Electronic device
By designing mounting holes and fixing brackets with multiple directional intervals, the electronic equipment can be suspended in multiple postures, solving the problems of single suspension form and easy detachment, and improving the installation flexibility and stability of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-26
- Publication Date
- 2026-03-10
AI Technical Summary
Existing electronic devices have a single suspension design, which makes it difficult to meet diverse usage needs, and they are prone to falling off when the suspension posture is changed.
Design an electronic device having a suspension bracket and a housing assembly, wherein the mounting holes of the housing assembly are spaced apart in different directions, allowing the suspension feet to be embedded in the holes in different directions to achieve two suspension postures, and improving stability and aesthetics through a fixed bracket and a shield.
It enhances the installation flexibility and stability of electronic devices, expands applicable scenarios, improves product practicality and reliability, and prevents detachment and enhances aesthetics.
Smart Images

Figure CN223984979U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of electronic equipment technology, and in particular to an electronic device. Background Technology
[0002] Currently, in classroom systems, electronic devices such as computing power equipment and smart electronic class signs are usually fixed to the wall in a hanging manner.
[0003] In related technologies, electronic devices are typically fixed to the wall using a specific suspension method. However, the problem is that this suspension method is relatively simple, only allowing for fixation in one direction. Attempting to change the suspension orientation of the electronic device may cause it to detach from the wall. This limitation restricts the applicable scenarios for the electronic device and makes it difficult to meet diverse usage needs. Utility Model Content
[0004] This application provides an electronic device that can be mounted in two different ways to increase the applicable scenarios for the electronic device.
[0005] This application provides an electronic device, including a suspension bracket and a housing assembly. The suspension bracket includes a bracket body and a plurality of hanging feet connected to one side of the bracket body. The housing assembly has a mounting surface with a plurality of hanging holes. Some of the hanging holes are spaced apart along a first direction of the mounting surface, and other hanging holes are spaced apart along a second direction of the mounting surface. The first direction and the second direction are arranged at an angle.
[0006] Specifically, when multiple hanging feet are embedded in multiple hanging holes in the first direction, the housing assembly is in a first suspension posture; when multiple hanging feet are embedded in multiple hanging holes in the second direction, the housing assembly is in a second suspension posture.
[0007] As an optional implementation, in the plurality of hanging holes spaced apart in the first direction, each hanging hole and the other adjacent hanging hole have a height difference in the second direction;
[0008] And / or, in a plurality of hanging holes spaced apart in the second direction, each hanging hole and its adjacent hanging hole have a height difference in the first direction.
[0009] As an optional implementation, the mounting hole has a first opening and a second opening that are connected, wherein the diameter of the first opening is larger than the diameter of the second opening;
[0010] Multiple hanging holes are spaced apart along the first direction, and the first opening and the second opening of each hanging hole are arranged sequentially along the second direction.
[0011] As an optional implementation, among the plurality of hanging holes spaced apart along the first direction and the plurality of hanging holes spaced apart along the second direction, at least two of the first openings of the hanging holes are connected.
[0012] As an optional implementation, the electronic device further includes a mounting bracket detachably connected to the bracket body, and the housing assembly includes a first side and a second side adjacent to the mounting surface, the first side and the second side being arranged at an angle.
[0013] When the housing assembly is in the first suspension posture, the first side is located at the bottom of the housing assembly, and the fixing bracket abuts against the first side. When the housing assembly is in the second suspension posture, the second side is located at the bottom of the housing assembly, and the fixing bracket abuts against the second side.
[0014] As an optional implementation, the bracket body is provided with a positioning groove, and the fixing bracket includes:
[0015] A snap-fit part, wherein the snap-fit part is embedded in the positioning groove;
[0016] Connecting part, the connecting part being connected to the snap-fit part; and
[0017] The abutting portion is bent and connected to the end of the connecting portion away from the snap-fit portion, so as to abut against the first side or the second side.
[0018] As an optional implementation, the bracket body is provided with at least two positioning grooves in sequence along the length extension direction of the connecting portion;
[0019] And / or, the abutment portion has a first connection hole, and both the first side and the second side are provided with a second connection hole corresponding to the first connection hole. The electronic device also includes a fastener that passes through the second connection hole and the first connection hole in sequence to fix the abutment portion to the first side or the second side.
