Electronic device

By designing flexible audio playback device connectors in electronic devices, the compatibility problem of fixed connection positions for different electrical components is solved, achieving greater device compatibility and flexibility.

CN224110632UActive Publication Date: 2026-04-10LENOVO (BEIJING) LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
LENOVO (BEIJING) LTD
Filing Date
2025-03-31
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

In existing electronic devices, the connection positions of audio playback devices and other electrical components are fixed, making it difficult to be compatible with different types of electrical components and reducing the compatibility of the devices.

Method used

Design an electronic device in which an audio playback device is provided with a connector extending in a specific direction, allowing a second connector to be connected at different positions within the connection area to achieve audio signal transmission and improve compatibility.

Benefits of technology

The flexible connection design enhances compatibility and flexibility between devices, reduces the requirement for precise alignment, and facilitates maintenance and upgrades.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses electronic equipment, and relates to the technical field of electronic equipment. The electronic equipment comprises a first functional part and a second functional part, the first functional part is provided with a first connecting part, and the first functional part is used for playing audios; a second connecting piece is correspondingly arranged on one side, close to the first functional piece, of the second functional piece; the first connecting piece is provided with a connecting area extending in the first direction. And the second connecting piece can be adaptively connected to different positions of the connecting area for transmitting audio signals.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electronic equipment, and in particular to an electronic equipment. BACKGROUND

[0002] At present, the connection of the electrical signals between the audio playing device and other electrical components in the electronic equipment is generally connected by the connector. When the connection is performed, the connection positions of the audio playing device and other electrical components are relatively fixed, but the positions required to be connected by different types of electrical components are different, and the same audio playing device is difficult to be compatible with different types of electrical components, thereby reducing the compatibility of the electronic equipment. CONTENT OF THE UTILITY MODEL

[0003] To solve the above technical problems, the embodiments of the present application provide the following technical solutions:

[0004] The present application provides an electronic equipment, comprising:

[0005] A first functional piece, the first functional piece is provided with a first connecting piece, and the first functional piece is used for playing audio;

[0006] A second functional piece, a second connecting piece is correspondingly provided on the side of the second functional piece close to the first functional piece;

[0007] The first connecting piece has a connecting area extending along a first direction; and the second connecting piece can be adaptively connected at different positions of the connecting area for transmitting audio signals.

[0008] In some modified embodiments of the present application, the first connecting piece comprises two connecting portions, and the two connecting portions are spaced apart;

[0009] The second connecting piece comprises two connecting structures, and the two connecting structures are spaced apart;

[0010] The distance between the two connecting portions is less than the distance between the two connecting structures, and the two connecting structures are electrically connected to the two connecting portions respectively for transmitting audio signals.

[0011] In some modified embodiments of the present application, the connecting portion comprises a connecting plate, and the connecting plate extends along the first direction to form the connecting area.

[0012] In some modified embodiments of the present application, the first functional piece comprises a main body and a supporting piece, the supporting piece is arranged on the side of the main body close to the second functional piece, a gap is arranged between the supporting piece and the main body, and the connecting plate is inlaid on the side of the supporting piece close to the second functional piece.

[0013] In some modified embodiments of the present application, the size of the first connecting piece along the first direction is greater than the size along a second direction, and the second direction and the first direction satisfy the perpendicular condition.

[0014] The first connecting member has a first connecting area and a second connecting area in the first direction, the first connecting area is used for first signal communication when the first connecting member is connected with the second connecting member, and the second connecting area is used for second signal communication when the first connecting member is connected with the second connecting member.

[0015] In some modified embodiments of the present application, the main body is electrically connected with the third connecting member.

[0016] The connecting part further comprises a folded plate, the folded plate is connected with the connecting plate, the folded plate is connected to the second side of the support through the gap from the side adjacent to the first side of the support, and the folded plate is electrically connected with the third connecting member.

[0017] The second side is arranged opposite to the first side, and the two connecting ends of the third connecting member are respectively connected with the sides of the two folded plates away from the second functional member.

[0018] In some modified embodiments of the present application, the support further comprises a separation part, the separation part is arranged between the two connecting parts to separate the two connecting parts.

[0019] In some modified embodiments of the present application, the second connecting member comprises an elastic structure, the elastic structure extends out of the second functional member, and the elastic structure elastically deforms to abut on the first connecting member.

