Key pressing and pressing type microphone storage bin and intelligent sound box

CN224760328UActive Publication Date: 2026-09-15SHENZHEN SHENGHUO INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202522198970.3
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

Benefits of technology

[0016]The beneficial effects of this utility model are as follows: By setting a storage cavity inside the housing and symmetrical clamps on both sides of the storage cavity, and controlling it through buttons and drive rods, the microphone can be stored and locked in the storage cavity. This button-operated spring-loaded microphone storage compartment can be used in outdoor speakers to store and protect the microphone, effectively preventing the microphone from falling off and being damaged when the speaker is subjected to bumps or collisions.

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Abstract

The utility model discloses a button elastic pressure formula microphone storage bin and intelligent sound, wherein, the button elastic pressure formula microphone storage bin includes: the casing, the casing includes the storage cavity, and the bottom of storage cavity is provided with the elastic base, the clamping jaw, two clamping jaws symmetrical, elastic rotation setting in the casing inside the two sides of corresponding storage cavity, and the clamping jaw includes the engagement portion of inlaying into the storage cavity, the button, the button inlaying sliding is established in the one side of casing, and the button is connected with drive rod group, and drive rod group is respectively with two clamping jaws abuts, when the button removes, drive rod group drives two clamping jaws reverse rotation. The utility model discloses through setting up the storage cavity in the casing, setting up the symmetrical clamping jaw at the both sides of storage cavity, and through the button and drive rod group control, can realize the microphone storage and engagement in storage cavity, and the button elastic pressure formula microphone storage bin can be applied in the outdoor sound, and the microphone storage and protection, effectively avoid the sound to suffer the situation of the microphone falling off damage when bumping, colliding.
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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 button-operated spring-loaded microphone storage compartment 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 prior art, such as CN221784317U which discloses a multi-functional multi-point wireless serial outdoor karaoke Bluetooth speaker, the microphone of the outdoor speaker in the prior art is detachably snapped onto the retaining ring of the speaker shell. When the speaker is moved outdoors, the microphone is easily detached or even damaged when the speaker is subjected to bumps or collisions.

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

[0005] To address the problem in existing technologies where the microphone is clipped onto the speaker housing, making it prone to detachment or damage during outdoor mobile speaker use due to bumps and collisions, thus affecting the microphone's lifespan, this utility model provides a button-operated spring-loaded microphone storage compartment and a smart speaker.

[0006] This utility model is achieved through the following technical solution: A push-button microphone storage compartment, wherein the push-button microphone storage compartment comprises: The housing includes a storage cavity, and a flexible base is provided at the bottom of the storage cavity; The grippers are symmetrically and elastically rotatably disposed on both sides of the housing corresponding to the storage cavity. Each gripper includes a locking part that penetrates into the storage cavity. A button is slidably mounted on one side of the housing. A drive rod assembly is connected to the button, and the drive rod assembly abuts against the two grippers respectively. When the button moves, the drive rod assembly drives the two grippers to rotate in opposite directions.

[0007] The aforementioned push-button microphone storage compartment includes a surrounding panel provided on the housing corresponding to the storage cavity, the hollow space of the surrounding panel forming the storage cavity, and the surrounding panel including two hollowed-out and oppositely arranged clearance grooves; The engaging portion extends into the receiving cavity along the relief groove.

[0008] The aforementioned push-button microphone storage compartment has a locking part arranged along a predetermined arc, and a guide surface is provided on the side of the locking part facing the opening of the enclosure, the guide surface being inclined at a predetermined angle.

[0009] The aforementioned push-button microphone storage compartment includes a clamping claw comprising a mounting rod, the mounting rod being elastically rotatably mounted on a mounting shaft within the housing; One end of the mounting rod is fixedly connected to the engaging part, and the other end is bent at a certain angle to form an adjusting part. The driving rod assembly slides against the adjusting part.

[0010] The aforementioned push-button type microphone storage compartment, wherein the drive lever assembly includes: A pressure rod, which is connected to the button; The support rod is rotatably connected to the housing at its middle part, and one end of the support rod is hinged to the pressure rod. A first push handle and a second push handle are provided at a predetermined distance on the other end of the support rod. The first push handle and the second push handle are respectively slidably abutting against the adjustment parts on the two grippers.

[0011] The aforementioned button-operated microphone storage compartment includes a compression spring fitted onto the mounting shaft. One end of the compression spring abuts against the mounting rod, and the other end abuts against a baffle located inside the housing corresponding to the position of the mounting shaft. The compression springs on the two grippers are arranged in opposite directions.