[0020] As an optional implementation, the mounting surface is recessed to form a wiring groove, and the housing assembly is provided with a first wiring outlet and a second wiring outlet communicating with the wiring groove.
[0021] The central axis of the first outlet extends along the first direction, and the central axis of the second outlet extends along the second direction.
[0022] As an optional implementation, the housing assembly includes a box and a cover that are connected to each other, the box and the cover forming an inner cavity for accommodating electronic components, the surface of the cover facing away from the inner cavity forming the mounting surface, and the groove wall of the wiring channel having a wiring port communicating with the inner cavity.
[0023] As an optional implementation, the cover includes a first sub-cover and a second sub-cover that are detachably connected. The first sub-cover and / or the second sub-cover are detachably connected to the box body. The first sub-cover is provided with a plurality of hanging holes, and the second sub-cover is provided with a wiring groove.
[0024] The first sub-cover is made of metal, and the second sub-cover is made of plastic.
[0025] As an optional implementation, the cover also includes a plurality of wire harnesses, all of which are connected to the second sub-cover and located within the wiring groove and spaced apart along the extension direction of the wiring groove.
[0026] As an optional implementation, the electronic device further includes a plurality of shields, which are connected to the inner surface of the housing assembly opposite to the mounting surface, and each shield covers one of the mounting holes.
[0027] The electronic device provided in this application, by setting a suspension bracket with multiple hanging feet and a housing assembly with multiple hanging holes spaced apart along a first direction and a second direction at an angle on the mounting surface, allows the multiple hanging feet to be respectively embedded in the multiple hanging holes in the first direction or the second direction as needed, thereby allowing the housing assembly to be in a first suspension posture or a second suspension posture. This increases the flexibility of the electronic device suspension, expands its applicable scenarios, and ensures the stability of the electronic device under different suspension postures, enhancing the practicality and reliability of the product. It effectively solves the problems of the limited suspension form, easy detachment when changing the suspension posture, and limited applicable scenarios of electronic devices in related technologies. Attached Figure Description
[0028] 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 some embodiments of this application. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0029] Figure 1 This is a structural schematic diagram of the first suspension posture of the electronic device of this application;
[0030] Figure 2 This is a structural schematic diagram of the second suspension posture of the electronic device of this application;
[0031] Figure 3 This is a schematic diagram of the assembly structure of the housing assembly, suspension bracket, and fixing bracket of the electronic device of this application;
[0032] Figure 4 This is a schematic diagram of the housing assembly of the electronic device of this application;
[0033] Figure 5 This is a schematic diagram of the assembly structure of the housing and cover of the electronic device of this application;
[0034] Figure 6 This is an exploded structural diagram of the housing and cover of the electronic device of this application.
[0035] Explanation of icon numbers:
[0036] 100. Electronic equipment; 10. Suspension bracket; 11. Bracket body; 111. Positioning groove; 12. Hanging foot; 20. Housing assembly; 20A. First side; 20B. Second side; 21. Box body; 21a. Second connecting hole; 22. Cover; 22A. Mounting surface; 221. First sub-cover; 2211. Hanging hole; 221a. First opening; 221b. Second opening; 222. Second sub-cover; 2221. Cable routing groove; 222a. Cable passage; 222A. First cable outlet; 222B. Second cable outlet; 223. Cable tie; 30. Fixing bracket; 31. Snap-fit part; 32. Connecting part; 33. Abutting part; 331. First connecting hole; 40. Shield; 50. Electronic component.
[0037] The realization of the purpose, functional features and advantages of this application will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0038] To make the objectives, technical solutions, and advantages of this application clearer, the embodiments of this application will be described in further detail below with reference to the accompanying drawings.
[0039] Where the following description relates to the accompanying drawings, unless otherwise indicated, the same numbers in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this application. Rather, they are merely examples of apparatuses and methods consistent with some aspects of this application as detailed in the appended claims.
[0040] In the description of this application, it should be understood that the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances. Furthermore, in the description of this application, unless otherwise stated, "multiple" refers to two or more. "And / or" describes the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, or B existing alone. The character " / " generally indicates that the preceding and following related objects are in an "or" relationship.
[0041] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of this application. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0042] This application proposes an electronic device, which can be a computing device or a smart electronic class sign, etc. Here, the specific type of electronic device provided in this embodiment is not limited, but the following description will use a smart electronic class sign as an example for further explanation.
