Control device and temperature control equipment

By integrating the first control module, the display module, and the second control module, the problem of complex structure and inconvenient use of existing control devices has been solved, and simple operation and intelligent temperature control have been achieved.

CN223941274UActive Publication Date: 2026-02-24SHENZHEN LUMIUNITED TECH CO LTD
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Patent Information

Application Number
CN202520558649.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2026-02-24
Estimated Expiration
2035-03-27

AI Technical Summary

Technical Problem

Existing control devices are complex in structure and inconvenient to use.

Method used

Design a control device including a first control module, a display module, and a second control module, integrated in the main body shell. The first main control board is electrically connected to the display module and the second control module to realize temperature regulation, and integrates detection components such as temperature and humidity sensors, photosensors, and carbon dioxide sensors.

Benefits of technology

It achieves temperature control with simple structure and easy operation. The integrated setting of built-in detection components facilitates miniaturization design and improves user experience and intelligent control.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to a control device and temperature control equipment. The control device comprises a first control module which comprises a main body shell and a first main control board, and the first main control board is arranged in the main body shell; the display module is arranged at one end of the main body shell and is electrically connected with the first main control board; the second control module is arranged in the main body shell and located on the side, away from the display module, of the first main control board, and the second control module is electrically connected with the first main control board. Thus, the first main control board is arranged in the main body shell of the first control module, the display module and the second control module are integrally installed on the two sides of the first control module, and temperature regulation and control are achieved through cooperation of the first main control board and the display module. The control device is simple in structure, the control device can be directly adjusted and controlled through the display module, meanwhile, all parts in the control device are integrally arranged, and miniaturization design is facilitated.
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Description

Technical Field

[0001] This application relates to the field of temperature control technology, and in particular to a control device and temperature control equipment. Background Technology

[0002] Control devices such as thermostats, also known as temperature controllers, temperature switches, or temperature protectors, are a series of automatic control elements that can physically deform inside the switch according to changes in the temperature of the working environment, thereby producing a conduction or disconnection action. They are devices used to monitor and control the ambient temperature.

[0003] The control device can control equipment requiring temperature control, such as underfloor heating, air conditioning, water heaters, central fresh air systems, and lighting. Currently, the control device has a complex structure and suffers from inconvenience in use. Utility Model Content

[0004] Therefore, it is necessary to provide a control device and temperature control equipment that is simple in structure and easy to operate, addressing the problems of complex structure and inconvenient use of current control devices.

[0005] A control device, comprising:

[0006] The first control module includes a main housing and a first main control board, wherein the first main control board is disposed in the main housing;

[0007] A display module is disposed at one end of the main housing and electrically connected to the first main control board; and

[0008] The second control module is disposed in the main body shell and located on the side of the first main control board away from the display module. The second control module is electrically connected to the first main control board.

[0009] In one embodiment of this application, the first control module further includes a plurality of detection components, which are spaced apart at the edge of the first main control board and electrically connected to the first main control board.

[0010] In one embodiment of this application, the plurality of detection components include at least a temperature and humidity sensor, which is disposed in the main housing and electrically connected to the first main control board;

[0011] And / or, the plurality of the detection components further include at least a photosensitive sensor and a millimeter-wave radar sensor, wherein the photosensitive sensor and the millimeter-wave radar sensor are disposed on the support frame of the first control module and are electrically connected to the first main control board;

[0012] And / or, the plurality of the detection components further include at least a carbon dioxide sensor, the carbon dioxide sensor being disposed in the main housing and electrically connected to the first main control board.

[0013] In one embodiment of this application, the first main control board has a first positioning hole, and the main body shell has a first positioning post. The first main control board is positioned and installed on the main body shell through the cooperation of the first positioning hole and the first positioning post.

[0014] And / or, the main body shell also has a first snap-fit ​​portion, which protrudes from the inner wall of the main body shell and snaps onto the edge of the first main control board.

[0015] And / or, the main housing includes a mounting housing and a partition plate, the partition plate being disposed in the mounting housing and dividing the inner cavity of the mounting housing into a first cavity and a second cavity, the first main control board being located in the first cavity and the second control module being located in the second cavity;

[0016] And / or, the first control module further includes a support frame disposed on the main body housing, the support frame having an extension arm that extends to the side of the first main control board facing the display module and presses against the first main control board;

[0017] And / or, the control device further includes a speaker assembly, the speaker assembly including a speaker and a shock absorber, the speaker being positioned and mounted on the main housing by the shock absorber and located between the detection component of the first control module and the first main control board.

[0018] In one embodiment of this application, the control device further includes a fixed bracket, a pressing component, and a microphone component. The fixed bracket is limited and installed on the main body shell and located on the side of the first main control board away from the detection component. The pressing component includes a pressing element and a button plate. The button plate is disposed on the fixed bracket and electrically connected to the first main control board. The pressing element is pressably positioned and installed in the button hole of the main body shell and actuates and connects to the button plate. The microphone component is disposed on the fixed bracket and electrically connected to the first main control board.

[0019] In one embodiment of this application, the main body shell has positioning protrusions arranged opposite to each other, and the fixing bracket is engaged between the two positioning protrusions and fits against the inner wall of the main body shell;

[0020] And / or, the actuating element includes a button body and an elastic arm, the button body is movably disposed in the button hole, the elastic arm is connected to the button body, the elastic arm has a second positioning hole, the main body shell has a second positioning post, and the elastic arm is installed on the main body shell through the cooperation of the second positioning hole and the second positioning post;

[0021] And / or, the button panel and the microphone assembly are fixed to the mounting bracket by adhesive bonding.

[0022] In one embodiment of this application, the second control module includes a supporting upper shell, a supporting lower shell, and a second main control board, wherein the supporting upper shell covers the supporting lower shell, and the second main control board is disposed between the supporting upper shell and the supporting lower shell;

[0023] The second main control board is electrically connected to the first main control board and an external power source.

[0024] In one embodiment of this application, the second main control board has a fixing hole, and the surface of the upper support shell facing the lower support shell has a fixing post. The second main control board is positioned and installed on the upper support shell through the fixing hole and the fixing post.

[0025] And / or, the surface of the upper support shell facing the lower support shell also has a second snap-fit ​​portion, the second snap-fit ​​portion protruding from the surface of the upper support shell, the second snap-fit ​​portion snapping into and fixing the edge of the second main control board;

[0026] And / or, the second control module further includes a first fastener, the surface of the lower support shell facing the upper support shell having a foolproof groove, the foolproof groove being used to indicate the installation orientation of the lower support shell relative to the upper support shell, and to fasten the upper support shell and the lower support shell together by the first fastener;

[0027] And / or, the surface of the upper support shell facing away from the lower support shell has a guide protrusion, and the main body shell has a guide groove, the guide protrusion cooperating with the guide groove to position and install the upper support shell in the main body shell;

[0028] And / or, the surface of the upper support shell facing away from the lower support shell has a third snap-fit ​​portion, and the main body shell has a fourth snap-fit ​​portion corresponding to the third snap-fit ​​portion. The third snap-fit ​​portion and the fourth snap-fit ​​portion are snap-fitted together to fix the upper support shell to the main body shell.

