Hearing device
By adding walkie-talkie function components and mode detection components to hearing devices, the devices can be flexibly switched from hearing mode to walkie-talkie mode, solving the problem of limited application scenarios and improving usage rate and user stickiness.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 深圳市星桐科技有限公司
- Filing Date
- 2025-06-04
- Publication Date
- 2026-05-15
AI Technical Summary
The application scenarios of existing hearing devices are relatively limited, resulting in low user stickiness and low usage rate.
The hearing device is equipped with a walkie-talkie function component, a detachable walkie-talkie antenna, an antenna connector, and a walkie-talkie mode detection component, giving it dual functions of hearing and walkie-talkie, and enabling flexible mode switching through a processor.
By adding walkie-talkie functionality, the application scenarios were enriched, user engagement was enhanced, and the usage rate and flexibility of hearing devices were increased.
Smart Images

Figure CN224249844U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of hearing aid technology, and more particularly to a hearing device. Background Technology
[0002] Listening devices, such as audio players, can refer to devices used to assist in improving English listening skills. Currently, in practical applications, the use cases for listening devices are relatively limited, such as being restricted to internet browsing, file downloading, and repeating audio. This leads to low user engagement and reduces the usage rate of listening devices. Therefore, how to increase the usage rate of listening devices is a pressing technical problem that needs to be solved. Utility Model Content
[0003] In view of this, this application provides a hearing device to improve the usage rate of hearing devices.
[0004] This application provides a hearing device, including a power module, hearing aid functional components, and a processor. The hearing device further includes:
[0005] A walkie-talkie functional component is connected to the power module and the processor;
[0006] The walkie-talkie functional component is equipped with a voltage converter; the voltage converter is connected to the power module to convert the power voltage output by the power module into a power voltage that meets the operating requirements of the walkie-talkie functional component.
[0007] Antenna connector;
[0008] A detachable walkie-talkie antenna, which is connected to the antenna connector when not detached; and...
[0009] A walkie-talkie mode detection component is connected to the antenna connector and the processor;
[0010] The walkie-talkie mode detection component outputs an access signal to the processor when the antenna connector is connected to the detachable walkie-talkie antenna; the processor receives the access signal and activates the walkie-talkie function component to switch from the current hearing aid mode to the walkie-talkie mode.
[0011] Optionally, the walkie-talkie mode detection component outputs a disconnect signal to the processor when the detachable walkie-talkie antenna is disconnected from the antenna connector; wherein, the processor receives the disconnect signal and shuts down the walkie-talkie function component to switch from walkie-talkie mode to hearing machine mode.
[0012] Optionally, the hearing device further includes: a button assembly; the button assembly is connected to the processor;
[0013] When the processor is in walkie-talkie mode, it receives a notification that the button component is triggered and disables the walkie-talkie function component to switch from walkie-talkie mode to hearing machine mode.
[0014] Optionally, the antenna connector is a Sub-Miniature Version A (SMA) connector.
[0015] Optionally, the walkie-talkie mode detection component is a Hall switch.
[0016] Optionally, the detachable walkie-talkie antenna includes a magnetic component; the magnetic component is disposed on one end of the detachable walkie-talkie antenna and connected to the antenna connector.
[0017] The walkie-talkie mode detection component detects the magnetic signal emitted by the magnetic component, determines that the antenna connector is connected to the detachable walkie-talkie antenna, and outputs an access signal to the processor.
[0018] Optionally, the magnetic component is a magnetic ring.
[0019] Optionally, the voltage conversion component is a low-dropout regulator (LDO).
[0020] Optionally, the hearing device further includes a wireless fidelity (WIFI) antenna that matches the functional components of the hearing aid.
[0021] The WIFI antenna and the antenna connector are positioned differently on the hearing device.
[0022] Optionally, the processor is connected to the walkie-talkie functional components via a serial port or a Universal Serial Bus (USB) interface.
[0023] As can be seen from the above technical solutions, in the embodiments of this application, by adding components for realizing walkie-talkie functions, such as walkie-talkie function components, detachable walkie-talkie antennas, antenna connectors, and walkie-talkie mode detection components, to traditional hearing devices, the hearing devices can have both hearing functions and walkie-talkie functions, realizing the diversification of application scenarios. This can effectively improve user stickiness and thus increase the usage rate of hearing devices.
