A microphone charging compartment assembly and a smart sound box

CN224760329UActive Publication Date: 2026-09-15SHENZHEN SHENGHUO INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202522198972.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-17
Publication Date
2026-09-15
Estimated Expiration
2035-10-17

AI Technical Summary

Technical Problem

[0005]为了解决现有技术中麦克风充电结构如线充、无线充电等缺乏对麦克风的固定措施,当户外音响移动时易因颠簸、磕碰等意外状况导致麦克风移位,进而出现充电中断以及麦克风因与仓壁磕碰损坏的问题,本实用新型提出一种麦克风充电仓组件及智能音响

Benefits of technology

[0016] The beneficial effects of this utility model are as follows: By setting an elastic charging base inside the housing, and fitting the mounting ring on the charging base with the mounting groove at the end of the microphone, the charging base can charge the microphone while also limiting and dispersing stress. At the same time, the locking component can ensure the connection between the microphone and the charging base. When applied to outdoor speakers, it reduces the impact of speaker bumps and knocks on the microphone's charging status, and allows the housing to fully protect the microphone.

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Abstract

The utility model discloses a microphone charging bin subassembly and intelligent sound, wherein, the microphone charging subassembly includes: bin body, the bottom elasticity of bin body is connected with the charging base, and the charging base includes the installation ring of a plurality of installation rings of the accommodating cavity of bin body's direction setting, and bin body is provided with the clamping assembly in, and the microphone is detachably arranged in the accommodating cavity, and one end of microphone is provided with the installation groove of a plurality of installation rings'suitable adaptation. The utility model discloses the elastic charging base is set up in bin body, and the installation ring on the charging base and the installation groove of microphone end portion embed and adapt, make the charging base realize the charging effect to microphone, and also play the function of spacing stress, simultaneously, and the clamping assembly can guarantee the connection state of microphone and charging base, when being applied to the outdoor sound, reduced the influence of the microphone charging state because of the sound bumping, knock, can make bin body realize the full protection to microphone.
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Description

Technical Field

[0001] This utility model relates to the field of smart speaker accessories technology, and in particular to a microphone charging case assembly and a smart speaker. Background Technology

[0002] Outdoor portable speakers are portable sound playback devices that can be used outdoors. They are small in size, can be connected wirelessly, and can be charged for power. They are widely used in outdoor activities.

[0003] In the existing technology, microphone charging structures generally adopt wired charging or wireless charging structures such as those disclosed in CN204732893U. When the microphone is used in outdoor speakers, the traditional charging structure lacks measures to fix the microphone, which makes the microphone easy to shift due to bumps and knocks when the outdoor speaker is moved. This can lead to problems such as interruption of microphone charging and damage to the microphone due to collisions with the enclosure wall.

[0004] Therefore, existing technologies still need to be improved and developed. Utility Model Content

[0005] To address the problem that existing microphone charging structures, such as wired charging and wireless charging, lack measures to secure the microphone, which can easily cause the microphone to shift due to bumps or collisions when the outdoor speaker is moved, leading to charging interruptions and damage to the microphone from impacts with the charging case walls, this utility model proposes a microphone charging case assembly and a smart speaker.

[0006] This utility model is achieved through the following technical solution: A microphone charging case assembly, wherein the microphone charging case assembly includes: The compartment has a charging base elastically connected to its bottom. The charging base includes several mounting rings facing the receiving cavity of the compartment. The compartment has a locking assembly. A microphone is detachably disposed within the receiving cavity. One end of the microphone is provided with a mounting slot that is adapted to a plurality of mounting rings. When the microphone is placed within the receiving cavity, the plurality of mounting slots and the plurality of mounting rings engage, and the microphone is coupled to the charging base.

[0007] The microphone charging case assembly, wherein the charging base includes a spring, one end of the spring is fixedly connected to the bottom plate inside the case, and the other end is fixedly connected to the side of the charging base away from the mounting ring; The central axis of the spring and the central axis of the charging base are on the same straight line.

