Detachable panel

By setting guide grooves and protrusions on the base of the network information panel, combined with the limit design of elastic parts and bumps, a panel solution can be removed without tools is realized, which solves the problem of inconvenient panel disassembly in the prior art, and improves the disassembly and assembly efficiency and the convenience of product use.

CN222869213UActive Publication Date: 2025-05-13EVERPRO TECH COMPANY
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Patent Information

Application Number
CN202421483056.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-26
Publication Date
2025-05-13
Estimated Expiration
2034-06-26

AI Technical Summary

Technical Problem

The upper cover and base of the existing network information panel adopt a simple fastening structure, which makes it difficult to disassemble, is inconvenient to operate, and is easily damaged during the disassembly, affecting the service life of the product.

Method used

A detachable panel solution is designed, including base, upper cover and information module components. By providing guide grooves and projections on the base, the information module assembly uses elastic members and bumps for limiting, enabling a design that can be removed without tools.

Benefits of technology

It improves the efficiency of panel disassembly and assembly, saves disassembly and assembly time, reduces dependence on tools, reduces damage risk, and improves the convenience of use of products.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a detachable panel. The detachable panel comprises a base; the upper cover is buckled on the base to form a shell of the panel; the information module assembly is arranged between the upper cover and the base, and the information module assembly can be close to or away from the base in the first direction. Through the structural design comprising the upper cover, the base and the information module assembly, the scheme disclosed by the utility model can realize quick disassembly and assembly of the upper cover, the base and the information module assembly, and the disassembly and assembly efficiency is improved. In addition, a sliding lock catch can be installed on the upper cover, and therefore the upper cover and the base can be rapidly disassembled and assembled. The upper cover can be directly opened without any tool, mounting screws on the base do not need to be detached after the upper cover is opened, the information module assembly can be directly detached from the base, cables needing to be maintained are exposed for maintenance after the information module assembly is detached, and maintenance of the panel is greatly facilitated through the design.
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Description

Technical Field

[0001] The present disclosure generally relates to the technical field of network information panels and more specifically to a detachable panel. Background Art

[0002] Network information panel refers to a type of wiring product used in the work area wiring subsystem, suitable for the installation of multiple types of modules. Its main function is to fix the information module components and protect the cables at the outlet.

[0003] At present, the structure of the network information panel of the prior art generally includes a base, an information module assembly and an upper cover, wherein the base is fixed in a bottom box on the wall by screws, the information module assembly is fixed on the base, and the outermost layer is covered with an upper cover. However, the upper cover and the base in the prior art both adopt the simplest buckle structure, which makes it difficult to disassemble after buckling, and it is necessary to use tools such as a screwdriver to separate the upper cover from the base, which is very inconvenient to operate; in addition, it is very easy to damage the buckle during the buckling and disassembly process, resulting in damage to the product or even unusable. In addition, when the network information panel of the prior art is used, when it is necessary to replace or repair the information module assembly, it is necessary to use tools such as a screwdriver to first disassemble the upper cover, then loosen the fixing screws on the base, remove the base and the information module installation assembly together, and then take out the information module assembly on the base for repair or replacement. After completing the corresponding operation, it is necessary to fix the base with screws again. Such a structure is not only inconvenient to operate, but also takes a lot of time.

[0004] In view of this, there is an urgent need to provide a detachable panel solution to facilitate disassembly, improve disassembly and assembly efficiency, and save disassembly and assembly time. Summary of the invention

[0005] In order to at least solve one or more of the technical problems mentioned above, the present disclosure proposes a detachable panel solution in the following aspects.

[0006] In some embodiments, the present disclosure provides a detachable panel, comprising: a base; a top cover, which is buckled on the base to form a shell of the panel; and an information module assembly, which is arranged between the top cover and the base, and the information module assembly can approach or move away from the base along a first direction.

[0007] In some embodiments, the information module assembly includes a limit member, which includes two first protrusions spaced apart along a second direction, and an elastic member arranged between the two first protrusions; the first protrusion is protruding from the first surface of the information module assembly, and the first protrusion is extended in a positive direction along a third direction; a second protrusion is arranged on the elastic member, and the elastic member drives the second protrusion to approach or move away from the first surface, and the second protrusion includes a first plane.

[0008] In some embodiments, the base is provided with an opening extending through the first direction, the opening includes an opening side wall, the base also includes at least two guide grooves spaced apart along the second direction, and a first protrusion arranged between the two guide grooves; the guide groove includes two second protrusions spaced apart along the second direction, the second protrusions are protruded from the opening side wall and extend in the opposite direction along a third direction, the interval between the two second protrusions is greater than or equal to the width of the first protrusion along the second direction, the guide groove is used to accommodate the first protrusion to limit the information module assembly in the second direction; the size of the first protrusion along the second direction is greater than the size of the interval between the two second protrusions, the first protrusion is protruded from the opening side wall and extends in the opposite direction along the third direction, the first protrusion includes a second plane, the second plane is perpendicular to the opening side wall, the second plane abuts against the first plane, so as to limit the information module assembly in the positive direction in the first direction.

[0009] In some embodiments, the information module assembly also includes a first groove, the first groove includes a first vertical surface, the first vertical surface extends along the second direction, the first vertical surface is connected to the bottom surface of the first groove by an inclined surface, and the first vertical surface is an inclined surface extending downward from the inside to the outside of the bottom surface of the first groove; the base includes a third protrusion, the third protrusion includes a second vertical surface, and the second vertical surface is parallel to the surface where the first direction and the second direction are located; wherein, when the information module assembly is accommodated in the base, the first vertical surface and the second vertical surface abut against each other to achieve positive limiting of the information module assembly in the first direction.

[0010] In some embodiments, the base further includes a first recess, which is recessed in the second surface of the base in the opposite direction along the first direction. When the information module assembly is disposed in the base, the elastic member is flush with the second surface or is located below the second surface in the first direction.

[0011] In some embodiments, the base includes at least four guide grooves, three first protrusions and two third protrusions, and the information module is fixed to two adjacent guide grooves, the first protrusion and the third protrusion located between the guide grooves.

