Wall-mounted rotating structure of gateway equipment
By employing gear transmission, magnetic multi-sided engagement, and multi-position limit design, combined with damping locking and bolt tightening structure, the problem of adjusting the position and angle of the gateway device wall mount is solved, achieving multi-dimensional adjustment and stable locking, and improving the convenience and adaptability of installation.
Patent Information
- Application Number
- CN202522753109.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-25
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-12-25
AI Technical Summary
Existing gateway devices have poor functional coordination, making it difficult to adjust the position and angle simultaneously. They also suffer from insufficient adjustment precision, poor stability, and a narrow range of compatibility, failing to meet the installation needs of devices of different sizes.
The device employs a collaborative design that combines gear transmission, magnetic multi-sided engagement, and multi-position limiters, along with damping locking and bolt tightening structures, to achieve multi-dimensional adjustment and stable locking of the gateway device.
It enables precise angle and position adjustment of gateway devices, improves installation stability and adaptability, simplifies operation procedures, and enhances the practical value of the devices.
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Figure CN223924475U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to be applicable to gateway equipment installation technical field more specifically, relate to a wall -hanging type rotation structure of gateway equipment. BACKGROUND
[0002] As the core component connecting network in family, office scene, the installation mode of gateway equipment directly influences the space utilization rate and signal coverage effect of use. In order to avoid occupying desktop space, wall -hanging type installation has become the mainstream choice, and simultaneously to adapt to the signal transmission demand of different environment, after installation, the angle and position of equipment can be flexibly adjusted to ensure stable network signal output.
[0003] At present, the gateway equipment wall -hanging device on market is more, and part device can only realize fixed position installation, and angle cannot be adjusted. Part device has rotation or sliding function, but is single function design, and it is difficult to meet the dual needs of position adjustment and angle adjustment.
[0004] In actual use process, the existing device has certain problems: on the one hand, the function synergy is poor, if the equipment position and angle need to be adjusted simultaneously, need to be completed through multi -step operation, and the process is tedious and the adjustment precision is insufficient, and it is difficult to quickly adapt to the best use state. On the other hand, the equipment fixing stability is poor, and after adjustment, it is easy to produce deviation due to external force, and lacks the targeted protection design, and long -term use can lead to equipment wear, and the adaptation range is narrow, cannot meet the installation and fixation demand of gateway equipment of different sizes, and the practicality is limited, therefore we urgently need a wall -hanging type rotation structure of gateway equipment to solve the above -mentioned problems. UTILITY MODEL CONTENTS
[0005] One purpose of the utility model is to provide a new technical scheme of the wall -hanging type rotation structure of gateway equipment, through the collaborative design of gear transmission, magnetic attraction multi -edge engagement and multi -gear limit, the damping locking and bolt locking structure are matched, the integration of gateway equipment installation, fixing, multidimensional adjustment and stable locking is realized, and the adaptability and operation convenience are considered.
[0006] According to the first aspect of the utility model, a wall -hanging type rotation structure of gateway equipment is provided, including the mounting frame for fixing, still including the fixed seat that is fixedly connected on the mounting frame, the fixed seat is rotatably connected with the mounting frame through the drive piece, the mounting frame is fixedly connected with the linear guide rail on the mounting frame, the sliding block is slidably connected on the linear guide rail, the sliding block is connected with the placing plate for placing gateway equipment through the rotating piece on the sliding block, the placing plate is provided with the limiting piece for fixing gateway equipment on the placing plate.
[0007] Optionally, the driving member comprises a first gear rotatably connected in the fixed seat, the fixed frame is fixedly connected with the first gear, and symmetrically installed sliding rails are arranged on the mounting frame, one group of the sliding rails are rotatably connected with a screw rod, and the other group of the sliding rails are fixedly connected with guide rods, a connecting frame is arranged on the mounting frame, one end of the connecting frame is threadedly connected with the screw rod, and the other end is slidably connected with the guide rod, and the end of the screw rod penetrates through the corresponding sliding rail and is fixedly connected with a push ring.
[0008] Optionally, a hydraulic rod is fixedly connected on the connecting frame, an output end of the hydraulic rod is fixedly connected with a rotating rod, and a second gear meshing with the first gear is rotatably connected on the rotating rod, when the second gear rotates, the first gear drives the fixed frame to rotate along the axis thereof.
