Wireless earphone mounting structure and notebook computer
By setting a display screen on the wireless headset and realizing current exchange and signal transmission with the laptop, the problem of insufficient interactive function of the wireless headset on the laptop is solved, information sharing and interactive expansion are realized, and the user experience is improved.
Patent Information
- Application Number
- CN202510883807.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-27
- Publication Date
- 2025-09-26
AI Technical Summary
Existing wireless headset designs lack deep interactive capabilities on laptops, especially in terms of information display and interactive combination, and fail to fully utilize the interactive potential of headsets and laptops.
A display screen is set on the wireless headset, and a contact component is designed in the headset compartment to enable current exchange and signal transmission between the headset and the laptop computer. The display screen is used to display device information and visual information of signal transmission.
Information sharing and interactive expansion are realized between the headset and the laptop. The headset display can show the device status and instant information pushed by the laptop, enriching the user's information acquisition channels and interactive experience.
Smart Images

Figure CN120704480A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of computer equipment, and in particular to a wireless headset mounting structure and a notebook computer. Background Art
[0002] With the trend toward wireless and lightweight office products, users are increasingly demanding portable electronic devices. Traditional wired headphones, in scenarios like office meetings, are increasingly unable to meet users' demands for an efficient and flexible experience due to their inconvenience in carrying, storage, and space constraints.
[0003] Laptops have poor external speakers and are susceptible to external interference, which can negatively impact the user experience. Consequently, demand for wireless headphones is growing, particularly in mobile office devices like laptops, where their integration has become a key area for product differentiation. While wireless headphones embedded in laptops have emerged, these designs primarily focus on storage and portability, failing to fully leverage the interactive potential between headphones and laptops and meeting diverse needs. Summary of the Invention
[0004] The purpose of this application is to provide a wireless headset mounting structure that, by providing a display screen on the wireless headset, can display device information and visual information about signal transmission when embedded in a laptop computer. This fully utilizes the interactive potential between the headset and the laptop computer, and overcomes the deficiencies of existing embedded wireless headsets in information display and interactive functions. Another purpose of this application is to provide a laptop computer.
[0005] To achieve the above objectives, the present application provides a wireless headset mounting structure, which is provided on a housing device of a laptop computer. The wireless headset mounting structure includes:
[0006] The earphone compartment is provided with a receiving cavity and a contact assembly, wherein the contact assembly is provided with a first contact, and the first contact is located inside the receiving cavity;
[0007] A wireless headset is used to be placed in the accommodating cavity. The wireless headset is provided with a second contact and a display screen. The second contact is used to realize current exchange and signal transmission after contact with the first contact. The display screen is used to display device information of the wireless headset and visual information of signal transmission.
[0008] In some embodiments, the earphone compartment is arranged inside the shell device, and the shell device is provided with an opening for the wireless earphone to be taken out and placed in the accommodating cavity.
[0009] In some embodiments, the display screen is aligned with the edge of the opening, and when the wireless headset is placed in the headset compartment, the display screen is flush with the surface of the shell device.
[0010] In some embodiments, the contact assembly is provided with a first elastic member, the first elastic member is in contact with or connected to the first contact, and the first elastic member is used to drive the first contact to be pressed against the second contact.
[0011] In some embodiments, the earphone compartment is also provided with a first device cavity; the contact assembly is provided with a contact electronic assembly, the contact electronic assembly, the first elastic member and the first contact are arranged in the first device cavity, the first elastic member is located between the contact electronic assembly and the first contact, and the contact electronic assembly, the first elastic member and the first contact are electrically conductive.
[0012] In some embodiments, the wireless headset is provided with an earphone magnet, the earphone compartment is provided with a first limiting magnet, and the wireless headset is fixed to the earphone compartment by magnetic attraction.
[0013] In some embodiments, the wireless headset mounting structure further includes a second limiting magnet, the second limiting magnet being provided on the housing device, and the direction of the force acting between the second limiting magnet and the headset magnet being perpendicular to the direction of the force acting between the first limiting magnet and the headset magnet;
[0014] The housing device is provided with a magnet slot, and the second limiting magnet is provided in the magnet slot;
[0015] The housing device is provided with an opening, the magnet slots are arranged in pairs, the paired magnet slots are distributed on two opposite sides of the opening, and the paired second limiting magnets are installed on two opposite sides of the opening;
[0016] The earphone magnet is U-shaped, and is provided with a U-shaped magnetic surface portion for magnetically attracting the first limiting magnet, and is further provided with a strip-shaped magnetic strip portion for magnetically attracting the second limiting magnet, and the strip-shaped magnetic strip portion is located on the same side of the U-shaped magnetic surface portion; and / or,
[0017] The wireless headset comprises a headset body, the headset body is provided with an earplug, the display screen and a headset magnet, and the earplug and the display screen are located on opposite sides of the headset body;
[0018] The earphone magnet and the display screen are located on the same side of the earphone body, and the earphone magnet is located on the side of the display screen facing the earphone body;
[0019] The earphone magnet is adhered and fixed to the earphone body;
[0020] The display screen is fixed to the earphone body by buckles.
[0021] In some embodiments, the wireless headset mounting structure further includes an ejection assembly, the ejection assembly being disposed in the headset compartment and configured to eject the wireless headset from the accommodating cavity; the ejection assembly comprising:
[0022] Top column;
[0023] a second elastic member, contacting or connected to the top post, and configured to drive the top post to push the wireless headset out;
[0024] The track limiting member is provided with a limiting groove, wherein the limiting groove is provided with a first limiting point and a second limiting point;
[0025] A connecting rod mechanism is connected to the top column, and the connecting rod mechanism cooperates with the limit groove. When the connecting rod mechanism is located at the first limit position, the top column does not push out the wireless headset. When the connecting rod mechanism is located at the second limit position, the top column pushes out the wireless headset.
[0026] In some embodiments, the first contact and the second contact are tightly matched by magnetic force; and / or,
[0027] The housing device comprises:
[0028] The lower cover of the host is provided with the earphone compartment;
[0029] The host upper cover is provided with an opening, the host upper cover is connected to the host lower cover, the projection of the opening on the earphone compartment covers the accommodating cavity, and the opening is used for the wireless earphone to be taken in and placed in the accommodating cavity.