[0012] In some embodiments, the base further includes a tripping slope, which is parallel to the second direction and inclined to the plane where the first direction and the second direction are located, and has an angle to facilitate disassembly or installation of the information module assembly.

[0013] In some embodiments, the information module assembly further comprises a dustproof door, which is covered on the information module assembly (30), and the dustproof door can reciprocate along a third direction.

[0014] In some embodiments, the dustproof door includes a gripper, which is hooked into the second recesses on both sides of the information module assembly and performs reciprocating sliding motion in the second recess along a third direction.

[0015] In some embodiments, the information module assembly also includes a spring placement groove opened along a third direction for accommodating a spring; the dustproof door also includes a fourth protrusion, which is arranged in the spring placement groove and abuts against the spring. When the dustproof door performs reciprocating sliding motion along the third direction, the fourth protrusion is driven to push the spring to perform reciprocating sliding motion along the third direction.

[0016] In some embodiments, the upper cover also includes a sliding lock, and the base also includes a sliding lock locking wall arranged opposite to the second direction, and the sliding lock and the sliding lock locking wall match each other so that the upper cover can be locked when the sliding lock slides along the second direction to the sliding lock locking wall.

[0017] In some embodiments, the sliding lock is movably arranged on the upper cover along the second direction, and a avoidance portion corresponding to the sliding lock is arranged on the base; after the sliding lock passes through the avoidance portion, it moves along the second direction toward the position of the sliding lock locking wall to realize the limiting of the upper cover by the sliding lock locking wall along the first direction; wherein, the sliding lock includes a first wall surface, and the sliding lock locking wall includes a second wall surface facing away from the second surface of the base; when the sliding lock moves to the position of the sliding lock locking wall, the first wall surface abuts against the second wall surface to limit the upper cover in the first direction.

[0018] In some embodiments, the upper cover also includes a fifth protrusion, which is protruding from the third surface of the upper cover, and the fifth protrusion is extended along the second direction of the third surface; the base also includes a second groove, which is recessed on the fourth surface of the base and extends along the second direction, and the second groove is greater than or equal to the length of the fifth protrusion along the second direction; wherein, when the upper cover and the base need to be buckled together, the fifth protrusion is arranged in the second groove (207) to buckle the upper cover and the base together.

[0019] In some embodiments, the upper cover also includes a sixth protrusion, which is protruded from the third surface of the upper cover and extends along the first direction of the third surface; the base also includes a third groove, which is recessed on the fifth surface of the base and extends along the first direction, and the depth of the third groove is greater than or equal to the depth of the sixth protrusion; wherein the sixth protrusion is arranged in the third groove, when the upper cover and the base are buckled together, they are guided in the first direction and limited in the second direction.

[0020] In some embodiments, the upper cover is further provided with a hole along the first direction, the dustproof door is accommodated in the hole, and is movable in the third direction within the hole; wherein, the dustproof door includes a seventh protrusion, and when the information module assembly is arranged between the upper cover and the base, pulling the seventh protrusion drives the dustproof door to move forward along the third direction.

[0021] In some embodiments, the number of the holes is one or more, and the positions of the holes in the upper cover match the positions where the information module components are placed.

[0022] In some embodiments, the base is also provided with a base wall mounting hole for fixing the base.

[0023] In some embodiments, a sliding lock mounting hole is provided on the upper cover and is opened along a third direction. A clamping portion extending along a second direction is provided on the side of the sliding lock mounting hole away from the outer end surface of the upper cover, so that the sliding lock can slide after being clamped in the sliding lock mounting hole and the clamping portion.

[0024] In some embodiments, the present disclosure also provides a method for installing or removing a panel, including: providing an upper cover, a base, and an information module assembly; fixing the base; installing or removing the information module assembly on the base; and buckling the upper cover on the base.

[0025] In some embodiments, installing or removing the information module assembly on the base includes: moving the information module assembly in a positive direction along a first direction to achieve installation; and moving the information module assembly in a negative direction along the first direction to achieve removal.

[0026] Through the above description, it can be understood that the present disclosure provides a detachable panel solution. Specifically, through the structural design including the base, the cover plate and the information module assembly, the solution disclosed in the present disclosure can directly open the upper cover without the aid of any tools. After opening the upper cover, there is no need to remove the mounting screws on the base. The information module assembly can be directly removed from the base. After removing the information module assembly, the cables that need to be repaired are exposed for inspection. Such a design not only makes it easy to disassemble the panel, but also improves the efficiency of disassembly and assembly, saving disassembly and assembly time. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] By reading the detailed description below with reference to the accompanying drawings, the above and other objects, features and advantages of the exemplary embodiments of the present disclosure will become readily understood. In the accompanying drawings, several embodiments of the present disclosure are shown in an exemplary and non-limiting manner, and the same or corresponding reference numerals represent the same or corresponding parts, wherein:

[0028] Figure 1 A schematic diagram of the structure of the detachable panel after assembly according to the embodiment of the present disclosure is shown;

[0029] Figure 2 A bottom view of a detachable panel after assembly according to an embodiment of the present disclosure is shown;

[0030] Figure 3 A schematic diagram showing the structure of an information module component according to an embodiment of the present disclosure is shown;

[0031] Figure 4 A schematic structural diagram of a base according to an embodiment of the present disclosure is shown;

[0032] Figure 5 A schematic diagram of the structure of the information module assembly according to another embodiment of the present disclosure is shown;

[0033] Figure 6 A schematic structural diagram of a base according to an embodiment of the present disclosure from another perspective is shown;

[0034] Figure 7 A schematic structural diagram of a sliding lock according to an embodiment of the present disclosure is shown;

[0035] Figure 8 A schematic diagram of the structure of the upper cover according to an embodiment of the present disclosure is shown;

[0036] Fig. 9 Another structural schematic diagram of the upper cover according to the embodiment of the present disclosure is shown;

[0037] Fig.10 Another schematic structural diagram of the upper cover according to the embodiment of the present disclosure is shown;

[0038] Fig.11Another schematic diagram of the structure after the detachable panel according to the embodiment of the present disclosure is assembled is shown;

[0039] Fig.12 Another bottom view showing the assembled detachable panel according to the embodiment of the present disclosure;

[0040] Fig.13 A schematic block diagram of a panel installation or removal method according to an embodiment of the present disclosure is shown.