[0024] Furthermore, in this embodiment, the detachable walkie-talkie antenna is a detachable component. When not detached, it is connected to the antenna connector. The walkie-talkie mode detection component detects the connection of the detachable walkie-talkie antenna and feeds back the connection signal to the processor. The processor can then flexibly switch between hearing device mode and walkie-talkie mode based on the connection signal, thereby improving the flexibility and convenience of using the walkie-talkie function. Attached Figure Description
[0025] The accompanying drawings, which are incorporated in and form part of this application, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application.
[0026] Figure 1 This is a schematic diagram of the structure of a hearing device provided in an embodiment of this application.
[0027] Figure 2 This is a schematic diagram of another hearing device provided in an embodiment of this application.
[0028] Figure 3 This is a schematic diagram of the functional components of a walkie-talkie provided in an embodiment of this application.
[0029] Figure 4 This is a schematic diagram of the antenna layout provided in an embodiment of this application.
[0030] Figure 5 This is a schematic diagram of another hearing device provided in an embodiment of this application. Detailed Implementation
[0031] To enable those skilled in the art to better understand the technical solutions provided in the embodiments of this application, and to make the above-mentioned objectives, features and advantages of the embodiments of this application more apparent and understandable, the technical solutions in the embodiments of this application will be further described in detail below with reference to the accompanying drawings.
[0032] See Figure 1 , Figure 1 This is a schematic diagram of the structure of a hearing device provided in an embodiment of this application. Figure 1 As shown, the hearing device 100 includes: a power module 101, a hearing machine functional component 102, and a processor 103; the hearing device 100 also includes: a walkie-talkie functional component 104, a detachable walkie-talkie antenna 105, an antenna connector 106, and a walkie-talkie mode detection component 107.
[0033] In this embodiment, the power module 101 in the hearing device 100 supplies power to the various components in the hearing device 100. Specifically, the hearing aid functional component 102, the processor 103, and the walkie-talkie functional component 104 are all connected to the power module 101 so that the power module 101 supplies power to the hearing aid functional component 102, the processor 103, and the walkie-talkie functional component 104.
[0034] Optionally, the processor 103 can be a component independent of the hearing aid functional component 102, or it can be a component included in the hearing aid functional component 102. This embodiment does not specifically limit this. It should be noted that this embodiment uses the example of the processor 103 being a component independent of the hearing aid functional component 102 for illustrative purposes.
[0035] As an example, the walkie-talkie functional component 104 is equipped with a voltage converter; the voltage converter is connected to the power module 101 to convert the power supply voltage output by the power module into a power supply voltage that meets the operating requirements of the walkie-talkie functional component.
[0036] Alternatively, the voltage converter may be a low-voltage regulator (LDO), but this embodiment is not specifically limited to this.
[0037] In this embodiment, the detachable walkie-talkie antenna 105 is connected to the antenna connector 106 when not detached, and is placed in a designated position on the hearing device 100 when not in use. The antenna connector 106 is connected to the walkie-talkie functional component 104 to establish a communication connection between the detachable walkie-talkie antenna 105 and the walkie-talkie functional component 104.
[0038] Accordingly, as an example, the detachable walkie-talkie antenna 105 can be placed at a designated location on the hearing device 100 when it is detached.
[0039] In this embodiment, the frequency band used by the detachable walkie-talkie antenna 105 can be the specified walkie-talkie operating frequency band, such as 400-470MHz. In wireless communication, the lower the frequency of the band, the longer the antenna wavelength and the longer the antenna length. Based on this, the antenna body of the detachable walkie-talkie antenna 105 in this embodiment is relatively long. If it were built into the hearing device, it would occupy a lot of space. Therefore, as an embodiment, the specified location can be a certain location outside the hearing device 100, such as a certain location on the back of the hearing device 100 or a certain location on the side of the hearing device 100. This embodiment is not specifically limited, as long as it can ensure that the normal display of the display screen of the hearing device 100 is not affected.
[0040] Optionally, the antenna connector 106 described above can be, for example, an SMA connector, but this embodiment is not specifically limited to that.
[0041] In this embodiment, the walkie-talkie mode detection component 107 is connected to the antenna connector 106 and the processor 103. The processor 103 is connected to the walkie-talkie mode detection component 107 and the walkie-talkie function component 104.
[0042] In this embodiment, as an example, the default working mode of the hearing device 100 after powering on is the hearing machine mode. Subsequently, the connection status of the detachable walkie-talkie antenna 105 can be monitored by the walkie-talkie mode detection component 107 to achieve automatic switching between the hearing machine mode and the walkie-talkie mode.
