Sound system and sound system control method

By enabling detachable and combinable connections between audio equipment and handheld devices, and through wired data communication, the inconvenience caused by the increased integration of functions in the audio system is resolved, allowing for flexible use according to the needs of different scenarios.

CN121985254APending Publication Date: 2026-05-05SHENZHEN MILESEEY TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHENZHEN MILESEEY TECH
Filing Date
2025-12-30
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

When audio systems integrate more functions, their size increases, leading to inconvenience in use and making it impossible to meet the functional needs of different users in different scenarios.

Method used

The audio equipment and handheld device can be detached and connected together, and a wired data communication connection can be established through the contact of the signal line. They can independently control the audio output and golf scene assistance functions, or be used together for data interaction.

Benefits of technology

It improves the ease of use of the audio system, allowing audio equipment and handheld devices to be used separately or in combination according to the needs of the scene, so as to meet different functional requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a sound system and a sound system control method. The sound system comprises sound equipment and handheld equipment, wherein the sound equipment and the handheld equipment are detachably combined and connected; a first control module of the sound equipment is connected with an audio output module to control the audio output module to output audio data; a second control module of the handheld device is connected with the scene auxiliary module to control the scene auxiliary module to set or display golf scene data; when the sound equipment and the handheld equipment are in a combined connection state, the contact of the first signal receiving line is attached to the contact of the second signal transmitting line, and the contact of the first signal transmitting line is attached to the contact of the second signal receiving line, so that wired data communication connection between the sound equipment and the handheld equipment is established, and wired interaction data are received and transmitted. According to the invention, the sound equipment and the handheld equipment can be separated or combined for use according to scene use requirements, and the use convenience of the sound system is improved.
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Description

Technical Field

[0001] This application relates to the field of audio technology, specifically to an audio system and an audio system control method. Background Technology

[0002] With the increasing intelligence and diversification of audio systems, some systems incorporate golf assistance functions. These functions provide support for golf, helping players enhance their experience, obtain course data, or fulfill entertainment needs. However, the inventors of this application have discovered during the actual research and development process that audio systems with golf assistance functions require different functions depending on the usage scenario. For example, sometimes users only need the golf assistance function, sometimes only the voice broadcast function, and sometimes both. Therefore, the audio system needs to integrate many functions, inevitably increasing its size and making it less convenient to use. Summary of the Invention

[0003] This application provides an audio system and an audio system control method, which allows audio equipment and handheld devices to be used separately or in combination according to the needs of the usage scenario, thereby improving the ease of use of the audio system.

[0004] In a first aspect, this application provides an audio system, the audio system including an audio device and a handheld device, wherein the audio device and the handheld device are detachably and combinably connected; The audio device includes a first transmitting signal line, a first receiving signal line, a first control module, and an audio output module. The first control module is connected to the audio output module and is used to control the audio output module to output audio data. The handheld device includes a second transmitting signal line, a second receiving signal line, a second control module, and a scene assistance module. The second control module is connected to the scene assistance module and is used to control the scene assistance module to set or display golf scene data. When the audio device and the handheld device are in a combined connection state, the contact of the first receiving signal line is in contact with the contact of the second transmitting signal line, and the contact of the first transmitting signal line is in contact with the contact of the second receiving signal line, so as to establish a wired data communication connection between the audio device and the handheld device.

[0005] Secondly, this application also provides a sound system control method, applied to a sound system, the sound system including a sound device and a handheld device, the sound device and the handheld device being detachably and combinably connected; the sound device includes a first transmitting signal line, a first receiving signal line, a first control module and an audio output module, the first control module being connected to the audio output module; the handheld device includes a second transmitting signal line, a second receiving signal line, a second control module and a scene auxiliary module, the second control module being connected to the scene auxiliary module; The method includes: When the audio device and the handheld device are detached, the first control module controls the audio output module to output audio data. When the audio equipment and the handheld device are detached, the second control module controls the scene assistance module to set or display golf scene data. When the audio device and the handheld device are in a combined connection state, if it is detected that the contact of the first receiving signal line is in contact with the contact of the second transmitting signal line and the contact of the first transmitting signal line is in contact with the contact of the second receiving signal line, then a wired data communication connection is established between the audio device and the handheld device. After the wired data communication connection has been established, the first wired interactive data transmitted from the second transmitting signal line to the first receiving signal line is obtained through the first control module. After the wired data communication connection is established, the second control module acquires the second wired interactive data transmitted from the first transmitting signal line to the second receiving signal line.

[0006] In this application, an audio device and a handheld device are detachably connected; the audio device includes a first transmitting signal line, a first receiving signal line, a first control module, and an audio output module, with the first control module connected to the audio output module; the handheld device includes a second transmitting signal line, a second receiving signal line, and a second control module. The system comprises a control module and a scene auxiliary module, with the second control module connected to the scene auxiliary module. This allows for several advantages: First, when the audio equipment needs to be controlled independently, the handheld device can be detached from the audio equipment. The first control module controls the audio output module to output audio data, enabling the audio equipment to function independently. Second, when the handheld device needs to be controlled independently, it can be detached from the audio equipment. The second control module controls the scene auxiliary module to set or display golf scene data, allowing the handheld device to function independently, such as golf assistance functions. This enables the audio equipment and handheld device to be controlled independently, allowing them to be separated according to scene requirements, thus improving the ease of use of the audio system. Secondly, when the handheld device and the audio equipment need to be connected and used together, a wired data communication connection is established between the audio equipment and the handheld device by aligning the contacts of the first receiving signal line and the second transmitting signal line, and vice versa. This allows the handheld device and the audio equipment to send and receive wired interactive data based on the established wired data communication connection, thus enabling the audio equipment and the handheld device to be used together and achieve data interaction. Therefore, the audio equipment and the handheld device can be controlled independently or in combination, allowing them to be used separately or in combination according to the needs of the scenario, thereby improving the ease of use of the audio system. Attached Figure Description

[0007] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0008] Figure 1 This is a schematic block diagram of the structure of an audio system provided in an embodiment of this application; Figure 2 This is a schematic block diagram of a sound system including a communication interaction module provided in an embodiment of this application; Figure 3 This is a schematic block diagram of a power supply module included in an audio system provided in an embodiment of this application; Figure 4 This is a schematic block diagram of another audio system provided in the embodiments of this application; Figure 5 This is a schematic block diagram of a sound system including a button interaction module provided in an embodiment of this application; Figure 6This is a schematic block diagram of another audio system provided in the embodiments of this application; Figure 7 This is a schematic flowchart of a sound system control method provided in an embodiment of this application. Detailed Implementation

