Wiring sealing plate and electrical equipment

By designing an adjustable-width cable sealing plate, the problem of poor cable diameter adaptability in electrical equipment is solved, achieving adaptability and efficient sealing for cables of different diameters, reducing installation costs and the risk of seal failure.

CN223829622UActive Publication Date: 2026-01-23SUNGROW POWER SUPPLY CO LTD
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Patent Information

Application Number
CN202520075159.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-13
Publication Date
2026-01-23
Estimated Expiration
2035-01-13

AI Technical Summary

Technical Problem

The current wiring hole size of electrical equipment limits the adaptability of cable diameters, making it difficult to accommodate cables of different diameters.

Method used

Design a cable routing cover plate, including a first cover plate and a second cover plate. By moving relative to each other in a first direction, the distance between the first cable routing groove and the second cable routing groove is adjusted to form a cable routing hole with an adjustable width. The different widths are maintained by a fixed connection to adapt to cables of different diameters.

Benefits of technology

It improves the adaptability of cable diameter, reduces the need for on-site drilling, reduces installation workload, improves wiring efficiency and sealing effect, and reduces the probability of seal failure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a wiring sealing plate and electrical equipment, and the wiring sealing plate comprises a first sealing plate which is provided with a first wiring groove; the second sealing plate and the first sealing plate are stacked, and the second sealing plate is provided with a second wiring groove; the second wiring groove and the first wiring groove can be distributed in the first direction and are in butt joint to form a first wiring hole. The first sealing plate and the second sealing plate can move relatively in the first direction, and at least two positions of the first sealing plate and the second sealing plate in the first direction can be fixedly connected. In the wiring sealing plate, the first sealing plate and the second sealing plate move relatively in the first direction, the width of the first wiring hole in the first direction can be adjusted, and the first wiring hole can adapt to cables with different diameters; at least two positions of the first sealing plate and the second sealing plate in the first direction can be fixedly connected, different widths of the first wiring hole in the first direction can be kept, the first wiring hole can be used for wiring of cables with different wire diameters, and the adaptability to the wire diameters of the cables is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electrical equipment wiring, and more particularly to a wiring sealing plate and an electrical equipment. BACKGROUND

[0002] The electrical equipment is usually provided with a wire hole for a cable to pass through, and the size of the wire hole limits the cable diameter, and it is difficult to wire cables with different diameters, and the adaptability to the cable diameter is poor.

[0003] Therefore, how to design the cable wiring to improve the adaptability to the cable diameter is a problem to be solved by the person skilled in the art. CONTENT OF THE INVENTION

[0004] Therefore, the present application aims to provide a wiring sealing plate and an electrical equipment to improve the adaptability to the cable diameter.

[0005] In order to achieve the above-mentioned purpose, the present application provides the following technical solutions:

[0006] A wiring sealing plate comprises:

[0007] A first sealing plate is provided with a first wiring slot;

[0008] A second sealing plate is stacked with the first sealing plate, and the second sealing plate is provided with a second wiring slot;

[0009] The second wiring slot and the first wiring slot can be distributed along a first direction and abut to form a first wiring hole; the first sealing plate and the second sealing plate can be relatively moved in the first direction, and at least two positions of the first sealing plate and the second sealing plate in the first direction can be fixedly connected.

[0010] Optionally, at least one of the first sealing plate and the second sealing plate is provided with a second wiring hole; wherein the width of the first wiring hole in the first direction can be different from the width of the second wiring hole in the first direction.

[0011] Optionally, the first sealing plate and the second sealing plate are both provided with a second wiring hole;

[0012] The second wiring hole and the first wiring slot on the first sealing plate are distributed along the first direction, and the groove bottom of the first wiring slot is closer to the second wiring hole on the first sealing plate than the groove opening;

[0013] The second wiring hole and the second wiring slot on the second sealing plate are distributed along the first direction, and the groove bottom of the second wiring slot is closer to the second wiring hole on the second sealing plate than the groove opening.

[0014] Optionally, the first sealing plate and the second sealing plate can be fixedly connected at at least three positions in the first direction; in one of the at least three positions, the opening of the second wiring groove and the opening of the first wiring groove face different sides in the first direction, and the first sealing plate blocks the second wiring groove.

[0015] Optionally, the projection of the second wiring hole on the first cover plate onto the second cover plate can be located in the clearance structure of the second cover plate; wherein, the clearance structure includes at least one of a clearance hole and a second wiring groove, the clearance hole is located on the groove opening side of the second wiring groove, and the clearance hole and the second wiring groove are connected.

[0016] Optionally, when the first sealing plate is provided with the second wiring hole, a sealing component is provided in the second wiring hole on the first sealing plate, and the cable is indirectly allowed to pass through through the sealing component;

[0017] The second sealing plate is provided with a clearance hole, which is located on the groove side of the second wiring groove and is connected to the second wiring groove. The clearance hole is used to allow space for the sealing component.

[0018] Optionally, both the first sealing plate and the second sealing plate are provided with the second wiring hole;

[0019] Wherein, the second wiring hole on the first sealing plate and the second wiring hole on the second sealing plate are both round holes with equal diameters; and / or, the number of the second wiring holes on the first sealing plate and the number of the second wiring holes on the second sealing plate are equal.

[0020] Optionally, at least one of the second wiring holes is provided with a sealing component, and the cable is indirectly passed through the sealing component; or, at least one of the second wiring holes is directly passed through the cable.

[0021] Optionally, one of the first sealing plate and the second sealing plate is provided with at least one strip-shaped mounting hole, and the other is provided with at least one first mounting post; the length direction of the strip-shaped mounting hole is a first direction; the first mounting post passes through the strip-shaped mounting hole;

[0022] Wherein, at least one of the first mounting posts and the strip-shaped mounting hole are mutually restrictive; and / or, at least one of the first mounting posts is a first stud, and the first sealing plate and the second sealing plate can be fixedly connected by the first stud and the first nut.

[0023] Optionally, the opening of the first wiring groove faces the first side of the first sealing plate, and the second side of the first sealing plate is opposite to the first side; the opening of the second wiring groove faces the first side of the second sealing plate, and the second side of the second sealing plate is opposite to the first side.

[0024] Of the strip-shaped mounting hole and the first mounting post, one located on the first sealing plate is on the second side of the first sealing plate, and the other located on the second sealing plate is on the first side of the second sealing plate.