[0043] Specifically, when the walkie-talkie mode detection component 107 connects the detachable walkie-talkie antenna 105 to the antenna connector 106, it outputs an access signal to the processor 103. This access signal indicates that the antenna connector 106 is connected to the detachable walkie-talkie antenna 105. Based on this, the processor 103 receives the access signal sent by the walkie-talkie mode detection component 107 and activates the walkie-talkie function component 104 to switch from the current hearing aid mode to the walkie-talkie mode.
[0044] Accordingly, when the detachable walkie-talkie antenna 105 is disconnected from the antenna connector 106, the walkie-talkie mode detection component 107 outputs a disconnect signal to the processor 103. This disconnect signal indicates that the detachable walkie-talkie antenna 105 is disconnected from the antenna connector 106. Based on this, the processor 103 receives the disconnect signal sent by the walkie-talkie mode detection component 107 and disables the walkie-talkie function component 104 to switch from walkie-talkie mode to hearing device mode.
[0045] Optionally, the walkie-talkie mode detection component 107 described above can be, for example, a Hall switch; this embodiment is not specifically limited to this.
[0046] As for how to detect when the antenna connector 106 is connected to the detachable walkie-talkie antenna 105, and how to detect when the detachable walkie-talkie antenna 105 is disconnected from the antenna connector 106, examples will be given below, and will not be elaborated here.
[0047] This concludes the process. Figure 1 Description of the structure shown.
[0048] pass Figure 1 As can be seen from the structure shown, in this embodiment, by adding components for implementing walkie-talkie functionality, such as a walkie-talkie function component, a detachable walkie-talkie antenna, an antenna connector, and a walkie-talkie mode detection component, to a traditional hearing device, the hearing device can possess both hearing and walkie-talkie functions, achieving diversification of application scenarios. This effectively enhances user stickiness and thus increases the usage rate of the hearing device. Furthermore, in this embodiment, the detachable walkie-talkie antenna is a detachable component. When not detached, it is connected to the antenna connector. The walkie-talkie mode detection component detects the connection of the detachable walkie-talkie antenna and feeds back the connection signal to the processor. The processor then uses the connection signal to flexibly switch between hearing device mode and walkie-talkie mode, thereby improving the flexibility and convenience of using the walkie-talkie function.
[0049] The following describes, with examples, how to detect when antenna connector 106 is connected to detachable walkie-talkie antenna 105, and how to detect when detachable walkie-talkie antenna 105 is disconnected from antenna connector 106:
[0050] In this embodiment, the detachable walkie-talkie antenna 105 includes a magnetic component; the magnetic component is disposed on one end of the detachable walkie-talkie antenna 105 that is connected to the antenna connector 106. Optionally, the magnetic component here may be, for example, a magnetic ring.
[0051] Based on this, the walkie-talkie mode detection component 107 detects the magnetic signal generated by the magnetic component and determines that the antenna connector 106 is connected to the detachable walkie-talkie antenna 105; correspondingly, if no magnetic signal is detected by the magnetic component, it determines that the detachable walkie-talkie antenna 105 is disconnected from the antenna connector 106.
[0052] The following is combined Figure 2 For example:
[0053] Please refer to Figure 2 , Figure 2 This is another structural schematic diagram of the hearing device provided in an embodiment of this application. (See attached diagram.) Figure 2 As shown, a magnetic ring 203 is configured on one end of the detachable walkie-talkie antenna 105 that connects to the SMA connector 202 (e.g., at the root nut of the detachable walkie-talkie antenna 105); a Hall switch 201 is connected to the SMA connector 202; and a processor 103 is connected to the walkie-talkie functional component 104 and the Hall switch 201. The SMA connector 202 and the walkie-talkie functional component 104 can be connected via a printed circuit board (PCB) microstrip line to transmit radio frequency (RF) signals. The processor 103 and the walkie-talkie functional component 104 can communicate via a serial port or USB interface.
[0054] Based on this, the SMA connector 202 is connected to the detachable walkie-talkie antenna 105. The Hall switch 201 detects the magnetic signal generated by the magnetic ring 203 on the detachable walkie-talkie antenna 105. At this time, it can be determined that the antenna connector 106 is connected to the detachable walkie-talkie antenna 105, and an access signal can be output to the processor 103. Then, the processor 103 receives the access signal sent by the Hall switch 201 and activates the walkie-talkie function component 104 to switch from the current hearing aid mode to the walkie-talkie mode.