[0012] The aforementioned push-button type microphone storage compartment includes an elastic base comprising a base and a lifting spring. The lifting spring connects the housing corresponding to the bottom of the storage cavity and the base, and the base is used to support the microphone.

[0013] The aforementioned push-button microphone storage compartment includes a housing comprising a mounting cavity on one side of the storage cavity, a push button slidably disposed within the mounting cavity, and a pressing end of the push button extending out of the mounting cavity. A reset spring is provided inside the mounting cavity to elastically abut against the button.

[0014] The aforementioned push-button microphone storage compartment has a button disposed on the end face of the housing corresponding to the opening of the storage cavity, and the sliding direction of the button corresponds to the direction of the central axis of the storage cavity.

[0015] A smart speaker, wherein the smart speaker includes the aforementioned push-button microphone storage compartment.

[0016] The beneficial effects of this utility model are as follows: By setting a storage cavity inside the housing and symmetrical clamps on both sides of the storage cavity, and controlling it through buttons and drive rods, the microphone can be stored and locked in the storage cavity. This button-operated spring-loaded microphone storage compartment can be used in outdoor speakers to store and protect the microphone, effectively preventing the microphone from falling off and being damaged when the speaker is subjected to bumps or collisions. Attached Figure Description

[0017] Figure 1 This is a partial structural breakdown diagram of the button-operated spring-loaded microphone storage compartment of this utility model; Figure 2 This is an exploded view of the structure of the button-operated spring-loaded microphone storage compartment of this utility model; Figure 3 This is a three-dimensional structural diagram of the button-operated spring-loaded microphone storage compartment of this utility model; Figure 4 This is a schematic diagram illustrating the application of the button-operated spring-loaded microphone storage compartment of this utility model; Figure 5 This is a cross-sectional view of the application of the button-operated spring-loaded microphone storage compartment of this utility model.

[0018] exist Figures 1 to 5 In the middle: 100, housing; 110, storage cavity; 111, enclosure plate; 112, clearance groove; 120, mounting shaft; 121, compression spring; 130, mounting cavity; 140, sleeve; 200, elastic base; 210, base; 220, lifting spring; 300, gripper; 310, engaging part; 311, guide surface; 320, mounting rod; 321, adjusting part; 400, button; 410, return spring; 500, drive rod assembly; 510, pressure rod; 520, support rod; 521, first push handle; 522, second push handle; 600, microphone. 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 prior art, such as CN221784317U which discloses a multi-functional multi-point wireless serial outdoor karaoke Bluetooth speaker, the microphone of the outdoor speaker in the prior art is detachably snapped onto the retaining ring of the speaker shell. When the speaker is moved outdoors, the microphone is easily detached or even damaged when the speaker is subjected to bumps or collisions.

[0023] In view of the above-mentioned problems in the prior art, this utility model provides a button-operated spring-loaded microphone storage compartment, such as... Figure 1 As shown, the push-button microphone storage compartment includes: a housing 100, which includes a storage cavity 110, and an elastic base 200 at the bottom of the storage cavity 110; two grippers 300, which are symmetrically and elastically rotatably disposed on both sides of the housing 100 corresponding to the storage cavity 110, and each gripper 300 includes a locking part 310 that penetrates into the storage cavity 110; and a button 400, which is slidably disposed on one side of the housing 100, and a drive rod assembly 500 is connected to the button 400. The drive rod assembly 500 abuts against the two grippers 300 respectively. When the button 400 moves, the drive rod assembly 500 drives the two grippers 300 to rotate in opposite directions.

[0024] This invention provides a storage cavity 110 within the housing 100, with symmetrical grippers 300 on both sides of the storage cavity 110. Controlled by a button 400 and a drive rod assembly 500, the microphone 600 can be stored and locked into the storage cavity 110. This button-operated spring-loaded microphone storage compartment can be used in outdoor speakers to store and protect the microphone 600, effectively preventing the microphone 600 from falling off and being damaged when the speaker is subjected to bumps or collisions.

