Smart acoustic system

By designing microphone slots and accommodating slots in the speaker components, and combining them with fastening components and magnetic or charging structures, the problem of inconvenient microphone carrying and storage is solved, improving user experience and charging convenience.

WO2026036290A1PCT designated stage Publication Date: 2026-02-19JIANGXI TAIDE INTELLIGENCE TECHNOLOGY CO LTD
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Patent Information

Application Number
PCT/CN2024/111965
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-08-14
Publication Date
2026-02-19

AI Technical Summary

Technical Problem

In existing intelligent acoustic systems, the separate placement of microphone and speaker components makes them inconvenient to carry and store. Furthermore, the speaker components are large and difficult to hold with one hand, and the microphone charging performance is poor, which affects the user experience.

Method used

Design an intelligent acoustic system in which the speaker component includes a speaker base with a microphone slot and a receiving slot. The microphone can be placed flat in the microphone slot and fixed by a fastening component or a rotating screen. Combined with a magnetic or charging structure, it can be conveniently stored and charged.

Benefits of technology

It effectively solves the problem of inconvenient microphone carrying and storage, improves user experience, and enables convenient operation of speaker components and convenient charging of microphones.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of electrical communications. Disclosed is a smart acoustic system. The smart acoustic system comprises a microphone and a speaker assembly. The speaker assembly comprises a speaker base provided with a microphone placement recess and an accommodating recess, and a speaker cover plate hinged to the speaker base. The microphone placement recess is located in the accommodating recess, the total depth dimension of the microphone placement recess and the accommodating recess being greater than or equal to the diameter dimension of the microphone, such that when the microphone is placed flat in the microphone placement recess, the microphone is completely accommodated in the microphone placement recess and the accommodating recess. The speaker cover plate is provided with a rotary screen, and the rotary screen is used for covering or opening the microphone placement recess. The speaker cover plate is used for covering or opening the accommodating recess. The present invention effectively solves the problem of carrying and storing a microphone being inconvenient.
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Description

Intelligent acoustic system TECHNICAL FIELD

[0001] The present application relates to the field of electric communication technology, in particular to an intelligent acoustic system. BACKGROUND

[0002] The intelligent acoustic system generally comprises a microphone for picking up sound and a speaker assembly for playing sound. Generally, the microphone and the speaker assembly are usually placed separately, for example, the microphone is generally placed detachably on a microphone stand or directly on a table top, so that the carrying and storage of the intelligent acoustic system are extremely inconvenient.

[0003] Moreover, after the microphone is stored in the speaker assembly, the volume of the speaker assembly increases dramatically. At present, the size of the speaker assembly is already large enough that the user cannot hold it with one hand or it is difficult to take out the microphone. Therefore, the user cannot move the speaker assembly conveniently, the use experience is poor, and it is difficult to take out the microphone. At the same time, the existing structure also has problems such as being unable to charge the microphone or poor charging effect.

[0004] Therefore, it is necessary to improve the existing intelligent acoustic system to solve the problems of inconvenient carrying and storage of the microphone.

[0005] SUMMARY

[0006] The present application provides an intelligent acoustic system to solve the problems in the prior art.

[0007] To achieve the above-mentioned purpose, the technical scheme adopted by the present application is as follows:

[0008] An intelligent acoustic system comprises a microphone and a speaker assembly; the speaker assembly comprises a speaker base provided with a microphone placing groove and a containing groove, and a speaker cover plate hinged to the speaker base; the microphone placing groove is located in the containing groove; wherein the total depth dimension of the microphone placing groove and the containing groove is greater than or equal to the diameter dimension of the microphone, so that when the microphone is placed flat in the microphone placing groove, the microphone is completely stored in the microphone placing groove and the containing groove; the speaker cover plate is provided with a rotating screen for covering or opening the microphone placing groove; the speaker cover plate is used for covering or opening the containing groove.

[0009] Compared with the prior art, the present application has the following beneficial effects:

[0010] The application provides a plurality of intelligent acoustic system structures, in one embodiment, when a microphone needs to be used, first open the sound box cover plate, then place the microphone into the microphone placing groove; when the microphone does not need to be used, place the microphone into the microphone placing groove horizontally, then close the sound box cover plate, which can effectively solve the inconvenience of carrying and storing the microphone. In another acoustic system structure, after the microphone is placed into the accommodating groove, lock the microphone with the fastening assembly, which can avoid the shaking of the microphone in the accommodating groove, so as to facilitate carrying and transportation; when the microphone needs to be used, release the fastening assembly, then the microphone can be taken out and used, which can also effectively solve the inconvenience of carrying and storing the microphone. BRIEF DESCRIPTION OF DRAWINGS

[0011] Fig. 1 is a structural schematic diagram of a flat concave horizontal intelligent acoustic system provided by embodiment 1;

[0012] Fig. 2 is a structural schematic diagram of an intelligent acoustic system provided by embodiment 2;

[0013] Fig. 3 is a structural schematic diagram of another intelligent acoustic system provided by embodiment 2;

[0014] Fig. 4 is a structural schematic diagram of an external structure of a compact sound box assembly provided by embodiment 3;

[0015] Fig. 5 is a structural schematic diagram of an internal structure of the compact sound box assembly provided by embodiment 3;

[0016] Fig. 6 is a structural schematic diagram of a loudspeaker unit provided by embodiment 3;

[0017] Fig. 7 is a structural schematic diagram of a linkage type intelligent acoustic system when the rotating screen is closed provided by embodiment 4;

[0018] Fig. 8 is a structural schematic diagram of the linkage type intelligent acoustic system provided by embodiment 4 after the rotating screen in Fig. 7 is hidden;

[0019] Fig. 9 is an exploded schematic diagram of the linkage type intelligent acoustic system provided by embodiment 4;

[0020] Fig. 10 is a structural schematic diagram of the linkage type intelligent acoustic system when the microphone is placed vertically in embodiment 4;

[0021] Fig. 11 is a structural schematic diagram of an intelligent acoustic system provided by embodiment 5;

[0022] Fig. 12 is a structural schematic diagram of a ring-shaped charging type microphone provided by embodiment 5;

[0023] Fig. 13 is a structural schematic diagram of a sound box assembly provided by embodiment 5;

[0024] Fig. 14 is a structural schematic diagram of an intelligent acoustic system provided by embodiment 6;

[0025] Fig. 15 is a structural schematic diagram of a microphone according to Embodiment 6;

[0026] Fig. 16 is a structural schematic diagram of a sound box assembly according to Embodiment 6;

[0027] Fig. 17 is a schematic diagram of a microphone according to Embodiment 6, in which there is only one side magnet;

[0028] Fig. 18 is a schematic diagram of a microphone according to Embodiment 6, in which there are two side magnets with the same polarity;

[0029] Fig. 19 is a schematic diagram of a microphone according to Embodiment 6, in which there are two side magnets with opposite polarities;

[0030] Fig. 20 is a structural schematic diagram of a smart acoustic system according to Embodiment 7;

[0031] Fig. 21 is a structural schematic diagram of another smart acoustic system according to Embodiment 7;

[0032] Fig. 22 is a structural schematic diagram of Embodiment 8;

[0033] Fig. 23 is a structural schematic diagram of a combination of a microphone slot, a hand slot, a containing slot, a clamping member, and a microphone according to Embodiment 8;

[0034] Fig. 24 is a structural schematic diagram of a combination of a clamping member and a limiting portion according to Embodiment 8;

[0035] Fig. 25 is a structural schematic diagram of a power supply contact according to Embodiment 8;

[0036] Fig. 26 is a structural schematic diagram of a microphone according to Embodiment 8;

[0037] Fig. 27 is a structural schematic diagram of an acoustic system according to Embodiment 9;

[0038] Fig. 28 is a structural schematic diagram of a sound box assembly according to Embodiment 9;

[0039] Fig. 29 is an internal schematic diagram of a sound box assembly according to Embodiment 9;

[0040] Fig. 30 is a structural schematic diagram of an acoustic system according to Embodiment 10;

[0041] Fig. 31 is a structural schematic diagram according to Embodiment 11;

[0042] Fig. 32 is a schematic diagram of a state in which a clamping member clamps a microphone according to Embodiment 11;

[0043] Fig. 33 is a sectional view of a structure according to Embodiment 11;

[0044] Fig. 34 is an enlarged view of a portion of Fig. 33;

[0045] Fig. 35 is a sectional view of another structure of the microphone push-in fixing structure and the sound box provided in Embodiment 11;

[0046] Fig. 36 is an enlarged view of a portion B in Fig. 35;

[0047] Fig. 37 is a sectional view of the fixing member of the microphone push-in fixing structure provided in Embodiment 11;

[0048] Fig. 38 is a structural schematic view of the microphone push-in fixing structure and the sound box provided in Embodiment 11;

[0049] Fig. 39 is a structural schematic view of a microphone of Embodiment 12;

[0050] Fig. 40 is a structural schematic view of one kind of accommodating structure in Embodiment 12;

[0051] Fig. 41 is a structural schematic view of a combination of one kind of accommodating structure and a microphone in Embodiment 12;

[0052] Fig. 42 is a structural schematic view of a combination of another kind of accommodating structure and a microphone in Embodiment 12;

[0053] Fig. 43 is a structural schematic view of a power supply contact in Embodiment 12;

[0054] Fig. 44 is a structural schematic view of a fixing portion in Embodiment 12;

[0055] Fig. 45 is a structural schematic view of a combination of a fixing assembly, a connecting member and a receiving slot in Embodiment 13;

[0056] Fig. 46 is a structural schematic view of a receiving slot in Embodiment 13;

[0057] Fig. 47 is an enlarged view of a portion A in Fig. 46 in Embodiment 13;

[0058] Fig. 48 is a structural schematic view of a combination of a clearance slot, a microphone placing slot and a power supply contact in Embodiment 13;

[0059] Fig. 49 is a structural schematic view of a sound box assembly in Embodiment 13;

[0060] Fig. 50 is a structural schematic view of a microphone in Embodiment 13.

[0061] Reference signs: 1, microphone; 100, storage mechanism; 101, microphone body; 102, loudspeaker monomer; 103, charging metal ring; 104, charging contact piece assembly; 105, label; 106, power receiving coil; 107, first magnet; 108, power supply coil; 109, second magnet; 110, battery; 111, button assembly; 112, conductive contact piece; 113, elastic stopper; 114, limiting assembly; 115, buckle; 116, magnetic attraction clamping; 1010, inclined surface; 1011, accommodating cavity; 1012, annular groove; 1013, wire passing hole; 1014, first vertical surface; 1015, second vertical surface; 1016, connecting wall surface; 1017, first longitudinal surface; 1018, second longitudinal surface; 1019, transverse connecting surface; 2, sound box assembly; 201, sound box base; 202, sound box cover plate; 203, rotating screen; 204, protection pad; 205, loudspeaker assembly; 206, key assembly; 207, accommodating groove; 208, charging probe; 209, handle part; 210, box shell; 211, box cover plate; 212, mounting position; 213, mounting hole; 2011, microphone accommodating groove; 2012, handle slot; 2013, handle notch; 2014, partition plate; 2015, microphone clamping assembly; 2016, longitudinal clamping plate; 2017, inclined guide part; 3, jacking mechanism; 30, clamping part; 31, first pushing part; 32, second pushing part; 33, connecting part; 330, connecting hole; 301, female quick plug; 302, fastening belt; 303, male quick plug; 304, lifting frame assembly; 3041, lifting bottom plate; 3042, fixed vertical rod; 3043, support plate; 305, linear drive mechanism; 306, magnetic attraction assembly; 3061, microphone side magnet; 3062, box side magnet; 4, magic tape; 401, tightening part; 402, tightening groove; 403, rough surface; 404, hook surface; 405, connecting member; 406, limiting part; 407, elastic part; 408, magic tape female surface; 409, magic tape male surface; 5, detection mechanism; 6, power supply contact; 7, charging wire; 701, cable body; 702, charging plug; 703, winder; 8, charging piece; 9, clamping part; 10, limiting part; 11, connecting part; 12, limiting belt; 13, opening; 14, avoiding opening; 15, key; 16, clamping part; 17, clamping assembly; 18, touch mechanism; 19, protrusion; 20, avoiding notch; 21, inclined surface; 22, push rod; 23, fixed part; 24, elastic part; 25, fixed plate; 26, connecting part. DETAILED DESCRIPTION

[0062] The present application will be further described and illustrated in conjunction with the accompanying drawings and specific embodiments. The technical features of each embodiment in the present application can be combined accordingly without conflict.

