Support and electrical assembly
By designing inclined guides and support brackets, the problem of complex installation of electrical equipment on the wall is solved, and the installation process is simplified and efficiency is improved.
Patent Information
- Application Number
- CN202423018497.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-06
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2034-12-06
AI Technical Summary
In the prior art, when electrical equipment is installed on a wall through a bracket, it is necessary to repeatedly align multiple fixing holes, resulting in high installation complexity.
A bracket is designed, including a main body and a first connecting part, a guide member and a bearing member. The guide member is arranged at an angle and can guide the electrical equipment to move along a preset path to the bearing member, thereby simplifying the installation process.
There is no need to repeatedly align the fixing holes, which improves the installation efficiency of electrical equipment and reduces installation complexity.
Smart Images

Figure CN223388312U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of electrical components, in particular to a bracket and an electrical component. Background Art
[0002] Compared to mounting electrical equipment like inverters on the ground or roof using brackets, wall-mounted mounting saves space and facilitates maintenance. In related art, the electrical equipment and brackets are provided with multiple corresponding fixing holes, which are then used to secure the electrical equipment to the bracket. However, during installation, these fixing holes must be repeatedly aligned, making installation of the electrical equipment more complex. Utility Model Content
[0003] The utility model provides a bracket and an electrical component to solve at least one of the above-mentioned technical problems.
[0004] The bracket of the present invention comprises a main body and a first connecting portion. The main body is mounted on a wall; the first connecting portions are connected to opposite horizontal ends of the main body. Each of the first connecting portions comprises a guide member and a bearing member connected thereto. The bearing member is connected to the main body and is used to support electrical equipment. The lower end of the guide member is connected to the bearing member, and the upper end of the guide member is inclined toward the side of the bearing member away from the main body.
[0005] In the bracket of the present invention, the guide member can be used to guide the electrical device along a predetermined path to the support member, so that the electrical device can be correctly positioned and hung on the support member. Since there is no need to repeatedly align multiple fixing holes, installation efficiency is improved, thereby reducing the installation complexity of the electrical device.
[0006] In some embodiments, the guide member includes a first guide plate and a second guide plate arranged at opposite ends of the main body in the horizontal direction, and the distance between the first guide plate and the second guide plate gradually decreases from top to bottom, and the lower end of the first guide plate and the lower end of the second guide plate are both connected to the supporting member.
[0007] In some embodiments, the supporting member includes a first connecting plate and a hanging plate connected to the first connecting plate at an angle, the first connecting plate is connected to the guide member, and the hanging plate is used to hang the electrical device.
[0008] In some embodiments, the carrier is provided with a first fixing hole, and the bracket further includes a first fastener, the first fastener is passed through the first fixing hole, and the first fastener is used to fix the electrical device.
[0009] In some embodiments, the bracket also includes a limiting portion, which is connected to the main body, and the limiting portion includes a second connecting plate and a limiting plate, one end of the second connecting plate is connected to the limiting plate at an angle, and the other end of the second connecting plate is connected to the main body at an angle, and the limiting plate is used to limit the position of the electrical equipment.
[0010] In some embodiments, the main body is provided with a plurality of second fixing holes, the bracket further includes a second fastener, the second fastener is passed through the second fixing hole, and the main body is mounted on the wall through the second fastener.
[0011] An electrical assembly according to an embodiment of the present invention includes an inverter and a bracket as described in any of the above embodiments. The inverter includes second connecting portions connected to opposite ends of the inverter along its length, each of which is provided with a fixing slot; the supporting member engages with the fixing slots to suspend the inverter from the bracket.
[0012] In some embodiments, the supporting member includes a first connecting plate and a suspension plate connected to the first connecting plate at an angle, the first connecting plate is connected to the guide member, the second connecting portion includes a third connecting plate, the third connecting plate is parallel to the first connecting plate, the third connecting plate and the suspension plate have an angle, the fixing groove passes through the third connecting plate along the thickness direction of the third connecting plate, and the suspension plate is inserted into the fixing groove so that the inverter is suspended on the bracket.
[0013] In some embodiments, the second connecting portion is further provided with a third fixing hole, the supporting member is provided with a first fixing hole, and the bracket further includes a first fastener, which is passed through the first fixing hole and the third fixing hole, and the inverter and the bracket are fixedly connected by the first fastener.
