Wireless controller structure and electric control device

By employing an innovative connection method between the signal conduction component, signal transmission component, and PCB board component in the wired controller, the problems of large size and high cost of traditional wired controllers are solved, achieving miniaturization and thinning, and improving signal transmission efficiency and production efficiency.

CN224306090UActive Publication Date: 2026-05-29SONG RES ELECTRONICS TECH

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SONG RES ELECTRONICS TECH
Filing Date
2025-05-23
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

Traditional wired controllers have large antennas, which makes the overall size of the controller larger, increasing production costs and making it unsuitable for use in confined spaces.

Method used

The signal conduction component is connected to the signal transmission component and the PCB board assembly. A stable assembly space is provided through the receiving cavity. The signal conduction component is a metal spring, and the signal transmission component is made of soft material. The signal conduction component, the signal transmission component, and the PCB board assembly are arranged in parallel. The transition part is made of elastic material. The housing assembly is designed in a split manner to simplify assembly.

Benefits of technology

This technology enables the miniaturization and thinning of the wired controller, reduces production costs, improves signal transmission efficiency and response speed, simplifies assembly, and enhances economic benefits.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a kind of wire controller structure and electric control equipment, belong to electric control equipment field, wire controller structure includes: shell assembly, the shell assembly is equipped with accommodating cavity;Signal transmitting component, the signal transmitting component is set on the shell assembly;PCB board component, the PCB board component is set on the shell assembly and is located in the accommodating cavity, the PCB board component is adjacent with the signal transmitting component Setting, the PCB board component is opposite with the signal transmitting component Setting;Signal conduction component, the signal conduction component is respectively with the signal transmitting component and the PCB board component electric connection, the signal conduction component is located between the signal transmitting component and the PCB board component.This application discloses wire controller structure by signal conduction component respectively with signal transmitting component and PCB board component Electric connection realizes the stable delivery of signal.This design can make the whole wire controller structure more miniaturization.
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Description

Technical Field

[0001] This utility model relates to the field of electrical control equipment, and in particular to a wired controller structure and electrical control equipment. Background Technology

[0002] A wired controller is a device used to control equipment. Generally, a wired controller includes an antenna to ensure stable radio frequency performance. However, traditional wired controller antennas are typically large and thick, making them unsuitable for use in confined spaces. This necessitates a large internal space design for the wired controller, resulting in a bulky overall product, increased production costs, and low economic efficiency. Therefore, there is a need to develop a wired controller that meets the demands of modern electronic devices for thinner, lighter, and smaller designs. Utility Model Content

[0003] Therefore, it is necessary to provide a wire controller structure and electrical control equipment to address the problem that the large antenna size of traditional wire controllers leads to a large overall size of the wire controller and thus increased production costs.

[0004] A wired controller structure includes: a housing assembly having a receiving cavity; a signal transmitting assembly disposed on the housing assembly; a PCB board assembly disposed on the housing assembly and located within the receiving cavity, the PCB board assembly being adjacent to and opposite to the signal transmitting assembly; and a signal conducting assembly electrically connected to both the signal transmitting assembly and the PCB board assembly, the signal conducting assembly being located between the signal transmitting assembly and the PCB board assembly, and the signal conducting assembly being used to transmit signals from the PCB board assembly to the signal transmitting assembly.

[0005] The first aspect of this application discloses a wired controller structure, which provides a stable assembly space for a PCB board assembly, a signal transmitting assembly, etc., through the configuration of a housing cavity. The signal transmitting assembly, such as an antenna, enables control of external devices. Stable signal transmission is achieved through signal conduction components, such as metal springs, electrically connected to both the signal transmitting assembly and the PCB board assembly. This design eliminates the need for traditional cables or independent antennas, reduces the overall volume of the housing cavity, and makes the entire wired controller structure more compact and user-friendly. Furthermore, the direct contact and conduction between the signal conducting assembly and the PCB board assembly results in high signal transmission efficiency and fast response speed. The adjacent and relative arrangement of the PCB board assembly and the signal transmitting assembly significantly reduces the thickness and volume of the housing cavity, achieving overall thinness and lightness, reducing production costs, and improving economic efficiency. The cooperation of the housing assembly, signal transmitting assembly, and PCB board assembly enables the complete functionality of the wired controller. The overall structure is simple, effectively reducing assembly difficulty, production complexity, and failure rate.