[0009] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0010] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. The terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

[0011] The flowcharts shown in the accompanying drawings are merely illustrative and do not necessarily include all content and operations / steps, nor do they necessarily have to be performed in the described order. For example, some operations / steps may be broken down, combined, or partially merged, so the actual execution order may change depending on the actual situation. Any process or method description in the flowcharts or otherwise described herein can be understood as representing a module, segment, or portion of code comprising one or more executable instructions for implementing a specific logical function or process. Furthermore, the scope of the embodiments described in this application includes other implementations in which functions may be performed not in the order shown or discussed, including substantially simultaneously or in reverse order according to the functions involved, as should be understood by those skilled in the art to which the embodiments of this application pertain.

[0012] To enable any person skilled in the art to implement and use this application, the following description is provided. In this description, details are set forth for purposes of explanation. It should be understood that those skilled in the art will recognize that this application can be implemented without using these specific details. In other instances, well-known processes will not be described in detail to avoid obscuring the description of the embodiments of this application with unnecessary detail. Therefore, this application is not intended to be limited to the embodiments shown, but is consistent with the broadest scope of the principles and features disclosed in the embodiments of this application.

[0013] This application provides an audio system; please refer to [link / reference]. Figure 1 , Figure 1 This is a schematic diagram of a sound system provided in an embodiment of this application. The sound system includes a sound device 100 and a handheld device 200, which are detachably connected. The sound device 100 includes a first transmitting signal line 108, a first receiving signal line 109, a first control module 101, and an audio output module 102, with the first control module 101 connected to the audio output module 102. The handheld device 200 includes a second transmitting signal line 208, a second receiving signal line 209, a second control module 201, and a scene assistance module 202, with the second control module 201 connected to the scene assistance module 202. When the audio device 100 and the handheld device 200 are in a combined connection state, the contacts of the first receiving signal line 109 of the audio device 100 and the contacts of the second transmitting signal line 208 of the handheld device 200 are in contact, and the contacts of the first transmitting signal line 108 of the audio device 100 and the contacts of the second receiving signal line 209 of the handheld device 200 are in contact, so as to establish a wired data communication connection between the audio device 100 and the handheld device 200.

[0014] The first control module 101 is used to control the audio output module 102 to output audio data.

[0015] The second control module 201 is used to control the scene auxiliary module 202 to set or display golf scene data.

[0016] The first control module 101 is also used to acquire the first wired interactive data transmitted from the second transmitting signal line 208 to the first receiving signal line 109 after a wired data communication connection has been established.

[0017] The second control module 201 is also used to acquire the second wired interactive data transmitted from the first transmitting signal line 108 to the second receiving signal line 209 after a wired data communication connection has been established.

[0018] For example, such as Figure 1As shown, when the audio device 100 and the handheld device 200 are detached, the first control module 101 can transmit audio data (such as voice broadcasting and music) to the audio output module 102 to control the audio output module 102 to output audio data. The audio output module 102 outputs audio data under the control of the first control module 101, so that the audio device 100 can be controlled to work independently without relying on the handheld device 200. When the audio device 100 and the handheld device 200 are detached, the second control module 201 can transmit scene data display instructions to the scene assistance module 202, so that the scene assistance module 202 can display golf scene data (such as course map, FCB data, hole information, and green preview data). The second control module 201 can also transmit scene data setting instructions to the scene assistance module 202, so that the scene assistance module 202 can set golf scene data (such as flagstick position). This allows the handheld device 200 to work independently, enabling the handheld device 200 to display or set golf scene data without the mobile app, which improves the ease of use of the golf assistance function to a certain extent.

[0019] The first wired interactive data is sent by the handheld device 200, transmitted via the second transmitting signal line 208 (such as the TX signal line of the handheld device 200) and the first receiving signal line 109 (such as the RX signal line of the audio device 100), and received by the audio device 100. The first wired interactive data can be control commands (such as controlling the audio device 100 to turn off the audio, controlling the volume of the audio device 100, etc.), data information (such as audio data), etc.

[0020] The second wired interactive data is transmitted from the audio device 100 via the first transmitting signal line 108 (such as the TX signal line of the audio device 100) and the second receiving signal line 209 (such as the RX signal line of the handheld device 200), and is received by the handheld device 200. The second wired interactive data can be response commands (such as a response command indicating successful audio shutdown, a response command indicating successful volume adjustment, etc.) or data information (such as the current volume of the audio device 100, the current battery level of the audio device 100, etc.).

[0021] like Figure 1As shown, the audio device 100 is provided with a first receiving signal line 109 (such as an RX signal line) and a first transmitting signal line 108 (such as a TX signal line), and the handheld device 200 is provided with a second receiving signal line 209 (such as an RX signal line) and a second transmitting signal line 208 (such as a TX signal line). The audio device 100 and the handheld device 200 can be detachably connected by snap-fit ​​or magnetic attraction. When the audio device 100 and the handheld device 200 are in the combined connection state, the signal line contacts of the audio device 100 and the handheld device 200 are in one-to-one contact. For example, the first receiving signal line 109 of the audio device 100... The contacts of the first transmitting signal line 108 (such as the RX signal line) of the audio device 100 are in contact with the contacts of the second transmitting signal line 208 (such as the TX signal line) of the handheld device 200, and the contacts of the first transmitting signal line 108 (such as the TX signal line) of the audio device 100 are in contact with the contacts of the second receiving signal line 209 (such as the RX signal line) of the handheld device 200, so that a wired connection can be established between the audio device 100 and the handheld device 200 based on the RX and TX signal lines, thereby establishing a wired data communication connection between the audio device 100 and the handheld device 200. Subsequently, the audio device 100 and the handheld device 200 can perform data interaction based on this wired data communication connection.