[0020] In some modified embodiments of the present application, further comprising:

[0021] The shell has a containing space, the target side of the shell is provided with a first hole part and a second hole part in communication with the containing space, the first functional member is arranged corresponding to the first hole part, the second functional member is arranged corresponding to the second hole part, and the second connecting member and the first connecting member are located in the containing space.

[0022] In some modified embodiments of the present application, further comprising:

[0023] The support is arranged in the containing space and fixedly connected with the shell, the first functional member and the second functional member are connected with the support, so that the second connecting member can be adaptively connected to the connecting area of the first connecting member. BRIEF DESCRIPTION OF DRAWINGS

[0024] The above and other objects, features and advantages of the exemplary embodiments of the present application will be readily understood through reading the following detailed description of the exemplary embodiments of the present application taken in conjunction with the accompanying drawings. The exemplary embodiments of the present application are illustrated in the drawings, in which several embodiments of the present application are shown by way of example and not limitation, in which like or corresponding reference numerals refer to like or corresponding parts throughout several views, in which:

[0025] Figure 1 A partial structure schematic diagram of an electronic device is schematically shown;

[0026] Figure 2A partial structural schematic view of an electronic device is shown from another angle;

[0027] Figure 3 A partial structural schematic view of an electronic device is shown when a first connecting member is not installed;

[0028] Figure 4 A partial structural schematic view of an electronic device is shown when a first connecting member is installed;

[0029] Figure 5 A partial structural schematic view of an electronic device is shown when a first connecting member is installed;

[0030] Figure 6 A partial structural schematic view of an electronic device is shown when a first connecting member is installed;

[0031] Figure 7 A partial structural schematic view of an electronic device is shown when a first connecting member is installed;

[0032] Figure 8 A partial structural schematic view of an electronic device is shown when a first connecting member is installed.

[0033] BRIEF DESCRIPTION OF THE DRAWINGS

[0034] 1, first functional member; 11, first connecting member; 111, connecting portion; 1111, connecting plate; 1112, folding plate; 12, supporting member; 13, main body; 14, partition portion; 2, second functional member; 3, second connecting member; 31, elastic structure; 32, connecting structure; 4, third connecting member; 5, gap; 6, connecting region; 61, first connecting region; 62, second connecting region; 63, insulating region; 7, housing; 71, first hole portion; 72, second hole portion; 8, bracket. DETAILED DESCRIPTION

[0035] Exemplary embodiments of the present disclosure will be described below in greater detail with reference to the accompanying drawings. While exemplary embodiments of the present disclosure are shown in the drawings, it is to be understood that the present disclosure can be implemented in various forms and should not be limited by the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the present disclosure to those skilled in the art.

[0036] It should be noted that unless otherwise specified, technical or scientific terms used in the present application should be understood as having the meaning commonly understood by one of ordinary skill in the art to which the present application pertains.

[0037] Currently, the connection between the audio playing device (such as a speaker, a sound box, an earphone, etc.) and other electrical components in an electronic device is generally achieved by using a connector. In the connection, the connection positions of the audio playing device and other electrical components are relatively fixed, but different types of electrical components need to be connected at different positions, and the same audio playing device is difficult to be compatible with different types of electrical components.

[0038] To solve the above problems, the present disclosure provides an electronic device, which can make electrical components requiring different connection positions connect with the same audio playing device, thereby improving the compatibility of the audio playing device and the electronic device.

[0039] Embodiment 1

[0040] As shown in Figure 1 , Figure 2 , Figure 6 , Figure 7 An electronic device includes a first functional part 1 and a second functional part 2. The first functional part 1 is provided with a first connecting part 11, and the first functional part 1 is used for playing audio. The second functional part 2 is provided with a second connecting part 3 corresponding to the side close to the first functional part 1. The first connecting part 11 has a connecting area 6 extending in a first direction. The second connecting part 3 can be adaptively connected to different positions of the connecting area 6 for transmitting audio signals.

