Mounting bracket of inverter

By designing an inverter mounting bracket and utilizing the sliding fit between the fixed plate and the movable plate, as well as the spring ramp structure, the flexibility and adaptability issues of traditional installation methods are solved, enabling convenient installation and disassembly of the inverter and improving maintenance efficiency.

CN223953786UActive Publication Date: 2026-02-27POWERCHINA HUADONG ENG CORP LTD +1
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Patent Information

Application Number
CN202520904611.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-09
Publication Date
2026-02-27
Estimated Expiration
2035-05-09

AI Technical Summary

Technical Problem

Traditional inverter installation methods lack flexibility, are inconvenient to maintain, and have poor adaptability, making it difficult to meet the needs of different scenarios and models.

Method used

An inverter mounting bracket was designed, comprising a fixed plate and a movable plate. The fixed plate has a through groove and a mounting slot, and the movable plate can be slidably installed. The inverter can be easily installed and removed through a spring and ramp structure, and friction is reduced by rollers.

Benefits of technology

It enables convenient installation and disassembly of inverters, improves installation flexibility and maintenance efficiency, enhances adaptability, and reduces wear.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223953786U_ABST
    Figure CN223953786U_ABST
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Abstract

The utility model relates to a mounting bracket of an inverter. The utility model is applicable to the technical field of installation equipment. The technical scheme adopted by the utility model is that the mounting bracket of the inverter is provided with a fixed plate which can be mounted on a wall body, a through groove arranged along the length direction of the fixed plate is arranged on the fixed plate, a fixed baffle plate is arranged at the first end of the through groove, a movable baffle plate is arranged at the second end of the through groove, and a mounting groove is arranged on the inner wall of the through groove; the movable baffle is mounted in the mounting groove and can extend out of the mounting groove, and the movable baffle is connected with the mounting groove through a spring; an inverter is installed on the movable plate, the movable plate is installed in the through groove in a sliding mode in the length direction of the through groove, and when the movable plate is installed on the fixed plate, the movable plate is located between the fixed baffle and the movable baffle.
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Description

TECHNICAL FIELD

[0001] The utility model relates to an installation support of inverter. BACKGROUND

[0002] With the rapid development of photovoltaic industry and new energy technology, as the key equipment for converting direct current into alternating current, the convenience, stability and adaptability of installation and maintenance of inverter become particularly important.

[0003] The traditional inverter installation method mainly adopts fixed support, that is, the inverter is directly fixed on the wall, ground or special support.

[0004] However, this fixed installation method has many limitations:

[0005] 1. Insufficient installation flexibility: once the installation position of the traditional fixed support is determined, it is difficult to adjust, and it cannot meet the demand for fine adjustment of the position of the inverter in different scenarios, especially in complex installation environments such as roofs and machine rooms, which may need to be disassembled and reinstalled multiple times, increasing the installation cost and time.

[0006] 2. Inconvenient maintenance: the inverter needs to be regularly maintained and repaired during use, and the fixed installation method makes it difficult for maintenance personnel to quickly access the equipment, especially when the equipment is installed in a high position or in a narrow space, resulting in low maintenance efficiency.

[0007] 3. Poor adaptability: different models and powers of inverters have large differences in size and weight, and the traditional fixed support often needs to be designed for specific models, which has poor universality and is difficult to meet diversified needs. INVENTION CONTENTS

[0008] The technical problem to be solved by the utility model is: to solve the above technical problems, the utility model provides an installation support of inverter.

[0009] The technical scheme adopted by the utility model is: an installation support of inverter, which has:

[0010] A fixed plate can be installed on a wall, a through slot is provided on the fixed plate along the length direction of the fixed plate, a fixed baffle is provided at the first end of the through slot, a movable baffle is provided at the second end of the through slot, an installation slot is provided on the inner wall of the through slot, the movable baffle is installed in the installation slot and can extend out of the installation slot, and the movable baffle and the installation slot are connected through a spring;

[0011] A movable plate is installed with an inverter, the movable plate is slidably installed in the through slot along the length direction of the through slot, and the movable plate is located between the fixed baffle and the movable baffle when the movable plate is installed on the fixed plate.

[0012] The slope is arranged on the movable baffle far from the fixed baffle.

[0013] At least two movable baffles are arranged on the inner wall of the through slot along the length direction of the through slot.

[0014] Mounting plates are arranged on the inner side walls of both sides of the through slot along the length direction of the through slot, rollers are arranged on the mounting plates along the length direction of the mounting plates on the side walls corresponding to the movable plates, and limiting grooves are arranged on the side walls corresponding to the mounting plates on the movable plates along the length direction of the movable plates.