[0022] In some embodiments, one end of the first receiving signal line 109 is connected to the first control module 101, and one end of the second transmitting signal line 208 is connected to the second control module 201. After a wired data communication connection has been established between the audio device 100 and the handheld device 200, the second control module 201 can trigger a wired interaction command to send the first wired interaction data to the audio device 100. At this time, the second control module 201 can directly transmit the first wired interaction data to the second transmitting signal line 208 (such as the TX signal line of the handheld device 200), so that the second transmitting signal line 208 (such as the TX signal line of the handheld device 200) can transmit the first wired interaction data to the first receiving signal line 109 (such as the RX signal line of the audio device 100), so that the first wired interaction data is sent from the handheld device 200 to the audio device 100. Then, the first control module 101 can directly read... The first receiving signal line 109 (such as the RX signal line of the audio device 100) transmits first wired interactive data; the first control module 101 is used to acquire the first wired interactive data. If the first wired interactive data includes audio data, the first control module 101 is also used to control the audio output module 102 to output the audio data corresponding to the first wired interactive data, so that the audio device 100 can output audio data under the control of the handheld device 200. For example, the audio device 100 can play music according to the music data sent by the handheld device 200. If the first wired interactive data includes control instructions, the first control module 101 is also used to control the audio device 100 to execute the control instructions corresponding to the first wired interactive data, so that the audio device 100 can execute the corresponding instructions under the control of the handheld device 200. For example, the audio device 100 can adjust the audio volume according to the control of the handheld device 200.

[0023] In some embodiments, one end of the second receiving signal line 209 is connected to the second control module 201, and one end of the first transmitting signal line 108 is connected to the first control module 101. After a wired data communication connection has been established between the audio device 100 and the handheld device 200, the first control module 101 can trigger a wired interaction command to send second wired interaction data to the handheld device 200. At this time, the first control module 101 can directly transmit the second wired interaction data to the first transmitting signal line 108 (such as the TX signal line of the audio device 100), so that the first transmitting signal line 108 (such as the TX signal line of the audio device 100) can transmit the second wired interaction data to the second receiving signal line 209 (such as the RX signal line of the handheld device 200), so that the second wired interaction data is sent from the audio device 100 to the handheld device 200. 00; then, the second control module 201 can directly read the second wired interaction data transmitted by the second receiving signal line 209 (such as the RX signal line of the handheld device 200); the second control module 201 is used to acquire the second wired interaction data. If the second wired interaction data contains data information, the second control module 201 is also used to determine the next response operation according to the audio data corresponding to the second wired interaction data, so that the handheld device 200 receives the data information of the audio device 100, such as the handheld device 200 can store the device information sent by the audio device 100; if the second wired interaction data contains a response instruction, the second control module 201 is also used to determine whether to execute the next operation according to the response instruction corresponding to the second wired interaction data, so that the handheld device 200 receives the response information of the audio device 100.

[0024] like Figure 2As shown, in some embodiments, the audio device 100 further includes a first communication interaction module 103, and the first control module 101 is connected to the first communication interaction module 103; the handheld device 200 further includes a second communication interaction module 203, and the second control module 201 is connected to the second communication interaction module 203; the second communication interaction module 203 is used to send first wired interaction data to the first communication interaction module 103 based on the second transmitting signal line 208 after a wired data communication connection has been established; the first communication interaction module 103 is used to receive the first wired interaction data based on the first receiving signal line 109; the first control module 101 is also used to control the audio output module 102 to output audio data based on the first wired interaction data when the first communication interaction module 103 receives the first wired interaction data. For example, one end of the first receiving signal line 109 is connected to the first communication interaction module 103, and one end of the second transmitting signal line 208 is connected to the second communication interaction module 203. After a wired data communication connection has been established between the audio device 100 and the handheld device 200, the second control module 201 can trigger a wired interaction command to send the first wired interaction data to the audio device 100. At this time, the second control module 201 is used to transmit the first wired interaction data to the second communication interaction module 203. The second communication interaction module 203 can directly transmit the first wired interaction data to the second transmitting signal line 208 (such as the TX signal line of the handheld device 200), so that the second transmitting signal line 208 (such as the TX signal line of the handheld device 200) can transmit the first wired interaction data to the first receiving signal line 109 (such as the RX signal line of the audio device 100), so that the first wired interaction data is sent from the handheld device 200 to the audio device 100. Then, the first communication interaction module 103 can directly read the first receiving signal line 109 (such as the RX signal line of the audio device 100). The first wired interaction data is transmitted from the first receiving signal line 109 (such as the RX signal line of the audio device 100); the first communication interaction module 103 is used to read the first wired interaction data from the first receiving signal line 109 (such as the RX signal line of the audio device 100) and transmit the first wired interaction data to the first control module 101; the first control module 101 is used to acquire the first wired interaction data. If the first wired interaction data contains audio data, the first control module 101 is also used to control the audio output module 102 to output the audio data corresponding to the first wired interaction data, so that the audio device 100 can output audio data under the control of the handheld device 200, such as the audio device 100 can play music according to the music data sent by the handheld device 200; if the first wired interaction data contains control instructions, the first control module 101 is also used to control the audio device 100 to execute the control instructions corresponding to the first wired interaction data, so that the audio device 100 can execute the corresponding instructions under the control of the handheld device 200, such as the audio device 100 can adjust the audio volume according to the control of the handheld device 200.

[0025] like Figure 2 As shown, in some embodiments, the audio device 100 further includes a first communication interaction module 103, and the first control module 101 is connected to the first communication interaction module 103; the handheld device 200 further includes a second communication interaction module 203, and the second control module 201 is connected to the second communication interaction module 203; the first communication interaction module 103 is used to send second wired interaction data to the second communication interaction module 203 based on the first transmitting signal line 108 after a wired data communication connection has been established; the second communication interaction module 203 is used to receive the second wired interaction data based on the second receiving signal line 209; the second control module 201 is also used to control the scene auxiliary module 202 to set or display golf scene data based on the second wired interaction data when the second communication interaction module 203 receives the second wired interaction data. For example, one end of the second receiving signal line 209 is connected to the second communication interaction module 203, and one end of the first transmitting signal line 108 is connected to the first communication interaction module 103. After a wired data communication connection has been established between the audio device 100 and the handheld device 200, the first control module 101 can trigger a wired interaction command to send the second wired interaction data to the handheld device 200. At this time, the first control module 101 is used to transmit the second wired interaction data to the first communication interaction module 103. The first communication interaction module 103 can directly transmit the second wired interaction data to the first transmitting signal line 108 (such as the TX signal line of the audio device 100), so that the first transmitting signal line 108 (such as the TX signal line of the audio device 100) can transmit the second wired interaction data to the second receiving signal line 209 (such as the RX signal line of the handheld device 200), so that the second wired interaction data is sent by the audio device 100. The data is transmitted to the handheld device 200. Then, the second communication interaction module 203 can directly read the second wired interaction data transmitted by the second receiving signal line 209 (such as the RX signal line of the handheld device 200) and transmit the second wired interaction data to the second control module 201. The second control module 201 is used to acquire the second wired interaction data. If the second wired interaction data contains data information, the second control module 201 is also used to determine the next response operation based on the audio data corresponding to the second wired interaction data, so that the handheld device 200 receives the data information of the audio device 100. For example, the handheld device 200 can store the device information sent by the audio device 100. If the second wired interaction data contains a response instruction, the second control module 201 is also used to determine whether to execute the next operation based on the response instruction corresponding to the second wired interaction data, so that the handheld device 200 receives the response information of the audio device 100.

