5G Internet of Things electric control cabinet capable of accessing power distribution data in real time

Through the modularly designed 5G IoT electrical control cabinet, the flexible combination of distribution boxes is achieved using U-shaped connecting plates and fastening components, which solves the problem of poor adaptability of existing distribution boxes, achieves high flexibility in adjustment and stability, and improves assembly convenience and versatility.

CN120497772AActive Publication Date: 2025-08-15苏州笑聪电气设备有限公司
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Patent Information

Application Number
CN202211721763.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2022-12-30
Publication Date
2025-08-15
Estimated Expiration
2042-12-30

AI Technical Summary

Technical Problem

The existing distribution box is designed with a fixed shape and size, which cannot flexibly adapt to the needs of different sites. It has poor adaptability, resulting in the inability to meet the diverse usage requirements. It also needs to be remade when changing drawings or on-site changes, which wastes costs and time.

Method used

A 5G IoT electrical control cabinet that can access power distribution data in real time is designed. It adopts a modular structure of the upper box, a set of intermediate box and a lower box. The flexible combination of the box is achieved through a U-shaped connection plate and fastening components, allowing the number of intermediate boxes to be adjusted according to customer needs, combining the sealing ring and electrical component mounting plate to ensure the stability and sealing of the connection.

Benefits of technology

It realizes highly flexible adjustment and stability of the distribution box, meets multiple usage requirements, and does not need to redesign the box, improves assembly convenience and versatility, and reduces production costs and time waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

A 5G Internet of Things electric control cabinet capable of accessing power distribution data in real time belongs to the technical field of power systems and equipment, and comprises an upper box body, a group of middle box bodies, a lower box body and a box door which are sequentially arranged from top to bottom; a first U-shaped connecting plate is arranged at the lower end of the upper box body, a second U-shaped connecting plate and a third U-shaped connecting plate are arranged at the upper end and the lower end of the middle box body respectively, a fourth U-shaped connecting plate is arranged at the upper end of the lower box body, a fastening assembly is arranged between the first U-shaped connecting plate and the second U-shaped connecting plate, and a fastening assembly is arranged between the third U-shaped connecting plate and the fourth U-shaped connecting plate. According to the 5G Internet of Things electric control cabinet capable of accessing the power distribution data in real time, when different clients have different use requirements on the power distribution box, a designer can adjust the number of one group of middle box bodies according to the specific requirements of the clients without adjusting the box bodies of the modularized power distribution box, so that the operation is convenient, and the cost is reduced. And the convenience of assembling the modularized distribution box is improved.
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Description

Technical Field

[0001] The present invention belongs to the technical field of power systems and equipment, and specifically relates to a 5G Internet of Things electric control cabinet that can access power distribution data in real time. Background Art

[0002] The distribution box is a massive parameter on the data. It generally constitutes a low-voltage forest according to electrical wiring. It requires the switchgear, measuring instruments, protective electrical appliances and auxiliary equipment to be assembled in a closed or semi-closed metal cabinet or on a screen to form a low-voltage distribution box. During normal operation, the circuit can be connected or disconnected with the help of manual or automatic switches. The distribution box has the characteristics of small size, easy installation, special technical performance, fixed position, unique configuration function, no site restrictions, relatively common application, stable and reliable operation, high space utilization, small footprint and environmental protection effects.

[0003] At present, there are many types of indoor distribution boxes, which can be divided into open-mounted boxes and concealed-mounted boxes according to different installation methods. The structures of various distribution boxes are different to meet different functional requirements. Usually, manufacturers produce distribution boxes according to certain specifications and models, or customize them according to the drawings and technical requirements provided by customers. Once formed, they cannot be changed and have no universality. Sometimes changes in drawings or on-site construction conditions will cause the completed distribution boxes to be unusable and have to be remade, which wastes costs and delays work time, bringing many inconveniences to users. Summary of the Invention

[0004] Purpose of the invention: The purpose of the present invention is to provide a 5G Internet of Things electrical control cabinet that can access power distribution data in real time, which solves the problem that the distribution boxes in the prior art are generally designed with fixed shapes and sizes, cannot be flexibly adapted to the needs of different sites, and have poor adaptability.