[0008] The microphone charging case assembly includes several mounting rings arranged concentrically, and a charging probe is provided at the center of the charging base. The microphone has a charging port located at the center of several mounting slots at its end, and the charging probe is detachably inserted into the charging port.

[0009] The microphone charging case assembly includes two clamping claws that are oppositely arranged and partially inserted into the receiving cavity, and the two clamping claws are elastically rotatably connected to the case body respectively. The microphone has a circumferentially positioned groove on its side wall. When the microphone is located at a predetermined position within the receiving cavity, the two grippers engage the microphone.

[0010] The microphone charging case assembly, wherein the gripper includes a locking part correspondingly disposed within the receiving cavity, and a mounting rod located outside the case body and elastically rotatably connected to a mounting shaft on the case body; The engaging part is arranged along a predetermined arc, and the side corresponding to the opening of the compartment is inclined at a predetermined angle.

[0011] The microphone charging case assembly, wherein one end of the mounting rod is bent at a certain angle to form an adjustment section; The engaging assembly further includes a drive rod assembly for driving the adjusting part to rotate around the mounting shaft.

[0012] The microphone charging case assembly, wherein the drive lever assembly includes: A pressure bar, which is slidably disposed along a predetermined direction; The support rod is rotatably connected to the pivot on the chamber body at its middle part. One end of the support rod is hinged to the pressure rod, and the other end is provided with a first push handle and a second push handle at intervals. The first push handle and the second push handle are respectively slidably abutting against the two adjustment parts.

[0013] A smart speaker, wherein the smart speaker includes the aforementioned microphone charging case assembly, the microphone charging case assembly comprising: The compartment has a charging base elastically connected to its bottom. The charging base includes several mounting rings facing the receiving cavity of the compartment. The compartment has a locking assembly. A microphone is detachably disposed within the receiving cavity, and one end of the microphone is provided with a mounting slot adapted to a plurality of mounting rings; when the microphone is placed within the receiving cavity, the plurality of mounting slots and the plurality of mounting rings engage, and the microphone is coupled to the charging base; The smart speaker also includes: The housing contains several of the microphone charging compartment assemblies.

[0014] In the aforementioned smart speaker, the openings of several of the chambers are all located on the same side wall of the enclosure; The box body includes a cover, which is hinged, snapped, or engaged with the box body; The cover is used to cover the openings of several of the compartments.

[0015] In the aforementioned smart speaker, when the cover covers the openings of several of the compartments, the microphone inside the compartment is spaced a predetermined distance from the cover.

[0016] The beneficial effects of this utility model are as follows: By setting an elastic charging base inside the housing, and fitting the mounting ring on the charging base with the mounting groove at the end of the microphone, the charging base can charge the microphone while also limiting and dispersing stress. At the same time, the locking component can ensure the connection between the microphone and the charging base. When applied to outdoor speakers, it reduces the impact of speaker bumps and knocks on the microphone's charging status, and allows the housing to fully protect the microphone. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the structure of the microphone charging case assembly of this utility model; Figure 2 This is a schematic diagram of the microphone structure in the microphone charging case assembly of this utility model; Figure 3 This is a schematic diagram of the charging base in the microphone charging case assembly of this utility model; Figure 4 This is a schematic diagram of the microphone charging case assembly of this utility model applied to a smart speaker.

[0018] exist Figures 1 to 4 In the middle: 100, compartment; 110, receiving cavity; 200, charging base; 210, mounting ring; 220, charging probe; 230, spring; 300, locking assembly; 310, gripper; 311, locking part; 312, mounting rod; 313, adjusting part; 320, drive rod assembly; 321, pressure rod; 322, support rod; 323, first push handle; 324, second push handle; 400, microphone; 410, mounting slot; 420, charging socket; 430, limiting slot; 500, housing; 600, cover. Detailed Implementation

[0019] To make the objectives, technical solutions, and effects of this utility model clearer and more explicit, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this utility model and are not intended to limit this utility model.

