High-degree-of-freedom rapidly-built compatible electronic component mounting and splicing structure
The plug-in positioning structure of the large board, carrier board, vertical board, horizontal board and gasket solves the problem of inconvenient installation of electronic components, achieves stable connection, beautiful and neat, and diversified combination, and has good heat dissipation performance.
Patent Information
- Application Number
- CN202422731967.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-11
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2034-11-11
AI Technical Summary
The existing installation methods of electronic components have problems such as inconvenience in movement, chaotic layout, poor heat dissipation, non-adjustable angles, and unstable positions, and cannot meet the needs of diversified combinations and displays.
A plug-in positioning structure consisting of a large board, a carrier board, a vertical board, a horizontal board and a gasket is adopted. Through the cooperation of the plug-in parts and the plug-in positioning structure, stable connection and optional angle of electronic components are achieved, and gasket support is used to facilitate heat dissipation.
It achieves stable connection of electronic components, is beautiful and neat, easy to move and display, has diverse combinations, solves layout confusion and heat dissipation problems, has low material cost and is easy to operate.
Smart Images

Figure CN223391527U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of electronic component construction and installation, and particularly relates to a high-freedom, fast-construction, compatible electronic component installation and splicing structure. Background Art
[0002] In order to cultivate students' interest in learning physics and computer programming, various electronic components such as main control boards, light strips, buttons, sensors, buzzers, and display screens will be used to combine and build various application scenarios for experiments and teaching.
[0003] As for the installation and splicing of electronic components, they are generally assembled and combined on the desktop, or carried on a tray. There is no universal or compatible installation structure that allows these electronic components to be quickly assembled and installed together. This existing method has the following problems: (1) After installation and splicing, it is not convenient to move and display the entire device. For example, the movement between the components and the wiring harness will cause looseness, disconnection, deformation and position confusion. Therefore, they can only be displayed statically in the original position; (2) After the electronic components are spliced and assembled, the layout is not beautiful, the layout of the wiring harness and electronic components is easy to cause confusion, and it is impossible to achieve the effect of fixing the electronic components and keeping their positions relatively unchanged; (3) Some electronic components such as sensors need to maintain a certain positional relationship with each other, which is difficult to achieve by placing them directly on a tray. This positional relationship needs to be precisely positioned and needs to maintain stability; (4) For some electronic components such as main control boards, heat dissipation also needs to be considered, so a heat dissipation layout needs to be designed and a heat dissipation structure needs to be provided, and direct placement cannot solve the heat dissipation problem; (5) For some electronic components such as display screens, the display angle and position need to be easy to observe, and direct placement cannot solve the problem of fixed angle selection; therefore, in response to the above problems, a high-freedom, fast-build compatible electronic component installation and splicing structure is provided. Utility Model Content
[0004] The utility model provides a high degree of freedom and fast construction of compatible electronic component installation and splicing structure, the installation and splicing structure includes a large plate, a carrier plate, a vertical plate, a horizontal plate and a gasket, the large plate, the carrier plate and the vertical plate are all provided with a plug-in positioning structure, the vertical plate, the horizontal plate and the gasket are all provided with a plug-in structure at both ends, the carrier plate can be installed on the large plate through the gasket, the vertical plate and the gasket can be installed on the large plate and the horizontal plate as needed, and the horizontal plate can be installed on the side of the vertical plate, the horizontal plate is based on a "cross", "X" or "I" shape for horizontal plane plugging or oblique plugging to achieve optional angles; the plug-in positioning structure is evenly distributed, so that each component has a plug-in structure when plugging in Arbitrary combination enables diversified use and arbitrary splicing and use; through the cooperation of the plug-in parts and the plug-in positioning structure, and the installation of electronic components on the carrier board, the vertical board and the horizontal board, the electronic components can be kept stably connected and relatively fixed, avoiding loosening and falling off caused by the entanglement and movement of the wire harness; after the electronic components are installed, the effect is beautiful and neat; the connection between the various components is directly connected by plug-in cooperation, the structure is simple, and the operation is convenient and quick; due to the use of gasket support and the positioning holes and rectangular holes on the carrier board, the control main board after installation is easy to dissipate heat and the installation structure is stable; in summary, the above problems are solved.