[0043] In related technologies, electronic devices are typically fixed to the wall using a specific suspension method. However, the problem is that this suspension method is relatively simple, only allowing for fixation in one direction. Attempting to change the suspension orientation of the electronic device may cause it to detach from the wall. This limitation restricts the applicable scenarios for the electronic device and makes it difficult to meet diverse usage needs.
[0044] Reference Figures 1 to 3 Based on this, this application provides an electronic device 100, designed to enable the electronic device 100 to have two mounting postures, thereby increasing the applicable scenarios of the electronic device 100. Among them, Figure 1 A schematic diagram of the first suspension posture of the electronic device; Figure 2 This is a structural schematic diagram of the second suspension posture of the electronic device of this application. Figure 3 This is a schematic diagram of the assembly structure of the housing assembly, suspension bracket, and fixing bracket of the electronic device of this application.
[0045] The electronic device 100 includes a suspension bracket 10 and a housing assembly 20. The suspension bracket 10 is made of metal, which possesses high strength and good stability, providing a solid and reliable support foundation for the suspension of the electronic device 100. The suspension bracket 10 includes a bracket body 11 and multiple hanging feet 12 connected to one side of the bracket body 11. The bracket body 11 can be fixed to the wall using screws or other methods. This fixing method provides stable and reliable support, ensuring that the suspension bracket 10 is firmly attached to the wall, preventing it from easily shaking or falling due to external forces. The hanging feet 12 can be fixed to the bracket body 11 using screws or other methods, facilitating quick and easy disassembly and installation when the hanging feet 12 are damaged or need to be replaced with different specifications. Alternatively, the hanging feet 12 can be integrally formed with the bracket body 11, thus enhancing the structural strength and integrity between the two and reducing the risk of loosening or breakage at the connection point 32.
[0046] It is worth noting that the overall outer contour of the housing assembly 20 can typically be rectangular. (Refer to reference...) Figure 1 and Figure 4 The housing assembly 20 has a mounting surface 22A, which is provided with a plurality of hanging holes 2211. Some of the hanging holes 2211 are spaced apart along a first direction of the mounting surface 22A, and other hanging holes 2211 are spaced apart along a second direction of the mounting surface 22A. The first direction and the second direction are arranged at an angle.
[0047] The first direction corresponds to the length direction of the housing assembly 20, and the second direction corresponds to the width direction of the housing assembly 20. Thus, when multiple mounting feet 12 are fitted into multiple mounting holes 2211 in the first direction, the housing assembly 20 is in a first suspension posture, such as... Figure 1 As shown. The length direction is... Figure 1 The x-axis direction is consistent with the width direction. Figure 1 When the y-axis and width are aligned, the length direction is horizontal and the width direction is vertical, meaning the first suspension posture is horizontal mounting. This horizontal mounting is suitable for scenarios where the space has sufficient length in the horizontal dimension and the equipment operation or usage requirements are more in line with a horizontal layout.
[0048] When multiple mounting feet 12 are embedded in multiple mounting holes 2211 in the second direction, so that the housing assembly 20 is in a second suspension posture, such as... Figure 2 As shown. At this point, the length direction is vertical and the width direction is horizontal, meaning the second suspension posture is vertical mounting. Vertical mounting is suitable for situations where there is ample space in the vertical dimension, or where, based on usage scenario requirements, a vertical layout of the equipment is more convenient for operation and use.
[0049] This design gives electronic devices 100% greater installation flexibility, allowing them to choose the most suitable hanging method based on actual space conditions and usage needs. This diverse mounting method not only optimizes the device's spatial adaptability but also enhances its practicality and convenience in different scenarios.
[0050] Due to the characteristics of a rectangular shape, the angle between the first and second directions is 90 degrees. This design allows the housing assembly 20 to have greater flexibility and adaptability when installed with the suspension bracket 10. When the hanging feet 12 of the suspension bracket 10 are connected to the hanging holes 2211 in different directions, various hanging postures can be achieved to adapt to different installation environments and actual usage needs. For example, the appropriate hanging hole 2211 can be selected for hanging installation based on factors such as the size of the wall space and the layout of surrounding equipment, thereby making full use of space and ensuring the stable suspension of the electronic device 100. In addition, the electronic device 100 is also equipped with a display screen. The display screen is housed inside the housing assembly 20 and protrudes from the outer surface of the housing assembly 20 on the side opposite to the mounting surface 22A. This arrangement ensures that the display screen can clearly display information for easy viewing by the user, and also provides reliable protection for the display screen through the housing assembly 20, preventing the display screen from being affected by external impacts, dust, and other factors, extending the service life of the display screen, and improving the practicality and reliability of the entire electronic device 100.