[0026] Furthermore, such as Figure 3As shown, in some embodiments, the audio device 100 further includes a first trigger signal line 110 (such as the ENT signal line of the audio device 100), and the handheld device 200 further includes a second trigger signal line 210 (such as the ENT signal line of the handheld device 200); when the audio device 100 and the handheld device 200 are in a combined connection state, the contacts of the first trigger signal line 110 of the audio device 100 and the contacts of the second trigger signal line 210 of the handheld device 200 are in contact; when the audio device 100 and the handheld device 200 are in a combined connection state, the handheld device 200 is in a powered-on state and the audio device 100 is in a powered-off state, the handheld device 200 transmits a high-level signal to the first trigger signal line 110 (such as the ENT signal line of the audio device 100) based on the second trigger signal line 210 (such as the ENT signal line of the handheld device 200); the first control unit is also used to control the audio device 100 to power on when the second trigger signal line 210 transmits a high-level signal to the first trigger signal line 110. For example, before the audio device 100 and the handheld device 200 are combined and connected, the handheld device 200 is in the powered-on state and the audio device 100 is in the powered-off state. At this time, if the audio device 100 and the handheld device 200 are changed from the disassembled state to the combined connection state, the contact of the first trigger signal line 110 of the audio device 100 (such as the ENT signal line of the audio device 100) and the contact of the second trigger signal line 210 of the handheld device 200 (such as the ENT signal line of the handheld device 200) will be in contact, so that when the second trigger signal line 210 transmits a high-level signal to the first trigger signal line 110, the first control module 101 is also used to determine that a wake-up signal is detected when the second trigger signal line 210 transmits a high-level signal to the first trigger signal line 110, and control the audio device 100 to be powered on. After the audio device 100 is powered on, the handheld device 200 is also powered on. Since the contacts of the first receiving signal line 109 (such as the RX signal line) of the audio device 100 are in contact with the contacts of the second transmitting signal line 208 (such as the TX signal line) of the handheld device 200, a wired data communication connection can be established between the audio device 100 and the handheld device 200, and data interaction can be performed based on the wired data communication connection.

[0027] Furthermore, such as Figure 3As shown, in some embodiments, the audio device 100 further includes a first trigger signal line 110, a first power signal line 111 (such as the +5V signal line of the audio device 100), and a first power module 104. One end of the first power signal line 111 is connected to the first power module 104, and the first power module 104 is connected to the first control module 101. The handheld device 200 is provided with a second trigger signal line 210, a second power signal line 211 (such as the +5V signal line of the handheld device 200), and a second power module 204. One end of the second power signal line 211 is connected to the second power module 204, and the second power module 204 is connected to the second control module 201. When the audio device 100 and the handheld device 200 are in a state of... In the combined connection state, the contacts of the first trigger signal line 110 and the second trigger signal line 210 are in contact, and the contacts of the first power signal line 111 and the second power signal line 211 are in contact. When the audio device 100 and the handheld device 200 are in the combined connection state, the handheld device 200 is in the off state and the audio device 100 is in the on state, the handheld device 200 transmits a low-level signal to the first trigger signal line 110 based on the second trigger signal line 210. The first power module 104 is used to transmit charging voltage to the second power signal line 211 based on the first power signal line 111 when the second trigger signal line 210 transmits a low-level signal to the first trigger signal line 110, so as to charge the handheld device 200. For example, before the audio device 100 and the handheld device 200 are combined and connected, the handheld device 200 is in a powered-off state and the audio device 100 is in a powered-on state. If the audio device 100 and the handheld device 200 are then combined and connected from a disassembled state, the contact of the first trigger signal line 110 of the audio device 100 (such as the ENT signal line of the audio device 100) will be in contact with the contact of the second trigger signal line 210 of the handheld device 200 (such as the ENT signal line of the handheld device 200). A resistor is provided on the second trigger signal line 210 (such as the ENT signal line of the handheld device 200). Due to the resistance on the second trigger signal line 210 (such as the ENT signal line of the handheld device 200), the second trigger signal... Line 210 transmits a low-level signal to the first trigger signal line 110. At this time, the voltage on the first trigger signal line 110 (such as the ENT signal line of the audio device 100) is pulled down, causing the voltage on the first power signal line 111 to be pulled up, thereby causing the first power module 104 to output a charging voltage to the first power signal line 111. Thus, the first power module 104 can be used to transmit a charging voltage to the second power signal line 211 based on the first power signal line 111 when the second trigger signal line 210 transmits a low-level signal to the first trigger signal line 110, causing the voltage on the second power signal line 211 to be pulled up, thereby causing the first power module 104 to be input with a charging voltage, so that the audio device 100 can charge the handheld device 200.

[0028] Furthermore, the second power module 204 is also used to trigger the wake-up signal of the handheld device 200 when there is a charging voltage on the second power signal line 211; the first control module 101 is also used to control the handheld device 200 to power on when the wake-up signal of the handheld device 200 is detected.

[0029] Further, please refer to Figure 3 The audio equipment 100 may also include a first grounding wire 112, and the handheld device 200 may also include a second grounding wire 212.

