Intelligent edge computing gateway equipment
By introducing protective units and anti-detachment units into the intelligent edge computing gateway device, the problem of connectors falling off due to external pulling in outdoor environments is solved, achieving stable interface connection and device protection.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- GUIZHOU WUJIANG HYDROPOWER DEV
- Filing Date
- 2024-02-28
- Publication Date
- 2026-04-10
AI Technical Summary
In outdoor environments, existing smart edge computing gateway devices lack protective measures at their interfaces, making the connectors prone to detachment due to external pulling, resulting in connection loss.
An intelligent edge computing gateway device including a protective unit and an anti-detachment unit is designed. The protective unit includes a protective shell, an information processing module, a junction box, and a waterproof plug. The anti-detachment unit prevents the connector from accidentally falling off through a mechanical structure composed of a first fixing component, a pushing component, a receiving component, and a spring.
It effectively prevents the connector from falling off under external force, ensures stable connection, and provides waterproof and dustproof protection to ensure normal operation of the equipment.
Smart Images

Figure CN121841903A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of outdoor gateway, and particularly relates to a kind of intelligent edge computing gateway device. BACKGROUND
[0002] Edge intelligent gateway is a kind of device capable of being connected at network edge (such as sensor, device, terminal). It has the ability to process and analyze data, and can communicate with cloud or other network devices, and the target of edge intelligent gateway is to carry out real-time data processing and decision-making near data source, reduce data transmission delay, and maximize the efficiency and reliability of network.
[0003] When the gateway device is applied in outdoor environment, the wire plugged on the interface of the gateway device through the gateway plug will extend outward and be exposed in outdoor environment due to use demand, and the wire extending to the outside will be affected by outdoor environmental factors, and there may be violent pulling, traction and other phenomena. The pulling and traction mode can cause the gateway connector to be violently pulled out of the interface, and the prior art lacks measures to protect and fix the connection of the gateway connector and the socket, so that the wire and the device are disconnected, and the connection between the gateway and the network device is disconnected, which cannot work normally. SUMMARY
[0004] In view of the above problems existing in the prior art intelligent edge computing gateway device, the present application is proposed.
[0005] Therefore, the purpose of the present application is to provide an intelligent edge computing gateway device, which aims to provide reinforcement protection at the interface to avoid the problem of connector falling off caused by external factors, and to ensure the connection effect of the plug.
[0006] To solve the above technical problems, the present application provides the following technical scheme: a protection unit includes a protection shell, an information processing module arranged inside and above the protection shell, a wiring board arranged inside and below the protection shell, a plurality of waterproof plugs arranged at the bottom end of the protection shell, and an antenna arranged at the top end of the protection shell; and an anti-falling unit includes a first fixing component arranged inside the protection shell, a pushing component arranged inside the first fixing component, and one end of the pushing component extending to the outside of the first fixing component, a receiving component arranged at the top end of the pushing component, a plurality of second fixing components arranged on both sides of the receiving component, and a spring arranged at the top end of the receiving component.
[0007] As a preferred scheme of the intelligent edge computing gateway device, the inside of the protective shell is provided with a mounting groove, the side of the protective shell is provided with a sealing door, the inside wall below the information processing module of the protective shell is provided with a fixed groove, the two sides of the fixed groove are provided with movable grooves, one end of the movable grooves is communicated with the outside, and the outermost end of the fixed groove is provided with a socket and communicated with the outside.
[0008] As a preferred scheme of the intelligent edge computing gateway device, the first fixed component is fixedly arranged in the fixed groove, the spring is located between the fixed groove and the top end of the receiving component, the second fixed component is located in the movable groove, and the movable groove is the movable range of the second fixed component.
[0009] As a preferred scheme of the intelligent edge computing gateway device, the first fixed component includes four groups of annularly distributed fixed guard plates, a sliding groove located between every two groups of the fixed guard plates, a first guide block arranged on one side of the top end of the fixed guard plate, a second guide block arranged on the other side of the top end of the fixed guard plate, and a clamping groove located between the first guide block and the second guide block.
[0010] As a preferred scheme of the intelligent edge computing gateway device, the pushing component includes a pushing assembly slidingly connected between the four groups of fixed guard plates, a push rod arranged at one end of the pushing assembly and extending to the outside of the lower end of the first fixed component, and a top plate arranged at the end of the push rod and located in the socket.