[0041] Reference numerals:

[0042] 10. upper cover; 101. fifth protrusion; 102. sixth protrusion; 103. sliding lock mounting hole; 1031. clamping part; 104. third surface;

[0043] 20, base; 201, guide groove; 2011, second protrusion; 2012, first flange wall; 202, first protrusion; 203, third protrusion; 2031, second vertical surface; 204, first recess; 205, tripping slope; 206, avoidance portion; 2061, sliding lock locking wall; 207, second groove; 208, third groove; 209, base wall mounting hole; 210, opening side wall surface; 211, second surface; 212, fourth surface; 213, fifth surface; 214, second flange wall; 215, sixth surface; 216, seventh surface;

[0044] 30. Information module assembly; 301. First protrusion; 302. Elastic block; 3021. Second protrusion; 30211. First plane; 303. First groove; 304. Dustproof door; 3041. Fourth protrusion; 3043. Grip; 305. Spring placement groove; 306. Seventh protrusion; 308. First surface;

[0045] 40. Sliding lock; 401. First wall. DETAILED DESCRIPTION

[0046] The following will be combined with the drawings in the embodiments of the present disclosure to clearly and completely describe the technical solutions in the embodiments of the present disclosure. Obviously, the described embodiments are part of the embodiments of the present disclosure, not all of the embodiments. Based on the embodiments in the present disclosure, all other embodiments obtained by those skilled in the art without creative work are within the scope of protection of the present disclosure.

[0047] It should be understood that the terms "include" and "comprising" used in the specification and claims of the present disclosure indicate the presence of described features, integers, steps, operations, elements and / or components, but do not exclude the presence or addition of one or more other features, integers, steps, operations, elements, components and / or collections thereof.

[0048] It should also be understood that the terms used in this disclosure are only for the purpose of describing specific embodiments and are not intended to limit the disclosure. As used in this disclosure and claims, the singular forms of "a", "an", and "the" are intended to include the plural forms unless the context clearly indicates otherwise. It should also be further understood that the term "and / or" used in this disclosure and claims refers to any combination of one or more of the associated listed items and all possible combinations, including these combinations.

[0049] As used in this specification and claims, the term "if" may be interpreted as "when" or "upon" or "in response to determining" or "in response to detecting," depending on the context. Similarly, the phrase "if it is determined" or "if [described condition or event] is detected" may be interpreted as meaning "upon determination" or "in response to determining" or "upon detection of [described condition or event]" or "in response to detecting [described condition or event]," depending on the context.

[0050] The specific implementation of the present disclosure is described in detail below with reference to the accompanying drawings.

[0051] Figure 1 FIG. 2 shows a schematic diagram of the structure of the detachable panel after assembly according to the embodiment of the present disclosure. Figure 1 As shown in FIG. 1 , the panel of the present disclosure may include an upper cover 10 , a base 20 and an information module assembly 30 .

[0052] In one embodiment, the upper cover 10 is buckled onto the base 20, and the two can form a housing of the panel when buckled together. The information module assembly 30 can be arranged between the upper cover 10 and the base 20, and the information module assembly 30 can be close to or away from the base 20 along a first direction. It should be understood that in order to accurately determine the description of the first direction F1, the second direction F2 and the third direction F3, the directions of the disclosed scheme are all established based on the assembled base. The first direction is the thickness direction of the base, the positive direction F1 of the first direction is the direction of the vertical base 20 toward the upper cover 10, the second direction is the length direction of the base, the positive direction F2 of the second direction is the direction of the avoidance portion 206 toward the sliding lock locking wall 2061, the third direction is the width direction of the base, and the positive direction F3 of the third direction is the direction of the base avoidance portion 206 toward the fifth surface. It can be understood that, Figure 1 - Fig. 9 The direction indicated by the arrow is the positive direction.

[0053] Figure 2 FIG. 2 shows a bottom view of a detachable panel after assembly according to an embodiment of the present disclosure. Figure 1 and Figure 2The information module assembly 30 disclosed in the present invention can be arranged in the base 20, and is specifically installed between the upper cover 10 and the base 20. In an application scenario, when the information module assembly 30 needs to be disassembled, the upper cover 10 and the base 20 are first separated, and then the information module assembly 30 is moved away from the base 20 in the first positive direction, so that the information module assembly 30 can be disassembled; when the information module assembly 30 needs to be installed, the information module assembly 30 is moved closer to the base 20 in the first negative direction -F1 and then installed on the base 20. In the scheme disclosed in the present invention, the installation or disassembly of the information module assembly 30 can be achieved without the aid of other tools, which makes the operation more convenient and improves the efficiency of disassembly and assembly.

[0054] Figure 3 FIG. 2 shows a schematic diagram of the structure of the information module assembly according to an embodiment of the present disclosure. Figure 3 As shown in , the information module assembly 30 disclosed in the present invention may include a limiting member, and the limiting member includes two first protrusions 301 and an elastic member 302 .

[0055] In one embodiment, the two first protrusions 301 included in the stopper may be arranged at intervals along the second direction. Further, the first protrusion 301 may be convexly arranged on the first surface 308 of the information module assembly 30, and the first protrusion 301 may be extended along the positive direction F3 of the third direction. The first surface 308 is the surface of the information module assembly 30 along the positive direction (F3) of the third direction, which may be a surface including a first protrusion, a continuous surface arranged below the elastic block 302 along the negative direction of the third direction, a vertical surface connected to the elastic block 302, etc. It should be noted that the first surface 308 may not be a plane extending along a fixed direction, and its plane may be discontinuous or have different directions. It can be understood that the above description is exemplary and not restrictive. In another embodiment, the first protrusion 301 can be a trapezoidal platform protrusion extending along the positive direction F3 of the third direction, wherein the first protrusion 301 is set to a trapezoid so that it has a guiding function, which is used to guide the second direction when the information module assembly 30 is installed in the base 20; it is set to a protrusion so that it has a positioning function, which is used to limit the first direction when the information module assembly 30 is installed in the base 20, to prevent it from moving back and forth after installation, thereby improving the stability of the information module assembly 30 and the base 20 after installation.