[0005] In order to solve the above technical problems, the present invention is achieved through the following technical solutions:
[0006] The utility model discloses a high-freedom, fast-build, compatible electronic component installation and splicing structure, comprising a large board, a carrier board, a vertical board, a horizontal board and a gasket;
[0007] The large board surface array is provided with a first plug-in positioning structure;
[0008] The carrier board surface is provided with a plurality of second plug-in positioning structures corresponding to the positions of the first plug-in positioning structures and having the same shape;
[0009] The two ends of the vertical plate are provided with a first plug-in structure adapted to the first plug-in positioning structure and the second plug-in positioning structure, and the surface of the vertical plate is provided with a third plug-in positioning structure;
[0010] The two ends of the transverse plate are provided with a second plug-in structure adapted to the third plug-in positioning structure;
[0011] The two ends of the gasket are provided with third plugging structures that are compatible with the first plugging positioning structure, the second plugging positioning structure and the third plugging positioning structure.
[0012] Furthermore, the first plug-in positioning structure includes a first positioning hole and first rectangular holes arranged in a cross shape around the first positioning hole.
[0013] Furthermore, the straight-line distance between the edge of the large plate and the adjacent first rectangular hole is x1, the straight-line distance between the side walls of the first rectangular hole on the left and right sides of the first positioning hole is y1, and x1=1 / 2y1.
[0014] Furthermore, the second plug-in positioning structure includes a second positioning hole and a second rectangular hole that are the same as the first positioning hole and the first rectangular hole. The straight-line distance between the edge of the carrier board and the adjacent second rectangular hole is x2, and the straight-line distance between the side walls of the second rectangular holes on the left and right sides of the second positioning hole is y2, and x2=1 / 2y2.
[0015] Furthermore, the third plugging structure includes two first plugs plugged into the first rectangular holes on the left and right sides of the first positioning hole, and the straight-line distance between two adjacent first plugs is the same as y1.
[0016] Furthermore, an open slot is provided in front of a group of first plugs. The open slot is centrally arranged and has a width the same as the diameter of the first positioning hole and a length half the height of the gasket.
[0017] Furthermore, the two gaskets are snap-fitted at one side with the open groove to form a cross-shaped three-dimensional gasket structure, and the cross-shaped three-dimensional gasket structure is plugged into and matched with the first plug-in positioning structure, the second plug-in positioning structure and the third plug-in positioning structure.
[0018] Furthermore, the third plug-in positioning structure includes a third positioning hole that is the same as the first positioning hole and third rectangular holes arranged in a cross, an X or a straight shape around the third positioning hole.
[0019] Furthermore, the first plug-in structure, the second plug-in structure and the end with the open groove in the third plug-in positioning structure are the same.
[0020] Furthermore, the large board, carrier board, vertical board, horizontal board and spacer are made of wood, plastic, metal or ceramic.
[0021] Compared with the prior art, the present invention has the following beneficial effects:
[0022] (1) The mounting structure includes a large board, a carrier board, a vertical board, a horizontal board, and a gasket. The large board, the carrier board, and the vertical board are all provided with a plug-in positioning structure. The vertical board, the horizontal board, and both ends of the gasket are provided with a plug-in structure. The carrier board can be mounted on the large board through the gasket; each electronic component can be connected to the positioning hole by screws to achieve installation and fixation. Compared with the existing direct placement on the desktop, it can avoid the problems of loosening, disconnection, deformation, and position disorder caused by unfixed.
[0023] (2) The various components are quickly assembled and connected by means of plug-in connection, which makes the structure simple and convenient to use and operate;
[0024] (3) The overall structure after installation and splicing is convenient for overall movement and display; the layout of electronic components is beautiful after splicing and assembly, and the positions of wiring harnesses and electronic components are not easily confused, which can achieve the effect of fixing electronic components and keeping their positions relatively unchanged;
[0025] (4) The gasket support is used, and the carrier plate is provided with positioning holes and rectangular holes, etc., so that the control main board after installation is easy to dissipate heat and the installation structure is stable;
[0026] (5) The plug-in positioning structure is evenly distributed, so that each component can be combined in any way when plugged in, thus achieving diversified use, arbitrary splicing and use;
[0027] (6) The vertical plates and gaskets can be installed on the large plates and horizontal plates as needed, and the horizontal plates can be installed on the sides of the vertical plates. The horizontal plates can be plugged in horizontal planes or obliquely based on the shape of a "cross", "X" or "I", so that the angle can be selected;
[0028] (7) The components of this solution are made of wood, plastic, metal or ceramic materials, which have low material cost and simple processing, strong versatility, and are easy to market and apply.
