5G mobile router for fault diagnosis and self-inspection
The design of Z-shaped supports and anti-tilting feet solves the problems of difficult maintenance and easy tipping of 5G mobile routers with enclosed shells, enabling convenient maintenance and stable installation, and improving the stability of the equipment and user experience.
Patent Information
- Application Number
- CN202520090428.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-15
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-01-15
AI Technical Summary
The enclosed casing design of existing 5G mobile routers makes repairs difficult when hardware failures occur, and their high center of gravity makes them prone to tipping over. The lack of effective fixing components affects repair efficiency and user experience.
The design incorporates Z-shaped supports and anti-tilt feet, along with screw-on gaskets, to enable easy opening and secure installation of the outer shell, lower the center of gravity, and enhance physical stability.
It improves maintenance efficiency, enhances equipment stability and user experience, extends equipment lifespan, and reduces maintenance difficulty and the risk of metal rust.
Smart Images

Figure CN223809797U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a router technical field especially relates to a 5G mobile router of fault diagnosis self -checking. BACKGROUND
[0002] The 5G mobile router with fault diagnosis self -checking function is a kind of equipment integrated advanced communication technology and intelligent detection system, it not only can provide high speed, low delay data transmission service, also has self -monitoring and fault diagnosis capability. This router can monitor network state, equipment performance and connection stability in real time through built -in intelligent management system, once finding abnormality or potential problem, can automatically diagnose and take corresponding repair measures.
[0003] In prior art, although the 5G mobile router with fault diagnosis self -checking function can detect and repair most network problems by itself, when encountering hardware failure, still need professional technical personnel to manually intervene and repair, however, the most 5G mobile routers on the market currently adopt closed shell design, this design protects internal elements from the influence of external environment simultaneously, also brings not small challenge to on -the -spot repair work, closed shell means that once equipment appears hardware failure, technical personnel often need to use special tool to open shell, this not only increases the difficulty of repair, also prolongs the time of fault recovery, in addition, because internal space is compact, the space left for technical personnel operation is very limited, this undoubtedly increases the difficulty of repair work, reduces work efficiency, in emergency, this design will become the bottleneck of fast recovery service, influence user experience and service quality. UTILITY MODEL CONTENTS
[0004] The utility model aims at solving the shortcomings in prior art, and proposes a 5G mobile router of fault diagnosis self -checking.
[0005] In order to realize the above -mentioned purpose, the utility model adopts the following technical scheme: a 5G mobile router of fault diagnosis self -checking, including the shell of route, the both sides of the inner wall in shell of route are all fixed with groove piece, the surface of groove piece is equipped with Y type channel, one side of groove piece is rotatably connected with driving link, one end of driving link is fixed with rotating piece on one side, one end of driving link is fixed with rotary link on the other side, the other end of driving link is rotatably connected with driven link, one end of driven link is rotatably connected with Z type support piece, one side of Z type support piece is fixed with lane change slide post, one side of Z type support piece is fixed with vertical slide post, the periphery of lane change slide post and vertical slide post are all slidably connected with the inner wall of Y type channel, the top of Z type support piece is fixed with shell cover.
[0006] Preferably, the routing shell is fixed with anti-inclination feet on both sides, the anti-inclination feet are provided with a cutting groove on one side of the inclined surface, the cutting groove is provided with a fixing hole on the surface, and the cutting groove is glued and fixed with a screw protection pad, in the prior art, due to the high design of the antenna of the 5G mobile router, the stability and coverage range of signal transmission are ensured, but this design brings a significant problem: it makes the gravity center of the router correspondingly higher, so that the device is more prone to tipping over, and this stability problem is particularly prominent in daily use, especially when the router is placed on a smooth or uneven surface, even a slight collision or accidental touch causes the router to fall down, which not only affects the normal work of the device, but also causes physical damage, in addition, many 5G mobile routers do not fully consider the demand for fixed installation in design, lack of suitable fixing components or interfaces, which makes it difficult for users to stably install the router on the wall, desktop or other specific positions, lack of effective fixing means not only increases the risk of displacement or falling of the router due to external force, but also limits the user's ability to flexibly deploy the router according to the actual environment, especially when the router needs to be placed at a high place or at a specific angle to optimize signal coverage, this problem is particularly obvious, in view of such problems, the utility model adopts the way of installing anti-inclination feet to solve the problem, through the anti-inclination feet structure designed with care, the stability of the 5G mobile router is significantly improved, and the problem of easy tipping caused by high gravity center is effectively avoided, these anti-inclination feet not only serve as support points, but also lower the overall gravity center of the device, enhance the physical stability, and ingeniously integrate practical functions to provide convenience for installation, specifically, each anti-inclination foot is provided with a pre-set fixing hole, allowing workers to easily screw in screws through the hole to firmly install the router on various surfaces, whether it is a desktop, a wall or other customized installation location, the router can be ensured to be stable and not to move, meeting the deployment requirements in different environments, in order to further optimize the design, the innovative element of screw protection pad is particularly introduced, the screw protection pad is carefully placed between the screw and the anti-inclination foot, as a kind of buffer medium, it effectively prevents the direct contact between the screw cap of the metal screw and the surface of the anti-inclination foot, this isolation design has multiple benefits: first, it greatly reduces the chemical reaction caused by direct contact between metals, thereby avoiding the rust problem caused by changes in environmental humidity, once the screw and the anti-inclination foot are rusted, disassembly and maintenance will be extremely difficult, and even the threads will be damaged, affecting the stability of reinstallation, secondly, the use of screw protection pad also protects the surface of the anti-inclination foot from wear caused by long-term compression and friction of the screw cap, prolongs the novelty and service life of the device appearance, and achieves the effect of improving the service life of the device.
