Multifunctional modularized intelligent control device

Through the multi-functional modular intelligent control device, the problem of single installation method and control mode of space scene controller is solved, flexible equipment control and stable infrared signal transmission are realized, and different installation environments and user needs are adapted to different installation environments and user needs.

CN223231434UActive Publication Date: 2025-08-15XIAMEN VANN INTELLIGENT
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422468167.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-12
Publication Date
2025-08-15
Estimated Expiration
2034-10-12

AI Technical Summary

Technical Problem

The existing space scene controller installation method and control mode are single, and all devices in the space unit cannot be controlled, and equipment control cannot be achieved separately as a gateway.

Method used

A multi-functional modular intelligent control device is designed, adopting the outer shell, inner shell and control module structure, combining different mounting brackets and detachable modules, supporting 86 bottom box and wall-mounted installation, with infrared remote control and RF remote control functions, and flexibly combining control modules to meet the needs of different scenarios.

Benefits of technology

It realizes flexible switching of various control methods, improves installation convenience and stability, enhances the functionality and reliability of the equipment, and supports stable transmission of infrared signals and customized appearance.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223231434U_ABST
    Figure CN223231434U_ABST
Patent Text Reader

Abstract

The utility model provides a multifunctional modularized intelligent control device, which comprises an outer shell, an inner shell and a control module, the edge of the outer shell is bent towards one side to form a mounting groove, and the inner shell is embedded and fixed in the mounting groove; the control module is arranged between the outer shell and the inner shell, the middle part of the inner shell is provided with a hole position for a line of the control module to pass through, the inner shell is provided with a raised mounting part facing the control module, and the control module is detachably mounted on the mounting part; the mounting bracket is clamped on one surface, deviating from the outer shell, of the inner shell, and a circuit of the control module penetrates through the middle part of the mounting bracket and is connected with an external power supply. The mounting bracket can adopt multiple mounting modes, the mounting bracket has two matching modes of a rotary mode and a push-pull mode, the number of functional parts of the modularized control module can be increased or decreased according to scenes, multiple control modes can be realized, and appearance customization can be performed according to user requirements.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the field of Internet of Things equipment communication and control, and in particular to a multifunctional modular intelligent control device. Background Art

[0002] The traditional solution for building intelligence is to plan the floors uniformly, place controllers and gateways in the weak current well, and uniformly control the lighting, air conditioning, curtains, related sensors and other equipment on the entire floor.

[0003] Space unit scenarioization is to divide the entire floor into multiple space units according to different usage scenarios, such as independent offices, negotiation rooms, conference rooms, open office areas and other spaces. Each space has an independent controller and gateway to form a space unit. Each space unit can install different sensors to configure its own space linkage plan according to its own usage scenarios.

[0004] The existing space scene controller adopts the ceiling-mounted installation method, which requires a suspended ceiling environment for installation. It is difficult to use a single device to control all the devices in the space unit (it must support both surface-mounted installation without a suspended ceiling and embedded installation with a suspended ceiling). It cannot be used as a gateway alone for control, and the gateway module can also be removed to cooperate with other gateways to realize the function of device control. Therefore, it is necessary to design a customizable multi-functional modular intelligent control device to realize multiple control methods. Utility Model Content

[0005] In response to the problems in the prior art that the space scene controller has a single installation method and control mode, and cannot control all devices in the space unit, the utility model proposes a multifunctional modular intelligent control device to solve the above problems.

[0006] The utility model proposes a multifunctional modular intelligent control device, which includes an outer shell, an inner shell and a control module. The edge of the outer shell is bent to one side to form a mounting groove, and the inner shell is embedded and fixed in the mounting groove; the control module is placed between the outer shell and the inner shell, and a hole is opened in the middle of the inner shell for the circuit of the control module to pass through, and the inner shell is provided with a raised mounting part facing the control module, and the control module can be detachably mounted on the mounting part; the utility model also includes a mounting bracket, which is clamped on the side of the inner shell facing away from the outer shell, and the circuit of the control module passes through the middle of the mounting bracket and is connected to an external power supply.

