Intelligent sound box with air purification function

By designing an independent audio unit and an air purification unit, the problem of existing smart audio needs to be repaired simultaneously when the functions are damaged is solved, and a simpler and more economical maintenance process is achieved.

CN120050554APending Publication Date: 2025-05-27SHENZHEN DISAER TECH CO LTD
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Patent Information

Application Number
CN202510197206.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-21
Publication Date
2025-05-27

AI Technical Summary

Technical Problem

When the existing smart speakers with air purification function are damaged, they need to replace or repair the audio and air purification parts at the same time, resulting in difficulty in repairing and high cost.

Method used

A smart audio system is designed, and its audio part and air purification part are independent functional modules, which can be detached and connected to the base. When one of the functional modules is removed separately, the other functional module can still be used normally.

Benefits of technology

The independent maintenance of the audio part and the air purification part is realized, reducing the maintenance cost and difficulty, and making the maintenance of smart audio easier.

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Abstract

The invention relates to an intelligent sound box with an air purification function, and the sound box comprises a pedestal which is internally provided with a general control unit; the plurality of functional modules are divided into a sound equipment part and an air purification part which are mutually independent, and the sound equipment part and the air purification part are detachably connected to the base. According to the invention, the intelligent sound equipment can be maintained more simply.
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Description

Technical Field

[0001] This application relates to the field of audio, and in particular to an intelligent audio with an air purification function. Background Art

[0002] With the improvement of living standards, people are increasingly pursuing a high-quality life. Audio has become a necessity for many families. While people are pursuing spiritual enjoyment, they are also paying more and more attention to health.

[0003] In related technologies, such as CN107835470A, an audio that can be used for air purification includes an audio body and a purifier body. When working, by operating the operation key panel on the control board, the purification mode is turned on to complete air purification. Also, by operating the operation key panel of the control board, the audio can be turned on to play music and perform the sound amplification function.

[0004] Aiming at the above-mentioned related technologies, there is a defect that since the control units of the audio function and the air purification function are integrated into one control element, when one of the functions is damaged, it is necessary to replace or repair both functions at the same time, resulting in difficult maintenance. Summary of the Invention

[0005] In order to make the maintenance of the intelligent audio simpler, this application provides an intelligent audio with an air purification function.

[0006] An intelligent audio with an air purification function provided by this application adopts the following technical solutions: An intelligent audio with an air purification function, comprising: A base, which is built-in with a master control unit; Function modules, a plurality of the function modules are divided into an independent audio part and an air purification part, and the audio part and the air purification part are detachably connected to the base.

[0007] By adopting the above technical solutions, the audio part and the air purification part are independent and have no connection. Therefore, when one of the function modules is separately removed, the other function module can still be used normally. When one of the functions is damaged, only the corresponding function needs to be replaced or repaired. Therefore, the maintenance is convenient and the maintenance cost is low, which can make the maintenance of the intelligent audio simpler.

[0008] Preferably, the base is provided with a centralized output channel and a decentralized input channel. The centralized output channel is located on the axis of the base, and the centralized output channel communicates with the upper end face and the lower end face of the base. The decentralized input channel is perpendicular to the centralized output channel. One end of the decentralized input channel communicates with the centralized output channel, and the other end communicates with the circumferential side of the base. One of the functional modules is fan-shaped or annular, and the inner circumferential side of the functional module communicates with the centralized output channel. A plurality of the functional modules at different heights from the base are arranged along the axis direction of the centralized output channel. The heat dissipation holes of the sound part are located on its inner circumferential side, and the air inlet holes of the air purification part are located on its inner circumferential side.

[0009] By adopting the above technical solutions, firstly, due to the arrangement of the centralized output channel and the decentralized input channel, and the shape and structure of the functional module, when the air purification part is started, the air flow will sequentially pass through the decentralized input channel and the centralized output channel. When the air flow passes through the centralized output channel, it can dissipate heat for the sound part. Therefore, the device can be kept small in size, and the air purification part can operate normally, while also efficiently dissipating heat for the sound. Secondly, the cooperation between the stacked arrangement of the functional modules and the shape and structure of the functional module can arrange the sound part and the air purification part both circumferentially and axially, so as to realize the customized manufacturing of the device according to different requirements.