[0011] As a preferred scheme of the intelligent edge computing gateway device, the pushing assembly includes a sleeve located between the four groups of fixed guard plates, a plurality of limiting teeth arranged at the top end of the sleeve, and four groups of limiting blocks arranged on the outside of the sleeve and slidingly connected in the four groups of sliding grooves.
[0012] As a preferred scheme of the intelligent edge computing gateway device, the receiving component includes a receiving block located at the top end of the pushing assembly, a limiting shaft arranged on one side of the receiving block and extending into the pushing assembly in a rotary connection, four groups of guide blocks arranged on the outside of the receiving block and slidingly connected in the four groups of sliding grooves, and a fixed shaft symmetrically arranged on both sides of the top end of the receiving block.
[0013] As a preferred scheme of the intelligent edge computing gateway device, the second fixed components are arranged in two groups on two sides of the receiving block, and each two groups of the second fixed components are symmetrically arranged in a vertical direction with the fixed shaft as the axis, each two groups of the second fixed components are staggered in a horizontal direction, and a rotating shaft is arranged in a horizontal direction between each two groups of the second fixed components symmetrically arranged in the horizontal direction.
[0014] As a preferred scheme of the intelligent edge computing gateway device, the second fixed components include a fixed assembly arranged in the movable slot, and a sliding assembly fixedly connected to a top end of the fixed assembly, and the sliding assembly is fixedly connected to the top end of the fixed assembly in an inclined manner.
[0015] As a preferred scheme of the intelligent edge computing gateway device, the fixed assembly includes a fixed rod arranged in the movable slot, and a fixed hook arranged at an end of the fixed rod, and the sliding assembly includes a sliding rod fixedly connected to a top end of the fixed rod, and a sliding slot arranged in the sliding rod and in which the fixed shaft is slidingly connected.
[0016] The application has the beneficial effects that the reinforcing measures are added at the joint plug-in position, the joint is positioned around the interface, when the joint is pulled out abnormally, the positioning and inward pulling force is applied to prevent the joint from falling off accidentally, and the idle interface can be sealed, dustproof and waterproof to ensure the safety of the interface. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical solutions of the embodiments of the application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the application, and other drawings can be obtained by those skilled in the art without creative labor. Among them:
[0018] Figure 1 It is a schematic diagram of the overall structure of the intelligent edge computing gateway device.
[0019] Figure 2 It is a schematic diagram of the structure of the intelligent edge computing gateway device.
[0020] Figure 3 It is a schematic diagram of the structure of the intelligent edge computing gateway device.
[0021] Figure 4 It is a schematic diagram of the structure of the intelligent edge computing gateway device in an idle state.
[0022] Figure 5A structure diagram of the intelligent edge computing gateway device in a working state. DETAILED DESCRIPTION
[0023] In order to make the above objectives, features and advantages of the present application more apparent, specific embodiments of the present application are described in detail below with reference to the accompanying drawings.
[0024] In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present application. However, it will be apparent to one skilled in the art that the present application can be practiced without the specific details given herein, that the present application can be practiced with other than the described embodiments, and that variations from the particular embodiments described herein can be made and still be within the scope of the present application.
[0025] Secondly, the "one embodiment" or "embodiment" referred to herein means that the specific features, structures or characteristics can be included in at least one implementation of the present application. "In one embodiment" appearing in different places in the specification does not mean the same embodiment, nor is it an independent or alternative embodiment mutually exclusive with other embodiments.
[0026] Thirdly, the present application is described in detail in conjunction with the schematic diagram. In the detailed description of the embodiments of the present application, the cross-sectional view of the device structure is partially enlarged without the general proportion for the convenience of description, and the schematic diagram is only an example, which should not limit the scope of protection of the present application. In addition, the three-dimensional spatial dimensions of length, width and depth should be included in the actual manufacture.
[0027] Embodiment 1
[0028] Reference Figure 1 For the first embodiment of the present application, an intelligent edge computing gateway device is provided, which comprises a protection unit 100, including a protection shell 101, an information processing module 102 arranged on the top inside the protection shell 101, a wiring board 103 arranged on the bottom inside the protection shell 101, a plurality of waterproof plugs 104 arranged at the bottom end of the protection shell 101, and an antenna 105 arranged at the top end of the protection shell 101; the protection shell 101 is an external protection module, the information processing module 102 is used for processing the externally received network data, the wiring board 103 is a terminal connection row, and the waterproof plug 104 is used for sealing and isolating the inside and outside of the protection unit 100, and also plays a dustproof and waterproof role.