[0007] Preferably, the top end of the Z-shaped support is fixed with a support ladder piece, and the top of the support ladder piece is fixed with the bottom of the shell cover.
[0008] Preferably, the one side of one end of the driven connecting rod is fixed with a synchronous connecting rod, so as to keep the synchronization of the two driven connecting rods and improve the stability of the equipment.
[0009] Preferably, the inner wall of the Y-shaped channel is fixed with a rail end arc pad, so as to prevent scratching and collision between components and improve the service life of the equipment.
[0010] Preferably, the bottom of the anti-tilt foot is fixed with a bottom pad, so as to increase the friction with the table top and improve the stability of the equipment.
[0011] Preferably, the bottom of the anti-tilt foot is provided with a hand holding groove, so as to facilitate the holding and carrying of the staff and improve the user experience.
[0012] Beneficial effects:
[0013] 1、In the prior art, although the 5G mobile router with fault diagnosis self-checking function can detect and repair most network problems by itself, when a hardware failure occurs, professional technical personnel still need to manually intervene and repair, however, most 5G mobile routers on the market adopt a closed shell design, which not only protects the internal elements from the external environment, but also brings great challenges to on-site maintenance work, the closed shell means that once the equipment has a hardware failure, the technician often needs to use special tools to open the shell, which not only increases the difficulty of maintenance, but also prolongs the fault recovery time, in addition, due to the compact internal space, the space left for the technician to operate is very limited, which undoubtedly increases the difficulty of maintenance work and reduces work efficiency, in an emergency, such a design will become a bottleneck for rapid service recovery, affecting user experience and service quality, in view of such problems, the utility model adopts the installation of Z-shaped support piece to solve the problem, when the staff needs to maintain the hardware inside the router shell, rotate the rotating part to make the driving link rotate, the rotating link keeps the number of turns and the rotating speed of the two rotating parts the same, the driving link rotates to drive the driven link to make the Z-shaped support piece move vertically upward first, push the shell cover away from the router shell, when the variable lane sliding column reaches the bifurcation of the Y-shaped groove, due to the rotation of the driven link, the variable lane sliding column changes the trajectory and enters the bifurcation of the Y-shaped groove, so that the Z-shaped support piece rotates and the shell cover rotates away from the top of the router shell, thereby greatly reducing the shielding area, giving the staff more operating space, achieving the effect of improving user experience and increasing work efficiency.