[0030] The present application also provides a laptop computer, comprising the above-mentioned wireless headset mounting structure.
[0031] Compared with the above-mentioned background technology, the wireless headset mounting structure provided in the present application is arranged on the shell device of a laptop computer. The wireless headset mounting structure includes an earphone compartment and a wireless headset. The earphone compartment is provided with a accommodating cavity and a contact assembly. The contact assembly is provided with a first contact, and the first contact is located inside the accommodating cavity; the wireless headset is used to be taken and placed in the accommodating cavity. The wireless headset is provided with a second contact and a display screen. The second contact is used to realize current exchange and signal transmission with the first contact after contact. The display screen is used to display device information of the wireless headset and visual information of signal transmission.
[0032] In traditional laptop-to-laptop interaction designs, headphones typically serve solely as audio output devices, lacking deep interaction with the laptop, particularly in terms of information display and interactive integration. While existing embedded wireless headphones address storage and portability issues, they lack effective information sharing and interactive expansion capabilities between the headphones and laptops. Their functionality is limited to audio playback, failing to fully leverage the potential interactive value of the headset when combined with the laptop.
[0033] To address this issue, this application proposes a wireless headset installation structure. By setting a display screen on the wireless headset and deeply integrating it with the interactive function of the laptop computer, information sharing and interactive expansion between the headset and the laptop computer are realized. Specifically, a accommodating cavity and a contact assembly are provided in the headset compartment. The first contact in the contact assembly is located inside the accommodating cavity, while the wireless headset is equipped with a second contact and a display screen. When the wireless headset is embedded in the headset compartment of the laptop computer, the second contact of the headset contacts the first contact of the headset compartment, which not only realizes current exchange to complete the charging function, but also enables the headset's display screen to display device status information and visual information of interaction with the laptop computer through signal transmission.
[0034] The core advantage of this design is that the display screen of the wireless headset, when embedded in a laptop computer, can serve as an extended display area of the laptop computer. For example, the display screen of the headset can display device information such as the battery status and connection status of the headset, and can also display instant information pushed by the laptop computer, such as notifications, reminders or important data. This makes the wireless headset no longer an isolated audio device when embedded in a laptop computer, but becomes part of the laptop computer's interactive system, enriching the user's information acquisition channels and interactive experience. In addition, when the user takes out the headset and wears it, the display screen can still independently display the status information of the headset, such as battery level, playback status, etc., as well as lighting decorations and atmosphere lights, further enhancing the convenience and functionality of the headset. In this way, the wireless headset installation structure of the present application not only makes up for the deficiencies in information display and interactive functions in the relevant technology, but also provides new possibilities for the interaction between laptop computers and wireless headsets.
[0035] Combined with the above structure and process description, it can be seen that the wireless headset installation structure has at least the following beneficial effects: the wireless headset installation structure, by setting a display screen on the wireless headset, can display device information and visual information of signal transmission when embedded in a laptop computer, thereby fully utilizing the interaction potential between the headset and the laptop computer, and making up for the shortcomings of existing embedded wireless headsets in information display and interactive functions. BRIEF DESCRIPTION OF THE DRAWINGS
[0036] In order to more clearly illustrate the technical solutions in the embodiments of the present application or related technologies, the following briefly introduces the drawings required for use in the embodiments or related technical descriptions. Obviously, the drawings described below are merely embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on the provided drawings without any creative work.
[0037] Figure 1 A side view of the wireless headset installation structure provided in an embodiment of the present application;
[0038] Figure 2 An exploded view of the wireless headset installation structure provided in an embodiment of the present application;
[0039] Figure 3 for Figure 2 A partial enlarged view of the middle earphone compartment and wireless earphones;
[0040] Figure 4 A cross-sectional view of an earphone compartment provided in an embodiment of the present application;
[0041] Figure 5 A schematic diagram of a wireless headset provided in an embodiment of the present application;
[0042] Figure 6 A schematic diagram of the wireless headset provided in an embodiment of the present application from another perspective;
[0043] Figure 7 A schematic diagram of an earphone compartment and wireless earphones provided in an embodiment of the present application;
[0044] Figure 8 An exploded view of the earphone compartment provided in an embodiment of the present application;
[0045] Figure 9 A cross-sectional view of the earphone compartment and wireless earphones provided in an embodiment of the present application.
[0046] in:
[0047] Wireless headset installation structure 1.
[0048] Housing device 10, opening 101, magnet slot 102, host lower cover 103, host upper cover 104,
[0049] Earphone compartment 20, accommodating cavity 201, contact assembly 202, first contact 2021, first elastic member 2022, contact electronic assembly 2023, first device cavity 203, first limiting magnet 204,
[0050] Wireless earphones 30, second contact 301, display screen 302, earphone magnet 303, U-shaped magnetic surface 3031, strip-shaped magnetic strip 3032, earphone body 304, earplug 3041,
[0051] The second limiting magnet 40,
[0052] Ejector assembly 50 , ejector column 501 , second elastic component 502 , track limiter 503 , limit groove 5031 , first limit point 50311 , second limit point 50312 , connecting rod mechanism 504 , first limit link 5041 , second limit link 5042 , ejector column cover 505 . DETAILED DESCRIPTION
[0053] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.
[0054] In order to enable those skilled in the art to better understand the present application, the present application is further described in detail below with reference to the accompanying drawings and specific implementation methods.
[0055] Please refer to Figure 1 and Figure 2 , Figure 1 This is a side view of the wireless headset installation structure provided in an embodiment of the present application. Figure 2 This is an exploded view of the wireless headset installation structure provided in an embodiment of the present application.
[0056] In a first specific implementation, the wireless headset mounting structure 1 provided in the embodiment of the present application is disposed on a housing device 10 of a laptop computer.
[0057] The housing device 10 of the notebook computer is usually composed of two parts, such as Figure 2 The host lower cover 103 and the host upper cover 104 are convenient for setting the wireless headset mounting structure 1 on the shell device 10 of the laptop computer when the host lower cover 103 and the host upper cover 104 are disassembled, and after the host lower cover 103 and the host upper cover 104 are assembled, the wireless headset mounting structure 1 and the shell device 10 are integrated.