[0025] Optionally, the first mounting post is disposed on the second sealing plate, and the strip-shaped mounting hole is disposed on the first sealing plate;

[0026] Wherein, at least one of the strip-shaped mounting holes is a first mounting hole, the first mounting hole extends along a first direction to the edge of the first sealing plate, and the first mounting hole has an opening at the edge of the first sealing plate that mates with the first mounting post; and / or, at least one of the strip-shaped mounting holes is a second mounting hole, the second mounting hole being circumferentially closed.

[0027] Optionally, the first stud is disposed on the second sealing plate, and the strip-shaped mounting hole is disposed on the first sealing plate;

[0028] The second sealing plate is provided with a clearance hole, which is located on the slot opening side of the second wiring groove and is connected to the second wiring groove; the hole wall of the clearance hole is provided with a shielding part, which can shield the strip mounting hole.

[0029] Optionally, one of the first sealing plate and the second sealing plate is provided with at least one third mounting hole and the other is provided with at least one second mounting post, the second mounting post passing through the third mounting hole;

[0030] Wherein, at least one of the second mounting posts and the third mounting hole are mutually restrictive; and / or, at least one of the second mounting posts is a second stud, and the first sealing plate and the second sealing plate can be fixedly connected by the second stud and the second nut.

[0031] Optionally, of the third mounting hole and the second mounting post, one located on the first sealing plate is between the first wiring groove and the second wiring hole, and the other located on the second sealing plate is between the second wiring hole and the second wiring groove.

[0032] Optionally, the length of the first sealing plate in the first direction is less than the length of the second sealing plate in the first direction, and the entire first sealing plate is on the second sealing plate.

[0033] Based on the aforementioned wiring enclosure, this application also provides an electrical device that includes the wiring enclosure described in any of the above claims.

[0034] In the cable routing plate provided in this application, the first sealing plate and the second sealing plate can move relative to each other in the first direction, thereby adjusting the distance between the bottom of the first cable routing groove and the bottom of the second cable routing groove, and thus adjusting the width of the first cable routing hole in the first direction, so that the first cable routing hole can be adapted to different cables; moreover, the first sealing plate and the second sealing plate can be fixedly connected at at least two positions in the first direction, so that the first cable routing hole can maintain different widths in the first direction, so that the first cable routing hole can accommodate cables of different diameters, improving the adaptability to cable diameters. Attached Figure Description

[0035] 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.

[0036] Figure 1 This is a schematic diagram of the structure of the first sealing plate in the wiring sealing plate provided in the embodiments of this application;

[0037] Figure 2 This is a schematic diagram of a second sealing plate in a wiring sealing plate provided in an embodiment of this application;

[0038] Figure 3 This is a schematic diagram of a wiring enclosure provided in an embodiment of this application;

[0039] Figure 4 Another structural schematic diagram of the wiring enclosure provided in the embodiments of this application;

[0040] Figure 5 Another structural schematic diagram of the wiring enclosure provided in the embodiments of this application;

[0041] Figure 6 for Figure 5 A schematic diagram of the wiring enclosure from another direction;

[0042] Figure 7 Another structural schematic diagram of the wiring enclosure provided in the embodiments of this application;

[0043] Figure 8 This is a schematic diagram of another structure of the wiring cover provided in the embodiments of this application.

[0044] Explanation of reference numerals in the attached figures:

[0045] 1-First sealing plate, 2-Second sealing plate, 3-First wiring hole, 31-First wiring groove, 32-Second wiring groove, 4-Second wiring hole, 6-Leaving hole, 7-Strip mounting hole, 7a-First mounting hole, 71-Opening, 7b-Second mounting hole, 8-First mounting post, 8a-First stud, 9-Shielding part, 91-First shielding part, 92-Second shielding part, 10-Third mounting hole, 11-Second mounting post, 11a-Second stud, 12-Fourth mounting hole, 13-Sealing component. Detailed Implementation

[0046] 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.

[0047] 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.

[0048] 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.

[0049] 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.

[0050] 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.

[0051] like Figures 1-4 As shown, the wiring cover provided in this embodiment includes: a first cover 1 and a second cover 2, wherein the second cover 2 and the first cover 1 are stacked.

[0052] To simplify the structure of the wiring cover, both the first cover 1 and the second cover 2 are flat, with the first cover 1 parallel to the second cover 2. In this case, the second cover 2 and the first cover 1 are stacked in the thickness direction, which is the thickness direction of both the first cover 1 and the second cover 2.

[0053] In the wiring enclosure, the first enclosure 1 is provided with a first wiring groove 31; the second enclosure 2 is provided with a second wiring groove 32. The second wiring groove 32 and the first wiring groove 31 can be distributed along a first direction and connected to form a first wiring hole 3. It can be understood that the depth direction of the second wiring groove 32 and the first wiring groove 31 is both the first direction.

[0054] It should be noted that the first direction is perpendicular to the axial direction of the first wiring hole 3, or there is an angle between the first direction and the axial direction of the first wiring hole 3. For example, the first direction is perpendicular to the axial direction of the first wiring hole 3, and the first direction is parallel to the first sealing plate 1 and the second sealing plate 2.

[0055] There are one or more first cable routing channels 31, and each second cable routing channel 32 corresponds to one of the first cable routing channels 31. Thus, there are one or more first cable routing holes 3. To facilitate the routing of multiple cables, there are at least two first cable routing channels 31, distributed along a second direction, with an angle between the second direction and the first direction. For example, the second direction is perpendicular to the first direction. Correspondingly, there are at least two second cable routing channels 32, distributed along the second direction. Thus, there are at least two first cable routing holes 3, distributed along the second direction.

[0056] When there are at least two first wiring slots 31 distributed along the second direction, two adjacent first wiring slots 31 may be connected or disconnected, and two adjacent second wiring slots 32 may be connected or disconnected. Correspondingly, in the second direction, two adjacent first wiring holes 3 may be connected or disconnected.

[0057] The first sealing plate 1 and the second sealing plate 2 are movable relative to each other in a first direction. For example, the first sealing plate 1 is fixedly disposed, and the second sealing plate 2 is movable relative to the first sealing plate 1 in the first direction; or, the second sealing plate 1 is fixedly disposed, and the first sealing plate 1 is movable relative to the second sealing plate 2 in the first direction; or, the second sealing plate 2 is movable relative to the first sealing plate 1 in the first direction, and the first sealing plate 1 is movable relative to the second sealing plate 2 in the first direction.