[0014] In some embodiments, the inverter also includes a heat dissipation portion, which includes a plurality of heat dissipation plates arranged at intervals. The bracket also includes a limiting portion, which is connected to the main body. The limiting portion includes a second connecting plate and a limiting plate. One end of the second connecting plate is connected to the limiting plate at an angle, and the other end of the second connecting plate is connected to the main body at an angle. The limiting plate and the heat dissipation plate abut against each other to limit the position of the inverter.
[0015] In some embodiments, the fixing groove includes a first groove and a second groove, one end of the first groove is connected to one end of the second groove, the other end of the first groove is open, and the other end of the second groove is closed; wherein the width of the first groove gradually increases, and the width of the first groove close to the second groove is smaller than the width of the first groove away from the second groove.
[0016] In some embodiments, the inverter further includes an inductor, and the second connecting portion is provided on the inductor.
[0017] Additional aspects and advantages of the present invention will be given in part in the following description and will become apparent from the following description or learned through practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] The above and / or additional aspects and advantages of the present invention will become apparent and easily understood from the description of the embodiments with reference to the following drawings, in which:
[0019] Figure 1 This is a schematic structural diagram of a bracket according to one embodiment of the present invention;
[0020] Figure 2 It is a schematic structural diagram of an electrical component according to one embodiment of the present invention;
[0021] Figure 3 This is a schematic diagram of the disassembled structure of an electrical component according to one embodiment of the present invention;
[0022] Figure 4 yes Figure 3 An enlarged schematic diagram of part a of an electrical component;
[0023] Figure 5 It is a structural schematic diagram of an electrical component according to another embodiment of the present invention;
[0024] Figure 6 yes Figure 5 Part b of the electrical components is enlarged.
[0025] Description of reference numerals:
[0026] Bracket 100; main body 10; first connecting portion 20; guide member 21; supporting member 22; first guide plate 210; second guide plate 211; first connecting plate 220; hanging plate 221; first fixing hole 222; first fastener 30; limiting portion 40; second connecting plate 41; limiting plate 42; second fixing hole 11; second fastener 50; electrical component 1000; inverter 200; second connecting portion 201; fixing slot 2010; third connecting plate 2011; third fixing hole 2012; heat dissipation portion 202; heat dissipation plate 2020; first slot 2013; second slot 2014; inductor 203. DETAILED DESCRIPTION
[0027] The embodiments of the present invention are described in detail below, and examples of the embodiments 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 only used to explain the present invention, and should not be understood as limiting the present invention.
[0028] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise" and the like, indicating directions or positional relationships, are based on the directions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction, and therefore cannot be understood as limiting the present invention. In addition, the terms "first" and "second" are used for descriptive purposes only and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features defined as "first" and "second" may explicitly or implicitly include one or more of the said features. In the description of the present invention, "multiple" means two or more, unless otherwise clearly and specifically defined.
[0029] In the description of this utility model, it should be noted that, unless otherwise expressly specified or limited, the terms "installed," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections, electrical connections, or mutual communication; direct connections or indirect connections through an intermediate medium; and internal communication between two components or interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on specific circumstances.
[0030] 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. Moreover, 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.
[0031] The disclosure below provides many different embodiments or examples for realizing different structures of the present invention. In order to simplify the disclosure of the present invention, the components and settings of specific examples are described below. Of course, they are merely examples and are not intended to limit the present invention. In addition, the present invention may repeat reference numbers and / or reference letters in different examples. Such repetition is for the purpose of simplicity and clarity and does not in itself indicate the relationship between the various embodiments and / or settings discussed. In addition, the present invention provides examples of various specific processes and materials, but a person of ordinary skill in the art will recognize the application of other processes and / or the use of other materials.
[0032] See also Figure 1 and Figure 2 . The bracket 100 of the embodiment of the present invention includes a main body 10 and a first connecting part 20. The main body 10 is used to be installed on a wall; the first connecting part 20 is connected to the two opposite ends of the main body 10 in the horizontal direction h, and each first connecting part 20 includes a guide member 21 and a bearing member 22 connected to the guide member 21, the bearing member 22 is connected to the main body 10, and the bearing member 22 is used to carry electrical equipment. The lower end of the guide member 21 is connected to the bearing member 22, and the upper end of the guide member 21 is inclined toward the side of the bearing member 22 away from the main body 10.
