Antenna installation structure of intelligent switch panel and intelligent switch panel

By setting raised strips and mounting grooves on the edge of the smart switch panel, combined with plastic material and adhesive connection, the problems of antenna easy detachment and signal interference are solved, achieving stable antenna installation and reliable signal transmission, and optimizing the structural layout and maintainability.

CN224110164UActive Publication Date: 2026-04-10ZHONGSHAN YANFENG LIGHTING TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHONGSHAN YANFENG LIGHTING TECH CO LTD
Filing Date
2025-04-29
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Traditional antenna installation methods are prone to detachment or displacement, and suffer from signal interference and unstable transmission, making it difficult to meet the reliability and signal performance requirements of smart switch panels.

Method used

The design incorporates raised strips and mounting slots along the edges of the smart switch panel. The antenna is installed in the slots, and the wires are routed through the wiring channels. The panels are connected using plastic material and adhesive, and the mid-frame design is combined to reduce electromagnetic interference and improve stability.

Benefits of technology

It improves the installation stability and signal transmission reliability of the antenna, reduces electromagnetic interference, optimizes the internal structural layout, and enhances maintainability and assembly efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an antenna mounting structure of an intelligent switch panel, the antenna mounting structure comprises a front panel assembly and a base assembly connected to the lower end of the front panel assembly, the front panel assembly comprises a first fixed panel, the first fixed panel comprises a raised line transversely arranged at the right end of the lower side surface of the first fixed panel, the raised line is provided with a mounting groove, and an antenna is mounted in the mounting groove; the antenna comprises a signal receiving plate and a wire, a wiring groove communicated with the lower end of the mounting groove is further formed in the lower side face of the first fixing panel, the signal receiving plate is mounted in the mounting groove, and the wire is mounted in the wiring groove. According to the scheme, the mounting groove is formed, so that the problem that the antenna is easy to fall off in a traditional mounting mode is avoided, and the stability of the antenna in the mounting and using processes is improved. As the raised line is arranged at the end part of the side wall of the first fixed panel, the electromagnetic interference is reduced, and the stability of antenna signal transmission is ensured. The utility model further provides the intelligent switch panel comprising the antenna mounting structure of the intelligent switch panel.
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Description

TECHNICAL FIELD

[0001] The utility model relates to switch panel technical field, concretely relates to an antenna mounting structure of intelligent switch panel and intelligent switch panel. BACKGROUND

[0002] With the popularization of smart home technology, as the core component of realizing device remote control, the intelligent switch panel needs to receive and transmit wireless signals such as WiFi, Bluetooth, ZigBee, etc. through the antenna. In order to meet the demand of switch panel light and thin and integration of modern home, the installation method and position design of the antenna become the key technical point.

[0003] The traditional antenna is usually directly pasted on the main control panel by gluing, or fixed to the non-edge position such as the middle area of the internal fixed panel of the switch. This installation method relies on the bonding force of the adhesive, and is easy to cause the antenna to fall off or shift under the influence of factors such as screw fastening, extrusion during wall fitting, vibration and temperature change in long-term use, and further cause signal transmission interruption.

[0004] Since the antenna is installed on the surface of the main control panel or the middle position of the switch, the surrounding dense electronic components such as relays, capacitors, resistors and metal structural parts will shield or electromagnetically interfere with the wireless signal. At the same time, the distance between the antenna and the panel shell is close, and the shell material such as metal frame will also affect the transmission and reception efficiency of the signal, resulting in unstable signal transmission, weak wall penetration ability and even signal failure.

[0005] Therefore, there is an urgent need for an intelligent switch panel with an antenna mounting structure that can ensure the stability of the antenna installation and reduce signal interference, to meet the dual requirements of reliability and signal performance of the intelligent switch panel. UTILITY MODEL CONTENTS

[0006] The utility model overcomes the above technical insufficiency, and provides an antenna mounting structure of intelligent switch panel and intelligent switch panel.