[0007] By adopting the above technical solution and using mounting brackets with different mounting structures, the intelligent control device can adapt to different installation scenarios, such as using a mounting bracket with a traditional 86 bottom box size or a wall-mounted mounting structure to achieve ceiling installation or wall-mounted installation. At the same time, the detachable control module allows the user to adjust the control module according to usage before the overall assembly of the intelligent control device. The inner shell and the mounting bracket are snap-fitted to make the installation of the intelligent control device more convenient and quick, ensuring a stable position after installation. The hole opened in the middle of the inner shell is not only conducive to the safe passage of the control module's circuit, but also conducive to better heat dissipation when the control module is working, thereby improving the functionality and reliability of the intelligent control device.

[0008] Preferably, a multifunctional mounting hole is provided at the center of the outer shell, a mounting ring is provided on the inner edge of the multifunctional mounting hole, a notch is provided in an array on the mounting ring, and a snap-fit boss is provided on the inner side of the notch.

[0009] By adopting the above technical solution, a multifunctional mounting hole is set up, so that different functional components can be replaced in the center of the outer shell according to the structure of the internal control module. The setting of the mounting ring and the snap boss enables other functional components to be accurately positioned during installation, and the installation is more convenient and quick.

[0010] Preferably, it also includes a raised infrared remote control cover or a flat replacement piece, and the edges of the infrared remote control cover and the replacement piece are provided with quick-release buckles corresponding to the buckle bosses, and the edges of the infrared remote control cover and the replacement piece are also provided with a plurality of positioning columns in an array, and the positioning columns cooperate with the corresponding positioning holes on the mounting ring.

[0011] By adopting the above technical solution, when the control module has an infrared remote control function, a corresponding infrared remote control cover is installed in the center of the outer shell. The specially made infrared remote control cover can adapt to the size and structure of the control module while optimizing the transmission path of the infrared signal. The infrared remote control cover can enhance the strength of the infrared signal, ensuring that the communication between the remote control and the device is more stable and effective. When the infrared remote control function is not needed, a replacement piece is installed in the center of the outer shell. The flat replacement piece can ensure consistency with the appearance of the outer shell, while avoiding exposure of the internal structure. When necessary, patterns can be added to the replacement piece for appearance customization. The setting of the positioning column and the quick-release buckle is conducive to quickly replacing the corresponding infrared remote control cover or replacement piece of the outer shell according to needs.

[0012] Preferably, the control module includes a device control substrate, which is fixed on the mounting portion, and the device control substrate is detachably mounted with an intelligent gateway module, an infrared remote control module, and a radio frequency remote control module, wherein the infrared remote control module is placed at the center of the side of the device control substrate facing away from the inner shell.

[0013] By adopting the above technical solution, users can install the intelligent gateway module, infrared remote control module, and radio frequency remote control module on the device control substrate as needed according to the application scenario to realize the intelligent gateway function and remote control function, and flexibly customize some components of the control module to meet user needs.

[0014] Preferably, a wire hole and a screw hole adapted to the size of an 86 bottom box are provided in the middle of the mounting bracket, and a plurality of wall-mounting holes for wall-mounting are provided around the wire hole on the mounting bracket.

[0015] By adopting the above technical solution, the mounting bracket can be compatible with both 86 bottom box installation and wall-mounted installation. Users can choose a more suitable installation method according to the installation environment during installation, so that the intelligent control device can be compatible with different installation environments.

[0016] Preferably, the mounting bracket is provided with a plurality of L-shaped clamping parts facing the inner shell, and the inner shell is provided with a clamping groove at a position corresponding to the clamping part, and a clamping hole is opened at one end of the clamping groove.