[0056] In one embodiment, the elastic member 302 may be disposed between the two first protrusions 301. A second protrusion 3021 may be disposed on the elastic member 302, and the elastic member 302 may drive the second protrusion 3021 to approach or move away from the first surface 308. In one embodiment, the second protrusion 3021 may further include a first plane 30211, and the first plane 30211 is parallel to the second direction and the third direction. In one embodiment, the second protrusion 3021 may be a U-shaped protrusion.

[0057] In an application scenario, when the information module assembly 30 needs to be installed or removed, the user can move the elastic member 302 to directly install or remove the information module assembly 30. Specifically, the bottom of the elastic member 302 can be fixedly connected to the information module assembly 30, and the middle and upper parts of the elastic member 302 can be away from the aforementioned first surface 308, so that the user can move the elastic member 302 close to or away from the first surface 308. Preferably, the middle and upper parts of the aforementioned elastic member 302 can be the area where the second protrusion 3021 or the first plane 30211 is located. It can be understood that the above description is exemplary and not restrictive. In an exemplary actual operation, when the information module assembly 30 needs to be removed, after the elastic member 302 is moved in the direction close to the first surface (that is, the third direction negative -F3), the information module assembly 30 can be quickly removed from the base 20.

[0058] Figure 4 FIG. 2 shows a schematic diagram of the structure of a base according to an embodiment of the present disclosure. Figure 4 As shown in , the base 20 of the present disclosure may include a guide groove 201 and a first protrusion 202 .

[0059] In one embodiment, the base 20 may be provided with an opening extending through the first direction, the opening may include an opening side wall 210, the base 20 may further include at least two guide grooves 201 spaced apart along the second direction, the guide groove 201 includes two second protrusions 2011 spaced apart along the second direction, the second protrusions 2011 protrude from the opening side wall 210 and extend in the third direction in the opposite direction -F3, the interval between the two second protrusions 2011 is greater than or equal to the width of the first protrusion 301 along the second direction, so that the guide groove 201 can accommodate the first protrusion 301. When the information module assembly 30 is installed to the base 20, the first protrusion 301 is accommodated in the guide groove 201, and the guide groove 201 is used to limit the information module assembly 30 in the second direction, thereby improving the stability of the information module assembly 30 and the base 20 after installation.

[0060] In one embodiment, the base 20 may further include a first protrusion 202 disposed between the two guide grooves 201. In one embodiment, the size of the first protrusion 202 along the second direction may be greater than the size of the interval between the two second protrusions 2011, the first protrusion 202 is protruding from the opening side wall surface 210 and extending in the opposite direction along the third direction, and the first protrusion 202 includes a second plane, and the second plane is perpendicular to the opening side wall surface 210. Specifically, the second plane may abut against the first plane 30211 of the information module assembly 30, and when the information module assembly 30 is accommodated in the base 20, the second plane abuts against the first plane 30211 to limit the first direction of the information module assembly 30 in the positive direction F1, preventing it from moving back and forth along the first direction after installation, thereby further improving the stability of the information module assembly 30 and the base 20 after installation. It can be understood that the second plane is parallel to the plane where the second direction and the third direction are located.

[0061] According to the foregoing description, the base 20 may be provided with an opening extending along the first direction, and the length and depth of the opening match the information module assembly 30, so as to accommodate the information module assembly 30. In one embodiment, the length and depth of the opening may be slightly larger than the information module assembly 30, so that there is enough space to accommodate the information module assembly 30, and the present disclosure is not limited thereto.

[0062] When the information module assembly 30 is accommodated in the opening, the first protrusion 301 includes an upper surface away from and parallel to the first surface 308, and the guide groove 201 includes a bottom surface parallel to the side wall of the opening. The upper surface of the first protrusion 301 and the bottom surface of the guide groove 201 are abutted against each other; the second plane of the first protrusion 202 can be abutted against the first plane 30211 of the second protrusion 3021.

[0063] When the information module assembly 30 needs to be installed, the first protrusion 301 moves along the third direction until the upper surfaces of the two first protrusions 301 abut against the bottom surface of the guide groove 201, and the two first protrusions 301 are used as guides to drive the information module assembly 30 to move in the negative direction of the first direction until the second plane of the first protrusion 202 can abut against the first plane 30211 of the second protrusion 3021. When the information module assembly 30 needs to be disassembled, after the elastic member 302 is moved in the direction close to the first surface (i.e., the negative direction of the third direction - F3), the first plane 30211 is separated from the second plane, the limit of the information module assembly 30 and the base 20 in the first direction is released, and the information module assembly 30 moves in the positive direction F1 of the first direction until the first protrusion 301 is separated from the guide groove 201, thereby realizing the disassembly of the information module assembly 30.

[0064] In another embodiment, the guide groove 201 may further include a first flange wall 2012, and the first flange wall 2012 may be protruded from the opening side wall surface 210 along the negative direction -F3 in the third direction. In one embodiment, the length of the first flange wall 2012 may be higher than the second protrusion 2011, and when the information module assembly 30 is located in the base 20, the first flange wall 2012 may abut against the bottom surface of the information module assembly 30 to achieve the limit of the negative direction -F1 in the first direction, and the information module assembly 30 is fixed in the first direction by the first protrusion 202 and the first flange wall 2012, further improving the stability of the information module assembly 30 and the base 20 when installed.