[0007] In order to achieve the above purpose, the utility model adopts the following technical scheme:

[0008] An antenna mounting structure of intelligent switch panel, comprising a front panel assembly and a base assembly connected to the lower end of the front panel assembly, the front panel assembly comprises a first fixed panel, the first fixed panel comprises a protruding strip transversely arranged on the right end of the lower side thereof, an installation groove is formed on the protruding strip, an antenna is installed in the installation groove, the antenna comprises a signal receiving plate and a wire, a wire slot is also formed on the lower side of the first fixed panel and communicates with the lower end of the installation groove, the signal receiving plate is installed in the installation groove, and the wire is installed in the wire slot.

[0009] Further, the base assembly comprises a second fixing panel clamped on the lower side of the first fixing panel, a main control board is installed in the middle of the second fixing panel, and the wires pass through the wire routing groove and are electrically connected to the main control board.

[0010] Further, the convex strip is made of plastic material.

[0011] Further, the signal receiving plate is adhesively connected in the mounting groove, the wires are adhesively connected in the wire routing groove, and the baffle is also adhesively connected in the wire routing groove.

[0012] Further, the base assembly further comprises a middle frame sleeved on the outer circle of the base assembly and the front panel assembly and connecting and fixing the two, and symmetrically arranged through holes are formed in the top wall surface of the middle frame.

[0013] The intelligent switch panel comprises the antenna mounting structure of the intelligent switch panel, and the base assembly further comprises a bottom shell, a circuit board installed in the bottom shell, and a pressing plate for pressing the circuit board in the bottom shell, an installation cavity is formed in the bottom shell, the circuit board is arranged at the bottom of the installation cavity, the pressing plate is clamped in the installation cavity and located on the upper side of the circuit board, the circuit board is connected with a wiring post, and a mounting hole is formed in the lower side of the bottom shell for the wiring post to pass through.

[0014] Further, the front panel assembly further comprises a key plate clamped on the upper side of the first fixing panel and a key panel clamped on the upper side of the key plate, the key panel comprises a circular key arranged in the middle thereof and a second key connected to the outer periphery of the circular key, and the second key is provided with four, and the included angle between two adjacent second keys extending to the center of the circular key is 90 degrees.

[0015] Compared with the prior art, the intelligent switch panel has the following beneficial effects:

[0016] The convex strip is arranged on the edge of the first fixing panel, and the mounting groove is formed, so that the antenna is firmly installed at a specific position, the problem that the antenna is prone to falling off in the traditional installation mode is avoided, and the stability of the antenna during installation and use is improved. Since the convex strip is arranged at the end of the side wall of the first fixing panel, the antenna is away from the main control board and other electronic elements, electromagnetic interference is reduced, the stability of signal transmission is ensured, and the situation that signal transmission is interrupted or unstable is avoided. The arrangement of the wire routing groove enables the wires to be arranged in order, avoids the disorderly distribution of the wires in the intelligent switch panel, optimizes the internal structure layout, improves the overall maintainability, and further improves the stability of the overall installation of the antenna. BRIEF DESCRIPTION OF DRAWINGS

[0017] Fig. 1 is one of the overall structure explosion diagrams of the intelligent switch panel.

[0018] Fig. 2 is the structure diagram of installing the antenna on the first fixed panel.

[0019] Fig. 3 is the second overall structure explosion diagram of the intelligent switch panel. DETAILED DESCRIPTION

[0020] The features of the utility model and other related features are further described below through examples for the understanding of the technicians in the same industry:

[0021] For the convenience of description and understanding, the description related to the position relationship such as front, back, upper, lower, left, right, outer and inner in the utility model is for reference to the direction shown in the drawings.