[0009] Optionally, a support is arranged on the side of the mounting frame away from the sliding rails, symmetrically installed extension rods are arranged on the connecting frame, and the ends of the extension rods penetrate through the mounting frame and are fixedly connected with the support, and symmetrically installed damping pads for abutting against the first gear are arranged on the support.
[0010] Optionally, the rotating member comprises a circular hole arranged on the sliding block, a multi-edge block is fixedly connected to the inner bottom wall of the circular hole, an axle rod is fixedly connected to the upper portion of the multi-edge block, a connecting rod is arranged in the circular hole, the upper portion of the connecting rod is connected with the placing plate, an axle hole is arranged on the connecting rod, and a bearing is nested in the axle hole, the bearing is sleeved on the axle rod, a multi-edge groove adapted to the multi-edge block is arranged on the lower portion of the connecting rod, and the multi-edge groove is adapted to the multi-edge block.
[0011] Optionally, a spring is arranged in the axle hole, the two ends of the spring are connected with the axle rod and the inner wall of the axle hole respectively, the cross section of the connecting rod is T-shaped, a stepped groove in communication with the circular hole is arranged on the upper portion of the circular hole, and the protrusion of the connecting rod abuts against the lower stepped surface of the stepped groove.
[0012] Optionally, a first magnetic ring is fixedly installed on the side surface of the upper stepped surface of the stepped groove, and a second magnetic ring is fixedly installed on the side surface of the protrusion of the connecting rod, when the multi-edge groove is separated from the multi-edge block, the first magnetic ring and the second magnetic ring are magnetically attracted to form an adsorption area.
[0013] Optionally, the limiting member comprises limiting holes symmetrically arranged on the placing plate, and U-shaped rods are symmetrically arranged on the placing plate, when the two ends of the U-shaped rods are inserted into the corresponding limiting holes, the U-shaped rods are locked by bolts.
[0014] Optionally, a protective sleeve for protecting the gateway device is coated on the U-shaped rod.
[0015] Optionally, a gasket for preventing sliding is arranged in the limiting hole.
[0016] 1. According to one embodiment of the present application, the wall-mounted rotating structure of the gateway device is cooperatively designed with the gear engagement transmission and the hydraulic rod lifting adjustment, realizes the damping pad locking after the gear disengagement through the reverse screw, combines the bolt locking function of the linear guide rail and the magnetic attraction + multi-edge locking structure of the placement plate, realizes the multi-dimensional accurate adjustment of the fixed frame angle, the front and rear position and the orientation of the placement plate, and the locking of each adjustment link is reliable, effectively avoids the deviation or rotation caused by external force during the use of the device, and significantly improves the installation stability and adjustment convenience.
[0017] 2. According to one embodiment of the present application, the wall-mounted rotating structure of the gateway device is cooperatively designed with the gear engagement transmission and the hydraulic rod lifting adjustment, realizes the damping pad locking after the gear disengagement through the reverse screw, combines the bolt locking function of the linear guide rail and the magnetic attraction + multi-edge locking structure of the placement plate, realizes the multi-dimensional accurate adjustment of the fixed frame angle, the front and rear position and the orientation of the placement plate, and the locking of each adjustment link is reliable, effectively avoids the deviation or rotation caused by external force during the use of the device, and significantly improves the installation stability and adjustment convenience.
[0018] Other features of the present application and its advantages will become apparent from the following detailed description of exemplary embodiments thereof, taken in conjunction with the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS
[0019] The accompanying drawings, which are incorporated in and constitute a part of the specification, illustrate embodiments of the present application and, together with the description, serve to explain the principles of the present application.