[0014] 2、In the prior art, due to the fact that the antenna design of the 5G mobile router is usually high to ensure the stability and coverage range of signal transmission, this design brings a significant problem: it makes the center of gravity of the router correspondingly higher, thereby causing the device to be more prone to tipping over, and this stability hazard is particularly prominent in daily use, especially when the router is placed on a smooth or uneven surface, even a slight collision or accidental touch causes the router to fall down, not only affecting the normal work of the device, but also causing physical damage, in addition, many 5G mobile routers do not fully consider the need for fixed installation in design, lack of appropriate fixing components or interfaces, which makes it difficult for users to stably install the router on the wall, desktop or other specific location, lack of effective fixing means not only increases the risk of router displacement or falling due to external force, but also limits the user's ability to flexibly deploy the router according to the actual environment, especially when the router needs to be placed high or at a specific angle to optimize signal coverage, this problem is particularly evident, to solve such problems, the utility model adopts the way of installing anti-tip feet, through the anti-tip foot structure designed with care, the stability of the 5G mobile router is significantly improved, effectively avoiding the problem of easy tipping caused by high center of gravity, these anti-tip feet not only serve as support points, but also lower the overall center of gravity of the device, enhancing physical stability, and also ingeniously integrating practical functions to provide convenience for installation, specifically, each anti-tip foot is equipped with a pre-set fixing hole, allowing workers to easily screw in screws through these hole positions to firmly install the router on various surfaces, whether it is a desktop, wall or other customized installation location, it can ensure that the router is stable and does not move, meeting the deployment needs in different environments, in order to further optimize this design, the innovative element of screw protection pad is particularly introduced, the screw protection pad is carefully placed between the screw and the anti-tip foot, as a kind of buffer medium, it effectively prevents the direct contact between the screw cap of the metal screw and the surface of the anti-tip foot, this isolation design has multiple benefits: first, it greatly reduces the chemical reaction caused by direct contact between metals, thereby avoiding the problem of rust caused by changes in environmental humidity, once the screw and the anti-tip foot rust, disassembly and maintenance will become extremely difficult, and even damage the threads, affecting the stability of reinstallation, secondly, the use of screw protection pad also protects the surface of the anti-tip foot from wear caused by long-term compression and friction of the screw cap, prolonging the novelty and service life of the device appearance, achieving the effect of improving the service life of the device.
[0015] 3、In the prior art, the design length of the shell cover is relatively long, and the Z-shaped supporting piece is fixed on the short side of the shell cover, which causes a significant problem in actual operation, when the staff needs to rotate the rotating piece to adjust or maintain the interior of the router, because the distance from the position of the rotating piece to the operation point of the staff is increased, that is, the force arm is longer, according to the lever principle in physics, in order to overcome the larger resistance moment, the staff must exert more force to complete the rotating action, which not only increases the difficulty of operation, but also makes the whole adjustment process laborious and inefficient, long-term repetition of such operation not only easily leads to fatigue of the staff, but also causes unnecessary strain on the hands due to excessive force, and even the rotating piece is damaged or cannot be accurately positioned due to improper force, which affects the normal operation of the equipment and the smooth progress of the subsequent maintenance work, in addition, the poor user experience reduces the overall satisfaction of the user to the product, and then affects the reputation and market competitiveness of the product, in view of such problems, the utility model solves the problem by installing the supporting ladder piece, which reduces the distance of the exerted force, so as to facilitate the staff to rotate the rotating piece, and achieves the effect of improving the user experience. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a three-dimensional structure schematic diagram of the utility model;
[0017] Figure 2 It is a three-dimensional structure schematic diagram of the utility model anti-inclination foot;
[0018] Figure 3 It is a sectional view of the utility model groove piece;
[0019] Figure 4 It is a three-dimensional structure schematic diagram of the utility model Z-shaped supporting piece.
[0020] Legend:
[0021] 1, routing shell; 2, groove piece; 201, driving link; 202, rotating piece; 203, rotating link; 204, Y-shaped channel; 205, variable channel slide column; 206, Z-shaped supporting piece; 207, vertical slide column; 208, shell cover; 209, driven link; 3, anti-inclination foot; 301, screw protection pad; 4, supporting ladder piece; 5, synchronous link; 6, rail end arc pad; 7, bottom pad; 8, hand holding groove. DETAILED DESCRIPTION
[0022] In order to make the technical means, creative features, purposes and effects realized by the utility model easy to understand, the utility model is further described below in combination with specific embodiments and drawings, but the following embodiments are only preferred embodiments of the utility model, not all. Based on the embodiments in the embodiments, other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.