[0058] For ease of adjustment, one of the first sealing plate 1 and the second sealing plate 2 can be fixedly installed, while the other can move relative to the other in a first direction. For example, the fixedly installed first sealing plate 1 and the second sealing plate 2 can be fixed to the housing of the electrical equipment.

[0059] After determining the cable diameter, the first sealing plate 1 and the second sealing plate 2 move relative to each other in a first direction to adapt the first wiring hole 3 formed by the first wiring groove 31 and the second wiring groove 32 to the cable. Figure 3 or Figure 4 As shown. Thus, the width of the first wiring hole 3 in the first direction can be adjusted, for example. Figure 3 The first wiring hole 3 shown has a smaller width in the first direction, which can accommodate cables with smaller wire diameters (not shown in the figure), such as single-core cables, or multi-core cables with smaller wire diameters, or branches of multi-core cables; Figure 4 The first wiring hole 3 shown has a relatively large width in the first direction, which allows for the installation of cables with larger diameters (not shown in the figure), such as multi-core cables with larger diameters. These multi-core cables can be two-core or three-core cables, etc. Figure 4 The first wiring hole 3 shown can meet the wiring requirements of multi-core cables in scenarios where the number of cables is small but the size of a single cable is large, especially in scenarios where the cables are split after routing.

[0060] It should be noted that the wire diameter mentioned in this article can be understood as the width of the cable in the first direction after the cable is installed on the cable routing cover.

[0061] The first sealing plate 1 and the second sealing plate 2 can be fixedly connected at at least two positions in a first direction. For example, the first wiring hole 3 is adjusted to... Figure 3 As shown in the diagram, the first sealing plate 1 and the second sealing plate 2 are fixedly connected; the first wiring hole 3 is adjusted to... Figure 4 The size shown is used to fix the first sealing plate 1 and the second sealing plate 2 together.

[0062] In the wiring cover provided in this application embodiment, the first cover plate 1 and the second cover plate 2 can move relative to each other in the first direction, thereby adjusting the distance between the bottom of the first wiring groove 31 and the bottom of the second wiring groove 32, and thus adjusting the width of the first wiring hole 3 in the first direction, so that the first wiring hole 3 can be adapted to cables of different diameters; moreover, the first cover plate 1 and the second cover plate 2 can be fixedly connected at at least two positions in the first direction, so that the first wiring hole 3 can maintain different widths in the first direction, so that the first wiring hole 3 can accommodate cables of different diameters, improving the adaptability to cable diameters.

[0063] After adopting the above-mentioned cable routing cover, in a DC wiring scenario, the cables are divided into positive and negative cables. By adjusting the width of the first cable routing hole 3 in the first direction, single-core cables can be routed. In this case, the number of first cable routing holes 3 is twice the number of single-core cables. In a DC wiring scenario, by adjusting the width of the first cable routing hole 3 in the first direction, two-core cables can also be routed through the cable routing cover after being split. In this case, the number of first cable routing holes 3 is twice the number of two-core cables. In a DC wiring scenario, by adjusting the width of the first cable routing hole 3 in the first direction, two-core cables can also be routed after passing through the cable routing cover. In this case, the number of first cable routing holes 3 is equal to the number of two-core cables. Therefore, by designing the number of first cable routing holes 3, the cable routing cover can accommodate three different wiring requirements.

[0064] After the cable passes through the first wiring hole 3, the hole wall and the cable can be sealed with fireproof putty or other sealant. In this case, since the size of the first wiring hole 3 is adjustable, the gap between the cable and the hole is reduced. Using sealant to seal the connection between the cable and the hole reduces the chance of the sealant cracking, thereby reducing problems such as water leakage, dust leakage, and insect ingress caused by sealant cracking, effectively improving the sealing effect. Of course, a sealing element can also be installed inside the first wiring hole 3, with the cable passing through the sealing element.

[0065] After adopting the above-mentioned cable routing sealing plate, the size of the first cable routing hole 3 can be adjusted by moving at least one of the first sealing plate 1 and the second sealing plate 2 in the first direction, thereby adapting to cables of different diameters. No on-site drilling is required, reducing cable routing costs, reducing the workload of installation personnel, and improving cable routing efficiency. It can also reduce the gap between the first cable routing hole 3 and the cable, making it easier to ensure a sealed connection between the cable and the first cable routing hole 3, and reducing the probability of seal failure between the cable and the first cable routing hole 3.

[0066] Moreover, in the wiring cover provided in this application embodiment, although the first cover 1 and the second cover 2 can move relative to each other in the first direction, the second cover 2 and the first cover 1 are stacked, which can reduce the sum of the lengths of the second cover 2 and the first cover 1 in the first direction, thereby reducing the length of the entire wiring cover in the first direction.

[0067] The sizes of the first sealing plate 1 and the second sealing plate 2 are selected based on the actual situation. To further reduce the overall size of the wiring enclosure, the length of the first sealing plate 1 in the first direction is less than the length of the second sealing plate 2 in the first direction, and the entire first sealing plate 1 rests on the second sealing plate 2. In this way, during the relative movement of the first sealing plate 1 and the second sealing plate 2 in the first direction, the entire first sealing plate 1 remains on the second sealing plate 2, making the size of the entire wiring enclosure in the first plane the same as the size of the second sealing plate 2. This avoids the first sealing plate 1 occupying additional space in the first plane, effectively reducing the overall size of the wiring enclosure. It should be noted that the second sealing plate 2 is parallel to the first plane, and the first direction is also parallel to the first plane.

[0068] In practice, the first sealing plate 1 and the second sealing plate 2 can also be moved relative to each other in the first direction to a certain position, with the first sealing plate 1 extending beyond the second sealing plate 2. It should be noted that (a certain position can be one position or two or more positions).

[0069] In some embodiments, to further improve the adaptability of the cable routing cover to cables of different diameters, at least one of the first cover 1 and the second cover 2 is provided with a second cable routing hole 4. For example, the second cable routing hole 4 can be used for branching and routing of single-core or multi-core cables. The width of the first cable routing hole 3 in the first direction can be different from the width of the second cable routing hole 4 in the first direction. In this way, the cable routing cover can adapt to at least three different cable diameters.