[0058] In some cases, the housing device 10 of the notebook computer generally refers to the housing of the host part, thereby distinguishing it from the housing of the screen part. Of course, the scope of interpretation of the housing device 10 in this embodiment includes both the housing of the host part, such as Figure 1 and Figure 2 The illustrated embodiment also includes a housing for the screen portion, although this is not shown in the accompanying drawings.
[0059] Specifically, taking a laptop computer housing 10 as an example, housing 10 includes a lower cover 103 and an upper cover 104. Upper cover 104, also known as the laptop C-shell, is the portion of the housing corresponding to the keyboard, palm rest, and possibly a touchpad. Lower cover 103, also known as the laptop D-shell, is the portion of the housing corresponding to the back or bottom of the laptop computer.
[0060] It should be noted that this embodiment does not limit the setting relationship between the wireless headset mounting structure 1 and the host lower cover 103 and the host upper cover 104. For example, the wireless headset mounting structure 1 can be fixed to the host lower cover 103, or fixed to the host upper cover 104, or fixed to both the host lower cover 103 and the host upper cover 104, which should all fall within the scope of the description of this embodiment.
[0061] Please refer to Figures 3 to 6 ,in, Figure 3 for Figure 2 A partial enlarged view of the middle earphone compartment and wireless earphones. Figure 4 This is a cross-sectional view of the earphone compartment provided in an embodiment of the present application. Figure 5 A schematic diagram of a wireless headset provided in an embodiment of the present application is shown. Figure 6 A schematic diagram of the wireless headset provided in an embodiment of the present application from another perspective.
[0062] The wireless earphone mounting structure 1 includes an earphone compartment 20 and a wireless earphone 30. The earphone compartment 20 is provided with a accommodating cavity 201 and a contact assembly 202. The contact assembly 202 is provided with a first contact 2021, and the first contact 2021 is located inside the accommodating cavity 201; the wireless earphone 30 is used to be taken and placed in the accommodating cavity 201. The wireless earphone 30 is provided with a second contact 301 and a display screen 302. The second contact 301 is used to realize current exchange and signal transmission with the first contact 2021 after contact. The display screen 302 is used to display device information of the wireless earphone 30 and visual information of signal transmission.
[0063] In traditional laptop-to-laptop interaction designs, headphones typically serve solely as audio output devices, lacking deep interaction with the laptop, particularly in terms of information display and interactive integration. While existing embedded wireless headphones address storage and portability issues, they lack effective information sharing and interactive expansion capabilities between the headphones and laptops. Their functionality is limited to audio playback, failing to fully leverage the potential interactive value of the headphones when combined with the laptop.
[0064] To address this issue, the present application proposes a wireless headset installation structure 1, which realizes information sharing and interactive expansion between the headset and the laptop by setting a display screen 302 on the wireless headset 30 and deeply integrating it with the interactive function of the laptop. Specifically, a accommodating cavity 201 and a contact assembly 202 are provided in the headset compartment 20, and the first contact 2021 in the contact assembly 202 is located inside the accommodating cavity 201, while the wireless headset 30 is equipped with a second contact 301 and a display screen 302. When the wireless headset 30 is embedded in the headset compartment 20 of the laptop, the second contact 301 of the headset contacts the first contact 2021 of the headset compartment 20, which not only realizes current exchange to complete the charging function, but also enables the headset's display screen 302 to display device status information and visual information of interaction with the laptop through signal transmission.
[0065] The core advantage of this design is that the display screen 302 of the wireless headset 30, when embedded in a laptop computer, can serve as an extended display area of the laptop computer. For example, the display screen 302 of the headset can display device information such as the battery status and connection status of the headset, and can also display instant information pushed by the laptop computer, such as notifications, reminders or important data. This makes the wireless headset 30 no longer an isolated audio device when embedded in a laptop computer, but becomes part of the laptop computer's interactive system, enriching the user's information acquisition channels and interactive experience. In addition, when the user takes out the headset and wears it, the display screen 302 can still independently display the headset's status information, such as battery level, playback status, etc., as well as lighting decorations and atmosphere lights, further enhancing the headset's convenience and functionality. In this way, the wireless headset mounting structure 1 of the present application not only makes up for the deficiencies in information display and interactive functions in the relevant technology, but also provides new possibilities for the interaction between the laptop computer and the wireless headset 30.
[0066] In combination with the above structure and process description, it can be seen that the wireless headset mounting structure 1 has at least the following beneficial effects: the wireless headset mounting structure 1, by providing a display screen 302 on the wireless headset 30, enables it to display device information and visual information of signal transmission when embedded in a laptop computer, thereby fully utilizing the interactive potential between the headset and the laptop computer, and making up for the deficiencies of existing embedded wireless headsets in information display and interactive functions.
[0067] In some embodiments, the earphone compartment 20 is disposed inside the shell device 10 , and the shell device 10 is provided with an opening 101 for the wireless earphone 30 to be taken into and placed in the accommodating cavity 201 .
[0068] In this embodiment, the earphone compartment 20 is designed to be mounted within the laptop's housing assembly 10. This design allows the earphone compartment 20 to be tightly integrated with the laptop's main structure, enabling embedded installation of the wireless earphones 30. The housing assembly 10 is specifically provided with an opening 101, which communicates with the accommodating cavity 201 of the earphone compartment 20, facilitating access to the wireless earphones 30. This structural design not only ensures convenient access to the wireless earphones 30 but also allows them to be securely stored within the laptop when not in use, preventing the risk of loss or damage and enhancing the overall aesthetics of the laptop.
[0069] This arrangement of the earphone compartment 20 makes the storage and use of the wireless earphones 30 more natural and smooth. The user can easily place the wireless earphones 30 into the accommodating cavity 201 for storage through the opening 101, or take the earphones out of the accommodating cavity 201 for use. This design not only optimizes the user experience, but also makes the interaction between the earphones and the laptop computer closer, providing a foundation for subsequent functional expansion. By integrating the earphone compartment 20 into the shell device 10, the wireless earphone mounting structure 1 of this embodiment achieves a seamless combination of the earphones and the laptop computer, providing users with a more convenient and efficient way of use.