[0022] As shown in Figs. 1-3 , the utility model provides an antenna installation structure of intelligent switch panel, including front panel assembly 1 and base assembly 2 connected to the lower end of front panel assembly 1. The front panel assembly 1 includes the first fixed panel 11, the first fixed panel 11 includes the convex strip 111 horizontally arranged on the right end of the lower side, the installation groove 1111 is opened on the convex strip 111, and the antenna 3 is installed in the installation groove 1111. In specific implementation, the convex strip 111 and the installation groove 111 are long strip-shaped and have a certain width, wherein the convex strip 111 has a certain height to make the installation groove 111 have a certain depth, so as to facilitate the stable installation of the antenna 3. The antenna 3 includes the signal receiving plate 31 and the wire 32, and the wire groove 112 is also opened on the lower side of the first fixed panel 11 and is communicated with the lower end of the installation groove 1111. The signal receiving plate 31 is installed in the installation groove 1111, and the shape and size of the installation groove 1111 are matched with the signal receiving plate 31 of the antenna 3, so that the signal receiving plate 31 can be closely accommodated, the signal receiving plate 31 is provided with accurate installation position, the installation precision and stability of the signal receiving plate 31 are ensured, the correct installation of the antenna 3 is effectively guaranteed, and the normal reception and emission of the antenna 3 are beneficial. The wire groove 112 is opened on the lower side of the first fixed panel 11 and is communicated with the lower end of the installation groove 1111, and the width and depth thereof can accommodate the wire 32. The wire 32 is installed in the wire groove 112, and the wire groove 112 provides a special wire channel for the wire 32, so that the wire 32 can be arranged in order, the wire 32 is prevented from being distributed in disorder in the interior of the intelligent switch panel, the mutual interference between the wires 32 is reduced, the stability of signal transmission is improved, the stability of the overall installation of the antenna 3 is further improved. It is also convenient for subsequent maintenance and maintenance. In specific implementation, the antenna 3 can be detachably installed in the installation groove 1111, and users can replace different types of antennas according to different use scenarios and needs, such as WiFi antenna, Bluetooth antenna, ZigBee antenna and other antennas 3 with single or multiple functions, so as to realize more extensive wireless communication functions.

[0023] As mentioned above, the first fixed panel 11, as a part of the front panel assembly 1, provides installation basis for the convex strip 111 and the wiring groove 112. The installation groove 1111 on the convex strip 111 is used for installing the signal receiving plate 31 of the antenna 3, while the wiring groove 112 is in communication with the installation groove 1111 to provide wiring passage for the wire 32 of the antenna 3. Such structural layout makes the components cooperate with each other to form an organic whole, which realizes stable installation of the antenna 3 and effective transmission of signals.

[0024] As shown in Figs. 1-3 Further, the base assembly 2 includes a second fixed panel 21 clamped on the lower side of the first fixed panel 11, and the second fixed panel 21 is installed with a main control board 22 in the middle, and the wire 32 is connected to the main control board 22 through the wiring groove 112. The second fixed panel 21 cooperates with the first fixed panel 11 to form a complete panel structure, which protects the internal components such as the main control board 22 and the antenna 3. At the same time, it further presses the antenna, ensures the installation of the antenna 3 more stable, and can further effectively prevent the antenna 3 from loosening or shifting during use, thereby improving the reliability of the product. The clamping cooperation of the second fixed panel 21 and the first fixed panel 11 facilitates the disassembly and assembly of the two, and facilitates the disassembly and replacement of the antenna 3.

[0025] In order to further ensure the stability of the signal transmission of the antenna 3, the convex strip 111 is made of plastic material. Compared with metal and other conductive materials, the plastic material will not produce electromagnetic induction and will not interact with the signals of the antenna 3, thereby ensuring the stability of the signal receiving and transmission of the antenna 3 and improving the wireless communication quality of the intelligent switch panel.