[0065] Figure 5 Another structural diagram of the information module assembly according to the embodiment of the present disclosure is shown. Figure 5 As shown in , the information module assembly 30 of the present disclosure may include a first groove 303. In one embodiment, the first groove 303 may include a first vertical surface 3031, the first vertical surface 3031 is extended along the second direction, and is connected to the bottom surface of the first groove 303 by an inclined surface, and the inclined surface is formed by the bottom surface of the first groove 303 extending downward from the inside to the outside, wherein the first vertical surface 3031 is parallel to the surface where the first direction and the second direction are located.

[0066] Figure 6 Another schematic diagram of the structure of the base according to the embodiment of the present disclosure is shown. Figure 6 As shown in , the base 20 of the present disclosure may include a third protrusion 203. In one embodiment, the third protrusion 203 may include a second vertical surface 2031, and the second vertical surface 2031 is parallel to the surface of the first direction and the second direction. The first vertical surface 3031 and the first plane 30211 are symmetrically arranged on both sides of the information module assembly 30 along the third direction. Preferably, the first vertical surface 3031 and the first plane 30211 are located in the middle position of the information module assembly 30 along the second direction, and the second vertical surface 2031 is used for limiting the positive direction (F1) along the first direction. Among them, when the information module assembly 30 is accommodated in the base 20, the first vertical surface 3031 and the second vertical surface 2031 are in contact with each other, and the information module assembly 30 is limited in the first direction (F1), and the first plane 30211 is in contact with the first protrusion 202 to realize the positive position (F1) of the information module assembly 30, and the first vertical surface 3031 and the first plane 30211 respectively realize the position limitation of the information module assembly 30 on both sides of the information module assembly 30. It can be understood that the length of the information module assembly 30 along the third direction is greater than the length along the second direction, and the symmetrically arranged limiting structure makes the two sides of the information module assembly 30 evenly stressed, so as to realize better positioning of the information module assembly 30 and the base 20.

[0067] In another embodiment, the overall shape of the third protrusion 203 may be similar to a wedge shape, which includes a second vertical surface 2031, and the length of the third protrusion 203 along the first direction is less than the depth of the first groove 303 along the first direction. In one embodiment, the lower surface of the information module assembly 30, that is, the surface opposite to the first surface 308, is a plane perpendicular to the third direction, the length of the second vertical surface 2031 along the third direction is greater than the length of the first groove 303 along the third direction, the length of the first vertical surface 3031 in the third direction is less than the length of the first groove in the third direction, and an inclined surface is connected between the first vertical surface 3031 and the lower surface of the information module assembly 30, and the inclined surface extends downward from the bottom surface of the first groove 303 from the inside to the outside. A tripping inclined surface 205 is provided between two adjacent third protrusions 203 of the opening of the base 20. It can be understood that the tripping inclined surface 205 is opposite to the inclined surface of the information module assembly 30, so as to form a avoidance when installing or removing the information module assembly 30.

[0068] Taking the process of installing the information module assembly 30 on the base 20 as an example, the first groove 303 of the information module assembly 30 is placed in the third protrusion 203, the first vertical surface 3031 contacts the second vertical surface 2031, and the lower surface of the information module assembly 30 contacts the tripping slope 205. The information module assembly 30 rotates clockwise with the contact line between the first vertical surface 3031 and the second vertical surface 2031 as the axis until the first protrusion 301 enters the guide groove 201, and the information module assembly 30 continues to rotate clockwise until the second protrusion 3021 is snap-fitted and fixed to the first protrusion 202, and the information module assembly 30 is snap-fitted and fixed to the base 20.

[0069] Taking the process of disassembling the information module assembly 30 from the base 20 as an example, after the elastic member 302 is pushed in the direction close to the first surface (that is, the negative direction of the third direction - F3), the first plane 30211 is disengaged from the second plane, and the limit of the information module assembly 30 and the base 20 in the first direction is released. The information module assembly 30 rotates counterclockwise until the first protrusion 301 is disengaged from the guide groove 201. At this time, the lower surface of the information module assembly 30 contacts the tripping inclined surface 205, and the second vertical surface 2031 abuts against the first vertical surface 3031. The information module assembly 30 moves along the inclined surface of its lower surface to achieve the separation of the information module assembly 30 from the base.

[0070] Combination Figure 5 and Figure 6 When the information module assembly 30 is installed on the base 20, the first vertical surface 3031 of the information module assembly 30 and the second vertical surface 2031 of the base 20 abut against each other, thereby realizing the base 20 limiting the information module assembly 30 in the first direction F1, further enhancing the stability of the information module assembly 30 and the base 20 after installation.

[0071] Then continue to describe Figure 6 , the base 20 of the present disclosure may further include a first recess 204, which is recessed in the second surface 211 of the base 20 in the reverse direction of the first direction -F1. When the information module assembly 30 is installed on the base 20, the elastic member 302 is flush with the second surface 211 or is located below the second surface 211 in the positive direction of the first direction. Preferably, the elastic member 302 is located below the second surface 211 in the positive direction of the first direction. In other words, the elastic member 302 protrudes from the second surface 211 in the first direction, so that the user can move the elastic member 302 to disassemble the information module assembly 30. In another implementation, the depth of the elastic member 302 protruding from the second surface 211 in the first direction may be consistent with the depth of the first recess 204 recessed in the second surface 211 in the reverse direction of the first direction -F1.

[0072] Specifically, the first recess 204 can not only be used to avoid the information module assembly 30, but also reduce the overall thickness of the panel after the upper cover 10 and the base 20 are installed. Further, when the upper cover 10 and the base 20 are buckled, the first recess 204 can make the bottom surface of the upper cover 10 and the second surface 211 of the base 20 meet, thereby reducing the overall thickness of the panel, realizing miniaturization of the panel, saving manufacturing materials, and being more beautiful.