[0005] Technical solution: The present invention provides a 5G Internet of Things electrical control cabinet that can access power distribution data in real time, comprising an upper box body, a group of intermediate boxes, a lower box body and a box door, wherein the upper box body, a group of intermediate boxes and the lower box body are arranged in sequence from top to bottom, and one side of the box door is connected to the upper box body and the lower box body by a hinge; wherein, the lower end portion of the upper box body is provided with a U-shaped connecting plate 1, the upper end portion and the lower end portion of the intermediate box body are respectively provided with a U-shaped connecting plate 2 and a U-shaped connecting plate 3, the upper end portion of the lower box body is provided with a U-shaped connecting plate 4, the U-shaped connecting plate 1 and the U-shaped connecting plate 2 are fixedly connected, and a fastening component is provided between the U-shaped connecting plate 1 and the U-shaped connecting plate 2, the U-shaped connecting plate 3 and the U-shaped connecting plate 4 are fixedly connected, and a fastening component is provided between the U-shaped connecting plate 3 and the U-shaped connecting plate 4. The 5G IoT electric control cabinet of the present invention, which can access power distribution data in real time, can be used by designers to adjust the number of intermediate boxes in a group according to the specific needs of customers when different customers have different requirements for the use of the distribution box. There is no need to adjust the box of the modular distribution box, which improves the convenience of assembling the modular distribution box.

[0006] Furthermore, the above-mentioned 5G Internet of Things electrical control cabinet that can access power distribution data in real time, the fastening assembly includes a group of connecting bolts one, a group of connecting bolts two and a sealing ring, the group of connecting bolts one and the group of connecting bolts two are arranged in a one-to-one correspondence, and the connecting bolts one and the connecting bolts two are threadedly connected, the U-shaped connecting plate one and the U-shaped connecting plate two, and the U-shaped connecting plate three and the U-shaped connecting plate four are fixedly connected by the connecting bolts one and the connecting bolts two, and sealing rings are provided between the U-shaped connecting plate one and the U-shaped connecting plate two, and between the U-shaped connecting plate three and the U-shaped connecting plate four.

[0007] Furthermore, in the above-mentioned 5G Internet of Things electric control cabinet that can access power distribution data in real time, the connecting bolt 1 is provided with an internal threaded hole, and the connecting bolt 2 passes through the sealing ring and the internal threaded hole for threaded connection.

[0008] Furthermore, in the above-mentioned 5G Internet of Things electric control cabinet that can access power distribution data in real time, the sealing ring includes a sealing gasket body 1, a sealing gasket body 2, a U-shaped sealing ring 1, a U-shaped sealing ring 2 and a U-shaped sealing ring 3, wherein the U-shaped sealing ring 1 is arranged on the sealing gasket body 1, the U-shaped sealing ring 2 is arranged on the sealing gasket body 2, and the U-shaped sealing ring 3 is arranged between the U-shaped sealing ring 1 and the U-shaped sealing ring 2, and the U-shaped sealing ring 1 and the U-shaped sealing ring 2 are symmetrically arranged, and the U-shaped sealing ring 1, the U-shaped sealing ring 2 and the U-shaped sealing ring 3 have a structure with large ends and small middle. During the process of thread locking of the connecting bolt 1 and the connecting bolt 2, the shape of the U-shaped sealing ring 1, the U-shaped sealing ring 2 and the U-shaped sealing ring 3 can be changed by the pressing force, thereby achieving a tight fit with the end faces, the connecting bolt 1 and the connecting bolt 2.