[0029] Of course, any product implementing the present invention does not necessarily need to achieve all of the advantages described above at the same time. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.
[0031] Figure 1 This is a pattern diagram of a high-freedom, fast-build, compatible electronic component installation and splicing structure combination of the utility model;
[0032] Figure 2 This is a second style diagram of a high-freedom, fast-build, compatible electronic component installation and splicing structure combination of the present invention;
[0033] Figure 3 for Figure 2 Structural diagram from perspective A;
[0034] Figure 4 This is a third style diagram of a high-freedom, fast-build, compatible electronic component installation and splicing structure combination of the present invention;
[0035] Figure 5 for Figure 4 Schematic diagram of the structure from the perspective of middle B;
[0036] Figure 6 It is a structural diagram of the combination of the carrier plate and the gasket;
[0037] Figure 7 for Figure 6 Structural diagram from the middle C perspective;
[0038] Figure 8 The action analysis diagram of two gaskets forming a cross-shaped three-dimensional pad structure;
[0039] Figure 9 It is a structural diagram of a large plate;
[0040] Figure 10 It is a structural schematic diagram of a pad;
[0041] Figure 11 Schematic diagram of the structure of a gasket;
[0042] Figure 12 It is a structural schematic diagram of a vertical plate;
[0043] Figure 13 is a structural diagram of another neutral plate;
[0044] Figure 14 It is a structural diagram of a horizontal plate;
[0045] Figure 15 It is a structural diagram of a series of vertical board styles;
[0046] Figure 16 This is a structural diagram for another series of vertical board styles;
[0047] Figure 17 This is the structural diagram of the horizontal board style series;
[0048] Figure 18 This is an application diagram of the installation and splicing structure of compatible electronic components based on the utility model and applied to the knob to control the lighting scene;
[0049] Figure 19 This is an application diagram of the splicing structure of compatible electronic components installed based on the utility model and applied to fire warning scenarios;
[0050] Figure 20 This is an application diagram of the installation and splicing structure of compatible electronic components based on the utility model and applied to the induction access control scene;
[0051] Figure 21 This is an application diagram of the application of the splicing structure of compatible electronic components based on the utility model in ultrasonic ranging scenarios;
[0052] Figure 22 This is an application diagram of the installation and splicing structure of compatible electronic components based on the present utility model and applied to voice control scenarios;
[0053] Figure 23 This is an application diagram of the installation and splicing structure of compatible electronic components based on the utility model applied to the induction faucet scene;
[0054] In the accompanying drawings, the components represented by the reference numerals are as follows:
[0055] 1-large board, 11-first positioning hole, 12-first rectangular hole, 2-gasket, 21-first plug, 22-opening slot, 3-carrier board, 31-second positioning hole, 32-second rectangular hole, 4-vertical board, 41-third positioning hole, 42-third rectangular hole, 5-horizontal board. DETAILED DESCRIPTION
[0056] The following will be combined with the accompanying drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0057] In the description of the present invention, it should be understood that terms such as "surface", "array", "two ends", "circumferential side", "side wall", and "center" indicating orientation or positional relationship are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the components or elements referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.
[0058] See also Figure 1-17 As shown, the utility model is a high-freedom, fast-build, compatible electronic component installation and splicing structure, comprising a large board 1, a carrier board 3, a vertical board 4, a horizontal board 5 and a gasket 2;
[0059] The surface array of the large board 1 is provided with a first plug-in positioning structure;
[0060] The surface of the carrier board 3 is provided with a plurality of second plug-in positioning structures corresponding to the positions of the first plug-in positioning structures and having the same shape;
[0061] Both ends of the vertical plate 4 are provided with a first plug-in structure that is compatible with the first plug-in positioning structure and the second plug-in positioning structure, and the surface of the vertical plate 4 is provided with a third plug-in positioning structure;
[0062] The two ends of the horizontal plate 5 are provided with a second plug-in structure adapted to the third plug-in positioning structure;
[0063] The two ends of the gasket 2 are provided with a third plugging structure adapted to the first plugging positioning structure, the second plugging positioning structure and the third plugging positioning structure.