[0073] In one embodiment, the base 20 of the present disclosure may also include a tripping slope 205, the tripping slope 205 is parallel to the second direction, and is inclined to the surface where the first direction and the second direction are located, and has an angle, so as to facilitate the removal or installation of the information module assembly 30. In one embodiment, the tripping slope 205 can be the surface between the two third protrusions 203, and its length can be from the second vertical surface 2031 to the second surface 211 of the base 20, and its angle can be any degree, which is convenient for the information module assembly 30 to slide in or out of the base 20, and this embodiment is not limited here. Preferably, the lower surface of the opening of the base 20 is also the surface where the tripping slope 205 is located, and the surface of the second vertical surface 2031 extending negatively along the first direction is a plane perpendicular to the third direction. When the information module assembly 30 is installed with the base 20, the bottom surface of the information module assembly 30 abuts against the section of the plane, providing support for the information module assembly 30 along the third direction. In actual application scenarios, when the information module assembly 30 is installed on the base 20 , the information module assembly 30 can quickly slide into or out of the base 20 through the release slope 205 , thereby facilitating the removal or installation of the information module assembly 30 .

[0074] In another embodiment, the base 20 may further include a second flange wall 214, and a plane may be included between the second flange wall 214 and the tripping slope 205. When the information module assembly 30 is installed on the base 20, the plane is used to support the information module assembly 30 to ensure its stability during installation. In one embodiment, the second flange wall 214 may be protruded on the side wall of the opening along the third direction F3. Preferably, the second flange wall 214 may be symmetrically arranged with the first flange wall 2012 in the first direction. When the information module assembly 30 is located in the base 20, the second flange wall 214 may abut against the top surface of the information module assembly 30, and the information module assembly 30 is fixed in the first direction by the first flange wall 2012 and the second flange wall 214. Based on the above description of the base 20 and the information module assembly 30, the two adjacent guide grooves 201, the first protrusion 202 and the third protrusion 203 can fix the information module assembly 30 in the base 20, thereby improving the stability of the information module assembly 301 after being installed in the base 20. The trip slope 205 allows the information module assembly 30 to quickly slide into or out of the base 20, thereby improving the efficiency of assembly and disassembly.

[0075] In another embodiment, the base 20 may further include at least four of the above-mentioned guide grooves 201, three first protrusions 202, three third protrusions 203 and four second flange walls 214. Figure 2 and Fig.11 It is understandable that the base 20 can be installed with a single group or multiple groups of information module components 30. When installing a single group of information module components, the information module components 30 can be installed in the two guide grooves 201 in the middle of the base 20; or they can be installed in two adjacent guide grooves 201 on the left or right side of the base 20. When installing multiple groups of information module components 30, two adjacent guide grooves 201 on the left and right sides of the base 20 can simultaneously install two groups of information module components 30. The specific installation position can be selected according to demand, and this disclosure is not limited here. It is understandable that the base 20 in the disclosed scheme can also be compatible with a single or multiple network interfaces, and compatibility is achieved by increasing or reducing the information module installation components 30 according to actual needs. Without replacing the base, the installation of multiple groups of information module components 30 can be achieved.

[0076] return Figure 3 Continuing the description, the information module assembly 30 of the present disclosure may further include a dustproof door 304, which is covered on the information module assembly 30 and can reciprocate along the third direction. The dustproof door 304 may further include a seventh protrusion 306, which is extended along the first direction.

[0077] In one embodiment, the dustproof door 304 may include a gripper 3043, which is hooked into the second recesses on both sides of the information module assembly 30 and performs reciprocating sliding motion in the second recess along the third direction. Figure 1 and Figure 3 In an application scenario, after the information module assembly 30 is installed between the upper cover 10 and the base 20 , the seventh protrusion 306 can be pulled to drive the dustproof door 304 to move forward along the third direction.

[0078] In one embodiment, the information module assembly 30 may further include a spring placement groove 305 opened along the third direction, which is used to accommodate the spring. Further, the dustproof door 304 may further include a fourth protrusion 3041, which may extend along the first direction and be arranged in the spring placement groove 305 and may abut against the spring. When the dustproof door 304 performs reciprocating sliding motion along the third direction, the fourth protrusion 3041 may be driven to push the spring to perform reciprocating sliding motion along the third direction.

[0079] like Figure 7 - Fig. 9 As shown, the upper cover 10 of the present disclosure may further include a sliding lock 40, which may be movably disposed on the upper cover 10 along the second direction F2. In one embodiment, the upper cover 10 may further be provided with a sliding lock installation hole 103, which is opened along the third direction F3, and a clamping portion 1031 extending along the second direction F2 is disposed on the side of the sliding lock installation hole 103 away from the outer end surface of the upper cover 10, so that the sliding lock 40 is clamped in the sliding lock installation hole 103 and the clamping portion 1031 and then slides. In one embodiment, the sliding lock installation hole 103 may be a through hole with a size that matches the sliding lock 40, and the clamping portion 1031 may be disposed oppositely along both sides of the through hole to form a limiting groove, so that the sliding lock 40 can slide along the limiting groove.

[0080] In one embodiment, the base 20 may be provided with an avoidance portion 206 corresponding to the sliding lock 40, and the base 20 may also include a sliding lock locking wall 2061 arranged in the second direction opposite to -F2, the sliding lock 40 and the sliding lock locking wall 2061 match, and the sliding lock locking wall 2061 may limit the upper cover 10 in the first direction. It can be understood that the length of the avoidance portion 206 in the second direction may be greater than or equal to the length of the sliding lock 40 in the second direction, and the avoidance portion 206 may be a part of a groove on the base 20, and the other side of the groove has a protrusion along the first direction to constitute the sliding lock locking wall 2061. In another embodiment, the distance between the sliding lock 40 and the inner surface of the upper cover 10 may match the thickness of the sliding lock locking wall 2061. In a preferred embodiment, the lengths of the sliding lock 40 and the sliding lock locking wall 2061 in the second direction may be the same, and the scheme disclosed herein is not limited here.

[0081] In an exemplary actual operation, when the upper cover 10 and the base 20 are buckled, the sliding lock 40 can pass through the avoidance portion 206 and then move along the second positive direction F2 to the position of the sliding lock locking wall 2061, thereby locking the upper cover 10 and the base 20. Specifically, the sliding lock 40 may include a first wall surface 401, and the sliding lock locking wall 2061 may include a second wall surface away from the second surface 211 of the base 20.