[0020] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicators will also change accordingly.

[0021] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, features defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. If the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.

[0022] In the existing technology, microphone charging structures generally adopt wired charging or wireless charging structures such as those disclosed in CN204732893U. When the microphone is used in outdoor speakers, the traditional charging structure lacks measures to fix the microphone, which makes the microphone easy to shift due to bumps and knocks when the outdoor speaker is moved. This can lead to problems such as interruption of microphone charging and damage to the microphone due to collisions with the enclosure wall.

[0023] In view of the above-mentioned problems in the prior art, the present invention provides a microphone charging case assembly, such as... Figure 1 and Figure 3 As shown, the microphone charging case assembly includes: a case body 100, with a charging base 200 elastically connected to the bottom of the case body 100, the charging base 200 including a plurality of mounting rings 210 disposed facing the receiving cavity 110 of the case body 100, and a locking assembly 300 disposed inside the case body 100; a microphone 400, the microphone 400 being detachably disposed inside the receiving cavity 110, one end of the microphone 400 being provided with a mounting groove 410 adapted to the plurality of mounting rings 210; when the microphone 400 is placed inside the receiving cavity 110, the plurality of mounting grooves 410 and the plurality of mounting rings 210 are engaged, and the microphone 400 is coupled to the charging base 200.

[0024] This utility model provides an elastic charging base 200 inside the housing 100. The mounting ring 210 on the charging base 200 fits into the mounting groove 410 at the end of the microphone 400. This allows the charging base 200 to charge the microphone 400 while also limiting and dispersing stress. At the same time, the locking component 300 ensures the connection between the microphone 400 and the charging base 200. When applied to outdoor speakers, this reduces the impact of speaker vibrations and impacts on the charging state of the microphone 400, allowing the housing 100 to provide full protection for the microphone 400.

[0025] In the above embodiments, such as Figure 1 and Figure 3 As shown, the main body of the microphone charging case assembly of this utility model consists of a case 100 and a microphone 400. The case 100 is used to hold and protect the microphone 400. For ease of description, the cavity of the case 100 is named the receiving cavity 110 in the following embodiments. A charging base 200 is provided at the bottom of the receiving cavity 110 inside the case 100. The charging base 200 is used to charge the microphone 400 placed in the receiving cavity 110. In actual installation, the charging base 200 is elastically connected to the bottom plate of the case 100 to form elastic support for the microphone 400 in the stored state.

[0026] In one possible implementation, the charging base 200 includes a plurality of mounting rings 210 disposed toward the receiving cavity 110 of the housing 100. Correspondingly, a mounting groove 410 adapted to the shape of the plurality of mounting rings 210 is disposed on one end of the microphone 400. When the microphone 400 is inserted into the housing 100, the plurality of mounting grooves 410 at the end of the microphone 400 are fitted with the mounting rings 210 on the charging base 200 inside the housing 100. This fitting structure, on the one hand, couples the microphone 400 with the charging base 200 to form a circuit path for charging the microphone 400. On the other hand, it can restrict the position of the end of the microphone 400. Thus, when the charging housing is used for outdoor audio, the elastic structure of the charging base 200 can provide a buffer when the microphone is subjected to bumps or knocks during movement, and maintain the circuit connection with the microphone 400, thereby achieving the effect of keeping the microphone 400 in a stable charging state and protecting the microphone 400 from damage by knocks.

[0027] Furthermore, in this embodiment, a locking component 300 is also provided inside the aforementioned housing 100. The locking component 300 is used to lock the microphone 400 in place, thereby securing the microphone 400. Therefore, there are two storage states during the actual storage of the microphone 400: One is the temporary placement state of the microphone 400, that is, the microphone 400 is only inserted into the receiving cavity 110 of the housing 100. In this state, the end of the microphone 400 is engaged with the charging base 200 under the action of gravity, so as to achieve the charging effect. In this temporary placement state, since the elastic connection structure of the charging base 200 is only affected by the gravity of the microphone 400, it is only slightly compressed. Therefore, in this state, part of the microphone 400 is exposed outside the housing 100, which can make it easy for the user to take out the microphone 400 for use while maintaining the charging state.