[0033] In the bracket 100 of the present embodiment, the guide member 21 can be used to guide the electrical device along a preset path to the carrier 22, so that the electrical device can be correctly positioned and hung on the carrier 22. Since there is no need to repeatedly align multiple fixing holes, the installation efficiency is improved, thereby reducing the installation complexity of the electrical device.
[0034] Specifically, the main body 10 can be the main component of the bracket 100. The main body 10 can be made of a high-strength metal material, such as a steel plate, an aluminum plate, etc. The shape of the main body 10 can be a regular shape such as a rectangle or a square, or an irregular shape. The length and width of the main body 10 can be designed according to the size of the installed electrical equipment. The main body 10 can be mounted on the wall by direct connection or indirect connection. The horizontal direction h of the main body 10 can be the same as the longitudinal direction of the main body 10.
[0035] The first connecting portion 20 is connected to the main body 10. The guide member 21 and the support member 22 are two interconnected parts of the first connecting portion 20. There can be multiple first connecting portions 20. For example, there can be two, three, four, or even more first connecting portions 20. As an example, there can be two first connecting portions 20, each including a guide member 21 and a support member 22.
[0036] The two first connection parts 20 are respectively connected to opposite ends of the main body 10, and the two first connection parts 20 can be symmetrically arranged about the central axis of the main body 10. The first connection parts 20 can be connected to the opposite ends of the main body 10 by a detachable method such as bolt connection or clamping, or the first connection parts 20 can be connected to the opposite ends of the main body 10 by a non-detachable method such as welding or bonding.
[0037] The first connecting portion 20 and the main body 10 can be an integrally formed structure. An integrally formed structure is generally stronger because it has no assembly gaps, is more integrated, and can provide better load-bearing capacity and stability. For example, the first connecting portion 20 and the main body 10 can be formed in one piece by metal casting.
[0038] The first connecting portion 20 and the main body 10 may also be formed as separate parts. Separate parts can be replaced individually without replacing the entire part, reducing maintenance costs. For example, the first connecting portion 20 and the main body 10 may be manufactured separately and then secured together using a detachable or non-detachable connection.
[0039] The guide member 21 is used to guide the electrical device to move along a preset path to the carrier 22. The guide member 21 may include an inclined surface, a guide rail, or a slider. The carrier 22 may include a hanging plate, a hook, a hanging ring, or other suitable hanging structures. The electrical device may be an inverter 200 (such as Figure 2 As shown), transformers, etc. The electrical equipment is provided with a corresponding structure that cooperates with the bearing member 22.
[0040] The carrier 22 can be connected to the guide member 21 and the main body 10 by a detachable method such as bolt connection or clamping, or the carrier 22 can be connected to the guide member 21 and the main body 10 by a non-detachable method such as welding or bonding. The guide member 21 and the main body 10 can be connected to different sides of the carrier 22 respectively.
[0041] The bearing member 22 and the guide member 21 may be formed in one piece. An one-piece structure is generally stronger because it has no assembly gaps, is more integral, and can provide better load-bearing capacity and stability. For example, the bearing member 22 and the guide member 21 may be formed in one piece by metal casting.
[0042] The bearing member 22 and the guide member 21 may also be separate molded structures, which can be replaced individually without replacing the entire structure, thereby reducing maintenance costs. For example, the bearing member 22 and the guide member 21 may be manufactured separately and then fixed by a detachable connection or a non-detachable connection.
[0043] See also Figure 1 In some embodiments, the guide member 21 includes a first guide plate 210 and a second guide plate 211 disposed at opposite ends of the main body 10 in the horizontal direction h. The distance between the first guide plate 210 and the second guide plate 211 gradually decreases from top to bottom, and the lower ends of the first guide plate 210 and the second guide plate 211 are both connected to the supporting member 22.
[0044] As a result, the distance between the first guide plate 210 and the second guide plate 211 gradually decreases, which helps the electrical equipment gradually align with the carrier 22 during installation, thereby improving the installation efficiency of the electrical equipment. Since the distance between the first guide plate 210 and the second guide plate 211 gradually increases from bottom to top, when the electrical equipment needs to be maintained or replaced, it can be more easily removed, which simplifies the maintenance process and improves the maintenance efficiency of the electrical equipment.