[0082] In an application scenario, when the information module assembly 30 needs to be installed, the information module assembly 30 is first installed on the base 20, and then the upper cover 10 and the base 20 are buckled together to form a panel. The user can move the sliding lock 40 to the position of the sliding lock locking wall 2061, so that the first wall surface 401 abuts against the second wall surface, thereby realizing the locking operation between the upper cover 10 and the base 20. When the information module assembly 30 needs to be disassembled, the user can push the sliding lock 40 in the negative direction along the second direction to directly separate the upper cover 10 and the base 20. The use of the sliding lock 40 in the solution disclosed herein can directly disassemble and assemble the upper cover 10 and the base 20, without the need for tools such as screwdrivers in the prior art to separate the upper cover and the base, thereby improving the disassembly and assembly efficiency between the upper cover and the base.

[0083] In one embodiment, in combination Figure 6 and Figure 8, the upper cover 10 may further include a fifth protrusion 101, which is protruding from the third surface 104 of the upper cover 10, and the fifth protrusion 101 may be extended along the second direction F2 of the third surface 104. The base 20 may further include a second groove 207, which is recessed from the fourth surface 212 of the base 20 and extends along the second direction, and the second groove 207 is greater than or equal to the length of the fifth protrusion 101 along the second direction F2. In another embodiment, the third surface 104 may be a plane on the opposite side of the upper cover 10 where the mounting hole is provided, and the fourth surface may be a plane on the opposite side of the base 20 where the avoidance portion 206 is provided. In an application scenario, when the upper cover 10 and the base 20 need to be buckled together, the fifth protrusion 101 may be provided in the second groove 207 to buckle the upper cover 10 and the base 20 together.

[0084] In another embodiment, the upper cover 10 may include a plurality of fifth protrusions 101. Specifically, the upper cover 10 may include but not be limited to two of the fifth protrusions 101. When the upper cover 10 and the base 201 are buckled together, the stability of the upper cover 10 and the base 20 after buckling can be better achieved.

[0085] In one embodiment, the upper cover 10 may further include a sixth protrusion 102, which is protruding from the third surface of the upper cover 10 and extending along the first direction F1 of the third surface. Preferably, the sixth protrusion 102 may be a cylindrical structure extending along the first direction. In one embodiment, the sixth protrusion 102 may be disposed between the two fifth protrusions 101. The base 20 may further include a third groove 208, which is concavely disposed on the fifth surface 213 of the base 20 and extending along the first direction, and the depth of the third groove 208 is greater than or equal to the depth of the sixth protrusion 102. Specifically, the third groove 208 may be an arc-shaped structure adapted to the sixth protrusion 102, wherein, when the upper cover 10 and the base 20 are buckled, the sixth protrusion 102 may be disposed in the third groove 208, so as to guide the upper cover 10 in the first direction F1 and limit the upper cover 10 in the second direction F2 when the upper cover 10 is installed.

[0086] Based on the above description of the upper cover 10 and the base 20, when the upper cover 10 and the base 20 are buckled together, the fifth protrusion 101 and the sixth protrusion 102 of the upper cover 10 respectively cooperate with the second groove 207 and the third groove 208 of the base 20, thereby realizing the quick buckling of the upper cover 10 and the base 20.

[0087] In one embodiment, in combination Figure 8 , Fig. 9 and Fig.10The upper cover 10 is also provided with a hole along the first direction F1, and the dustproof door 304 can be accommodated in the hole and can move in the hole along the third direction F3. In another embodiment, the hole can be one or more, and the position of the hole in the upper cover 10 matches the position of the information module assembly 30.

[0088] like Fig.10 As shown, the upper cover 10 may also be provided with a plurality of holes to accommodate a plurality of information module assemblies 30. In an application scenario, when the upper cover 10 and the base 20 are buckled together, the dustproof door 304 of the information module assembly 30 may be exposed from the hole provided in the upper cover 10, and the user may pull the seventh protrusion 306 on the information module assembly 30 to drive the dustproof door 304 to move forward along the third direction. In addition, the seventh protrusion 306 on the information module assembly 30 is provided in the hole provided in the upper cover 10 and may also play a role of limiting. Fig.11 and Fig.12 In one embodiment, the base 20 can simultaneously install two sets of information module assemblies 30. It is understandable that the solution disclosed herein can realize the installation of multiple sets of information module assemblies 30 without replacing the base.

[0089] In one embodiment, the base 20 may be provided with a base wall mounting hole 209 for fixing the base 20. In another embodiment, the base 20 may be provided with one or more base wall mounting holes 209. Preferably, the base 20 may be provided with two base wall mounting holes 209, which may be through holes and may be elliptical in shape as a whole. In an application scenario, when the base 20 needs to be fixed to a wall, a connecting component is used to pass through the base wall mounting hole 209 to fix the base 20. For example, a screw may be used to pass through the base wall mounting hole 209 to fix the base 20 to the wall.

[0090] In addition, the information module assembly of the prior art is fixed on the base, and the base is fixed to the wall by screws. When the information module assembly needs to be replaced or repaired, it is necessary to loosen the fixing screws on the base with the help of a screwdriver or other tools, and then remove the base and the information module assembly together before taking out the information module assembly on the base for replacement or repair. In the scheme disclosed in the present invention, when the information module assembly 30 needs to be replaced or repaired, after the upper cover 10 and the base 20 are directly opened using the sliding lock 40, the user can turn the elastic member 302 on the information module assembly 30, so that the information module assembly 30 can be directly disassembled from the base, thereby replacing and repairing the information module assembly 30. The scheme disclosed in the present invention does not require any tools during disassembly and assembly, and the operation is more convenient, which not only improves the disassembly and assembly efficiency between the upper cover 10 and the base 20, but also improves the disassembly and assembly efficiency between the information module assembly 30 and the base 20.