[0064] The first plug-in positioning structure includes a first positioning hole 11 and first rectangular holes 12 arranged in a cross shape around the first positioning hole 11 .
[0065] The straight-line distance between the edge of the large plate 1 and the adjacent first rectangular hole 12 is x1, and the straight-line distance between the side walls of the first rectangular hole 12 on the left and right sides of the first positioning hole 11 is y1, where x1=1 / 2y1.
[0066] Among them, the second plug-in positioning structure includes a second positioning hole 31 and a second rectangular hole 32 that are the same as the first positioning hole 11 and the first rectangular hole 12. The straight-line distance between the edge of the carrier board 3 and the adjacent second rectangular hole 32 is x2, and the straight-line distance between the side walls of the second rectangular hole 32 on the left and right sides of the second positioning hole 31 is y2, and x2=1 / 2y2.
[0067] The third plug-in structure includes two first plugs 21 plugged into the first rectangular holes 12 on the left and right sides of the first positioning hole 11 , and the straight-line distance between two adjacent first plugs 21 is the same as y1 .
[0068] Among them, an opening slot 22 is provided in front of a group of first plugs 21. The opening slot 22 is centrally arranged and has a width the same as the diameter of the first positioning hole 11 and a length half the height of the gasket 2.
[0069] The above specific dimensions are only corresponding proportional relationships and are not detailed to specific sizes and lengths.
[0070] Among them, the two gaskets 2 are clamped at one side with the open groove 22 to form a cross-shaped three-dimensional gasket structure, and the cross-shaped three-dimensional gasket structure is plugged and matched with the first plug-in positioning structure, the second plug-in positioning structure and the third plug-in positioning structure.
[0071] The third plug-in positioning structure includes a third positioning hole 41 that is the same as the first positioning hole 11 and third rectangular holes 42 that are arranged in a cross, an X, or a straight line around the third positioning hole 41 .
[0072] The first plug-in structure, the second plug-in structure and the end with the open slot 22 in the third plug-in positioning structure are identical.
[0073] The large board 1 , the carrier board 3 , the vertical board 4 , the horizontal board 5 and the spacer 2 are made of wood, plastic, metal or ceramic.
[0074] like Figure 1As shown, a carrier plate 2 is installed on a large plate 1 through a gasket 2 and a first plug-in positioning structure on the large plate 1. Each vertical plate 3 is directly plugged into the first plug-in positioning structure on the large plate 1, and a horizontal plate 5 is plugged and installed on the side of the vertical plate 3;
[0075] like Figure 2-3 The figure shows a scene in which a large board 1 and a carrier board 2 are arranged side by side, and the carrier board 2 is arranged on the side of the long side of the large board 1. The two are connected to form a whole by inserting two gaskets 2 in the adjacent rectangular positioning holes on the side, and the bottom is inserted through a cross-shaped three-dimensional pad structure to form a pad structure;
[0076] like Figure 4-5 As shown, the difference from the above is that the carrier plate 2 is arranged on the short side of the large plate 1, and the length of the carrier plate 2 is the same as the width of the large plate 1;
[0077] like Figure 6-7 As shown, a structural diagram showing a cross-shaped three-dimensional pad structure inserted at the bottom of the carrier plate 2 is shown;
[0078] like Figure 8 The figure shows the installation action diagram of a cross-shaped spacer structure formed by splicing two spacers;
[0079] like Figure 9 As shown, it is a top view of the structure of a large board 1, and the first plug-in positioning structure arranged in an array can be seen;
[0080] like Figure 10 FIG. 1 is a top view of a carrier board 3, on which a plurality of second plug-in positioning structures and mounting holes are provided. The mounting holes are used to be fixedly connected to electronic components by screws.