[0028] Secondly, the microphone 400 is fully retracted. When the microphone 400 is inserted into the receiving cavity 110 inside the housing 100, and the end of the microphone 400 is engaged with the charging base 200, the microphone 400 is further pressed into a predetermined position. At this time, the locking component 300 engages with the microphone 400, thereby fixing the microphone 400. In this state, the elastic connection structure of the charging base 200 is compressed. Therefore, when the microphone 400 is subjected to bumps, the elastic structure can offset the stress. At the same time, the locking component 300 ensures that the microphone 400 will not shift due to bumps, further ensuring the stability of the charging process and the safety of the microphone 400.

[0029] In one specific implementation, such as Figure 3 As shown, the elastic connection structure of the charging base 200 is specifically a spring 230. One end of the spring 230 is fixedly connected to the bottom plate inside the housing 100, and the other end is fixedly connected to the side of the charging base 200 away from the mounting ring 210. The central axis of the spring 230 and the central axis of the charging base 200 are on the same straight line. This arrangement ensures that when the charging base 200 is subjected to the gravity or external force of the microphone 400, it compresses or rebounds evenly in the vertical direction, preventing the charging base 200 from tilting or the microphone 400 from shifting due to uneven force, thus ensuring the stability and reliability of the charging process.

[0030] In another possible embodiment of this utility model, such as Figure 2 and Figure 3As shown, the aforementioned mounting rings 210 are concentrically arranged, with different diameters and a certain distance between them, forming a concentric ring structure. Correspondingly, the aforementioned mounting slots 410 are arranged to accommodate the positions of the mounting rings 210. In addition, when the mounting rings 210 are set, an inclined structure can be provided on the side wall to guide the mounting rings 210 into the corresponding mounting slots 410, so as to ensure that when the microphone 400 is inserted into the housing 100, it directly corresponds to the charging base 200 and automatically forms a corresponding fit. To achieve circuit coupling between the charging base 200 and the end of the microphone 400, a charging probe 220 is provided at the center of the charging base 200. The charging probe 220 is used to make an electrical connection with the microphone 400 to realize the charging function. Correspondingly, a charging socket 420 is provided at the end of the microphone 400, located at the center of several mounting slots 410. The charging socket 420 and the charging probe 220 are detachably inserted and matched. When the microphone 400 is inserted into the housing 100 and fitted into the charging base 200, the charging probe 220 is inserted into the charging socket 420 to form an electrical connection path, thereby realizing the charging of the microphone 400.

[0031] In another possible embodiment of this utility model, such as Figure 1 and Figure 3 As shown, the aforementioned locking assembly 300 specifically includes two clamping claws 310 that are oppositely arranged and partially inserted into the receiving cavity 110. The two clamping claws 310 are elastically rotatably connected to the housing 100, and the elastic connection allows the two clamping claws 310 to be positioned at a predetermined location to clamp the side wall of the microphone 400, thereby fixing the microphone 400. In actual use, the clamping claws 310 can rotate when subjected to external force and return to their original position after the external force disappears. Correspondingly, a limiting groove 430 is provided circumferentially on the side wall of the microphone 400. When the microphone 400 is located at the predetermined position within the receiving cavity 110, that is, when the microphone 400 is fully inserted into the receiving cavity 110 and the spring 230 on the charging base 200 is compressed to a certain position, the two clamping claws 310 correspondingly engage with the limiting groove 430 of the microphone 400, thereby fixing the microphone 400 and effectively preventing the microphone 400 from shifting or falling off when subjected to bumps or impacts.