[0009] Furthermore, in the aforementioned 5G IoT electrical control cabinet with real-time access to power distribution data, a first inner recess is provided between the first and third U-shaped sealing rings, and a second inner recess is provided between the second and third U-shaped sealing rings. The three-way inner recess of the U-shaped sealing rings creates a large buffering deformation structure between the first, second, and third U-shaped sealing rings, providing good buffering performance.

[0010] Furthermore, in the aforementioned 5G IoT electrical control cabinet with real-time access to power distribution data, sealing rings 4 are provided between the first connecting bolt and the first, second, third, and fourth U-shaped connecting plates, respectively. Sealing rings 5 are provided between the second connecting bolt and the first, second, third, and fourth U-shaped connecting plates, respectively. Sealing rings 4 and 5 ensure the seal between the connecting plates of the first and second connecting bolts, respectively.

[0011] Furthermore, in the above-mentioned 5G IoT electrical control cabinet that can access power distribution data in real time, the inner walls of the upper box body, a group of middle boxes and the lower box body are all fixedly connected with electrical component mounting plates, and the electrical component mounting plates are provided with at least one electrical component guide rail.

[0012] Furthermore, in the above-mentioned 5G Internet of Things electrical control cabinet that can access power distribution data in real time, the electrical component guide rail is composed of a U-shaped fixed support part, an upper electrical component clamping plate and a lower electrical component clamping plate, the upper electrical component clamping plate and the lower electrical component clamping plate are respectively connected to the upper and lower end edges of the U-shaped fixed support part, and the upper electrical component clamping plate and the lower electrical component clamping plate are perpendicularly arranged to the U-shaped fixed support part, the upper electrical component clamping plate and the lower electrical component clamping plate are respectively located on the outside of the U-shaped fixed support part, and the upper electrical component clamping plate and the lower electrical component clamping plate are symmetrically arranged.

[0013] Furthermore, in the above-mentioned 5G Internet of Things electrical control cabinet that can access power distribution data in real time, a group of waist-shaped holes are provided on the bottom surface of the U-shaped fixed support part along the length direction, and the group of waist-shaped holes are located on the same straight line, and a group of upper clips are provided on the upper edge of the upper clamping plate of the electrical component, and a group of lower clips are provided on the lower edge of the lower clamping plate of the electrical component, and the group of upper clips and the group of lower clips are arranged one by one in a vertical direction.

[0014] Furthermore, the above-mentioned 5G IoT electric control cabinet that can access power distribution data in real time has a display screen and a set of buttons on the outer surface of the cabinet door.

[0015] It can be seen from the above technical solution that the present invention has the following beneficial effects: the 5G Internet of Things electric control cabinet with real-time access to power distribution data described in the present invention only needs to design and manufacture a standard upper box body, a group of middle boxes and a lower box body, so that distribution boxes of different heights can be formed by combination, and there is no need to redesign or customize each box body with special requirements. It can meet a variety of practical requirements and has strong versatility; since the distribution box has a split modular structure, in order to improve the stability of the distribution box after it is assembled into a whole, fastening components are provided at the connection positions between the upper box body, a group of middle boxes and the lower box body, which can not only play a sealing role, but also make the upper box body, a group of middle boxes and the lower box body tightly connected, thereby improving the overall stability of the distribution box. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 A top view of the 5G IoT electric control cabinet capable of real-time access to power distribution data as described in the present invention; Figure 2 This is a main view of the 5G IoT electric control cabinet capable of real-time access to power distribution data as described in the present invention; Figure 3 This is a left view of the 5G IoT electric control cabinet capable of real-time access to power distribution data as described in the present invention; Figure 4 This is a rear view of the 5G IoT electric control cabinet capable of real-time access to power distribution data as described in the present invention; Figure 5 This is a partial structural diagram of the 5G IoT electric control cabinet capable of real-time access to power distribution data as described in the present invention; Figure 6 For the present invention Figure 4 A partial enlarged view of point A in the middle; Figure 7 This is a schematic structural diagram of the intermediate box body of the present invention; Figure 8 This is a schematic diagram of the internal structure of the 5G IoT electric control cabinet that can access power distribution data in real time according to the present invention; Figure 9 This is a schematic structural diagram of the electrical component guide rail of the present invention.