[0006] In one embodiment, the horizontal plane of the PCB board assembly is parallel to the horizontal plane of the signal transmitting assembly. By aligning the PCB board assembly and the signal transmitting assembly parallelly, instead of the space wasted by the traditional staggered layout, the space occupied by both the PCB board assembly and the signal transmitting assembly can be significantly reduced, resulting in a thinner and smaller overall product. This design has positive implications for reducing production costs and improving economic efficiency.

[0007] In one embodiment, one end of the signal conducting component abuts against the PCB board assembly, and the other end of the signal conducting component abuts against the signal transmitting component. Signal transmission is achieved by having both ends of the signal conducting component abut against the PCB board assembly and the signal transmitting component respectively. This method of conducting signals through contact with a smaller signal conducting component significantly reduces the product's size, improves space utilization, increases signal transmission efficiency, and enhances signal response speed. Furthermore, it effectively reduces assembly difficulty and improves production efficiency.

[0008] In one embodiment, the signal conduction component is a metal spring. By using a metal spring as the signal conduction component, the thinness of the metal spring significantly reduces the thickness of traditional connection structures, making the internal layout of the product more compact. This design effectively reduces the overall size of the product, allowing the PCB board assembly and signal transmission assembly to be integrated into a narrow cavity, reducing costs and increasing profitability.

[0009] In one embodiment, the signal transmitting component is made of a soft material. By using a soft material, the signal transmitting component, such as an antenna, can be directly attached to the cavity wall, resulting in a thinner, lighter, and smaller overall product. This design simplifies the manufacturing process of the parts and simplifies the assembly of the entire product. The signal transmitting component can be manufactured in various shapes as needed.

[0010] In one embodiment, the signal conduction component includes a first connecting portion, a transition portion, and a second connecting portion. The first connecting portion, the transition portion, and the second connecting portion are connected sequentially. The first connecting portion is electrically connected to the PCB board assembly, and the second connecting portion is electrically connected to the signal transmitting component. The transition portion is located between the first connecting portion and the second connecting portion. The transition portion enhances the overall rigidity of the signal conduction component, preventing deformation or breakage of the first and second connecting portions during use and ensuring long-term connection reliability. This design guarantees a stable connection between the first connecting portion and the PCB board assembly, and a connection between the second connecting portion and the signal transmitting component, thereby ensuring stable signal transmission and improving the overall reliability of the structure.

[0011] In one embodiment, the transition portion includes a first arc-shaped portion and a second arc-shaped portion, with the first connecting portion, the first arc-shaped portion, the second arc-shaped portion, and the second connecting portion connected sequentially. The first and second arc-shaped portions enhance the overall structural strength of the signal conduction component, improving its resistance to bending and deformation, and ensuring long-term reliability. Furthermore, the first and second arc-shaped portions effectively reduce the overall height of the signal conduction component, making the product thinner and smaller.

[0012] In one embodiment, the first connecting portion, the second connecting portion, and the transition portion are integrally formed. By integrating the first connecting portion, the second connecting portion, and the transition portion, the integrated molding eliminates the weak points in the connections of traditional segmented structures, significantly improving overall mechanical strength and avoiding the risk of breakage due to vibration or deformation. Furthermore, the manufacturing process is simpler and the cost is lower.

[0013] In one embodiment, the transition portion is made of an elastic material. By making the transition portion of an elastic material, stable contact between the signal conduction component and the signal transmission component and PCB board component can be ensured, improving resistance to deformation, enhancing product reliability, and thus extending the product's lifespan.