[0032] Furthermore, such as Figure 3As shown, in order to provide a more precise description of the structure of the gripper 310, different parts of the gripper 310 are named in this embodiment. The gripper 310 includes a locking part 311 correspondingly disposed in the receiving cavity 110, and a mounting rod 312 located on the outside of the chamber 100 and elastically rotatably connected to the mounting shaft on the chamber 100. The engaging part 311 is set along a predetermined arc. This arc design allows the engaging part 311 to better fit the side wall of the microphone 400, improving the stability of the engagement. At the same time, the engaging part 311 is set at a predetermined angle on the side corresponding to the opening of the compartment 100. This inclined setting allows the engaging part 311 to cooperate with the side wall of the microphone 400 when the microphone 400 is inserted, so that the side wall of the microphone 400 pushes the engaging part 311 to provide clearance. After the microphone 400 reaches the predetermined position, it resets and moves under the action of the elastic connecting structure (such as a compression spring) of the gripper 310, and combines with the limiting groove 430 located on the side wall of the microphone 400 to achieve the effect of automatic engagement.

[0033] In addition, to release the gripper 310 from engagement, such as Figure 3 As shown, in this embodiment, one end of the mounting rod 312 (the opposite end of the engaging part 311) is bent at a certain angle to form an adjustment part 313, so that the user can apply external force to the adjustment part 313 to drive the rotation of the gripper 310, thereby freeing the gripper 310 from engaging and limiting the microphone 400 sidewall.

[0034] like Figure 3 As shown, the above-mentioned engaging assembly 300 also includes a drive rod assembly 320, which is used to drive the adjusting part 313 to rotate around the mounting shaft. Specifically, the drive rod assembly 320 includes a pressure rod 321 and a support rod 322. The pressure rod 321 is slidably mounted on the housing 100 in a predetermined direction. The middle part of the support rod 322 is rotatably connected to the pivot on the housing 100. One end of the support rod 322 is hinged to the pressure rod 321, and the other end is provided with a first push handle 323 and a second push handle 324 spaced apart. The first push handle 323 and the second push handle 324 correspond to the positions of the adjustment parts 313 on the two grippers 310, respectively. When the user presses down on the pressure rod 321, the support rod 322 will rotate around the pivot in a seesaw-like manner, thereby driving the first push handle 323 and the second push handle 324 to move upward. Since the first push handle 323 and the second push handle 324 slide against the two adjustment parts 313, their upward movement will drive the adjustment parts 313 to rotate around the mounting axis, thereby driving the engaging part 311 of the gripper 310 to open or close, thereby fixing or releasing the microphone 400.

[0035] In actual setup, the end of the pressure rod 321 can be equipped with a button or other structure to facilitate user operation. In addition, an elastic structure such as a spring 230 can be set to connect with the chamber 100 and the pressure rod 321 to achieve quick reset of the pressure rod 321 (if not set, reset can be achieved through the elastically rotating gripper 310).

[0036] Based on the above embodiments, this utility model provides a microphone charging case assembly, which consists of a case body 100 and a microphone 400. The case body 100 serves as the main load-bearing structure, and its internal cavity 110 provides a stable and safe placement space for the microphone 400. The bottom of the cavity 110 is elastically connected to the charging base 200. This design not only ensures that the microphone 400 can form a good coupling with the charging base 200 when placed, realizing the charging function, but also effectively buffers external impact forces through the elastic structure, protecting the microphone 400 from damage.

[0037] Several mounting rings 210 on the charging base 200 form a precise fitting structure with the mounting slot 410 at the end of the microphone 400. This structure not only allows the microphone 400 to be quickly positioned when placed, but also restricts the position of the microphone 400 through physical fitting, preventing it from shifting during movement or bumps. At the same time, the adaptive design of the mounting rings 210 and the mounting slot 410 also ensures accurate docking of the charging probe 220 and the charging socket 420, achieving a stable and reliable charging effect.

[0038] In addition to its charging and securing functions, the housing 100 also features a cleverly designed locking component 300. This component, through the relative arrangement and elastic rotational connection of two grippers 310, secures the microphone 400 to its side wall. When the microphone 400 is fully inserted into the receiving cavity 110 and reaches the predetermined position, the two grippers 310 automatically engage with the limiting grooves 430 on the side wall of the microphone 400, creating a stable fixation. This design not only improves the stability of the microphone 400 within the housing 100 but also effectively prevents it from falling off when subjected to bumps or impacts.