[0017] In the figure: upper box body 1, U-shaped connecting plate 11, middle box body 2, U-shaped connecting plate 21, U-shaped connecting plate 3 22, lower box body 3, U-shaped connecting plate 4 31, box door 4, display screen 41, button 42, fastening assembly 5, connecting bolt 1 51, internal threaded hole 511, connecting bolt 2 52, sealing ring 53, sealing gasket body 1 531, sealing gasket body 2 532, U-shaped sealing ring 1 533, U-shaped sealing ring 2 534, U-shaped sealing ring 3 535, inner recess 1 536, inner recess 2 537, sealing ring 4 54, sealing ring 55, electrical component mounting plate 6, electrical component guide rail 7, U-shaped fixed support part 71, electrical component upper clamping plate 72, electrical component lower clamping plate 73, waist-shaped hole 74, upper clamping port 75, lower clamping port 76. DETAILED DESCRIPTION

[0018] The following describes embodiments of the present invention in detail, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the present invention, and are not to be construed as limiting the present invention.

[0019] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "clockwise", "counterclockwise" and the like to indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as limiting the present invention.

[0020] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be understood to indicate or imply relative importance or implicitly specify the number of the technical features being referred to. Thus, a feature specified as "first" or "second" may explicitly or implicitly include one or more of the features. In the description of the present invention, unless otherwise specified, "plurality" means two or more, unless otherwise explicitly specified.

[0021] In the present invention, unless otherwise expressly specified or limited, the terms "mounted," "connected," "connect," "fixed," etc. should be understood broadly. For example, they may refer to fixed, detachable, or integral connections; mechanical or electrical connections; direct or indirect connections through an intermediary; or internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on specific circumstances.

[0022] In the present invention, unless otherwise expressly specified or limited, a first feature being "above" or "below" a second feature may include the first and second features being in direct contact, or may include the first and second features being in contact not directly but through another feature between them. Furthermore, a first feature being "above," "above," and "above" a second feature may include the first feature being directly above or obliquely above the second feature, or may simply mean that the first feature is higher in level than the second feature. A first feature being "below," "below," and "below" a second feature may include the first feature being directly below or obliquely below the second feature, or may simply mean that the first feature is lower in level than the second feature.

[0023] Example 1 like Figure 1-5 The 5G Internet of Things electrical control cabinet shown in Figure 7, which can access power distribution data in real time, includes an upper box body 1, a group of intermediate boxes 2, a lower box body 3 and a box door 4. The upper box body 1, a group of intermediate boxes 2 and the lower box body 3 are arranged in sequence from top to bottom, and one side of the box door 4 is connected to the upper box body 1 and the lower box body 3 through a hinge; wherein, the lower end of the upper box body 1 is provided with a U-shaped connecting plate 11, the upper and lower ends of the intermediate box body 2 are respectively provided with a U-shaped connecting plate 21 and a U-shaped connecting plate 3 22, and the upper end of the lower box body 3 is provided with a U-shaped connecting plate 4 31, the U-shaped connecting plate 11 and the U-shaped connecting plate 2 21 are fixedly connected, and a fastening component 5 is provided between the U-shaped connecting plate 11 and the U-shaped connecting plate 2 21, the U-shaped connecting plate 3 22 and the U-shaped connecting plate 4 31 are fixedly connected, and a fastening component 5 is provided between the U-shaped connecting plate 3 22 and the U-shaped connecting plate 4 31. The outer surface of the door 4 is provided with a display screen 41 and a set of buttons 42. The segmented structure of the upper housing 1, a set of intermediate housings 2, and the lower housing 3 allows for flexible vertical configuration to suit different distribution box applications. By varying the number of intermediate housings 2 in a set, the vertical height of the distribution box can be flexibly adjusted. Even the smallest distribution box can consist of only the upper housing 1 and the lower housing 3 connected together.