[0041] The first functional part 1 refers to an audio playing device capable of directly or indirectly playing audio. The first functional part 1 can include at least one speaker (used to convert electrical signals into sound) and necessary connecting interfaces or other auxiliary components, such as a shell, a frequency divider, etc. The first functional part 1 is provided with a first connecting part 11, which has a connecting area 6 extending in a specific direction to facilitate adaptive connection with the second functional part 2. Specifically, the first functional part 1 can be a standalone speaker, which is the most basic form and is composed of one or more speaker units, and can also include a simple filter circuit to separate sound signals of different frequencies. The first functional part 1 can also be an integrated sound system, which integrates components such as power amplifiers and audio decoders in addition to the basic speaker. The first functional part 1 can also be a sound bar, which is designed to enhance the television viewing experience and includes multiple speaker units, and can also be equipped with a wireless subwoofer to enhance the low-frequency effect. The first functional part 1 can also be a smart sound box, which is equipped with a voice assistant function in addition to the audio playing function and supports voice control of smart home devices, information query, etc. For example, the electronic device can be a mobile phone, a tablet computer or a notebook computer, the first functional part can be a speaker or an audio component of the mobile phone, the tablet computer or the notebook computer, and the second functional part can be a motherboard of the mobile phone, the tablet computer or the notebook computer, which can transmit audio signals while connecting with the speaker to supply power to the speaker.

[0042] The first connecting member 11 is a component provided on the first functional member 1, which mainly serves as a physical or electrical interface to enable the second functional member 2 to be adaptively connected therewith. The design of the first connecting member 11 allows the second connecting member 3 to be connected at different positions within the specific connecting area 6, thereby achieving the transmission of audio signals and improving the compatibility and flexibility between devices. The specific structure of the first connecting member 11 can include contact points or conductive areas, a support structure, and a protective layer. The contact points or conductive areas are the core part of the first connecting member 11, responsible for forming an electrical connection with the second connecting member 3. The contact points can be a series of metal contacts arranged in rows or columns, or a continuous conductive strip. In order to ensure the stability and durability of the contact points, a robust support structure can be provided to protect these sensitive components from the external environment. In order to prevent problems such as oxidation, corrosion, or short circuit, the contact points and conductive areas can be covered with a protective material, i.e., the protective layer, such as an anti-oxidation coating, etc.

[0043] The connecting area 6 refers to a specific area on the first connecting member 11 that extends in a certain direction (i.e., the first direction). This area allows the second connecting member 3 to be adaptively connected at different positions within it, thereby achieving the transmission of audio signals or other types of signals. In this way, the compatibility and flexibility between devices can be improved, and the requirement for precise alignment can be reduced. The specific shape of the connecting area 6 can vary depending on design requirements and application scenarios. For example, the connecting area 6 can extend along a straight line, and its shape can be rectangular or strip-shaped, which is suitable for application scenarios that require flexible connection in one-dimensional direction. The connecting area 6 can also be a plane, such as a rectangle, an ellipse, a circle, or other geometric shapes, which can provide the second connecting member 3 with freedom in two-dimensional plane, suitable for more complex connection requirements. The connecting area 6 can also be designed as a curved surface, such as an arc or part of a sphere, which helps to adapt to specific product shape design or improve user experience.

[0044] The first connecting member 11 can be directly integrated or mounted on the first functional member 1. This means that it is part of the first functional member 1 and is specifically designed to establish electrical and / or physical connections with other components, such as the second functional member 2. One of the main functions of the first connecting member 11 is to provide an electrical interface to facilitate the transmission of audio signals or other types of electrical signals to the first functional member 1, which involves a series of contact points or conductive strips that can form reliable electrical connections with corresponding parts on the second connecting member 3. In addition to electrical connections, the first connecting member 11 can also be designed to provide the necessary mechanical support for the second functional member 2, ensuring that it is stably attached to the first functional member 1 and preventing accidental detachment or displacement. In order to facilitate connection with other components (such as the second functional member 2), the first connecting member 11 can be arranged on the edge or side of the first functional member 1, which not only facilitates connection operations, but also helps to optimize the overall structure design. Depending on the specific application scenario, the first connecting member 11 can be installed on the top, bottom or side of the first functional member 1. For example, in some audio devices, the first connecting member 11 can be arranged on the back of the device to avoid affecting the front appearance design and to protect the connection area 6 from external interference. In some high-end or professional products, the first connecting member 11 can be embedded inside the first functional member 1, exposing only the necessary contact surface. This design helps to improve the product's protection level while maintaining a simple and elegant appearance.