[0055] When the detachable walkie-talkie antenna 105 is disconnected from the SMA connector 202, the Hall switch 201 will no longer detect the magnetic signal generated by the ferrite ring 203 on the detachable walkie-talkie antenna 105. At this point, it can be determined that the detachable walkie-talkie antenna 105 is disconnected from the antenna connector 106, and a disconnect signal can be output to the processor 103. Subsequently, the processor 103 receives the disconnect signal sent by the Hall switch 201 and shuts down the walkie-talkie function component 104 to switch from walkie-talkie mode to hearing device mode.
[0056] Based on the above description, in this embodiment, a button component can be further provided on the hearing device to enable switching between walkie-talkie mode and hearing device mode.
[0057] For example, as one embodiment, the hearing device further includes a button assembly, wherein the button assembly is connected to the processor 103. Based on this, when the current mode is walkie-talkie mode, the processor 103 receives a trigger on the button assembly and disables the walkie-talkie function component 104 to switch from walkie-talkie mode to hearing device mode.
[0058] It should be noted that the prerequisite for switching to the walkie-talkie mode in this embodiment is that the detachable walkie-talkie antenna 105 needs to be connected to the hearing device, that is, connected to the antenna connector 106. Based on this, when the current hearing device mode is activated, the button component is triggered. When the walkie-talkie antenna is connected to the antenna connector 106, the walkie-talkie function component 104 is turned on to switch from the hearing device mode to the walkie-talkie mode. When the detachable walkie-talkie antenna 105 is disconnected from the antenna connector 106, the hearing device mode remains unchanged.
[0059] The following is a further description of the walkie-talkie functional component 104:
[0060] Please refer to Figure 3 , Figure 3 This is a schematic diagram of the functional components of a walkie-talkie provided in an embodiment of this application. Figure 3 As shown, the walkie-talkie functional components 104 include: an antenna switch (ANT SW) 1041, a power amplifier (PA) 1042, a low noise amplifier (LNA) 1043, a filter 1044, an RF transceiver 1045, a communication controller 1046, a speaker interface 1047, a microphone interface 1048, and a low-voltage regulator 1049.
[0061] Antenna switch 1041 is connected to SMA connector 202 to connect detachable walkie-talkie antenna 105 via SMA connector 202. Antenna switch 1041 is also connected to low-noise amplifier 1043 and RF power amplifier 1042.
[0062] Antenna switch 1041 receives externally transmitted radio frequency (RF) signals from the detachable walkie-talkie antenna 105, switches the current signal transmission channel to the signal receiving channel to receive the RF signals transmitted by the detachable walkie-talkie antenna 105, and transmits the RF signals to the low-noise amplifier 1043; receives RF signals transmitted by the RF power amplifier 1042, switches the current signal transmission channel to the signal transmitting channel to transmit the RF signals to the detachable walkie-talkie antenna 105, so that the detachable walkie-talkie antenna 105 can transmit the RF signals.
[0063] The low-noise amplifier 1043 is connected to the filter 1044. The low-noise amplifier 1043 receives the radio frequency signal, performs low-noise processing on the radio frequency signal, that is, amplifies the intensity of the radio frequency signal and minimizes the noise of the radio frequency signal, and transmits the low-noise processed radio frequency signal to the filter 1044.
[0064] Filter 1044 is connected to RF transceiver 1045. Filter 1044 receives RF signals, filters the RF signals, and transmits the filtered RF signals to communication controller 1046.
[0065] The communication controller 1046 is connected to the speaker interface and microphone interface 1048. The communication controller 1046 receives radio frequency signals transmitted from the radio frequency transceiver 1045, converts the radio frequency signals into audio signals, and transmits them through the speaker interface 1047 to the speaker 112 connected to the speaker interface 1047. The communication controller 1046 also receives audio signals transmitted from the microphone 113 connected to the microphone interface 1048, converts the audio signals into radio frequency signals, and transmits them to the radio frequency transceiver 1045.
[0066] The communication controller 1046 is also connected to the processor 103 via a serial port so that the processor 103 can control the opening and closing of the walkie-talkie function component 104.
[0067] The RF transceiver 1045 is connected to the RF power amplifier 1042. The RF transceiver 1045 receives the RF signal transmitted by the RF transceiver 1042, amplifies the power of the RF signal, and transmits it to the antenna switch 1041.