[0029] And / or, the first main control board has a first plug-in portion, the second main control board has a second plug-in portion, and the first plug-in portion and the second plug-in portion are plugged into each other to make the first main control board and the second main control board electrically connected.

[0030] In one embodiment of this application, the display module includes a screen assembly and a screen bracket. The screen assembly is adhesively disposed on the screen bracket, and the screen bracket is disposed in the main body shell and fixedly connected to the main body shell. The screen assembly is electrically connected to the first main control board.

[0031] The main body shell has a first positioning post, the control device further includes a second fastener, the screen bracket has a positioning part corresponding to the first positioning post, the first positioning post and the positioning part are positioned and cooperated to position the screen bracket and the main body shell, and the second fastener passes through the first positioning post and is installed on the positioning part;

[0032] And / or, the main body housing has a plurality of fastening parts, which are circumferentially spaced on the inner wall of the main body housing to engage with the edge of the screen bracket;

[0033] And / or, the control device is a temperature controller.

[0034] A temperature control device includes a main unit and a control device as described in any of the above technical features;

[0035] The control device is communicatively connected to the host device to control the on / off state of the host device and to adjust the temperature of the host device.

[0036] By adopting the above technical solution, this application has at least the following technical effects:

[0037] The control device and temperature control equipment of this application include a first main control board disposed within the main body housing. A display module and a second control module are located on either side of the first main control board and are at least partially located within the main body housing. The display module and the second control module are electrically connected to the first main control board. An external power source supplies power to the second control module, which converts high-voltage AC power into low-voltage DC power and supplies it to the first main control board. The first main control board then supplies power to the display module.

[0038] This control device features a first main control board housed within the main casing of a first control module. A display module and a second control module are integrated and mounted on either side of the first control module. Temperature regulation is achieved through the cooperation of the first main control board and the display module. This control device has a simple structure, allowing direct adjustment and control via the display module. Furthermore, the integrated design of all components facilitates miniaturization. Attached Figure Description

[0039] Figure 1 This is a schematic diagram of a control device according to an embodiment of this application.

[0040] Figure 2 for Figure 1 The diagram shown is an exploded view of the control device.

[0041] Figure 3 for Figure 2 An exploded view of the control device shown from another perspective.

[0042] Figure 4 for Figure 2 The diagram shown is a schematic representation of the first control module from one perspective.

[0043] Figure 5 for Figure 4 The diagram shows an exploded view of the first control module.

[0044] Figure 6 for Figure 5 The diagram shows the main body shell of the first control module from one perspective.

[0045] Figure 7 for Figure 6 The diagram shows the main body shell from another perspective.

[0046] Figure 8 for Figure 5 A schematic diagram of the support frame in the first control module is shown.

[0047] Figure 9 for Figure 5 A schematic diagram of the speaker assembly in the control device shown.

[0048] Figure 10 for Figure 5 The diagram shows the fixed bracket, the pressing component, and the microphone component in the control device shown.

[0049] Figure 11 for Figure 5 A schematic diagram of the actuator in the control device shown.

[0050] Figure 12 for Figure 2 A schematic diagram of the second control module in the control device shown from one perspective.

[0051] Figure 13 for Figure 12 A schematic diagram of the second control module shown from another perspective.

[0052] Figure 14 for Figure 12 The diagram shows an exploded view of the second control module.

[0053] Figure 15 for Figure 14 The diagram shows an exploded view of the second control module from another perspective.

[0054] Figure 16 for Figure 4 A schematic diagram of the first control module shown from another perspective.

[0055] Figure 17 for Figure 2 The diagram shows a control device displaying a module.

[0056] Figure 18 for Figure 17 The diagram shown is an exploded view of the display module.

[0057] Wherein: 10, control device; 100, first control module; 110, main body shell; 101, mounting shell; 102, partition plate; 103, first cavity; 104, second cavity; 105, first mounting groove; 106, second mounting groove; 111, first positioning post; 112, first snap-fit ​​part; 113, positioning protrusion; 114, second positioning post; 115, guide groove; 116, fourth snap-fit ​​part; 117, fastening part; 120, first main control board; 121, first positioning hole; 122, first insertion part; 130, detection component; 131, temperature and humidity sensor; 132, photosensitive sensor; 1321, third positioning hole; 133, millimeter-wave radar sensor; 134, carbon dioxide sensor; 140, support frame; 141, extension arm; 142. Third positioning post; 200. Display module; 210. Screen assembly; 220. Screen bracket; 221. Positioning part; 300. Second control module; 310. Support upper shell; 311. Fixing post; 312. Second snap-fit ​​part; 313. Guide protrusion; 314. Third snap-fit ​​part; 320. Support lower shell; 321. Anti-foolproof groove; 330. Second main control board; 331. Fixing hole; 332. Second plug-in part; 340. First fastener; 400. Speaker assembly; 410. Speaker; 420. Shock absorber; 500. Fixing bracket; 600. Press assembly; 610. Pressing element; 611. Button body; 612. Elastic arm; 6121. Second positioning hole; 620. Button board; 700. Microphone assembly; 800. Second fastener. Detailed Implementation

[0058] To make the above-mentioned objectives, features, and advantages of this application more apparent and understandable, the specific embodiments of this application are described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a thorough understanding of this application. However, this application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of this application. Therefore, this application is not limited to the specific embodiments disclosed below.

[0059] In the description of this application, it should be understood that if terms such as "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" appear, these terms indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application.

[0060] Furthermore, where the terms "first" and "second" appear, these terms are for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined with "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, where the term "multiple" appears, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0061] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components, unless otherwise expressly limited. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.

[0062] In this application, unless otherwise expressly specified and limited, the use of descriptions such as "above" or "below" the second feature indicates that the first and second features are in direct contact, or indirect contact via an intermediate medium. Furthermore, "above," "on top of," and "over" the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply that the first feature is at a higher horizontal level than the second feature. Similarly, "below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply that the first feature is at a lower horizontal level than the second feature.

[0063] It should be noted that if an element is referred to as being "fixed to" or "set on" another element, it can be directly on the other element or there may be an intervening element. If an element is considered to be "connected to" another element, it can be directly connected to the other element or there may be an intervening element. If so, the terms "vertical," "horizontal," "upper," "lower," "left," "right," and similar expressions used in this application are for illustrative purposes only and do not represent the only possible implementation.

[0064] Understandably, control devices such as thermostats, also known as temperature controllers, temperature switches, or temperature protectors, are a series of automatic control elements that undergo internal physical deformation based on changes in the ambient temperature, thereby causing them to either open or close. They are used to monitor and control ambient temperature. Control devices can control equipment requiring temperature control, such as underfloor heating, air conditioning, water heaters, central ventilation systems, and lighting. Currently, however, control devices have complex structures and present inconveniences in use.

[0065] For this purpose, please refer to Figures 1 to 3 This application provides a control device 10. The control device 10 is applied in a temperature control device (not shown) to realize temperature control of the temperature control device. Figure 1 This is a schematic diagram of a control device 10 according to an embodiment of this application. Figure 2 for Figure 1 An exploded view of the control device 10 shown. Figure 3 for Figure 2 An exploded view of the control device 10 shown from another perspective.