[0045] The second functional member 2 is a component that cooperates with the first functional member 1. It is provided with a second connecting member 3 on one side close to the first functional member 1, which can be adapted and connected to different positions of the first connecting member 11, thereby realizing the transmission of audio signals. The second functional member 2 can expand or enhance the functionality, compatibility and flexibility of the audio playback device, or it can be a device for controlling the first functional member 1 or providing power to the first functional member 1, such as a controller and a mainboard, etc. Specifically, the second functional member 2 can be a signal processing module, which is mainly used to further process the audio signals from the first functional member 1, such as equalization adjustment, reverb effect addition, etc., to improve sound quality or create a specific listening experience. The second functional member 2 can also be a wireless communication module, including a Bluetooth module, a Wi-Fi (wireless network) module, etc., for realizing wireless audio transmission, so that the audio playback device can receive signals through wireless means, increasing the convenience and flexibility of use. The second functional member 2 can also be a power management module, which is responsible for providing stable power supply for the entire audio system and can include batteries, charging circuits and power management systems, etc., especially suitable for portable audio devices. The second functional member 2 can also be a control panel / interface, which is the part of the audio playback device that users interact with, which can be in the form of physical buttons, touch screens or knobs, etc., for adjusting volume, switching tracks, setting sound effects, etc.

[0046] The second connecting member 3 is a component provided on the second functional member 2, which is adapted to connect with the first connecting member 11 on the first functional member 1. The design of the second connecting member 3 allows it to be flexibly connected at different positions within the connecting area 6 of the first connecting member 11, thereby achieving effective transmission of audio signals or other types of signals. This design enhances the compatibility and flexibility between devices, making it easier for different types of electrical components to be integrated and work together. The second connecting member 3 can be a sliding contact type, which is designed to slide on the conductive strip of the first connecting member 11 and maintain electrical connection. This type of second connecting member 3 is suitable for situations where the relative position needs to be adjusted while maintaining signal transmission, such as the modular design in some portable audio devices. The second connecting member 3 can also be a pin type, which includes a series of metal pins that can be directly inserted into the corresponding sockets or holes of the first connecting member 11 to form a stable electrical connection. This connection method is commonly used in various electronic devices due to its simplicity and reliability. The first connecting member 11 can also be a spring needle type or a spring sheet type, which uses spring pressure to maintain electrical connection between contact points, suitable for situations that require frequent disassembly and installation. The spring needle can automatically adjust the length within a certain range to ensure good contact performance.

[0047] The different positions of the second connecting member 3 connected to the connecting area 6 refer to different second connecting members 3 connected to completely non-overlapping positions of the connecting area 6. The connection positions of different second connecting members 3 can also partially overlap to reduce the required connecting area 6.

[0048] The present disclosure provides a first connecting member 11 on the first functional member 1, and the connecting area 6 of the first connecting member 11 has an extension along the first direction, so that the second connecting member 3 of the second functional member 2 can be adaptively connected at different positions of the connecting area 6. Thus, the second connecting member 3 and the second functional member 2 that require different connection positions can be connected to the first functional member 1 to transmit audio signals, improving the compatibility of the first functional member 1, and thereby improving the compatibility of electronic devices, facilitating the maintenance and upgrade of electronic devices.

[0049] As shown in Figure 1 , Figure 2 , Figure 3 and Figure 4 , in some modified embodiments of the present application, the first connecting member 11 includes two connecting portions 111, and the two connecting portions 111 are spaced apart. The second connecting member 3 includes two connecting structures 32, and the two connecting structures 32 are spaced apart. The distance between the two connecting portions 111 is less than the distance between the two connecting structures 32. The two connecting structures 32 are electrically connected to the two connecting portions 111 respectively for transmitting audio signals.

[0050] The first connector 11 includes two spaced-apart connecting portions 111. The distance between these two connecting portions 111 is fixed and smaller than the distance between the two connecting structures 32 on the second connector 3. The connecting portions 111 provide electrical contact points for transmitting audio signals. The second connector 3 also includes two spaced-apart connecting structures 32. The distance between the connecting structures 32 is greater than the distance between the two connecting portions 111 in the first connector 11. The connecting structures 32 are adapted to connect to the connecting portions 111 of the first connector 11 to form a complete electrical path, thereby powering the first functional component 1 while transmitting audio signals.

[0051] The distance between the two connecting structures 32 of the second connector 3 is greater than the distance between the two connecting parts 111 of the first connector 11. This allows the two second connecting structures 32 to be connected to the two connecting parts 111 at their close proximity, thereby ensuring the stability of the connection.