[0063] In order to make the above objectives, features and advantages of the present application more obvious and comprehensible, the specific embodiments of the present application will be described in detail below with reference to the drawings. In the following description, a large number of specific details are set forth in order to provide a thorough understanding of the present application. However, the present application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar improvements without departing from the concept of the present application, so the present application is not limited to the specific embodiments disclosed below. The technical features in each embodiment of the present application can be combined accordingly without conflict.

[0064] In the description of the present application, it should be understood that when an element is considered to be "connected" to another element, it can be directly connected to the other element or indirectly connected, that is, there is an intermediate element. In contrast, when an element is referred to as being "directly" connected to another element, there is no intermediate element.

[0065] Embodiment 1

[0066] The present application provides a smart acoustic system, which is provided as a flat concave horizontal structure, which is suitable for application scenarios such as listening to songs, and which can effectively solve the problem of inconvenience of carrying and storing the microphone.

[0067] Referring to FIG. 1, the flat concave horizontal smart acoustic system provided in the present embodiment includes a microphone 1 and a sound box assembly 2. The sound box assembly 2 includes a sound box base 201 provided with a microphone placing groove 2011 on the top surface, and a sound box cover plate 202 hinged to the sound box base 201; wherein the microphone placing groove 2011 is located in a containing groove 207, and the total depth dimension of the microphone placing groove 2011 and the containing groove 207 is greater than or equal to the diameter dimension of the microphone 1, so that when the microphone 1 is placed flat in the microphone placing groove 2011, the microphone 1 is completely stored in the microphone placing groove 2011, that is, the microphone 1 does not protrude from the microphone placing groove 2011, so as to avoid collision between the sound box cover plate 202 and the microphone 1 when the sound box cover plate 202 is closed, and finally damage to the sound box cover plate 202 or the microphone 1.

[0068] When the microphone 1 needs to be used, first open the sound box cover plate 202, and then place the microphone 1 into the microphone placing groove 2011; when the microphone 1 does not need to be used, place the microphone 1 flat into the microphone placing groove 2011, and then close the sound box cover plate, which is used to cover or open the containing groove 207. Therefore, the flat concave horizontal smart acoustic system provided in the present application can effectively solve the problem of inconvenience of carrying and storing the microphone 1.

[0069] Optionally, the side of the microphone placing groove 2011 is provided with a hand holding groove 2012 which is in communication with the microphone placing groove 2011. Further, the number of the microphone placing groove 2011 is two, and each microphone placing groove 2011 is provided with one hand holding groove 2012.

[0070] The two microphone placing grooves 2011 are provided with a partition plate 2014, and the partition plate 2014 is provided with a hand holding notch 2013 which corresponds to the position of the hand holding groove 2012; the hand holding notch 2013 is in communication with the two microphone placing grooves 2011. The width and depth of the hand holding groove 2012 and the hand holding notch 2013 are the same, and the depth of the hand holding groove 2012 and the hand holding notch 2013 is greater than the radius of the microphone 1.

[0071] Since the microphone 1 is completely accommodated in the microphone placing groove 2011, it is difficult to take out the microphone 1. In order to facilitate the taking out of the microphone 1, the hand holding groove 2012 and the hand holding notch 2013 are provided, and the microphone 1 can be easily taken out of the microphone placing groove 2011 by inserting the fingers into the hand holding groove 2012 and the hand holding notch 2013.

[0072] Optionally, the inner side of the middle position of the sound box cover plate 202 is provided with a rotating screen 203 which is used for playing lyrics and the like.

[0073] In the embodiment, the top edge position of the sound box base 201 is further provided with a plurality of protective pads 204 which are used for abutting against the edge position of the inner side of the sound box cover plate 202.

[0074] When the sound box cover plate is closed, the inner edge position of the sound box cover plate 202 abuts against each protective pad 204, thereby avoiding the direct downward contact or knocking of the rotating screen 203 to the microphone 1 or the top surface of the sound box base 201, so as to avoid damaging or scratching the rotating screen 203.

[0075] In the embodiment, the sound box assembly 2 further comprises a loudspeaker assembly 205 and a key assembly 206 which are installed at the side position of the sound box base 201, and the specific structure of the loudspeaker assembly 205 and the key assembly 206 is not the focus of the embodiment, and thus is not described herein.

[0076] In summary, the flat concave horizontal type intelligent acoustic system provided by the embodiment has the following advantages: ①when the microphone 1 is not used, the microphone 1 can be laid flat in the microphone placing groove 2011, thereby effectively solving the problem of inconvenience in carrying and accommodating the microphone 1; ②the hand holding groove 2012 and the hand holding notch 2013 are provided to facilitate the taking out of the microphone 1; ③the microphone 1 is completely accommodated in the microphone placing groove 2011, thereby avoiding the damage of the microphone 1 or the rotating screen 203.

[0077] Embodiment 2

[0078] The present application provides a kind of intelligent acoustic system, it is suitable for singing outdoors and other application scenarios, it provides the intelligent acoustic system of application, can effectively solve the problem of carrying inconvenience caused by microphone and speaker box separate setting.The intelligent acoustic system provided in the embodiment includes several microphones 1, speaker box component 2 And fastening assembly.

[0079] Specifically, the speaker box component 2 includes a speaker box base 201, and a speaker cover plate 202 hinged to the speaker box base 201, the speaker box base 201 is provided with a receiving groove 207 for accommodating each microphone; The fastening assembly is located in the receiving groove 207; Wherein, the fastening assembly has a locking state for fixing each microphone 1 in the receiving groove 207, and has an unlocking state for releasing each microphone. Wherein, the total depth dimension of the microphone slot 2011 and the receiving groove 207 is greater than or equal to the diameter dimension of the microphone 1, facilitating the placement of the microphone 1.

[0080] The intelligent acoustic system provided in the embodiment can avoid the shaking of the microphone 1 in the receiving groove 207 by locking the microphone 1 with the fastening assembly after placing the microphone 1 in the receiving groove 207, facilitating carrying and transportation; When the microphone 1 is needed, the fastening assembly is released, and the microphone 1 can be taken out for use. Therefore, the intelligent acoustic system provided by the present application can effectively solve the problem of carrying inconvenience caused by microphone and speaker box separate setting.

[0081] Next, the various embodiments of the fastening assembly of the present application will be introduced in combination with the drawings, such as the following embodiments, the fastening assembly in each of the following embodiments can be applied to the intelligent acoustic system as described above.

[0082] In one embodiment:

[0083] Referring to FIG. 2, in the embodiment, the fastening assembly includes a quick plug female head 301, a fastening belt 302, and a quick plug male head 303. The quick plug female head 301 is fixed in the receiving groove 207 of the speaker box component 2; One end of the fastening belt 302 is fixed in the receiving groove 207; The quick plug male head 303 is fixed to the other end of the fastening belt 302, and is used for plug connection with the quick plug female head 301.

[0084] Specifically, the quick plug male head 303 and the quick plug female head 301 are common quick plug assemblies, for example, can be water pipe quick plug connectors, wire terminal quick plug connectors, etc., the specific structure is not the focus of the embodiment, and will not be described here.

[0085] Optionally, the bottom of the accommodating groove 207 is provided with a microphone placing groove 2011 corresponding to each microphone 1. The microphone placing groove 2011 is located between the fastening band 302 and the female fast plug 301, and the fastening band 302 is located above the microphone placing groove 2011 when the male fast plug 303 is inserted into the female fast plug 301.

[0086] Therefore, after the microphone 1 is placed in the corresponding microphone placing groove 2011, the male fast plug 303 is inserted into the female fast plug 301, and the plurality of microphones 1 can be fixed at one time.

[0087] In the embodiment, the speaker assembly 2 further comprises a loudspeaker assembly 205 and a button assembly 206 installed at the side of the speaker base 201, and the specific structure of the loudspeaker assembly 205 and the button assembly 206 is not the focus of the embodiment, and thus is not described herein.

[0088] In the embodiment, the fastening band 302 is an elastic band. It can be understood that the elastic band has elastic extension and can better fix the microphone 1.

[0089] Optionally, the top of the speaker assembly 2 is hingedly connected with a rotating screen 203 used for covering the accommodating groove 207. After the microphone 1 is fixed by the elastic band, the microphone 1 can be prevented from shaking in the accommodating groove 207, and the rotating screen 203 can be prevented from being damaged.

[0090] In summary, the intelligent acoustic system provided by the embodiment has the following advantages: the fastening of the microphone 1 can be quickly locked and unlocked by the cooperation of the elastic band, the male fast plug 303 and the female fast plug 301, and the plurality of microphones 1 can be fixed at the same time, and the operation is simple and convenient.

[0091] In another embodiment,

[0092] Referring to FIG. 2, in the embodiment, the fastening assembly is a magic tape 4. The middle part of the magic tape 4 is fixed in the accommodating groove 207 of the speaker assembly 2 by a rivet or the like, one end of the magic tape 4 is provided with a tightening part 401, and the other end is provided with a tightening groove 402 through which the tightening part 401 passes. Optionally, the inner side of the tightening part 401 is a rough surface 403, and the outer side of the tightening groove 402 is a hook surface 404.

[0093] Specifically, the microphone 1 is placed above the magic tape 4, then the tightening part 401 passes through the tightening groove 402, and after the tightening part 401 is pulled tight, the rough surface 403 is pasted and fixed to the hook surface 404, and the fixing operation of the microphone 1 is completed. When the microphone 1 needs to be taken out, the tightening part 401 is torn.

[0094] Optionally, the top of the sound box assembly 2 is hinged with a rotating screen 203 for covering the accommodating groove 207. After the microphone 1 is fixed with the magic tape 4, the microphone 1 can be prevented from shaking in the accommodating groove 207, thereby avoiding damaging the rotating screen 203.

[0095] In the embodiment, the sound box assembly 2 further comprises a loudspeaker assembly 205 and a button assembly 206 installed at the side of the sound box base 201, and the specific structure of the loudspeaker assembly 205 and the button assembly 206 is not the focus of the embodiment, and thus is not described herein.

[0096] In summary, the intelligent acoustic system provided by the embodiment has the following advantages: each microphone 1 is configured with an independent magic tape 4, and the microphone 1 can be conveniently taken out and fixed.

[0097] Embodiment 3

[0098] Referring to FIG. 4, in the embodiment, the intelligent acoustic system comprises a compact sound box assembly 2 and a plurality of microphones 1. Referring to FIGS. 5 and 6, the compact sound box assembly 2 comprises a sound box base 201, a loudspeaker body 102, a sound box cover plate 202, and a rotating screen 203.

[0099] The top of the sound box base 201 is provided with an accommodating cavity 1011 with an opening facing upward, and the front surface of the sound box base 201 is provided with a loudspeaker installation window communicating the accommodating cavity 1011 with the outside space of the sound box base 201. The loudspeaker body 102 is installed in the loudspeaker installation window with the front face facing forward. The sound box cover plate 202 is installed on the sound box base 201 for covering the opening of the accommodating cavity 1011.

[0100] The rear end of the loudspeaker body 102 has a smaller size than the front end. The sound box cover plate 202 is recessed downward at a position corresponding to the rear end of the loudspeaker body 102 to form an accommodating groove 207 for accommodating the microphone 1. Each microphone 1 is accommodated in the accommodating groove 207 of the compact sound box assembly 2. The rotating screen 203 is hinged with the sound box base 201 for covering the accommodating groove 207, and the microphone 1 can be opened or covered by rotating the rotating screen 203. The total depth dimension of the accommodating cavity 1011 and the accommodating groove 207 is greater than or equal to the diameter dimension of the microphone 1, so as to facilitate the placement of the microphone 1.

[0101] The compact loudspeaker assembly 2 and the smart acoustic system provided by the embodiment are provided with the accommodating groove 207 above the rear end of the loudspeaker body 102, so that the accommodating groove 207 and the loudspeaker body 102 are overlapped in the width direction (i.e. the front-rear direction), thereby reducing the overall width of the loudspeaker base 201, so that the user can hold the loudspeaker base 201 with one hand, and the user experience is greatly improved.

[0102] It should be noted that generally, the front of the loudspeaker body 102 is a vibration disc with a large diameter, and the back is a magnet with a small diameter. Therefore, the rear end of the loudspeaker body 102 is smaller than the front end, which is a conventional structure of the loudspeaker body 102 and is not a unique design of the embodiment. The compact loudspeaker assembly 2 and the smart acoustic system provided by the embodiment only make full use of the structure feature that the loudspeaker body 102 is large in front and small at the rear.

[0103] The bottom of the accommodating groove 207 is provided with a plurality of microphone accommodating grooves 2011. Further, the end surface of the microphone 1 is rectangular or elliptical. The flat cross-sectional shape is beneficial to further reduce the occupation of the width space, so as to achieve the effect of holding with one hand.