[0029] The anti-falling unit 200 comprises a first fixing component 201 arranged inside the protective shell 101, a pushing component 202 arranged inside the first fixing component 201 and extending to the outside of the first fixing component 201 at one end, a receiving component 203 arranged at the top end of the pushing component 202, a plurality of second fixing components 204 arranged on both sides of the receiving component 203, and a spring 205 arranged at the top end of the receiving component 203. The anti-falling unit 200 is arranged in a vertical direction inside the lower part of the protective shell 101. The first fixing component 201 is in sliding connection with the pushing component 202. One end of the second fixing component 204 extends to the outside.
[0030] In use, the protective unit 100 is made of waterproof and sun-proof material, which can protect the information processing module 102 inside the device. The antenna 105 receives external network signals and the waterproof plug 104 at the bottom of the protective shell 101 is used to insert the cable to be connected into the protective shell 101. The corresponding connector terminal is inserted into the corresponding position. The wire passing through the waterproof plug 104 is wrapped by the waterproof plug 104, thereby forming a structure isolated from the outside, which prevents external water vapor and dust from entering the inside of the protective shell 101.
[0031] Embodiment 2
[0032] Reference Figures 4-5 For the second embodiment of the present application, the difference between this embodiment and the first embodiment is that a waterproof and dustproof shell is provided for the gateway device when used in the outside world.
[0033] Compared with embodiment 1, further, the inside of the protective shell 101 is provided with a mounting groove 101a, the side of the protective shell 101 is provided with a sealing door 101b, the inner wall of the protective shell 101 below the information processing module 102 is provided with a fixed groove 101c, the two sides of the fixed groove 101c are provided with movable grooves 101d, one end of the movable grooves 101d is in communication with the outside, the outermost end of the fixed groove 101c is provided with a socket 101f, and the socket 101f is in communication with the outside. The mounting groove 101a is used to accommodate the information processing module 102 and the anti-falling unit 200 and other devices. The sealing door 101b is rotatably connected to the side of the protective shell 101. When the sealing door 101b is attached to the protective shell 101, the mounting groove 101a can be sealed to form a dustproof and waterproof sealed space, thereby protecting the precision devices such as the information processing module 102. By rotating in the opposite direction, the mounting groove 101a can be opened to expose the inside of the mounting groove 101a, thereby facilitating maintenance, installation and other work.
[0034] The first fixing component 201 is fixedly arranged in the fixing groove 101c, the spring 205 is located between the fixing groove 101c and the top end of the bearing component 203, the second fixing component 204 is located in the movable groove 101d, the movable groove 101d is the movable range of the second fixing component 204, the two sides of the first fixing component 201 are fixedly connected with the fixing groove 101c, but the bottom end of the first fixing component 201 does not abut against the top end of the fixing groove 101c, and a gap is left between the two, the spring 205 is installed in the gap, the socket 101f is arranged at the end of the fixing groove 101c, and the two are in communication with each other, the gateway connector is inserted into the socket 101f, according to the use requirement, the movable groove 101d can be a side wall contact interface, the depth of the movable groove 101d is longer than the length of the gateway connector, and the movable groove 101d provides the movement space of the second fixing component 204 during rotation and limits the movement range of the second fixing component 204 through the size thereof.
[0035] The rest of the structure is the same as that of example 1.
[0036] Example 3
[0037] Reference Figures 2-5 For the third embodiment of the application, the difference between this embodiment and the second embodiment is that a protective measure is provided to prevent the connector from falling accidentally during insertion, thereby ensuring the connectivity between the gateway device and the line.
[0038] Compared with example 2, further, the first fixing component 201 includes four groups of annularly distributed fixing guards 201a, a sliding groove 201b between every two groups of fixing guards 201a, a first guide block 201c arranged at one side of the top end of the fixing guard 201a, a second guide block 201d arranged at the other side of the top end of the fixing guard 201a, and a clamping groove 201e between the first guide block 201c and the second guide block 201d, the outer wall of the fixing guard 201a is fixedly connected in the fixing groove 101c, so that the first fixing component 201 is fixedly and positionally connected in the protective shell 101, and the sliding groove 201b provides a track for the sliding of the guide block 203d and the limiting block 202a-3.