[0045] Specifically, a first guide plate 210 is a guide member 21 disposed at one end of the main body 10. The first guide plate 210 is used to guide the electrical device toward the support member 22. A second guide plate 211 is a guide member 21 disposed at the other end of the main body 10. The first guide plate 210 is also used to guide the electrical device toward the support member 22. The first guide plate 210 and the second guide plate 211 can be aligned with the central axis of the main body 10, which allows for smooth movement of the electrical device during installation.
[0046] The distance between the end of the first guide plate 210 near the carrier 22 and the end of the second guide plate 211 near the carrier 22 is smaller than the distance between the end of the first guide plate 210 away from the carrier 22 and the end of the second guide plate 211 away from the carrier 22. The first guide plate 210 and the second guide plate 211 can form a guide channel with a larger top opening and a smaller top opening. During the installation process of the electrical equipment, the electrical equipment falls along the guide channel and gradually aligns with the carrier 22. Ultimately, the electrical equipment is suspended from the carrier 22.
[0047] See also Figure 1 and Figure 2 In some embodiments, the carrier 22 includes a first connecting plate 220 and a suspension plate 221 connected to the first connecting plate 220 at an angle, the first connecting plate 220 is connected to the guide member 21, and the suspension plate 221 is used to suspend the electrical equipment.
[0048] Thus, the angle between the first connecting plate 220 and the suspension plate 221 facilitates the layout of the suspension plate 221. Furthermore, the first connecting plate 220 can provide support for the suspension plate 221, thereby improving the structural strength of the suspension plate 221, so that the electrical equipment can be suspended on the suspension plate 221 more stably.
[0049] Specifically, the first connecting plate 220 can be connected to the suspension plate 221 in a detachable manner such as bolt connection and clamping, and the first connecting plate 220 can also be connected to the suspension plate 221 in a non-detachable manner such as welding and bonding.
[0050] The first connecting plate 220 and the suspension plate 221 can be an integrally formed structure. An integrally formed structure is generally stronger because it has no assembly gaps, is more integrated, and can provide better load-bearing capacity and stability. For example, the first connecting plate 220 and the suspension plate 221 can be formed in one piece by metal casting.
[0051] The first connecting plate 220 and the suspension plate 221 may also be formed as separate parts. Separate parts can be replaced individually without replacing the entire part, reducing maintenance costs. For example, the first connecting plate 220 and the suspension plate 221 may be manufactured separately and then secured together using a detachable or non-detachable connection.
[0052] The angle between the first connecting plate 220 and the suspension plate 221 can be fixed or adjustable to accommodate different suspension requirements and the shape of the electrical equipment. The angle can be acute, right, or obtuse. As an example, the angle between the first connecting plate 220 and the suspension plate 221 is a right angle.
[0053] The number of suspension plates 221 can be multiple. For example, the number of suspension plates 221 can be two, three, four, or even more. As an example, there are two suspension plates 221, and the two suspension plates 221 are respectively arranged on opposite sides of the main body 10 in the horizontal direction h. The two suspension plates 221 are symmetrically arranged about the central axis of the main body 10. This allows the electrical equipment to be more stably suspended on the suspension plates 221.
[0054] The first connecting plate 220 can be connected to the guide member 21 in a detachable manner such as bolt connection or clamping, or can be connected to the guide member 21 in a non-detachable manner such as welding or bonding.
[0055] The first connecting plate 220 and the guide member 21 can be an integrally formed structure. An integrally formed structure is generally stronger because it has no assembly gaps, is more integral, and can provide better load-bearing capacity and stability. For example, the first connecting plate 220 and the guide member 21 can be formed in one step by metal casting.
[0056] The first connecting plate 220 and the guide member 21 may also be formed as separate parts. The separate parts can be replaced individually without replacing the entire part, thus reducing maintenance costs. For example, the first connecting plate 220 and the guide member 21 may be manufactured separately and then fixed together using a detachable or non-detachable connection.
[0057] See also Figure 1 and Figure 2 In some embodiments, the carrier 22 is provided with a first fixing hole 222 , and the bracket 100 further includes a first fastener 30 , which is passed through the first fixing hole 222 and is used to fix the electrical device.