[0104] Optionally, the axis of the loudspeaker body 102 is inclined upward or downward. Generally, the loudspeaker body 102 is a standard part, and the diameter is fixed. Therefore, the overall height of the loudspeaker base 201 basically depends on the diameter of the loudspeaker body 102. When the axis of the loudspeaker body 102 extends along the horizontal direction, the overall height of the loudspeaker base 201 is necessarily greater than or equal to the diameter of the loudspeaker body 102, and at this time, the height of the loudspeaker base 201 is relatively high. When the axis of the loudspeaker body 102 is inclined upward or downward, although the width space required by the loudspeaker body 102 is increased to a certain extent, the height space required by the loudspeaker body 102 is reduced, which is beneficial to reduce the height of the loudspeaker base 201.

[0105] In the embodiment, the number of loudspeaker bodies 102 is two, and the microphone accommodating groove 2011 is located between the two loudspeaker bodies 102. The length of the microphone accommodating groove 2011 is smaller than the distance between the rear ends of the two loudspeaker bodies 102, so as to reduce the length of the compact loudspeaker assembly 2 as much as possible.

[0106] In the embodiment, the side surface of the accommodating groove 207 close to the loudspeaker body 102 is an inclined surface 1010 matched with the loudspeaker body 102. The inclined design of the inclined surface 1010 can avoid interference with the loudspeaker body 102, and can also increase the size of the accommodating groove 207, so as to take and place the microphone 1.

[0107] In summary, the compact loudspeaker assembly 2 and the smart acoustic system provided by the embodiment have the following advantages: ① The accommodating groove 207 is arranged above the rear end of the loudspeaker body 102, so that the accommodating groove 207 and the loudspeaker body 102 are overlapped in the width direction, thereby reducing the overall width of the loudspeaker base 201, so that the user can hold the compact loudspeaker assembly 2 with one hand, and the user experience is greatly improved; ② The loudspeaker body 102 is arranged in an inclined manner, so that the height of the compact loudspeaker assembly 2 is effectively reduced; ③ The end surface of the microphone 1 is in a rectangular or elliptical shape, so that the width space is further occupied, and the compact loudspeaker assembly 2 can be held with one hand; ④ The accommodating groove 207 is provided with the inclined surface 1010, so that the loudspeaker body 102 is avoided to interfere, and the size of the accommodating groove 207 is sufficiently increased, so that the microphone 1 can be taken out or placed.

[0108] Embodiment 4

[0109] The application provides a linkage type smart acoustic system, which is suitable for singing and other application scenarios, and can effectively solve the problem that it is difficult to take out the microphone after being stored in the microphone placing groove.

[0110] Referring to FIGS. 7-9, the linkage type smart acoustic system provided by the embodiment includes a loudspeaker assembly 2, a rotating screen 203, a detection mechanism 5, a jacking mechanism 3, and a microphone 1. The loudspeaker assembly 2 includes a loudspeaker base 201 provided with a microphone placing groove 2011 and an accommodating groove 207; the rotating screen 203 is hinged to the loudspeaker base 201 and used for covering or opening the microphone placing groove 2011; the detection mechanism 5 is used for detecting the rotation angle of the rotating screen 203 relative to the loudspeaker base 201; and the jacking mechanism 3 is electrically connected to the detection mechanism 5 and used for jacking up or lowering the microphone 1. The total depth of the microphone placing groove 2011 and the accommodating groove 207 is greater than or equal to the diameter of the microphone 1, so that the microphone 1 can be placed.

[0111] When the microphone 1 needs to be used, the rotating screen 203 is opened, and when the detection mechanism 5 detects that the rotating screen 203 is gradually opened, the jacking mechanism 3 is gradually raised, and then the microphone 1 is jacked out of the microphone placing groove 2011, so that the microphone 1 can be taken out. After the microphone 1 is used, the microphone 1 is placed on the jacking mechanism 3, and then the rotating screen 203 is gradually closed. When the detection mechanism 5 detects that the rotating screen 203 is gradually closed, the jacking mechanism 3 is gradually lowered, so that the microphone 1 is lowered into the microphone placing groove 2011, and the storage is completed.

[0112] Therefore, the linkage type smart acoustic system provided by the application can effectively solve the problem that it is difficult to take out the microphone 1 after being stored in the microphone placing groove 2011.

[0113] In this embodiment, the jacking mechanism 3 comprises a lifting frame assembly 304 and a linear drive mechanism 305 for driving the lifting frame assembly 304 to move up and down relative to the speaker base 201. The linear drive mechanism 305 can be a motor-screw assembly, a linear motor or an electric cylinder, which is not limited in the present embodiment.

[0114] The lifting frame assembly 304 comprises a lifting bottom plate 3041, a plurality of fixed vertical rods 3042 and a plurality of support plates 3043 corresponding to the fixed vertical rods 3042. The lifting bottom plate 3041 is connected to the driving end of the linear drive mechanism 305. The lower end of each fixed vertical rod 3042 is fixed to the lifting bottom plate 3041. Each support plate 3043 is fixed to the top end of the corresponding fixed vertical rod 3042.

[0115] Correspondingly, the bottom of the microphone slot 2011 is provided with a plate accommodating groove for accommodating the support plate 3043 and a vertical rod through hole for the fixed vertical rod 3042. Optionally, two support plates 3043 are provided corresponding to each microphone 1. After placing the microphone 1 on the support plate 3043, when the linear drive mechanism 305 drives the lifting bottom plate 3041 to move upward, each support plate 3043 can simultaneously move upward with the lifting bottom plate 3041, thereby simultaneously lifting the two microphones 1 out of the microphone slot 2011. Similarly, when the linear drive mechanism 305 drives the lifting bottom plate 3041 to move downward, each support plate 3043 can simultaneously move downward with the lifting bottom plate 3041, thereby simultaneously placing the two microphones 1 into the microphone slot 2011.

[0116] In this embodiment, the microphone 1 is horizontally placed in the microphone slot 2011, and the support plate 3043 is an arc-shaped structure. The arc-shaped structure is suitable for supporting the cylindrical surface of the microphone 1 when the microphone 1 is placed horizontally.

[0117] In some other embodiments, referring to FIG. 10, the microphone 1 is vertically placed in the microphone slot 2011, and the support plate 3043 is a flat plate structure. The flat plate is suitable for supporting the bottom surface of the microphone 1 when the microphone 1 is placed vertically.

[0118] In this embodiment, the detection mechanism 5 is a rotation angle sensor installed at the hinged position of the speaker base 201 and the rotating screen 203. The rotation angle sensor can detect the rotation angle of the rotating screen 203, and then send instructions to the jacking mechanism 3 to indicate the jacking mechanism 3 to jack up or lower the microphone 1. Of course, the angle detection can also be achieved by a rotary encoder, and the specific angle detection device is not the focus of the present application, so it is not described in detail.

[0119] In the embodiment, the sound box assembly 2 further comprises a loudspeaker assembly 205 and a button assembly 206, etc. mounted at the side of the sound box base 201. Further, the specific structure of the loudspeaker assembly 205 and the button assembly 206, etc. is not the focus of the embodiment, and thus is not described herein.

[0120] In summary, the linkage type intelligent acoustic system provided in the embodiment has the following advantages: when the microphone 1 needs to be used, the rotary screen 203 is rotated to open, and the jacking mechanism 3 automatically jacks up the microphone 1 out of the microphone placing groove 2011, so as to be taken out, thereby solving the problem that the microphone 1 is difficult to take out after being stored in the microphone placing groove 2011.

[0121] Embodiment 5

[0122] The application provides an intelligent acoustic system, which is suitable for KTV singing and other application scenarios, and can effectively solve the problem that the existing intelligent sound box cannot charge the microphone, thereby causing poor user experience.

[0123] Referring to FIG. 11, in the embodiment, the intelligent acoustic system comprises a ring-shaped chargeable microphone 1 and a sound box assembly 2. Referring to FIG. 12, the ring-shaped chargeable microphone 1 comprises a microphone body 101 and a plurality of charge metal rings 103 arranged around the circumferential surface of the microphone body 101. Each charge metal ring 103 is arranged along the length direction of the microphone body 101.

[0124] The sound box assembly 2 is provided with a microphone placing groove 2011 for horizontally placing the ring-shaped chargeable microphone 1, and the groove bottom of the microphone placing groove 2011 is provided with a charge probe 208 corresponding to the position of each charge metal ring 103. The microphone placing groove 2011 is accommodated in a containing groove 207 provided on the sound box base 201. The total depth dimension of the microphone placing groove 2011 and the containing groove 207 is greater than or equal to the diameter dimension of the microphone 1, so as to facilitate the placement of the microphone 1.

[0125] It can be understood that the circumferential surface of the ring-shaped chargeable microphone 1 is provided with a plurality of charge metal rings 103, the groove bottom of the microphone placing groove 2011 is provided with a charge probe 208 corresponding to the position of each charge metal ring 103, and after the ring-shaped chargeable microphone 1 is horizontally placed in the microphone placing groove 2011, each charge probe 208 is in contact with and electrically connected to a charge metal ring 103, thereby charging the ring-shaped chargeable microphone 1.

[0126] It should be noted that since the charge metal ring 103 has a ring structure, no matter how the ring-shaped chargeable microphone 1 is rotated around the axis of the microphone body 101, the charge metal ring 103 can be easily aligned with the corresponding charge probe 208, thereby greatly reducing the alignment difficulty.

[0127] Therefore, the intelligent acoustic system provided in the embodiment can effectively solve the problem that some existing sound box assemblies 2 cannot charge the microphone, resulting in poor user experience.

[0128] In the embodiment, the circumferential surface of the microphone body 101 is provided with a plurality of annular grooves 1012, and each charging metal ring 103 is located in one annular groove 1012. Further, the groove of the annular groove 1012 protrudes from the outer circumferential surface of the charging metal ring 103. Therefore, after the annular charging microphone 1 is placed in the microphone placing groove 2011, each charging probe 208 will extend into the corresponding annular groove 1012, and cannot move along the axis of the microphone body 101 to be separated from the corresponding charging metal ring 103 due to the limiting action of the groove walls on both sides of the annular groove 1012.

[0129] In the embodiment, referring to FIG. 13, the sound box assembly 2 includes a sound box base 201 provided with the microphone placing groove 2011 at the middle position of the top, and a sound box cover plate 202 hinged to the sound box base 201 to cover the microphone placing groove 2011. The middle position of the inner side of the sound box cover plate 202 is provided with a rotating screen 203, and the edge position of the sound box base 201 is provided with a protective pad 204 protruding upward. When the sound box cover plate 202 is turned and closed, the protective pad 204 will abut against the edge position of the inner side of the sound box cover plate 202, so as to prevent the rotating screen 203 from being damaged by contacting the annular charging microphone 1. Optionally, each side of the sound box base 201 is provided with a handle portion 209, facilitating carrying and moving.

[0130] In the embodiment, the sound box assembly 2 further includes a loudspeaker assembly 205 and a key assembly 206 installed at the side position of the sound box base 201, and further, the specific structures of the loudspeaker assembly 205 and the key assembly 206 are not the focus of the embodiment, and thus are not described herein.

[0131] In summary, the annular charging microphone 1 and the intelligent acoustic system provided in the embodiment have the following beneficial effects: ① After the annular charging microphone 1 is placed horizontally into the microphone placing groove 2011, the charging probe 208 can contact the corresponding charging metal ring 103, thereby charging the annular charging microphone 1; ② The sound box assembly 2 has a flip cover structure and is provided with a rotating screen 203, facilitating subtitle watching and touch operation.

[0132] Embodiment 6

[0133] The application provides a magnetic positioning and charging type intelligent acoustic system, which is suitable for karaoke and other application scenarios, and can effectively solve the problem that existing intelligent sound boxes cannot charge microphones, resulting in poor user experience.

[0134] Referring to FIG. 14, in the embodiment, the magnetic positioning and charging type intelligent acoustic system comprises a microphone 1 and a sound box assembly 2. Referring to FIG. 15, the circumferential surface of the microphone 1 is provided with a charging contact sheet assembly 104; referring to FIG. 16, the sound box assembly 2 is provided with a sound box base 201, and the sound box base 201 is also provided with a microphone placing groove 2011 for horizontally placing the microphone 1, and the groove bottom of the microphone placing groove 2011 is provided with a charging probe 208 corresponding to the position of the charging contact sheet assembly 104. The microphone placing groove 2011 is accommodated in a containing groove 207 provided on the sound box base 201. The total depth dimension of the microphone placing groove 2011 and the containing groove 207 is greater than or equal to the diameter dimension of the microphone 1, so as to facilitate placing the microphone 1.

[0135] It can be understood that the circumferential surface of the microphone 1 is provided with the charging contact sheet assembly 104, the groove bottom of the microphone placing groove 2011 is provided with the charging probe 208, and after the microphone 1 is horizontally placed in the microphone placing groove 2011, as long as the charging contact sheet assembly 104 and the charging probe 208 are aligned, the charging probe 208 can charge the microphone 1 through the charging contact sheet assembly 104.