[0010] Preferably, the base is provided with a plurality of conductive rings. The conductive rings are detachably connected to the base and electrically connected to the base. The conductive rings are coaxially arranged with the centralized output channel. The conductive rings are provided with diversion holes, and the diversion holes communicate with the centralized output channel. A plurality of the conductive rings are coaxially stacked, and adjacent two conductive rings are detachably connected and electrically connected to each other. The conductive rings are electrically connected to the functional modules and detachably connected to the functional modules.

[0011] By adopting the above technical solutions, compared with the way of arranging the conductive structure on the functional module, in this design method, while realizing normal power supply to the functional module, it is not necessary to enclose the functional module in a fan shape in the lower layer, or it is not necessary to set the functional module, and the functional module can be installed on the upper layer. Therefore, the application range of the device can be further expanded.

[0012] Preferably, the conductive ring is provided with input contact blocks near the end face of the base. The input contact blocks are annular and coaxially arranged with the conductive ring. Output contact grooves are provided on both the end face of the base near the conductive ring and the end face of the conductive ring away from the base. The output contact grooves are annular, and the input contact blocks of another adjacent conductive ring are embedded in the output contact grooves, and the input contact blocks are in contact connection with the inner wall of the output contact grooves. By adopting the above technical solution, the cooperation between the input contact block and the output contact groove can not only achieve the detachable connection and electrical connection between the conductive ring and the base, but also achieve the detachable connection and electrical connection between the conductive rings, so that the rapid assembly of the device can be realized, and the structure of the device can be kept simple.

[0013] Preferably, a support ring is arranged on the circumferential side of the conductive ring. The support ring is coaxially arranged with the conductive ring. An on-contact block and a connecting magnet are embedded on the upper surface of the support ring. The functional module abuts against the upper surface of the support ring. The functional module is magnetically attracted by the connecting magnet, and the functional module is in contact connection with the on-contact block.

[0014] By adopting the above technical solution, with the arrangement of the support ring, the on-contact block and the connecting magnet, the functional module can be directly placed on the support ring to realize the structural connection and electrical connection with the conductive ring, so that the installation and disassembly of the functional module can be realized more easily, and thus the personalized assembly can be more conveniently realized, which helps to expand the application scope.

[0015] Preferably, both the on-contact block and the connecting magnet are annular, and both the on-contact block and the connecting magnet are coaxially arranged with the conductive ring. The functional module further includes a humidifying part. One conductive ring cooperates with the functional module in a fan-shaped enclosure or an annular enclosure, and one conductive ring cooperates with one or more functional modules.

[0016] By adopting the above technical solution, the functional module can be at any position in the circumferential direction of the conductive ring, so the user can install the functional modules with different functions in different directions according to his own needs, thus improving the practicability of the device.

[0017] Preferably, the input contact block is rotatably embedded in the output contact groove, and transmission balls are embedded on the side wall of the output contact groove. The transmission balls are in rolling contact with the input contact block.

[0018] By adopting the above technical solution, relative rotation can occur between two adjacent conductive rings. Therefore, after the sound part, the air purification part and other functional modules are installed according to a certain positional relationship, the conductive ring can be rotated to change the orientation of different functional modules, so that the orientation of different functions can be changed more flexibly according to the actual use requirements, and thus the practicability of the device can be improved.

[0019] Preferably, a cover ring is arranged on the conductive ring farthest from the base. A splicing block is arranged on the side of the cover ring close to the conductive ring. The splicing block is embedded in the output contact groove. A plurality of binding bands are arranged on the circumferential side of the cover ring. One end of the binding band is rotatably arranged on the cover ring in a self-reeling manner, and the other end is detachably connected to the base.

[0020] By adopting the above technical solution, with the help of the cover ring and the binding strap, a force towards the base direction can be applied to the conductive ring, thereby improving the structural stability of the device.