[0020] Figure 1 is a schematic view of the overall structure of a wall-mounted rotating structure of a gateway device in an embodiment;
[0021] Figure 2 is a schematic view of the overall structure of a wall-mounted rotating structure of a gateway device in an embodiment; Figure 1 is a schematic view of the overall structure of a wall-mounted rotating structure of a gateway device in an embodiment;
[0022] Figure 3 is a schematic view of the overall structure of a wall-mounted rotating structure of a gateway device in an embodiment; Figure 2 is a schematic view of the overall structure of a wall-mounted rotating structure of a gateway device in an embodiment;
[0023] Figure 4 is a schematic view of the overall structure of a wall-mounted rotating structure of a gateway device in an embodiment;
[0024] Figure 5 is a schematic view of the overall structure of a wall-mounted rotating structure of a gateway device in an embodiment;
[0025] Figure 6 is a schematic view of the overall structure of a wall-mounted rotating structure of a gateway device in an embodiment;
[0026] As shown in the figure: 1, mounting frame; 2, fixed seat; 3, fixed frame; 4, linear guide rail; 5, sliding block; 6, placing plate; 7, first gear; 8, sliding guide rail; 9, screw; 10, guide rod; 11, connecting frame; 12, dial ring; 13, hydraulic rod; 14, rotating rod; 15, second gear; 16, support; 17, extension rod; 18, damping pad; 19, circular hole; 20, polygonal block; 21, shaft; 22, connecting rod; 23, shaft hole; 24, bearing; 25, polygonal groove; 26, spring; 27, stepped groove; 28, first magnetic ring; 29, second magnetic ring; 30, limiting hole; 31, U-shaped rod; 32, protective sleeve; 33, gasket. DETAILED DESCRIPTION
[0027] Various exemplary embodiments of the present application will now be described in detail with reference to the accompanying drawings. It should be noted that the relative arrangement of components and steps, numerical expressions, and numerical values set forth in these embodiments are illustrative only and do not limit the scope of the present application unless otherwise specifically stated.
[0028] The following description of at least one exemplary embodiment is merely exemplary in nature and is in no way intended to limit the scope of the present application and its uses or applications.
[0029] Techniques, methods, and devices known to those of ordinary skill in the relevant art can not be discussed in detail herein. However, where appropriate, such techniques, methods, and devices can be considered part of the specification.
[0030] In all of the examples shown and discussed herein, any specific values should be interpreted as merely illustrative and not as a limitation. Thus, other examples of the exemplary embodiments can have different values.
[0031] As Figures 1-6 shown, a wall-mounted rotating structure of a gateway device includes a mounting frame 1 for fixation, and a fixed seat 2 fixedly connected to the mounting frame 1.
[0032] Here, the mounting frame 1 serves as the basic load-bearing core of the entire device, and has the advantage of providing a high-strength, high-stability installation reference, adapting to various fixed scenarios such as walls and cabinets, and effectively avoiding overall loosening and deviation of the device. It is directly rigidly connected to the fixed surface, and can uniformly transmit the load such as gravity and vibration of the gateway device and subsequent adjustment structure, thereby ensuring the stability of the device after installation and solving the problem of easy shaking of the traditional installation structure.
[0033] Further, the fixed seat 2 realizes the precise butt joint of the mounting frame 1 and the driving member, plays the role of force transmission, and provides a dustproof and anti-collision protection space for the internal driving components. The closed structure avoids the entry of foreign matters to cause transmission jam, prolongs the service life of the driving structure, and ensures the stress stability of the driving member during operation, thereby improving the accuracy of angle adjustment.
[0034] The fixed seat 2 is rotationally connected with a fixed frame 3 through a driving member. The driving member includes a first gear 7 rotationally connected in the fixed seat 2. The fixed frame 3 is fixedly connected with the first gear 7. The mounting frame 1 is symmetrically provided with sliding guide rails 8. A screw rod 9 is rotationally connected in one set of the sliding guide rails 8. A guide rod 10 is fixedly connected in the other set of the sliding guide rails 8. The mounting frame 1 is provided with a connecting frame 11. One end of the connecting frame 11 is threadedly connected with the screw rod 9, and the other end is slidingly connected with the guide rod 10. The end of the screw rod 9 penetrates through the corresponding sliding guide rail 8 and is fixedly connected with a push ring 12.
[0035] Here, the integrated design of the first gear 7 and the fixed frame 3 in the driving member realizes direct transmission of angle adjustment, has high transmission efficiency and controllable adjustment accuracy. The tooth shape meshing structure of the first gear 7 can avoid slipping and jumping during adjustment, ensure uniform rotation of the fixed frame 3 along the axis, and solve the problem of angle deviation of the traditional adjustment structure.
[0036] Further, the combination of the sliding guide rail 8, the screw rod 9 and the guide rod 10 provides smooth and accurate movement guidance for the connecting frame 11. The slot design of the sliding guide rail 8 limits the movement trajectory of the connecting frame 11 to avoid deviation. The threaded transmission design of the screw rod 9 can realize fine control of the movement distance of the connecting frame 11. In combination with the sliding limiting of the guide rod 10, the levelness and stability of the connecting frame 11 during movement are ensured, and the accuracy of subsequent gear meshing is ensured.