[0051] Therefore, in the electronic device 100 provided in this application, by setting a suspension bracket 10 with multiple hanging feet 12 and a housing assembly 20 with multiple hanging holes 2211 respectively spaced along a first direction and a second direction at an angle on the mounting surface 22A, the multiple hanging feet 12 can be respectively embedded in the multiple hanging holes 2211 in the first direction or the second direction as needed, so that the housing assembly 20 can be in a first suspension posture or a second suspension posture, which increases the suspension flexibility of the electronic device 100, expands its applicable scenarios, and ensures the stability of the electronic device 100 under different suspension postures, enhances the practicality and reliability of the product, and effectively solves the problems of the electronic device 100 in related technologies that have a single suspension form, are easy to fall off when changing the suspension posture, and have few applicable scenarios.
[0052] Reference Figure 4In some embodiments, among the plurality of hanging holes 2211 spaced apart in the first direction, each hanging hole 2211 and its adjacent hanging hole 2211 have a height difference in the second direction. This design allows the electronic device 100 to be suspended by the hanging holes 2211 in the first direction. The different heights of the hanging holes 2211, combined with the hanging feet 12 of the suspension bracket 10, disperse the stress points during suspension, preventing stress concentration on the same horizontal line. This enhances the stability and firmness of the suspension of the electronic device 100, and improves its practicality and reliability in complex environments. Similarly, among the plurality of hanging holes 2211 spaced apart in the second direction, each hanging hole 2211 and its adjacent hanging hole 2211 have a height difference in the first direction. When the electronic device 100 is suspended by the second direction mounting hole 2211, the combination of the mounting holes 2211 at different heights with the mounting legs 12 can achieve the effect of dispersing the stress points, avoiding stress concentration, further enhancing the stability and firmness of the electronic device 100 in this suspension posture, expanding the ability of the electronic device 100 to adapt to complex installation environments, and improving its practicality and reliability.
[0053] In some embodiments, combined with Figure 4 The mounting hole 2211 has a first opening 221a and a second opening 221b that are connected, with the diameter of the first opening 221a being larger than the diameter of the second opening 221b. Multiple mounting holes 2211 are spaced apart along a first direction, with the first opening 221a and the second opening 221b of each mounting hole 2211 sequentially arranged along a second direction. This design allows for easier initial positioning and insertion of the mounting legs 12 of the suspension bracket 10 during the suspension of the electronic device 100, reducing installation difficulty and improving installation efficiency. The smaller diameter second opening 221b, after the mounting legs 12 are inserted, provides a certain degree of constraint and limitation, preventing the mounting legs 12 from swaying or detaching during suspension, thus enhancing the stability of the electronic device 100 suspension. Meanwhile, the arrangement of the mounting holes 2211 in different directions is compatible with the design of the electronic device 100 to be suspended in different directions, further ensuring the reliable installation of the electronic device 100 under different suspension postures and improving the practicality and reliability of the product in actual use.
[0054] Furthermore, among the plurality of hanging holes 2211 spaced apart along the first direction and the plurality of hanging holes 2211 spaced apart along the second direction, at least two of the hanging holes 2211 have their first openings 221a connected. This connection design not only reduces the total number of hanging holes 2211, but also simplifies the structural layout of the mounting surface 22A of the housing assembly 20, thereby reducing processing difficulty and production costs. In some embodiments, the first openings 221a of two hanging holes 2211 can be completely shared. This design further optimizes space utilization, reduces material waste, and maintains the integrity of the hanging function. Through this ingenious opening connection method, the housing assembly 20 achieves lightweight structure and efficient manufacturing while meeting various suspension posture requirements.
[0055] Reference Figure 5 and Figure 6 In some embodiments, the electronic device 100 further includes a plurality of shields 40, which are connected to the inner surface of the housing assembly 20 opposite to the mounting surface 22A, and each shield 40 covers a mounting hole 2211. From an aesthetic perspective, the shields 40 provide excellent concealment. The mounting hole 2211 could otherwise be a flaw affecting the overall aesthetics of the electronic device 100, as it allows a direct view of the interior of the housing assembly 20. The shields 40 cleverly cover this hole, making the device appear simpler and neater, and avoiding the unsightly appearance of directly exposed internal structures.