[0136] Therefore, the magnetic positioning and charging type intelligent acoustic system provided by the embodiment can effectively solve the problem that the existing sound box assembly 2 cannot charge the microphone 1, thereby improving the user experience.

[0137] In the embodiment, in order to improve the holding comfort, the microphone 1 is in a whole cylindrical structure, and the microphone placing groove 2011 is in a whole semicylindrical structure matched with the microphone 1. Since the cylindrical structure is prone to relative rotation, the relative positioning between the microphone 1 and the sound box assembly 2 is realized through the magnetic attraction assembly 306, so that the charging contact sheet assembly 104 is aligned with the charging probe 208.

[0138] In some other embodiments, the microphone 1 can also be in a whole prism structure such as a rectangular prism or a hexagonal prism, so as to avoid the problem that the charging contact sheet assembly 104 and the charging probe 208 are difficult to align due to the relative rotation between the microphone 1 and the microphone placing groove 2011.

[0139] Referring to FIGS. 17-19, in the embodiment, the magnetic attraction assembly 306 comprises a plurality of microphone-side magnets 3061 and a plurality of sound box-side magnets 3062. Each of the microphone-side magnets 3061 is fixedly arranged in the microphone 1; the axis of each of the microphone-side magnets 3061 is parallel to the central axis of the microphone 1, and each of the microphone-side magnets 3061 is located at one end of the microphone 1 away from the label 105. Each of the microphone-side magnets 3061 is arranged around the central axis of the microphone 1 and located at a non-central axis position of the microphone 1.

[0140] Each of the box side magnets 3062 is arranged corresponding to the microphone side magnet 3061, and is fixed in the sound box assembly 2; each of the box side magnets 3062 is arranged opposite to the end face of the end of the microphone 1 away from the mark 105. The microphone side magnet 3061 corresponds to the box side magnet 3062, when the microphone 1 is placed, the charging contact piece assembly 104 is ensured to be placed into the microphone placing groove 2011 with the charging contact piece assembly 104 downward, even if the alignment degree between the charging contact piece assembly 104 and the charging probe assembly is slightly deviated, the magnetic attraction force between the microphone side magnet 3061 and the box side magnet 3062 can correct the position of the microphone 1, can guide the microphone 1 to appropriately rotate slightly, and then the charging contact piece assembly 104 can be aligned with the charging probe assembly.

[0141] Optionally, referring to FIG. 17, the number of the microphone side magnet 3061 and the box side magnet 3062 is one, and the magnetic pole polarity of the two is opposite.

[0142] Alternatively, referring to FIG. 18, the number of the microphone side magnet 3061 and the box side magnet 3062 is two, the magnetic pole polarity of each microphone side magnet 3061 and the corresponding box side magnet 3062 is opposite. Further, the magnetic pole polarity of the two microphone side magnets 3061 is the same.

[0143] Alternatively, referring to FIG. 19, the number of the microphone side magnet 3061 and the box side magnet 3062 is two, the magnetic pole polarity of each microphone side magnet 3061 and the corresponding box side magnet 3062 is opposite. Further, the magnetic pole polarity of the two microphone side magnets 3061 is opposite. Such a design can prevent the user from placing the microphone 1 into the microphone placing groove 2011 with the charging contact piece assembly 104 upward.

[0144] In the embodiment, the sound box assembly 2 further comprises a loudspeaker assembly 205 and a key assembly 206 installed at the side of the sound box base 201, and further, the specific structure of the loudspeaker assembly 205 and the key assembly 206 is not the focus of the embodiment, and thus is not described herein.

[0145] In summary, the magnetic attraction positioning and charging type intelligent acoustic system provided by the embodiment has the following beneficial effects: ①after the microphone 1 is placed into the microphone placing groove 2011 horizontally, as long as the charging contact piece assembly 104 and the charging probe 208 are aligned, the charging probe 208 can charge the microphone 1 through the charging contact piece assembly 104; ②the relative positioning between the microphone 1 and the sound box assembly 2 is realized through the magnetic attraction assembly 306, so that the charging contact piece assembly 104 and the charging probe 208 are aligned.

[0146] Embodiment 7

[0147] The application provides a wireless charging type intelligent acoustic system which is suitable for singing and other application scenarios and can effectively solve the problem of easily forgetting to charge a microphone.

[0148] The wireless charging type intelligent acoustic system comprises a plurality of microphones 1, a sound box assembly 2, a plurality of inner suction accessories and a plurality of outer suction accessories. The inner suction accessories in the embodiment adopt power supply coils and first magnets, and the outer suction accessories correspondingly adopt power receiving coils and second magnets. The microphone 1 is internally provided with a battery 110 and a power receiving coil 106 for charging the battery 110; the sound box assembly 2 comprises a plurality of microphone placing grooves 2011 which are arranged in one-to-one correspondence with the microphones; each power supply coil 108 is arranged in correspondence with one microphone placing groove 2011 and is used for wirelessly charging the corresponding power receiving coil 106. The microphone placing groove 2011 is accommodated in a containing groove 207 which is arranged on a sound box base 201. The total depth dimension of the microphone placing groove 2011 and the containing groove 207 is greater than or equal to the diameter dimension of the microphone 1, so as to facilitate the placement of the microphone 1 (not completely shown in the figure).

[0149] When the microphone 1 is not needed, the microphone 1 is accommodated in the microphone placing groove 2011, the power supply coil 108 is automatically wirelessly charged and connected with the corresponding power receiving coil 106, and then the battery 110 of the microphone 1 is charged. When the microphone 1 is needed, the microphone 1 can be taken out for use.

[0150] Therefore, the wireless charging type intelligent acoustic system can effectively solve the problem of easily forgetting to charge the microphone.

[0151] Next, various embodiments of the wireless charging type intelligent acoustic system will be described in combination with the accompanying drawings.

[0152] In one embodiment, referring to FIG. 20, in the wireless charging type intelligent acoustic system, the axis of the power receiving coil 106 is parallel to the axis of the microphone 1 and is arranged close to the end face of the microphone 1.

[0153] Correspondingly, the power supply coil 108 is arranged on the side face of the microphone placing groove 2011 and opposite to the end face of the microphone 1.

[0154] Specifically, after the microphone 1 is horizontally placed in the microphone placing groove 2011 of the sound box assembly 201, the power receiving coil 106 at the end face of the microphone 1 and the power supply coil 108 are arranged close to and opposite to each other, at this time, the power supply coil 108 charges the battery 110 through the power receiving coil 106.

[0155] It should be noted that when wireless charging is performed, the axes of the power supply coil 108 and the power receiving coil 106 are coincident, so even if the microphone 1 rotates around its own axis, the wireless charging is not affected.

[0156] In another embodiment, referring to FIG. 21, in this embodiment, the axis of the power receiving coil 106 of the wireless charging type intelligent acoustic system is perpendicular to the axis of the microphone 1. The power supply coil 108 is located below the microphone receiving groove 2011 and is arranged opposite to the power receiving coil 106.

[0157] Specifically, the circumferential surface of the microphone 1 is provided with a button assembly 110, and the axis of the microphone 1 is located between the button assembly 110 and the power receiving coil 106.

[0158] The microphone 1 is provided with a first magnet 107, and the bottom of the microphone receiving groove 2011 is provided with a second magnet 109 which is magnetically attracted to the first magnet 107. The first magnet 107 and the power receiving coil 106 are located on the same side of the axis of the microphone 1, so that when the first magnet 107 and the second magnet 109 are magnetically attracted, the button assembly 110 is arranged upward.

[0159] Specifically, the microphone 1 should be placed in the microphone receiving groove 2011 of the sound box assembly 201 with the button assembly 110 generally upward, when the microphone 1 is close to the microphone receiving groove 2011, under the magnetic action of the first magnet 107 and the second magnet 109, the microphone 1 will rotate appropriately, so that the first magnet 107 and the second magnet 109 are completely aligned, at this time, the power receiving coil 106 and the power supply coil 108 are also in a state of being parallel and close to each other, so as to improve the charging efficiency of the power supply coil 108 charging the battery 110 through the power receiving coil 106.

[0160] Embodiment 8

[0161] Referring to FIGS. 22-26, the present application designs an intelligent acoustic system, which comprises a sound box assembly 2, the sound box assembly 2 comprises a sound box cover plate 202 and a sound box base 201, the sound box cover plate 202 is movably connected to the sound box base 201 to open and close the sound box base 201, and the sound box base 201 is provided with a storage mechanism 100, and the microphone 1 is stored in the storage mechanism 100.

[0162] The intelligent acoustic system further comprises a clamping piece 9, which is arranged between the microphone 1 and the sound box cover plate 202, and is used to buffer the impact of the microphone 1 on the sound box cover plate 202 when the microphone 1 is separated from the storage mechanism 100.

[0163] Specifically, when the microphone 1 is placed in the storage mechanism 100, if the sound box cover plate 202 is closed, and if there is no clamping piece 9, the microphone 1 will touch the sound box cover plate 202 when it is shaken off the storage mechanism 100 due to the sound box base 201 or other reasons, at which time both the sound box cover plate 202 and the microphone 1 will be damaged. By arranging the clamping piece 9 between the microphone 1 and the sound box cover plate 202, the impact of the microphone 1 on the sound box cover plate 202 is prevented.

[0164] In addition, the arrangement of the clamping piece 9 also has the effect of tightly fixing the microphone 1. For example, when the sound box cover plate 202 is closed, the sound box cover plate 202 pushes against the clamping piece 9, and the clamping piece 9 pushes against the microphone 1, thereby fixing the microphone 1. Specifically, the clamping piece 9 is a resilient piece.

[0165] It should be noted that the clamping piece 9 of the present application is sponge or rubber, which is arranged between the microphone 1 and the sound box cover plate 202. When the microphone 1 in the sound box is shaken off the storage mechanism 100, the clamping piece 9 can buffer the impact of the sound box cover plate 202 on the microphone 1, thereby preventing the microphone 1 from being damaged by impact. It should be noted that in actual application, the user can also use other flexible materials as the clamping piece 9, which is not limited by the present application.

[0166] Specifically, as shown in FIG. 23, the storage mechanism 100 includes a containing groove 207, and the clamping piece 9 is limited in the containing groove 207, and the microphone 1 abuts against the groove bottom of the containing groove 207 and the clamping piece 9. The microphone 1 of the present application abuts against the groove bottom of the containing groove 207 and the clamping piece 9, which is a double-abutting mode, so that the microphone 1 is more stable when stored and is not easy to shake or shift. The clamping piece 9 is limited in the containing groove 207, so that no additional space is needed, and the space is greatly reduced. Of course, in order to further enhance the stability of the microphone 1 when stored, a microphone placing groove 2011 can also be designed. The microphone placing groove 2011 is formed by extending the containing groove 207 towards the bottom of the sound box base 201. When the microphone 1 is limited in the microphone placing groove 2011, the microphone placing groove 2011 tightly abuts against the microphone 1, so that the microphone 1 cannot shake in the microphone placing groove 2011, and the limiting effect is good.

[0167] Specifically, the microphone placing groove 2011 and the sound box base 201 can be integrally formed to increase the stability of the structure. Alternatively, the microphone placing groove 2011 and the sound box base 201 can be arranged as two components, which are assembled to place the microphone 1 and the clamping piece 9. The assembly methods include screwing, inserting, bonding, etc.

[0168] As shown in FIGS. 25-26, the depth of the microphone placing groove 2011 is less than the height of the microphone 1, and the microphone 1 partially protrudes from the microphone placing groove 2011. When the microphone 1 needs to be taken out, the user can directly grab the protruding part from the microphone placing groove 2011, and the practicability is greatly enhanced. Of course, in actual application, the depth of the microphone placing groove 2011 can also be equal to the height of the microphone 1, and the microphone 1 is completely limited in the microphone placing groove 2011.

[0169] Alternatively, the depth of the microphone placing groove 2011 can also be greater than the height of the microphone 1, and in this case, a taking part (not shown in the figure) for facilitating the taking of the microphone 1 needs to be arranged on the microphone 1, such as a hand holding groove.

[0170] In the embodiment, the height of the microphone 1 includes a lateral height and a longitudinal height. The lateral height is the height occupied by the microphone 1 in the vertical direction when the microphone 1 is placed laterally, and the microphone 1 in FIG. 2 is in the state of being placed laterally. The longitudinal height is the height occupied by the microphone 1 in the vertical direction when the microphone 1 is placed longitudinally. That is, no matter whether the microphone 1 is placed laterally or longitudinally, the damage prevention can be achieved by arranging the clamping part 9.