[0058] In this way, after the electrical device is hung on the suspension plate 221 , the first fastener 30 and the first fixing hole 222 can provide additional connection points, thereby strengthening the connection strength between the carrier 22 and the electrical device and reducing the shaking of the electrical device on the carrier 22 .
[0059] Specifically, the shape of the first fixing hole 222 can be regular, such as circular, square, or oval, or can be irregular. The number of first fixing holes 222 can be multiple. For example, each of the supporting members 22 at both ends of the main body 10 can be provided with a first fixing hole 222.
[0060] The first fastener 30 may be a bolt, a screw, or the like. The number of first fasteners 30 may be the same as the number of first fixing holes 222. The first fastener 30 may have external threads. The first fixing holes 222 may have internal threads. The external threads of the first fastener 30 may mate with the internal threads of the first fixing holes 222 to secure the electrical device to the bracket 100.
[0061] See also Figure 1 and Figure 2 In some embodiments, the bracket 100 further includes a limiting portion 40, which is connected to the main body 10. The limiting portion 40 includes a second connecting plate 41 and a limiting plate 42. One end of the second connecting plate 41 is connected to the limiting plate 42 at an angle, and the other end of the second connecting plate 41 is connected to the main body 10 at an angle. The limiting plate 42 is used to limit the position of the electrical equipment.
[0062] In this way, the limiting portion 40 can reduce the probability of the electrical device rotating relative to the hanging portion, thereby reducing the possibility of the electrical device shaking and falling off on the supporting member 22.
[0063] Specifically, the limiting portion 40 can be connected to the opposite ends of the main body 10 in a detachable manner such as bolt connection and clamping, or the limiting portion 40 can be connected to the opposite ends of the main body 10 in a non-detachable manner such as welding and bonding.
[0064] The stopper 40 and the main body 10 may be integrally formed. An integrally formed structure is generally stronger because it has no assembly gaps, is more integral, and can provide better load-bearing capacity and stability. For example, the stopper 40 and the main body 10 may be formed in one piece by metal casting.
[0065] The stopper 40 and the main body 10 may also be separate molded structures, which can be replaced separately without replacing the entire structure, thereby reducing maintenance costs. For example, the stopper 40 and the main body 10 can be manufactured separately and then fixed by a detachable connection or a non-detachable connection.
[0066] The angle between the second connecting plate 41 and the main body 10 can be an acute angle, a right angle, or an obtuse angle. The angle between the second connecting plate 41 and the limiting plate 42 can also be an acute angle, a right angle, or an obtuse angle. The angle between the second connecting plate 41 and the main body 10 and the angle between the second connecting plate 41 and the limiting plate 42 can be the same or different. For example, if the angle between the second connecting plate 41 and the limiting plate 42 is a right angle, the angle between the second connecting plate 41 and the main body 10 is also a right angle.
[0067] See also Figure 1In some embodiments, the main body 10 is provided with a plurality of second fixing holes 11 , and the bracket 100 further includes a second fastener 50 , which is passed through the second fixing holes 11 , and the main body 10 is mounted on the wall via the second fastener 50 .
[0068] Thus, by providing multiple second fixing holes 11 in the main body 10 and using the second fastener 50 to mount the main body 10 on the wall, the connection strength between the bracket 100 and the wall can be enhanced, thereby improving the stability of the entire bracket 100 system. The multiple second fixing holes 11 provide multiple connection points. In this way, if one of the second fixing holes 11 fails, the remaining second fixing holes 11 can still provide the fixing function, thereby reducing the probability of the bracket 100 falling off the wall due to insecure fixing.
[0069] Specifically, the shape of the second fixing hole 11 can be a regular shape such as a circle, a square or an ellipse, or an irregular shape. The number of the second fixing holes 11 can be multiple. For example, three second fixing holes 11 can be provided on the main body 10.
[0070] The second fasteners 50 may be expansion bolts, screws, or the like. The number of second fasteners 50 may be the same as the number of second fixing holes 11. The second fasteners 50 may have external threads. The second fixing holes 11 may have internal threads. The external threads of the second fasteners 50 may mate with the internal threads of the second fixing holes 11 to mount the main body 10 on the wall, thereby allowing the bracket 100 to be mounted on the wall.