[0014] In one embodiment, the housing assembly includes a shell structure and a cover structure. The shell structure has an opening, and the cover structure is disposed on the shell structure and covers the opening. The cover structure and the shell structure enclose the receiving cavity. The receiving cavity is formed by the shell structure and the cover structure, and these two structures can be separated, making product assembly and disassembly simpler and more convenient, facilitating the assembly of components such as signal conduction components, signal transmission components, and PCB board assemblies.

[0015] In one embodiment, one of the signal transmitting component and the PCB board assembly is disposed on the housing structure, and the other of the signal transmitting component and the PCB board assembly is disposed on the cover structure. By separately assembling the signal transmitting component and the PCB board assembly on the housing structure and the cover structure, respectively, they can be assembled separately before being assembled as a whole, forming an assembly line production mode, which can effectively improve production efficiency and increase economic benefits. Furthermore, the parallel arrangement of the signal transmitting component and the PCB board assembly allows for a thinner and smaller overall product design.

[0016] In one embodiment, the cover structure is detachably mounted on the housing structure. This detachable mounting of the cover structure simplifies and facilitates the assembly and disassembly of the product, making it easier to assemble components such as signal conduction components, signal transmission components, and PCB board components.

[0017] In one embodiment, the cover structure is located at the bottom of the shell structure. By placing the cover structure at the bottom of the shell structure, it does not affect the display of the top surface structure of the cover structure; for example, a panel can be installed on the top surface of the cover structure. The cover structure does not occupy the installation space of the panel, resulting in a more rational design.

[0018] In one embodiment, the shell structure includes a shell body and a mounting post. The cover structure is disposed on the shell body, and the shell body has the opening. The shell body and the cover structure enclose the receiving cavity. The mounting post is disposed on the shell body and located within the receiving cavity, and the PCB board assembly is disposed on the mounting post. By directly molding the mounting post to the shell body, a stable mounting base is provided for the PCB board assembly, avoiding the loosening risk of traditional bracket structures, ensuring the positioning accuracy of the PCB board assembly, and enabling the PCB board assembly to operate stably.

[0019] In one embodiment, the PCB assembly is provided with a first mounting hole, and the mounting post is adapted to the first mounting hole. The precise fit between the first mounting hole and the mounting post forms a mechanical positioning reference, ensuring that the PCB assembly is accurately positioned within the receiving cavity and improving assembly efficiency.

[0020] In one embodiment, the mounting post includes a first post and a second post. The first post is disposed on the housing body and located within the receiving cavity, and the second post is disposed on the first post. The diameter of the second post is smaller than the diameter of the first post, and the PCB board assembly is disposed on the second post. The first post provides a large-area foundation support, ensuring that the mounting plane of the PCB board assembly remains horizontal and stable, thus improving the stability and reliability of the PCB board assembly installation.

[0021] In one embodiment, the cover structure has a second mounting hole, the mounting post has a third mounting hole, and a connector is also included. The connector mates with the second and third mounting holes to connect the cover structure and the mounting post. By using a connector such as a bolt to mate with the second mounting hole of the cover structure and the third mounting hole of the mounting post, the cover structure and the shell structure are stably assembled together, ensuring the overall stability and reliability of the product.

[0022] In one embodiment, the signal transmitting component is attached to the housing assembly using M-tape. The signal transmitting component can transmit antenna signals simply by being attached directly to the housing assembly using M-tape. Regardless of its shape, the signal transmitting component is a thin layer attached to the housing assembly, occupying little space and resulting in a thinner and more compact overall product structure.

[0023] In one embodiment, the signal transmitting component includes a thin film and copper foil wires, the copper foil wires being electrically connected to the signal conducting component, and the thin film encapsulating the copper foil wires. This thin-film encapsulation structure significantly reduces the overall thickness of the signal transmitting component, enabling the product to meet ultra-thin design requirements while maintaining radio frequency performance.