[0039] During use, the top end of the first guide block 201c is inclined to the sliding groove 201b, and all parts passing through the top end of the first guide block 201c are guided into the sliding groove 201b, and the top end of the second guide block 201d is inclined to the clamping groove 201e, so that the parts passing through the top end of the second guide block 201d are guided into the clamping groove 201e and finally clamped and limited by the clamping groove 201e.
[0040] The pushing component 202 comprises a pushing assembly 202a slidingly connected between the four sets of fixed guards 201a, a push rod 202b provided at one end of the pushing assembly 202a and extending through the lower end of the first fixed component 201 to the outside, and a top plate 202c provided at the end of the push rod 202b and located in the socket 101f. The pushing assembly 202a is fixedly connected with the push rod 202b, the top plate 202c is fixedly connected at the end of the push rod 202b, and the top plate 202c can slide in the socket 101f. Through the fixed connection among the three, it can be known that the three cannot move alone.
[0041] The pushing assembly 202a comprises a sleeve 202a-1 located between the four sets of fixed guards 201a, a plurality of limiting teeth 202a-2 provided on the top end of the sleeve 202a-1, and four sets of limiting blocks 202a-3 provided on the outside of the sleeve 202a-1 and slidingly connected in the four sets of sliding grooves 201b correspondingly. The limiting blocks 202a-3 are fixedly arranged on the outside of the sleeve 202a-1, so that the pushing assembly 202a slides in the sliding grooves 201b through the limiting blocks 202a-3 and does not rotate at the same time.
[0042] The receiving component 203 comprises a receiving block 203a located at the top end of the pushing assembly 202a, a limiting shaft 203b provided at one side of the receiving block 203a and extending into the pushing assembly 202a in a rotating manner, four sets of guide blocks 203d provided on the outside of the receiving block 203a and slidingly connected in the four sets of sliding grooves 201b correspondingly, and two fixed shafts 203e symmetrically provided on the top end of the receiving block 203a. The top end of the guide block 203d is in an inclined structure, and the inclination direction is opposite to that of the first guide block 201c and the second guide block 201d. Therefore, the end of the guide block 203d can slide in contact with the top end of the first guide block 201c and the second guide block 201d.
[0043] During use, the guide block 203d is in sliding connection in the sliding groove 201b, and the receiving component 203 is limited as a whole, so that it can only slide within the range of the sliding groove 201b and cannot rotate. When the guide block 203d is in sliding connection in the first fixed component 201, the end of the guide block 203d is inserted into the side of one-half of the limiting tooth 202a-2 and cannot be completely clamped into the limiting tooth 202a-2. However, when the guide block 203d slides out of the sliding groove 201b, the end of the guide block 203d is completely clamped into the limiting tooth 202a-2, and the receiving component 203 as a whole is slightly converted in angle. When the receiving component 203 converted in angle moves towards the first fixed component 201, the end of the guide block 203d is attached to the top inclined side of the first guide block 201c or the second guide block 201d, and the guide block 203d and the first guide block 201c and the second guide block 201d are in alternating contact.
[0044] Each of the plurality of groups of second fixed components 204 is arranged on the two sides of the receiving block 203a in pairs, and each two groups of second fixed components 204 are vertically symmetrical about the fixed shaft 203e. Each of the two groups of second fixed components 204 is horizontally offset from each other, and a rotating shaft 204c is arranged horizontally between the two groups of second fixed components 204 vertically symmetrical in the horizontal direction. The second fixed components 204 as a whole rotate in the opposite direction in the movable groove 101d about the rotating shaft 204c.
[0045] The second fixed component 204 includes a fixed assembly 204a in the movable groove 101d, and a sliding assembly 204b fixedly connected to the top end of the fixed assembly 204a. The sliding assembly 204b is fixedly connected to the top end of the fixed assembly 204a in an inclined manner. The four groups of second fixed components 204 can form a mechanical claw that converges inward, and the four corners of the interface can be hooked and tightly held by the four groups of second fixed components 204 to prevent the interface from falling off.
[0046] The fixed assembly 204a includes a fixed rod 204a-1 in the movable groove 101d and a fixed hook 204a-2 arranged at the end of the fixed rod 204a-1. The sliding assembly 204b includes a sliding rod 204b-1 fixedly connected to the top end of the fixed rod 204a-1 and a sliding groove 204b-2 opened in the sliding rod 204b-1, and the fixed shaft 203e is slidingly connected in the sliding groove 204b-2. The fixed hook 204a-2 is bent inward to hook the outer four corners of the gateway connector, and the sliding groove 204b-2 provides a space for the movement of the fixed shaft 203e.