[0071] See also Figure 2 、 Figure 3 and Figure 4 The electrical assembly 1000 of the present embodiment includes an inverter 200 and a bracket 100 according to any of the above embodiments. The inverter 200 includes a second connecting portion 201 connected to opposite ends of the inverter 200 in the length direction w. Each second connecting portion 201 is provided with a fixing slot 2010. The supporting member 22 cooperates with the fixing slot 2010 to suspend the inverter 200 on the bracket 100.
[0072] In this way, because the first connection portion 20 is connected to opposite ends of the main body 10 in the horizontal direction h, and the second connection portion 201 is connected to opposite ends of the inverter 200 in the longitudinal direction w, the support member 22 and the fixing slot 2010 can quickly mate, enabling quick hanging installation of the inverter 200. This mate arrangement simplifies the installation process, improves installation efficiency, and reduces the complexity of installing the inverter 200.
[0073] Specifically, the inverter 200 is a device for converting DC power to AC power. The number of second connecting portions 201 can be multiple. For example, there can be two, three, four, or even more second connecting portions 201. As an example, there are two second connecting portions 201, with the two second connecting portions 201 connected at opposite ends of the inverter 200 in the length direction w.
[0074] The shape of the fixing groove 2010 can be regular, such as rectangular or circular, or irregular. There can be multiple fixing grooves 2010. The number of fixing grooves 2010 can correspond to the number of support members 22. One end of the fixing groove 2010 can have a notch to allow the support member 22 to pass through. During the installation process of the inverter 200, the fixing groove 2010 of the inverter 200 can be aligned with the support member 22 of the bracket 100, and the support member 22 can be inserted into the fixing groove 2010, thereby hanging the inverter 200 on the bracket 100.
[0075] See also Figure 2 、 Figure 3 and Figure 4 In some embodiments, the carrier 22 includes a first connecting plate 220 and a suspension plate 221 connected to the first connecting plate 220 at an angle. The first connecting plate 220 is connected to the guide member 21. The second connecting portion 201 includes a third connecting plate 2011. The third connecting plate 2011 is parallel to the first connecting plate 220. The third connecting plate 2011 and the suspension plate 221 are at an angle. The fixing groove 2010 penetrates the third connecting plate 2011 along the thickness direction of the third connecting plate 2011. The suspension plate 221 is inserted into the fixing groove 2010 so that the inverter 200 is suspended on the bracket 100.
[0076] As such, since the third connecting plate 2011 and the first connecting plate 220 are parallel to each other, the first connecting plate 220 can provide a guide for the third connecting plate 2011 during the installation of the inverter 200, thereby improving the installation convenience of the inverter 200. Since the third connecting plate 2011 and the suspension plate 221 are at an angle, and the suspension plate 221 is inserted into the fixing slot 2010, the suspension plate 221 provides stable support for the third connecting plate 2011, thereby reducing the risk of the inverter 200 falling off the bracket 100.
[0077] Specifically, the angle between the third connecting plate 2011 and the suspension plate 221 can be an acute angle, a right angle, or an obtuse angle. For example, the angle between the third connecting plate 2011 and the suspension plate 221 is a right angle. During the installation of the inverter 200, the third connecting plate 2011 can be guided by the guide member 21 toward the first connecting plate 220 and ultimately to the suspension plate 221.
[0078] See also Figure 1 、 Figure 4 、 Figure 5 and Figure 6 In some embodiments, the second connection portion 201 further includes a third fixing hole 2012 , the support member 22 includes a first fixing hole 222 , and the bracket 100 further includes a first fastener 30 , which is passed through the first fixing hole 222 and the third fixing hole 2012 , and the inverter 200 and the bracket 100 are fixedly connected via the first fastener 30 .
[0079] Thus, by adding the third fixing hole 2012 to the second connecting portion 201 and using the first fastener 30 to penetrate the first fixing hole 222 and the third fixing hole 2012, a fixed connection with the bracket 100 is achieved. This improves the stability of the inverter 200 on the bracket 100 and reduces the risk of the inverter 200 shaking or falling off the bracket 100 due to external forces.