[0024] In one embodiment, the thickness of the signal transmitting component is 0.2 mm. The 0.2 mm thickness of the signal transmitting component reduces its space requirements, resulting in a thinner and more compact overall product structure.

[0025] In one embodiment, a faceplate is also included, which is disposed on the housing assembly and located at an end of the housing assembly. The faceplate contributes to a high overall appearance quality of the product.

[0026] An electrical control device includes: the above-described wired controller structure.

[0027] The second aspect of this application discloses an electronic control device that achieves signal transmission by directly contacting the signal conduction component of the aforementioned wired controller structure with the signal transmission component and the PCB board component, resulting in high signal transmission efficiency and fast response speed. Furthermore, the product is lighter, thinner, and smaller overall, occupying less space and facilitating use. Attached Figure Description

[0028] Figure 1 This is a first perspective view of the structure of the wired controller;

[0029] Figure 2 This is a second perspective view of the wired controller structure;

[0030] Figure 3 This is a cross-sectional view of the wired controller structure;

[0031] Figure 4 for Figure 3 Enlarged view of point A in the middle;

[0032] Figure 5 The first exploded view of the wired controller structure;

[0033] Figure 6 This is the second exploded view of the wired controller structure;

[0034] Figure 7 A 3D view of the signal conduction component;

[0035] Figure 8 A 3D view of the signal transmitting component;

[0036] Figure 9 This is a three-dimensional view of the shell structure;

[0037] Figure 10 This is a 3D view of the PCB board assembly.

[0038] The correspondence between the reference numerals and the component names is as follows:

[0039] 1. Housing assembly, 11. Housing structure, 111. Housing body, 112. Mounting post, 1121. First post, 1122. Second post, 12. Cover structure, 101. Receiving cavity, 102. Opening, 103. Second mounting hole, 104. Third mounting hole.

[0040] 2. Signal transmitting components;

[0041] 3PCB board assembly, 301 first mounting hole;

[0042] 4. Signal conduction assembly, 41. First connecting part, 42. Transition part, 421. First arc-shaped part, 422. Second arc-shaped part, 43. Second connecting part;

[0043] 5-sided adhesive. Detailed Implementation

[0044] To better understand the above-mentioned objectives, features, and advantages of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0045] Many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the scope of protection of the present invention is not limited to the specific embodiments disclosed below.

[0046] Example 1

[0047] like Figure 1-10 As shown, this embodiment discloses a wired controller structure, including: a housing assembly 1, the housing assembly 1 having a receiving cavity 101; a signal transmitting assembly 2, the signal transmitting assembly 2 being disposed on the housing assembly 1; a PCB board assembly 3, the PCB board assembly 3 being disposed on the housing assembly 1 and located within the receiving cavity 101, the PCB board assembly 3 being disposed adjacent to the signal transmitting assembly 2, and the PCB board assembly 3 being disposed opposite to the signal transmitting assembly 2; and a signal conducting assembly 4, the signal conducting assembly 4 being electrically connected to the signal transmitting assembly 2 and the PCB board assembly 3 respectively, the signal conducting assembly 4 being located between the signal transmitting assembly 2 and the PCB board assembly 3, and the signal conducting assembly 4 being used to transmit the signal from the PCB board assembly 3 to the signal transmitting assembly 2.

[0048] The first aspect of this application discloses a wired controller structure. The housing 101 provides a stable assembly space for the PCB board assembly 3, signal transmitting assembly 2, etc. The signal transmitting assembly 2, for example, with an antenna, enables control of external devices. A signal conducting component 4, such as a metal spring, is electrically connected to both the signal transmitting assembly 2 and the PCB board assembly 3 to achieve stable signal transmission. This design eliminates the need for traditional cables or independent antennas, reduces the overall volume of the housing 101, and makes the entire wired controller structure more compact and user-friendly. Furthermore, the direct contact and conduction between the signal transmitting assembly 2 and the PCB board assembly 3 results in high signal transmission efficiency and fast response speed. The adjacent and relative arrangement of the PCB board assembly 3 and the signal transmitting assembly 2 significantly reduces the thickness and volume of the housing 101, achieving overall thinness and lightness, reducing production costs, and improving economic efficiency. The cooperation of the housing assembly 1, signal transmitting assembly 2, and PCB board assembly 3 enables the complete functionality of the wired controller. The overall structure is simple, effectively reducing assembly difficulty, production complexity, and failure rate.