[0017] By adopting the above technical solution, after the clamping part is placed in the clamping groove, its end can move toward the clamping hole, and when the clamping part moves into place, the bending part of the L-shaped clamping part can resist the structure of the edge of the clamping hole, thereby making the fit between the mounting bracket and the inner shell more stable.

[0018] Preferably, the mounting bracket is a circular bracket, and the clamping parts are arranged in a ring array on the edge of the mounting bracket, and the clamping grooves are also arranged in a ring array. The clamping parts are placed in the clamping grooves and rotated to fit into the clamping holes.

[0019] By adopting the above technical solution, the cooperation between the circular mounting bracket and the inner shell can realize a rotational snap connection. When the space of the installation environment is small, the installation space between the mounting bracket and the inner shell is small. The rotational snap connection method can not only increase the installation speed, but also will not be limited by the size of the installation space.

[0020] Preferably, the mounting bracket is a square bracket, and the end points of the square bracket are provided with rounded corners. The clamping parts are arranged in an array along the same direction on two opposite sides of the mounting bracket, and the clamping parts are placed in the clamping grooves and slide into the clamping holes.

[0021] By adopting the above technical solution, when there is sufficient installation space, the clamping part is placed in the clamping groove and then clamped into the clamping hole by a one-way push method. Compared with the rotation action of the rotary clamping, it is simpler and faster, and is suitable for installation scenarios with sufficient space for movement.

[0022] Preferably, the inner shell is provided with a clamping block piece along the clamping direction of the clamping part, and the clamping block piece is placed outside the clamping hole. An arc-shaped stepped depression is provided on the clamping block piece. The edge shape of the clamping part is adapted to the depression. The clamping part passes through the clamping hole and cooperates with the clamping block piece.

[0023] By adopting the above technical solution, the clamping part can be smoothly clamped into the recess after passing through the clamping hole. When contact and clamping are required, the clamping part moves in the opposite direction, and the arc-shaped stepped recess will not produce excessive resistance to the movement of the clamping part. While ensuring stability after clamping, it can also ensure the smoothness and effort-saving degree of the disassembly process.

[0024] Preferably, a positioning ring is provided on the edge of the inner shell, and a number of positioning plates are provided around the inner edge of the outer shell, and the positioning plates are snapped into the inner circle of the positioning ring; a number of positioning mounting columns are provided around the inner shell facing the outer shell, and the positioning mounting columns are fixed to the threaded columns on the inner side of the outer shell by screws.

[0025] By adopting the above technical solution, the positioning ring cooperates with the positioning plate, and the inner shell will not shift in the outer shell during installation. Positioning mounting columns and threaded columns are provided to further improve the positioning accuracy, and screws are used to ensure the stability of the cooperation between the outer shell and the inner shell.

[0026] This application mainly solves the problem of the single installation method and control mode of the space scene controller in the prior art, and the inability to control all the devices in the space unit. This application proposes a multifunctional modular intelligent control device, which can be installed on-site in a standardized manner: an 86 bottom box is reserved, and the corresponding control lines are collected to the 86 boxes reserved for the device connection, or it can be installed in a wall-mounted manner. It can also be selected according to user needs to determine whether to set up an infrared / radio frequency remote control module and equip it with a corresponding infrared remote control cover or replacement piece. Not only can on-site control be achieved through the intelligent gateway module that comes with the intelligent control device and the scene panel, but the intelligent gateway module can also be removed and used with an interactive screen gateway to achieve on-site control. The corresponding pattern and LOGO can also be customized on the replacement piece according to the user's actual needs for appearance. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] The accompanying drawings are included to provide a further understanding of the embodiments and are incorporated into and constitute a part of this specification. The accompanying drawings illustrate the embodiments and, together with the description, serve to explain the principles of the present invention. Other embodiments and many of the expected advantages of the embodiments will be readily apparent as they become better understood by reference to the following detailed description. The elements of the drawings are not necessarily to scale with respect to each other. Like reference numerals designate corresponding similar parts.