[0015] First mounting holes are arranged at the positions of both ends of the fixed plate, and bolts can pass through the first mounting holes and are mounted on the wall body.

[0016] Second mounting holes are arranged at the positions of both ends of the movable plate, and bolts can pass through the second mounting holes and are connected with the inverter.

[0017] The utility model discloses a first mounting hole is arranged on the fixed plate, and the fixed plate is installed on the wall body through the bolt, a through slot is arranged on the fixed plate, and the movable plate with the inverter is installed on the fixed plate through the sliding cooperation with the through slot, a fixed baffle is arranged on the first section of the through slot, and a plurality of movable baffles are arranged on the second end of the through slot along the length direction of the through slot, the movable baffles are installed in the mounting groove of the inner wall of the sliding slot through the spring, and the slope is arranged on the movable baffle far from the fixed baffle, the movable baffle is pressed into the mounting groove under the slope effect on the movable baffle when the movable plate moves from the second end to the first end on the fixed plate, the movable baffle not cooperating with the movable plate is stretched out from the mounting groove under the reset effect of the spring when the movable plate moves to the cooperation position with the fixed baffle, and the fixed baffle cooperates with the movable baffle stretched out from the mounting groove to limit the movable plate, so that the installation of the inverter is realized, the movable baffle stretched out from the mounting groove is pressed into the mounting groove, the cooperation between the movable baffle and the movable plate is cancelled, so that the movable plate and the inverter on the movable plate are taken out, and the dismounting of the inverter is realized, the rollers are arranged on the inner wall of the through slot, the friction is reduced when the movable plate moves in the through slot, and the good anti-abrasion effect is achieved. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 The utility model discloses a plane schematic diagram.

[0019] Figure 2 : Figure 1 The section view at A-A.

[0020] Figure 3 The utility model discloses a structure schematic diagram.

[0021] In the figure: 1, fixed plate; 1-1, first mounting hole; 1-2, mounting groove; 1-3, through groove; 2, movable plate; 2-1, second mounting hole; 3, fixed baffle; 4, movable baffle; 5, spring; 6, mounting plate; 7, roller. DETAILED DESCRIPTION

[0022] The utility model will be further explained in detail below in combination with the drawings and by examples, and the following examples are the explanation of the utility model and the utility model is not limited to the following examples.

[0023] Example one is a mounting bracket of an inverter, which has:

[0024] The fixed plate 1 can be installed on a wall, and the through groove 1-3 is arranged along the length direction of the fixed plate 1. The first end of the through groove 1-3 is provided with a fixed baffle 3, and the second end of the through groove 1-3 is provided with a movable baffle 4. The inner wall of the through groove 1-3 is provided with a mounting groove 1-2. The movable baffle 4 is installed in the mounting groove 1-2 and can extend out of the mounting groove 1-2. The movable baffle 4 and the mounting groove 1-2 are connected by a spring 5. The end of the movable baffle 4 away from the fixed baffle 3 is provided with an inclined slope.

[0025] The movable plate 2 is installed with an inverter. The movable plate 2 is slidably installed in the through groove 1-3 along the length direction of the through groove 1-3. When the movable plate 2 is installed on the fixed plate 1, the movable plate 2 is located between the fixed baffle 3 and the movable baffle 4. In this way, after the fixed plate 1 is fixedly installed on the wall, the movable plate 2 installed with the inverter is inserted into the through groove 1-3 of the fixed plate 1 from the second end to the first end direction of the fixed plate 1. During the movement of the movable plate 2 in the through groove 1-3, the movable baffle 4 can be pressed down into the mounting groove 1-2 under the action of the inclined slope of the movable baffle 4. When the movable plate 2 moves to the position cooperating with the fixed baffle 3 in the through groove 1-3, the movable baffle 4 is located at the position not cooperating with the movable plate 2. At this time, the movable baffle 4 can be moved out of the mounting groove 1-2 under the restoring action of the spring 5. Under the cooperation of the fixed baffle 3 and the movable baffle 4, the movable plate 2 is limited, which can effectively prevent the movable plate 2 from being pulled out of the fixed plate 1.

[0026] In this embodiment, the first mounting hole 1-1 is arranged at the position of the two ends of the fixed plate 1. The bolt can pass through the first mounting hole 1-1 and be installed on the wall.

[0027] In this embodiment, the second mounting hole 2-1 is arranged at the position of the two ends of the movable plate 2. The bolt can pass through the second mounting hole 2-1 and be connected with the inverter.

[0028] The second embodiment is a mounting bracket of an inverter, based on the first embodiment, at least two movable baffles 4 are arranged on the inner wall of the through slot 1-3 along the length direction of the through slot 1-3. In this way, when the movable plate 2 of different length is installed in the through slot 1-3 of the fixed plate 1, the corresponding movable baffle 4 extends from the installation slot 1-2 and limits the movable plate 2. In this way, it has good applicability.