[0070] In some embodiments, the display screen 302 is aligned with the edge of the opening 101 , and when the wireless headset 30 is placed in the headset compartment 20 , the display screen 302 is flush with the surface of the housing device 10 .
[0071] In this embodiment, the display screen 302 of the wireless headset 30 is designed to coincide with the edge of the opening 101 in the housing device 10. The key to this design is that when the wireless headset 30 is placed in the headset compartment 20, the surface of the display screen 302 and the outer surface of the housing device 10 remain on the same plane, thus achieving a seamless docking effect.
[0072] This structural design not only visually enhances the overall aesthetics of the product, allowing the wireless headset 30 to blend seamlessly with the laptop's exterior when embedded, but also provides a more natural and comfortable user experience. When a user touches or observes the laptop's surface, the flush design of the display screen 302 and the surface of the housing device 10 avoids any inconvenience or visual discomfort caused by protrusions or depressions.
[0073] Furthermore, the design of the display screen 302 aligning with the edge of the opening 101 supports the functional expansion of the wireless headset 30. When the headset is embedded in the headset compartment 20, the display screen 302 can serve as an extended display area for the laptop computer, displaying device information or visual information for interacting with the laptop computer. This design allows the wireless headset 30 to function not only as an audio device when embedded, but also as an interactive interface, providing users with more information and functional support.
[0074] Please refer to Figure 7 , Figure 7 Schematic diagram of the earphone compartment and wireless earphones provided in an embodiment of the present application.
[0075] In some embodiments, the contact assembly 202 is provided with a first elastic member 2022 . The first elastic member 2022 is in contact with or connected to the first contact 2021 . The first elastic member 2022 is used to drive the first contact 2021 to be pressed against the second contact 301 .
[0076] It should be explained that the first elastic member 2022 should be able to store elastic deformation, and the deformation release direction of the first elastic member 2022 is different from the installation direction of the wireless headset 30 in the headset compartment 20, thereby driving the first contact 2021 to be pressed against the second contact 301. For example, if the wireless headset 30 is installed downward, the first elastic member 2022 can release the deformation upward. Of course, it can also be in other directions besides upward. Preferably, the deformation release direction of the first elastic member 2022 should be opposite to the installation direction of the wireless headset 30 in the headset compartment 20, thereby ensuring the effect of the first contact 2021 being pressed against the second contact 301. For example, if the wireless headset 30 is installed downward, the first elastic member 2022 should release the deformation upward.
[0077] Optionally, the first elastic member 2022 may be a spring.
[0078] In this embodiment, the contact assembly 202 is designed to include a first elastic member 2022, which is directly in contact with or connected to the first contact 2021. The core purpose of this design is to ensure that the first contact 2021 can be stably and tightly pressed against the second contact 301 of the wireless headset 30 through the elastic force of the first elastic member 2022.
[0079] When the wireless earphones 30 are placed in the accommodating cavity 201 of the earphone compartment 20, the first contact 2021 contacts the second contact 301. At this point, the force of the first elastic member 2022 firmly presses the first contact 2021 against the second contact 301, ensuring good electrical contact between the two. This design not only improves the efficiency of current exchange and signal transmission, but also effectively avoids charging interruptions or unstable signal transmission caused by poor contact.
[0080] Furthermore, the presence of the first elastic member 2022 provides a certain degree of cushioning for the contact assembly 202. During the insertion and removal of the wireless headset 30, the first elastic member 2022 can absorb a certain amount of mechanical impact, thereby extending the service life of the contact assembly 202 and ensuring its long-term stable operation. This design ensures that the wireless headset mounting structure 1 of this embodiment not only maintains its functionality but also enhances its reliability and durability.
[0081] In some embodiments, the earphone compartment 20 is also provided with a first device cavity 203; the contact assembly 202 is provided with a contact electronic assembly 2023, the contact electronic assembly 2023, the first elastic member 2022 and the first contact 2021 are arranged in the first device cavity 203, the first elastic member 2022 is located between the contact electronic assembly 2023 and the first contact 2021, and the contact electronic assembly 2023, the first elastic member 2022 and the first contact 2021 are electrically conductive.
[0082] In this embodiment, the earphone compartment 20 further features a dedicated first device cavity 203 for accommodating and integrating key components of the contact assembly 202. The contact assembly 202 includes a contact electronics assembly 2023, a first elastic member 2022, and a first contact 2021, all of which are housed within the first device cavity 203. This integrated design not only improves inter-component coordination but also optimizes internal space utilization in the earphone compartment 20.
[0083] Specifically, the contact electronics assembly 2023 is the core component of the contact assembly 202, responsible for handling current and signal transmission. The first elastic member 2022 is located between the contact electronics assembly 2023 and the first contact 2021. Its function is to provide stable elastic support for the first contact 2021, ensuring that the first contact 2021 can closely contact the second contact 301 of the wireless headset 30, thereby achieving reliable current exchange and signal transmission. At the same time, electrical conduction is achieved between the contact electronics assembly 2023, the first elastic member 2022, and the first contact 2021, forming a complete circuit path.
[0084] By integrating the contact electronics assembly 2023, the first elastic member 2022, and the first contact 2021 within the first device cavity 203, the earphone compartment 20 of this embodiment not only improves the stability and reliability of the components but also enhances the performance of the entire wireless earphone mounting structure 1. This design allows the earphone compartment 20 to better accommodate the insertion and removal of the wireless earphones 30 while ensuring the stability of current and signal transmission during use. Furthermore, the integrated device cavity design helps simplify the production process and improve product assembly efficiency and quality.
[0085] It should be noted that the above embodiment does not limit the method of fixing the wireless earphones 30 in the earphone compartment 20, or in other words, the locking method. For example, snap-on fixing, latch fixing, magnetic fixing, etc., should also fall within the scope of the description of this embodiment.
[0086] In some embodiments, the wireless headset 30 is provided with an earphone magnet 303, and the earphone compartment 20 is provided with a first limiting magnet 204, and the wireless headset 30 is fixed to the earphone compartment 20 by magnetic attraction.