[0039] Based on the above embodiments, this utility model also provides a smart speaker, such as... Figure 4As shown, the smart speaker includes a microphone charging case assembly according to any one of the above embodiments. The microphone charging case assembly specifically includes: a case body 100, with a charging base 200 elastically connected to the bottom of the case body 100. The charging base 200 includes a plurality of mounting rings 210 disposed facing the receiving cavity 110 of the case body 100, and a locking assembly 300 disposed inside the case body 100; a microphone 400, which is detachably disposed inside the receiving cavity 110, and one end of the microphone 400 is provided with a mounting groove 410 adapted to the plurality of mounting rings 210; when the microphone 400 is placed inside the receiving cavity 110, the plurality of mounting grooves 410 and the plurality of mounting rings 210 are engaged, and the microphone 400 is coupled to the charging base 200.

[0040] In addition, the smart speaker includes a housing 500, and several of the aforementioned microphone charging case components are housed inside the housing 500. As the overall shell of the smart speaker, the housing 500 not only provides a stable installation foundation for the microphone charging case components, but also achieves effective integration and management of multiple charging case components through a reasonable structural arrangement.

[0041] In one specific embodiment, when several microphone charging case assemblies are arranged on the housing 500, it is preferable that the opening sides of the several case assemblies are arranged on the same side wall of the housing 500 to facilitate user placement and operation. Further, such as... Figure 4 As shown, the aforementioned housing 500 also includes a cover 600, which covers the openings of several compartments 100, thereby protecting the microphones 400 inside the compartments 100. In actual installation, the cover 600 can be hinged to the housing 500, allowing the user to expose or cover the openings of several compartments 100 by rotating the cover 600. Alternatively, the cover 600 can be snapped onto the housing 500, meaning the cover 600 is separate from the housing 500, allowing the user to expose or cover the openings of the compartments 100 by removing or placing the cover 600 on top of the housing 500. Alternatively, the cover 600 can be engaged with the housing 500, meaning that even with the cover 600 separate from the housing 500, structures such as slots or slide rails can be provided as mounting limits for the cover 600 to expose or cover the openings of the compartments 100. This design makes it convenient for users to access and place the microphone 400, while also effectively protecting the microphone 400 from dust, debris, and other contaminants when not in use.

[0042] It should be noted that the cover 600 is not limited to a plate-like structure. For example, a monitor or tablet computer can also be used as the cover 600, and this application does not limit it in this regard.

[0043] In one embodiment of this utility model, when the cover 600 covers the openings of several compartments 100, the microphone 400 inside the compartment 100 should be set at a predetermined distance from the cover 600. That is, the cover 600 only serves to block the openings of several compartments 100, and does not serve to limit the position of the microphone 400. The advantage of this setting is that when the cover 600 is set using a display screen, tablet computer, etc., the microphone 400 can be prevented from contacting the cover 600, thereby preventing the microphone 400 or the display screen from being damaged due to the smart speaker being bumped or impacted.

[0044] In summary, this utility model provides a microphone charging case assembly and a smart speaker. The microphone charging case assembly includes: a case body, with a charging base elastically connected to the bottom of the case body. The charging base includes several mounting rings facing the receiving cavity of the case body, and a locking component is provided within the case body; a microphone, detachably mounted within the receiving cavity, with a mounting groove at one end of the microphone that mates with the mounting rings. When the microphone is placed within the receiving cavity, the mounting grooves and mounting rings engage, coupling the microphone to the charging base. This utility model, by providing an elastic charging base within the case body, with the mounting rings on the charging base engaging with the mounting groove at the microphone end, enables the charging base to charge the microphone while also limiting and distributing stress. Simultaneously, the locking component ensures the connection between the microphone and the charging base. When applied to outdoor speakers, this reduces the impact of speaker vibrations and impacts on the microphone's charging state, providing ample protection for the microphone from the case body.