[0047] In use, the gateway plug is inserted into the socket 101f, and in the process of insertion, the gateway plug pushes the top plate 202c to retract inward, and the retracted top plate 202c pushes the pushing component 202 as a whole to move backward along the sliding groove 201b, and the moving pushing component 202 pushes the receiving component 203 to compress the spring 205 backward, and in the process, the moving receiving component 203 pushes the two second fixing components 204 on both sides to gather inward around the pivot 204c, and when the gateway plug moves to the innermost side of the socket 101f against the top plate 202c, the pushing assembly 202a pushes the receiving component 203 to the top end of the fixed guard plate 201a, and the guide block 203d is disengaged from the sliding groove 201b, at which time the pushing of the gateway plug is stopped, and the spring 205 rebounds to push the receiving component 203 to move in the opposite direction, and the moving receiving component 203 is guided by the guide block 203d and the second guide block 201d to move downward by a small distance and slide into the clamping groove 201e to be limited, and in the process, the two fixing assemblies 204a on both sides driven by the receiving component 203 are completely gathered at the opening of the socket 101f, and the limiting teeth 202a-2 at the end are located outside the opening of the socket 101f, and are clamped on the outside of the gateway plug, and when the gateway plug is pulled by external force, the clamped second fixing components 204 are limited and fixed in the socket 101f by the fixed hooks 204a-2, thereby preventing the gateway plug from falling off due to external violent pulling;
[0048] Conversely, when the gateway plug needs to be pulled out, the gateway plug needs to be continuously pressed downward, and the gateway plug pushes the top plate 202c to perform the above operation, except that when the receiving component 203 moves to the top end of the first fixing component 201, the guide block 203d is disengaged from the limiting of the clamping groove 201e, and then continues to slide into the sliding groove 201b guided by the first guide block 201c, and the receiving component 203 is continuously extended outward by the elastic support of the spring 205, and the outwardly extended pushing component 202 pushes the top plate 202c to push the gateway plug out of the socket 101f, and finally the top plate 202c is sealed at the opening of the socket 101f to play a sealing, dustproof and waterproof role, and in the process of movement of the receiving component 203, due to the outward extension of the receiving component 203, the fixed shaft 203e pushes the sliding assembly 204b to drive the fixing assembly 204a to expand outward around the pivot 204c in the movable groove 101d, thereby retracting the second fixing component 204 gathered at the opening of the socket 101f as a whole, avoiding hindering the pulling out of the gateway plug. As explained above, the gateway plug needs to be pulled out, and specific operations are needed to open it, thereby avoiding the possibility of opening due to accidental factors, further ensuring the safety in use.
[0049] The remaining structure is the same as that of Example 2.
[0050] It is important to note that the construction and arrangement of the application shown in the various exemplary embodiments is illustrative only. Although only a few embodiments have been described in detail in this disclosure, those skilled in the art who review this disclosure will readily appreciate that many modifications are possible (e.g., variations in sizes, dimensions, structures, shapes and proportions of the various elements, values of parameters, mounting arrangements, use of materials, colors, orientations, etc.) without materially departing from the novel teachings and advantages of the subject matter described in the application. For example, elements shown as integrally formed can be constructed of multiple parts or elements, the position of elements can be reversed or otherwise varied, and the nature or number of elements or positions can be altered or varied. Accordingly, all such variations are intended to be included within the scope of the present application. The order or sequence of any process or method steps can be varied or re-sequenced without materially affecting the application. Any "means plus function" clauses are intended to cover the structures described herein as performing the recited functionality and not only structural equivalents but also equivalent structures. Other substitutions, modifications, changes, and omissions can be made in the design, operating
[0051] Also, to provide a concise description of the exemplary embodiments, not all features of an actual implementation can be described (i.e., those related to the
[0052] It should be noted that the above-mentioned embodiments are merely used to illustrate the technical solutions of the present application, but not limit the present application, and although the present application is described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or equivalent replaced without departing from the spirit and scope of the present application, and all should be included in the scope of the claims of the present application.