[0080] Specifically, the shape of the third fixing hole 2012 can be regular, such as circular, square, or oval, or irregular. There can be multiple third fixing holes 2012. For example, each of the second connecting portions 201 connected to opposite ends of the inverter 200 in the length direction w can be provided with a third fixing hole 2012. The central axis of the third fixing hole 2012 and the central axis of the first fixing hole 222 can be co-aligned. The diameter of the third fixing hole 2012 can be the same as or different from the diameter of the first fixing hole 222.
[0081] See also Figure 2 and Figure 3 In some embodiments, the inverter 200 further includes a heat dissipation portion 202, which includes a plurality of heat dissipation plates 2020 arranged at intervals. The bracket 100 further includes a limiting portion 40, which is connected to the main body 10. The limiting portion 40 includes a second connecting plate 41 and a limiting plate 42. One end of the second connecting plate 41 is connected to the limiting plate 42 at an angle, and the other end of the second connecting plate 41 is connected to the main body 10 at an angle. The limiting plate 42 and the heat dissipation plates 2020 abut against each other to limit the position of the inverter 200.
[0082] Thus, the abutment between the limiting plate 42 and the heat sink 2020 reduces the possibility of the inverter 200 rotating relative to the bracket 100 in the thickness direction, thereby reducing the risk of the inverter 200 shaking and falling off the bracket 100. In addition, multiple heat sinks 2020 arranged at intervals can effectively increase the heat dissipation area and improve heat dissipation efficiency.
[0083] Specifically, the heat dissipation portion 202 is used to dissipate heat generated during operation of the inverter 200, thereby maintaining the inverter 200 operating at a suitable temperature. The heat dissipation plates 2020 may be arranged at intervals w along the length direction of the inverter 200.
[0084] When the inverter 200 is suspended on the bracket 100, the carrier 22 may rotate relative to the fixing slot 2010, which may cause the inverter 200 to wobble. Therefore, by providing a limit plate 42 and making the limit plate 42 abut against the heat sink 2020 of the inverter 200, the possibility of the inverter 200 rotating relative to the bracket 100 in the thickness direction can be reduced.
[0085] See also Figure 4 In some embodiments, the fixing groove 2010 includes a first groove 2013 and a second groove 2014, wherein one end of the first groove 2013 is connected to one end of the second groove 2014, the other end of the first groove 2013 is open, and the other end of the second groove 2014 is closed; wherein the width of the first groove 2013 gradually increases, and the width d1 of the first groove 2013 near the second groove 2014 is smaller than the width d2 of the first groove 2013 away from the second groove 2014.
[0086] Specifically, the width of the first groove 2013 refers to the shortest distance between two opposite sidewalls of the first groove 2013. The width direction d of the first groove 2013 may be perpendicular to the vertical direction v. Along the vertical direction v, the width of the first groove 2013 gradually increases.
[0087] In this way, the first groove 2013 can play a guiding role, so that the fixing groove 2010 can quickly cooperate with the supporting member 22.
[0088] See also Figure 2 and Figure 3 In some embodiments, the inverter 200 further includes an inductor 203 , and the second connecting portion 201 is disposed on the inductor 203 .
[0089] Thus, disposing the second connection portion 201 on the inductor 203 helps optimize the spatial layout within the inverter 200. Because it does not occupy space in other areas of the inverter 200, it can make the overall structure of the inverter 200 more compact and improve the space utilization of the inverter 200.
[0090] Specifically, inductor 203 is a structure on inverter 200 used for energy storage and filtering. Inductor 203 may be a die-cast inductor 203. Second connecting portion 201 may be a portion of the inductor 203 housing, or it may be an external structure attached to inductor 203, such as a metal plate or bracket 100, connected to the inductor 203 housing by welding, riveting, or mechanical fastening.
[0091] When installing the inverter 200, first mount the main body 10 to the wall using the second fasteners 50. Then, align the fixing slots 2010 on the inverter 200 with the guide members 21, allowing the inverter 200 to hang from the main body 10. At this point, you can release the screw. The inverter 200 will slide downward under gravity until the fixing slots 2010 of the second connecting portion 201 contact the suspension plate 221 of the support member 22. Finally, connect the first fixing holes 222 on the support member 22 and the third fixing holes 2012 on the inverter 200 using the first fasteners 30 to complete the installation of the inverter 200.