[0066] The temperature control device includes a main unit (not shown) and a control device 10 as described in this application. The control device 10 is communicatively connected to the main unit. In this application, the control device 10 can adjust relevant parameters of the main unit to meet usage requirements. These relevant parameters include, but are not limited to, temperature parameters, and may also include humidity or other parameters. This application only uses the control device 10 adjusting the temperature of the main unit as an example for illustration.

[0067] Thus, the control device 10 can receive signals from the device host and send control signals to the device host to achieve temperature regulation of the device host. In this application, the device host includes, but is not limited to, home appliances such as underfloor heating, air conditioning, water heaters, and central fresh air systems. The control device 10 can adjust the temperature of the device host to meet the user's needs. Of course, the device host may also include industrial control equipment and other devices that require temperature regulation.

[0068] In this application, the control device 10 is mainly a temperature controller. Of course, in other embodiments of this application, the control device 10 may also be other structures or devices that employ AC-DC conversion and are capable of control. This application only uses a temperature controller as an example for explanation.

[0069] The control device 10 of this application has a simple structure and can directly realize the temperature regulation of the main unit of the equipment. Moreover, the various components inside the control device 10 are integrated, which is conducive to the miniaturization design of the control device 10. The specific structure of the control device 10 of one embodiment is described below.

[0070] See Figures 1 to 4 In one embodiment, the control device 10 includes a first control module 100, a display module 200, and a second control module 300. The first control module 100 includes a main housing 110 and a first main control board 120, the first main control board 120 being disposed within the main housing 110. The display module 200 is disposed at one end of the main housing 110 and electrically connected to the first main control board 120. The second control module 300 is disposed within the main housing 110 and located on the side of the first main control board 120 opposite to the display module 200, and is electrically connected to the first main control board 120. Figure 4 for Figure 2 A schematic diagram of the first control module 100 shown from one perspective.

[0071] The first control module 100 and the second control module 300 are components of the control device 10 that implement control. The first control module 100 and the second control module 300 are electrically connected, and the second control module 300 is connected to an external power source. Thus, the second control module 300 can supply power to the first control module 100, and the first control module 100 can output corresponding control signals. Simultaneously, the display module 200 is electrically connected to the first control module 100, and the control signals output by the first control module 100 are displayed through the display module 200 for user convenience.

[0072] Specifically, the first control module 100 includes a main housing 110 and a first main control board 120. The first main control board 120 is the control main board of the first control module 100, and the main housing 110 is the outer housing of the first control module 100, and also the outer housing of the entire control device 10. The first main control board 120 is disposed in the main housing 110, and the second control module 300 is at least partially disposed in the main housing 110 and located on the side of the first main control board 120.

[0073] The main housing 110 has openings at both ends that extend into its internal cavity. A display module 200 is disposed within the main housing 110, and both the display module 200 and the second control module 300 are located within these openings. The display module 200 covers the main housing 110 on the side of the first main control board 120 opposite to the second control module 300, and the second control module 300 covers the main housing 110 on the side of the first main control board 120. In this way, the two ends of the main housing 110 are covered by the display module 200 and the second control module 300 to prevent dust and other contaminants from entering the main housing 110.

[0074] In this application, the first main control board 120 is electrically connected to the second control module 300, and the first main control board 120 is also electrically connected to the display module 200. Simultaneously, the first main control board 120 is also electrically connected to an external device host. Thus, the second control module 300 can supply power to the first main control board 120, and the first main control board 120 can acquire relevant parameters of the device host, such as temperature information, and display them through the display module 200. Furthermore, the first main control board 120 can regulate the temperature of the device host, achieving automatic temperature control, and the temperature of the device itself can also be regulated through the display module 200.

[0075] The control device 10 of the above embodiment has a first main control board 120 disposed in the main housing 110 of the first control module 100. A display module 200 and a second control module 300 are integrated and installed on both sides of the first control module 100. Temperature regulation is achieved through the cooperation of the first main control board 120 and the display module 200. The control device 10 has a simple structure and can be directly adjusted and controlled through the display module 200. At the same time, the integrated arrangement of various components within the control device 10 is conducive to miniaturization design.

[0076] See Figures 5 to 7 In one embodiment, the main body shell 110 includes a mounting shell 101 and a partition plate 102. The partition plate 102 is disposed in the mounting shell 101 and divides the inner cavity of the mounting shell 101 into a first cavity 103 and a second cavity 104. A first main control board 120 is located in the first cavity 103, and a second control module 300 is located in the second cavity 104. Figure 5 for Figure 4 An exploded view of the first control module 100 shown. Figure 6 for Figure 5 The diagram shown is a schematic representation of the main housing 110 of the first control module 100 from one perspective. Figure 7 for Figure 6 A schematic diagram of the main body shell 110 from another perspective.

[0077] The mounting housing 101 is the outer shell of the main housing 110. The mounting housing 101 is hollow and has openings at both ends. A partition plate 102 is disposed in the mounting housing 101, providing mounting support for the first main control board 120 and the second control module 300. Furthermore, the partition plate 102 divides the inner cavity of the mounting housing 101 into two independent cavities: a first cavity 103 and a second cavity 104. The first main control board 120 is disposed in the first cavity 103, and the second control module 300 is disposed in the second cavity 104.

[0078] In this way, the first main control board 120 can be fixed to the partition plate 102 to limit the position of the first main control board 120 and prevent it from shifting, thereby ensuring the performance of the first main control board 120. At the same time, the second control module 300 is also fixed to the partition plate 102 so that the second control module 300 can be accurately electrically connected to the first main control board 120.

[0079] In one embodiment, the edge of the partition plate 102 is recessed relative to the central region of the partition plate 102. In this way, the central region of the partition plate 102 can be arched so that the edge of the first cavity 103 is recessed. Thus, the edge of the first cavity 103 can accommodate some components of the first control module 100, thereby reducing the space occupied by the first control module 100.

[0080] In one embodiment, the partition plate 102 and the mounting housing 101 are an integral structure. This ensures the structural strength of the main housing 110. Of course, in other embodiments of this application, the partition plate 102 and the mounting housing 101 can also be separately provided and reliably connected by means of adhesive or other methods.

[0081] See Figures 5 to 7 In one embodiment, the first main control board 120 has a first positioning hole 121, and the main housing 110 has a first positioning post 111. The first main control board 120 is positioned and installed on the main housing 110 through the cooperation of the first positioning hole 121 and the first positioning post 111. The surface of the partition plate 102 facing the first cavity 103 has a protruding first positioning post 111, and the main control board is provided with the first positioning hole 121 corresponding to the position of the first positioning post 111.

[0082] When the first main control board 120 is installed on the main body shell 110, the first main control board 120 is placed in the first cavity 103 and the first positioning hole 121 is aligned with the first positioning post 111 to ensure that the position of the first main control board 120 relative to the main body shell 110 is accurate, so as to facilitate the later fixing of the first main control board 120 to the main body shell 110.

[0083] See Figure 5 and Figure 6In one embodiment, the number of first positioning posts 111 is multiple, and the number of first positioning holes 121 is adapted to the number of first positioning posts 111 and is correspondingly set. This enables accurate positioning of the first main control board 120 during installation. In this embodiment, the number of first positioning posts 111 and first positioning holes 121 is three. Of course, in other embodiments of this application, the number of first positioning posts 111 and first positioning holes 121 may be other.