[0028] Figure 1 A schematic structural diagram of an intelligent control device according to an embodiment of the present application is shown;

[0029] Figure 2 shows an enlarged schematic diagram of the outer shell structure according to an embodiment of the present application;

[0030] Figure 3 A schematic structural diagram of an infrared remote control cover and a replacement sheet according to an embodiment of the present application is shown;

[0031] Figure 4 A schematic diagram of the control module installation structure according to an embodiment of the present application is shown;

[0032] Figure 5 A schematic diagram of bracket installation according to a specific embodiment of the present application is shown;

[0033] Figure 6 shows a schematic diagram of bracket installation according to another specific embodiment of the present application;

[0034] Figure 7 A schematic structural diagram of the mating surfaces of the inner shell and the outer shell according to an embodiment of the present application is shown.

[0035] The meaning of the numbers in the figure:

[0036] Outer shell 01, inner shell 02, control module 03, mounting groove 04, mounting part 05, mounting bracket 06, multi-function mounting hole 07, mounting ring 08, snap boss 09, infrared remote control cover 10, replacement piece 11, quick release snap 12, positioning column 13, positioning hole 14, device control substrate 15, intelligent gateway module 16, infrared remote control module 17, radio frequency remote control module 18, wire hole 19, screw hole 20, wall mounting hole 21, snap-in part 22, snap-in groove 23, snap-in hole 24, snap-in baffle 25, positioning ring 26, positioning plate 27, positioning mounting column 28, threaded column 29. DETAILED DESCRIPTION

[0037] In the following detailed description, reference is made to the accompanying drawings, which form a part of the detailed description and are shown by way of illustrative specific embodiments in which the present invention may be practiced. In this regard, directional terms, such as "top," "bottom," "left," "right," "up," "down," etc., are used with reference to the orientation of the figures being described. Because the components of the embodiments may be positioned in several different orientations, directional terms are used for illustrative purposes and are in no way limiting. It should be understood that other embodiments may be utilized or logical changes may be made without departing from the scope of the present invention. The following detailed description should therefore not be taken in a limiting sense, and the scope of the present invention is defined by the appended claims.

[0038] The utility model proposes a multifunctional modular intelligent control device. Figure 1FIG. 1 shows a schematic diagram of the structure of an intelligent control device according to an embodiment of the present application, as shown in FIG. Figure 1 As shown, the intelligent control device includes an outer shell 01, an inner shell 02 and a control module 03. The edge of the outer shell 01 is bent to one side to form a mounting groove 04, and the inner shell 02 is embedded and fixed in the mounting groove 04; the control module 03 is placed between the outer shell 01 and the inner shell 02, and a hole is opened in the middle of the inner shell 02 for the circuit of the control module 03 (not shown in the figure) to pass through, and the inner shell 02 is provided with a raised mounting portion 05 facing the control module 03. Specifically, the mounting portion 05 is arranged around the hole opened in the middle of the inner shell 02. The control module 03 is detachably mounted on the mounting portion 05 by means of screws and columns; it also includes a mounting bracket 06, which is clamped on the side of the inner shell 02 facing away from the outer shell 01, and the circuit of the control module 03 passes through the middle of the mounting bracket 06 to be connected to the external power supply. Specifically, the circuit of the control module 03 includes a power line, a network communication line, and a control line connected to external devices, etc. The external devices include but are not limited to lighting, air conditioning, curtains, access control, temperature and humidity sensors, human body detection sensors and other equipment.

[0039] By adopting the above technical solution and using mounting brackets 06 with different mounting structures, the intelligent control device can adapt to different installation scenarios, such as using a mounting bracket 06 with a traditional 86 bottom box size or a wall-mounted mounting structure to achieve ceiling installation or wall-mounted installation. At the same time, the detachable control module 03 allows the user to adjust the control module 03 according to the usage before the overall assembly of the intelligent control device. The inner shell 02 and the mounting bracket 06 are snap-connected, making the installation of the intelligent control device more convenient and quick, ensuring a stable position after installation. The hole opened in the middle of the inner shell 02 is not only conducive to the safe passage of the control module 03's circuit, but also more conducive to the control module 03 having a better heat dissipation effect when working, thereby improving the functionality and reliability of the intelligent control device.