[0024] like Figure 6The fastening assembly 5 shown includes a set of connecting bolts 51, a set of connecting bolts 52, and a sealing ring 53. The set of connecting bolts 51 and the set of connecting bolts 52 are arranged in a one-to-one correspondence, and the connecting bolts 51 and 52 are threadedly connected. The U-shaped connecting plate 11 and the U-shaped connecting plate 21, and the U-shaped connecting plate 3 and the U-shaped connecting plate 4 are fixedly connected by the connecting bolts 51 and 52. The sealing ring 53 is provided between the U-shaped connecting plate 11 and the U-shaped connecting plate 21, and between the U-shaped connecting plate 3 and the U-shaped connecting plate 4, 31. The sealing ring 54 is provided between the connecting bolt 51 and the U-shaped connecting plate 11, U-shaped connecting plate 21, U-shaped connecting plate 3 and the U-shaped connecting plate 4, 31, respectively. The sealing ring 55 is provided between the connecting bolt 52 and the U-shaped connecting plate 11, U-shaped connecting plate 21, U-shaped connecting plate 3 and the U-shaped connecting plate 4, 31.

[0025] The first connecting bolt 51 has an internally threaded hole 511, and the second connecting bolt 52 passes through the sealing ring 53 and is threadedly connected to the internally threaded hole 511. The second connecting bolt 52 passes through the sealing ring 53 and is locked with the first connecting bolt 51, thereby pressing the sealing ring 53 between the U-shaped connecting plate 11 and the second U-shaped connecting plate 21, and between the U-shaped connecting plate 3 22 and the fourth U-shaped connecting plate 31.

[0026] In addition to its sealing function, the provided sealing ring 53 can also play a buffering role in the process of locking the upper box body 1, a group of intermediate boxes 2, and the lower box body 3 by a group of connecting bolts 1 51 and a group of connecting bolts 2 52, so as to make the connection between the upper box body 1, a group of intermediate boxes 2, and the lower box body 3 tighter, thereby improving the overall stability of the distribution box.

[0027] Furthermore, the sealing ring 53 includes a first sealing gasket body 531, a second sealing gasket body 532, a first U-shaped sealing ring 533, a second U-shaped sealing ring 534, and a third U-shaped sealing ring 535. The first U-shaped sealing ring 533 is disposed on the first sealing gasket body 531, the second U-shaped sealing ring 534 is disposed on the second sealing gasket body 532, and the third U-shaped sealing ring 535 is disposed between the first U-shaped sealing ring 533 and the second U-shaped sealing ring 534. The first U-shaped sealing ring 533 and the second U-shaped sealing ring 534 are symmetrically arranged, and the first U-shaped sealing ring 533, the second U-shaped sealing ring 534, and the third U-shaped sealing ring 535 have a structure with larger ends and smaller middle. An inner recess 536 is provided between the first U-shaped sealing ring 533 and the third U-shaped sealing ring 535, and an inner recess 537 is provided between the second U-shaped sealing ring 534 and the third U-shaped sealing ring 535.

[0028] The openings of U-shaped sealing ring 1 533 and U-shaped sealing ring 2 534 face U-shaped connecting plate 1 11, U-shaped connecting plate 2 21, U-shaped connecting plate 3 22, and U-shaped connecting plate 4 31, respectively. During the tightening process of connecting bolt 1 51 and connecting bolt 2 52, the openings of U-shaped sealing ring 1 533 and U-shaped sealing ring 2 534 press against U-shaped connecting plate 1 11, U-shaped connecting plate 2 21, U-shaped connecting plate 3 22, and U-shaped connecting plate 4 31, creating negative pressure and achieving a good sealing effect. A spring-like structure is formed between U-shaped sealing ring 1 533, U-shaped sealing ring 2 534, and U-shaped sealing ring 3 535, providing a certain degree of cushioning performance.