[0070] For example, such as Figure 3 As shown, the width of the first wiring hole 3 in the first direction is smaller than the width of the second wiring hole 4 in the first direction. Figure 4 As shown, the width of the first wiring hole 3 in the first direction is greater than the width of the second wiring hole 4 in the first direction. Figure 4 The width of the first wiring hole 3 shown in the first direction can be at least twice the width of the second wiring hole 4 in the first direction.

[0071] In the wiring enclosure, when a single-core cable is routed, the single-core cable can be routed through the second wiring hole 4; when a multi-core cable is split after passing through the wiring enclosure, the multi-core cable can be routed through the first wiring hole 3; when a multi-core cable is split and then passes through the wiring enclosure, the split multi-core cable can be routed through either the first wiring hole 3 or the second wiring hole 4.

[0072] There may be one or more second wiring holes 4. To facilitate the routing of multiple cables, there may be at least two second wiring holes 4. In this case, the second wiring holes are arranged in a row in the second direction; the second wiring holes are at least in a row, and there is an angle between the second direction and the first direction. For example, the second direction is perpendicular to the first direction. It should be noted that the second direction is parallel to the first plane mentioned above.

[0073] The second wiring hole 4 can be a circular, oval, or other shaped through hole. To facilitate a sealed connection between the second wiring hole 4 and the cable, the second wiring hole 4 can be a circular hole.

[0074] like Figure 5 , Figure 6 and Figure 8 As shown, at least one second wiring hole 4 is provided with a sealing member 13, through which cables are indirectly allowed to pass. It is understood that the sealing member 13 allows cables to pass through, and the cable and the second wiring hole 4 are connected by the sealing member 13. This allows for the installation of cables with smaller diameters. In this case, the second wiring hole 4 can be selected as a round hole to facilitate the installation of the sealing member 13.

[0075] The sealing component 13 can be a waterproof terminal, a cap, a coil protector, or other components. This application embodiment does not limit the type of the sealing component 13.

[0076] In practice, at least one second cable routing hole 4 can be selected for direct cable passage. In this case, after the cable passes through the second cable routing hole 4, sealant, such as fireproof sealant, is used to seal the connection between the cable and the second cable routing hole 4. Because the diameter of the second cable routing hole 4 is pre-set, the gap between the cable and the second cable routing hole 4 is reduced. Using sealant to seal the connection between the cable and the second cable routing hole 4 reduces the chance of the sealant cracking, thereby reducing problems such as water leakage, dust leakage, and insect ingress caused by sealant cracking, effectively improving the sealing effect.

[0077] To increase the maximum number of traces on the wiring cover, both the first cover 1 and the second cover 2 are provided with second wiring holes 4. For example, the first cover 1 has at least one row of second wiring holes 4, and the second cover 2 has at least one row of second wiring holes 4.

[0078] In some embodiments, both the first sealing plate 1 and the second sealing plate 2 are provided with a second wiring hole 4, and a sealing member 13 is provided in the second wiring hole 4, through which cables are indirectly allowed to pass. In this way, the wiring sealing plate can meet the wiring requirements of a large number of small-sized cables in scenarios where multi-core cables are split before wiring or single-core cables are used to connect to the positive and negative terminals respectively.

[0079] When both the first sealing plate 1 and the second sealing plate 2 are provided with second wiring holes 4, the second wiring holes 4 on the first sealing plate 1 and the second wiring holes 4 on the second sealing plate 2 are both circular holes. The diameters of the second wiring holes 4 on the first sealing plate 1 and the second wiring holes 4 on the second sealing plate 2 may be equal or unequal.

[0080] When both the first sealing plate 1 and the second sealing plate 2 are provided with second wiring holes 4, the number of second wiring holes 4 on the first sealing plate 1 and the number of second wiring holes 4 on the second sealing plate 2 may be equal or unequal.

[0081] In practice, the second wiring holes 4 on the first sealing plate 1 and the second wiring holes 4 on the second sealing plate 2 can both be round holes, and the number and diameter of these holes can be equal. This can meet the requirement of connecting cables with different positive and negative terminals.

[0082] When both the first sealing plate 1 and the second sealing plate 2 are provided with second wiring holes 4, in order to reduce the influence of the second wiring holes 4 on the first wiring holes 3, both the first sealing plate 1 and the second sealing plate 2 are provided with second wiring holes 4; the second wiring holes 4 and the first wiring grooves 31 on the first sealing plate 1 are distributed along the first direction, and the bottom of the first wiring groove 31 is closer to the second wiring holes 4 on the first sealing plate 1 than the opening of the groove; the second wiring holes 4 and the second wiring grooves 32 on the second sealing plate 2 are distributed along the first direction, and the bottom of the second wiring groove 32 is closer to the second wiring holes 4 on the second sealing plate 2 than the opening of the groove. In this way, when the first wiring groove 31 and the second wiring groove 32 form the first wiring hole 3, the second wiring holes 4 are located on both sides of the first wiring hole 3 in the first direction, thereby reducing the influence of the second wiring holes 4 on the first wiring hole 3.

[0083] To facilitate cable routing through the second cable routing hole 4, the second cable routing hole 4 on the first sealing plate 1 and the second cable routing hole 4 on the second sealing plate 2 are placed as close as possible. Figure 7 and Figure 8 As shown, the first sealing plate 1 and the second sealing plate 2 can be fixedly connected at at least three positions in the first direction; in one of the at least three positions, the opening of the second wiring groove 32 and the opening of the first wiring groove 31 face different sides in the first direction, and the first sealing plate 1 blocks the second wiring groove 32. In this case, the second wiring hole 4 on the first sealing plate 1 and the second wiring hole 4 on the second sealing plate 2 are located on both sides of the first wiring groove 31. In this way, the distance between the second wiring hole 4 on the first sealing plate 1 and the second wiring hole 4 on the second sealing plate 2 is minimized, thereby facilitating the routing of cables through the second wiring hole 4; moreover, the first sealing plate 1 blocks the second wiring groove 32, preventing the second wiring groove 32 and the second wiring groove 31 from forming the first wiring hole 3, thus improving the sealing performance of the entire wiring sealing plate.