[0040] Figure 2 shows an enlarged schematic diagram of the outer shell structure according to an embodiment of the present application, Figure 3 FIG. 1 shows a schematic structural diagram of an infrared remote control cover and a replacement sheet according to an embodiment of the present application, as shown in FIG. Figure 1-3 As shown, a multifunctional mounting hole 07 is provided at the center of the outer shell 01 , a mounting ring 08 is provided on the inner edge of the multifunctional mounting hole 07 , a notch is provided on the mounting ring 08 , and a snap boss 09 is provided inside the notch.

[0041] By adopting the above technical solution, a multifunctional mounting hole 07 is set, so that the center of the outer shell 01 can be replaced with different functional components according to the structure of the internal control module 03. The setting of the mounting ring 08 and the snap boss 09 enables other functional components to be accurately positioned during installation, and the installation is more convenient and quick.

[0042] Preferably, the intelligent control device also includes a raised infrared remote control cover 10 or a flat replacement piece 11, and the edges of the infrared remote control cover 10 and the replacement piece 11 are provided with quick-release buckles 12 corresponding to the positions of the buckle bosses 09, and the edges of the infrared remote control cover 10 and the replacement piece 11 are also provided with a plurality of positioning columns 13 in an array, and the positioning columns 13 cooperate with the corresponding positioning holes 14 on the mounting ring 08.

[0043] By adopting the above technical solution, when the control module 03 has an infrared remote control function, a corresponding infrared remote control cover 10 is installed in the center of the outer shell 01. The specially made infrared remote control cover 10 can adapt to the size structure of the control module 03 while optimizing the transmission path of the infrared signal. The infrared remote control cover 10 can enhance the strength of the infrared signal to ensure that the communication between the remote control and the device is more stable and effective. When the infrared remote control function is not needed, a replacement piece 11 is installed in the center of the outer shell 01. The flat replacement piece 11 can ensure consistency with the appearance of the outer shell 01, while avoiding exposure of the internal structure. When necessary, patterns can be added to the replacement piece 11 for appearance customization. The setting of the positioning column 13 and the quick-release buckle 12 is conducive to quickly replacing the corresponding infrared remote control cover 10 or replacement piece 11 of the outer shell 01 according to needs.

[0044] Figure 4 A schematic diagram of the control module installation structure according to an embodiment of the present application is shown. Figure 1-4 As shown, the control module 03 includes a device control substrate 15, which is fixed on the mounting portion 05, and the device control substrate 15 is detachably mounted with an intelligent gateway module 16, an infrared remote control module 17, and a radio frequency remote control module 18, wherein the infrared remote control module 17 is placed at the center of the side of the device control substrate 15 away from the inner shell 02. When the device control substrate 15 is installed, the device control substrate 15 is positioned and matched with the columns on the mounting portion 05 through its own holes, and then further locked to the mounting portion 05 by screws.

[0045] Specifically, the intelligent gateway module 16, the infrared remote control module 17, and the radio frequency remote control module 18 are functional modules installed on the device control substrate 15 by means of a wiring interface or detachable pins. The modules can be matched according to the usage scenario. The radio frequency remote control module 18 can select the most commonly used 433 module. The infrared remote control module 17 is arranged in the center of the device control substrate 15 and is adapted to the shape of the infrared remote control cover 10. The device control substrate 15 is connected to control external devices (including but not limited to lighting, air conditioning, curtains, access control, temperature and humidity sensors, human detection sensors, etc.) through wired / wireless means, and uses the corresponding communication protocol to realize device control. The device control substrate 15 is the basic module of the intelligent control device. The other three functional modules need to be based on the basic module to realize the corresponding functions;