[0056] In terms of structural strength, the shield 40 plays an indispensable role. The area around the mounting hole 2211 is subjected to significant stress during the suspension of the electronic device 100. Long-term external force or frequent suspension operations can easily lead to cracking or deformation in this area. The presence of the shield 40 enhances the structural strength of this area. It can evenly distribute the stress, making the force distribution around the entire mounting hole 2211 more balanced, thereby effectively preventing the aforementioned damage and ensuring the stability and integrity of the housing assembly 20 structure.
[0057] Protective function is a crucial feature of the shield 40. In real-world environments, dust and moisture are ubiquitous. Once they enter the housing assembly 20 through the mounting holes 2211, they can adhere to the electronic components 50. Dust accumulation affects the heat dissipation performance of the electronic components 50, while moisture can cause short circuits and other malfunctions, severely shortening the lifespan of the electronic equipment 100. The shield 40 acts as a robust defense, keeping dust and moisture out and creating a clean, dry operating environment for the internal electronic components 50. This significantly reduces the probability of malfunctions and extends the service life of the electronic equipment 100.
[0058] Safety is also a key aspect that the shield 40 emphasizes. In daily use, foreign objects inevitably come into contact with the electronic device 100. Without the shield 40, these objects could easily enter the housing assembly 20 through the mounting hole 2211, potentially causing short circuits or other safety hazards if they come into contact with the internal circuitry. The shield 40 effectively prevents this from happening, providing a reliable guarantee for the safe operation of the electronic device 100.
[0059] In addition, the shield 40 also possesses certain sound insulation and electromagnetic shielding capabilities. External noise may interfere with the signal transmission and processing within the electronic device 100, affecting its normal operation; and the electronic components 50 inside the electronic device 100 generate electromagnetic radiation during operation. This radiation may not only interfere with other surrounding electronic devices 100 but may also pose potential health hazards. The shield 40 can reduce the intrusion of external noise to a certain extent, while also reducing the impact of internal electromagnetic radiation on the outside world, comprehensively improving the overall performance of the electronic device 100 and the user experience.
[0060] Combined with reference Figures 1 to 3 To further improve the stability of the electronic device 100 during mounting, in some embodiments, the electronic device 100 further includes a fixing bracket 30, which is detachably connected to the bracket body 11. The housing assembly 20 includes a first side 20A and a second side 20B adjacent to the mounting surface 22A, with the first side 20A and the second side 20B arranged at an angle. When the housing assembly 20 is in a first hanging posture, the first side 20A is located at the bottom of the housing assembly 20, and the fixing bracket 30 abuts against the first side 20A. When the housing assembly 20 is in a second hanging posture, the second side 20B is located at the bottom of the housing assembly 20, and the fixing bracket 30 abuts against the second side 20B. This design allows the fixing bracket 30 to provide additional support for the housing assembly 20 under different hanging postures. The detachable connection method facilitates flexible installation or removal of the fixing bracket 30 according to actual needs. When the electronic device 100 is suspended, the fixed bracket 30 effectively disperses the stress generated by the weight of the electronic device 100 itself and external forces by abutting against the corresponding side, reducing the pressure on the hanging feet 12 and the hanging holes 2211, avoiding loosening or damage caused by excessive local stress, thereby significantly enhancing the hanging stability of the electronic device 100 in different hanging postures, ensuring the reliable operation of the electronic device 100, and improving the practicality and durability of the product.
[0061] Furthermore, the bracket body 11 is provided with a positioning groove 111, and the fixed bracket 30 includes a snap-fit part 31, a connecting part 32, and an abutment part 33. The snap-fit part 31 is embedded in the positioning groove 111. This embedding method provides precise positioning for the fixed bracket 30, ensuring that it can be accurately installed on the bracket body 11 and avoiding positional deviations during installation. The connecting part 32 is connected to the snap-fit part 31, acting as a bridge to connect the snap-fit part 31 and the abutment part 33 into a whole. The abutment part 33 is bent at the end of the connecting part 32 away from the snap-fit part 31. When the housing assembly 20 is in the first suspension posture, the abutment part 33 can tightly abut against the first side 20A at the bottom; when in the second suspension posture, the abutment part 33 abuts against the second side 20B at the bottom. With this structural design, the fixed bracket 30 can not only be securely installed on the bracket body 11 with the cooperation of the snap-fit part 31 and the positioning groove 111, but also the abutment part 33 can provide reliable support for the housing assembly 20 under different suspension postures, further dispersing the weight of the electronic device 100 and the stress generated by external forces, enhancing the stability of the electronic device 100, and ensuring that the electronic device 100 can operate safely and stably in different usage scenarios.