[0023] Specific embodiments of the present application are described infra with reference to the drawings. Specific embodiments
[0025] With reference to Figures 1-4The utility model provides a kind of 5G mobile router of fault diagnosis self-checking, including routing shell 1, both sides of inner wall of routing shell 1 are fixed with groove piece 2, Y-shaped channel 204 is set on the surface of groove piece 2, one side of groove piece 2 is rotatably connected with driving link 201, one side of the one end of driving link 201 is fixed with screw piece 202, the other side of the one end of driving link 201 is fixed with screw link 203, the other end of driving link 201 is rotatably connected with driven link 209, the one end of driven link 209 is rotatably connected with Z-shaped support piece 206, one side of Z-shaped support piece 206 is fixed with lane-changing slide column 205, one side of Z-shaped support piece 206 is fixed with vertical slide column 207, the peripheral surface of lane-changing slide column 205 and the peripheral surface of vertical slide column 207 are slidably connected with the inner wall of Y-shaped channel 204, and shell cover 208 is fixed on the top of Z-shaped support piece 206.The anti-tilt foot 3 is fixed on both sides of the router shell 1, and the anti-tilt foot 3 is provided with a cutting groove on one side of the inclined surface, and the cutting groove is provided with a fixing hole on the surface, and the cutting groove is fixed with a screw pad 301 by adhesive. Because the antenna design of the 5G mobile router is usually high to ensure the stability and coverage range of signal transmission, this design has brought a significant problem: it makes the center of gravity of the router correspondingly higher, so that the device is more prone to tipping over. This stability problem is particularly prominent in daily use, especially when the router is placed on a smooth or uneven surface, even a slight collision or accidental touch causes the router to fall down, not only affecting the normal work of the device, but also causing physical damage. In addition, many 5G mobile routers do not fully consider the need for fixed installation when designing, lack of appropriate fixing components or interfaces, which makes it difficult for users to securely install the router on the wall, desktop or other specific locations. The lack of effective fixing means not only increases the risk of router displacement or falling due to external forces, but also limits the user's ability to flexibly deploy the router according to the actual environment, especially when the router needs to be placed in a high place or at a specific angle to optimize signal coverage. This problem is particularly evident. The installation of the anti-tilt foot 3 solves the problem, and the stability of the 5G mobile router is significantly improved through the carefully designed anti-tilt foot 3 structure, effectively avoiding the problem of easy tipping caused by high center of gravity. These anti-tilt feet 3 not only serve as support points, but also lower the overall center of gravity of the device, enhancing physical stability, and also cleverly incorporate practical functions to facilitate installation. Specifically, each anti-tilt foot 3 is equipped with pre-set fixing holes, allowing workers to easily screw in screws through these hole positions to securely install the router on various surfaces, whether it's a desktop, wall or other custom installation location, ensuring that the router is stable and immovable, meeting deployment needs in different environments. In order to further optimize this design, the innovative element of screw pad 301 is introduced, which is carefully placed between the screw and the anti-tilt foot 3, serving as a buffer medium. It effectively prevents the direct contact between the screw cap and the surface of the anti-tilt foot 3. This isolation design has multiple benefits: first, it greatly reduces the chemical reaction caused by direct contact between metals, thereby avoiding rusting caused by changes in environmental humidity. Once the screw and the anti-tilt foot 3 rust, disassembly and maintenance will be extremely difficult, and even damage the threads, affecting the stability of reinstallation. Second, the use of screw pad 301 also protects the surface of the anti-tilt foot 3 from wear and tear caused by long-term compression and friction of the screw cap, prolonging the novelty and service life of the device's appearance, and achieving the effect of improving the service life of the device.
[0026] The top end of the Z-shaped supporting piece 206 is fixed with a supporting ladder piece 4, and the top of the supporting ladder piece 4 is fixed with the bottom of the shell cover 208. Since the design length of the shell cover 208 is relatively long, and the Z-shaped supporting piece 206 is fixed on the short side of the shell cover 208, this layout causes a significant problem in actual operation. When the staff needs to rotate the rotating piece 202 to adjust or maintain the internal hardware of the router, since the distance between the position of the rotating piece 202 and the operation point of the staff is increased, that is, the force arm is longer, according to the lever principle in physics, in order to overcome the larger resistance moment, the staff must exert more force to complete the rotating action, which not only increases the operation difficulty, but also makes the entire adjustment process laborious and low in efficiency. Long-term repetition of such operations not only easily leads to staff fatigue, but also causes unnecessary strain on the hands due to excessive force, and even causes damage to the rotating piece 202 or failure to accurately position the rotating piece 202, affecting the normal operation of the equipment and the smooth progress of the subsequent maintenance work. In addition, poor user experience reduces the overall satisfaction of users to the product, thereby affecting the reputation and market competitiveness of the product. The installation of the supporting ladder piece 4 solves the problem, realizes the reduction of the distance of the exerted force through the supporting ladder piece 4, thereby facilitating the staff to rotate the rotating piece 202, and achieves the effect of improving the user experience. The one side of one end of the driven connecting rod 209 is fixed with a synchronous connecting rod 5, which realizes the synchronization of the two sides of the driven connecting rod 209, and achieves the effect of improving the stability of the equipment. The inner wall end of the Y-shaped channel 204 is fixed with a rail end arc pad 6, which realizes the prevention of scratching and collision between components, and achieves the effect of improving the service life of the equipment. The bottom of the anti-tilt foot 3 is fixed with a bottom pad 7, which realizes the increase of the friction with the table top, and achieves the effect of improving the stability of the equipment. The bottom of the anti-tilt foot 3 is provided with a hand holding groove 8, which realizes the convenience of holding and carrying for the staff, and achieves the effect of improving the user experience.