[0084] See Figure 4 and Figure 7 In one embodiment, the main body shell 110 further has a first snap-fit ​​portion 112, which protrudes from the inner wall of the main body shell 110 and snaps onto the edge of the first main control board 120. The first snap-fit ​​portion 112 protrudes from the inner wall of the mounting shell 101 and protrudes toward the first cavity 103.

[0085] After the first main control board 120 is installed into the first cavity 103, the first snap-fit ​​part 112 can snap onto the edge of the first main control board 120. At this time, the edge of the first main control board 120 is located on the side of the first snap-fit ​​part 112 away from the display module 200. The first snap-fit ​​part 112 can limit the first main control board 120 and prevent the first main control board 120 from detaching from the first cavity 103.

[0086] In this embodiment, the first snap-fit ​​portion 112 is a snap-fit ​​protrusion, which achieves snap-fit ​​limiting of the edge of the first main control board 120. Of course, in other embodiments of this application, the first snap-fit ​​portion 112 may also be a buckle or the like. Optionally, there may be multiple first snap-fit ​​portions 112, which may be spaced apart and located on the same side edge of the first main control board 120 or on different side edges of the first main control board 120.

[0087] See Figures 4 to 6 , Figure 8 In one embodiment, the first control module 100 further includes a support frame 140 disposed on the main body housing 110. The support frame 140 has an extension arm 141 that extends to the side of the first main control board 120 facing the display module 200 and presses against the first main control board 120. The support frame 140 is a component for fixing the first main control board 120 to the main body housing 110. Figure 8 for Figure 5 A schematic diagram of the support frame 140 in the first control module 100 shown.

[0088] The support frame 140 and the first snap-fit ​​part 112 are located on opposite sides of the first main control board 120. After the first main control board 120 is installed into the first cavity 103, one side of the first main control board 120 is snapped and limited by the first snap-fit ​​part 112, and the support frame 140 is fixed to the partition plate 102. The other side of the first main control board 120 is fixed by the support frame 140. In this way, the reliability of the fixation of the first main control board 120 can be guaranteed, and the first main control board 120 can be prevented from detaching from the main body shell 110.

[0089] It is worth noting that the specific structure of the support frame 140 is not limited in principle, as long as the support frame 140 can fix the first main control board 120. In this embodiment, the support frame 140 has an extension arm 141, which can press against the surface of the first main control board 120 away from the partition plate 102, so that the first main control board 120 is located between the partition plate 102 and the extension arm 141, thereby fixing the first main control board 120. Optionally, there can be multiple extension arms 141, which are spaced apart. Optionally, the support frame 140 is fixed to the partition plate 102 by threaded parts.

[0090] This application uses the cooperation of the first positioning hole 121 and the first positioning post 111 to initially position the first main control board 120 on the main body shell 110. Subsequently, the first main control board 120 is fixed by the first snap-fit ​​part 112 and the support frame 140 to prevent the position of the first main control board 120 relative to the main body shell 110 and ensure the reliability of the operation of the first main control board 120.

[0091] See Figure 4 , Figure 5 and Figure 9 In one embodiment, the control device 10 further includes a speaker assembly 400. The speaker assembly 400 is disposed in the main housing 110 and located at the edge of the first main control board 120, and the speaker assembly 400 is electrically connected to the first main control board 120. Figure 9 for Figure 5 The diagram shows a speaker assembly 400 in the control device 10. The control device 10 can emit sound prompts, such as alarm prompts, through the speaker assembly 400. Of course, the control device 10 can also play relevant parameters of the device host through the speaker assembly 400.

[0092] See Figure 4 , Figure 5 and Figure 9In one embodiment, the speaker assembly 400 includes a speaker 410 and a shock absorber 420. The speaker 410 is positioned and mounted on the main housing 110 via the shock absorber 420, and is located between the detection component 130 of the first control module 100 and the first main control board 120. The speaker 410 is a loudspeaker, and the edge of the speaker 410 has lugs. The shock absorber 420 is disposed in the lugs, and a threaded component passes through the shock absorber 420 and is mounted to the main housing 110.

[0093] This reduces the vibration of the speaker 410 and prevents sound distortion. Optionally, the damping element 420 can be a damping ring or damping pad. Optionally, the damping element 420 can be made of silicone or rubber. Optionally, the speaker 410 has multiple lugs on its edge, each lug housing a damping element 420, which is then fixed to the main housing 110 by corresponding threaded parts.

[0094] See Figure 4 , Figure 5 , Figure 10 and Figure 11 In one embodiment, the control device 10 further includes a fixed bracket 500, a pressing component 600, and a microphone component 700. The fixed bracket 500 is limited and installed on the main body housing 110 and is located on the side of the first main control board 120 away from the detection component 130. The pressing component 600 includes a pressing element 610 and a button plate 620. The button plate 620 is disposed on the fixed bracket 500 and electrically connected to the first main control board 120. The pressing element 610 is pressably positioned and installed in the button hole of the main body housing 110 and touches the button plate 620. The microphone component 700 is disposed on the fixed bracket 500 and electrically connected to the first main control board 120. Figure 10 for Figure 5 The diagram shows the fixed bracket 500, the push-button assembly 600, and the microphone assembly 700 in the control device 10. Figure 11 for Figure 5 A schematic diagram of the actuator 610 in the control device 10 shown.

[0095] The push-button assembly 600 is the component for push-button control of the control device 10, and the microphone assembly 700 is the voice input component of the control device 10. Users can manually adjust the control device 10 using the push-button assembly 600, or use the microphone assembly 700 for voice control, to meet the user's needs in different scenarios. The mounting bracket 500 supports and mounts the push-button assembly 600 and the microphone assembly 700, fixing them to the main housing 110.

[0096] The mounting housing 101 has a through button hole, which connects the outer side of the main housing 110 to the first cavity 103. A push button 610 is movably disposed in the button hole and electrically connected to a button panel 620, which is electrically connected to a first main control board 120. Thus, when the user operates the push button 610, it can activate the button panel 620, thereby transmitting a push signal to the first main control board 120. The first main control board 120 adjusts relevant parameters of the device body according to the push signal. For example, the user can operate the push button 610 by long press, short press, or continuous press, so that the push button 610 activates the button panel 620 and triggers the corresponding push signal. (Details are not provided here.)

[0097] See Figure 4 and Figure 6 In one embodiment, the main body shell 110 has two opposing positioning protrusions 113. The fixing bracket 500 is engaged between the two positioning protrusions 113 and fits against the inner wall of the main body shell 110. The positioning protrusions 113 protrude from the outer wall of the mounting shell 101. The two ends of the fixing bracket 500 abut against the positioning protrusions 113 respectively, so that the fixing bracket 500 is fixed between the two positioning protrusions 113, thereby fixing the fixing bracket 500 to the main body shell 110.

[0098] In one embodiment, the button panel 620 and the microphone assembly 700 are fixed to the mounting bracket 500 by adhesive bonding. This ensures that the button panel 620 and the microphone assembly 700 are reliably fixed to the mounting bracket 500. Optionally, the button panel 620 and the microphone assembly 700 are fixed to the mounting bracket 500 by adhesive backing.