[0171] Further, the microphone 1 can also be placed obliquely, as shown in FIG. 26, the microphone 1 is not completely placed vertically, and in this case, the height thereof is the height occupied by the microphone 1 in the vertical direction.

[0172] Of course, the microphone 1 can also be in other placement forms, and the present application does not make specific limitation, as long as the microphone 1 can be placed in the microphone placing groove 2011.

[0173] Specifically, as shown in FIG. 23, in order to enhance the convenience of taking the microphone 1, the storage mechanism 100 of the present application further comprises a hand holding groove 2012, which is connected with the accommodating groove 207 and the microphone placing groove 2011, and the hand holding groove 2012 is equivalent to an empty space, and the user can grab the microphone 1 in the microphone placing groove 2011 through the hand holding groove 2012.

[0174] Further, the hand holding groove 2012 can be arranged at the side of the storage mechanism 100, specifically, at the middle part of the side of the accommodating groove 207 and the microphone placing groove 2011, so that when the user takes the microphone 1, the user can hold the middle part of the microphone 1 to achieve the holding.

[0175] Alternatively, the hand holding groove 2012 can be arranged at the side of the accommodating groove 207 and the microphone placing groove 2011 corresponding to the head or tail of the microphone 1, so as to achieve the taking of the microphone 1 by the user lifting the head or tail of the microphone 1 through the hand holding groove 2012.

[0176] Of course, in actual application, in order to further enhance the convenience of taking the microphone 1, the microphone 1 can also be provided with a hand holding part. When the microphone 1 is limited in the microphone placing groove 2011, the user's hand can grab the hand holding part through the hand holding groove 2012 to take the microphone 1, thereby avoiding the problem that the microphone 1 is damaged due to insecure grabbing.

[0177] In another embodiment, the side of the clamping piece 9 towards the microphone 1 is provided with a limiting part 10. When the clamping piece 9 abuts against the microphone 1, the microphone 1 is embedded in the limiting part 10. Under the limitation of the limiting part 10, the microphone 1 cannot be deviated. In this embodiment, the shape of the limiting part 10 is matched with the shape of the microphone 1. For example, when the microphone 1 is circular, the limiting part 10 is correspondingly a semicircular groove type; when the microphone 1 is square, the limiting part 10 is correspondingly square; and when the microphone 1 is irregular, the limiting part 10 is also correspondingly provided, so that the microphone 1 can cooperate with the limiting part 10 and be limited in the limiting part 10.

[0178] Further, when the limiting part 10 cooperates with the microphone 1, it can also be set to be in interference fit with the microphone 1, that is, the groove of the limiting part 10 is slightly smaller than the microphone 1, so that the microphone 1 is clamped in the limiting part 10. At this time, when the user holds and turns over the clamping piece 9, the microphone 1 turns over with the limiting part 10. At this time, the user can take it out from the clamping piece 9, that is, at this time, the clamping piece 9 has the function of assisting in taking the microphone 1.

[0179] Specifically, as shown in FIG. 22, the sound box further comprises a connecting piece 11 connecting the clamping piece 9 and the storage mechanism 100. The connecting piece 11 of the present application is a connecting rope, the first end of the connecting rope is connected to the storage mechanism 100, and the second end of the connecting rope is connected to the clamping piece 9. The connecting rope connects the clamping piece 9 to the storage mechanism 100, avoiding the problem of losing the clamping piece 9. Of course, in actual application, other structures can also be used to realize the connection between the clamping piece 9 and the storage mechanism 100, which is not limited in the present application.

[0180] Specifically, in order to provide a better interactive experience, the sound box of the present application further comprises a screen piece 2 provided on the inner wall of the sound box cover plate 202. When the sound box is closed, the screen piece 2 is protected by the sound box cover plate 202, reducing the damage caused by direct impact or friction from the outside to the screen piece 2, thereby prolonging the service life of the screen piece 2. The sound box cover plate 202 is rotationally connected to the sound box base 201. When it is necessary to watch the screen piece 2 or it is not necessary to watch the screen piece 2, it is only necessary to rotate the sound box cover plate 202.

[0181] Specifically, the accommodation mechanism 100 is provided with a power supply contact 6, the microphone 1 is provided with a charging sheet 8, and when the microphone 1 is accommodated in the accommodation mechanism 100, the power supply contact 6 is electrically connected to the charging sheet 8. The user does not need to additionally find a charging line or a charging seat, and only needs to accommodate the microphone 1 into the accommodation mechanism 100 to realize automatic charging, and the applicability is high.

[0182] In the embodiment, the sound box assembly 2 further comprises a loudspeaker assembly 205 and a key assembly 206 installed at a side of the sound box base 201, and further, the specific structures of the loudspeaker assembly 205 and the key assembly 206 are not the focus of the embodiment, and thus are not described herein.

[0183] Embodiment 9

[0184] The application provides a kind of intelligent acoustic system, it is applicable to carry out outdoor K song and other application scenarios, it can effectively solve the problem that microphone is not convenient to carry due to the microphone cannot be accommodated and fixed in existing sound box.

[0185] Referring to Figure 27, the acoustic system provided by the embodiment comprises a microphone 1 and a sound box assembly 2. The sound box assembly 2 comprises a sound box base 201 and a microphone clamping assembly 2015. The sound box base 201 is provided with a containing groove 207 for placing the microphone 1; the microphone clamping assembly 2015 is installed and fixed in the containing groove 207 and is provided with a microphone placing groove 2011 for clamping and fixing the microphone 1.

[0186] The acoustic system provided by the embodiment is that the microphone clamping assembly 2015 is placed in the containing groove 207 of the sound box base 201, and then the microphone 1 is placed in the microphone placing groove 2011 of the microphone clamping assembly 2015, which not only can realize the accommodation and fixing of the microphone 1, but also is convenient to take. Therefore, the sound box assembly 2 and the acoustic system provided by the application can effectively solve the problem that the microphone 1 is not convenient to carry due to the microphone 1 cannot be accommodated and fixed in the existing sound box.

[0187] Referring to Figure 28, alternatively, the microphone clamping assembly 2015 comprises two opposite longitudinal clamping plates 2016, the longitudinal clamping plates 2016 are fixed in the containing groove 207, and the two longitudinal clamping plates 2016 are spaced apart to form the microphone placing groove 2011.

[0188] In the embodiment, one end of the longitudinal clamping plate 2016 close to the groove bottom of the containing groove 207 is directly fixed at the groove bottom of the containing groove 207. In some other embodiments, the two longitudinal clamping plates 2016 close to the groove bottom of the containing groove 207 can be connected by a transverse connecting plate, that is, the transverse connecting plate and the two longitudinal clamping plates 2016 form a U-shaped groove with an opening upward, and the U-shaped groove is the microphone placing groove 2011. The transverse connecting plate is installed and fixed at the groove bottom of the containing groove 207, and the installation and fixation of the microphone clamping assembly 2015 can also be realized.

[0189] Further, each longitudinal clamping plate 2016 is connected with an inclined guide portion 2017 at an end away from the groove bottom of the accommodating groove 207, and the distance between the two inclined guide portions 2017 gradually decreases towards the groove bottom of the accommodating groove 207, so as to form an inverted octagonal trumpet structure tapering towards the groove bottom of the accommodating groove 207, facilitating the microphone 1 to be placed into the microphone placing groove 2011, and through the inverted octagonal trumpet structure as shown in FIG. 28, the microphone 1 is not easy to scratch the longitudinal clamping plate 2016 when placed.

[0190] In the embodiment, the groove bottom of the accommodating groove 207 is provided with a charging probe 208 for charging the microphone 1 at a position between the two longitudinal clamping plates 2016. Correspondingly, the side surface of the microphone 1 is provided with a charging contact or a charging ring corresponding to the charging probe 208.

[0191] After the microphone 1 is placed into the microphone placing groove 2011, the charging probe 208 can contact the charging contact or the charging ring, and then charge the microphone 1. Since the microphone 1 can be clamped and fixed by the microphone clamping assembly 2015, the stability of the microphone 1 during charging is ensured, and the microphone 1 will not shake and disconnect from the charging probe 208.

[0192] In another embodiment, the charging probe 208 can also be arranged at the groove side of the accommodating groove 207, and the bottom of the microphone 1 is correspondingly provided with a charging contact or a charging ring corresponding to the charging probe 208, and the clamping force of the microphone clamping assembly 2015 can realize the clamping and charging of the microphone 1.

[0193] In another embodiment, the sound box base 201 is provided with a charging wire 7 for wired charging of the microphone 1.

[0194] It should be noted that the charging probe 208 and the charging wire 7 provide two charging modes, and the user can choose one to use. Specifically, when designing the product, the microphone 1 can be provided only with the charging contact or the charging ring corresponding to the charging probe 208, or can be provided only with the charging port corresponding to the charging wire 7, or both, to provide more choices for the user.

[0195] Referring to FIG. 29, specifically, the charging wire 7 is of a telescopic structure, including a cable body 701, a charging plug 702 connected to one end of the cable body 701, and a winder 703 connected to the other end of the cable body 701 and used for winding or releasing the cable body 701, wherein the winder 703 is fixedly installed on the sound box base 201. In some other embodiments, the charging wire 7 can also be of a non-extendable structure, and the present application does not limit this.

[0196] Optionally, the sound box base 201 comprises a box shell 210 provided with a containing cavity 1011 and a box cover plate 211 for covering the containing cavity 1011; wherein the box cover plate 211 is recessed towards the containing cavity 1011 to form a containing groove 207, and the edge position of the box cover plate 211 is provided with a wire passing hole 1013 which communicates the containing groove 207 to the containing cavity 1011. The winder 703 is fixedly arranged in the containing cavity 1011, the charging plug 702 is located in the containing groove 207, and the cable body 701 passes through the wire passing hole 1013.

[0197] In the embodiment, the size of the wire passing hole 1013 is greater than the size of the cable body 701 and less than the size of the charging plug 702, so that the cable body 701 can be stretched and retracted through the wire passing hole 1013, and the charging plug 702 cannot pass through the wire passing hole 1013 to prevent the charging plug 702 from being retracted into the containing cavity 1011. Generally, the winder 703 tightens the cable body 701, and the charging plug 702 is pulled to the position close to the wire passing hole 1013. When wired charging is needed, the cable body 701 is pulled out, and then the charging plug 702 is inserted into the charging port at the bottom of the microphone 1.

[0198] In addition, the charging plug 702 has various forms, including but not limited to micro USB, Type-C, Lighting interface, etc., and the charging port of the microphone 1 is correspondingly provided. The charging plug 702 can also be used to charge the user's mobile phone, which is convenient for the user.

[0199] Optionally, the bottom of the box cover plate 211 is fixedly provided with an inner magnet member for magnetically attracting and fixing the microphone 1. Correspondingly, the microphone 1 is provided with an outer magnet member for magnetically attracting the inner magnet member. Further, the inner magnet member and the outer magnet member can both be magnets, such as the first magnet 107 and the second magnet 109, or one can be a magnet and the other can be an iron block, which is not limited in the application.

[0200] After the microphone 1 is placed in the microphone slot 2011, the magnetic attraction between the inner magnet member and the outer magnet member can further enhance the positioning effect. That is, the microphone clamping assembly 2015 provides primary fixation to the microphone 1, and the magnetic attraction between the inner magnet member and the outer magnet member provides secondary fixation to the microphone 1. Therefore, the microphone 1 provided in the embodiment has better storage and positioning effect.

[0201] In the embodiment, the containing groove 207 is located at the top surface position of the sound box base 201, and the top surface of the sound box base 201 is further rotationally connected with a rotating screen 203 for opening or covering the containing groove 207.

[0202] In some other embodiments, the rotating screen 203 is still rotatably arranged on the top surface of the sound box base 201, and the accommodating groove 207 can be arranged on the left side surface, the left side surface or the back surface of the sound box base 201. At this time, the microphone 1 can be taken out or placed without rotating to open the rotating screen 203.

[0203] In the embodiment, the sound box assembly 2 further comprises a loudspeaker assembly 205 and a button assembly 206 arranged on the side surface of the sound box base 201, and the specific structure of the loudspeaker assembly 205 and the button assembly 206 is not the focus of the embodiment, so it is not described here.

[0204] In summary, the sound box assembly 2 and the acoustic system provided by the embodiment have the following advantages: ①The carding assembly 2015 is arranged in the accommodating groove 207 of the sound box base 201 to form the microphone storage groove 2011 for storing and fixing the microphone 1, so that the storage and fixing of the microphone 1 can be realized, and the microphone 1 can be conveniently taken out or placed; ②The charging probe 208 and the charging wire 7 are used for charging, and the charging mode can be selected; further, the charging wire 7 has a telescopic structure and is convenient to store; ③The microphone 1 is positioned by clamping and magnetic attraction, and the positioning reliability is high.