[0084] For example, will Figure 3The fixed connection between the first sealing plate 1 and the second sealing plate 2 is released, and then the second sealing plate 2 is moved to the left along the first direction until it reaches the desired position. Figure 7 The location shown. Figure 5 The fixed connection between the first sealing plate 1 and the second sealing plate 2 is released, and then the second sealing plate 2 is moved to the left along the first direction until it reaches the desired position. Figure 8 The location shown.

[0085] The wiring cover plate provided in the above embodiment can, by moving the first cover plate 1 along the first direction, allow the wiring cover plate to... Figure 7 The routing panel status shown has been adjusted to... Figure 3 As shown in the wiring enclosure state, continuing to move the first enclosure 1 along the first direction can... Figure 3 The routing panel status shown has been adjusted to... Figure 4 The wiring enclosure state is shown. In this way, by moving the first enclosure 1 along the first direction, it can be compatible with cables of at least three different wire diameters.

[0086] When the first sealing plate 1 obstructs the second wiring groove 32, the second wiring hole 4 on the first sealing plate 1 is easily obstructed by the second sealing plate 2, making it difficult to route the wire at the second wiring hole 4 on the first sealing plate 1. To avoid this problem, the projection of the second wiring hole 4 on the first sealing plate 1 onto the second sealing plate 2 is located in the second wiring groove 32. In this way, the second wiring groove 32 provides clearance space for routing the wire from the second wiring hole 4 on the first sealing plate 1, ensuring that the wire can be routed from the second wiring hole 4 on the first sealing plate 1. Then, the first sealing plate 1 and the second sealing plate 2 are fixedly connected to ensure that the first sealing plate 1 and the second sealing plate 2 are relatively fixed.

[0087] In practice, the second sealing plate 2 may be provided with a clearance hole 6. The clearance hole 6 and the second wiring groove 32 are distributed along the first direction. The clearance hole 6 is located on the groove opening side of the second wiring groove 32, and the clearance hole 6 is connected to the second wiring groove. When the first sealing plate 1 blocks the second wiring groove 32, the projection of the second wiring hole 4 on the first sealing plate 1 onto the second sealing plate 2 is located in the second wiring groove 32, or the projection of the second wiring hole 4 on the first sealing plate 1 onto the second sealing plate 2 is located in the clearance hole 6, or the projection of the second wiring hole 4 on the first sealing plate 1 onto the second sealing plate 2 is located in the clearance hole 6 and the second wiring groove 32.

[0088] It should be noted that the clearance hole 6 is the first type of clearance structure described above, the second wiring groove 32 is the second type of clearance structure described above, and the structure formed by the clearance hole 6 and the second wiring groove 32 is the third type of clearance structure described above.

[0089] As mentioned above, a sealing component 13 can be installed in the second wiring hole 4 on the first sealing plate 1, and the cable can be indirectly passed through the sealing component 13. In this case, the second sealing plate 2 can also be provided with a clearance hole 6, which is distributed along the first direction with the second wiring groove 32. The clearance hole 6 is located on the groove opening side of the second wiring groove 32 and is connected to the second wiring groove. The clearance hole 6 is used to make way for the sealing component 13. In this way, when the groove opening of the first wiring groove 31 and the groove opening of the second wiring groove 32 can face different sides of the first direction, interference between the second sealing plate and the sealing component 13 is avoided during the movement of the first sealing plate 1, ensuring the normal movement of the first sealing plate 1. For example, this ensures that the first sealing plate 1 can move freely. Figure 3 The position shown is moved to Figure 4 The position shown ensures that the first sealing plate 1 is self-contained. Figure 7 The position shown has been moved to Figure 3 The position shown ensures that the first sealing plate 1 is self-contained. Figure 8 The location was moved to Figure 5 The location shown.

[0090] The connection between the first sealing plate 1 and the second sealing plate 2 is described below.

[0091] In some embodiments, to facilitate the connection between the first sealing plate 1 and the second sealing plate 2, one of the first sealing plate 1 and the other of the second sealing plate 2 is provided with at least one strip-shaped mounting hole 7, and the other is provided with at least one first mounting post 8; the length direction of the strip-shaped mounting hole 7 is a first direction; the first mounting post 8 passes through the strip-shaped mounting hole 7. For example, the first sealing plate 1 is provided with the strip-shaped mounting hole 7, and the second sealing plate 2 is provided with the first mounting post 8.

[0092] There can be one or more strip-shaped mounting holes 7, and each strip-shaped mounting hole 7 can correspond one-to-one with the first mounting post 8. In order to improve the uniformity of force distribution on the first sealing plate 1 and the second sealing plate 2, at least two strip-shaped mounting holes 7 can be selected and distributed along the second direction, with each strip-shaped mounting hole 7 corresponding one-to-one with the first mounting post 8.

[0093] On the one hand, to facilitate the relative movement of the first sealing plate 1 and the second sealing plate 2 along the first direction, at least one first mounting post 8 and a strip-shaped mounting hole 7 are engaged in a limiting fit. It can be understood that the first mounting post 8 and the strip-shaped mounting hole 7 are engaged in a limiting fit in the second direction. In this way, the strip-shaped mounting hole 7 guides the first mounting post 8, and the first mounting post 8 guides the strip-shaped mounting hole 7, thereby reducing the probability of the first sealing plate 1 and the second sealing plate 2 deviating from the first direction during movement, thus facilitating the relative movement of the first sealing plate 1 and the second sealing plate 2 along the first direction.

[0094] In practice, all of the first mounting posts 8 and the strip mounting holes 7 can be selected for limiting fit, or only some of the first mounting posts 8 and the strip mounting holes 7 can be selected for limiting fit.

[0095] On the other hand, to facilitate the fixed connection of the first sealing plate 1 and the second sealing plate 2 at at least two positions in the first direction, at least one first mounting post 8 is a first stud 8a, and the first sealing plate 1 and the second sealing plate 2 can be fixedly connected by the first stud 8a and the first nut (not shown in the figure). It is understood that the first nut and the first stud 8a are threaded together. In this way, the first sealing plate 1 and the second sealing plate 2 can be fixedly connected at any position within the strip mounting hole 7, enabling stepless adjustment of the first cable routing hole 3 and further improving the adaptability of the cable routing sealing plate to cables. Moreover, the first stud 8a and the strip mounting hole 7 can also be engaged at the upper limit in the second direction, reducing the probability of the first sealing plate 1 and the second sealing plate 2 deviating from the first direction during movement, thus ensuring that the first sealing plate 1 and the second sealing plate 2 move relative to each other along the first direction.