[0021] Preferably, the outer surface of the functional module has a matte structure; the binding strap has a magic strap structure, and the binding strap is detachably adhesively connected to the outer surface of the functional module.

[0022] By adopting the above technical solution, due to the friction between the conductive rings, when one of the conductive rings is rotated alone, the connection between the corresponding functional module and the binding strap can be temporarily released, and the remaining functional modules still remain adhered to the binding strap. In this way, when one of the conductive rings is rotated, the remaining conductive rings will not rotate. After rotating to the predetermined posture, the binding strap is then connected to the functional module to lock the conductive ring, thereby maintaining the structural stability of the device.

[0023] In summary, the present application includes at least one of the following beneficial technical effects: 1. The sound part and the air purification part are independent and not related. Therefore, when one of the functional modules is removed separately, the other functional module can still be used normally. When one of them is damaged, only the corresponding one needs to be replaced or repaired. Therefore, the maintenance is convenient and the maintenance cost is low, making the maintenance of the smart speaker more simple. 2. First, the setting of the centralized output channel and the decentralized input channel, as well as the shape structure of the functional module. When the air purification part is started, the air flow will pass through the decentralized input channel and the centralized output channel in sequence. When the air flow passes through the centralized output channel, it can dissipate heat for the sound part. Therefore, the device can maintain a small volume, and the air purification part can operate normally while efficiently dissipating heat for the sound. Second, the cooperation between the stacked arrangement of the functional modules and the shape structure of the functional module can arrange the sound part and the air purification part along the circumference or along the axis, so as to realize the customized manufacturing of the device according to different needs. Description of the Drawings

[0024] Figure 1 is the overall structure diagram of the smart speaker in the embodiment of the present application.

[0025] Figure 2 is the exploded structure diagram of the smart speaker in the embodiment of the present application.

[0026] Figure 3 is the schematic diagram showing the specific structure of the conductive ring in the embodiment of the present application.

[0027] Description of reference numerals: 1, base; 11, centralized output channel; 12, decentralized input channel; 2, functional module; 21, audio section; 22, air purification section; 23, humidification section; 3, slip ring; 31, diversion hole; 32, input contact block; 33, output contact groove; 34, support ring; 35, connection contact block; 36, connection magnet; 37, drive ball; 4, cover ring; 5, binding strap. Detailed implementation manners

[0028] The following further elaborates on this application Figures 1-3 in conjunction with the attached drawings.

[0029] The embodiment of this application discloses an intelligent audio with an air purification function.

[0030] Referring to Figure 1 , the intelligent audio includes a base 1 and a functional module 2. The base 1 is generally cylindrical in shape, and a master control unit is built into the base 1. There are multiple functional modules 2, and the multiple functional modules 2 are divided into an independent audio section 21 and an air purification section 22. The audio section 21 and the air purification section 22 are detachably connected to the base 1. In summary, since the audio section 21 and the air purification section 22 are independent and not related, when one of the functional modules 2 is removed separately, the other functional module 2 can still be used normally. Therefore, when one of the functions is damaged, only the corresponding function needs to be replaced or repaired, so the maintenance is convenient and the maintenance cost is low, making the maintenance of the intelligent audio simpler.

[0031] Referring to Figure 1 and Figure 2 , in order to efficiently dissipate heat from the audio section 21 while enabling the normal operation of the audio section 21 and the air purification section 22, the following settings are made. First, the base 1 is provided with a centralized output channel 11 and a decentralized input channel 12. The centralized output channel 11 is located on the axis of the base 1, and the centralized output channel 11 communicates with the upper end face and the lower end face of the base 1. The decentralized input channel 12 is located on the lower end face of the base 1. The decentralized input channel 12 is perpendicular to the centralized output channel 11. One end of the decentralized input channel 12 communicates with the centralized output channel 11, and the other end communicates with the circumference of the base 1, thus forming a channel structure for air flow to pass through.