[0205] Embodiment 10

[0206] The present application provides a kind of intelligent acoustic system, it is applicable to outdoor K song etc.

[0207] Referring to FIG. 30, the acoustic system provided by the embodiment includes a sound box assembly 2 and a microphone 1 stored in the sound box assembly 2. The sound box assembly 2 includes a microphone storage groove 2011 for placing the microphone 1 and a charging probe 208 extending into the microphone storage groove 2011 to charge the microphone 1. Further, the charging probe 208 is located at the side wall of the microphone storage groove 2011 and protrudes above the groove bottom of the microphone storage groove 2011. Correspondingly, the surface of the microphone 1 corresponds to the position of the charging probe 208 and is provided with a conductive tab 112 for electrical connection with the charging probe 208.

[0208] It should be understood that "extending into" in the present application not only includes the case that the charging probe 208 protrudes into the space of the microphone storage groove 2011 as shown in FIG. 30, but also includes the case that the charging probe 208 is embedded in the side wall of the microphone storage groove 2011, and the case that the charging probe 208 is attached to the surface of the side wall of the microphone storage groove 2011.

[0209] When the charging probe 208 is embedded in the sidewall of the microphone placing groove 2011, the conductive contact piece 112 partially protrudes to contact and charge with the charging probe 208 in the sidewall. When the charging probe 208 is attached to the surface of the sidewall of the microphone placing groove 2011, the conductive contact piece 112 just contacts and charges with the charging probe 208.

[0210] In another aspect, the charging probe 208 can not only be needle-shaped, but also can be in other forms, such as a charging sheet, a charging contact, etc., as long as charging can be achieved.

[0211] The acoustic system provided in the embodiment sets the charging probe 208 at the sidewall of the microphone placing groove 2011, and correspondingly sets the conductive contact piece 112 at the position opposite to the charging probe 208 of the microphone 1. The charging probe 208 is higher than the groove bottom of the microphone placing groove 2011. Even if a small amount of dust or sewage enters the microphone placing groove 2011, the charging probe 208 will not be covered or submerged.

[0212] Therefore, the loudspeaker assembly 2, the microphone 1 and the acoustic system provided in the embodiment can effectively solve the problem that the charging probe 208 is set at the groove bottom of the microphone placing groove 2011 in the prior art, which easily causes poor contact during charging or damage to the charging probe 208.

[0213] In the embodiment, the position opposite to the charging probe 208 in the microphone placing groove 2011 is provided with an elastic abutting member 113 for pushing the microphone 1 towards the charging probe 208. For example, the elastic abutting member 113 can be an elastic rubber particle or a compression spring.

[0214] After the microphone 1 is placed in the microphone placing groove 2011, the elastic abutting member 113 pushes the microphone 1 towards the charging probe 208, so that the charging probe 208 presses the conductive contact piece 112, thereby ensuring reliable electrical connection between the charging probe 208 and the conductive contact piece 112 and avoiding poor contact during charging caused by shaking.

[0215] In the embodiment, the sidewall of the microphone placing groove 2011 includes a first vertical surface 1014 arranged vertically, a second vertical surface 1015 arranged parallel to the first vertical surface 1014, and a connecting wall surface 1016 connecting the first vertical surface 1014 and the second vertical surface 1015. Further, the connecting wall surface 1016 is a U-shaped surface, which includes a first longitudinal surface 1017, a second longitudinal surface 1018 arranged opposite to the first longitudinal surface 1017, and a transverse connecting surface 1019 connecting the first longitudinal surface 1017 and the second longitudinal surface 1018.

[0216] In the embodiment, the charging probe 208 is located at the first vertical surface 1014, the elastic abutting member 113 is located at the second vertical surface 1015, and the conductive contact patch 112 is arranged at the bottom surface of the microphone 1. After the microphone 1 is horizontally placed into the microphone placing groove 2011, the conductive contact patch 112 at the bottom surface of the microphone 1 can be just opposite to and abut against the charging probe 208.

[0217] In some other embodiments, the charging probe 208 can also be arranged at the first longitudinal surface 1017, the elastic abutting member 113 can be arranged at the second longitudinal surface 1018, and the conductive contact patch 112 can be located at the circumferential surface of the microphone 1.

[0218] Optionally, the sound box assembly 2 is further provided with a limiting assembly 114 for limiting the microphone 1 from being separated from the microphone placing groove 2011. Specifically, the limiting assembly 114 includes two buckle members 115 symmetrically arranged with respect to the microphone placing groove 2011. The two buckle members 115 each have a certain elastic deformation performance, and the distance between the two buckle members 115 gradually decreases in a direction away from the microphone placing groove 2011, so as to prevent the microphone 1 from being separated from the microphone placing groove 2011.

[0219] In the embodiment, the sound box assembly 2 is provided with a containing groove 201, the microphone placing groove 2011 is located at the groove bottom of the containing groove 201, one end of the buckle member 115 extends above the microphone placing groove 2011 to clamp the microphone 1, and the other end can be fixed at any position of the groove wall or groove bottom of the containing groove 201, which is not limited in the present application.

[0220] In addition, the buckle member 115 also has the function of clamping the microphone 1 in the microphone placing groove 2011. When the clamping force applied by the buckle member 115 to the microphone 1 is tight enough, the microphone 1 can be tightly contacted with the charging probe 208 through the clamping force to achieve clamping charging.

[0221] In summary, the sound box assembly 2, the microphone 1 and the acoustic system provided by the embodiment have the following advantages: ① The charging probe 208 is arranged at the side wall of the microphone placing groove 2011, so that the charging probe 208 is higher than the groove bottom of the microphone placing groove 2011. Even if a small amount of dust or sewage enters the microphone placing groove 2011, the charging probe 208 will not be covered or submerged, thereby avoiding the occurrence of poor contact or damage to the charging probe 208 caused by foreign matter shielding; ② The charging probe 208 is higher than the groove bottom of the microphone placing groove 2011. Even if a small amount of sewage enters the microphone placing groove 2011, the charging probe 208 will not be contacted, and the sewage cannot enter the inside of the sound box assembly 2 through the mounting aperture of the charging probe 208, thereby improving the waterproof performance to a certain extent; ③ The limiting assembly 114 is arranged to limit the microphone 1, thereby avoiding the microphone 1 from being separated from the microphone placing groove 2011.

[0222] Embodiment 11

[0223] Referring to FIGS. 31-32, the embodiment of the present application provides a smart acoustic system comprising a microphone pulling and clamping structure, which includes a microphone 1 and a sound box assembly 2. The sound box assembly 2 includes a sound box base 201 provided with a microphone placing groove 2011 for placing the microphone 1. The microphone 1 is placed in the microphone placing groove 2011, and the sound box assembly 2 is provided with a mounting position 212. The clamping piece 30 is mounted on the mounting position 212. Specifically, the mounting position 212 of the embodiment matches the number of the clamping piece 30, and the clamping piece 30 is rotatably mounted on the mounting position 212. The user rotates the clamping piece 30 to move the clamping piece 30 to the outer end surface of the microphone 1, thereby clamping the microphone 1.

[0224] In the embodiment, the clamping piece 30 is arranged. The user rotates the clamping piece 30 to move the clamping piece 30 to abut against the outer end surface of the microphone 1, thereby clamping the microphone 1 in the microphone placing groove 2011. The movement and shaking of the microphone 1 in the microphone placing groove 2011 are greatly limited, so that the microphone 1 is not prone to falling off. The assembly and parts of the clamping piece 30 are relatively simple, thereby reducing the part cost and assembly and production cost.

[0225] The mounting position 212 and the clamping piece 30 in the embodiment are not limited to one, and can be multiple. The embodiment only takes one mounting position 212 matched with one clamping piece 30 as an example. For multiple mounting positions 212 and multiple clamping pieces 30, it is obvious that one-to-one corresponding mounting positions 212 and clamping pieces 30 need to be arranged on the speaker assembly 2. For multiple mounting positions 212 and multiple clamping pieces 30, multi-point clamping of the microphone 1 can be ensured, thereby improving the stability of the microphone 1, and avoiding the microphone 1 from falling off the microphone slot 2011. The mounting position 212 in the embodiment is arranged at any position on the speaker assembly 2, as long as the microphone 1 can be fixed.

[0226] It should be noted that the microphone 1 and the microphone slot 2011 in the embodiment are two, and the microphone 1 can also be one, three or more. The embodiment only takes two microphones 1 matched with the speaker assembly 2 as an example. For one, three or more microphones 1 and microphone slots 2011 matched with the speaker assembly 2, it is obvious that one-to-one corresponding microphone slots 2011 need to be arranged on the speaker assembly 2. The microphone 1 in the embodiment is horizontally placed in the microphone slot 2011. Of course, in other embodiments of the application, the microphone 1 can also be vertically placed in the microphone slot 2011, and the embodiment is not limited in particular.

[0227] Please refer to FIG. 34, FIG. 36 and FIG. 37. In the example, the clamping piece 30 is provided with a first pulling part 31, and the clamping piece 30 is moved to abut against the outer end surface of the microphone 1 by pulling the first pulling part 31. By providing the clamping piece 30 with the first pulling part 31, the clamping piece 30 is moved to the outer end surface of the microphone 1 by pulling the first pulling part 31, thereby achieving clamping of the microphone 1 in the microphone slot 2011.

[0228] Further, the card fastener 30 is further provided with a second knob 32, which is arranged on the opposite side of the first knob 31. The second knob 32 is used to move the card fastener 30 to abut against the outer end surface of the microphone 1. The second knob 32 is arranged on the opposite side of the first knob 31, so that the user can easily rotate the card fastener 30 by the second knob 32. The user can rotate the first knob 31 or the second knob 32 to move the card fastener 30 to abut against the outer end surface of the microphone 1, so as to fasten the microphone 1 in the microphone slot 2011. The problem of high production cost and research and development cost caused by the magnetic attraction structure arranged on the microphone 1 and the sound box assembly 2 in the prior art is solved.

[0229] Specifically, the card fastener 30 is a fastening strip, and the first knob 31 and the second knob 32 are integrally formed with the card fastener 30. In this way, the mounting process of the first knob 31 and the second knob 32 on the card fastener 30 is reduced, so as to improve the production efficiency.

[0230] Of course, in other embodiments of the present application, the first knob 31 and the second knob 32 can also be fixedly connected with the card fastener 30, for example, by welding, riveting or the like. In this way, the connection strength of the first knob 31, the second knob 32 and the card fastener 30 is ensured.

[0231] Please refer to FIGS. 31-34. In an example of the present application, the bottom surface of the card fastener 30 is provided with a connecting portion 33, the mounting site 212 is provided with a mounting hole 213 for inserting the connecting portion 33, and the connecting portion 33 is inserted into the mounting hole 213. The connecting portion 33 is provided with a connecting hole 330, and the sound box assembly 2 is provided with a connecting member 405 for inserting into the connecting hole 330. The connecting portion 33 is inserted into the mounting hole 213 and connected with the connecting member 405. When the card fastener 30 is installed, the connecting portion 33 is first inserted into the mounting hole 213, and then the connecting member 405 is inserted into the mounting hole 213 and connected with the connecting portion 33, so as to install the card fastener 30 on the sound box assembly 2. The connecting portion 33 and the connecting member 405 can be connected by screwing, bonding, interference fit or the like, which is not limited in the present embodiment. When the microphone 1 needs to be fastened, the user rotates the first knob 31 or the second knob 32 to move the card fastener 30 to abut against the outer end surface of the microphone 1, so as to fasten the microphone 1 in the microphone slot 2011.

[0232] Further, the bottom surface of the connecting member 405 is provided with a limiting piece 406, an elastic piece 407 is installed above the limiting piece 406, and the elastic piece 407 is sleeved on the outer surface of the connecting part 33. Specifically, the elastic piece 407 of the embodiment is a spring. By providing the elastic piece 407, the clamping piece 30 can not only rotate laterally within the elastic range of the elastic piece 407, but also has a space for up and down movement, so that when the clamping piece 30 is rotated to clamp the microphone 1, the user can first move the clamping piece 30 upward, then move the first dialing part 31 or the second dialing part 32, so that the clamping piece 30 moves to the outer end surface of the microphone 1, and then releases the clamping piece 30, so that the clamping piece 30 presses the microphone 1 on the upper side, thereby realizing stable clamping of the microphone 1, and the elastic piece 407 can reduce the risk of friction damage of the microphone 1 during clamping.