[0046] The intelligent gateway module 16 is connected to the device control substrate 15 by wired means to realize communication control. The functions of edge computing and intelligent control gateway are realized through the device control substrate 15 and the operating system (including but not limited to Hongmeng, Ubuntu, Android, etc.). This module is designed for compatibility and can be added or deleted according to the actual scenario needs;

[0047] The infrared remote control module 17 is connected to the device control substrate 15 by wired means to achieve communication control. The infrared remote control module 17 has learning capabilities and can achieve remote control through on-site learning or by matching known devices through its own remote control library. This module is designed for compatibility and can be added or deleted according to actual usage needs.

[0048] The radio frequency remote control module 18 is connected to the device control substrate 15 by wired means to realize communication control. The radio frequency remote control module 18 has the ability to pair with various forms of remote controls, and realize access control remote control according to the on-site pairing of the remote control selected by the customer. This module is designed for compatibility and can be added or deleted according to the actual scenario needs.

[0049] By adopting the above technical solution, users can install the intelligent gateway module 16, infrared remote control module 17, and radio frequency remote control module 18 on the device control substrate 15 as needed according to the application scenario to realize the intelligent gateway function and remote control function, and flexibly customize some components of the control module 03 to meet user needs.

[0050] Figure 5 A schematic diagram of bracket installation according to a specific embodiment of the present application is shown in FIG. Figure 1-5 As shown, a wire hole 19 and a screw hole 20 adapted to the size of an 86 bottom box are provided in the middle of the mounting bracket 06 , and a plurality of wall-mounting holes 21 for wall-mounting are also provided around the wire hole 19 on the mounting bracket 06 .

[0051] By adopting the above technical solution, the mounting bracket 06 can be compatible with both the bottom box installation method and the wall-mounted installation method. During installation, the user can choose a more suitable installation method according to the installation environment, so that the intelligent control device can be compatible with different installation environments.

[0052] Preferably, the mounting bracket 06 is provided with a plurality of L-shaped clamping parts 22 bent toward the inner shell 02 facing the inner shell 02 , and the inner shell 02 is provided with a clamping groove 23 at a position corresponding to the clamping part 22 , and a clamping hole 24 is opened at one end of the clamping groove 23 .

[0053] By adopting the above technical solution, after the clamping portion 22 is placed in the clamping groove 23, its end can move toward the clamping hole 24, and when the clamping portion 22 moves into place, the bending part of the L-shaped clamping portion 22 can abut against the structure of the edge of the clamping hole 24, thereby making the fit between the mounting bracket 06 and the inner shell 02 more stable.

[0054] Preferably, the inner shell 02 is provided with a clamping block 25 along the clamping direction of the clamping portion 22, and the clamping block 25 is placed outside the clamping hole 24. An arc-shaped stepped depression is provided on the clamping block 25, and the edge shape of the clamping portion 22 is adapted to the depression. The clamping portion 22 passes through the clamping hole 24 and cooperates with the clamping block 25.

[0055] By adopting the above technical solution, the clamping part 22 can be smoothly clamped into the recess after passing through the clamping hole 24. When contact clamping is required, the clamping part 22 moves in the opposite direction, and the arc-shaped stepped recess will not produce excessive resistance to the movement of the clamping part 22. While ensuring stability after clamping, it can also ensure the smoothness and effort-saving degree of the disassembly process.

[0056] Preferably, the mounting bracket 06 is a circular bracket, and the clamping portion 22 is arranged in a ring array at the edge of the mounting bracket 06, and the clamping groove 23 is also arranged in a ring array. The clamping portion 22 is placed in the clamping groove 23 and rotated to clamp into the clamping hole 24. The clamping direction of the clamping portion 22 is along the same circumferential direction, that is, the clamping hole 24 of each clamping groove 23 is also located in the same circumferential direction.