[0030] Furthermore, such as Figure 4 As shown, the first control module 101 further includes a first wireless communication unit 1011 (such as Bluetooth of the audio device 100), and the second control module 201 includes a second wireless communication unit 2011 (such as Bluetooth of the handheld device 200). The first wireless communication unit 1011 is used to establish a connection with the second wireless communication unit 2011 to establish a wireless data communication connection between the audio device 100 and the handheld device 200. The second wireless communication unit 2011 is used to transmit first wireless interaction data to the first wireless communication unit 1011 after the wireless data communication connection has been established. The first wireless communication unit 1011 is used to transmit second wireless interaction data to the second wireless communication unit 2011 after the wireless data communication connection has been established.

[0031] The first wireless interaction data is transmitted by the handheld device 200, via the second wireless communication unit 2011 (such as Bluetooth of the handheld device 200) and the first wireless communication unit 1011 (such as Bluetooth of the speaker device 100), and received by the speaker device 100. The first wireless interaction data can be control commands (such as controlling the speaker device 100 to turn off audio, controlling the volume of the speaker device 100, etc.), data information (such as audio data), etc.

[0032] The second wireless interaction data is transmitted by the audio device 100, via the first wireless communication unit 1011 (such as Bluetooth of the audio device 100) and the second wireless communication unit 2011 (such as Bluetooth of the handheld device 200), and received by the handheld device 200. The second wireless interaction data can be response commands (such as a response command for successfully turning off audio, a response command for successfully adjusting volume, etc.), data information (such as the current volume of the audio device 100, the current battery level of the audio device 100), etc.

[0033] Furthermore, such as Figure 5As shown, the audio device 100 also includes a first button interaction module 105 (for example, the first button interaction module 105 may include buttons for power, volume adjustment, playback control, EQ switching, TWS pairing, etc.). The first button interaction module 105 is connected to the first control module 101 and is used to receive a first interactive operation. The first control module 101 is also used to control the audio output module 102 to output audio data based on the first interactive operation. The first interactive operation is a button operation of the first button interaction module 105. For example, a user can press a button on the audio device 100 such as a power button, volume adjustment button, playback control button, EQ switching button, or TWS pairing button, at which time the first control module will trigger the function corresponding to the button pressed by the user.

[0034] Furthermore, such as Figure 5 As shown, the handheld device 200 also includes a second button interaction module 205 (for example, the second button interaction module 205 may include wake-up / sleep, voice broadcast trigger, etc.). The second button interaction module 205 is connected to the second control module 201 and is used to receive second interactive operations. The second control module 201 is also used to control the scene auxiliary module 202 to set or display golf scene data based on the second interactive operations. The second interactive operation is a button operation of the second button interaction module 205. For example, a user can press a wake-up / sleep, voice broadcast trigger, etc. button on the handheld device 200, at which time the second control module 201 will trigger the function corresponding to the button pressed by the user. In some embodiments, the scene assistance module 202 may include a display unit 2021, a positioning unit 2022, a map storage unit 2023, etc. For example, if a user presses the map display button on the handheld device 200, the second control module 201 will control the scene assistance module 202 to display golf scene data. The displayed golf scene data is the map data corresponding to the current location. The scene assistance module 202 first obtains the current location based on the positioning unit 2022, then reads the map data from the map storage unit 2023 according to the current location, and displays the map data corresponding to the current location based on the display unit 2021, thereby realizing the display of golf scene data.

[0035] Further, please refer to Figure 6 The audio device 100 may also include a first interface module 106 (such as a hidden Type-C interface or a USB interface). The first interface module 106 can be connected to the first power module 104 and the first control module 101, and is used for charging the audio device 100, data transmission and firmware upgrades, etc.

[0036] Further, please refer to Figure 6The audio equipment 100 may also include a lighting module 107, which may be connected to a first power module 104. The first power module 104 is used to supply power to the lighting module 107, and the lighting module 107 may be used to provide lighting. The lighting module 107 may also be connected to an audio output module 102, and the lighting module 107 may be used to display lighting when the audio output module 102 outputs audio data.

[0037] Further, please refer to Figure 6 The handheld device 200 may also include a second interface module 206 (such as a hidden Type-C interface or a USB interface). The second interface module 206 can be connected to the second power module 204 and the second control module 201, and is used for charging the handheld device 200, data transmission, and firmware upgrades.

[0038] Further, please refer to Figure 6 The handheld device 200 may also include a photosensitive module 207, which can be connected to the display unit 2021. The photosensitive module 207 is used to detect the ambient light intensity and adjust the display brightness of the display unit 2021 according to the detected ambient light intensity.

[0039] In some embodiments, please refer to Figure 6 The audio output module 102 may include a power amplifier unit 1021 and a speaker unit 1022.

[0040] In some embodiments, please refer to Figure 6 The first power module 104 may specifically include a first battery 1041 and a first power management circuit 1042.

[0041] In some embodiments, please refer to Figure 6 The second power module 204 may specifically include a second battery 2041 and a second power management circuit 2042.

[0042] Please refer to Figure 6 The following is a specific example to illustrate the implementation of this audio system, such as... Figure 6As shown, the audio system includes: an audio device 100 and a handheld device 200, which are detachably connected and combined. The audio device 100 includes a first transmitting signal line 108, a first receiving signal line 109, a first trigger signal line 110, a first power signal line 111, a first grounding line 112, a first control module 101, an audio output module 102, a first communication interaction module 103, a first power module 104, a first button interaction module 105 (e.g., USB interface, Type-C interface), a first interface module 106, and a lighting module 107. The first control module 101 is connected to the audio output module 102, the first communication interaction module 103, the first power module 104, the first button interaction module 105, and the lighting module 107. The first interface module 106 is connected to the first power module 104 (e.g., the first interface module 107). 6. The first power management circuit 1042 of the first power module 104 is connected to the first power module 104. The first control module 101 may also include a first wireless communication unit 1011. The audio output module 102 may include a power amplification unit 1021 and a speaker unit 1022. The power amplification unit 1021 is connected to the speaker unit 1022 so that the audio data is amplified and processed by the power amplification unit 1021 and then output by the speaker unit 1022. The first power module 104 may include a first battery 1041 and a first power management circuit 1042 (such as a power management chip and a buck-boost management circuit). The first battery 1041 is connected to the first power management circuit 1042 so as to manage the first battery 1041.The handheld device 200 includes a second transmitting signal line 208, a second receiving signal line 209, a second trigger signal line 210, a second power signal line 211, a second grounding line 212, a second control module 201, a scene assistance module 202, a second communication interaction module 203, a second power module 204, a second button interaction module 205, a second interface module 206 (such as a USB interface or a Type-C interface), and a photosensitive module 207. The second control module 201 is connected to the scene assistance module 202, the second communication interaction module 203, the second power module 204, the second button interaction module 205, and the second interface module 206. The second interface module 206 is connected to the second power module 207. Module 204 is connected (e.g., the second interface module 206 is connected to the second power management circuit 2042 of the second power module 204); wherein, the second control module 201 may also include a second wireless communication unit 2011; wherein, the scene assistance module 202 may include a display unit 2021 (e.g., including an LCD display), a positioning unit 2022 (e.g., a GPS positioning unit), and a map storage unit 2023; wherein, the second power module 204 may include a second battery 2041 and a second power management circuit 2042 (e.g., including a power management chip and a buck-boost management circuit), the second battery 2041 is connected to the second power management circuit 2042 to manage the second battery 2041.