[0099] See Figure 5 , Figure 10 and Figure 11 In one embodiment, the actuating member 610 includes a button body 611 and an elastic arm 612. The button body 611 is movably disposed in the button hole, and the elastic arm 612 is connected to the button body 611. The elastic arm 612 has a second positioning hole 6121, and the main body shell 110 has a second positioning post 114. The elastic arm 612 is installed on the main body shell 110 through the cooperation of the second positioning hole 6121 and the second positioning post 114.

[0100] The button body 611 is movably disposed in the button hole. Elastic arms 612 are symmetrically disposed on both sides of the button body 611, extending towards the first main control board 120. The end of the elastic arm 612 facing away from the button body 611 has a second positioning hole 6121, and the main housing 110 has a second positioning post 114 corresponding to the second positioning hole 6121. The elastic arm 612 is fixed to the second positioning post 114 through the second positioning hole 6121, thereby fixing the actuating element 610 to the main housing 110. When the user operates the button body 611, the button body 611 can be pressed due to the elasticity of the elastic arm 612, and when the button body 611 is released, the elastic arm 612 can reset the button body 611.

[0101] See Figures 2 to 6 In one embodiment, the first control module 100 further includes a plurality of detection components 130, which are spaced apart at the edge of the first main control board 120 and electrically connected to it. Each detection component 130 is a sensor, and the plurality of detection components 130 are disposed within the main housing 110 and electrically connected to the first main control board 120. The detection components 130 can detect relevant data about the space where the device host is located and feed this data back to the first main control board 120. The first main control board 120 can compare the relevant data with pre-stored preset data, thereby controlling the device host to automatically adjust its relevant parameters and achieve automatic control of the device host.

[0102] Thus, multiple detection components 130 are integrated into the main housing 110 and electrically connected to the first main control board 120, enabling the control device 10 to achieve intelligent control and thereby improve the intelligence of the main equipment. In this way, the control device 10 can intelligently adjust according to the environment in which the main equipment is located, eliminating the need for manual adjustment by the user, improving user comfort, and making it easier for the user to use.

[0103] Furthermore, multiple detection components 130 are disposed at the edge of the first main control board 120, that is, the multiple detection components 130 are located between the edge of the first main control board 120 and the inner wall of the main body shell 110. In this way, the space occupied by the detection components 130 in the thickness direction of the first main control board 120 can be reduced, thereby reducing the overall thickness of the control device 10.

[0104] In one embodiment, multiple detection components 130 are located on the same side edge of the first main control board 120, which facilitates the integration of the detection components 130 with the first main control board 120. Of course, in other embodiments of this application, the multiple detection components 130 may also be disposed on different side edges of the first main control board 120.

[0105] See Figures 4 to 6In one embodiment, the plurality of detection components 130 include at least a temperature and humidity sensor 131, which is disposed in the main housing 110 and electrically connected to the first main control board 120. The temperature and humidity sensor 131 can detect the temperature and humidity of the space environment in which the control device 10 is located, and then the temperature and humidity sensor 131 can feed back the specific temperature and humidity values ​​to the first main control board 120. The first main control board 120 can adjust the control host to accurately monitor the indoor temperature and humidity, and adjust it when the specific temperature and humidity values ​​deviate from the set values, so that the indoor temperature and humidity can meet the usage requirements.

[0106] See Figures 4 to 6 In one embodiment, the main housing 110 has a recessed first mounting groove 105, and the temperature and humidity sensor 131 is at least partially disposed in the first mounting groove 105. The first mounting groove 105 enables the positioning and installation of the temperature and humidity sensor 131. After the temperature and humidity sensor 131 is installed in the corresponding first mounting groove 105, the ribbon cable of the temperature and humidity sensor 131 is inserted into the first main control board 120 to achieve electrical connection between the temperature and humidity sensor 131 and the first main control board 120.

[0107] See Figure 4 and Figure 5 In one embodiment, the plurality of detection components 130 further include at least a photosensitive sensor 132 and a millimeter-wave radar sensor 133. The photosensitive sensor 132 and the millimeter-wave radar sensor 133 are disposed on the support frame 140 of the first control module 100 and electrically connected to the first main control board 120. The photosensitive sensor 132 can detect the brightness of the space where the control device 10 is located and feed it back to the first main control board 120, so that the first main control board 120 can adjust the display effect of the display module 200 according to the brightness of the space to achieve a better state for user use.

[0108] The millimeter-wave radar sensor 133 can detect the presence of people in its monitored area and report this information to the first main control board 120. When no one is present, the first main control board 120 can automatically shut down the main unit to avoid wasting resources. Optionally, the photosensor 132 and the millimeter-wave radar sensor 133 can be integrated or installed separately.

[0109] See Figures 4 to 6In one embodiment, the support frame 140 has a third positioning post 142, and the photosensitive sensor 132 and the millimeter-wave radar sensor 133 have third positioning holes 1321. The photosensitive sensor 132 and the millimeter-wave radar sensor 133 are mounted on the third positioning post 142 through the third positioning holes 1321, so that the photosensitive sensor 132 and the millimeter-wave radar sensor 133 are mounted on the support frame 140. The photosensitive sensor 132 and the millimeter-wave radar sensor 133 are mounted on the support frame 140 through the cooperation of the third positioning holes 1321 and the third positioning post 142, and then the ribbon cables of the photosensitive sensor 132 and the millimeter-wave radar sensor 133 are inserted into the first main control board 120.

[0110] See Figure 4 and Figure 5 In one embodiment, the plurality of detection components 130 further include at least a carbon dioxide sensor 134, which is disposed on the main housing 110 and electrically connected to the first main control board 120. The carbon dioxide sensor 134 can detect the air quality in the space where the control device 10 is located and feed it back to the first main control board 120. Once the indoor carbon dioxide concentration exceeds the set value, the first control board controls the speaker assembly 400 (mentioned later) to issue an alarm, thereby preventing the indoor carbon dioxide concentration from exceeding the standard and improving safety.

[0111] In one embodiment, the main housing 110 has a recessed second mounting groove 106, in which the carbon dioxide sensor 134 is at least partially disposed. The second mounting groove 106 enables the positioning and installation of the carbon dioxide sensor 134. After the carbon dioxide sensor 134 is installed in the corresponding second mounting groove 106, its ribbon cable is inserted into the first main control board 120, establishing an electrical connection between the carbon dioxide sensor 134 and the first main control board 120.

[0112] See Figures 1 to 3 , Figures 12 to 16 In one embodiment, the second control module 300 includes an upper supporting shell 310, a lower supporting shell 320, and a second main control board 330. The upper supporting shell 310 covers the lower supporting shell 320, and the second main control board 330 is disposed between the upper supporting shell 310 and the lower supporting shell 320. The second main control board 330 is electrically connected to the first main control board 120 and an external power source. Figure 12 for Figure 2 A schematic diagram of the second control module 300 in the control device 10 shown from one perspective. Figure 13 for Figure 12 A schematic diagram of the second control module 300 from another perspective. Figure 14 for Figure 12 The diagram shown is an exploded view of the second control module 300 from one perspective. Figure 15 for Figure 14 An exploded view of the second control module 300 shown from another perspective.