[0029] Example 2 like Figure 8 An electrical component mounting plate 6 is fixedly connected to the inner walls of the upper box body 1 , a group of middle boxes 2 and the lower box body 3 , and at least one electrical component guide rail 7 is provided on the electrical component mounting plate 6 .

[0030] like Figure 9 and 7 The electrical component guide rail 7 shown is composed of a U-shaped fixed support portion 71, an upper electrical component clamping plate 72, and a lower electrical component clamping plate 73. The upper electrical component clamping plate 72 and the lower electrical component clamping plate 73 are respectively connected to the upper and lower ends of the U-shaped fixed support portion 71, and are arranged perpendicular to the U-shaped fixed support portion 71. The upper electrical component clamping plate 72 and the lower electrical component clamping plate 73 are respectively located on the outside of the U-shaped fixed support portion 71 and are symmetrically arranged. A group of waist-shaped holes 74 are provided on the bottom surface of the U-shaped fixed support portion 71 along the length direction, and the group of waist-shaped holes 74 are located on the same straight line. A group of upper clips 75 are provided on the upper edge of the upper electrical component clamping plate 72, and a group of lower clips 76 are provided on the lower edge of the lower electrical component clamping plate 73. The group of upper clips 75 and the group of lower clips 76 are arranged in a vertically opposite relationship.

[0031] A set of upper snap-in slots 75 and a set of lower snap-in slots 76 are provided on the electrical component guide rail 7 symmetrically. When the electrical component is clamped on the electrical component guide rail 7 , the electrical component can be stably confined at the positions of the set of upper snap-in slots 75 and the set of lower snap-in slots 76 .

[0032] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements can be made without departing from the principles of the present invention. These improvements should also be regarded as the scope of protection of the present invention.

Claims

1. A 5G IoT electric control cabinet with real-time access to power distribution data, characterized by: The invention comprises an upper box body (1), a group of intermediate boxes (2), a lower box body (3) and a box door (4), wherein the upper box body (1), the group of intermediate boxes (2) and the lower box body (3) are arranged in sequence from top to bottom, and one side of the box door (4) is connected to the upper box body (1) and the lower box body (3) via a hinge; The upper box body (1) is provided with a U-shaped connecting plate 1 (11) at the lower end, the middle box body (2) is provided with a U-shaped connecting plate 2 (21) and a U-shaped connecting plate 3 (22) at the upper end and the lower end, respectively, and the upper end of the lower box body (3) is provided with a U-shaped connecting plate 4 (31). The U-shaped connecting plate 1 (11) and the U-shaped connecting plate 2 (21) are fixedly connected, and a fastening assembly (5) is provided between the U-shaped connecting plate 1 (11) and the U-shaped connecting plate 2 (21). The U-shaped connecting plate 3 (22) and the U-shaped connecting plate 4 (31) are fixedly connected, and a fastening assembly (5) is provided between the U-shaped connecting plate 3 (22) and the U-shaped connecting plate 4 (31).

2. The 5G IoT electric control cabinet capable of real-time access to power distribution data according to claim 1, characterized in that: The fastening assembly (5) includes a group of connecting bolts (51), a group of connecting bolts (52) and a sealing ring (53), wherein the group of connecting bolts (51) and the group of connecting bolts (52) are arranged in a one-to-one correspondence, and the connecting bolts (51) and the connecting bolts (52) are threadedly connected, and the U-shaped connecting plate (1) and the U-shaped connecting plate (21), and the U-shaped connecting plate (3) and the U-shaped connecting plate (4) are fixedly connected by the connecting bolts (51) and the connecting bolts (52), and the U-shaped connecting plate (1) and the U-shaped connecting plate (21), and the U-shaped connecting plate (3) and the U-shaped connecting plate (4) are both provided with a sealing ring (53).

3. The 5G IoT electric control cabinet capable of real-time access to power distribution data according to claim 2, characterized in that: The first connecting bolt (51) is provided with an internal threaded hole (511), and the second connecting bolt (52) passes through the sealing ring (53) and is threadedly connected to the internal threaded hole (511).