[0096] In practice, all first mounting posts 8 can be selected as first studs 8a, or some of the first mounting posts 8 can be first studs 8a.

[0097] In order to simplify the fixed connection of the first sealing plate 1 and the second sealing plate 2, and to reduce the probability of the first sealing plate 1 and the second sealing plate 2 deviating from the first direction during movement, at least one first mounting post 8 and strip mounting hole 7 can be selected for limiting cooperation, and at least one first mounting post 8 is a first stud 8a, and the first sealing plate 1 and the second sealing plate 2 can be fixedly connected by the first stud 8a and the first nut (not shown in the figure).

[0098] To facilitate understanding the specific positions of the strip mounting holes 7 and the first mounting post 8, the following definitions apply: the opening of the first wiring groove 31 faces the first side of the first sealing plate 1, the opening of the second wiring groove 31 faces the first side of the second sealing plate 2, the second side of the first sealing plate 1 is opposite to the first side, and the second side of the second sealing plate 2 is opposite to the first side. Of the strip mounting holes 7 and the first mounting post 8, one located on the first sealing plate 1 is on the second side of the first sealing plate 1, and the other located on the second sealing plate 2 is on the first side of the second sealing plate 2.

[0099] For example, the first mounting post 8 is located on the second sealing plate 2, and the first mounting post 8 is located on the first side of the second sealing plate 2; the strip-shaped mounting hole 7 is located on the first sealing plate 1, and the strip-shaped mounting hole 7 is located on the second side of the first sealing plate 1. The first mounting post 8 is located on the first sealing plate 1, and the first mounting post 8 is located on the second side of the first sealing plate 1; the strip-shaped mounting hole 7 is located on the second sealing plate 2, and the strip-shaped mounting hole 7 is located on the first side of the second sealing plate 2.

[0100] By adopting the above distribution method, the strip mounting hole 7 and the first mounting post 8 are set separately from the wiring area (first wiring hole 3 and second wiring hole 4), which reduces the impact on wiring.

[0101] With the second sealing plate 2 fixedly installed and the first sealing plate 1 movable relative to the second sealing plate 2 along a first direction, to facilitate observation of the movement of the first sealing plate 1, a first mounting post 8 can be installed on the second sealing plate 2, and a strip-shaped mounting hole 7 can be installed on the first sealing plate 1. In this case, at least one strip-shaped mounting hole 7 can be selected as the first mounting hole 7a, which extends along the first direction to the edge of the first sealing plate 1, and has an opening 71 at the edge of the first sealing plate 1 that mates with the first mounting post 8. This ensures that... Figure 7 The first sealing plate 1 shown can be moved to Figure 3 and Figure 4 The position of the first sealing plate 1 shown ensures... Figure 8 The first sealing plate 1 shown can be moved to Figure 5 The position of the first sealing plate 1 is shown.

[0102] On the other hand, at least one strip-shaped mounting hole 7 can be selected as the second mounting hole 7b, and the second mounting hole 7b is circumferentially closed. In this case, the length of the second mounting hole 7b in the first direction is the displacement of the first sealing plate 1, and the displacement of the first sealing plate 1 can be adjusted by adjusting the length of the second mounting hole 7b.

[0103] For example, Figure 7 and Figure 8 In the structure shown, one end of the first mounting post 8 and the second mounting hole 7b abuts against each other; Figure 4 and Figure 5 In the structure shown, the other ends of the first mounting post 8 and the second mounting hole 7b abut against each other.

[0104] It should be noted that when at least one strip mounting hole 7 is a first mounting hole 7a and at least one strip mounting hole 7 is a second mounting hole 7b, the first mounting post 8 that mates with the first mounting hole 7a and the first mounting post 8 that mates with the second mounting hole 7b are farther away from the second wiring groove 32.

[0105] When the strip mounting hole 7 is located on the first sealing plate 1, during the movement of the first sealing plate 1, due to the presence of the clearance hole 6, the strip mounting hole 7 may not be blocked by the second sealing plate 2, affecting the sealing performance of the entire wiring sealing plate. To solve the above problem, such as Figure 2 As shown, the wall of the clearance hole 6 is provided with a shielding part 9, which can shield the strip mounting hole 7. This improves the sealing performance of the entire wiring cover.

[0106] For example, such as Figure 2 and Figure 6As shown, the strip-shaped mounting hole 7 includes a first mounting hole 7a, and the blocking part 9 includes a first blocking part 91, which can block the first mounting hole 7a. It can be understood that the size and position of the first blocking part 91 are adapted to the first mounting hole 7a.

[0107] For example, such as Figure 2 and Figure 6 As shown, the strip-shaped mounting hole 7 includes a second mounting hole 7b, and the blocking part 9 includes a second blocking part 92, which can block the second mounting hole 7b. It can be understood that the size and position of the second blocking part 92 are adapted to the second mounting hole 7b.

[0108] As described above, the first sealing plate 1 and the second sealing plate 2 can be fixedly connected at at least three positions in the first direction; in one of the at least three positions, the opening of the second wiring groove 32 and the opening of the first wiring groove 31 face different sides in the first direction, and the first sealing plate 1 blocks the second wiring groove 32. In this embodiment, the fixed connection of the first sealing plate 1 and the second sealing plate 2 can be achieved by selecting the second mounting hole 7b and the first mounting post 8 (first stud 8a) mentioned above. Of course, other structures can also be used to achieve the fixed connection of the first sealing plate 1 and the second sealing plate 2. In some embodiments, in the first sealing plate 1 and the second sealing plate 2, one is provided with at least one third mounting hole 10, and the other is provided with at least one second mounting post 11, with the second mounting post 11 passing through the third mounting hole 10. For example, the first sealing plate 1 is provided with the third mounting hole 10, and the second sealing plate 2 is provided with the second mounting post 11; or, the first sealing plate 1 is provided with the second mounting post 11, and the second sealing plate 2 is provided with the third mounting hole 10.