[0052] like Figure 4 As shown, in some modified embodiments of this application, the connecting portion 111 includes a connecting plate 1111, which extends along a first direction to form a connecting region 6. The connecting plate 1111 is the core component of the connecting portion 111 and can be made of a conductive material (such as metal) to provide electrical contact and signal transmission functions. The connecting plate 1111 extends along the first direction, forming a continuous connecting region 6. This region can be a straight line, a curve, or a portion of a plane, with the specific shape depending on the application scenario. Through the extension of the connecting plate 1111 along the first direction, the first connector 11 can provide a large contact range (i.e., the connecting region 6). The second connector 3 can be adapted and connected at different positions within this connecting region 6, thereby achieving flexible electrical connection. The main function of the connecting plate 1111 is to serve as a conductive path for transmitting audio signals or other types of electrical signals. The connecting plate 1111 can also provide certain mechanical support for the second connector 3, ensuring its stable attachment to the first connector 11.

[0053] The connection area 6 formed by the extension of the connecting plate 1111 in the first direction provides a continuous contact surface, reducing the requirement for precise alignment. The second connection 3 can be connected at any position within the connection area 6 without the need for strict matching to a fixed point. The design of the connecting plate 1111 allows different sizes or shapes of the second connection 3 to be fitted to the first connection 11, thereby improving the compatibility of the system. Compared to a complex multi-contact design, the use of a single extended connecting plate 1111 can reduce manufacturing costs and improve reliability. Different sizes and types of second functional elements 2 have different connection positions, and different second connections 3 dynamically adjust their connection positions according to actual needs. The design of the connecting plate 1111 facilitates such adjustments. The design of the connecting plate 1111 allows the second connection 3 to freely adjust the connection position within its extension range. This flexibility significantly improves the compatibility between devices, especially in modular designs.

[0054] As shown in Figure 1 and Figure 2 In some modified embodiments of the present application, the first functional element 1 includes a main body 13 and a support 12, which is arranged on the side of the main body 13 close to the second functional element 2. A gap 5 is provided between the support 12 and the main body 13, and the connecting plate 1111 is inlaid on the side of the support 12 close to the second functional element 2.

[0055] The main body 13 is the core part of the first functional element 1, which can contain components that actually perform audio playback tasks, such as speaker units, audio processing circuits, etc. It provides the basis for the overall structure and carries other components. The support 12 is arranged on the side of the main body 13 close to the second functional element 2, and its main function is to provide physical support and protection for the connecting plate 1111. A gap 5 is provided between the support 12 and the main body 13, which not only helps to reduce the overall weight, but also can be used for ventilation and heat dissipation or to accommodate other small electronic components. The presence of the gap 5 allows the support 12 to maintain a certain distance from the main body 13, which helps to reduce vibration transmission and avoid mutual interference, while also facilitating internal air circulation to help dissipate heat. This gap 5 can also be used to arrange wires or other connecting parts 111, thereby optimizing the internal layout. For example, wires or connecting parts 111 can be arranged to connect the main body 13 and the connecting plate 1111 through the gap 5, thereby facilitating circuit communication. By inlaying the connecting plate 1111 on the support 12 instead of directly mounting it on the main body 13, the stability of the overall structure can be improved, reducing the risk of damage caused by external pressure. For example, the connecting plate 1111 can be molded or heat-fused onto the support 12 to ensure the stability of the connection. The support 12 provides additional protection for the connecting plate 1111, reducing the impact of external factors such as dust and moisture on electrical connections, and enhancing the reliability and durability of the connection.

[0056] AsFigure 1 、 Figure 2 and Figure 5 As shown in FIGS. 1, 2, and 3, in some modified embodiments of the present application, the first connecting member 11 has a dimension along a first direction that is greater than a dimension along a second direction, and the first direction and the second direction satisfy a perpendicular condition. The first connecting member 11 has a first connecting region 61 and a second connecting region 62 along the first direction, and the first connecting region 61 is used for first signal communication when the second connecting member 3 is connected, and the second connecting region 62 is used for second signal communication when the second connecting member 3 is connected.