[0233] Please refer to FIG. 31, FIG. 32, FIG. 35, and FIG. 36. Of course, in other embodiments of the present application, a connecting hole 330 is formed in the connecting part 33, and a connecting member 405 for inserting into the connecting hole 330 is arranged in the speaker box assembly 2. The connecting hole 330 is provided with internal threads, and the outer surface of the connecting member 405 is provided with external threads for screwing with the internal threads. When installing the clamping piece 30, first insert the connecting part 33 into the mounting hole 213, and then screw the external threads of the connecting member 405 with the internal threads of the connecting part 33, thereby realizing installation of the clamping piece 30 on the speaker box assembly 2.

[0234] Further, the bottom surface of the connecting member 405 is provided with a limiting piece 406, an elastic piece 407 is installed above the limiting piece 406, and the elastic piece 407 is sleeved on the outer surface of the connecting part 33. Specifically, the elastic piece 407 of the embodiment is a spring. By providing the elastic piece 407, the clamping piece 30 can not only rotate laterally within the elastic range of the elastic piece 407, but also has a space for up and down movement, so that when the clamping piece 30 is rotated to clamp the microphone 1, the user can first move the clamping piece 30 upward, then move the first dialing part 31 or the second dialing part 32, so that the clamping piece 30 moves to the outer end surface of the microphone 1, and then releases the clamping piece 30, so that the clamping piece 30 presses the microphone 1 on the upper side, thereby realizing stable clamping of the microphone 1, and the elastic piece 407 can reduce the risk of friction damage of the microphone 1 during clamping.

[0235] It should be noted that the connecting part 33 and the connecting member 405 of the embodiment are flexible pieces. When the clamping piece 30 moves to abut against the outer end surface of the microphone 1, the connecting part 33 and the connecting member 405 can be deformed, so that the clamping piece 30 can move laterally to the outer end surface of the microphone 1.

[0236] Please refer to Figure 31-32, in this embodiment, the put slot 2011 is provided with a buckle slot 2012, the buckle slot 2012 is installed on the card fastener 30. Specifically, the buckle slot 2012 of this embodiment is both a buckle slot 2012 and a mounting position 212, so that there is no need to separately open the buckle slot 2012 or the mounting position 212, thereby reducing the cost of production; and the buckle slot 2012 has the dual function of taking the microphone 1 and installing the card fastener 30. When the microphone 1 is placed in the put slot 2011, the top of the microphone 1 is higher than the bottom of the buckle slot 2012, so that the user can take the microphone 1 out of the put slot 2011 through the buckle slot 2012; and the buckle slot 2012 is provided with the card fastener 30, the user rotates the card fastener 30 by pulling, so as to move the card fastener 30 to the outer end surface of the microphone 1, thereby realizing the clamping of the microphone 1.

[0237] Further, please refer to Figure 38, the sound box assembly 2 is provided with a magnetic clamping position 116, the middle part of the magnetic clamping position 116 is provided with a first magnet 107, the magnetic pole of the first magnet 107 faces the middle part of the groove bottom of the put slot 2011; the microphone 1 is provided with a second magnet 109, the polarity of the first magnet 107 and the second magnet 109 is matched to clamp the microphone 1 in the put slot 2011 through the first magnet 107 and the second magnet 109. In this embodiment, the magnetic pole of the first magnet 107 faces the middle part of the groove bottom of the put slot 2011, because the polarity of the magnetic pole is the strongest, when the microphone 1 is put into the put slot 2011, the microphone 1 will automatically return to the position corresponding to the first magnet 107 and the second magnet 109 under the action of magnetic force, realizing self-adaptive placement and alignment, thereby realizing more efficient and more secure clamping.

[0238] Further, the shape of the first magnet 107 is circular or square, thereby realizing the magnetic pole upward.

[0239] In this embodiment, the sound box assembly 2 further comprises a loudspeaker assembly 205 and a key assembly 206 installed at the side position of the sound box base 201, and further, the specific structure of the loudspeaker assembly 205 and the key assembly 206 is not the focus of this embodiment, so it is not described here.

[0240] In summary, the microphone dialing clamping structure and the sound box provided by the embodiment of the present application, by setting the clamping piece 30, the user realizes the movement of the clamping piece 30 to abut the outer end face of the microphone 1 by dialing the clamping piece 30, thereby realizing the clamping of the microphone 1 in the microphone slot 2011, and greatly limiting the movement and shaking of the microphone 1 in the microphone slot 2011, so that the microphone 1 is not prone to falling off, and the assembly and parts of the clamping piece 30 are relatively simple, thereby reducing the part cost and assembly and production cost.

[0241] Embodiment 12

[0242] The acoustic system of the embodiment comprises a microphone 1, a sound box assembly 2 and a storage limiting mechanism, the microphone 1 is stored in the storage limiting mechanism, and the sound box assembly 2 is provided with a containing space, and the storage limiting mechanism is stored in the containing space.

[0243] Specifically, the acoustic system further comprises a handle (not shown in the figure), and the handle is connected to the storage limiting mechanism, facilitating the opening of the storage limiting mechanism, and the storage limiting mechanism can be completely limited in the containing space.

[0244] It should be noted that the size of the containing space of the present application matches the size of the storage limiting mechanism, and the storage limiting mechanism can be completely stored in the containing space, greatly reducing the occupied space.

[0245] Specifically, the storage limiting mechanism is provided with a magic tape male face 409 and a power supply contact 6, and the microphone 1 is provided with a magic tape female face 408 and a charging metal ring 103, when the charging metal ring 103 of the microphone 1 is electrically connected to the power supply contact 6, the magic tape female face 408 is bonded to the magic tape male face 409, and when the acoustic system is slightly impacted, the microphone 1 will not shake, ensuring stable charging, and the handle facilitates people to pull the storage limiting mechanism, and the acoustic system has high practicability.

[0246] The storage limiting mechanism will be described in detail below.

[0247] Please refer to FIG. 39, the storage limiting mechanism of the present application is used for storing and limiting the microphone 1, which comprises a storage mechanism 100, the storage mechanism 100 is provided with a magic tape male face 409, the microphone 1 is connected with a magic tape female face 408, and when the microphone 1 is stored in the storage mechanism 100, the magic tape male face 409 is bonded to the magic tape female face 408.

[0248] Specifically, the storage mechanism 100 is further provided with a power supply contact 6, and the outer side wall of the microphone 1 is provided with a charging metal ring 103, and when the microphone 1 is limited in the storage mechanism 100, the power supply contact 6 is electrically connected to the charging metal ring 103.

[0249] When the charging metal ring 103 of the microphone 1 of the present application is connected to the power supply contact 6, the magic tape female surface 408 corresponds to the magic tape male surface 409, and the magic tape male surface 409 and the magic tape female surface 408 are adhered to each other, so that the microphone 1 is limited in the storage mechanism 100, and the microphone 1 is not easy to shake in the storage mechanism 100, thereby ensuring stable charging.

[0250] Specifically, in order to prevent the user from being pricked when holding the microphone 1, the magic tape male surface 409 is a hook surface, and the magic tape female surface 408 is a velvet surface.

[0251] In another embodiment, the velvet magic tape female surface 408 can be arranged at the middle part of the microphone 1, so as to provide a soft feeling to the user and improve the comfort during holding the microphone. In addition, generally, holding the middle part of the microphone is a more stable holding method, so that the user can hold the middle part by feeling without looking, thereby realizing stable holding by feeling. Moreover, if the shell of the microphone 1 is metal, the user will not have an ice hand when using in cold weather due to the arrangement of the velvet magic tape female surface 408, thereby greatly improving the use experience.

[0252] Of course, the velvet magic tape female surface 408 can also be arranged at the bottom part of the microphone 1 to meet the use habit of some users who like to hold the bottom part of the microphone 1. It should be noted that in order to further enhance the limitation of the storage mechanism 100 to the microphone 1, the present application provides the following two embodiments.

[0253] In one embodiment:

[0254] Referring to FIGS. 40 and 41, the storage mechanism 100 is provided with a microphone placing groove 2011, the size of the microphone placing groove 2011 is matched with the size of the microphone 1, the groove bottom of the microphone placing groove 2011 is connected to the magic tape male surface 409, and when the microphone 1 is stored in the microphone placing groove 2011, the magic tape male surface 409 adheres to the magic tape female surface 408.

[0255] The size of the microphone placing groove 2011 of the present embodiment is matched with the size of the microphone 1, the size of the magic tape male surface 409 is consistent with the size of the magic tape female surface 408, when the microphone 1 is placed in the microphone placing groove 2011, the magic tape female surface 408 completely corresponds to the magic tape male surface 409, and the microphone 1 can be firmly limited in the microphone placing groove 2011, at this time, the microphone 1 is not easy to shake in the storage mechanism 100, thereby ensuring stable charging.

[0256] In another embodiment:

[0257] Please refer to Figs. 42-44, the storage mechanism 100 is provided with a limiting band 12, the limiting band 12 is connected with a Velcro male face 409, when the limiting band 12 binds the microphone 1 and the storage mechanism 100, the Velcro male face 409 is bonded with a Velcro female face 408 of the microphone 1. Specifically, the storage mechanism 100 further comprises a clamping portion 16, the clamping portion 16 is provided with an opening 13, the microphone 1 is embedded into the clamping portion 16 through the opening 13, and the clamping portion 16 is tightly attached to the microphone 1.

[0258] The clamping portion 16 of the embodiment clamps the microphone 1 to achieve the first limitation of the microphone 1, the limiting band 12 binds the microphone 1 and the storage mechanism 100 to achieve the second limitation of the microphone 1, and the Velcro male face 409 of the limiting band 12 is bonded with the Velcro female face 408 of the microphone 1 to achieve the third limitation of the microphone 1. Under the three limitations, the microphone 1 is not easy to shake in the storage mechanism 100, and the charging is stable.

[0259] Specifically, the clamping portion 16 is further provided with an avoiding opening 14, the clamping portion 16 is a resilient member, the microphone 1 is provided with a button 15, and the button 15 corresponds to the avoiding opening 14 when the limiting band 12 binds the microphone 1 and the storage mechanism 100.

[0260] It should be noted that the microphone 1 is placed in the clamping portion 16 in the embodiment, the button 15 corresponds to the avoiding opening 14, the charging metal ring 103 of the microphone 1 can be connected to the power supply contact 6, the Velcro male face 409 can be completely bonded with the Velcro female face 408 when the limiting band 12 binds the microphone 1 and the storage mechanism 100, the microphone 1 is not easy to shake in the storage mechanism 100, the charging is stable, the button 15 corresponds to the avoiding opening 14, and the problem of mistaken touch of the button 15 is avoided.

[0261] Specifically, the storage mechanism 100 is further provided with a first adhesive member, and an end of the limiting band 12 is provided with a second adhesive member, the first adhesive member is bonded with the second adhesive member when the limiting band 12 binds the microphone 1 and the storage mechanism 100.

[0262] One of the first adhesive member and the second adhesive member in the embodiment is a Velcro hook face, and the other is a Velcro loop face, the limiting band 12 is an elastic band, the middle part of the limiting band 12 is provided with a hook face, and the microphone 1 is provided with a loop face. After the middle part of the limiting band 12 is bonded with the microphone 1, the two ends of the limiting band 12 are pulled to keep a tight state and are bonded with the storage mechanism 100 at the ends, and the microphone 1 can be limited on the storage mechanism 100, is not easy to shake and the charging is stable.

[0263] Embodiment 13

[0264] Please refer to figures 45, 47 and 49, the embodiment discloses a kind of intelligent acoustic systems, including sound box assembly 2, sound box assembly 2 includes sound box base 201, sound box base 201 is equipped with for receiving microphone 1 containing groove 207, it further includes clamping assembly 17 and touch mechanism 18, clamping assembly 17 is connected with touch mechanism 18 transmission, so that when triggering touch mechanism 18, touch mechanism 18 drives clamping assembly 17 to move towards the direction close to microphone 1, until clamping assembly 17 clamps microphone 1.

[0265] It needs to be explained that the clamping assembly 17 of the application and the touch mechanism 18 can be in contact with each other or not in contact with each other in the non-triggering state, but after the touch mechanism 18 is in the triggering state, the clamping assembly 17 and the touch mechanism 18 have a transmission relationship, the touch mechanism 18 drives the clamping assembly 17 to move, and when the touch mechanism 18 drives the clamping assembly 17 to abut against the microphone 1, the microphone 1 is firmly limited in the containing groove 207, avoiding damage caused by the shaking of the microphone 1 in the containing groove 207.

[0266] Specifically, the intelligent acoustic system further includes a sound box cover plate 202, the sound box cover plate 202 is movably connected to the sound box base 201, and the triggering end of the touch mechanism 18 faces the sound box cover plate 202; when the sound box cover plate 202 moves to the triggering end, the touch mechanism 18 drives the clamping assembly 17 to move towards the direction close to the microphone 1, so that the clamping assembly 17 abuts against the microphone 1.