[0068] The low-voltage regulator 1049 is connected to the antenna switch 1041, the RF power amplifier 1042, the low-noise amplifier 1043, the filter 1044, the RF transceiver 1045, and the communication controller 1046. The low-voltage regulator 1049 is also connected to the power module 101 in the hearing device 100 to convert the power voltage output from the power module 101 to the walkie-talkie functional component 104 into a power voltage that meets the operating requirements of the walkie-talkie functional component 104. Figure 3 In this context, BAT represents the positive terminal of the power supply, and GND represents the negative terminal of the power supply, which is also the grounding terminal of the wire.
[0069] The following is a further description of hearing devices:
[0070] In this embodiment, the hearing device also includes a WIFI antenna that matches the hearing machine functional component 102; wherein the layout positions of the WIFI antenna and the antenna connector 106 on the hearing device are different and can be flexibly set according to actual application requirements.
[0071] Please refer to Figure 4 , Figure 4 This is a schematic diagram of the antenna layout provided for an embodiment of this application. Figure 4 As shown, the hearing device also includes a WIFI antenna 108. The WIFI antenna 108 can be deployed within the internal space of the hearing device. The layout of the WIFI antenna 108 differs from that of the SMA connector 202 on the hearing device, as shown... Figure 4 As shown, the WIFI antenna 108 can be positioned at the upper left corner of the hearing device, and the SMA connector 202 can be positioned at the upper right corner of the hearing device.
[0072] To facilitate understanding of the hearing device provided in the above embodiments, the following is in conjunction with... Figure 5 The hearing device provided in this embodiment will be illustrated with specific examples.
[0073] Please see Figure 5 , Figure 5 This is a schematic diagram of the structure of another hearing device provided in an embodiment of this application. Figure 5As shown, the processor 103 is connected to the WIFI antenna 108, memory 109, hearing aid component 102, walkie-talkie component 104, walkie-talkie mode detection component 107, button component 110, display screen 114, and audio amplifier (AMP) 111. The walkie-talkie component 104 is connected to the audio amplifier 111, and the audio amplifier 111 is connected to the speaker 112. The walkie-talkie component 104 is also connected to the microphone 113. The detachable walkie-talkie antenna 105 is connected to the walkie-talkie component 104 via antenna connector 106. The walkie-talkie mode detection component 107 is connected to antenna connector 106. As described above, all components in the hearing aid are powered by the power module 101.
[0074] In this embodiment, when the detachable walkie-talkie antenna 105 is detached, it is placed in a designated position on the hearing device (such as a certain position on the back of the hearing device). When it is needed, the detachable walkie-talkie antenna 105 can be taken out from the designated position on the hearing device, and the plug of the antenna connector 106 can be unplugged to connect the detachable walkie-talkie antenna 105 to the antenna connector 106.
[0075] Based on this, when the detachable walkie-talkie antenna 105 is connected to the antenna connector 106, the walkie-talkie mode detection component 107 outputs an access signal to the processor 103; then, the processor 103 receives the access signal and activates the walkie-talkie function component 104 to switch from the current hearing aid mode to the walkie-talkie mode. When the detachable walkie-talkie antenna 105 is disconnected from the antenna connector 106, the walkie-talkie mode detection component 107 outputs a disconnect signal to the processor 103; then, the processor 103 receives the disconnect signal and deactivates the walkie-talkie function component 104 to switch from the walkie-talkie mode to the hearing aid mode.
[0076] As an example, when the detachable walkie-talkie antenna 105 is connected to the antenna connector 106:
[0077] When the processor 103 is in hearing device mode, the receiver button component 110 is triggered, activating the walkie-talkie function component 104 to switch from hearing device mode to walkie-talkie mode. When the processor 103 is in walkie-talkie mode, the receiver button component 110 is triggered, deactivating the walkie-talkie function component 104 to switch from walkie-talkie mode to hearing device mode.
[0078] When the detachable walkie-talkie antenna 105 is disconnected from the antenna connector 106:
[0079] When the processor 103 is in hearing machine mode, the receiving button component 110 is triggered and will maintain the current mode, i.e., hearing machine mode.
[0080] Based on the above description, as an embodiment, when the detachable walkie-talkie antenna 105 is connected to the antenna connector 106, the detachable walkie-talkie antenna 105 receives externally transmitted radio frequency signals (such as radio frequency signals transmitted by another hearing device), and transmits the radio frequency signals to the walkie-talkie functional component 104. The walkie-talkie functional component 104 receives the radio frequency signals, processes the radio frequency signals, and transmits the processed audio signals to the audio power amplifier 111. As for how the walkie-talkie functional component 104 processes the radio frequency signals, please refer to the relevant description above, which will not be repeated here.