[0026] Continuing as Figs. 1-3As shown, to further ensure the stability of the antenna 3 installation, the signal receiving board 31 is adhesively connected to the mounting groove 1111, and the wire 32 is adhesively connected to the wiring groove 112. A baffle 113 is also adhesively attached to the wiring groove 112. In specific implementation, the baffle 3 is used to further press and fix the wire in the wiring groove 112. Through this adhesive connection method, the signal receiving board 31 is tightly attached to the inner wall of the mounting groove 1111, and the adhesive fills the tiny gaps between them, forming a strong connection. Similarly, the adhesive is evenly applied to the contact surface between the wire 32 and the wiring groove 112, fixing the wire 32 within the wiring groove 112. In specific implementation, users can choose adhesives with better high-temperature resistance, low-temperature resistance, and moisture resistance according to different usage environments and requirements to improve the reliability and stability of the connection. For example, when applying the antenna mounting structure of this invention to a smart switch panel used in a high-temperature environment, silicone adhesive can be selected, which has good high-temperature resistance. Users can also use detachable adhesives to easily separate the signal receiving board 31, wires 32 and baffle 113 when repairing or replacing parts, reducing maintenance costs and difficulty, and making it easy to replace different antennas.

[0027] Continue as Figs. 1-3 As shown, the base assembly 2 also includes a middle frame 23 that is fitted onto the outer ring of the base assembly 2 and the front panel assembly 1 and connects and fixes the two. Symmetrically arranged through holes 231 are provided on the top wall of the middle frame 23. In specific implementations, the two through holes are respectively positioned on the left and right sides of the protrusion 111 to facilitate antenna signal transmission, ensure stable signal output, provide a more direct channel for signal transmission to the signal receiving board 13 of the antenna 3, reduce the obstruction and interference of the middle frame 23 on the signal, and enable the antenna 3 to transmit and receive wireless signals more effectively, ensuring the stability of signal transmission. In specific implementations, the user can choose a material with good wave transmission performance to make the middle frame 23, such as plastic material, etc. Even without the through holes 231, the obstruction and interference on the antenna 3 signal can be reduced, while maintaining the structural strength of the middle frame 23.

[0028] This application also provides a smart switch panel, including the antenna mounting structure of the aforementioned smart switch panel. For example... Figs. 1-3As shown, the base assembly 2 further comprises a bottom shell 24, a circuit board 25 mounted in the bottom shell 24, and a pressing plate 26 for pressing the circuit board 25 in the bottom shell 24. The bottom shell 24 is provided with a mounting cavity 241, the circuit board 25 is arranged at the bottom of the mounting cavity 241, and the pressing plate 26 is clamped in the mounting cavity 241 and located above the circuit board 25. The mounting cavity 241 provides a positioning space for the circuit board 25, and the pressing plate 26 presses the circuit board 25 by clamping to fix the circuit board 25 at the bottom of the mounting cavity 241, preventing the circuit board 25 from being displaced due to vibration or external force. The circuit board 25 is connected with a terminal post 251, and the bottom shell 24 is provided with a mounting hole 242 at the lower side for the terminal post 251 to pass through. The terminal post 251 is exposed through the mounting hole 242 to facilitate the installer to make external connection.

[0029] As described above, the clamping between the components facilitates disassembly and assembly, realizes stable installation and convenient maintenance of the circuit board 25, the pressing plate 26 and the bottom shell 24, replaces the traditional screw fixing mode, realizes quick installation and disassembly through tool-free clamping, improves assembly efficiency, and can effectively avoid the shaking of the circuit board 25 caused by screw loosening in the screw connection mode. In specific implementation, the lower side of the second fixed panel 21 is embedded in the bottom shell 24.