[0037] Further, the push ring 12 simplifies the operation process and can manually drive the screw rod 9 to rotate without additional tools. The surface of the push ring 12 can be designed with anti-slip lines to improve the holding feeling and operation torque, reduce the operation threshold of the user, and make the position adjustment of the connecting frame 11 more convenient and efficient.
[0038] The connecting frame 11 is fixedly connected with a hydraulic rod 13. The output end of the hydraulic rod 13 is fixedly connected with a rotating rod 14. The rotating rod 14 is rotationally connected with a second gear 15 meshing with the first gear 7. When the second gear 15 rotates, the first gear 7 drives the fixed frame 3 to rotate along the axis thereof.
[0039] Here, the hydraulic rod 13 realizes the flexible lifting adjustment of the second gear 15, accurately controls the gear meshing and disengaging, and quickly switches the meshing state of the second gear 15 and the first gear 7 through the extension and retraction of the hydraulic rod 13. When the angle needs to be adjusted, the gears are meshed and driven, and after the adjustment is completed, the gears are disengaged to avoid accidental rotation. The operation is flexible and the locking is reliable.
[0040] Further, the rotating connection design of the rotating rod 14 and the second gear 15 ensures the free rotation of the second gear 15 and ensures smooth transmission. The rotating rod 14 provides stable mounting support for the second gear 15, and its length design can adapt to the installation position of the first gear 7, ensuring that the force is evenly distributed when the gears are meshed, and avoiding excessive wear of the local tooth surface.
[0041] Further, the meshing and driving structure of the second gear 15 and the first gear 7 realizes smooth power transmission and angle amplification. Through the design of the gear tooth ratio, the rotation angle of the fixed frame 3 can be accurately controlled, making the adjustment more precise. At the same time, the rigid structure of the gear transmission can withstand a certain load, avoiding transmission failure caused by equipment weight during adjustment.
[0042] The mounting bracket 1 is provided with a support 16 away from the sliding guide rail 8, and the extension rods 17 are symmetrically installed on the connecting frame 11 and fixedly connected to the mounting bracket 1 and the support 16 at the ends of the extension rods 17. The damping pads 18 for abutting against the first gear 7 are symmetrically installed on the support 16.
[0043] Here, the extension rods 17 realize the synchronous linkage of the connecting frame 11 and the support 16, ensuring the accurate triggering of the damping lock. The symmetrical distribution design ensures that the support 16 is evenly stressed, avoiding uneven contact between the damping pad 18 and the first gear 7 due to the inclination of the support 16. At the same time, the rigid structure of the extension rods 17 can transmit the movement displacement of the connecting frame 11, so that the support 16 moves closer to or away from the first gear 7 synchronously with the connecting frame 11.
[0044] Further, the support 16 provides a stable mounting carrier for the damping pad 18, ensuring the reliability of the damping lock. Its structure design can withstand the reaction force when the damping pad 18 contacts the first gear 7, avoiding deformation and causing locking failure. At the same time, the position design of the support 16 does not interfere with the normal rotation of the first gear 7, and only plays a role in the locked state.
[0045] Further, the damping pad 18 realizes flexible locking after angle adjustment, preventing accidental rotation of the equipment. Its flexible material can provide sufficient friction without damaging the tooth surface of the first gear 7. Through the symmetrical abutting design, the locking force is balanced, so that the fixed frame 3 remains at the target angle without deviation, solving the problem of easy loosening of traditional locking structures.
[0046] The fixing frame 3 is fixedly connected with a linear guide rail 4, the linear guide rail 4 is slidably connected with a sliding block 5, and the sliding block 5 is connected with a placing plate 6 for placing a gateway device through a rotating piece.
[0047] Here, the linear guide rail 4 has a bolt locking function, realizing smooth sliding and accurate locking of the sliding block 5, giving consideration to position adjustment flexibility and fixing stability, the precise design of the guide rail groove reduces the frictional resistance when the sliding block 5 moves, making the forward and backward position adjustment of the placing plate 6 more labor-saving, and the bolt locking function can directly abut against the sliding block 5 after the sliding block 5 moves to the target position, realizing rigid fixing of the position and avoiding accidental sliding.
[0048] Further, the sliding block 5 connects the linear guide rail 4 and the rotating piece, realizing the cooperation of position adjustment and rotation function, the sliding fit precision of the sliding block 5 and the linear guide rail 4 is high, which can ensure the stability of the placing plate 6 when moving, and the structural strength of the sliding block 5 can bear the weight of the gateway device, avoiding deformation caused by rotation jamming.