[0092] Throughout this specification, reference to terms such as "one embodiment," "certain embodiments," "illustrative embodiments," "examples," "specific examples," or "some examples" means that a specific feature, structure, material, or characteristic described in conjunction with the embodiment or example is included in at least one embodiment or example of the present invention. In this specification, illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
[0093] Although the embodiments of the present invention have been shown and described, those skilled in the art will appreciate that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and purpose of the present invention, and that the scope of the present invention is defined by the claims and their equivalents.
Claims
1. A bracket, characterized in that: The bracket comprises: A main body portion, the main body portion being used for being mounted on a wall; A first connecting part, the first connecting part is connected to the two opposite ends of the main body in the horizontal direction, each of the first connecting parts includes a guide member and a supporting member connected to the guide member, the supporting member is connected to the main body, the supporting member is used to support electrical equipment, the lower end of the guide member is connected to the supporting member, and the upper end of the guide member is inclined toward the side of the supporting member away from the main body.
2. The bracket according to claim 1, wherein: The guide member includes a first guide plate and a second guide plate arranged at opposite ends of the main body in the horizontal direction. The distance between the first guide plate and the second guide plate gradually decreases from top to bottom, and the lower end of the first guide plate and the lower end of the second guide plate are both connected to the supporting member.
3. The bracket according to claim 1, wherein: The supporting member includes a first connecting plate and a hanging plate connected to the first connecting plate at an angle, the first connecting plate is connected to the guide member, and the hanging plate is used to hang the electrical equipment.
4. The bracket according to claim 1, wherein: The carrier is provided with a first fixing hole, and the bracket further includes a first fastener, which is passed through the first fixing hole and is used to fix the electrical device.
5. The bracket according to claim 1, wherein: The bracket also includes a limiting portion, which is connected to the main body. The limiting portion includes a second connecting plate and a limiting plate. One end of the second connecting plate is connected to the limiting plate at an angle, and the other end of the second connecting plate is connected to the main body at an angle. The limiting plate is used to limit the position of the electrical equipment.
6. The bracket according to claim 1, wherein: The main body is provided with a plurality of second fixing holes, and the bracket further includes a second fastener, which is passed through the second fixing holes, and the main body is mounted on the wall through the second fastener.
7. An electrical component, characterized in that The electrical components include: An inverter, the inverter comprising second connecting portions connected to opposite ends of the inverter in a length direction, each of the second connecting portions being provided with a fixing groove; The bracket according to any one of claims 1 to 6, wherein the bearing member cooperates with the fixing groove so that the inverter is suspended on the bracket.
8. The electrical component according to claim 7, wherein: The supporting member includes a first connecting plate and a suspension plate connected to the first connecting plate at an angle, the first connecting plate is connected to the guide member, the second connecting portion includes a third connecting plate, the third connecting plate and the first connecting plate are parallel to each other, the third connecting plate and the suspension plate have an angle, the fixing groove passes through the third connecting plate along the thickness direction of the third connecting plate, and the suspension plate is inserted into the fixing groove so that the inverter is suspended on the bracket.
9. The electrical component according to claim 7, wherein: The second connection portion is further provided with a third fixing hole, the bearing member is provided with a first fixing hole, and the bracket further includes a first fastener, which is passed through the first fixing hole and the third fixing hole, and the inverter and the bracket are fixedly connected through the first fastener.
10. The electrical component according to claim 7, wherein The inverter also includes a heat dissipation portion, which includes a plurality of heat dissipation plates arranged at intervals. The bracket also includes a limiting portion, which is connected to the main body. The limiting portion includes a second connecting plate and a limiting plate. One end of the second connecting plate is connected to the limiting plate at an angle, and the other end of the second connecting plate is connected to the main body at an angle. The limiting plate and the heat dissipation plate abut against each other to limit the position of the inverter.
11. The electrical component according to claim 7, wherein The fixing groove includes a first groove and a second groove, one end of the first groove is connected to one end of the second groove, the other end of the first groove is open, and the other end of the second groove is closed; wherein the width of the first groove gradually increases, and the width of the first groove close to the second groove is smaller than the width of the first groove away from the second groove.
12. The electrical assembly according to claim 7, wherein: The inverter further includes an inductor, and the second connecting portion is provided on the inductor.