[0057] The overall shape of the first connecting member 11 is long and narrow or rectangular, extending along the first direction (length direction) and relatively narrow along the width direction (second direction). This design allows the first connecting member 11 to provide a larger contact area in a limited space while maintaining a compact structure. The first connecting region 61 is located at one end or a certain area of the first connecting member 11, and when the second connecting member 3 is connected, it is used to transmit the first signal (such as audio signal, power signal, etc.). The second connecting region 62 is located at the other end or another area of the first connecting member 11, and when the second connecting member 3 is connected, it is used to transmit the second signal (such as control signal, data signal, etc.). Through this partition design, the first connecting member 11 can realize independent transmission of multiple signal types. The first connecting region 61 is mainly used to transmit a specific type of first signal, such as an audio playback signal or a power signal. The second connecting region 62 is mainly used to transmit another specific type of second signal, such as a control instruction or a status feedback signal. Through this partition design, the first connecting member 11 can realize independent transmission of multiple signal types. For example, the first connecting region 61 is mainly used to transmit a specific type of first signal, such as an audio playback signal or a power signal. The second connecting region 62 is mainly used to transmit another specific type of second signal, such as a control instruction or a status feedback signal.

[0058] As shown in FIGS. 1, 2, and 3, in some modified embodiments of the present application, the first connecting member 11 has a dimension along a first direction that is greater than a dimension along a second direction, and the first direction and the second direction satisfy a perpendicular condition. The first connecting member 11 has a first connecting region 61 and a second connecting region 62 along the first direction, and the first connecting region 61 is used for first signal communication when the second connecting member 3 is connected, and the second connecting region 62 is used for second signal communication when the second connecting member 3 is connected. Figure 6 The first connecting region 61 and the second connecting region 62 can be connected to the same audio component to transmit different signals, or they can be connected to multiple audio components to transmit the same signal.

[0059] The first direction and the second direction satisfy the perpendicular condition, which means that the first direction and the second direction are approximately perpendicular, for example, the included angle between the first direction and the second direction can be between 80 degrees and 110 degrees. The first direction and the second direction satisfying the perpendicular condition ensures that the layout of the first connecting member 11 has a clear directionality, which is convenient for accurate alignment and adaptive connection with other components (such as the second functional member 2).

[0060] Figure 1 , Figure 2 and​Figure 3 As shown, in some modified embodiments of the present application, the main body 13 is electrically connected with the third connecting member 4: the connecting portion 111 further comprises a folded plate 1112, the folded plate 1112 is connected with the connecting plate 1111, the folded plate 1112 is connected with the second side of the support 12 through the gap 5 from the side adjacent to the first side of the support 12, and the folded plate 1112 is electrically connected with the third connecting member 4; the second side is arranged opposite to the first side, and the two connecting ends of the third connecting member 4 are respectively connected with the two folded plates 1112 away from the second functional member 2.

[0061] The third connecting member 4 is an additional component for the internal circuit connection of the main body 13, which is electrically connected with the main body 13 through the folded plate 1112. The folded plate 1112 is a special conductive component, which is connected with the connecting plate 1111, and extends from the first side (the side close to the second functional member 2) of the support 12 to the second side (the side away from the second functional member 2) of the support 12 through the gap 5 between the support 12 and the main body 13.

[0062] The folded plate 1112 provides a path for the third connecting member 4 to indirectly establish electrical connection with the main body 13 while maintaining the compactness of the overall structure. The support 12 has opposite first and second sides. The first side is close to the second functional member 2, and the second side is arranged opposite. The folded plate 1112 transmits electrical signals from the first side to the second side by passing through the gap 5 between the support 12 and the main body 13, thereby achieving electrical connection at different positions. The folded plate 1112 can be an integral structure with the connecting plate 1111, or can be separately arranged and electrically connected together. The support 12 has opposite first and second sides, the first side is close to the second functional member 2, and the second side is arranged opposite, and the first and second sides of the support 12 provide support for the folded plate 1112 and the connecting plate 1111 respectively. The third connecting member 4 has two connecting ends, which are respectively connected with the two folded plates 1112 away from the second functional member 2, which enables the third connecting member 4 to establish electrical connection with the main body 13 through the folded plate 1112 without directly interfering with the connection between the first connecting member 11 and the second connecting member 3.

[0063] The design of the first functional member 1 is further refined, which not only includes the main body 13 and the support 12, but also introduces the third connecting member 4 and a specially designed folded plate 1112. This design achieves a more complex electrical connection layout by cleverly using the folded plate 1112 to pass through the gap 5 between the support 12 and the main body 13, enhancing the compactness of the internal structure of the device and the diversity of electrical connection.