Claims
1. A smart edge computing gateway device, characterized in that: include, The protective unit (100) includes a protective shell (101), an information processing module (102) disposed inside the upper part of the protective shell (101), a junction box (103) disposed inside the lower part of the protective shell (101), multiple sets of waterproof plugs (104) disposed at the bottom of the protective shell (101), and an antenna (105) disposed at the top of the protective shell (101); and, The anti-fall-off unit (200) includes a first fixing component (201) disposed inside the protective shell (101), a pushing component (202) disposed inside the first fixing component (201) with one end of the pushing component (202) extending through to the outside of the first fixing component (201), a receiving component (203) disposed at the top of the pushing component (202), a plurality of second fixing components (204) disposed on both sides of the receiving component (203), and a spring (205) disposed at the top of the receiving component (203).
2. The intelligent edge computing gateway device according to claim 1, characterized in that: The protective shell (101) has an installation groove (101a) inside, a sealing door (101b) on the side of the protective shell (101), a fixing groove (101c) on the inner wall of the protective shell (101) below the information processing module (102), movable grooves (101d) on both sides of the fixing groove (101c) and one end of the movable groove (101d) is connected to the outside, and an insertion port (101f) is provided at the outermost end of the fixing groove (101c) and the insertion port (101f) is connected to the outside.
3. The intelligent edge computing gateway device according to claim 2, characterized in that: The first fixing component (201) is fixedly disposed in the fixing groove (101c), the spring (205) is located between the fixing groove (101c) and the top end of the receiving component (203), and the second fixing component (204) is located in the movable groove (101d), the movable groove (101d) being the range of motion of the second fixing component (204).
4. The intelligent edge computing gateway device according to claim 3, characterized in that: The first fixing component (201) includes four sets of annularly distributed fixing guard plates (201a), a groove (201b) located between every two sets of fixing guard plates (201a), a first guide block (201c) disposed on one side of the top of the fixing guard plate (201a), a second guide block (201d) disposed on the other side of the top of the fixing guard plate (201a), and a slot (201e) located between the first guide block (201c) and the second guide block (201d).
5. The intelligent edge computing gateway device according to claim 4, characterized in that: The pushing component (202) includes a pushing assembly (202a) slidably connected between the four sets of fixed guard plates (201a), a push rod (202b) disposed at one end of the pushing assembly (202a) and extending through to the lower outer side of the first fixed component (201), and a top plate (202c) disposed at the end of the push rod (202b) and located inside the socket (101f).
6. The intelligent edge computing gateway device according to claim 5, characterized in that: The pushing component (202a) includes a sleeve (202a-1) located between four sets of fixed guard plates (201a), multiple sets of limiting teeth (202a-2) opened on the outer edge of the top of the sleeve (202a-1), and four sets of limiting blocks (202a-3) disposed on the outside of the sleeve (202a-1), and the four sets of limiting blocks (202a-3) are correspondingly slidably connected in the four sets of sliding grooves (201b).
7. The intelligent edge computing gateway device according to claim 6, characterized in that: The receiving component (203) includes a receiving block (203a) located at the top of the pushing component (202a), a limiting shaft (203b) disposed on one side of the receiving block (203a) and extending into the pushing component (202a) in a rotatably connected manner, four sets of guide blocks (203d) disposed on the outside of the receiving block (203a) and the four sets of guide blocks (203d) being slidably connected in the four sets of the sliding grooves (201b), and fixed shafts (203e) symmetrically disposed on both sides of the top of the receiving block (203a).
8. The intelligent edge computing gateway device according to claim 7, characterized in that: Multiple sets of the second fixing components (204) are arranged in pairs on both sides of the receiving block (203a), and each pair of the second fixing components (204) is symmetrical in the vertical direction with the fixing axis (203e) as the axis. Each pair of the second fixing components (204) is staggered in the horizontal direction, and a rotating shaft (204c) is arranged in the horizontal direction between each pair of the second fixing components (204) symmetrically distributed in the horizontal direction.
9. The intelligent edge computing gateway device according to claim 8, characterized in that: The second fixing component (204) includes a fixing component (204a) located in the movable groove (101d) and a sliding component (204b) fixedly connected to the top of the fixing component (204a), wherein the sliding component (204b) is fixedly connected to the top of the fixing component (204a) in an inclined manner.
10. The intelligent edge computing gateway device according to claim 9, characterized in that: The fixing component (204a) includes a fixing rod (204a-1) located in the movable groove (101d) and a fixing hook (204a-2) disposed at the end of the fixing rod (204a-1). The sliding component (204b) includes a sliding rod (204b-1) fixedly connected to the top of the fixing rod (204a-1) and a sliding groove (204b-2) opened in the sliding rod (204b-1), and the fixing shaft (203e) is slidably connected in the sliding groove (204b-2).