[0049] like Figure 3 and Figure 4 As shown, in addition to the features of the above embodiments, this embodiment further specifies that the horizontal plane where the PCB board assembly 3 is located is parallel to the horizontal plane where the signal transmitting assembly 2 is located. By making the PCB board assembly 3 and the signal transmitting assembly 2 parallel, replacing the space waste caused by the traditional staggered layout, the space occupied by the PCB board assembly 3 and the signal transmitting assembly 2 can be greatly reduced, making the overall product thinner and smaller. This design has positive significance for reducing production costs and improving economic efficiency.

[0050] like Figure 3 and Figure 4 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: one end of the signal conducting component 4 abuts against the PCB board assembly 3, and the other end of the signal conducting component 4 abuts against the signal transmitting component 2. Signal transmission is achieved by having both ends of the signal conducting component 4 abut against the PCB board assembly 3 and the signal transmitting component 2 respectively. This method of conducting signals through contact with a relatively small signal conducting component 4 can significantly reduce the product's size, improve space utilization, increase signal transmission efficiency, and enhance signal response speed. Furthermore, it effectively reduces assembly difficulty and improves production efficiency.

[0051] In addition to the features of the above embodiments, this embodiment further specifies that the signal conduction component 4 is a metal spring. By using a metal spring for the signal conduction component 4, the thinness of the metal spring significantly reduces the thickness of traditional connection structures, making the internal layout of the product more compact. This design effectively reduces the overall volume of the product, allowing the PCB board assembly 3 and the signal transmitting assembly 2 to be integrated within the narrow receiving cavity 101, reducing costs and increasing profits.

[0052] In addition to the features of the above embodiments, this embodiment further specifies that the signal transmitting component 2 is made of a soft material. Because the signal transmitting component 2 is made of a soft material, the signal transmitting component 2, such as an antenna, can be directly attached to the cavity wall of the receiving cavity 101, making the overall product thinner, lighter, and smaller. This design simplifies the manufacturing process of the parts and makes the assembly of the entire product simpler. The signal transmitting component 2 can be manufactured into various shapes as needed.

[0053] like Figure 4 and Figure 7As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the signal conduction component 4 includes a first connecting portion 41, a transition portion 42, and a second connecting portion 43. The first connecting portion 41, the transition portion 42, and the second connecting portion 43 are connected sequentially. The first connecting portion 41 is electrically connected to the PCB board assembly 3, and the second connecting portion 43 is electrically connected to the signal transmitting assembly 2. The transition portion 42 is located between the first connecting portion 41 and the second connecting portion 43. The provision of the transition portion 42 enhances the overall rigidity of the signal conduction component 4, preventing deformation or breakage of the first connecting portion 41 and the second connecting portion 43 during use, and ensuring the reliability of long-term connection. This design can ensure the stable connection between the first connecting portion 41 and the PCB board assembly 3, and the connection between the second connecting portion 43 and the signal transmitting assembly 2, thereby ensuring stable signal transmission and improving the overall reliability of the structure.

[0054] like Figure 4 and Figure 7 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the transition portion 42 includes a first arc-shaped portion 421 and a second arc-shaped portion 422, and the first connecting portion 41, the first arc-shaped portion 421, the second arc-shaped portion 422, and the second connecting portion 43 are connected sequentially. The arrangement of the first arc-shaped portion 421 and the second arc-shaped portion 422 enhances the overall structural strength of the signal conduction component 4, improves its resistance to bending and deformation, and ensures long-term reliability. Furthermore, the first arc-shaped portion 421 and the second arc-shaped portion 422 effectively reduce the overall height of the signal conduction component 4, making the product thinner and smaller.