[0032] Referring to Figure 1 and Figure 2 , second, one functional module 2 is in a fan shape or a ring shape. The inner circumference of the functional module 2 communicates with the centralized output channel 11. Multiple functional modules 2 at different heights from the base 1 are arranged along the axis direction of the centralized output channel 11. At the same time, the heat dissipation holes of the audio section 21 are located on its inner circumference, and the air intake holes of the air purification section 22 are located on its inner circumference.

[0033] Referring to Figure 1and Figure 2 , the above structure has the following advantages. First, when the air purification unit 22 is started, the air flow will pass through the dispersed input channel 12 and the centralized output channel 11 in sequence. When the air flow passes through the centralized output channel 11, it can dissipate heat from the audio unit 21. Therefore, the device can maintain a small volume, and the air purification unit 22 can operate normally. At the same time, it can efficiently dissipate heat from the audio. Second, the audio unit 21 and the air purification unit 22 can be arranged circumferentially or axially, so that the customized manufacturing of the device can be realized according to different requirements.

[0034] Referring to Figure 1 and Figure 2 , in order to supply power to the functional module 2, the following settings are corresponding. The base 1 is provided with a plurality of conductive rings 3. The conductive rings 3 are detachably connected to the base 1. The conductive rings 3 are electrically connected to the base 1. The conductive rings 3 are coaxially arranged with the centralized output channel 11. The conductive rings 3 are provided with diversion holes 31. The diversion holes 31 are communicated with the centralized output channel 11. The plurality of conductive rings 3 are coaxially stacked. Adjacent two conductive rings 3 are detachably connected. Adjacent two conductive rings 3 are electrically connected. The conductive rings 3 are electrically connected to the functional module 2. The conductive rings 3 are detachably connected to the functional module 2. Then, through the way of current transfer by the conductive rings 3, it is not necessary to enclose the functional module 2 in a fan shape in the lower layer, and even it is not necessary to install the functional module 2. The functional module 2 can be installed in the upper layer. For example, the functional module 2 is not installed in the lower several layers, and the functional module 2 is installed in the upper layer. Therefore, the functional module 2 can avoid obstacles on the desktop. In summary, while realizing power supply, the application range of the device can be expanded from the power supply method.

[0035] Referring to Figure 2 and Figure 3 , in order to realize the convenient assembly of each component in the device and reduce the difficulty of personalized manufacturing of the device, the following settings are corresponding. First, an input contact block 32 is formed on the end face of the conductive ring 3 close to the base 1. The input contact block 32 is annular. The input contact block 32 is coaxially arranged with the conductive ring 3. The input contact block 32 is an exposed contact of the conductive ring 3. At the same time, output contact grooves 33 are opened on the end face of the base 1 close to the conductive ring 3 and the end face of the conductive ring 3 far from the base 1. The output contact grooves 33 are annular. The output contact grooves 33 are for the input contact block 32 of another adjacent conductive ring 3 to be embedded. The input contact block 32 is in contact connection with the bottom of the output contact groove 33. The bottom of the output contact groove 33 is an exposed contact on the base 1 and the conductive ring 3. Therefore, the quick disassembly, assembly and electrical connection between the conductive rings 3 and between the conductive ring 3 and the base 1 are realized.

[0036] Referring to Figure 2 and Figure 3, Second, a support ring 34 is formed on the circumferential side of the conductive ring 3. The support ring 34 is coaxially arranged with the conductive ring 3. A connection contact block 35 and a connection magnet 36 are embedded in the upper surface of the support ring 34. The functional module 2 abuts against the upper surface of the support ring 34. The functional module 2 is magnetically attracted by the connection magnet 36, and the functional module 2 is in contact connection with the connection contact block 35. Therefore, the rapid installation and disassembly and electrical connection between the conductive ring 3 and the functional module 2 are realized. In summary, personalized assembly is more easily achieved, which helps to expand the application range.