[0109] There can be one or more third mounting holes 10, and each third mounting hole 10 can correspond one-to-one with the second mounting post 11. In order to improve the uniformity of force distribution on the first sealing plate 1 and the second sealing plate 2, at least two third mounting holes 10 can be selected and distributed along the second direction, with each third mounting hole 10 corresponding one-to-one with the second mounting post 11.

[0110] The third mounting hole 10 can be a round hole, a strip, or other shapes. The circumferential direction of the third mounting hole 10 can be closed or it can have a notch. When the third mounting hole 10 is provided on the first sealing plate 1, the third mounting hole 10 has a notch, and the notch is located on the first side of the first sealing plate 1. The groove of the first wiring groove 31 faces the first side of the first sealing plate 1 so as to facilitate the movement of the first sealing plate 1 in the first direction.

[0111] On one hand, at least one second mounting post 11 and a third mounting hole 10 are in a limiting fit. It can be understood that the second mounting post 11 and the third mounting hole 10 are in a limiting fit in the second direction. In this way, the second mounting post 11 guides the third mounting hole 10, and the third mounting hole 10 guides the second mounting post 11, thereby reducing the probability of the first sealing plate 1 and the second sealing plate 2 deviating from the first direction during movement, thus facilitating the relative movement of the first sealing plate 1 and the second sealing plate 2 along the first direction.

[0112] In practice, all of the second mounting posts 11 and the third mounting holes 10 can be selected for limiting fit, or only some of the second mounting posts 11 and the third mounting holes 10 can be selected for limiting fit.

[0113] On the other hand, at least one second mounting post 11 is a second stud 11a, and the first sealing plate 1 and the second sealing plate 2 can be fixedly connected by the second stud 11a and the second nut (not shown in the figure).

[0114] It is understandable that the second stud 11a and the second nut are threadedly engaged. The second stud 11a and the third mounting hole 10 can also be engaged in an upper limit engagement in the second direction, which can reduce the probability of the first sealing plate 1 and the second sealing plate 2 deviating from the first direction during movement, and make it easier to ensure that the first sealing plate 1 and the second sealing plate 2 move relative to each other in the first direction.

[0115] In practice, all the second mounting posts 11 can be selected as second studs 11a, or some of the second mounting posts 11 can be second studs 11a.

[0116] To simplify the fixed connection of the first sealing plate 1 and the second sealing plate 2, and to reduce the probability of the first sealing plate 1 and the second sealing plate 2 deviating from the first direction during movement, one less second mounting post 11 and third mounting hole 10 can be selected for limiting cooperation. At least one second mounting post 11 is a second stud 11a, and the first sealing plate 1 and the second sealing plate 2 can be fixedly connected by the second stud 11a and the second nut (not shown in the figure).

[0117] It should be noted that, when the first sealing plate 1 and the second sealing plate 2 are fixedly connected by the second stud 11a and the second nut (not shown in the figure), the first sealing plate 1 and the second sealing plate 2 can also be fixedly connected by the first stud 8a and the first nut (not shown in the figure).

[0118] The closer the second mounting post 11 and the third mounting hole 10 are to the first wiring groove 31, the less likely the first sealing plate 1 is to be lifted on the side of the first wiring groove 31, which can improve the wiring stability and the sealing performance of the entire wiring sealing plate. In some embodiments, of the third mounting hole 10 and the second mounting post 11, one located on the first sealing plate 1 is between the first wiring groove 31 and the second wiring hole 4, and the other located on the second sealing plate 2 is between the second wiring hole 4 and the second wiring groove 32. In this way, when the first sealing plate 1 blocks the second wiring groove 32, the third mounting hole 10 and the second mounting post 11 cooperate, and both the third mounting hole 10 and the second mounting post 11 are located between the second wiring hole 4 on the first sealing plate 1 and the second wiring hole 4 on the second sealing plate 1.

[0119] When the cable routing cover is provided with a first mounting post 8, a strip mounting hole 7, a second mounting post 11, and a third mounting hole 10, the second mounting post 11 and the first mounting post 8 are both located on the second cover 2, and the strip mounting hole 7 and the third mounting hole 10 are both located on the first cover 1. This facilitates the movement of the first cover 1 and simplifies the use of the cable routing cover 1.

[0120] In practice, in order to facilitate the relative movement of the first sealing plate 1 and the second sealing plate 2 along the first direction, the first sealing plate 1 and the second sealing plate 2 can be guided by the cooperation of a sliding groove and a slider. The length direction of the sliding groove is the first direction, and it is not limited to the cooperation structure of the first mounting post 8 and the strip mounting hole 7 mentioned above.

[0121] In practice, to facilitate the fixed connection of the first sealing plate 1 and the second sealing plate 2 at at least two positions in the first direction, one of the first sealing plate 1 and the second sealing plate 2 can be provided with a plurality of first fixing holes distributed along the first direction, and the other can be provided with a second fixing hole. The fastener is fixedly connected to the first sealing plate 1 and the second sealing plate 2 by threaded engagement with at least one of the first fixing holes and the second fixing hole. Alternatively, the fastener passes through the first fixing hole and the second fixing hole and is fixedly connected to the first sealing plate 1 and the second sealing plate 2 by a nut. It is not limited to the structure of the fixed connection of the first sealing plate 1 and the second sealing plate 2 described above.

[0122] The wiring sealing plate provided in the above implementation is a sealing plate or a cable exit sealing plate, and this application embodiment does not limit it in this way.

[0123] Based on the wiring enclosure provided in the above embodiments, this application also provides an electrical device that includes the wiring enclosure described in the above embodiments.

[0124] The electrical equipment includes a housing, and a cable management plate can be fixed to the housing. When the cable management plate is fixed to the housing, at least one of the second management plate 2 and the first management plate 1 can be fixed to the housing. To simplify installation, the second management plate 2 can be fixed to the housing. For example, the second management plate 2 is provided with a fourth mounting hole 12, and the housing is provided with a fifth mounting hole. Fasteners cooperate with the fourth mounting hole 12 and the fifth mounting hole to achieve a fixed connection between the second management plate 2 and the housing.

[0125] The electrical equipment can be an inverter, switch cabinet, distribution cabinet or other; the embodiments of this application do not limit the type of electrical equipment.