[0029] The third embodiment is a mounting bracket of an inverter, based on the first embodiment, the installation plate 6 is arranged on the inner wall of the through slot 1-3 along the length direction of the through slot 1-3, the roller 7 is arranged on the installation plate 6 along the length direction of the installation plate 6, and the limiting slot is arranged on the corresponding side wall of the movable plate 2 along the length direction of the movable plate 2. In this way, the movable plate 2 can reduce friction when moving in the through slot 1-3 under the action of the roller 7, and has good anti-wear effect.

[0030] The fourth embodiment is a mounting bracket of an inverter, which has:

[0031] The fixed plate 1 can be installed on the wall, the through slot 1-3 is arranged on the fixed plate 1 along the length direction of the fixed plate 1, the first end of the through slot 1-3 is provided with a fixed baffle 3, the second end of the through slot 1-3 is provided with a movable baffle 4, the installation slot 1-2 is arranged on the inner wall of the through slot 1-3, the movable baffle 4 is installed in the installation slot 1-2 and can extend out of the installation slot 1-2, and the movable baffle 4 and the installation slot 1-2 are connected by the spring 5.

[0032] The movable plate 2 is installed with an inverter, and the movable plate 2 is slidably installed in the through slot 1-3 along the length direction of the through slot 1-3, and the movable plate 2 is located between the fixed baffle 3 and the movable baffle 4 when the movable plate 2 is installed on the fixed plate 1.

[0033] The end of the movable baffle 4 away from the fixed baffle 3 is provided with a slope.

[0034] At least two movable baffles 4 are arranged on the inner wall of the through slot 1-3 along the length direction of the through slot 1-3.

[0035] The installation plate 6 is arranged on the inner wall of the through slot 1-3 along the length direction of the through slot 1-3, the roller 7 is arranged on the installation plate 6 along the length direction of the installation plate 6, and the limiting slot is arranged on the corresponding side wall of the movable plate 2 along the length direction of the movable plate 2.

[0036] First installation holes 1-1 are arranged at the positions of the two ends of the fixed plate 1, and bolts can pass through the first installation holes 1-1 and be installed on the wall.

[0037] Second mounting holes 2-1 are formed at both end positions of the movable plate 2, and bolts can pass through the second mounting holes 2-1 and be connected with the inverter.

[0038] The above merely describes a preferred embodiment of the present application, but the protection scope of the present application is not limited to this. Any skilled person in the art, according to the technical scheme and the inventive concept of the present application, can make equivalent replacement or change within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A mounting bracket for an inverter, characterized by: Have: The fixed plate (1) can be installed on the wall, the fixed plate (1) is provided with a through groove (1-3) along the length direction of the fixed plate (1), the first end of the through groove (1-3) is provided with a fixed baffle (3), the second end of the through groove (1-3) is provided with a movable baffle (4), the inner wall of the through groove (1-3) is provided with a mounting groove (1-2), the movable baffle (4) is installed in the mounting groove (1-2) and can be extended out of the mounting groove (1-2), the movable baffle (4) and the mounting groove (1-2) are connected through the spring (5); The movable plate (2) is installed with an inverter, the movable plate (2) is slidably installed in the through groove (1-3) along the length direction of the through groove (1-3), and the movable plate (2) is located between the fixed baffle (3) and the movable baffle (4) when the movable plate (2) is installed on the fixed plate (1).

2. The mounting bracket for an inverter according to claim 1, wherein: The movable baffle (4) is provided with a slope at the end away from the fixed baffle (3).

3. The mounting bracket for an inverter of claim 1, wherein: At least two movable baffles (4) are provided on the inner wall of the through groove (1-3) along the length direction of the through groove (1-3).

4. The mounting bracket for an inverter of claim 1, wherein: The inner side walls on both sides of the through groove (1-3) are installed with mounting plates (6) arranged along the length direction of the through groove (1-3), the mounting plates (6) are installed with rollers (7) on the side walls corresponding to the movable plate (2) along the length direction of the mounting plates (6), and the side walls corresponding to the mounting plates (6) on the movable plate (2) are provided with limiting grooves arranged along the length direction of the movable plate (2).

5. The mounting bracket for an inverter of claim 1, wherein: The first mounting hole (1-1) is provided at the position of the two ends of the fixed plate (1), and the bolt can pass through the first mounting hole (1-1) and be installed on the wall.

6. The mounting bracket for an inverter of claim 1, wherein: The second mounting hole (2-1) is provided at the position of the two ends of the movable plate (2), and the bolt can pass through the second mounting hole (2-1) and be connected with the inverter.