[0055] like Figure 4 and Figure 7 As shown, in addition to the features of the above embodiments, this embodiment further specifies that the first connecting portion 41, the second connecting portion 43, and the transition portion 42 are integrally formed. By integrating the first connecting portion 41, the second connecting portion 43, and the transition portion 42, the integrated molding eliminates the weak points in the connection of traditional segmented structures, significantly improving the overall mechanical strength and avoiding the risk of breakage due to vibration or deformation. Moreover, the manufacturing process is simpler and the cost is lower.

[0056] In addition to the features of the above embodiments, this embodiment further specifies that the transition portion 42 is made of an elastic material. By making the transition portion 42 of an elastic material, stable contact between the signal conducting component 4 and the signal transmitting component 2 and the PCB board component 3 can be ensured, thereby improving resistance to deformation, enhancing product reliability, and ultimately extending the product's service life.

[0057] like Figure 2 and Figure 5-6As shown, in addition to the features of the above embodiments, this embodiment further defines that: the housing assembly 1 includes a housing structure 11 and a cover structure 12. The housing structure 11 has an opening 102, and the cover structure 12 is disposed on the housing structure 11 and covers the opening 102. The cover structure 12 and the housing structure 11 enclose the receiving cavity 101. By forming the receiving cavity 101 through the enclosure of the housing structure 11 and the cover structure 12, and by allowing them to be separately disposed, the disassembly and assembly of the product are simpler and more convenient, facilitating the assembly of components such as the signal conduction assembly 4, the signal transmission assembly 2, and the PCB board assembly 3.

[0058] like Figure 3 and Figure 4 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: one of the signal transmitting component 2 and the PCB board assembly 3 is disposed on the shell structure 11, and the other of the signal transmitting component 2 and the PCB board assembly 3 is disposed on the cover structure 12. By disposing the signal transmitting component 2 and the PCB board assembly 3 on the shell structure 11 and the cover structure 12 respectively, they can be assembled separately and then assembled as a whole, forming an assembly line production mode, which can effectively improve production efficiency and increase economic benefits. Furthermore, the parallel arrangement of the signal transmitting component 2 and the PCB board assembly 3 allows for a thinner and smaller overall product design.

[0059] like Figure 5 and Figure 6 As shown, in addition to the features of the above embodiments, this embodiment further specifies that the cover structure 12 is detachably mounted on the shell structure 11. Because the cover structure 12 is detachably mounted on the shell structure 11, the assembly and disassembly of the product are simpler and more convenient, facilitating the assembly of components such as the signal conduction component 4, the signal transmission component 2, and the PCB board component 3.

[0060] like Figure 2 As shown, in addition to the features of the above embodiments, this embodiment further specifies that the cover structure 12 is located at the bottom of the shell structure 11. Because the cover structure 12 is located at the bottom of the shell structure 11, it does not affect the display of the top surface structure of the cover structure 12. For example, a panel can be installed on the top surface of the cover structure 12, and the cover structure 12 will not occupy the installation space of the panel, making the design more reasonable.

[0061] like Figure 6As shown, in addition to the features of the above embodiments, this embodiment further defines: the shell structure 11 includes a shell body 111 and a mounting post 112, the cover structure 12 is disposed on the shell body 111, the shell body 111 has the opening 102, the shell body 111 and the cover structure 12 enclose the receiving cavity 101, the mounting post 112 is disposed on the shell body 111 and located within the receiving cavity 101, and the PCB board assembly 3 is disposed on the mounting post 112. By directly molding the mounting post 112 onto the shell body 111, a stable mounting base is provided for the PCB board assembly 3, avoiding the loosening risk associated with traditional bracket structures, ensuring the positioning accuracy of the PCB board assembly 3, and enabling the PCB board assembly 3 to operate stably.

