are essentially similar to the method embodiments, and relevant parts can be referenced to the descriptions in the method embodiments. [Explanation of symbols]

[0065] 1. Main body 11. First storage cavity 111 Guide rail 12. Second storage cavity 13 1st beam 14 Second beam 15 Third beam 16 4th beam 161 Main Segment 162 connection segments 162a First connection segment 162b Second connection segment 163 Chamber 17 Corner brace 171 First connection section 172 Second connection section 173 Third connection section 174 Connecting Plate 175 Connecting Member 2 Partition members 3. Mounting bracket 31 Position restriction section 4 bases 5 Uninterruptible power supply

Claims

1. It is a general-purpose cabinet, A main body (1) including a first housing cavity (11) for installing an AC power distribution system and a second housing cavity (12) for installing a DC power distribution system, A partition member (2) is located between the first housing cavity (11) and the second housing cavity (12), The first housing cavity (11) includes a mounting bracket (3) for mounting an uninterruptible power supply (5), Guide rails (111) are provided on the side wall of the first housing cavity (11), and the mounting bracket (3) is attached to the guide rails (111) and is movable relative to the main body (1) along the guide rails (111), thereby enabling at least a part of the mounting bracket (3) and at least a part of the uninterruptible power supply (5) to extend from or retract into the first housing cavity (11). The main body (1) includes at least one fourth beam (16) and at least two third beams (15), wherein the third beams (15) are parallel to the height direction of the integrated cabinet, the fourth beams (16) are located between adjacent third beams (15), and the opposing ends of the fourth beams (16) are connected to adjacent third beams (15), respectively. The fourth beam (16) includes a main segment (161) and a connecting segment (162), The connecting segment (162) includes a first connecting segment (162a) and a second connecting segment (162b), the first connecting segment (162a) and the second connecting segment (162b) being connected to each other and forming an angle, the first connecting segment (162a) being connected to the main body segment (161), and the second connecting segment (162b) being connected to the third beam (15), characterized in that the integrated cabinet.

2. The main body (1) further includes a first beam (13) and a second beam (14), the first beam (13) and the second beam (14) being perpendicular to the height direction of the integrated cabinet, the first beam (13) and the second beam (14) being connected to each other to form a frame, the third beam (15) being connected to the frame along the height direction of the integrated cabinet, and the opposing ends of the third beam (15) being connected to the corresponding frames along the extending direction of the third beam (15), as described in claim 1.

3. The integrated cabinet according to claim 2, characterized in that each of the three third beams (15) has its opposing ends connected to the frame.

4. The opposing ends of the main body segment (161) are each connected to the connecting segment (162), and the connecting segment (162) and the main body segment (161) form an angled joint, and the main body segment (161) and the connecting segment (162) are used to surround and form a chamber (163). The integrated cabinet according to claim 3, characterized in that the same connecting segment (162) is connected to an adjacent third beam (15).

5. The integrated cabinet according to claim 1, characterized in that the guide rail (111) is attached to the fourth beam (16).

6. The main body (1) includes a corner brace (17), the corner brace (17) includes a first connecting portion (171), a second connecting portion (172), and a third connecting portion (173), the first connecting portion (171) and the second connecting portion (172) are connected to each other and form an angle, the third connecting portion (173) is connected to the first connecting portion (171) and / or the second connecting portion (172), the first connecting portion (171) is connected to the first beam (13), the second connecting portion (172) is connected to the second beam (14), and the third connecting portion (173) is connected to the third beam (15), as described in claim 1.

7. The integrated cabinet according to claim 6, characterized in that the first connecting portion (171) is detachably connected to the first beam (13), the second connecting portion (172) is detachably connected to the second beam (14), and the third connecting portion (173) is detachably connected to the third beam (15).

8. The integrated cabinet according to claim 6, wherein the corner brace (17) includes a connecting plate (174) and a connecting member (175), and at least one of the first connecting portion (171), the second connecting portion (172), and the third connecting portion (173) is connected to the connecting plate (174), and the connecting member (175) is provided on the connecting plate (174).

9. The integrated cabinet according to claim 1, wherein at least two of the guide rails (111) are provided on the side wall on the same side of the first housing cavity (11), and the same mounting bracket (3) engages with at least two of the guide rails (111).

10. The integrated cabinet according to claim 1, characterized in that the partition member (2) is provided with an insulating layer, and / or the material of the partition member (2) is an insulating material.

11. The integrated cabinet according to claim 1, wherein the integrated cabinet includes a base (4), the base (4) is located below the main body (1) along the height direction of the integrated cabinet, and the base (4) is provided with a forklift hole for a forklift to transport the integrated cabinet.

Citation Information

Patent Citations

  • Intelligent UPS power distribution device for data center power distribution and rapid installation method thereof

    CN113363847A

  • AC / DC distribution cabinet for communication power source

    CN1346168A

  • High frequency electric power communication switching power supply cabinet

    CN205430035U

  • Drawable UPS power supply using slide rail

    CN209896767U

  • Integrated energy storage cabinet

    CN219760327U