[0049] Further, the placing plate 6 provides a flat and stable placing platform for the gateway device, the size design can adapt to the size of mainstream gateway devices, and the connection structure with the rotating piece ensures the smooth realization of the rotation function, so that the gateway device can adjust the orientation according to the signal demand.
[0050] The rotating piece comprises a circular hole 19 opened in the sliding block 5, the inner bottom wall of the circular hole 19 is fixedly connected with a polygonal block 20, the upper part of the polygonal block 20 is fixedly connected with a shaft rod 21, a connecting rod 22 is arranged in the circular hole 19, the upper part of the connecting rod 22 is connected with the placing plate 6, an axle hole 23 is opened in the connecting rod 22, and a bearing 24 is nested in the axle hole 23, the bearing 24 is sleeved on the shaft rod 21, a polygonal groove 25 adapted to the polygonal block 20 is opened in the lower part of the connecting rod 22, the polygonal groove 25 is adapted to the polygonal block 20, a spring 26 is arranged in the axle hole 23, the two ends of the spring 26 are respectively connected with the shaft rod 21 and the inner wall of the axle hole 23, the cross section of the connecting rod 22 is T-shaped, a stepped groove 27 in communication with the circular hole 19 is opened in the upper part of the circular hole 19, and the protrusion of the connecting rod 22 abuts against the lower stepped surface of the stepped groove 27.
[0051] Here, the circular hole 19 provides accurate installation space for each component of the rotating piece, ensuring the coaxiality of each component, and the smooth design of the inner wall reduces the friction when the connecting rod 22 moves, and the design of the stepped groove 27 realizes the movement limiting of the connecting rod 22, avoiding the disconnection of the components caused by excessive pulling, and improving the structural safety. The matching structure of the polygonal block 20 and the polygonal groove 25 realizes the stable locking of the placing plate 6, the polygonal structure can limit the circumferential rotation of the connecting rod 22, thereby fixing the angle of the placing plate 6, which is more reliable than the circular structure locking and has no risk of slipping, ensuring the angle stability of the equipment in the non-adjustment state.
[0052] Further, the combination structure of the shaft rod 21 and the bearing 24 reduces the rotation resistance, realizes the smooth rotation of the placement plate 6 by 360°, the rolling friction of the bearing 24 replaces the traditional sliding friction, reduces the wear and makes the rotation more smooth, without the jamming phenomenon, and improves the user adjustment experience. The spring 26 realizes the automatic reset of the locked state, the elastic force of the spring 26 can continuously push the connecting rod 22 downward, so that the multi-edge groove 25 and the multi-edge block 20 remain in the engaged state, without manual locking, and only need to be lifted to be unlocked, convenient operation, and the elastic force of the spring 26 is moderate, and the locking reliability and the unlocking convenience are considered.
[0053] Further, the cooperation design of the T-shaped connecting rod 22 and the stepped groove 27 accurately controls the moving stroke of the connecting rod 22, avoids the overloading of the spring 26 or the damage of the components caused by excessive movement, and the abutting structure of the protrusion of the connecting rod 22 and the stepped groove 27 ensures the force balance in the locked state, and improves the structural stability.
[0054] The side surface of the stepped surface of the stepped groove 27 is fixedly installed with the first magnetic ring 28, and the side surface of the protrusion of the connecting rod 22 is fixedly installed with the second magnetic ring 29. When the multi-edge groove 25 and the multi-edge block 20 are separated, the first magnetic ring 28 and the second magnetic ring 29 are magnetically attracted to form an adsorption area.
[0055] Here, the magnetic attraction structure of the first magnetic ring 28 and the second magnetic ring 29 improves the stability in the rotation adjustment process, avoids accidental reset, and when the multi-edge groove 25 and the multi-edge block 20 are separated by lifting the connecting rod 22, the magnetic attraction force can firmly fix the position of the connecting rod 22, prevent the connecting rod 22 from moving downward due to the reset force of the spring 26 in the rotation process, and ensure the continuity of the rotation adjustment, without manually keeping the lifting state, and freeing the user's hands.
[0056] Further, the accurate design of the magnetic attraction force considers the adsorption stability and the unlocking convenience, the magnetic attraction force can resist the reset force of the spring 26 to ensure the position stability of the connecting rod 22 in the rotation process, and will not be too large to cause difficulty in pressing downward to unlock, and improves the overall use experience.