[0087] In this embodiment, the wireless headset 30 is equipped with a headset magnet 303, and the headset compartment 20 is provided with a first limiting magnet 204. The core of this design is to use the interaction force between the magnets to achieve magnetic fixation between the wireless headset 30 and the headset compartment 20.
[0088] When the wireless earphones 30 are placed in the accommodating cavity 201 of the earphone compartment 20, a magnetic attraction is generated between the earphone magnet 303 and the first limiting magnet 204. This magnetic force not only ensures that the wireless earphones 30 are stably fixed in the earphone compartment 20, preventing the earphones from loosening or falling off due to vibration or accidental collision during use or carrying, but also provides a natural and convenient guidance for the user when inserting and removing the earphones. The user only needs to bring the wireless earphones 30 close to the earphone compartment 20, and the magnetic force will automatically guide the earphones into the correct position and firmly fix them in the accommodating cavity 201.
[0089] Furthermore, this magnetic fixation method also has a certain degree of adaptability. Because the magnitude and direction of the magnetic force can be adjusted according to the specific structure of the earphones and earphone compartment, it can adapt to wireless earphone designs of different sizes and shapes, thereby improving the versatility and flexibility of the entire wireless earphone mounting structure 1. Through this magnetic fixation design, this embodiment not only enhances the connection stability between the wireless earphones 30 and the earphone compartment 20, but also improves the user experience, making the storage and use of the earphones more convenient and reliable.
[0090] In some cases, the direction of the force between the earphone magnet 303 and the first limiting magnet 204 can be the same as the installation direction of the wireless earphone 30 in the earphone compartment 20. For example, if the wireless earphone 30 is installed downward, the earphone magnet 303 is attracted downward by the first limiting magnet 2041.
[0091] The advantage of this design is that it can use magnetic force to directly guide the wireless earphones 30 into the accommodating cavity 201 of the earphone compartment 20 smoothly, and provide continuous adsorption force during the earphone insertion process, so that the earphones can reach the predetermined position more stably and quickly. This design not only simplifies the user's operation steps and improves the efficiency of earphone installation, but also strengthens the fixation of the earphones in the earphone compartment 20, preventing the earphones from accidentally loosening or falling off due to external vibrations or other factors.
[0092] In some cases, not only is the direction of the force between the earphone magnet 303 and the first limiting magnet 204 the same as the installation direction of the wireless earphone 30 in the earphone compartment 20, but the direction of the force between the earphone magnet 303 and the first limiting magnet 204 is also opposite to the deformation release direction of the first elastic member 2022. For example, if the wireless earphone 30 is installed downward, the earphone magnet 303 is attracted downward by the first limiting magnet 2041, and at the same time, the second contact 301 is subjected to the upward force of the first contact 2021 under the action of the first elastic member 2022.
[0093] Specifically, when the wireless earphones 30 are placed downward into the earphone compartment 20, the earphone magnet 303 is attracted downward by the first limiting magnet 204. This attraction not only guides the earphones to enter the accommodating cavity 201 smoothly, but also provides continuous adsorption force during the earphone placement process, ensuring that the earphones can stably reach the predetermined position. At the same time, the deformation release direction of the first elastic member 2022 is opposite to the placement direction of the earphones, that is, upward, which provides additional support and cushioning for the earphones. When the earphones are fully placed, the magnetic force is still greater than the elastic force of the first elastic member 2022, so that the earphones are more firmly fixed in the earphone compartment 20, and the first contact 2021 and the second contact 301 maintain a stable connection. This design not only improves the installation efficiency of the earphones, but also enhances the stability of the earphones in the earphone compartment 20, effectively preventing the earphones from accidentally loosening or falling off due to external vibrations or other factors, and further improving the reliability and durability of the wireless earphone mounting structure 1.
[0094] In some embodiments, the wireless headset mounting structure 1 further includes a second limiting magnet 40 , which is disposed on the housing device 10 .
[0095] In this embodiment, the wireless earphone mounting structure 1 further introduces a second limiting magnet 40. This design significantly enhances the fixing effect between the wireless earphone 30 and the earphone compartment 20 and optimizes the overall structural layout.
[0096] The direction of the force exerted by the second limiting magnet 40 and the earphone magnet 303 is perpendicular to the direction of the force exerted by the first limiting magnet 204 and the earphone magnet 303. This perpendicular magnetic force direction design makes the wireless earphone 30 more firmly fixed in the earphone compartment 20. Not only is the earphone guided and fixed by the magnetic force of the first limiting magnet 204 and the earphone magnet 303 in the installation direction of the earphone into the earphone compartment 20, such as the vertical direction, but it is also positioned and constrained by the additional magnetic force of the second limiting magnet 40 and the earphone magnet 303 in another perpendicular direction, such as the horizontal direction, thereby further preventing the earphone from moving unnecessarily in the earphone compartment 20.
[0097] The housing assembly 10 is provided with magnet slots 102 for accommodating the second retaining magnets 40. The magnet slots 102 are arranged in pairs, located on opposite sides of the opening 101. The paired second retaining magnets 40 are installed on either side of the opening 101. This symmetrical arrangement not only allows for more precise positioning of the wireless earphones 30 when placed in the earphone compartment 20, but also further enhances the secure fit of the earphones through the magnetic force acting on both sides.
[0098] The headphone magnet 303 is U-shaped and has a U-shaped magnetic surface 3031 for magnetically attracting the first limiting magnet 204. It also has a strip-shaped magnetic strip 3032 for magnetically attracting the second limiting magnet 40. The strip-shaped magnetic strip 3032 is located on the same side of the U-shaped magnetic surface 3031. This structural design allows the headphone magnet 303 to generate magnetic attraction with both the first limiting magnet 204 and the second limiting magnet 40 in two directions, thereby achieving a multi-directional fixing effect.
[0099] In some embodiments, the wireless headset 30 includes a headset body 304, which is equipped with an earbud 3041, a display 302, and a headset magnet 303. The earbud 3041 and the display 302 are located on opposite sides of the headset body 304. If the side where the earbud 3041 is located is considered the inner side of the headset body 304, then the side where the display 302 is located is considered the outer side of the headset body 304. When the wireless headset 300 is placed in the headset compartment 20, the display 302 is exposed, and the earbud 3041 is hidden inside the headset compartment 20. When the wireless headset 300 is worn in the ear, the display 302 is exposed, and the earbud 3041 is placed in the external auditory canal.