[0057] By adopting the above technical solution, the cooperation between the circular mounting bracket 06 and the inner shell 02 can realize a rotational snap connection. When the space of the installation environment 08 is small, the installation space between the mounting bracket 06 and the inner shell 02 is small. The rotational snap connection method can not only increase the installation speed, but also will not be limited by the size of the installation space.

[0058] Figure 6 FIG. 1 shows a schematic diagram of a bracket installation according to another specific embodiment of the present application. Figure 1-6As shown, the mounting bracket 06 is a square bracket. In order to adapt to the shape of the inner shell 02, the end points of the square bracket are provided with rounded corners. The clamping parts 22 are arranged in an array along the same direction on opposite sides of the mounting bracket 06. The clamping parts 22 are placed in the clamping groove 23 and slide into the clamping hole 24.

[0059] Furthermore, a wire management board adapted to the circuit structure of the control module 03 can be provided in the center of the mounting bracket 06 to facilitate classification of circuits of modules with different functions and quick determination of circuit types during disassembly and maintenance.

[0060] By adopting the above technical solution, when there is sufficient installation space, the clamping part 22 is placed in the clamping groove 23 and then clamped into the clamping hole 24 by a one-way push. Compared with the rotation action of the rotary clamping, it is simpler and faster, and is suitable for installation scenarios with sufficient space for movement.

[0061] The above two mounting brackets 06 adopt two kinds of clamping methods, namely rotating and push-pull, which can adapt to different installation environments. At the same time, a safety rope (not shown in the figure) can be passed between the mounting bracket 06 and the inner shell 02 to prevent damage to the intelligent control device caused by falling during disassembly.

[0062] Figure 7 FIG. 1 shows a schematic structural diagram of the inner shell and the outer shell matching surface according to an embodiment of the present application, as shown in FIG. Figure 1-7 As shown, a positioning ring 26 is provided on the edge of the inner shell 02, and a number of positioning plates 27 are provided around the inner edge of the outer shell 01, and the positioning plates 27 are stuck in the inner circle of the positioning ring 26; the inner shell 02 is surrounded by a number of positioning mounting columns 28 facing the outer shell 01, and the positioning mounting columns 28 are fixed to the threaded columns 29 on the inner side of the outer shell 01 by screws. Specifically, a reinforcing rib is provided between the threaded column 29 and the outer shell 01, and a notch is provided on the positioning mounting column 28 to adapt to the reinforcing rib. When the positioning mounting column 28 is mounted on the threaded column 29, the notch can clamp the reinforcing rib to play a positioning role.

[0063] By adopting the above technical solution, the positioning ring 26 cooperates with the positioning plate 27, and the inner shell 02 will not be offset in the outer shell 01 during installation. Positioning mounting columns 28 and threaded columns 29 are provided to further improve the positioning accuracy, and screws are used to ensure the stability of the cooperation between the outer shell 01 and the inner shell 02.

[0064] This application mainly solves the problem of the single installation method and control mode of the space scene controller in the prior art, and the inability to control all the devices in the space unit. This application proposes a multifunctional modular intelligent control device, which can be installed on-site in a standardized manner: an 86 bottom box is reserved, and the corresponding control lines are collected to the 86 boxes reserved for the device connection, or it can be installed in a wall-mounted manner. It can also be selected according to user needs to determine whether to set up an infrared / radio frequency remote control module 18 and equip it with a corresponding infrared remote control cover 10 or replacement piece 11. Not only can on-site control be achieved through the intelligent gateway module 16 that comes with the intelligent control device and the scene panel, but the intelligent gateway module 16 can also be removed and used with an interactive screen gateway to achieve on-site control. The corresponding pattern and LOGO can also be customized on the replacement piece 11 according to the user's actual needs for appearance.