[0062] like Figure 5 and Figure 6 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the PCB board assembly 3 is provided with a first mounting hole 301, and the mounting post 112 is adapted to the first mounting hole 301. The precise cooperation between the first mounting hole 301 and the mounting post 112 forms a mechanical positioning reference, ensuring that the PCB board assembly 3 is accurately positioned within the receiving cavity 101, thereby improving assembly efficiency.

[0063] like Figure 9 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the mounting post 112 includes a first post 1121 and a second post 1122. The first post 1121 is disposed on the housing body 111 and located within the receiving cavity 101. The second post 1122 is disposed on the first post 1121. The diameter of the second post 1122 is smaller than the diameter of the first post 1121. The PCB board assembly 3 is disposed on the second post 1122. The first post 1121 provides a large-area foundation support, ensuring that the mounting plane of the PCB board assembly 3 remains horizontal and stable, thereby improving the stability and reliability of the PCB board assembly 3 installation.

[0064] like Figure 5 and Figure 6 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the cover structure 12 is provided with a second assembly hole 103, the mounting post 112 is provided with a third assembly hole 104, and a connector is also included. The connector cooperates with the second assembly hole 103 and the third assembly hole 104, and the connector is used to connect the cover structure 12 and the mounting post 112. By using a connector such as a bolt to cooperate with the second assembly hole 103 of the cover structure 12 and the third assembly hole 104 of the mounting post 112, the cover structure 12 and the shell structure 11 are stably assembled together, ensuring the overall stability and reliability of the product.

[0065] like Figure 3 and Figure 4 As shown, in addition to the features of the above embodiments, this embodiment further specifies that the signal transmitting component 2 is attached to the housing component 1 using 3M tape. The signal transmitting component 2 can achieve antenna signal transmission simply by being directly attached to the housing component 1 using 3M tape. Regardless of its shape, the signal transmitting component 2 attached to the housing component 1 is a thin layer, occupying little space, making the overall product structure lighter and more compact.

[0066] In addition to the features of the above embodiments, this embodiment further specifies that: the signal transmitting component 2 includes a thin film and copper foil wires, the copper foil wires are electrically connected to the signal conducting component 4, and the thin film wraps around the copper foil wires. The thin film encapsulation structure significantly reduces the overall thickness of the signal transmitting component 2, enabling the product to meet ultra-thin design requirements while maintaining radio frequency performance.

[0067] In addition to the features of the above embodiments, this embodiment further specifies that the thickness of the signal transmitting component 2 is 0.2mm. By having a thickness of 0.2mm, the signal transmitting component 2 occupies less space, making the overall product structure thinner and more compact.

[0068] like Figure 1 and Figure 3 As shown, in addition to the features of the above embodiments, this embodiment further includes a faceplate 5, which is disposed on the housing assembly 1 and located at the end of the housing assembly 1. The faceplate 5 contributes to a high overall appearance quality of the product.

[0069] Example 2

[0070] This embodiment discloses an electronic control device, including the above-described wired controller structure.

[0071] The second aspect of this application discloses an electronic control device that achieves signal transmission by directly contacting the signal conduction component 4 of the aforementioned wired controller structure with the signal transmitting component 2 and the PCB board component 3, resulting in high signal transmission efficiency and fast response speed. Furthermore, the product is lighter, thinner, and smaller overall, occupying less space and facilitating use.

[0072] The above embodiments only illustrate several implementation methods of this utility model, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.

Claims

1. A wired controller structure, characterized in that, include: A housing assembly (1) having a receiving cavity (101); A signal transmitting component (2) is disposed on the housing component (1); PCB board assembly (3), the PCB board assembly (3) is disposed on the housing assembly (1) and located in the receiving cavity (101), the PCB board assembly (3) is disposed adjacent to the signal transmitting assembly (2), and the PCB board assembly (3) is disposed opposite to the signal transmitting assembly (2); A signal conduction component (4) is electrically connected to the signal transmitting component (2) and the PCB board assembly (3) respectively. The signal conduction component (4) is located between the signal transmitting component (2) and the PCB board assembly (3). The signal conduction component (4) is used to transmit the signal of the PCB board assembly (3) to the signal transmitting component (2).