[0057] The placement plate 6 is provided with a limiting piece for fixing the gateway device, the limiting piece comprises limiting holes 30 symmetrically arranged on the placement plate 6, and U-shaped rods 31 are symmetrically arranged on the placement plate 6, when the two ends of the U-shaped rod 31 are inserted into the corresponding limiting holes 30 and locked by bolts, the U-shaped rod 31 is covered with a protective sleeve 32 for protecting the gateway device.
[0058] Here, the symmetrical design of the limiting hole 30 provides multiple mounting positions for the U-shaped rod 31. By selecting different limiting holes 30, the spacing of the U-shaped rod 31 can be flexibly adjusted to adapt to mainstream gateway devices with a width of 50-150 mm, solving the poor adaptability problem of traditional limiting structures and improving the versatility of the device. The combination structure of the U-shaped rod 31 and the bolt locking realizes the stable fixation of the gateway device. The structure of the U-shaped rod 31 can limit the device from both sides and the top, and cooperate with the rigid locking of the bolt to prevent the device from slipping or deviating during movement and rotation, with high fixation reliability.
[0059] Further, the protective sleeve 32 realizes flexible protection of the device, which is made of flexible materials such as silica gel, which can avoid hard contact between the U-shaped rod 31 and the gateway device shell, prevent the shell from being scratched and indented, and increase the contact friction force, further improving the fixation stability. The non-slip gasket 33 prevents the U-shaped rod 31 from loosening, which can increase the friction resistance between the U-shaped rod 31 and the inner wall of the limiting hole 30, avoid the displacement of the U-shaped rod 31 due to vibration, movement and other external forces after bolt locking, and ensure the long-term stability of the limiting structure. At the same time, the flexible material of the gasket 33 can buffer the pressure during locking to avoid damage to the edge of the limiting hole 30.
[0060] The utility model discloses, first through the mounting bracket 1 with the whole device is fixed on target wall or carrier, and the fixed base 2 provides stable installation basis for driving piece, when needing to adjust the overall angle of fixed frame 3, rotates the knob 12 and drives the screw 9 rotation, makes the connecting frame 11 along the sliding guide rail 8 and the guide rod 10 stable movement, and through the hydraulic rod 13 telescopic adjustment second gear 15's position simultaneously, makes it with the first gear 7 in fixed base 2 accurate meshing, rotates the rotating lever 14 and can be through the gear drive drive fixed frame 3 along the axis rotation, after adjusting to target angle, reverse rotation knob 12 drive screw 9 reverse rotation, drive connecting frame 11 along sliding guide rail 8 and guide rod 10 reverse movement, make second gear 15 and first gear 7 completely disengage meshing state, and connecting frame 11 synchronous drive extension rod 17 and support 16 are close to first gear 7, until damping pad 18 is tightly close first gear 7, realize the angle locking of fixed frame 3, the linear guide rail 4 on fixed frame 3 can supply slider 5 sliding, and the front and back position of placing plate 6 is adjusted, and after sliding in place, the bolt locking function of linear guide rail 4 fixes slider 5, when needing to adjust the orientation of placing plate 6, upwards pull placing plate 6 and drive connecting rod 22 go up, and spring 26 is compressed, and multi-sided slot 25 and multi-sided block 20 are disengaged, and first magnetic ring 28 and second magnetic ring 29 magnetism attract fixed connecting rod 22's position, and the cooperation of shaft rod 21 and bearing 24 realizes 360 ° smooth rotation of placing plate 6, and after adjusting, press placing plate 6 downwards, and magnetism is disengaged, and spring 26 resets and drives connecting rod 22 to go down, and multi-sided slot 25 and multi-sided block 20 are re-engaged and realize locking, after gateway equipment is placed on placing plate 6, according to the equipment size selection corresponding limit hole 30, U-shaped rod 31 is inserted and is locked by bolt, and the protective sleeve 32 and the antiskid washer 33 respectively play equipment protection and antiskid function, ensure that equipment is stable and reliable in the adjustment and use process.
[0061] Although some specific embodiments of the utility model have been described in detail through examples, those skilled in the art should understand that the above examples are only for illustration, and are not intended to limit the scope of the utility model. Those skilled in the art should understand that the above embodiments can be modified without departing from the scope and spirit of the utility model. The scope of the utility model is defined by the appended claims.