[0064] As Figure 3As shown, in some modified embodiments of the present application, the support 12 is further provided with a partition 14, which is arranged between the two connecting parts 111 to separate them. The partition 14 is a structure arranged on the support 12 between the two connecting parts 111, and its main function is to physically separate and electrically isolate the two connecting parts 111 to avoid mutual interference between signals. The partition 14 can be a simple physical barrier or a component made of a material with insulating properties. It extends to the surface of the support 12 or even penetrates the entire thickness of the support 12 to achieve complete isolation effect. In a multi-signal transmission system, interference between signals can cause device performance degradation or failure. The presence of the partition 14 can effectively reduce electromagnetic interference or crosstalk problems, thereby improving the quality and reliability of signal transmission. When the two connecting parts 111 are connected to the two poles of the power supply, respectively, the partition 14 arranged between the two connecting parts 111 can be electrically isolated, thereby avoiding short circuit.

[0065] In some modified embodiments of the present application, the second connecting piece 3 includes an elastic structure 31 extending from the second functional piece 2, and the elastic structure 31 elastically deforms to abut on the first connecting piece 11. The elastic structure 31 is a part of the second connecting piece 3 and can be made of an elastic conductive material such as a metal spring and a metal spring sheet. Two elastic structures 31 can be provided, and the two elastic structures 31 are respectively connected to the connecting structure 32 to improve the stability of the connection. The elastic structure 31 extends from the second functional piece 2 and can elastically deform (such as compression, bending or stretching) when subjected to external force, thereby adapting to different positions of the first connecting piece 11. When the second connecting piece 3 approaches the first connecting piece 11, the elastic structure 31 deforms to ensure that it can tightly abut on the connecting area 6 of the first connecting piece 11. This elastic deformation provides a certain "clamping force" or "contact pressure", making the connection more stable and reducing the possibility of loosening. The automatic adaptation capability, since the elastic structure 31 can dynamically adjust its shape, it can adapt to different positions in the connecting area 6 of the first connecting piece 11 without the need for strict alignment operation. The elastic structure 31 can have various shapes, such as a V-shaped structure, the tip of which contacts the connecting plate 1111 to facilitate elastic deformation, on the other hand, the V-shaped structure also facilitates elastic deformation when the first functional piece 1 or the second functional piece 2 is installed in a direction perpendicular to the first direction, thereby facilitating the disassembly of the first functional piece 1 or the second functional piece 2. The elastic structure 31 can also be a W-shaped structure or an M-shaped structure, thereby further improving the stability of the connection between the elastic region and the connecting plate 1111.

[0066] As Figure 6 , Figure 7 and Figure 8As shown, in some modified embodiments of the present application, a housing 7 is also included, which has a receiving space, and the target side of the housing 7 is provided with a first hole part 71 and a second hole part 72 that communicate with the receiving space. The first functional part 1 is arranged corresponding to the first hole part 71, and the second functional part 2 is arranged corresponding to the second hole part 72. The second connecting part 3 and the first connecting part 11 are located in the receiving space. The housing 7 is the external protective structure of the entire device, made of a solid and durable material such as plastic, metal, etc. The receiving space is located in the housing 7, used to accommodate various electronic components, including the first functional part 1, the second functional part 2, and the connecting part 111 between them. The first hole part 71 and the second hole part 72 are openings provided on the housing 7, which communicate with the receiving space, allowing part or all of the first functional part 1 and the second functional part 2 to be exposed externally for operation or connection. The design of these hole parts takes into account the functional requirements and ergonomic factors of the device, ensuring that users can easily access the necessary interfaces or control components. The first functional part 1 is arranged corresponding to the first hole part 71, meaning that part of its structure may be exposed through the first hole part 71, or necessary electrical connections or signal transmissions are made through the first hole part 71. For example, the first functional part 1 is a speaker, and the first hole part 71 can be a through-hole for playing sound to facilitate the first functional part 1 to play sound. Similarly, the second functional part 2 is arranged corresponding to the second hole part 72, and part of its structure may also be exposed through the second hole part 72, or electrical connections or signal transmissions are made through the second hole part 72. For example, the second functional part 2 can be a mainboard or power module, and the second hole part 72 can be used to place buttons, display screens or other interactive interfaces. Although part of the components of the first functional part 1 and the second functional part 2 may be exposed externally through the hole parts, the connection between them (i.e. the second connecting part 3 and the first connecting part 11) is completely located inside the receiving space. This internal connection method not only improves the overall aesthetics of the device, but also enhances the protection against environmental factors such as dust and moisture.