4. The 5G IoT electric control cabinet capable of real-time access to power distribution data according to claim 2, characterized in that: The sealing ring (53) includes a sealing gasket body 1 (531), a sealing gasket body 2 (532), a U-shaped sealing ring 1 (533), a U-shaped sealing ring 2 (534) and a U-shaped sealing ring 3 (535), wherein the U-shaped sealing ring 1 (533) is arranged on the sealing gasket body 1 (531), the U-shaped sealing ring 2 (534) is arranged on the sealing gasket body 2 (532), and the U-shaped sealing ring 3 (535) is arranged between the U-shaped sealing ring 1 (533) and the U-shaped sealing ring 2 (534), and the U-shaped sealing ring 1 (533) and the U-shaped sealing ring 2 (534) are symmetrically arranged, and the U-shaped sealing ring 1 (533), the U-shaped sealing ring 2 (534) and the U-shaped sealing ring 3 (535) are in a structure with large ends and small in the middle.

5. The 5G IoT electric control cabinet capable of real-time access to power distribution data according to claim 4 is characterized in that: An inner recessed portion 1 (536) is provided between the U-shaped sealing ring 1 (533) and the U-shaped sealing ring 3 (535), and an inner recessed portion 2 (537) is provided between the U-shaped sealing ring 2 (534) and the U-shaped sealing ring 3 (535).

6. The 5G IoT electric control cabinet capable of real-time access to power distribution data according to claim 2, characterized in that: A sealing ring 4 (54) is provided between the connecting bolt 1 (51) and the U-shaped connecting plate 1 (11), the U-shaped connecting plate 2 (21), the U-shaped connecting plate 3 (22) and the U-shaped connecting plate 4 (31), respectively. A sealing ring 5 (55) is provided between the connecting bolt 2 (52) and the U-shaped connecting plate 1 (11), the U-shaped connecting plate 2 (21), the U-shaped connecting plate 3 (22) and the U-shaped connecting plate 4 (31).

7. The 5G IoT electric control cabinet capable of real-time access to power distribution data according to claim 4, characterized in that: An electrical component mounting plate (6) is fixedly connected to the inner walls of the upper box body (1), a group of intermediate boxes (2), and the lower box body (3), and at least one electrical component guide rail (7) is provided on the electrical component mounting plate (6).

8. The 5G IoT electric control cabinet capable of real-time access to power distribution data according to claim 7, characterized in that: The electrical component guide rail (7) is composed of a U-shaped fixed support portion (71), an electrical component upper card plate (72) and an electrical component lower card plate (73), wherein the electrical component upper card plate (72) and the electrical component lower card plate (73) are respectively connected to the upper and lower end edges of the U-shaped fixed support portion (71), and the electrical component upper card plate (72) and the electrical component lower card plate (73) are arranged perpendicular to the U-shaped fixed support portion (71), and the electrical component upper card plate (72) and the electrical component lower card plate (73) are respectively located outside the U-shaped fixed support portion (71), and the electrical component upper card plate (72) and the electrical component lower card plate (73) are symmetrically arranged.

9. The 5G IoT electric control cabinet capable of real-time access to power distribution data according to claim 8, characterized in that: A group of waist-shaped holes (74) are provided on the bottom surface of the U-shaped fixed support portion (71) along the length direction, and the group of waist-shaped holes (74) are located on the same straight line. A group of upper bayonets (75) are provided on the upper edge of the electrical component upper clamping plate (72), and a group of lower bayonets (76) are provided on the lower edge of the electrical component lower clamping plate (73). The group of upper bayonets (75) and the group of lower bayonets (76) are arranged one above the other.

10. The 5G IoT electric control cabinet capable of real-time access to power distribution data according to claim 1, characterized in that: A display screen (41) and a group of buttons (42) are provided on the outer surface of the box door (4).

Citation Information

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