[0065] Obviously, those skilled in the art can make various modifications and changes to the embodiments of the present invention without departing from the spirit and scope of the present invention. In this way, if these modifications and changes are within the scope of the claims of the present invention and their equivalents, the present invention is also intended to cover these modifications and changes. The word "comprising" does not exclude the presence of other elements or steps not listed in the claims. The simple fact that certain measures are recited in mutually different dependent claims does not indicate that the combination of these measures cannot be used to advantage. Any reference signs in the claims should not be considered as limiting the scope.

Claims

1. A multifunctional modular intelligent control device, characterized in that: It includes an outer shell, an inner shell and a control module, the edge of the outer shell is bent to one side to form a mounting groove, and the inner shell is embedded and fixed in the mounting groove; the control module is placed between the outer shell and the inner shell, and a hole is opened in the middle of the inner shell for the circuit of the control module to pass through, and the inner shell is provided with a raised mounting part facing the control module, and the control module is detachably mounted on the mounting part; it also includes a mounting bracket, which is clamped on the side of the inner shell facing away from the outer shell, and the circuit of the control module passes through the middle of the mounting bracket and is connected to an external power supply.

2. The intelligent control device according to claim 1, characterized in that: A multifunctional mounting hole is provided at the center of the outer shell, a mounting ring is provided on the inner edge of the multifunctional mounting hole, notches are provided in an array on the mounting ring, and buckle bosses are provided inside the notches.

3. The intelligent control device according to claim 2, characterized in that: It also includes a raised infrared remote control cover or a flat replacement piece. The edges of the infrared remote control cover and the replacement piece are provided with quick-release buckles corresponding to the positions of the buckle bosses, and the edges of the infrared remote control cover and the replacement piece are also provided with a plurality of positioning columns in an array, and the positioning columns cooperate with the corresponding positioning holes on the mounting ring.

4. The intelligent control device according to claim 1, characterized in that: The control module includes a device control substrate, which is fixed on the mounting portion, and a smart gateway module, an infrared remote control module, and a radio frequency remote control module are detachably mounted on the device control substrate, wherein the infrared remote control module is placed at the center of the side of the device control substrate away from the inner shell.

5. The intelligent control device according to claim 1, characterized in that: The middle part of the mounting bracket is provided with a wire hole and a screw hole adapted to the size of the 86 bottom box, and the mounting bracket is also provided with a plurality of wall-mounting holes surrounding the wire hole for wall-mounting.

6. The intelligent control device according to claim 1, characterized in that: The mounting bracket is provided with a plurality of L-shaped clamping parts facing the inner shell, and the inner shell is provided with a clamping groove at a position corresponding to the clamping part, and a clamping hole is opened at one end of the clamping groove.

7. The intelligent control device according to claim 6, characterized in that: The mounting bracket is a circular bracket, and the clamping parts are arranged in a ring array on the edge of the mounting bracket. The clamping grooves are also arranged in a ring array. The clamping parts are placed in the clamping grooves and rotated to fit into the clamping holes.

8. The intelligent control device according to claim 6, characterized in that: The mounting bracket is a square bracket with rounded corners at its endpoints. The clamping portions are arranged in an array along the same direction on opposite sides of the mounting bracket. The clamping portions are placed in the clamping grooves and slide into the clamping holes.

9. The intelligent control device according to claim 6, characterized in that: The inner shell is provided with a clamping block piece along the clamping direction of the clamping portion, and the clamping block piece is placed outside the clamping hole. The clamping block piece is provided with an arc-shaped stepped recess, the edge shape of the clamping portion is adapted to the recess, and the clamping portion passes through the clamping hole and cooperates with the clamping block piece.

10. The intelligent control device according to claim 1, characterized in that: A positioning ring is provided on the edge of the inner shell, and a plurality of positioning plates are provided around the inner edge of the outer shell, and the positioning plates are snapped into the inner circle of the positioning ring; a plurality of positioning mounting columns are provided around the inner shell facing the outer shell, and the positioning mounting columns are fixed to the threaded columns on the inner side of the outer shell by screws.