[0113] The second main control board 330 is the control motherboard of the second control module 300. The second main control board 330 is mounted on the upper support shell 310, and the lower support shell 320 covers the upper support shell 310 and encloses the second main control board 330. The upper support shell 310 and the lower support shell 320 protect the second main control board 330 to ensure its performance. At the same time, the upper support shell 310 and the lower support shell 320 prevent the second main control board 330 from being exposed, thus preventing accidental user contact and ensuring safety during use.

[0114] Furthermore, when the second control module 300 is installed in the second cavity 104 of the main housing 110, the supporting upper shell 310 can cooperate with the partition plate 102 to ensure that the second control module 300 is reliably installed in the main housing 110 and to prevent the second control module 300 from detaching from the main housing 110. At the same time, the second control module 300 is at least partially located in the second cavity 104. Of course, the end of the second control module 300 opposite to the first main control board 120 may also protrude from the main housing 110.

[0115] See Figure 14 and Figure 15 In one embodiment, the second main control board 330 has a fixing hole 331, and the surface of the supporting upper shell 310 facing the supporting lower shell 320 has a fixing post 311. The second main control board 330 is positioned and installed on the supporting upper shell 310 through the cooperation of the fixing hole 331 and the fixing post 311. The fixing post 311 is correspondingly provided with the fixing hole 331. When the second main control board 330 is installed on the supporting upper shell 310, the fixing hole 331 is aligned with the fixing post 311 to ensure that the second main control board 330 is accurately installed on the supporting upper shell 310, which facilitates the subsequent fixing of the second main control board 330.

[0116] See Figure 14 and Figure 15 In one embodiment, the number of fixing posts 311 is multiple, and the number of fixing holes 331 is adapted to the number of fixing posts 311 and is correspondingly arranged. This enables accurate positioning of the second main control board 330 during installation. In this embodiment, the number of fixing posts 311 and fixing holes 331 is three each. Of course, in other embodiments of this application, the number of fixing posts 311 and fixing holes 331 may be other.

[0117] See Figure 14 and Figure 15In one embodiment, the surface of the upper supporting shell 310 facing the lower supporting shell 320 also has a second latching portion 312. The second latching portion 312 protrudes from the surface of the upper supporting shell 310 and latches and fixes the edge of the second main control board 330. After the second main control board 330 is installed on the upper supporting shell 310, the second latching portion 312 can be latched onto the edge of the second main control board 330. At this time, the second latching portion 312 can limit the second main control board 330, preventing the second main control board 330 from detaching from the upper supporting shell 310 and ensuring the reliability of the fixation of the second main control board 330.

[0118] In this embodiment, the second latching portion 312 is a snap-fit. The snap-fit ​​hooks onto the edge of the second main control board 330. Of course, in other embodiments of this application, the second latching portion 312 may also be a limiting baffle or the like. Optionally, there may be multiple second latching portions 312, located on different side edges of the second main control board 330. Further, the second latching portions 312 are arranged diagonally on the supporting upper shell 310, thereby latching the second main control board 330 along the diagonal.

[0119] See Figure 14 and Figure 15 In one embodiment, the second control module 300 further includes a first fastener 340. The surface of the lower support shell 320 facing the upper support shell 310 has a foolproof groove 321. The foolproof groove 321 is used to indicate the installation orientation of the lower support shell 320 relative to the upper support shell 310, and the upper support shell 310 and the lower support shell 320 are fastened together by the first fastener 340. The foolproof groove 321 indicates the direction in which the lower support shell 320 covers the upper support shell 310. After the second main control board 330 is installed on the upper support shell 310, the installation orientation of the lower support shell 320 is observed through the foolproof groove 321, and then the lower support shell 320 is fixed to the upper support shell 310 to prevent the lower support shell 320 from being installed backwards.

[0120] After the lower support shell 320 is installed over the upper support shell 310, the first fastener 340 passes through the lower support shell 320 and is fixed in the upper support shell 310, thus fixing the upper support shell 310 and the lower support shell 320 together and preventing them from separating. Simultaneously, the upper support shell 310 and the lower support shell 320 can also press against the second main control board 330, thus fixing the second main control board 330. Optionally, the first fastener 340 can be a screw, and studs can be provided in the lower support shell 320 and the upper support shell 310 to facilitate the installation of the first fastener 340. Optionally, there can be multiple first fasteners 340, spaced apart, to ensure reliable fixing of the lower support shell 320 and the upper support shell 310.

[0121] See Figure 14 , Figure 15and Figure 16 In one embodiment, the upper support shell 310 has a guide protrusion 313 on the surface opposite to the lower support shell 320, and the main body shell 110 has a guide groove 115. The guide protrusion 313 and the guide groove 115 cooperate to position the upper support shell 310 in the main body shell 110. Figure 16 for Figure 4 The diagram shows the first control module 100 from another perspective. The cooperation between the guide protrusion 313 and the guide groove 115 serves a guiding function. When the second control module 300 is installed into the main housing 110, the guide protrusion 313 is aligned with the guide groove 115, and then the second control module 300 is pushed towards the first main control board 120, causing the guide protrusion 313 to slide along the guide groove 115, thereby allowing the second control module 300 to be installed into the main housing 110.

[0122] See Figure 14 , Figure 15 and Figure 16 In one embodiment, the upper support shell 310 has a third latching portion 314 on the surface opposite to the lower support shell 320, and the main body shell 110 has a fourth latching portion 116 corresponding to the third latching portion 314. The third latching portion 314 and the fourth latching portion 116 are latched together to fix the upper support shell 310 to the main body shell 110. The fourth latching portion 116 is disposed on the partition plate 102, and the third latching portion 314 and the fourth latching portion 116 enable the second control module 300 to be fixed to the main body shell 110.

[0123] After the second control module 300 is installed onto the main housing 110 through the cooperation of the guide protrusion 313 and the guide groove 115, the third snap-fit ​​portion 314 of the supporting upper housing 310 is aligned with the fourth snap-fit ​​portion 116 of the main housing 110, thereby fixing the second control module 300 to the main housing 110. Optionally, the third snap-fit ​​portion 314 and the fourth snap-fit ​​portion 116 are hooks or snap-fit ​​protrusions. Optionally, there are multiple third snap-fit ​​portions 314 and fourth snap-fit ​​portions 116 to reliably fix the second control module 300 to the main housing 110.

[0124] See Figure 14 , Figure 15 and Figure 16In one embodiment, the first main control board 120 has a first plug-in portion 122, and the second main control board 330 has a second plug-in portion 332. The first plug-in portion 122 and the second plug-in portion 332 are plugged into each other to make the first main control board 120 and the second main control board 330 electrically connected. After the first main control board 120 is installed in the main body shell 110, the first plug-in portion 122 on the first main control board 120 is exposed through the partition plate 102. When the second control module 300 is installed in the main body shell 110, the second plug-in portion 332 is aligned with the first plug-in portion 122, and then the second control module 300 is installed in the main body shell 110. At this time, the first plug-in portion 122 and the second plug-in portion 332 are plugged into each other to realize the electrical connection between the first main control board 120 and the second main control board 330.

[0125] It is worth noting that the structural form of the first plug-in part 122 and the second plug-in part 332 is not limited in principle, as long as they can be plugged in to make the first main control board 120 and the second main control board 330 electrically connected. In this embodiment, the first plug-in part 122 is a socket and the second plug-in part 332 is a pin.