[0062] Furthermore, the bracket body 11 is provided with at least two positioning grooves 111 in sequence along the length of the connecting portion 32. This design makes the installation of the fixed bracket 30 more flexible and adjustable. The setting of multiple positioning grooves 111 means that the snap-fit portion 31 of the fixed bracket 30 can be embedded in different positioning grooves 111 according to actual needs. During the installation of the electronic device 100, the installation position of the fixed bracket 30 on the bracket body 11 can be flexibly adjusted according to different usage scenarios, the specific state of the housing component 20, and the external forces it is subjected to. When different positioning grooves 111 are selected to install the fixed bracket 30, the abutment position and abutment force of the abutment portion 33 against the first side 20A or the second side 20B of the housing component 20 will also change accordingly, thereby more accurately dispersing the stress generated when the electronic device 100 is suspended, optimizing the support effect, further enhancing the hanging stability of the electronic device 100 under different hanging postures, ensuring that the electronic device 100 can still operate reliably in complex environments, and improving the practicality and adaptability of the product.
[0063] Optionally, the abutment portion 33 has a first connecting hole 331, and both the first side surface 20A and the second side surface 20B have second connecting holes 21a corresponding to the first connecting hole 331. The electronic device 100 also includes a fastener that passes through the second connecting hole 21a and the first connecting hole 331 in sequence to fix the abutment portion 33 to the first side surface 20A or the second side surface 20B. The fastener can be a screw, and the first connecting hole 331 and the second connecting hole 21a can be threaded holes. By screwing the screw into the second connecting hole 21a and the first connecting hole 331 in sequence, the abutment portion 33 is fixed to the first side surface 20A or the second side surface 20B. This fixing method using a screw and threaded hole provides a strong connection force, further enhancing the connection strength between the fixing bracket 30 and the housing assembly 20. When the electronic device 100 is in the first suspended posture, the screw firmly connects the abutment portion 33 to the first side surface 20A, allowing the fixing bracket 30 to better support the housing assembly 20 and effectively distribute stress. Figure 1 As shown. In the second suspension position, the screws can also securely fix the abutment 33 to the second side 20B, as... Figure 2 As shown, the stability of the electronic device 100 under different suspension postures is significantly improved, effectively preventing loosening or displacement caused by external forces or long-term use, ensuring that the electronic device 100 can operate reliably and stably in various environments, and further improving the practicality and reliability of the product.
[0064] In some embodiments, refer to Figure 1 , Figure 2 as well as Figure 6 The mounting surface 22A is recessed to form a wiring groove 2221, and the housing assembly 20 has a first cable outlet 222A and a second cable outlet 222B communicating with the wiring groove 2221. The central axis of the first cable outlet 222A extends along a first direction, and the central axis of the second cable outlet 222B extends along a second direction. This design provides convenience and flexibility for the wiring layout of the electronic device 100. The wiring groove 2221 allows the internal wiring of the electronic device 100 to be arranged neatly and orderly, avoiding messy and tangled wiring and reducing the probability of wiring failure. The first cable outlet 222A and the second cable outlet 222B extending in different directions allow for selection of the appropriate cable outlet direction based on the actual suspension posture and installation environment of the electronic device 100. When the housing assembly 20 is in the first suspension posture, the wiring can be led out through the first cable outlet 222A. When in the second suspension posture, the wiring can be led out through the second cable outlet 222B. This allows for better adaptation to different installation spaces and wiring requirements of peripheral devices, making the installation and use of Electronic Device 100 more convenient and improving the product's practicality and versatility in real-world applications.