[0043] When the audio device 100 and the handheld device 200 are detached, the first control module 101 can transmit audio data (such as voice broadcasting or music) to the audio output module 102 to control the audio output module 102 to output audio data. The audio output module 102 outputs audio data under the control of the first control module 101. Users can operate and / or set the audio device 100 based on the first button interaction module 105, such as turning the audio device 100 on / off, adjusting volume, controlling playback, switching EQ, and pairing with TWS. The first power module 104 can independently power the audio device 100. The lighting module 107 can provide lighting for the audio device 100. Therefore, the audio device 100 can be controlled independently without relying on the handheld device 200.

[0044] When the audio equipment 100 and the handheld device 200 are detached, the second control module 201 can transmit scene data display instructions and / or setting instructions to the scene assistance module 202, enabling the scene assistance module 202 to display and / or set golf scene data (such as course map, FCB data, hole information, and green preview data). Users can operate and / or set the handheld device 200 based on the second button interaction module 205, such as turning the handheld device 200 on / off, waking it up / sleep it, setting product settings, and using the map. The second power module 204 can independently power the handheld device 200. This allows the handheld device 200 to operate independently.

[0045] The audio device 100 and the handheld device 200 can be detachably connected via snap-fit ​​or magnetic attraction. When the audio device 100 and the handheld device 200 are in the connected state, the contacts of the audio device 100 and the handheld device 200 are aligned and engaged. The contacts of the first receiving signal line 109 (e.g., RX signal line) of the audio device 100 are engaged with the contacts of the second transmitting signal line 208 (e.g., TX signal line) of the handheld device 200. The contacts of the TX signal line are in contact with the contacts of the second receiving signal line 209 (such as the RX signal line) of the handheld device 200; the contacts of the first trigger signal line 110 (such as the ENT signal line) are in contact with the contacts of the second trigger signal line 210 (such as the ENT signal line); the contacts of the first power signal line 111 (such as the +5V signal line) are in contact with the contacts of the second power signal line 211 (such as the +5V signal line); and the contacts of the first ground line 112 (GND) are in contact with the contacts of the second ground line 212. Therefore, based on the signal lines of the speaker device 100 (first transmit signal line 108, first receive signal line 109, first trigger signal line 110, first power signal line 111, first ground line 112) and the signal lines of the handheld device 200 (second transmit signal line 208, second receive signal line 209, second trigger signal line 210, second power signal line 211, second ground line 212), functions such as mutual wake-up, automatic Bluetooth connection, and charging status detection between the speaker device 100 and the handheld device 200 can be realized. For example: 1. When the handheld device 200 is in the powered-on state and the speaker device 100 is in the powered-off state: After the speaker device 100 and the handheld device 200 are combined and connected, the handheld device 200 will trigger the second trigger signal line 110, the second power signal line 111, and the second ground line 112. Signal line 210 (such as the ENT signal line of handheld device 200) transmits a high-level signal to the first trigger signal line 110 (such as the ENT signal line of audio device 100), thereby enabling handheld device 200 to send a wake-up signal to audio device 100 based on the trigger signal line. Audio device 100 turns on after detecting the wake-up signal. After both are turned on, a wired data communication connection is established between audio device 100 and handheld device 200 based on the receiving signal line (first receiving signal line 109 and second receiving signal line 209) and the transmitting signal line (first transmitting signal line 108 and second transmitting signal line 208). Data interaction is performed based on the wired data communication connection. After confirming the status of both parties, handheld device 200 stops sending wake-up signals.2. When the handheld device 200 is powered off and the audio device 100 is powered on: After the audio device 100 and the handheld device 200 are connected, a resistor is provided on the second trigger signal line 210 (such as the ENT signal line of the handheld device 200). Due to the resistance on the second trigger signal line 210 (such as the ENT signal line of the handheld device 200), the second trigger signal line 210 transmits a low-level signal to the first trigger signal line 110. At this time, the voltage on the first trigger signal line 110 (such as the ENT signal line of the audio device 100) is pulled down, causing the first power signal line 111 to... The voltage of the first power module 104 is pulled up, thereby causing the first power module 104 to output a charging voltage to the first power signal line 111, which in turn pulls up the voltage of the second power signal line 211, thereby allowing the first power module 104 to receive a charging voltage, so that the audio device 100 charges the handheld device 200; when there is a charging voltage on the second power signal line 211, the second power module 204 triggers the wake-up signal of the handheld device 200. The first control module 101 is also used to control the handheld device 200 to turn on when the wake-up signal of the handheld device 200 is detected, so that the handheld device 200 is charged and woken up. 3. When the handheld device 200 is powered on and the powered-on device is powered off: After the speaker device 100 and the handheld device 200 are connected together, the speaker device 100 can determine whether to charge the handheld device 200 according to the specific scenario through the first control module 101; the speaker device 100 and the handheld device 200 can be powered on and off simultaneously, and can also establish a wired data communication connection between the speaker device 100 and the handheld device 200 based on the receiving signal line (first receiving signal line 109 and second receiving signal line 209) and the transmitting signal line (first transmitting signal line 108 and second transmitting signal line 208), and perform data interaction based on the wired data communication connection.