[0081] like Figure 11 , which is a schematic structural diagram of the gasket 2;
[0082] like Figure 12 , which is a schematic structural diagram of a vertical plate, the vertical plate has seven third positioning holes 41 and matching third rectangular holes 42. In this embodiment, the third rectangular holes 42 form a cross shape;
[0083] like Figure 13 , which is a schematic structural diagram of another vertical plate, the vertical plate has five third positioning holes 41 and matching third rectangular holes 42. In this embodiment, the third rectangular holes 42 are arranged in a cross shape and a straight line at intervals;
[0084] like Figure 14 , which is a schematic structural diagram of a horizontal plate 5, on which an opening groove corresponding to the outline of the electronic components is provided;
[0085] like Figure 15As shown, a series of vertical plate structure diagrams are shown, in which each third rectangular hole 42 forms a cross shape, and the difference lies in the height and the number of positioning holes;
[0086] like Figure 16 As shown, another series of vertical plate structure diagrams are shown, in which the third rectangular holes 42 are arranged in an X-shape or a matching straight-line spacing manner;
[0087] like Figure 17 As shown, a schematic diagram of the structure of the horizontal plate is shown, the difference lies in the length and the style of the opening grooves on the surface corresponding to the outline of the electronic components;
[0088] Although this specific embodiment only lists the above different structures, other forms and styles that meet the requirements of this solution belong to the protection scope of this technical solution;
[0089] like Figure 18 The figure shows an application of a knob-controlled lighting scene. This structure realizes the application scenario of controlling the lamp by the knob. When the knob is turned on or off, the corresponding number of RGB lamp beads on the RGB light strip are lit. The Arduino main control board is superimposed on a corner of the large board through the carrier board. The knob switch and RGB light strip are horizontally mounted on the large board through the connection module and sensor module. The connection and principle of the electronic components belong to the conventional technology in this technical field and will not be described in detail.
[0090] like Figure 19 As shown, this structure realizes the application scenario of fire warning. When the flame sensor detects fire, the buzzer sounds the alarm of a fire truck. The Arduino main control board is stacked on a corner of the large board through the carrier board. The flame sensor and buzzer are vertically mounted on the large board through the connection module and sensor module. The connection and principle of the electronic components are conventional technologies in this technical field and will not be described in detail.
[0091] like Figure 20 As shown, this structure realizes the application scenario of automatic induction access control in a residential area. When the infrared proximity sensor detects an object, it drives the servo to rotate, causing the railing to rise or fall. The Arduino main control board is superimposed on a corner of the large board through the carrier board, the infrared proximity sensor is directly inserted into the large board, and the servo is vertically installed on the large board through the connecting module, that is, the cross plate. The connection and principle of the electronic components belong to the conventional technology in this technical field and will not be elaborated on.
[0092] like Figure 21As shown, this structure realizes the application scenario of ultrasonic ranging. The ultrasonic sensor detects the distance of the object in front and displays it on the LCD screen. The Arduino main control board is superimposed on a corner of the large board through the carrier board. The ultrasonic sensor is directly inserted into the large board. The LCD screen is installed on the large base board through the oblique connection module, that is, the horizontal board. The connection and principle of the electronic components belong to the conventional technology in this technical field and will not be elaborated on.
[0093] like Figure 22 As shown in the figure, this structure implements AI voice control application scenarios. When the voice commands of turning on / off the lights, turning on / off the fans, and fully on are heard, the lights and fans change accordingly. The Mixno main control board is stacked on a corner of the main board via a carrier board, and the RGB lights and fans are mounted on the main board via the control module and sensor module. The connection and principle of the electronic components are conventional in this technical field and will not be elaborated on here.
[0094] like Figure 23 As shown, this structure realizes the application scenario of the induction faucet. When the hand approaches the faucet, the infrared sensor detects the change in model, opens the solenoid valve through the relay, and water flows out of the faucet outlet. The Arduino main control board and the carrier board are arranged side by side in a corner of the large board. The infrared sensor, battery box, relay and solenoid valve are installed on the large board directly or through the cross plate. The connection and principle of the electronic components belong to the conventional technology in this technical field and will not be elaborated on.