[0065] Furthermore, in conjunction with reference Figure 5 and Figure 6 The housing assembly 20 includes a box body 21 and a cover body 22 that are connected to form an inner cavity for housing the electronic component 50. The surface of the cover body 22 facing away from the inner cavity forms a mounting surface 22A. The wall of the wiring groove 2221 has a wiring port 222a communicating with the inner cavity. The box body 21 has a first wiring outlet 222A and a second wiring outlet 222B. The box body 21 serves as the mounting framework for the entire product, providing a stable support structure for the electronic component 50 and other components, ensuring the overall stability of the product. The box body 21 and the cover body 22 can be fixed by snap-fit or screw connection. Snap-fit connection is simpler and faster to install, improving production efficiency and facilitating later disassembly and maintenance. Screw connection provides a more robust connection, enhancing the overall strength of the housing assembly 20 and ensuring reliable protection of the internal electronic component 50 in various environments. The cover 22 has a first cable outlet 222A and a second cable outlet 222B, while the box 21 has cable outlet decorations corresponding to the positions of the first cable outlet 222A and the second cable outlet 222B. In use, simply remove the corresponding cable outlet decoration to allow the cable to smoothly exit from either the first cable outlet 222A or the second cable outlet 222B. This ensures the integrity and aesthetics of the product's appearance when not in use, while also providing convenience for users, allowing them to flexibly choose the cable outlet position according to actual wiring layout needs.
[0066] The electronic component 50 can be a circuit board, chip, sensor, or other components with different functions. These electronic components 50 are connected to the wiring in the wiring channel 2221 via the cable outlet 222a, and the wiring is led out from either the first cable outlet 222A or the second cable outlet 222B according to actual needs to achieve functions such as communication or power supply with external devices. This design not only makes the wiring layout of the electronic device 100 more reasonable and orderly, avoiding wire tangling and interference, but also allows for flexible selection of the cable outlet direction based on the product's hanging posture and installation environment, greatly improving the product's practicality and versatility, and meeting the usage needs in different scenarios.
[0067] Furthermore, the cover 22 includes a detachably connected first sub-cover 221 and second sub-cover 222, which are detachably connected to the box body 21. This provides flexibility in the connection method with the box body 21. Either the first sub-cover 221 and the second sub-cover 222 can be individually and separately fixed to the box body 21 to form a stable overall structure, or one of the first sub-cover 221 and the second sub-cover 222 can be connected to the box body 21 to adapt to different assembly requirements and application scenarios.
[0068] The first sub-cover 221 has multiple hanging holes 2211, and the second sub-cover 222 has a cable routing channel 2221. The first sub-cover 221 is made of metal, while the second sub-cover 222 is made of plastic. The metal material of the first sub-cover 221 ensures high strength and stability at the locations of the hanging holes 2211, capable of withstanding the tension and stress generated when the electronic device 100 is suspended, ensuring safe and reliable suspension. The plastic material of the second sub-cover 222 is relatively inexpensive and easy to process, making it more convenient to install the cable routing channel 2221. This material combination effectively reduces production costs while meeting product performance requirements, achieving cost reduction and efficiency improvement. Furthermore, the detachable design of the first and second sub-covers 221 and 222 facilitates individual replacement, repair, or upgrades of the covers 22, improving product maintainability and lifespan, and further enhancing the competitiveness and practicality of the electronic device 100 in the market.
[0069] Furthermore, the cover 22 also includes a plurality of cable tie clips 223, all of which are connected to the second sub-cover 222 and located within the cable routing groove 2221 and spaced apart along the extension direction of the cable routing groove 2221. The cable tie clips 223 further enhance the stability of the wiring. During the use of the electronic device 100, it may be affected by external forces such as vibration and movement. The cable tie clips 223 can firmly fix the wiring within the cable routing groove 2221, preventing the wiring from becoming tangled, shifted, or even falling off due to shaking. This helps reduce the probability of wiring failures and ensures the stability and reliability of signal transmission within the electronic device 100. From a maintenance perspective, the spaced arrangement of the cable tie clips 223 not only secures the wiring but also facilitates operation by staff when maintenance or replacement is needed. They can more easily identify and handle specific wiring, improving maintenance efficiency.
[0070] In the accompanying drawings of this embodiment, the same or similar reference numerals correspond to the same or similar components. In the description of this application, it should be understood that if terms such as "upper," "lower," "left," and "right" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, they are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the terms used to describe positional relationships in the accompanying drawings are only for illustrative purposes and should not be construed as limiting this patent. For those skilled in the art, the specific meaning of the above terms can be understood according to the specific circumstances.