[0037] Referring to Figure 2 and Figure 3 , the functional module 2 may not only have the sound part 21 and the air purification part 22, but also have other functional modules 2 with functions such as a humidification part 23. In order to make the conductive ring 3 adapt to different numbers of functional modules 2, the following settings are corresponding. The connection contact block 35 and the connection magnet 36 are both annular, and the connection contact block 35 and the connection magnet 36 are both coaxially arranged with the conductive ring 3. In this way, one conductive ring 3 can cooperate with a fan-shaped or annularly enclosed functional module 2, and one conductive ring 3 can cooperate with one or more functional modules 2. Therefore, the user can install functional modules 2 with different functions in different directions according to their own needs, thereby improving the practicability of the device.

[0038] Referring to Figure 2 and Figure 3 , if there are multiple functional modules 2 on each layer and the functions of the multiple functional modules 2 on each layer are different, then in actual use, it may be necessary to change the orientation of the functional module 2. Based on this, the following settings are corresponding. The input contact block 32 is rotatably embedded in the output contact groove 33. At the same time, transmission balls 37 are embedded in the side wall of the output contact groove 33, and the transmission balls 37 are in rolling contact with the input contact block 32. Then relative rotation can occur between adjacent two conductive rings 3. Therefore, the conductive ring 3 can be rotated to change the orientation of different functional modules 2, so that the orientation of different functions can be changed more flexibly according to actual use requirements, thereby improving the practicability of the device.

[0039] Referring to Figure 1 and Figure 2 , since the conductive rings 3 are only simply embedded, in order to improve the structural stability of the device, the following settings are corresponding. The conductive ring 3 farthest from the base 1 is provided with a cover ring 4. A splicing block is formed on the side of the cover ring 4 close to the conductive ring 3, and the splicing block is embedded in the output contact groove 33. A plurality of binding straps 5 are arranged on the circumferential side of the cover ring 4. One end of the binding strap 5 is rotatably arranged on the cover ring 4 in a self-retracting manner, specifically connected to a rotating shaft equipped with a torsion spring. The other end of the binding strap 5 is detachably connected to the base 1, specifically hooked on the base 1. Then, with the help of the cover ring 4 and the binding strap 5, a force can be applied to the conductive ring 3 in the direction towards the base 1, thereby improving the structural stability of the device.

[0040] Reference Figure 1 and Figure 2 In order that when one layer of the conductive ring 3 is rotated, the conductive rings 3 of other layers will not rotate, the outer surface of the functional module 2 has a matte structure, which can be specifically realized by attaching a matte cloth. At the same time, the binding band 5 has a magic binding band structure, and the binding band 5 is detachably adhesively connected to the outer surface of the functional module 2. Then when one of the conductive rings 3 is rotated alone, the connection between the corresponding functional module 2 and the binding band 5 can be temporarily released, and the remaining functional modules 2 still remain adhered to the binding band 5. In this way, when one of the conductive rings 3 is rotated, the remaining conductive rings 3 will not rotate. After rotating to the predetermined posture, the binding band 5 is connected to the functional module 2 again, so as to lock the conductive ring 3, thereby maintaining the structural stability of the device.

[0041] The implementation principle of an intelligent sound box with an air purification function in an embodiment of the present application is as follows: The sound part 21 and the air purification part 22 are independent and have no association. Therefore, when one of the functional modules 2 is removed alone, the other functional module 2 can still be used normally. Then when one of the functions is damaged, only the corresponding function needs to be replaced or repaired. Therefore, the maintenance is convenient and the maintenance cost is low, so that the maintenance of the intelligent sound box is simpler.

[0042] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereby. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application should be covered within the protection scope of the present application.

Claims

1. An intelligent speaker with air purification function, characterized by: include: A base (1) having a master control unit built therein; Functional modules (2), wherein the plurality of functional modules (2) are divided into mutually independent sound sections (21) and air purification sections (22), and the sound sections (21) and the air purification sections (22) are detachably connected to the base (1).