[0091] In some possible implementations, various aspects of the present disclosure may also be implemented as a method for installing or removing a panel. Fig.13 A schematic block diagram of a method for installing or removing a panel according to some embodiments of the present disclosure is shown.

[0092] like Fig.13 As shown, in step S131, an upper cover, a base and an information module assembly are provided. In one embodiment, a sliding lock mounting hole is provided on the upper cover, which can be used to install the sliding lock. An avoidance portion is provided on the base, and a sliding lock locking wall is also provided on the base. The information module assembly can be installed or removed from the base. It is understandable that, since the upper cover, the base and the information module assembly have been described in detail above, the same content will not be repeated.

[0093] In step S132, the base is fixed. In one embodiment, the base is provided with a base wall-mounting hole. When the base needs to be fixed, a connecting member is inserted through the base wall-mounting hole to fix the base. For example, a screw is inserted through the base wall-mounting hole to fix the base on the wall.

[0094] In step S133, the information module assembly is installed or removed on the base. In one embodiment, the information module assembly may include a first protrusion and an elastic member, and the base may include a guide groove and a first protrusion. When the information module assembly is installed on the base, the information module assembly is moved along the first direction positive F1 to achieve installation. Specifically, the first protrusion is installed in the guide groove, and the first protrusion is used to limit the elastic member, thereby achieving the installation of the information module assembly on the base and limiting the position of the information module assembly after installation. When the information module assembly is removed from the base, the user can move the elastic member and move the information module assembly along the first direction negative -F1 to achieve removal.

[0095] In step S134, the upper cover is buckled onto the base. In one embodiment, after the information module assembly in step S133 is installed or removed onto the base, when the upper cover 10 and the base 20 need to be buckled together, the sliding lock 40 passes through the avoidance portion 206 and moves along the second positive direction F2 toward the position of the sliding lock locking wall 2061, thereby locking the upper cover 10 and the base 20.

[0096] Although multiple embodiments of the present disclosure have been shown and described herein, it will be apparent to those skilled in the art that such embodiments are provided by way of example only. Those skilled in the art may think of many changes, modifications, and alternatives without departing from the thought and spirit of the present disclosure. It should be understood that in the process of practicing the present disclosure, various alternatives to the embodiments of the present disclosure described herein may be adopted. The attached claims are intended to define the scope of protection of the present disclosure, and therefore cover equivalents or alternatives within the scope of these claims.

Claims

1. A detachable panel, characterized in that: include: A base; the base is provided with an opening extending through the first direction, the opening including an opening side wall surface, the base further comprising at least two guide grooves spaced apart along the second direction, and a first protrusion disposed between the two guide grooves; An upper cover, which is buckled onto the base to form a housing of the panel; as well as The information module component is arranged between the upper cover and the base, and the information module component can be moved closer to or farther from the base along a first direction.

2. The panel according to claim 1, characterized in that The information module assembly includes a limiting member, wherein the limiting member includes two first protrusions spaced apart along the second direction, and an elastic member disposed between the two first protrusions; The first protrusion is protruding from the first surface of the information module assembly, and the first protrusion is positively extended along the third direction; the second protrusion is arranged on the elastic member, and the elastic member drives the second protrusion to approach or move away from the first surface, and the second protrusion includes a first plane.

3. The panel according to claim 2, characterized in that The guide groove includes two second protrusions spaced apart along the second direction, the second protrusions are convexly arranged on the side wall of the opening and extend in the opposite direction along the third direction, the interval between the two second protrusions is greater than or equal to the width of the first protrusion along the second direction, and the guide groove is used to accommodate the first protrusion to limit the information module assembly in the second direction; The dimension of the first protrusion along the second direction is greater than the dimension between the two second protrusions. The first protrusion is protruded from the side wall of the opening and extends in the opposite direction along the third direction. The first protrusion includes a second plane, which is perpendicular to the side wall of the opening. The second plane abuts against the first plane to limit the information module assembly in the positive direction of the first direction.

4. The panel according to claim 3, characterized in that The guide groove further includes a first flange wall, which is negatively protruded from the opening side wall along the third direction, and abuts against the bottom surface of the information module assembly to limit the information module assembly in the negative direction of the first direction when the information module assembly is accommodated in the base.

5. The panel according to any one of claims 2 to 4, characterized in that: The information module assembly further comprises a first groove, the first groove comprises a first vertical surface, the first vertical surface extends along the second direction, and the first vertical surface is connected to the bottom surface of the first groove by an inclined surface; the base comprises a third protrusion, the third protrusion comprises a second vertical surface, and the second vertical surface is parallel to the surfaces where the first direction and the second direction are located; wherein, when the information module assembly is accommodated in the base, the first vertical surface and the second vertical surface abut against each other, so as to realize positive limiting of the information module assembly in the first direction.

6. The panel according to any one of claims 2 to 4, characterized in that: The base further comprises a first depression which is concavely arranged on the second surface of the base in the reverse direction along the first direction. When the information module assembly is arranged in the base, the elastic member is flush with the second surface or is located below the second surface in the first direction.

7. The panel according to claim 5, characterized in that The base includes at least four guide grooves, three first protrusions and two third protrusions. The information module assembly is fixed to two adjacent guide grooves, the first protrusion and the third protrusion located between the guide grooves.

8. The panel according to claim 1, characterized in that The base further comprises a tripping slope, which is parallel to the surface where the second direction is located, and is inclined to the surfaces where the first direction and the second direction are located, and has an included angle, so as to facilitate the disassembly or installation of the information module assembly.

9. The panel according to claim 1, characterized in that The information module assembly further comprises a dustproof door, which is covered on the information module assembly and can reciprocate along a third direction; the upper cover is further provided with a hole along the first direction, the dustproof door is accommodated in the hole and can move in the third direction in the hole; Wherein, the dustproof door includes a seventh protrusion, and when the information module assembly is arranged between the upper cover and the base, pulling the seventh protrusion drives the dustproof door to move forward along the third direction.

10. The panel according to claim 9, characterized in that There are one or more holes, and the positions of the holes in the upper cover match the positions where the information module components are placed.