[0100] The earphone magnet 303 and the display screen 302 are located on the same side of the earphone body 304, and the earphone magnet 303 is located on the side of the display screen 302 facing the earphone body 304. This design not only optimizes the internal structure layout of the earphone, but also enables the earphone magnet 303 to better interact with the magnet in the earphone compartment 20.
[0101] The earphone magnet 303 is glued and fixed to the earphone body 304; the display screen 302 is fixed to the earphone body 304 by a snap. This fixing method not only ensures the stability of the earphone magnet 303 and the display screen 302, but also facilitates disassembly and maintenance when necessary.
[0102] By introducing the second limiting magnet 40 and optimizing the structural design of the earphone magnet 303, the wireless earphone mounting structure 1 of this embodiment not only provides more stable and reliable performance during the placement and fixation of the earphone, but also further improves the overall usage experience and functionality of the wireless earphone 30 through reasonable layout and fixing methods.
[0103] Please refer to Figure 8 and Figure 9 , Figure 8 This is an exploded view of the earphone compartment provided in an embodiment of the present application. Figure 9 A cross-sectional view of the earphone compartment and wireless earphones provided in an embodiment of the present application.
[0104] In some embodiments, the wireless headset mounting structure 1 further includes an ejection assembly 50 , which is disposed in the headset compartment 20 , and is used to eject the wireless headset 30 from the accommodating cavity 201 .
[0105] In this embodiment, the wireless headset mounting structure 1 further incorporates an ejector assembly 50, located within the headset compartment 20. Its primary function is to eject the wireless headset 30 from the accommodating cavity 201, allowing the user to more conveniently remove the headset. The ejector assembly 50 cleverly combines mechanical structure and elastic elements to achieve efficient and reliable ejection.
[0106] Specifically, the ejection assembly 50 includes a ejection column 501, a second elastic member 502, a track limiter 503 and a connecting rod mechanism 504. The ejection column 501 is the core component of the ejection assembly 50, which is in direct contact with the wireless headset 30 and ejects it from the accommodating cavity 201 when needed. The second elastic member 502 is in contact with or connected to the ejection column 501. Its main function is to provide a driving force for the ejection column 501, so that it can overcome the friction and magnetic attraction between the headset and the headset compartment, thereby smoothly ejecting the wireless headset 30. The second elastic member 502 can be made of a spring or other material with elastic restoring force to ensure that sufficient thrust can be provided when needed.
[0107] The trajectory limiter 503 has a limit slot 5031, within which are located a first limit point 50311 and a second limit point 50312. These two limit points control the movement of the top post 501. A connecting rod mechanism 504 is connected to the top post 501 and cooperates with the limit slot 5031 to precisely control the movement of the top post 501. When the connecting rod mechanism 504 is at the first limit point 50311, the top post 501 is not ejected, and the wireless headset 30 remains within the accommodating cavity 201. At this point, the second elastic member 502 is compressed or storing energy, preparing for ejection. When the user wishes to remove the wireless headset 30, by triggering a mechanism (such as pressing a button or applying a certain external force), the connecting rod mechanism 504 moves to the second limit point 50312. At this point, the second elastic member 502 releases its elastic energy, driving the top post 501 upward, thereby ejecting the wireless headset 30 from the accommodating cavity 201.
[0108] This design of the ejection assembly 50 not only improves the user's convenience in removing the wireless earphones 30, but also ensures the reliability and stability of the ejection action through the combination of precise mechanical control and elastic elements. Furthermore, the coordinated design of the retaining groove 5031 and the connecting rod mechanism 504 ensures repeatable and consistent operation of the ejection assembly 50, further enhancing the overall performance and user experience of the wireless earphone mounting structure 1.
[0109] like Figure 8 As shown, the limiting groove 5031 has three positions, A, B, and C. There is a height difference h between point A and point B, with point B being at the highest position. In this embodiment, the first limiting point 50311 corresponds to point A, the second limiting point 50312 corresponds to point B, and point C corresponds to the transition state between points A and B. The linkage mechanism 504 will execute a motion starting from point A, passing through point C, and then reaching point B. The motion direction of the linkage mechanism 504 is irreversible, returning from point B to point A.
[0110] When the connecting rod mechanism 504 moves to point A, the wireless earphone 30 is installed in the earphone compartment 20. When the connecting rod mechanism 504 moves to point B, the wireless earphone 30 pops out from the earphone compartment 20, and the pop-up height is the height difference h between point A and point B.
[0111] When in use, the connecting rod mechanism 504 is initially at point A, and the wireless earphone 30 is installed in the earphone compartment 20; the wireless earphone 30 is pressed, and since the display screen 302 is located on the outside of the earphone body 304, the display screen 302 is usually pressed, and the wireless earphone 30 moves downward after overcoming the force of the second elastic member 502, and the connecting rod mechanism 504 moves from point A to point C along the first track; when the connecting rod mechanism 504 moves to point C, the wireless earphone 30 no longer moves downward, and the pressing of the wireless earphone 30 stops. The wireless earphone 30 moves along the second track under the action of the second elastic member 502. Point C moves toward point B, and the wireless headset 30 moves up; when the connecting rod mechanism 504 moves to point B, the wireless headset 30 has popped out of the headset compartment 20; when the wireless headset 30 needs to be installed in the headset compartment 20, the wireless headset 30 is placed in the headset compartment 20, the connecting rod mechanism 504 is at point B, the wireless headset 30 is pressed, the connecting rod mechanism 504 will sink from point B along the third track, and then release the wireless headset 30. The connecting rod mechanism 504 will move up along the third track under the action of the second elastic member 502 and then reset to point A, completing the installation of the wireless headset 30 in the headset compartment 20.