[0081] The audio power amplifier 111 receives the audio signal transmitted by the walkie-talkie function component 104, amplifies the audio signal, and transmits the processed audio signal to the speaker 112 for output.
[0082] Accordingly, in the current walkie-talkie mode, microphone 113 receives externally input audio signals and transmits them to walkie-talkie function component 104. Walkie-talkie function component 104 receives the audio signals, processes them, and transmits the resulting radio frequency signal to the detachable walkie-talkie antenna 105. How walkie-talkie function component 104 processes the audio signals is described above and will not be repeated here.
[0083] The detachable walkie-talkie antenna 105 receives radio frequency signals and transmits them to a corresponding device, such as the other hearing device mentioned above.
[0084] As an example, in the current hearing aid mode:
[0085] Processor 103 receives audio signals transmitted from hearing aid functional component 102 and transmits the audio signals to audio power amplifier 111. Then, audio power amplifier 111 receives the audio signals transmitted from processor 103, amplifies the audio signals, and transmits the processed audio signals to speaker 112 for output. Processor 103 also receives audio signals transmitted from microphone 113 and transmits the audio signals to hearing aid functional component 102 for corresponding processing.
[0086] It should be noted that this embodiment does not specifically limit whether the processor 103 processes the received audio signal or how it processes it, and can be flexibly set based on actual application requirements.
[0087] As one embodiment, the aforementioned display screen 114 can be, for example, an LCD (Liquid Crystal Display), which can be used to display the content required by the hearing device. This embodiment does not specifically limit the content displayed on the display screen 114, and it can be flexibly set based on actual application needs.
[0088] The aforementioned memory 109 serves as a storage medium for the hearing device, such as storing audio data, but this embodiment does not limit it to this.
[0089] This concludes the structural description of the hearing device provided in the embodiments of this application.
[0090] The above are merely preferred embodiments of this application and are not intended to limit the scope of this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the scope of protection of this application.
Claims
1. A hearing device, comprising a power module, hearing aid functional components, and a processor, characterized in that, The hearing device also includes: A walkie-talkie functional component is connected to the power module and the processor; The walkie-talkie functional component is equipped with a voltage converter; the voltage converter is connected to the power module to convert the power voltage output by the power module into a power voltage that meets the operating requirements of the walkie-talkie functional component. Antenna connector; A detachable walkie-talkie antenna, which is connected to the antenna connector when not detached; and... A walkie-talkie mode detection component is connected to the antenna connector and the processor; The walkie-talkie mode detection component outputs an access signal to the processor when the antenna connector is connected to the detachable walkie-talkie antenna; the processor receives the access signal and activates the walkie-talkie function component to switch from the current hearing aid mode to the walkie-talkie mode.
2. The hearing device according to claim 1, characterized in that, The walkie-talkie mode detection component outputs a disconnect signal to the processor when the detachable walkie-talkie antenna is disconnected from the antenna connector; wherein, the processor receives the disconnect signal and shuts down the walkie-talkie function component to switch from walkie-talkie mode to hearing machine mode.
3. The hearing device according to claim 1, characterized in that, The hearing device further includes: a button assembly; the button assembly is connected to the processor; When the processor is in walkie-talkie mode, it receives a notification that the button component is triggered and disables the walkie-talkie function component to switch from walkie-talkie mode to hearing machine mode.
4. The hearing device according to claim 1, characterized in that, The antenna connector is an ultra-miniature version of the ASMA connector.
5. The hearing device according to claim 1, characterized in that, The walkie-talkie mode detection component is a Hall switch.
6. The hearing device according to claim 1, characterized in that, The detachable walkie-talkie antenna includes a magnetic component; the magnetic component is disposed on one end of the detachable walkie-talkie antenna and connected to the antenna connector; The walkie-talkie mode detection component detects the magnetic signal emitted by the magnetic component, determines that the antenna connector is connected to the detachable walkie-talkie antenna, and outputs an access signal to the processor.
7. The hearing device according to claim 6, characterized in that, The magnetic component is a magnetic ring.
8. The hearing device according to claim 1, characterized in that, The voltage converter is a low-voltage regulator (LDO).
9. The hearing device according to claim 1, characterized in that, The hearing device also includes: a wireless high-fidelity WIFI antenna that matches the functional components of the hearing machine; The WIFI antenna and the antenna connector are positioned differently on the hearing device.
10. The hearing device according to claim 1, characterized in that, The processor is connected to the walkie-talkie functional components via a serial port or a Universal Serial Bus (USB) interface.