2. The wired controller structure according to claim 1, characterized in that, The horizontal plane where the PCB board assembly (3) is located is parallel to the horizontal plane where the signal transmitting assembly (2) is located; And / or one end of the signal conduction component (4) abuts against the PCB board assembly (3), and the other end of the signal conduction component (4) abuts against the signal transmitting component (2); And / or the signal conduction component (4) is a metal spring; And / or the signal transmitting component (2) is made of a soft material.

3. The wired controller structure according to claim 1, characterized in that, The signal conduction component (4) includes a first connecting part (41), a transition part (42), and a second connecting part (43). The first connecting part (41), the transition part (42), and the second connecting part (43) are connected in sequence. The first connecting part (41) is electrically connected to the PCB board assembly (3), and the second connecting part (43) is electrically connected to the signal transmitting assembly (2). The transition part (42) is located between the first connecting part (41) and the second connecting part (43).

4. The wired controller structure according to claim 3, characterized in that, The transition portion (42) includes a first arc-shaped portion (421) and a second arc-shaped portion (422), and the first connecting portion (41), the first arc-shaped portion (421), the second arc-shaped portion (422) and the second connecting portion (43) are connected in sequence; And / or the first connecting part (41), the second connecting part (43) and the transition part (42) are integrally formed; And / or the transition portion (42) is made of an elastic material.

5. The wired controller structure according to claim 1, characterized in that, The housing assembly (1) includes a shell structure (11) and a cover structure (12). The shell structure (11) has an opening (102). The cover structure (12) is disposed on the shell structure (11) and covers the opening (102). The cover structure (12) and the shell structure (11) enclose the receiving cavity (101).

6. The wired controller structure according to claim 5, characterized in that, One of the signal transmitting component (2) and the PCB board assembly (3) is disposed on the shell structure (11), and the other of the signal transmitting component (2) and the PCB board assembly (3) is disposed on the cover structure (12); And / or the cover structure (12) is detachably mounted on the shell structure (11); And / or the cover structure (12) is located at the bottom of the shell structure (11).

7. The wired controller structure according to claim 5, characterized in that, The shell structure (11) includes a shell body (111) and a mounting post (112). The cover structure (12) is disposed on the shell body (111). The shell body (111) has the opening (102). The shell body (111) and the cover structure (12) enclose the cavity (101). The mounting post (112) is disposed on the shell body (111) and located in the cavity (101). The PCB board assembly (3) is disposed on the mounting post (112).

8. The wired controller structure according to claim 7, characterized in that, The PCB board assembly (3) is provided with a first mounting hole (301), and the mounting post (112) is adapted to the first mounting hole (301); And / or the mounting post (112) includes a first post (1121) and a second post (1122), the first post (1121) is disposed on the housing body (111) and located in the receiving cavity (101), the second post (1122) is disposed on the first post (1121), the diameter of the second post (1122) is smaller than the diameter of the first post (1121), and the PCB board assembly (3) is disposed on the second post (1122); The cover structure (12) is provided with a second mounting hole (103), the mounting post (112) is provided with a third mounting hole (104), and a connector is also included. The connector cooperates with the second mounting hole (103) and the third mounting hole (104). The connector is used to connect the cover structure (12) and the mounting post (112).

9. The wired controller structure according to claim 1, characterized in that, The signal transmitting component (2) is attached to the housing component (1) by 3M tape; And / or the signal transmitting component (2) includes a thin film and copper foil wires, the copper foil wires being electrically connected to the signal conducting component (4), the thin film wrapping the copper foil wires; And / or the thickness of the signal transmitting component (2) is 0.2 mm; And / or may also include a faceplate (5) disposed on the housing assembly (1) and located at an end of the housing assembly (1).

10. An electrical control device, characterized in that, include: The wired controller structure as described in any one of claims 1-9.