[0046] As can be seen from the above, the audio device 100 and the handheld device 200 are detachably connected; the audio device 100 includes a first transmitting signal line 108, a first receiving signal line 109, a first control module 101, and an audio output module 102, with the first control module 101 connected to the audio output module 102; the handheld device 200 includes a second transmitting signal line 208, a second receiving signal line 209, a second control module 201, and a scene auxiliary module 202, with the second control module 201 connected to the scene auxiliary module 202; thus, firstly, when the audio device 100 needs to be controlled independently, the handheld device 200 can be detached from the audio device 100, and the audio can be controlled based on the first control module. The output module 102 outputs audio data, enabling the speaker device 100 to be independently controlled to achieve corresponding functions. When the handheld device 200 needs to be controlled and used independently, the handheld device 200 can be detached from the speaker device 100. Based on the second control module 201, the scene auxiliary module 202 is controlled to set or display golf scene data, so that the handheld device 200 can be independently controlled to achieve its corresponding functions, such as golf auxiliary functions. This allows the speaker device 100 and the handheld device 200 to be controlled and used independently, so that the speaker device 100 and the handheld device 200 can be separated according to the needs of the scene. Thus, the speaker device 100 or the handheld device 200 can be carried and used independently, improving the ease of use of the audio system. Secondly, when the handheld device 200 and the audio device 100 need to be used together, a wired data communication connection is established between the audio device 100 and the handheld device 200 by aligning the contacts of the first receiving signal line 109 and the second transmitting signal line 208, and the contacts of the first transmitting signal line 108 and the second receiving signal line 209. This allows the handheld device 200 and the audio device 100 to send and receive wired interactive data based on the established wired data communication connection, thereby enabling the audio device 100 and the handheld device 200 to be used together and achieve data interaction. Furthermore, since the audio device 100 and the handheld device 200 can be detachably connected by snap-fit ​​or magnetic attraction, the handheld device 200 and the audio device 100 can be attached together, improving the convenience of using the audio device 100 and the handheld device 200 together. This allows the audio equipment 100 and the handheld device 200 to be controlled independently or in combination, thus enabling the audio equipment 100 and the handheld device 200 to be used separately or in combination according to the needs of the scenario, thereby improving the ease of use of the audio system.

[0047] Please see Figure 6 and Figure 7 , Figure 7 This is a flowchart illustrating a sound system control method provided in an embodiment of this application. It can be understood that... Figure 7The flowchart steps shown are mainly for illustration. In actual application, the steps may not be executed in the order shown in the flowchart (for example, step 703 can be executed first, followed by step 701), and some steps can be executed in parallel (for example, steps 701 and 702 can be executed in parallel). The audio system control method is applied to an audio system, which includes an audio device and a handheld device, which are detachably connected. The audio device includes a first transmitting signal line, a first receiving signal line, a first control module, and an audio output module, with the first control module connected to the audio output module. The handheld device includes a second transmitting signal line, a second receiving signal line, a second control module, and a scene auxiliary module, with the second control module connected to the scene auxiliary module. The specific implementation of this audio system can be found in the previous descriptions and will not be repeated here. The audio system control method includes steps 701-705, wherein: 701. When the audio device and the handheld device are detached, the first control module controls the audio output module to output audio data.

[0048] 702. When the audio equipment and the handheld device are detached, the second control module controls the scene auxiliary module to set or display golf scene data.

[0049] 703. When the audio device and the handheld device are in a combined connection state, if it is detected that the contact of the first receiving signal line is in contact with the contact of the second transmitting signal line, and the contact of the first transmitting signal line is in contact with the contact of the second receiving signal line, then a wired data communication connection is established between the audio device and the handheld device.

[0050] 704. After the wired data communication connection has been established, the first wired interactive data transmitted from the second transmitting signal line to the first receiving signal line is obtained through the first control module.

[0051] 705. After the wired data communication connection has been established, the second control module acquires the second wired interactive data transmitted from the first transmitting signal line to the second receiving signal line.

[0052] In some embodiments, after the wired data communication connection has been established, the second communication interaction module sends first wired interaction data to the first communication interaction module based on the second transmitting signal line; the first communication interaction module receives the first wired interaction data based on the first receiving signal line; when the first communication interaction module receives the first wired interaction data, the first control module controls the audio output module to output audio data based on the first wired interaction data.

[0053] In some embodiments, after the wired data communication connection has been established, the first communication interaction module sends second wired interaction data to the second communication interaction module based on the first transmitting signal line; the second communication interaction module receives the second wired interaction data based on the second receiving signal line; when the second communication interaction module receives the second wired interaction data, the second control module controls the scene assistance module to set or display golf scene data based on the second wired interaction data.

[0054] In some embodiments, when the audio device and the handheld device are in a combined connection state, the handheld device is in a powered-on state and the audio device is in a powered-off state, the handheld device transmits a high-level signal to the first trigger signal line based on the second trigger signal line; when the second trigger signal line transmits a high-level signal to the first trigger signal line, the first control unit controls the audio device to power on.

[0055] In some embodiments, when the audio device and the handheld device are in a combined connection state, the handheld device is in a powered-off state and the audio device is in a powered-on state, the handheld device transmits a low-level signal to the first trigger signal line based on the second trigger signal line; when the second trigger signal line transmits a low-level signal to the first trigger signal line, the first power module transmits a charging voltage to the second power signal line based on the first power signal line to charge the handheld device.

[0056] In some embodiments, the second power module triggers a wake-up signal for the handheld device when the charging voltage is present on the second power signal line; the first control module controls the handheld device to power on when the wake-up signal is detected.

[0057] In some embodiments, after the wireless data communication connection is established, first wireless interaction data is transmitted to the first wireless communication unit through the second wireless communication unit; and after the wireless data communication connection is established, second wireless interaction data is transmitted to the second wireless communication unit through the first wireless communication unit.

[0058] In some embodiments, the first interactive module receives a first interactive operation; the first control module controls the audio output module to output audio data based on the first interactive operation.

[0059] In some embodiments, the second interactive operation is received through the second button interaction module; the second control module controls the scene assistance module to set or display golf scene data based on the second interactive operation.

[0060] The specific implementation process and technical effects of the audio system control method can be found in the previous introduction to audio systems, and will not be repeated here.