[0267] In the embodiment, the touch mechanism 18 can be an induction type switch, such as a distance measuring sensor. When the sound box cover plate 202 is close to the touch mechanism 18, the touch mechanism 18 detects that the distance reaches the pre-stored triggering distance, and at this time, the triggering end of the touch mechanism 18 is set to be triggered.

[0268] The touch mechanism 18 can also be an infrared sensor, a millimeter wave radar sensor, or other induction type sensors. The specific control part is set by a person skilled in the art according to actual needs, and the application does not make specific elaboration and limitation.

[0269] As shown in figures 45, 48 and 49, when the sound box cover plate 202 closes the sound box base 201, the sound box cover plate 202 abuts against the touch mechanism 18, the touch mechanism 18 is in the triggering state, the touch mechanism 18 drives the clamping assembly 17 to move towards the direction close to the microphone 1, so that the clamping assembly 17 abuts against the microphone 1, preventing the microphone 1 from falling off or being damaged due to shaking or vibration when moving or carrying the sound box, when the sound box cover plate 202 is opened, the sound box cover plate 202 cancels the abutment against the touch mechanism 18, the touch mechanism 18 is in the non-triggering state, the clamping assembly 17 moves away from the microphone 1, the clamping assembly 17 cancels the abutment against the microphone 1, and the user can directly take the microphone 1 in the containing groove 207.

[0270] Preferably, in order to facilitate the abutment of the sound box cover plate 202 to the triggering mechanism 18, the present application is connected with a protrusion 19 on the inner wall of the sound box cover plate 202. When the sound box cover plate 202 is flipped, the protrusion 19 abuts the trigger end. The triggering mechanism 18 is in the triggered state, and the triggering mechanism 18 drives the clamping assembly 17 to move towards the microphone 1, so that the clamping assembly 17 presses the microphone 1, preventing the microphone 1 from falling off or being damaged due to shaking or vibration when the sound box is moved or transported.

[0271] Specifically, as shown in FIGS. 45, 46 and 48, the accommodating groove 207 is provided with an avoidance slot 20 and a microphone placing groove 2011, the avoidance slot 20 and the microphone placing groove 2011 are communicated, the clamping assembly 17 includes a fixed part 23, the triggering mechanism 18 drives the fixed part 23 to pass through the avoidance slot 20 and press the microphone 1 placed in the microphone placing groove 2011.

[0272] Specifically, the clamping assembly 17 is movably arranged at the bottom of the accommodating groove 207, and the clamping assembly 17 further includes a push rod 22 connected with the fixed part 23 and abutting the triggering mechanism 18. When the triggering mechanism 18 is triggered, the fixed part 23 rotates towards the avoidance slot 20.

[0273] Specifically, the triggering mechanism 18 is provided with an inclined surface 21, and the clamping assembly 17 abuts the inclined surface 21.

[0274] As shown in FIGS. 45, 47 and 49, the sound box cover plate 202 of the present application abuts the triggering mechanism 18, and the triggering mechanism 18 moves downward. The inclined surface 21 pushes the push rod 22 away from one end of the fixed part 23 to rotate away from the microphone placing groove 2011, and the fixed part 23 moves towards the microphone placing groove 2011. The fixed part 23 passes through the avoidance slot 20 and presses the microphone 1 placed in the microphone placing groove 2011. The clamping assembly 17 can press the microphone 1. Of course, it needs to be explained that in actual application, a telescopic rod can also be arranged to drive the push rod 22 to move, so that the fixed part 23 connected with the push rod 22 passes through the avoidance slot 20 to press the microphone 1. The present application does not limit this.

[0275] Specifically, as shown in FIG. 45, the intelligent acoustic system further includes a connecting part 26 installed at the bottom of the accommodating groove 207, and the push rod 22 is rotatably connected with the connecting part 26. The push rod 22 of the present application is provided with a through hole, and the connecting part 26 passes through the through hole and connects with the accommodating groove 207. The push rod 22 can rotate relative to the connecting part 26 under the driving. Of course, in actual application, the user can also realize the rotational connection between the push rod 22 and the accommodating groove 207 through other ways, and the present application does not limit this.

[0276] Specifically, the intelligent acoustic system further comprises an elastic component 24, the accommodating groove 207 is connected with a fixed plate 25, two ends of the elastic component 24 are connected with the fixed plate 25 and the push rod 22 respectively, and the elastic component 24 is used for providing elastic force of the push rod 22 abutting against the touch mechanism 18.

[0277] When the sound box cover plate 202 abuts against the touch mechanism 18, the inclined surface 21 pushes the push rod 22, the end of the push rod 22 away from the fixed part 23 moves towards the fixed plate 25, the elastic component 24 is compressed, the sound box cover plate 202 cancels the abutment against the touch mechanism 18, the elastic component 24 pushes the push rod 22, the end of the push rod 22 away from the fixed part 23 moves away from the fixed plate 25, the fixed part 23 rotates to the outside of the microphone accommodating groove 2011, the push rod 22 pushes the touch mechanism 18 to move upwards, so as to restore the untriggered state.

[0278] Specifically, the intelligent acoustic system further comprises a rotating screen 203, and the rotating screen 203 is connected to the inner wall of the sound box cover plate 202. When the sound box cover plate 202 is closed, the rotating screen 203 is protected by the sound box cover plate 202, so that the damage of direct impact or friction of the outside to the rotating screen 203 is reduced, and the service life of the rotating screen 203 is prolonged.

[0279] Specifically, the microphone accommodating groove 2011 is connected with a power supply contact 6, the microphone 1 is connected with a charging sheet 8, and the fixed part 23 abuts against the microphone 1, so that the power supply contact 6 is electrically connected with the charging sheet 8. A user does not need to additionally find a charging wire or a charging seat, and only needs to store the microphone 1 into the accommodating groove 207, so that automatic charging can be realized, and the applicability is high.

[0280] Finally, it should be noted that the above content is only used to illustrate the technical solutions of the present application, and is not a limitation on the protection scope of the present application. Simple modifications or equivalent replacements of the technical solutions of the present application made by those skilled in the art do not deviate from the essence and scope of the technical solutions of the present application.

Claims

1. An intelligent acoustic system, characterized by: The microphone and the sound box assembly are included; The sound box assembly includes a sound box base provided with a microphone placing groove and a containing groove, and a sound box cover plate hinged to the sound box base; the microphone placing groove is located in the containing groove; The total depth dimension of the microphone placing groove and the containing groove is greater than or equal to the diameter dimension of the microphone, so that the microphone is completely accommodated in the microphone placing groove and the containing groove when the microphone is placed in the microphone placing groove; The sound box cover plate is provided with a rotating screen for covering or opening the microphone placing groove; the sound box cover plate is used for covering or opening the containing groove.

2. The intelligent acoustic system of claim 1, wherein: The side of the microphone placing groove is provided with a hand holding groove in communication with the microphone placing groove; the microphone placing groove is provided with a plurality of microphone placing grooves, and each microphone placing groove is provided with a hand holding groove; a partition plate is arranged between two adjacent microphone placing grooves, and the partition plate is provided with a hand holding notch corresponding to the position of the hand holding groove; the hand holding notch is in communication with the microphone placing groove.

3. The intelligent acoustic system of claim 1, wherein: A fastening assembly is further included, and the fastening assembly is located in the containing groove; the fastening assembly has a locking state for fixing each microphone in the containing groove, and has an unlocking state for releasing each microphone.

4. The intelligent acoustic system of claim 3, wherein: The fastening assembly includes a quick plug female head, a fastening belt and a quick plug male head; The quick plug female head is fixed in the containing groove; one end of the fastening belt is fixed in the containing groove; the quick plug male head is fixed on the other end of the fastening belt and is used for plug connection with the quick plug female head.

5. The intelligent acoustic system of claim 1, wherein: The top of the sound box base is provided with a containing cavity with an opening upward, and the front surface of the sound box base is provided with a loudspeaker mounting window in communication with the containing cavity and the external space of the sound box base; The loudspeaker mounting window is mounted with a loudspeaker unit; The sound box cover plate is recessed downward to form the containing groove for accommodating the microphone at a position corresponding to the rear end of the loudspeaker unit.

6. The intelligent acoustic system of claim 1, wherein: A detection mechanism and a jacking mechanism are further included, the detection mechanism is used for detecting the rotation angle of the rotating screen relative to the sound box assembly; The jacking mechanism is electrically connected with the detection mechanism and is used for jacking up or lowering the microphone.

7. The intelligent acoustic system of claim 6, wherein: The jacking mechanism includes a lifting frame assembly and a linear driving mechanism for driving the lifting frame assembly to move up and down relative to the sound box assembly; The lifting frame assembly includes: A lifting bottom plate connected with the driving end of the linear driving mechanism; A plurality of fixed vertical rods, the lower end of each fixed vertical rod is fixed on the lifting bottom plate; A plurality of support plates corresponding to each fixed vertical rod, each support plate is fixed on the top end of the corresponding fixed vertical rod.

8. The intelligent acoustic system of claim 1, wherein: The microphone includes a microphone body and a plurality of charging metal rings arranged around the circumferential surface of the microphone body, each charging metal ring is arranged at intervals along the length direction of the microphone body; the groove bottom of the microphone placing groove is provided with a charging probe corresponding to the position of each charging metal ring.

9. The intelligent acoustic system of claim 1, wherein: The relative positioning between the microphone and the sound box assembly is realized through a magnetic attraction assembly.

10. The intelligent acoustic system of claim 9, wherein: The magnetic attraction assembly includes: A plurality of microphone side magnets, each microphone side magnet is fixed in the microphone; A plurality of box side magnets are provided, each of the box side magnets is arranged one-to-one with the corresponding side magnet of the microphone, and is fixed in the sound box assembly.

11. The intelligent acoustic system of claim 1, wherein: The microphone is provided with a battery and a power receiving coil for charging the battery; A plurality of power supply coils are provided, each of the power supply coils corresponds to one of the microphone release slots, and is used for wireless charging of the corresponding power receiving coil.

12. The intelligent acoustic system of claim 1, wherein: Further comprising a clamping member arranged between the microphone and the sound box cover plate, used for buffering the impact of the microphone on the sound box cover plate.

13. The intelligent acoustic system of claim 1, wherein: Further comprising a microphone clamping assembly, the microphone clamping assembly comprises two opposite longitudinally arranged clamping plates, The longitudinally arranged clamping plates are fixed in the accommodating groove, and the two longitudinally arranged clamping plates are spaced apart to form the microphone release slot.

14. The intelligent acoustic system of claim 13, wherein: Each of the longitudinally arranged clamping plates is connected with an inclined guide portion at an end away from the groove bottom of the accommodating groove, and the two inclined guide portions are arranged in an inverted eight shape.

15. The intelligent acoustic system of claim 1, wherein: The slot wall of the microphone release slot comprises a first vertical surface arranged vertically, a second vertical surface arranged parallel to the first vertical surface, and a connecting wall surface connecting the first vertical surface and the second vertical surface.

16. The intelligent acoustic system of claim 1, wherein: The sound box assembly is provided with a mounting position; further comprising a clamping member mounted on the mounting position, by pulling the clamping member, the clamping member is moved to abut against the outer end surface of the microphone, and the microphone clamped in the microphone release slot is clamped.

17. The intelligent acoustic system of claim 16, wherein: The clamping member is provided with a first pulling portion, by pulling the first pulling portion, the clamping member is moved to abut against the outer end surface of the microphone; the clamping member is also provided with a second pulling portion, the second pulling portion is arranged on the opposite side of the first pulling portion, by pulling the second pulling portion, the clamping member is moved to abut against the outer end surface of the microphone.

18. The intelligent acoustic system of claim 1, wherein: Further comprising a receiving limiting mechanism, the microphone is received in the receiving limiting mechanism, the sound box assembly is provided with a containing space, and the receiving limiting mechanism is received in the containing space; The receiving limiting mechanism comprises a receiving mechanism; the receiving mechanism is provided with a magic tape male surface, the microphone is connected with a magic tape female surface, and when the microphone is received in the receiving mechanism, the magic tape male surface is bonded to the magic tape female surface.

19. The intelligent acoustic system of claim 1, wherein: Further comprising a clamping assembly and a triggering mechanism, the clamping assembly is in transmission connection with the triggering mechanism, so that when the triggering mechanism is triggered, the triggering mechanism drives the clamping assembly to move towards the microphone until the clamping assembly clamps the microphone.

20. The intelligent acoustic system of claim 19, wherein: The triggering end of the triggering mechanism faces the sound box cover plate; when the sound box cover plate moves to the triggering end, the triggering mechanism drives the clamping assembly to move towards the microphone, so that the clamping assembly abuts against the microphone.

Citation Information

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