2. The smart speaker with air purification function according to claim 1, characterized in that: The base (1) is provided with a centralized output channel (11) and a decentralized input channel (12); the centralized output channel (11) is located on the axis of the base (1), and the centralized output channel (11) is connected to the upper end surface and the lower end surface of the base (1); the decentralized input channel (12) is perpendicular to the centralized output channel (11), one end of the decentralized input channel (12) is connected to the centralized output channel (11), and the other end is connected to the peripheral side of the base (1); one of the functional modules (2) is fan-shaped or ring-shaped, the inner peripheral side of the functional module (2) is connected to the centralized output channel (11), and a plurality of functional modules (2) that are not at the same height from the base (1) are distributed along the axial direction of the centralized output channel (11); the heat dissipation holes of the audio part (21) are located on the inner peripheral side thereof, and the air inlet holes of the air purification part (22) are located on the inner peripheral side thereof.

3. The smart speaker with air purification function according to claim 2 is characterized in that: The base (1) is provided with a plurality of conductive rings (3), the conductive rings (3) are detachably connected to the base (1), the conductive rings (3) are electrically connected to the base (1), the conductive rings (3) are coaxially arranged with the concentrated output channel (11), the conductive rings (3) are provided with flow guide holes (31), and the flow guide holes (31) are connected with the concentrated output channel (11); the plurality of conductive rings (3) are coaxially stacked, two adjacent conductive rings (3) are detachably connected, and two adjacent conductive rings (3) are electrically connected; the conductive rings (3) are electrically connected to the functional module (2), and the conductive rings (3) are detachably connected to the functional module (2).

4. The smart speaker with air purification function according to claim 3 is characterized in that: An input contact (32) is arranged on the end surface of the conductive ring (3) close to the base (1); the input contact (32) is annular and coaxially arranged with the conductive ring (3); an output contact groove (33) is arranged on the end surface of the base (1) close to the conductive ring (3) and the end surface of the conductive ring (3) away from the base (1); the output contact groove (33) is annular and is used for the input contact (32) of another adjacent conductive ring (3) to be embedded; the input contact (32) is connected to the inner wall contact of the output contact groove (33).

5. The smart speaker with air purification function according to claim 4 is characterized in that: A support ring (34) is arranged on the circumferential side of the conductive ring (3); the support ring (34) is coaxially arranged with the conductive ring (3); a connection contact block (35) and a connection magnet (36) are embedded on the upper surface of the support ring (34); the functional module (2) abuts against the upper surface of the support ring (34); the functional module (2) is magnetically attracted by the connection magnet (36); and the functional module (2) is contact-connected with the connection contact block (35).

6. The smart speaker with air purification function according to claim 5, characterized in that: The connection contact block (35) and the connection magnet (36) are both annular, and are coaxially arranged with the conductive ring (3); the functional module (2) further comprises a humidifying portion (23), one conductive ring (3) cooperates with the functional module (2) enclosed in a sector shape or an annular shape, and one conductive ring (3) cooperates with one or more functional modules (2).

7. The smart speaker with air purification function according to claim 4, characterized in that: The input contact block (32) is rotatably embedded in the output contact groove (33), a transmission ball (37) is embedded in the side wall of the output contact groove (33), and the transmission ball (37) rolls and abuts against the input contact block (32).

8. The smart speaker with air purification function according to claim 7, characterized in that: The conductive ring (3) farthest from the base (1) is provided with a cover ring (4), and a splicing block is provided on a side of the cover ring (4) close to the conductive ring (3), and the splicing block is embedded in the output contact groove (33); a plurality of binding belts (5) are provided on the circumference of the cover ring (4), and one end of the binding belt (5) is rotatably arranged on the cover ring (4) in a self-retracting manner, and the other end is detachably connected to the base (1).

9. The smart speaker with air purification function according to claim 8, characterized in that: The outer surface of the functional module (2) is of a rough surface structure; the binding belt (5) is of a magic tie structure, and the binding belt (5) is detachably bonded to the outer surface of the functional module (2).

Citation Information

Patent Citations

  • Sound equipment capable of being used for air cleaning and application method thereof

    CN107835470A