[0126] See Figures 1 to 3 , Figures 16 to 18 In one embodiment, the display module 200 includes a screen assembly 210 and a screen bracket 220. The screen assembly 210 is bonded to the screen bracket 220, which is disposed in the main body shell 110 and fixedly connected to the main body shell 110. The screen assembly 210 is electrically connected to the first main control board 120. Figure 17 for Figure 2 The control device 10 shown is a schematic diagram of module 200. Figure 18 for Figure 17 The diagram shows an exploded view of the display module 200. The screen bracket 220 is the support component of the display module 200, and the screen assembly 210 is the screen structure of the display module 200. The screen assembly 210 is electrically connected to the first main control board 120, which controls the display information of the screen assembly 210. The screen assembly 210 is mounted on the screen bracket 220, which supports the screen assembly 210, improving its structural strength and facilitating its installation onto the main housing 110. Optionally, the screen bracket 220 and the screen assembly 210 are fixed by adhesive methods such as dispensing.

[0127] See Figures 2 to 4 , Figure 6In one embodiment, the main housing 110 has a plurality of fastening portions 117, which are circumferentially spaced on the inner wall of the main housing 110 to engage with the edge of the connecting screen bracket 220. The fastening portions 117 protrude from the inner wall of the mounting housing 101 and protrude toward the first cavity 103. After the display module 200 is installed on the main housing 110, the fastening portions 117 can engage with the edge of the screen bracket 220 to initially position the display module 200 on the main housing 110, facilitating the subsequent fixed connection between the display module 200 and the main housing 110.

[0128] Optionally, the fastening part 117 is a snap-fit ​​protrusion that snaps into the edge of the screen bracket 220. Of course, in other embodiments of this application, the fastening part 117 can also be a snap-fit ​​or the like. In this embodiment, the fastening part 117 is located on the side of the first snap-fit ​​part 112 opposite to the first main control board 120. Of course, the fastening part 117 and the first snap-fit ​​part 112 can also be staggered. Optionally, there can be multiple fastening parts 117, which can reliably fix the screen bracket 220.

[0129] See Figures 2 to 4 , Figures 16 to 18 In one embodiment, the main body shell 110 has a first positioning post 111, the control device 10 further includes a second fastener 800, the screen bracket 220 has a positioning part 221 corresponding to the first positioning post 111, the first positioning post 111 and the positioning part 221 are positioned and engaged to position the screen bracket 220 and the main body shell 110, and the second fastener 800 passes through the first positioning post 111 and is installed on the positioning part 221.

[0130] The positioning part 221 is disposed on the surface of the screen bracket 220 opposite to the screen assembly 210, and corresponds to the first positioning post 111 on the main housing 110. After the display module 200 is installed into the main housing 110, the second fastener 800 passes through the first positioning post 111 and is installed in the positioning part 221 to fix the display module 200 to the main housing 110, preventing the display module 200 from shifting relative to the main housing 110. It also fixes the first main control board 120. Optionally, the positioning part 221 is cylindrical. Optionally, the number of positioning parts 221 is the same as the number of first positioning posts 111, and they are arranged in a one-to-one correspondence. Optionally, the second fastener 800 is a screw.

[0131] During assembly of the control device 10 of this application, the screen assembly 210 and the screen bracket 220 are bonded together using an adhesive process to form a display module 200. Subsequently, the push-button assembly 600, the microphone assembly 700, and the speaker assembly 400 are pre-installed in the main housing 110. The push-button 610 of the push-button assembly 600 is installed into the button hole of the main housing 110, and the elastic arm 612 is installed onto the main housing 110 through the engagement of the second positioning hole 6121 and the second positioning post 114. The microphone assembly 700 and the button plate 620 are assembled onto the fixing bracket 500 by adhesive bonding, and then the fixing bracket 500 is installed into the main housing 110 through the corresponding positioning protrusions 113 and fixed to the main housing 110 by threaded parts. The shock absorber 420 is installed on the speaker 410 to form the speaker assembly 400, and then the speaker assembly 400 is fixed into the main housing 110 by threaded parts.

[0132] Then, the first main control board 120 is positioned on the main body shell 110 through the first positioning hole 121 and the first positioning post 111, and the edge of the first main control board 120 is engaged through the first snap-fit ​​part 112 to pre-lock the first main control board 120, thus achieving initial fixation of the first main control board 120. Subsequently, the support frame 140 is fixed to the main body shell 110 by threaded parts. At this time, the extension arm 141 of the support frame 140 can press against the first main control board 120 to achieve fixation of the first main control board 120.

[0133] After the first main control board 120 is fixed, the temperature and humidity sensor 131 is installed into the first mounting slot 105 of the main housing 110, and then the ribbon cable of the temperature and humidity sensor 131 is inserted into the first main control board 120. The photosensitive sensor 132 and the millimeter-wave radar sensor 133 are installed into the support frame 140 through the third positioning hole 1321 and the fourth positioning hole, and fixed with adhesive backing. Then the ribbon cables of the photosensitive sensor 132 and the millimeter-wave radar sensor 133 are inserted into the first main control board 120. The carbon dioxide sensor 134 is installed into the second mounting slot 106 of the main housing 110, and then the ribbon cable of the carbon dioxide sensor 134 is inserted into the first main control board 120.

[0134] Subsequently, the ribbon cable of the screen assembly 210 is inserted into the first main control board 120, and the display module 200 is installed on the outside of the main body. The positioning part 221 on the screen bracket 220 is inserted into the first positioning post 111 of the main body shell 110, and the screen bracket 220 is fastened by the fastening part 117 on the edge of the main body shell 110, thus achieving initial fixation between the display module 200 and the main body shell 110. Then, the second fastener 800 is inserted into the positioning part 221 through the first positioning post 111 of the main body shell 110, thus fixing the main body shell 110 and the display module 200, completing the assembly of the display module 200 and the first control module 100.

[0135] Next, the second control module 300 is assembled. The second main control board 330 and the upper support shell 310 are positioned using fixing holes 331 and fixing posts 311. After the second main control board 330 is installed on the upper support shell 310, its edge is engaged by the second snap-fit ​​part 312, achieving initial positioning of the second main control board 330. The lower support shell 320 is then installed onto the upper support shell 310 after the installation direction is distinguished by the anti-fooling groove 321. The first fastener 340 passes through the lower support shell 320 and is installed on the upper support shell 310 to fix the upper support shell 310 and the lower support shell 320. Simultaneously, the upper support shell 310 and the lower support shell 320 can clamp the second main control board 330, thus fixing the second main control board 330. This completes the assembly of the second control module 300.

[0136] The orientation of the second connector 332 in the second control module 300 is used to prevent misalignment, ensuring that the second connector 332 aligns with the first connector 122 of the first control module 100. Simultaneously, a guide boss on the side of the upper support shell 310 opposite to the lower support shell 320 engages with a guide groove 115 in the main body shell 110 to ensure accurate engagement of the second connector 332 with the first connector 122 and accurate installation of the second control module 300 within the main body shell 110. Once the second control module 300 is in place, the third latching part 314 on the side of the upper support shell 310 opposite to the lower support shell 320 latches with the fourth latching part 116 of the main body shell 110, securing the second control module 300 to the main body shell 110. This completes the electrical connection between the first main control board 120 and the second main control board 330, thereby completing the assembly of the control device 10.