[0027] The working principle of the utility model is: when the staff needs to overhaul the internal hardware of the router shell 1, the rotating piece 202 is rotated to rotate the driving connecting rod 201, the rotating connecting rod 203 keeps the number of turns and the rotating speed of the two sides of the rotating piece 202 same, the driving connecting rod 201 is rotated to drive the driven connecting rod 209 to make the Z-shaped supporting piece 206 move vertically upward first under the restriction of the vertical sliding column 207, the track changing sliding column 205 and the Y-shaped channel 204 of the groove piece 2, and push the shell cover 208 to move away from the router shell 1, when the track changing sliding column 205 reaches the bifurcation of the Y-shaped channel 204, since the rotation of the driven connecting rod 209 makes the track changing sliding column 205 change the track to enter the bifurcation of the Y-shaped channel 204, so that the Z-shaped supporting piece 206 is rotated and the shell cover 208 is rotated to move away from the upper side of the router shell 1, thereby greatly reducing the shielding area and giving the staff a larger operation space.
[0028] In the utility model, unless another definite provision and limitation, first feature is "on" or "under" second feature can include that first and second features are in direct contact, also can include that first and second features are not in direct contact but contact through other feature between them. Moreover, first feature "on", "above" and "on" second feature include that first feature is directly above and obliquely above second feature, or only indicate that first feature horizontal height is higher than second feature. First feature "under", "below" and "under" second feature include that first feature is directly below and obliquely below second feature, or only indicate that first feature horizontal height is less than second feature.
[0029] The basic principle, main features and advantages of the utility model are shown and described above. The skilled in the art should understand that the utility model is not limited by the above examples, the above examples and the description in the specification are only preferred examples of the utility model, and are not used to limit the utility model, various changes and improvements of the utility model are possible without departing from the spirit and scope of the utility model, and all fall within the scope of the claimed utility model. The scope of protection of the utility model is defined by the appended claims and their equivalents.
Claims
1. A fault diagnostic self-checking 5G mobile router comprising a routing housing (1), characterized in that: The both sides of the inner wall of the routing shell (1) are fixed with groove pieces (2), the surface of the groove piece (2) is provided with Y-shaped grooves (204), one side of the groove piece (2) is rotatably connected with a driving link (201), one end of the driving link (201) is fixed with a rotating piece (202) on one side, the other end of the driving link (201) is fixed with a rotating link (203), the other end of the driving link (201) is rotatably connected with a driven link (209), one end of the driven link (209) is rotatably connected with a Z-shaped supporting piece (206), one side of the Z-shaped supporting piece (206) is fixed with a lane-changing slide column (205), one side of the Z-shaped supporting piece (206) is fixed with a vertical slide column (207), the circumferential surface of the lane-changing slide column (205) and the circumferential surface of the vertical slide column (207) are slidably connected with the inner wall of the Y-shaped groove (204), and the top of the Z-shaped supporting piece (206) is fixed with a shell cover (208).
2. The fault diagnostic self-checking 5G mobile router of claim 1, wherein: The both sides of the routing shell (1) are fixed with anti-inclination feet (3), the inclined surface of the anti-inclination foot (3) is provided with a cutting groove, the surface of the cutting groove is provided with a fixing hole, and the surface of the cutting groove is adhesively fixed with a screw protection pad (301).
3. The fault diagnostic self-checking 5G mobile router of claim 1, wherein: The top end of the Z-shaped supporting piece (206) is fixed with a supporting ladder piece (4), and the top of the supporting ladder piece (4) is fixed with the bottom of the shell cover (208).
4. The fault diagnostic self-checking 5G mobile router of claim 1, wherein: One end of the driven link (209) is fixed with a synchronous link (5) on one side.
5. The fault diagnostic self-checking 5G mobile router of claim 1, wherein: The inner wall ends of the Y-shaped groove (204) are fixed with rail end arc pads (6).
6. The fault diagnostic self-checking 5G mobile router of claim 2, wherein: The bottom of the anti-inclination foot (3) is fixed with a bottom pad (7).
7. The fault diagnostic self-checking 5G mobile router of claim 2, wherein: The bottom of the anti-inclination foot (3) is provided with a hand holding groove (8).