[0025] In the above embodiments, such as Figure 1 and Figure 2As shown, the main body of the button-operated spring-loaded microphone storage compartment of this utility model consists of a housing 100, a gripper 300, a button 400, and a drive rod assembly 500. All of these components can be made of materials such as plastic or metal. The housing 100 serves to enclose and protect other functional components. To accommodate the microphone 600 in the prior art, a storage cavity 110 is provided on the housing 100 in this embodiment. The storage cavity 110 has a hollow structure, and its shape and size are adapted to the existing microphone 600 or a custom-made microphone 600, thereby accommodating the microphone 600. At the bottom of the storage cavity 110, i.e., on the bottom plate of the housing 100 corresponding to the storage cavity 110, an elastic base 200 is provided, which supports the microphone 600.

[0026] The gripper 300 serves to engage the microphone 600. In this embodiment, there are two grippers 300, which are symmetrically arranged inside the housing 100. In the following sections, since the two grippers 300 are symmetrically arranged, there may be cases where only the specific structure of one gripper 300 is described. Those skilled in the art can refer to the detailed structure of the gripper 300 to set the other gripper 300. Two grippers 300 are elastically rotatably positioned within the housing 100 at positions corresponding to both sides of the storage cavity 110. Each gripper 300 includes a locking portion 310 that penetrates into the storage cavity 110. When the user inserts the microphone 600 into a predetermined position within the storage cavity 110, the two locking portions 310 of the grippers 300 penetrating into the storage cavity 110 can engage with specific parts of the microphone 600 (the specific parts being the tenon / groove-shaped part of a prior art microphone 600 or a matching custom slot structure of a microphone 600), thereby achieving the effect of firmly locking the microphone 600 within the storage cavity 110.

[0027] Based on the above embodiments, the actual storage states of the spring-loaded microphone 600 of this utility model are divided into two types: a temporary storage state in which the microphone 600 is partially exposed outside the housing 100, and a fully stored state in which the microphone 600 is completely stored inside the housing 100 and fixed by the clamps 300. In the temporary storage state, the user inserts the microphone 600 into the storage cavity 110. Under the action of the microphone 600's own weight, it can form contact with the elastic base 200 located at the bottom of the storage cavity 110. In this state, since the elastic base 200 is not subjected to any pressure other than the weight of the microphone 600, it can maintain its position, so that the microphone 600 is partially exposed outside the housing 100. This storage state allows the user to easily access the microphone 600 at any time and can achieve a certain degree of fixation for the microphone 600. In the fully stored state, the user... After the microphone 600 is inserted into the storage cavity 110, the microphone 600 needs to be pressed to compress the elastic base 200 and move the microphone 600 into the predetermined position of the storage cavity 110. During this process, the outer shell of the microphone 600 separates from the clamping claw 300, and after the microphone 600 reaches the predetermined position, it elastically resets and locks the microphone 600 in place. This state allows the microphone 600 to be safely and securely stored in the storage cavity 110 of the housing 100, thereby preventing the microphone 600 from falling out of the storage cavity 110.

[0028] To unlock the microphone 600 in its fully retracted state, a button 400 is provided on one side of the housing 100 corresponding to the storage cavity 110. The button 400 is fitted and slidably arranged to create a pressing effect with a certain key travel. At the same time, the drive rod assembly 500 is connected to the button 400 and abuts against the two clamps 300 respectively. When the user presses the button 400, the pushing force generated by the button 400 changes the position of the drive rod assembly 500, thereby pushing the two clamps 300 so that the two clamps 300 rotate relative to the storage cavity 110. This causes the locking part 310 on the two clamps 300 to release its lock on the microphone 600. At this time, the elastic potential energy of the elastic base 200 is released, thus pushing part of the microphone 600 out of the storage cavity 110 for easy access by the user.

[0029] Based on the above embodiments, the overall structure of the button-operated spring-loaded microphone storage compartment of this utility model is as follows: Figure 3 As shown, the push-button spring-loaded microphone storage compartment can be used independently or applied to existing speaker structures to provide users with a storage location for the microphone 600. Compared to the common snap ring structure in existing technology, this push-button spring-loaded microphone 600 combines ease of use with stable storage, effectively preventing the microphone 600 from falling off and being damaged when the speaker is subjected to bumps or collisions, thus effectively improving the user experience.