[0030] Continuing as ​As shown, specifically, the front panel assembly 1 further comprises a key plate 12 clamped on the upper side of the first fixed panel 11 and a key panel 13 connected to the upper side of the key plate 12. The key plate 12 serves as an intermediate layer connecting the first fixed panel 11 and the key panel 13, fixes the key panel 13 through the clamping structure, provides a mounting reference for the key panel 13, ensures the key layout accuracy, and converts the key operation into an electrical signal to transmit to the main control board 22 of the base assembly 2. In specific implementation, the surface of the key panel 13 is covered with anti-slip texture, and the inside is in contact with the contacts of the key plate 12 through the silica gel spring piece. The key panel 13 comprises a circular key 131 arranged in the middle and a second key 132 connected to the outer periphery of the circular key 131, and the second key 132 is provided with four. In specific implementation, the circular key 131 can be used for master control switch or mode switching, and the four second keys 132 correspond to different function settings to provide users with more key selection functions. Two adjacent second keys 132 extend to the angle between the centers of the circular key 131, which is 90 degrees, that is, each second key 132 is arranged equidistantly according to the 90-degree angle, forming a cross-symmetric layout. The design of 90-degree symmetric layout conforms to the user's operation habit, and the key function can be quickly located through touch, reducing the false touch caused by blind operation. The clamping design among the first fixed panel 11, the key plate 12 and the key panel 13 realizes the independent disassembly of each component, which is convenient to disassemble; at the same time, when a key fails, it is not necessary to disassemble the entire switch panel, and the corresponding component can be directly replaced.

[0031] As described above, the present case protects an antenna mounting structure of an intelligent switch panel and an intelligent switch panel. All technical solutions similar or similar to the present case should be shown to fall within the protection scope of the present case.

Claims

1. An antenna mounting structure of an intelligent switch panel, comprising a front panel assembly (1) and a base assembly (2) connected to the lower end of the front panel assembly (1), characterized in that: The front panel assembly (1) comprises a first fixed panel (11), the first fixed panel (11) comprises a convex strip (111) arranged on the right end of the lower side of the first fixed panel (11), the convex strip (111) is provided with a mounting groove (1111), and an antenna (3) is mounted in the mounting groove (1111); the antenna (3) comprises a signal receiving plate (31) and a wire (32); the first fixed panel (11) is further provided with a wire slot (112) which is in communication with the lower end of the mounting groove (1111); the signal receiving plate (31) is mounted in the mounting groove (1111); and the wire (32) is mounted in the wire slot (112).

2. The antenna mounting structure of an intelligent switch panel according to claim 1, characterized in that: The base assembly (2) comprises a second fixed panel (21) which is clamped on the lower side of the first fixed panel (11), and a main control panel (22) is mounted in the second fixed panel (21); the wire (32) is connected to the main control panel (22) and passes through the wire slot (112).

3. The antenna mounting structure of an intelligent switch panel according to claim 1, characterized in that: The convex strip (111) is made of plastic material.

4. The antenna mounting structure of an intelligent switch panel according to claim 1, characterized in that: The signal receiving plate (31) is glued in the mounting groove (1111), and the wire (32) is glued in the wire slot (112); and a baffle (113) is further glued on the wire slot (112).

5. The antenna mounting structure of a smart switch panel according to any one of claims 1-4, characterized in that: The base assembly (2) further comprises a middle frame (23) which is sleeved on the outer circle of the base assembly (2) and the front panel assembly (1) and connects and fixes the two; and symmetrically arranged through holes (231) are formed in the top wall of the middle frame (23).

6. A smart switch panel comprising the antenna mounting structure of the smart switch panel of claim 5, characterized in that: The base assembly (2) further comprises a bottom shell (24), a circuit board (25) mounted in the bottom shell (24), and a pressing plate (26) for pressing the circuit board (25) in the bottom shell (24); the bottom shell (24) is provided with a mounting cavity (241); the circuit board (25) is arranged on the bottom of the mounting cavity (241); the pressing plate (26) is clamped in the mounting cavity (241) and located on the upper side of the circuit board (25); and the circuit board (25) is connected with a terminal post (251); and the bottom shell (24) is provided with a mounting hole (242) on the lower side for the terminal post (251) to pass through.

7. The intelligent switch panel of claim 6, wherein: The front panel assembly (1) further comprises a key panel (12) clamped on the upper side of the first fixed panel (11) and a key panel (13) clamped on the upper side of the key panel (12); the key panel (13) comprises a circular key (131) arranged in the middle and a second key (132) connected to the outer periphery of the circular key (131); and the second key (132) is provided with four; the two adjacent second keys (132) extend to the center of the circular key (131) to form an included angle of 90 degrees.