[0126] Since the wiring sealing plate provided in the above embodiments has the above-mentioned technical effects, and the electrical equipment in the embodiments of this application includes the above-mentioned wiring sealing plate, the electrical equipment in the embodiments of this application also has the corresponding technical effects, which will not be repeated here.

[0127] The technical features mentioned above, as well as those shown individually in the accompanying drawings, can be combined arbitrarily, provided that the combined technical features are not contradictory. All feasible combinations of features are the technical content explicitly described herein. Any one of the multiple technical features contained in the same statement can be applied independently, without necessarily being applied together with other sub-features.

[0128] 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. A wiring enclosure, characterized in that, include: The first sealing plate is provided with a first wiring groove; The second sealing plate is stacked on top of the first sealing plate, and the second sealing plate is provided with a second wiring groove. The second wiring groove and the first wiring groove can be distributed along the first direction and docked to form a first wiring hole; the first sealing plate and the second sealing plate can move relative to each other in the first direction, and the first sealing plate and the second sealing plate can be fixedly connected at at least two positions in the first direction.

2. The wiring sealing plate according to claim 1, characterized in that, At least one of the first sealing plate and the second sealing plate is provided with a second wiring hole; wherein the width of the first wiring hole in the first direction may be different from the width of the second wiring hole in the first direction.

3. The wiring sealing plate according to claim 2, characterized in that, Both the first sealing plate and the second sealing plate are provided with a second wiring hole; The second wiring hole and the first wiring groove on the first sealing plate are distributed along the first direction, and the bottom of the first wiring groove is closer to the second wiring hole on the first sealing plate than the opening of the groove. The second wiring hole and the second wiring groove on the second sealing plate are distributed along the first direction, and the bottom of the second wiring groove is closer to the second wiring hole on the second sealing plate than the opening of the groove.

4. The wiring sealing plate according to claim 3, characterized in that, The first sealing plate and the second sealing plate can be fixedly connected at at least three positions in the first direction; in one of the at least three positions, the opening of the second wiring groove and the opening of the first wiring groove face different sides in the first direction, and the first sealing plate blocks the second wiring groove.

5. The wiring sealing plate according to claim 4, characterized in that, The projection of the second wiring hole on the first cover plate onto the second cover plate can be located in the clearance structure of the second cover plate; wherein, the clearance structure includes at least one of a clearance hole and a second wiring groove, the clearance hole is located on the groove opening side of the second wiring groove, and the clearance hole and the second wiring groove are connected.

6. The wiring sealing plate according to claim 4, characterized in that, When the first sealing plate is provided with the second wiring hole, a sealing component is provided in the second wiring hole on the first sealing plate, and the cable is indirectly allowed to pass through the sealing component. The second sealing plate is provided with a clearance hole, which is located on the groove side of the second wiring groove and is connected to the second wiring groove. The clearance hole is used to allow space for the sealing component.

7. The wiring sealing plate according to claim 2, characterized in that, Both the first sealing plate and the second sealing plate are provided with the second wiring hole; Wherein, the second wiring hole on the first sealing plate and the second wiring hole on the second sealing plate are both round holes with equal diameters; and / or, the number of the second wiring holes on the first sealing plate and the number of the second wiring holes on the second sealing plate are equal.

8. The wiring sealing plate according to claim 2, characterized in that, At least one of the second wiring holes is provided with a sealing component, and the cable is indirectly passed through the sealing component; or, at least one of the second wiring holes is directly passed through the cable.

9. The wiring enclosure according to any one of claims 1-8, characterized in that, In the first sealing plate and the second sealing plate, one is provided with at least one strip-shaped mounting hole and the other is provided with at least one first mounting post; the length direction of the strip-shaped mounting hole is a first direction; the first mounting post passes through the strip-shaped mounting hole; Wherein, at least one of the first mounting posts and the strip-shaped mounting hole are mutually restrictive; and / or, at least one of the first mounting posts is a first stud, and the first sealing plate and the second sealing plate can be fixedly connected by the first stud and the first nut.

10. The wiring sealing plate according to claim 9, characterized in that, The opening of the first wiring groove faces the first side of the first sealing plate, and the second side of the first sealing plate is opposite to the first side; the opening of the second wiring groove faces the first side of the second sealing plate, and the second side of the second sealing plate is opposite to the first side. Of the strip-shaped mounting hole and the first mounting post, one located on the first sealing plate is on the second side of the first sealing plate, and the other located on the second sealing plate is on the first side of the second sealing plate.

11. The wiring sealing plate according to claim 10, characterized in that, The first mounting post is disposed on the second sealing plate, and the strip-shaped mounting hole is disposed on the first sealing plate; Wherein, at least one of the strip-shaped mounting holes is a first mounting hole, the first mounting hole extends along a first direction to the edge of the first sealing plate, and the first mounting hole has an opening at the edge of the first sealing plate that mates with the first mounting post; and / or, at least one of the strip-shaped mounting holes is a second mounting hole, the second mounting hole being circumferentially closed.

12. The wiring sealing plate according to claim 10, characterized in that, The first mounting post is disposed on the second sealing plate, and the strip-shaped mounting hole is disposed on the first sealing plate; The second sealing plate is provided with a clearance hole, which is located on the slot opening side of the second wiring groove and is connected to the second wiring groove; the hole wall of the clearance hole is provided with a shielding part, which can shield the strip mounting hole.

13. The wiring sealing plate according to claim 4, characterized in that, In the first sealing plate and the second sealing plate, one is provided with at least one third mounting hole and the other is provided with at least one second mounting post, the second mounting post passing through the third mounting hole; Wherein, at least one of the second mounting posts and the third mounting hole are mutually restrictive; and / or, at least one of the second mounting posts is a second stud, and the first sealing plate and the second sealing plate can be fixedly connected by the second stud and the second nut.

14. The wiring sealing plate according to claim 13, characterized in that, Of the third mounting hole and the second mounting post, one located on the first sealing plate is between the first wiring groove and the second wiring hole, and the other located on the second sealing plate is between the second wiring hole and the second wiring groove.

15. The wiring enclosure according to any one of claims 1-8, 13, and 14, characterized in that, The length of the first sealing plate in the first direction is less than the length of the second sealing plate in the first direction, and the entire first sealing plate is on the second sealing plate.

16. An electrical device, characterized in that, Includes the wiring cover plate as described in any one of claims 1-15.