Claims
1. A wall-mounted rotating structure for a gateway device, comprising a mounting bracket (1) for fixing, characterized in that: It also includes a fixed base (2) fixedly connected to the mounting bracket (1), a fixed frame (3) rotatably connected to the fixed base (2) via a driving component, a linear guide rail (4) fixedly connected to the fixed frame (3), a slider (5) slidably connected to the linear guide rail (4), a placement plate (6) for placing the gateway device connected to the slider (5) via a rotating component, and a limiting component for fixing the gateway device provided on the placement plate (6).
2. The wall-mounted rotating structure of a gateway device according to claim 1, characterized in that: The driving component includes a first gear (7) rotatably connected in the fixed base (2), the fixed frame (3) is fixedly connected to the first gear (7), and the mounting frame (1) is symmetrically mounted with sliding guide rails (8). One set of the sliding guide rails (8) is rotatably connected with a screw (9), and the other set of the sliding guide rails (8) is fixedly connected with a guide rod (10). The mounting frame (1) is provided with a connecting frame (11). One end of the connecting frame (11) is threadedly connected to the screw (9), and the other end is slidably connected to the guide rod (10). The end of the screw (9) passes through the corresponding sliding guide rail (8) and is fixedly connected with a dial ring (12).
3. The wall-mounted rotating structure of a gateway device according to claim 2, characterized in that: A hydraulic rod (13) is fixedly connected to the connecting frame (11). A rotating rod (14) is fixedly connected to the output end of the hydraulic rod (13). A second gear (15) that meshes with the first gear (7) is rotatably connected to the rotating rod (14). When the second gear (15) rotates, the first gear (7) drives the fixed frame (3) to rotate along its axis.
4. The wall-mounted rotating structure of a gateway device according to claim 3, characterized in that: The mounting bracket (1) is provided with a bracket (16) on the side away from the sliding guide rail (8). An extension rod (17) is symmetrically installed on the connecting bracket (11), and the end of the extension rod (17) passes through the mounting bracket (1) and is fixedly connected to the bracket (16). A damping pad (18) for abutting the first gear (7) is symmetrically installed on the bracket (16).
5. The wall-mounted rotating structure of a gateway device according to claim 1, characterized in that: The rotating component includes a circular hole (19) on the slider (5). A polygonal block (20) is fixedly connected to the inner bottom wall of the circular hole (19). A shaft (21) is fixedly connected to the upper part of the polygonal block (20). A connecting rod (22) is provided in the circular hole (19). The upper part of the connecting rod (22) is connected to the placement plate (6). A shaft hole (23) is provided on the connecting rod (22), and a bearing (24) is nested in the shaft hole (23). The bearing (24) is sleeved on the shaft (21). A polygonal groove (25) adapted to the polygonal block (20) is provided at the lower part of the connecting rod (22). The polygonal groove (25) is adapted to the polygonal block (20).
6. The wall-mounted rotating structure of a gateway device according to claim 5, characterized in that: A spring (26) is provided inside the shaft hole (23). The two ends of the spring (26) are connected to the shaft rod (21) and the inner wall of the shaft hole (23) respectively. The cross section of the connecting rod (22) is T-shaped. A stepped groove (27) is provided on the upper part of the circular hole (19) and communicates with it. The protrusion of the connecting rod (22) abuts against the lower stepped surface of the stepped groove (27).
7. The wall-mounted rotating structure of a gateway device according to claim 6, characterized in that: A first magnetic ring (28) is fixedly installed on the side of the stepped surface of the stepped groove (27), and a second magnetic ring (29) is fixedly installed on the side of the protrusion of the connecting rod (22). When the polygonal groove (25) is separated from the polygonal block (20), the first magnetic ring (28) and the second magnetic ring (29) magnetically attract each other to form an adsorption area.
8. The wall-mounted rotating structure of a gateway device according to claim 7, characterized in that: The limiting component includes limiting holes (30) symmetrically opened on the placement plate (6), and U-shaped rods (31) are symmetrically arranged on the placement plate (6). When the two ends of the U-shaped rods (31) are inserted into the corresponding limiting holes (30), they are locked by bolts.
9. The wall-mounted rotating structure of a gateway device according to claim 8, characterized in that: The U-shaped rod (31) is covered with a protective sleeve (32) for protecting the gateway device.
10. The wall-mounted rotating structure of a gateway device according to claim 8, characterized in that: The limiting hole (30) is provided with a pad (33) for anti-slip.