[0137] The control device 10 of this application has a first main control board 120 disposed in the main housing 110 of the first control module 100. A display module 200 and a second control module 300 are integrated and installed on both sides of the first control module 100. Temperature regulation is achieved through the cooperation of the first main control board 120 and the display module 200. The control device 10 has a simple structure and can be directly adjusted and controlled through the display module 200. At the same time, the integrated arrangement of various components within the control device 10 is conducive to miniaturization design.

[0138] Furthermore, the various components in the display module 200, the first control module 100, and the second control module 300 are fixed by adhesive, snap-fit, and threaded connections, facilitating assembly. Meanwhile, the control device 10 integrates multiple detection components 130, which enhance the intelligent effect by intelligently adjusting indoor temperature and humidity, the brightness of the display module 200, and controlling the shutdown of the main unit, thereby improving user comfort and safety, and reducing potential safety hazards.

[0139] This application also provides a temperature control device, including a device host and a control device 10 as described in any of the above embodiments. The control device 10 is communicatively connected to the device host to control the on / off state of the device host and adjust the temperature of the device host. By employing the control device 10, the temperature control device of this application enhances its intelligence, intelligently adjusting indoor temperature and humidity, the brightness of the display module 200, and controlling the shutdown of the device host, thereby improving user comfort and enhancing safety while reducing potential safety hazards.

[0140] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0141] The embodiments described above are merely illustrative of several implementation methods of this application, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this patent application should be determined by the appended claims.

Claims

1. A control device, characterized in that, include: The first control module includes a main housing and a first main control board, wherein the first main control board is disposed in the main housing; The display module is disposed at one end of the main body shell and is electrically connected to the first main control board; as well as The second control module is disposed in the main body shell and located on the side of the first main control board away from the display module. The second control module is electrically connected to the first main control board.

2. The control device according to claim 1, characterized in that, The first control module also includes multiple detection components, which are spaced apart on the edge of the first main control board and electrically connected to the first main control board.

3. The control device according to claim 2, characterized in that, The plurality of the detection components include at least a temperature and humidity sensor, which is disposed in the main housing and electrically connected to the first main control board; And / or, the plurality of the detection components further include at least a photosensitive sensor and a millimeter-wave radar sensor, wherein the photosensitive sensor and the millimeter-wave radar sensor are disposed on the support frame of the first control module and are electrically connected to the first main control board; And / or, the plurality of the detection components further include at least a carbon dioxide sensor, the carbon dioxide sensor being disposed in the main housing and electrically connected to the first main control board.

4. The control device according to claim 1, characterized in that, The first main control board has a first positioning hole, and the main body shell has a first positioning post. The first main control board is positioned and installed on the main body shell through the cooperation of the first positioning hole and the first positioning post. And / or, the main body shell also has a first snap-fit ​​portion, which protrudes from the inner wall of the main body shell and snaps onto the edge of the first main control board. And / or, the main housing includes a mounting housing and a partition plate, the partition plate being disposed in the mounting housing and dividing the inner cavity of the mounting housing into a first cavity and a second cavity, the first main control board being located in the first cavity and the second control module being located in the second cavity; And / or, the first control module further includes a support frame disposed on the main body housing, the support frame having an extension arm that extends to the side of the first main control board facing the display module and presses against the first main control board; And / or, the control device further includes a speaker assembly, the speaker assembly including a speaker and a shock absorber, the speaker being positioned and mounted on the main housing by the shock absorber and located between the detection component of the first control module and the first main control board.

5. The control device according to claim 1, characterized in that, The control device further includes a fixed bracket, a pressing component, and a microphone component. The fixed bracket is limited and installed on the main body shell and located on the side of the first main control board away from the detection component. The pressing component includes a pressing element and a button plate. The button plate is disposed on the fixed bracket and electrically connected to the first main control board. The pressing element is pressably positioned and installed in the button hole of the main body shell and actuates and connects to the button plate. The microphone component is disposed on the fixed bracket and electrically connected to the first main control board.

6. The control device according to claim 5, characterized in that, The main body shell has positioning protrusions arranged opposite each other, and the fixing bracket is engaged between the two positioning protrusions and fits against the inner wall of the main body shell; And / or, the actuating element includes a button body and an elastic arm, the button body is movably disposed in the button hole, the elastic arm is connected to the button body, the elastic arm has a second positioning hole, the main body shell has a second positioning post, and the elastic arm is installed on the main body shell through the cooperation of the second positioning hole and the second positioning post; And / or, the button panel and the microphone assembly are fixed to the mounting bracket by adhesive bonding.

7. The control device according to any one of claims 1 to 6, characterized in that, The second control module includes an upper support shell, a lower support shell, and a second main control board. The upper support shell covers the lower support shell, and the second main control board is disposed between the upper support shell and the lower support shell. The second main control board is electrically connected to the first main control board and an external power source.

8. The control device according to claim 7, characterized in that, The second main control board has a fixing hole, and the surface of the upper support shell facing the lower support shell has a fixing post. The second main control board is positioned and installed on the upper support shell through the fixing hole and the fixing post. And / or, the surface of the upper support shell facing the lower support shell also has a second snap-fit ​​portion, the second snap-fit ​​portion protruding from the surface of the upper support shell, the second snap-fit ​​portion snapping into and fixing the edge of the second main control board; And / or, the second control module further includes a first fastener, the surface of the lower support shell facing the upper support shell having a foolproof groove, the foolproof groove being used to indicate the installation orientation of the lower support shell relative to the upper support shell, and to fasten the upper support shell and the lower support shell together by the first fastener; And / or, the surface of the upper support shell facing away from the lower support shell has a guide protrusion, and the main body shell has a guide groove, the guide protrusion cooperating with the guide groove to position and install the upper support shell in the main body shell; And / or, the surface of the upper support shell facing away from the lower support shell has a third snap-fit ​​portion, and the main body shell has a fourth snap-fit ​​portion corresponding to the third snap-fit ​​portion. The third snap-fit ​​portion and the fourth snap-fit ​​portion are snap-fitted together to fix the upper support shell to the main body shell. And / or, the first main control board has a first plug-in portion, the second main control board has a second plug-in portion, and the first plug-in portion and the second plug-in portion are plugged into each other to make the first main control board and the second main control board electrically connected.

9. The control device according to any one of claims 1 to 6, characterized in that, The display module includes a screen assembly and a screen bracket. The screen assembly is bonded to the screen bracket, and the screen bracket is disposed in the main body shell and fixedly connected to the main body shell. The screen assembly is electrically connected to the first main control board. The main body shell has a first positioning post, the control device further includes a second fastener, the screen bracket has a positioning part corresponding to the first positioning post, the first positioning post and the positioning part are positioned and cooperated to position the screen bracket and the main body shell, and the second fastener passes through the first positioning post and is installed on the positioning part; And / or, the main body housing has a plurality of fastening parts, which are circumferentially spaced on the inner wall of the main body housing to engage with the edge of the screen bracket; And / or, the control device is a temperature controller.

10. A temperature control device, characterized in that, Includes a main unit and a control device as described in any one of claims 1 to 9; The control device is communicatively connected to the host device to control the on / off state of the host device and to adjust the temperature of the host device.