[0112] like Figure 8 and Figure 9 As shown, the linkage mechanism 504 includes a first limiting link 5041 and a second limiting link 5042. The first limiting link 5041 is connected to the top column 501, such as by forming a ball joint. The first limiting link 5041 is connected to the second limiting link 5042, such as by forming a hinge. The second limiting link 5042 is inserted into the limiting groove 5031 of the track limiting member 503 to implement movement. The top column cover 505 serves as a supporting component in the ejection assembly 50. The top column cover 505 is installed in the earphone compartment 20 and provides bottom support for the second elastic member 502, thereby providing a driving force on the top column 501 through the second elastic member 502.
[0113] like Figure 9 As shown, the wireless headset 30 is in a pop-up state. At this time, the pop-up height of the wireless headset 30 is Figure 8 The height difference h between the midpoint A and point B is consistent.
[0114] In some embodiments, the first contact 2021 and the second contact 301 are tightly matched by magnetic force, further ensuring that the first contact 2021 and the second contact 301 are reliably connected.
[0115] In some embodiments, the shell device 10 includes: a main body lower cover 103, which is provided with an earphone compartment 20; a main body upper cover 104, which is provided with an opening 101. The main body upper cover 104 is connected to the main body lower cover 103, and the projection of the opening 101 on the earphone compartment 20 covers the accommodating cavity 201. The opening 101 is used for the wireless earphone 30 to be taken and placed in the accommodating cavity 201.
[0116] In this embodiment, the specific structure of the housing device 10 is further clarified. It consists of a main body lower cover 103 and a main body upper cover 104. The main body lower cover 103 serves as the bottom or back structure of the laptop computer and contains an earphone compartment 20 for accommodating wireless earphones 30. The design of the earphone compartment 20 allows the wireless earphones 30 to be securely stored and easily removed when needed.
[0117] The main unit cover 104 corresponds to the laptop's keyboard, palm rest, and possible touchpad. An opening 101 is provided on the main unit cover 104, which communicates with the accommodating cavity 201 of the earphone compartment 20 and is used to insert and remove the wireless earphones 30. The design of the opening 101 is crucial; it not only ensures smooth insertion and removal of the wireless earphones 30, but also ensures precise alignment with the accommodating cavity 201 of the earphone compartment 20 for stable storage and use.
[0118] The upper cover 104 and lower cover 103 of the main unit are connected by a connecting structure, forming a complete housing assembly 10. The projection of the opening 101 on the earphone compartment 20 overlaps the accommodating cavity 201. This means that the size and position of the opening 101 are precisely designed to ensure that the wireless earphones 30 can enter the accommodating cavity 201 without obstruction. This design not only optimizes the storage and retrieval process of the earphones, but also ensures that the earphones blend in with the appearance of the laptop when stored, enhancing the overall aesthetics of the product.
[0119] By positioning the earphone compartment 20 within the lower cover 103 of the main unit and accessing the wireless earphones 30 through the opening 101 in the upper cover 104, the wireless earphone mounting structure 1 of this embodiment achieves seamless integration of the earphones with the laptop computer. This design not only improves user convenience and enhances the overall integrity and aesthetics of the product, but also provides a stable storage environment for the wireless earphones 30, further enhancing the functionality and user experience of the wireless earphone mounting structure 1.
[0120] In one embodiment, the wireless headset mounting structure 1 is not only integrated with the laptop computer housing 10, but also implements a quick connection feature. This structure ensures that the connection process with the wireless headset 30 is immediately triggered when the laptop computer is turned on, avoiding the inconvenience of the user having to wait for the headset to connect while using the headset.
[0121] When the laptop is turned on, the system automatically detects and establishes a connection with the wireless headset 30, ensuring that the headset is connected to the computer when the user is ready to use it. This design improves the user experience and ensures a fast and seamless connection between the headset and the laptop.
[0122] The wireless headset 30's embedded and detached status is detected by various sensors, such as Hall effect sensors, charging contact current sensors, pressure sensors, and infrared sensors. These sensors accurately detect whether the headset is embedded in or detached from the laptop's headset compartment 20, enabling intelligent recognition of the headset's physical state. The system uses Hall effect sensor signals to identify the headset's physical state and determine whether it is embedded in or detached from the computer.
[0123] When wireless headphones 30 are connected to a computer, the system detects the voltage inside the headphones to determine whether charging is necessary. If the voltage is low, the system initiates charging and displays the charging status and information about the computer and headphones on display 302. This design ensures that the headphones are charged when needed, while also providing real-time feedback on the charging status via display 302.
[0124] When the wireless headset 30 is disconnected from the computer, the system detects the headset's infrared signal to determine whether the headset is being worn or offline. If the headset is being worn, the system performs noise reduction, provides battery status information, adjusts volume, and provides an offline notification. If the headset is offline, the system displays headset information and control options on display 302. Display 302 is used to display headset status information and control options, including battery status, connection status, and volume adjustment. Users can use display 302 to control the headset, such as noise reduction and volume adjustment.
[0125] Furthermore, when wireless headset 30 is embedded in a computer and requires charging, the system initiates charging and displays information about the computer and headset on display 302. Through these steps, the wireless headset automatically adjusts its operating mode based on its connection status and physical location with the computer, providing functions such as charging, noise reduction, and volume adjustment. It also interacts with the user via display 302, displaying relevant information and control options. This design makes the use of wireless headsets more intelligent and user-friendly, while ensuring a fast and seamless connection between the headset and the laptop.
[0126] The present application also provides a laptop computer, comprising the above-mentioned wireless headset mounting structure 1.
[0127] The laptop computer includes the above-mentioned wireless earphone mounting structure 1 and should have all the beneficial technical effects of the above-mentioned wireless earphone mounting structure 1.
[0128] Specifically, this laptop computer features an earphone compartment 20 within the lower cover 103 and an opening 101 on the upper cover 104, allowing for convenient storage and removal of wireless earphones 30. This design not only addresses the issue of traditional wireless earphones being easily lost or damaged, but also enhances the overall aesthetics and user experience of the laptop computer. Furthermore, the contact assembly 202 within the earphone compartment 20 interacts with the second contact 301 of the wireless earphones 30, enabling automatic charging and signal transmission for the earphones, further enhancing their ease of use.