[0067] As shown in Figure 7 and Figure 8 In some modified embodiments of the present application, a support 8 is also included, which is arranged in the receiving space and fixedly connected with the housing 7. The first functional part 1 is connected with the second functional part 2 and the support 8, so that the second connecting part 3 can be adaptively connected to the connecting area 6 of the first connecting part 11.

[0068] The support 8 is an important supporting structure, which is arranged in the accommodating space of the shell 7 and is firmly connected with the shell 7. The main function of the support 8 is to provide a stable mounting base for the first functional part 1 and the second functional part 2, ensuring accurate alignment between them and reliable electrical connection. The support 8 can be connected with the shell 7 by screws, welding or other fastening methods to ensure its position stable and not affected by external vibration or impact. This fixed connection provides additional mechanical strength, which helps to protect the internal components from damage. The first functional part 1 is connected with the support 8 by appropriate mounting methods (such as screw fixing, buckle, etc.), ensuring its position fixed and not easy to move. With the support of the support 8, the first functional part 1 can be more stably kept in the predetermined position, facilitating the connection with other components. The second functional part 2 can also be connected with the support 8 in a similar way, ensuring its position accurate relative to the first functional part 1. This accurate positioning helps the second connecting part 3 to be smoothly connected to the connecting area 6 of the first connecting part 11. With the support of the support 8, the second connecting part 3 can accurately find and connect to the connecting area 6 of the first connecting part 11, ensuring the reliability and stability of signal transmission. The design of the elastic structure 31 enables the second connecting part 3 to automatically adjust within a certain range, adapting to different connection positions, thereby improving compatibility.

[0069] The above is only a specific embodiment of the present application, but the protection scope of the present application is not limited thereto. Any skilled person in the art can easily think of changes or replacements within the technical scope disclosed in the present application, which should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. An electronic device, comprising: The electronic device comprises: a first functional part provided with a first connecting part, the first functional part being used for playing audio; a second functional part provided with a second connecting part on a side corresponding to the first functional part; the first connecting part has a connecting area extending in a first direction; the second connecting part can be connected to different positions of the connecting area for transmitting audio signals.

2. The electronic device according to claim 1, wherein: the first connecting part comprises two connecting parts which are arranged at intervals; the second connecting part comprises two connecting structures which are arranged at intervals; the interval between the two connecting parts is smaller than the interval between the two connecting structures, and the two connecting structures are electrically connected to the two connecting parts respectively for transmitting audio signals.

3. The electronic device according to claim 2, wherein: the connecting part comprises a connecting plate which extends in the first direction to form the connecting area.

4. The electronic device according to claim 3, wherein: the first functional part comprises a main body and a support part, the support part is arranged on a side of the main body corresponding to the second functional part, a gap is arranged between the support part and the main body, and the connecting plate is inlaid on a side of the support part corresponding to the second functional part.

5. The electronic device according to claim 1, wherein: the first connecting part has a size in the first direction which is larger than a size in a second direction, and the second direction and the first direction satisfy a perpendicular condition; the first connecting part has a first connecting area and a second connecting area in the first direction, the first connecting area is used for first signal communication when the second connecting part is connected, and the second connecting area is used for second signal communication when the second connecting part is connected.

6. The electronic device of claim 4, wherein, the main body is electrically connected to a third connecting part: the connecting part further comprises a folding plate, the folding plate is connected to the connecting plate, and the folding plate is connected to a second side of the support part through a side adjacent to a first side of the support part via the gap, the folding plate is electrically connected to the third connecting part; the second side is arranged opposite to the first side, and two connecting ends of the third connecting part are connected to two sides of the folding plate away from the second functional part respectively.

7. The electronic device according to claim 4, wherein: the support part is further provided with a partition part arranged between the two connecting parts to separate the two connecting parts.

8. The electronic device according to claim 1, wherein: the second connecting part comprises an elastic structure which extends out of the second functional part, and the elastic structure elastically deforms to abut on the first connecting part.

9. The electronic device of claim 1, wherein, Further comprising: a shell having a containing space, a target side of the shell being provided with a first hole part and a second hole part in communication with the containing space, the first functional part being arranged corresponding to the first hole part, the second functional part being arranged corresponding to the second hole part, and the second connecting part and the first connecting part being located in the containing space.

10. The electronic device of claim 9, wherein, Further comprising: A support is arranged in the accommodating space and fixedly connected with the shell, and the first functional part is connected with the second functional part and the support, so that the second connecting part can be adaptively connected to the connecting area of the first connecting part.