[0061] The above provides a detailed description of an audio system and audio system control method provided by the embodiments of this application. Specific examples have been used to illustrate the principles and implementation methods of this application. The descriptions of the above embodiments are only for the purpose of helping to understand the method and core ideas of this application. Furthermore, those skilled in the art will recognize that, based on the ideas of this application, there will be changes in the specific implementation methods and application scope. For example, the various technical features in the above embodiments can be arbitrarily combined, as long as there is no conflict or contradiction between the combinations of features. Therefore, any combination of the various technical features in the above embodiments also falls within the scope of this specification. In conclusion, the content of this specification should not be construed as a limitation of this application.

Claims

1. A sound system, characterized in that, The audio system includes an audio device and a handheld device, which are detachably and combinably connected; The audio device includes a first transmitting signal line, a first receiving signal line, a first control module, and an audio output module. The first control module is connected to the audio output module and is used to control the audio output module to output audio data. The handheld device includes a second transmitting signal line, a second receiving signal line, a second control module, and a scene assistance module. The second control module is connected to the scene assistance module and is used to control the scene assistance module to set or display golf scene data. When the audio device and the handheld device are in a combined connection state, the contact of the first receiving signal line is in contact with the contact of the second transmitting signal line, and the contact of the first transmitting signal line is in contact with the contact of the second receiving signal line, so as to establish a wired data communication connection between the audio device and the handheld device.

2. The audio system according to claim 1, characterized in that, The first control module is also used to acquire, after the wired data communication connection has been established, the first wired interactive data transmitted from the second transmitting signal line to the first receiving signal line; The second control module is also used to acquire second wired interactive data transmitted from the first transmitting signal line to the second receiving signal line after the wired data communication connection has been established.

3. The audio system according to claim 2, characterized in that, The audio device further includes a first communication interaction module, and the first control module is connected to the first communication interaction module; the handheld device further includes a second communication interaction module, and the second control module is connected to the second communication interaction module. The second communication interaction module is used to send first wired interaction data to the first communication interaction module based on the second transmission signal line after the wired data communication connection has been established; The first communication interaction module is used to receive the first wired interaction data based on the first receiving signal line; The first control module is further configured to control the audio output module to output audio data based on the first wired interaction data when the first communication interaction module receives the first wired interaction data.

4. The audio system according to claim 2, characterized in that, The audio device further includes a first communication interaction module, and the first control module is connected to the first communication interaction module; the handheld device further includes a second communication interaction module, and the second control module is connected to the second communication interaction module. The first communication interaction module is used to send second wired interaction data to the second communication interaction module based on the first transmission signal line after the wired data communication connection has been established; The second communication interaction module is used to receive the second wired interaction data based on the second receiving signal line; The second control module is also used to control the scene assistance module to set or display golf scene data based on the second wired interaction data when the second communication interaction module receives the second wired interaction data.

5. The audio system according to claim 1, characterized in that, The audio device further includes a first trigger signal line, and the handheld device further includes a second trigger signal line; when the audio device and the handheld device are in a combined connection state, the contacts of the first trigger signal line and the contacts of the second trigger signal line are in contact. When the audio device and the handheld device are in a combined connection state, the handheld device is in a powered-on state and the audio device is in a powered-off state, the handheld device transmits a high-level signal to the first trigger signal line based on the second trigger signal line; The first control unit is also used to control the audio equipment to turn on when the second trigger signal line transmits a high-level signal to the first trigger signal line.

6. The audio system according to claim 1, characterized in that, The audio device further includes a first trigger signal line, a first power signal line, and a first power module, with one end of the first power signal line connected to the first power module; the handheld device further includes a second trigger signal line, a second power signal line, and a second power module, with one end of the second power signal line connected to the second power module; when the audio device and the handheld device are in a combined connection state, the contacts of the first trigger signal line and the second trigger signal line are in contact, and the contacts of the first power signal line and the second power signal line are in contact; When the audio device and the handheld device are in a combined connection state, the handheld device is in a powered-off state and the audio device is in a powered-on state, the handheld device transmits a low-level signal to the first trigger signal line based on the second trigger signal line; The first power module is used to transmit a charging voltage from the first power signal line to the second power signal line when the second trigger signal line transmits a low-level signal to the first trigger signal line, so as to charge the handheld device.

7. The audio system according to claim 6, characterized in that, The second power module is connected to the second control module; The second power module is also used to trigger a wake-up signal for the handheld device when the charging voltage is present on the second power signal line; The first control module is also used to control the handheld device to power on when a wake-up signal of the handheld device is detected.

8. The audio system according to claim 1, characterized in that, The first control module further includes a first wireless communication unit, and the second control module includes a second wireless communication unit. The first wireless communication unit is used to establish a connection with the second wireless communication unit to establish a wireless data communication connection between the audio device and the handheld device. The second wireless communication unit is used to transmit first wireless interactive data to the first wireless communication unit after the wireless data communication connection has been established; The first wireless communication unit is used to transmit second wireless interactive data to the second wireless communication unit after the wireless data communication connection has been established.

9. The audio system according to claim 1, characterized in that, The audio device further includes a first button interaction module, which is connected to the first control module. The first button interaction module is used to receive a first interaction operation. The first control module is also used to control the audio output module to output audio data based on the first interaction operation. And / or, the handheld device further includes a second button interaction module, which is connected to the second control module. The second button interaction module is used to receive a second interaction operation; the second control module is also used to control the scene assistance module to set or display golf scene data based on the second interaction operation.

10. A method for controlling an audio system, characterized in that, The invention is applied to an audio system, which includes an audio device and a handheld device, the audio device and the handheld device being detachably and combinably connected; the audio device includes a first transmitting signal line, a first receiving signal line, a first control module and an audio output module, the first control module being connected to the audio output module; the handheld device includes a second transmitting signal line, a second receiving signal line, a second control module and a scene assistance module, the second control module being connected to the scene assistance module; The method includes: When the audio device and the handheld device are detached, the first control module controls the audio output module to output audio data. When the audio equipment and the handheld device are detached, the second control module controls the scene assistance module to set or display golf scene data. When the audio device and the handheld device are in a combined connection state, if it is detected that the contact of the first receiving signal line is in contact with the contact of the second transmitting signal line and the contact of the first transmitting signal line is in contact with the contact of the second receiving signal line, then a wired data communication connection is established between the audio device and the handheld device. After the wired data communication connection has been established, the first wired interactive data transmitted from the second transmitting signal line to the first receiving signal line is obtained through the first control module. After the wired data communication connection is established, the second control module acquires the second wired interactive data transmitted from the first transmitting signal line to the second receiving signal line.