[0129] In addition, the laptop computer also ensures the stable fixation of the wireless headset 30 in the headset compartment 20 through the magnetic attraction between the headset magnet 303, the first limiting magnet 204, and the second limiting magnet 40. This magnetic fixing method not only improves the installation efficiency of the headset, but also enhances the stability of the headset in the headset compartment 20, effectively preventing the headset from accidentally loosening or falling off due to external vibration or other factors.
[0130] Finally, the laptop is also equipped with an ejection assembly 50, which allows the user to more easily remove the wireless headset 30. This design further optimizes the user experience and makes the process of taking and placing the headset more natural and smooth.
[0131] In summary, by integrating the above-mentioned wireless headset mounting structure 1, the laptop computer not only improves the functionality and user experience of the product, but also provides new possibilities for the interaction between the laptop computer and the wireless headset, and has significant innovation and practicality.
[0132] It should be noted that many of the components mentioned in this application are universal standard parts or components known to those skilled in the art, and their structures and principles can be learned by those skilled in the art through technical manuals or conventional experimental methods.
[0133] It should be noted that, in this specification, relational terms such as first and second are merely used to distinguish one entity from other entities, but do not necessarily require or imply any actual relationship or order between these entities.
[0134] The above is a detailed introduction to the wireless headset mounting structure and laptop computer provided by this application. Specific examples are used herein to illustrate the principles and implementation methods of this application. The description of the above embodiments is only intended to help understand the method and core ideas of this application. It should be noted that for ordinary technicians in this technical field, without departing from the principles of this application, several improvements and modifications can be made to this application, and these improvements and modifications also fall within the scope of protection of the claims of this application.
Claims
1. A wireless headset installation structure, characterized in that: The housing device is provided on a laptop computer, and the wireless headset mounting structure includes: The earphone compartment is provided with a receiving cavity and a contact assembly, wherein the contact assembly is provided with a first contact, and the first contact is located inside the receiving cavity; A wireless headset is used to be placed in the accommodating cavity. The wireless headset is provided with a second contact and a display screen. The second contact is used to realize current exchange and signal transmission after contact with the first contact. The display screen is used to display device information of the wireless headset and visual information of signal transmission.
2. The wireless headset mounting structure according to claim 1, wherein: The earphone compartment is arranged inside the shell device, and the shell device is provided with an opening for the wireless earphone to be taken in and placed in the accommodating cavity.
3. The wireless headset mounting structure according to claim 2, wherein: The display screen is aligned with the edge of the opening, and when the wireless earphones are placed in the earphone compartment, the display screen is flush with the surface of the shell device.
4. The wireless headset mounting structure according to claim 1, wherein: The contact assembly is provided with a first elastic member, the first elastic member is in contact with or connected to the first contact, and the first elastic member is used to drive the first contact to be pressed against the second contact.
5. The wireless earphone mounting structure according to claim 4, characterized in that: The earphone compartment is also provided with a first device cavity; the contact assembly is provided with a contact electronic assembly, the contact electronic assembly, the first elastic member and the first contact are arranged in the first device cavity, the first elastic member is located between the contact electronic assembly and the first contact, and the contact electronic assembly, the first elastic member and the first contact are electrically conductive.
6. The wireless earphone mounting structure according to claim 1, wherein: The wireless earphones are provided with an earphone magnet, and the earphone compartment is provided with a first limiting magnet, and the wireless earphones are fixed to the earphone compartment by magnetic attraction.
7. The wireless earphone mounting structure according to claim 6, characterized in that: It also includes a second limiting magnet, which is provided on the housing device, and the direction of the force between the second limiting magnet and the earphone magnet is perpendicular to the direction of the force between the first limiting magnet and the earphone magnet; The housing device is provided with a magnet slot, and the second limiting magnet is provided in the magnet slot; The housing device is provided with an opening, the magnet slots are arranged in pairs, the paired magnet slots are distributed on two opposite sides of the opening, and the paired second limiting magnets are installed on two opposite sides of the opening; The earphone magnet is U-shaped, and is provided with a U-shaped magnetic surface portion for magnetically attracting the first limiting magnet, and is further provided with a strip-shaped magnetic strip portion for magnetically attracting the second limiting magnet, and the strip-shaped magnetic strip portion is located on the same side of the U-shaped magnetic surface portion; and / or, The wireless headset comprises a headset body, the headset body is provided with an earplug, the display screen and a headset magnet, and the earplug and the display screen are located on opposite sides of the headset body; The earphone magnet and the display screen are located on the same side of the earphone body, and the earphone magnet is located on the side of the display screen facing the earphone body; The earphone magnet is adhered and fixed to the earphone body; The display screen is fixed to the earphone body by buckles.
8. The wireless earphone mounting structure according to claim 1, wherein: It also includes an ejection component, which is provided in the earphone compartment and is used to eject the wireless earphone out of the accommodating cavity; the ejection component includes: Top column; a second elastic member, contacting or connected to the top post, and configured to drive the top post to push the wireless headset out; The track limiting member is provided with a limiting groove, wherein the limiting groove is provided with a first limiting point and a second limiting point; A connecting rod mechanism is connected to the top column, and the connecting rod mechanism cooperates with the limit groove. When the connecting rod mechanism is located at the first limit position, the top column does not push out the wireless headset. When the connecting rod mechanism is located at the second limit position, the top column pushes out the wireless headset.
9. The wireless earphone mounting structure according to claim 1, wherein: The first contact and the second contact are tightly matched by magnetic force; and / or, The housing device comprises: The lower cover of the host is provided with the earphone compartment; The host upper cover is provided with an opening, the host upper cover is connected to the host lower cover, the projection of the opening on the earphone compartment covers the accommodating cavity, and the opening is used for the wireless earphone to be taken in and placed in the accommodating cavity.
10. A notebook computer, characterized in that: It comprises the wireless earphone mounting structure according to any one of claims 1 to 9.
Citation Information
Patent Citations
Mobile terminal with built-in Bluetooth earphone
CN110475004A
Wireless earphone charging box capable of self-locking and self-popping up adapter after being pressed
CN115942179A
Mobile terminal with built-in Bluetooth earphone
CN210405386U
Earphone box with wireless communication function and wireless communication equipment
CN216086978U
Notebook computer containing Bluetooth earphone
CN217008088U