[0045] It should be understood that the application of this utility model is not limited to the examples above. Those skilled in the art can make improvements or modifications based on the above description, and all such improvements and modifications should fall within the protection scope of the appended claims.

Claims

1. A microphone charging case assembly, characterized in that, The microphone charging case assembly includes: The compartment has a charging base elastically connected to its bottom. The charging base includes several mounting rings facing the receiving cavity of the compartment. The compartment has a locking assembly. A microphone is detachably disposed within the receiving cavity. One end of the microphone is provided with a mounting slot that is adapted to a plurality of mounting rings. When the microphone is placed within the receiving cavity, the plurality of mounting slots and the plurality of mounting rings engage, and the microphone is coupled to the charging base.

2. The microphone charging case assembly according to claim 1, characterized in that, The charging base includes a spring, one end of which is fixedly connected to the bottom plate inside the compartment, and the other end of which is fixedly connected to the side of the charging base away from the mounting ring. The central axis of the spring and the central axis of the charging base are on the same straight line.

3. The microphone charging case assembly according to claim 1, characterized in that, Several mounting rings are arranged concentrically, and a charging probe is provided at the center of the charging base; The microphone has a charging port located at the center of several mounting slots at its end, and the charging probe is detachably inserted into the charging port.

4. The microphone charging case assembly according to claim 1, characterized in that, The engaging assembly includes two grippers that are oppositely arranged and partially inserted into the receiving cavity, and the two grippers are elastically rotatably connected to the chamber body respectively. The microphone has a circumferentially positioned groove on its side wall. When the microphone is located at a predetermined position within the receiving cavity, the two grippers engage the microphone.

5. The microphone charging case assembly according to claim 4, characterized in that, The gripper includes a locking part correspondingly disposed in the receiving cavity, and a mounting rod located on the outside of the chamber and elastically rotatably connected to the mounting shaft on the chamber; The engaging part is arranged along a predetermined arc, and the side corresponding to the opening of the compartment is inclined at a predetermined angle.

6. The microphone charging case assembly according to claim 5, characterized in that, One end of the mounting rod is bent at a certain angle to form an adjustment section; The engaging assembly further includes a drive rod assembly for driving the adjusting part to rotate around the mounting shaft.

7. The microphone charging case assembly according to claim 6, characterized in that, The drive lever assembly includes: A pressure bar, which is slidably disposed along a predetermined direction; The support rod is rotatably connected to the pivot on the chamber body at its middle part. One end of the support rod is hinged to the pressure rod, and the other end is provided with a first push handle and a second push handle at intervals. The first push handle and the second push handle are respectively slidably abutting against the two adjustment parts.

8. A smart speaker, characterized in that, The smart speaker includes the microphone charging case assembly as described in any one of claims 1-7, the microphone charging case assembly comprising: The compartment has a charging base elastically connected to its bottom. The charging base includes several mounting rings facing the receiving cavity of the compartment. The compartment has a locking assembly. A microphone is detachably disposed within the receiving cavity, and one end of the microphone is provided with a mounting slot adapted to a plurality of mounting rings; when the microphone is placed within the receiving cavity, the plurality of mounting slots and the plurality of mounting rings engage, and the microphone is coupled to the charging base; The smart speaker also includes: The housing contains several of the microphone charging compartment assemblies.

9. The intelligent speaker according to claim 8, characterized in that, The openings of several of the aforementioned compartments are all located on the same side wall of the box; The box body includes a cover, which is hinged, snapped, or engaged with the box body; The cover is used to cover the openings of several of the compartments.

10. The smart speaker according to claim 9, characterized in that, When the cover covers the openings of several of the compartments, the microphone inside the compartment is spaced a predetermined distance from the cover.

Citation Information

Patent Citations

  • Microphone and microphone base that can wirelessly charge

    CN204732893U