[0071] The above are merely preferred embodiments of this application and are not intended to limit this application. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. An electronic device, comprising: The electronic device comprises: a hanging bracket comprising a bracket body and a plurality of hanging legs connected to one side of the bracket body; and a housing assembly having a mounting surface provided with a plurality of hanging holes, wherein part of the hanging holes are arranged at intervals along a first direction of the mounting surface, and another part of the hanging holes are arranged at intervals along a second direction of the mounting surface, the first direction and the second direction being arranged at an angle; wherein when the plurality of hanging legs are embedded in the plurality of hanging holes in the first direction, the housing assembly is in a first hanging posture; and when the plurality of hanging legs are embedded in the plurality of hanging holes in the second direction, the housing assembly is in a second hanging posture.
2. The electronic device of claim 1, wherein, In the plurality of hanging holes arranged at intervals in the first direction, each hanging hole and another adjacent hanging hole have a height difference in the second direction; and / or, in the plurality of hanging holes arranged at intervals in the second direction, each hanging hole and another adjacent hanging hole have a height difference in the first direction.
3. The electronic device of claim 1, wherein, The hanging hole has a first aperture and a second aperture in communication, the diameter of the first aperture is greater than the diameter of the second aperture; The plurality of hanging holes arranged at intervals along the first direction, the first aperture and the second aperture of each hanging hole are arranged in sequence along the second direction, and the plurality of hanging holes arranged at intervals along the second direction, the first aperture and the second aperture of each hanging hole are arranged in sequence along the first direction.
4. The electronic device of claim 3, wherein, In the plurality of hanging holes arranged at intervals along the first direction and the plurality of hanging holes arranged at intervals along the second direction, the first apertures of at least two hanging holes are in communication.
5. The electronic device of claim 1, wherein, The electronic device further comprises a fixing bracket which is detachably connected to the bracket body, the housing assembly comprises a first side surface and a second side surface arranged adjacent to the mounting surface, the first side surface and the second side surface are arranged at an angle; When the housing assembly is in the first hanging posture, the first side surface is located at the bottom of the housing assembly, and the fixing bracket abuts against the first side surface; when the housing assembly is in the second hanging posture, the second side surface is located at the bottom of the housing assembly, and the fixing bracket abuts against the second side surface.
6. The electronic device of claim 5, wherein, The bracket body is provided with a positioning groove, and the fixing bracket comprises: a clamping portion embedded in the positioning groove; a connecting portion connected to the clamping portion; and an abutting portion bent and connected to one end of the connecting portion away from the clamping portion, for abutting against the first side surface or the second side surface.
7. The electronic device of claim 6, wherein, The bracket body is provided with at least two positioning grooves in sequence along the length extension direction of the connecting portion; and / or, the abutting portion has a first connecting hole, the first side surface and the second side surface are each provided with a second connecting hole corresponding to the first connecting hole, and the electronic device further comprises a fastener which sequentially passes through the second connecting hole and the first connecting hole to fix the abutting portion to the first side surface or the second side surface.
8. The electronic device according to any one of claims 1 to 7, wherein The mounting surface is recessed to form a wiring slot, and the housing assembly is provided with a first wire outlet and a second wire outlet in communication with the wiring slot; The central axis direction of the first outlet port extends along the first direction, and the central axis direction of the second outlet port extends along the second direction.
9. The electronic device of claim 8, wherein, The shell assembly includes a box body and a cover body connected together, the box body and the cover body enclosing an inner cavity for accommodating electronic components, a surface of the cover body away from the inner cavity forming the mounting surface, and a slot wall of the wire slot being provided with a wire passing opening communicating with the inner cavity.
10. The electronic device of claim 9, wherein, The cover body includes a first sub-cover and a second sub-cover detachably connected, the first sub-cover and / or the second sub-cover being detachably connected to the box body, the first sub-cover being provided with a plurality of the hanging holes, and the second sub-cover being provided with the wire slot. The first sub-cover is made of metal, and the second sub-cover is made of plastic.
11. The electronic device of claim 10, wherein, The cover body further includes a plurality of wire buckles, the plurality of wire buckles being connected to the second sub-cover and being arranged in the wire slot and spaced apart along the extension direction of the wire slot.
12. The electronic device according to any one of claims 1 to 7, wherein The shell assembly further includes a plurality of shielding covers, the plurality of shielding covers being connected to an inner surface of the shell assembly opposite to the mounting surface, and each shielding cover covering one of the hanging holes.