[0095] The preferred embodiments of the present invention disclosed above are intended only to help illustrate the present invention. The preferred embodiments do not describe all details in detail, nor do they limit the present invention to the specific embodiments described. Obviously, many modifications and variations are possible based on the contents of this specification. These embodiments are selected and described in detail in this specification to better explain the principles and practical applications of the present invention, thereby enabling those skilled in the art to better understand and utilize the present invention. The present invention is limited only by the claims and their full scope and equivalents.
Claims
1. A high degree of freedom and fast construction compatible electronic component installation and splicing structure, characterized in that: It comprises a large plate (1), a carrier plate (3), a vertical plate (4), a horizontal plate (5) and a gasket (2); The surface array of the large plate (1) is provided with a first plug-in positioning structure; The surface of the carrier plate (3) is provided with a plurality of second plug-in positioning structures corresponding in position to the first plug-in positioning structures and having the same shape; The two ends of the vertical plate (4) are provided with a first plug-in structure adapted to the first plug-in positioning structure and the second plug-in positioning structure, and the surface of the vertical plate (4) is provided with a third plug-in positioning structure; The two ends of the transverse plate (5) are provided with a second plug-in structure adapted to the third plug-in positioning structure; The two ends of the gasket (2) are provided with third plug-in structures that are compatible with the first plug-in positioning structure, the second plug-in positioning structure and the third plug-in positioning structure.
2. A high degree of freedom and fast-build compatible electronic component installation and splicing structure according to claim 1, characterized in that: The first plug-in positioning structure comprises a first positioning hole (11) and first rectangular holes (12) arranged in a cross shape around the first positioning hole (11).
3. A high degree of freedom and fast-build compatible electronic component installation and splicing structure according to claim 2, characterized in that: The straight-line distance between the edge of the large plate (1) and the adjacent first rectangular hole (12) is x1, and the straight-line distance between the side walls of the first rectangular hole (12) on the left and right sides of the first positioning hole (11) is y1, wherein x1=1 / 2y1.
4. The high-freedom, fast-build compatible electronic component installation and splicing structure according to claim 1, characterized in that: The second plug-in positioning structure comprises a second positioning hole (31) and a second rectangular hole (32) which are identical to the first positioning hole (11) and the first rectangular hole (12); the straight-line distance between the edge of the carrier plate (3) and the adjacent second rectangular hole (32) is x2; the straight-line distance between the side walls of the second rectangular hole (32) on the left and right sides of the second positioning hole (31) is y2, and x2=1 / 2y2.
5. The high-freedom, fast-build compatible electronic component installation and splicing structure according to claim 1, characterized in that: The third plug-in structure comprises two first plugs (21) plugged into and matched with the first rectangular holes (12) on the left and right sides of the first positioning hole (11), and the straight-line distance between two adjacent first plugs (21) is the same as y1.
6. The high-freedom, fast-build compatible electronic component installation and splicing structure according to claim 5, characterized in that: An opening slot (22) is provided in front of a group of first plugs (21). The opening slot (22) is centrally arranged and has a width the same as the diameter of the first positioning hole (11), and a length half the height of the gasket (2).
7. The high-freedom, fast-build compatible electronic component installation and splicing structure according to claim 6, characterized in that: The two gaskets (2) are connected at one side with an opening groove (22) to form a cross-shaped three-dimensional gasket structure, and the cross-shaped three-dimensional gasket structure is plugged and matched with the first plug-in positioning structure, the second plug-in positioning structure and the third plug-in positioning structure.
8. The high-freedom, fast-build compatible electronic component installation and splicing structure according to claim 1, characterized in that: The third plug-in positioning structure comprises a third positioning hole (41) identical to the first positioning hole (11) and a third rectangular hole (42) arranged around the third positioning hole (41) in a cross, an X, or a straight shape.
9. The high-freedom, fast-build compatible electronic component installation and splicing structure according to claim 1, characterized in that: The first plug-in structure, the second plug-in structure and the end with the opening groove (22) in the third plug-in positioning structure are the same.
10. The high-freedom, fast-build compatible electronic component installation and splicing structure according to claim 1, characterized in that: The large plate (1), the carrier plate (3), the vertical plate (4), the horizontal plate (5) and the gasket (2) are made of wood, plastic, metal or ceramic.