[0030] Based on the above embodiments, such as Figure 1 and Figure 2 As shown, specifically, in order to form a receiving cavity 110 within the housing 100 and to allow the microphone 600 to be stably and securely installed within the receiving cavity 110, in this embodiment, a surrounding plate 111 is provided on the housing 100 at a position corresponding to the receiving cavity 110. The annular structure formed by the surrounding plate 111 matches the shape of the microphone 600, and the hollow portion inside the surrounding plate 111 forms the receiving cavity 110. In actual installation, the surrounding plate 111 includes two hollowed-out sections that are positioned opposite each other. The recess 112 is provided, which is the part where the engaging part 310 of the aforementioned gripper 300 enters the receiving cavity 110. That is, the engaging part 310 enters into the receiving cavity 110 along the recess 112. In practical applications, the size and shape of the recess 112 can be customized according to the specific structure of the adapted microphone 600 to ensure that the engaging part 310 can accurately and stably enter the receiving cavity 110 and form an effective engaging effect on the microphone 600.

[0031] In addition, such as Figure 1 and Figure 2 As shown, a sleeve 140 can also be provided inside the aforementioned enclosure 111. The sleeve 140 can be made of materials such as smooth rubber or low-hardness plastic. The sleeve 140 is fitted inside the enclosure 111, and the cavity inside the sleeve 140 forms part of the storage cavity 110. The sleeve 140 can further enhance the protection of the microphone 600, reduce the wear that may occur from direct contact between the microphone 600 and the enclosure 111, and at the same time, the material properties of the sleeve 140 can also provide a certain degree of cushioning for the microphone 600, better protecting the microphone 600 from damage when it is subjected to bumps or collisions. Furthermore, the inner wall of the sleeve 140 can be precisely designed according to the shape of the microphone 600, making the placement of the microphone 600 in the storage cavity 110 more stable.

[0032] In another possible embodiment of this utility model, such as Figure 2 As shown, the aforementioned engaging portion 310 is set along a predetermined arc. The predetermined arc makes the contact area between the engaging portion 310 and the microphone 600 more reasonable, ensuring the stability of the engagement without causing excessive compression or stress concentration on the microphone 600. A guide surface 311 is provided on the side of the engaging portion 310 facing the opening of the surrounding plate 111. The guide surface 311 is inclined at a predetermined angle. This arrangement allows the guide surface 311 to guide the microphone 600 during insertion into the storage cavity 110, converting the pressure of the microphone 600 into a pushing force on the locking claw, thereby causing the locking claw to automatically avoid the microphone 600 and allowing it to smoothly enter the storage cavity 110. It also facilitates the smooth ejection of the microphone 600 when the engagement is released.

[0033] In practical applications, the predetermined curvature of the locking part 310 and the predetermined angle of the guide surface 311 can be flexibly adjusted according to the shape and size characteristics of different microphone models 600 to achieve the best locking and guiding effect. When the microphone 600 is inserted into the storage cavity 110, the guide surface 311 first contacts the microphone 600 and is pushed away from the initial position to avoid it. As the microphone 600 continues to be inserted, the locking part 310 resets and locks into a specific part of the microphone 600 to achieve stable locking. When it is necessary to remove the microphone 600, the button 400 is pressed, the drive rod assembly 500 drives the gripper 300 to rotate, and the locking part 310 separates from the microphone 600 with the assistance of the guide surface 311. The elastic base 200 pops the microphone 600 out.

[0034] Furthermore, such as Figure 2 As shown, to enable the gripper 300 to achieve elastic reset, engagement, and release under the control of the drive rod assembly 500, in this embodiment, the gripper 300 specifically includes a mounting rod 320. Correspondingly, a mounting shaft 120 is provided inside the housing 100, and the mounting rod 320 of the gripper 300 is elastically rotatably mounted on the mounting shaft 120. One end of the mounting rod 320 is fixedly connected to the engagement portion 310, forming a position corresponding to the clearance groove 112, and the other end is bent at a certain angle to form an adjustment portion 321. This adjustment portion 321 is used to cooperate with the drive rod assembly 500 to realize the rotation control of the gripper 300. Specifically, the mounting rod 320 and the mounting shaft 120 are elastically rotatably connected, so that the gripper 300 can maintain its initial position when no external force is applied, that is, the engagement portion 310 is facing the center of the receiving cavity 110. When the drive lever assembly 500 is moved by the button 400, the drive lever assembly 500 slides against the adjustment part 321 on the mounting rod 320, thereby pushing the mounting rod 320 to rotate around the mounting shaft 120. This, in turn, causes the engaging part 310 of the gripper 300 to move away from the center of the receiving cavity 110, thus releasing the engagement. When the button 400 is released, the restoring force of the elastic element will cause the mounting rod 320 and the gripper 300 to return to their initial positions, ready for the next engagement operation.

[0035] In one specific embodiment of this utility model, such as Figure 2As shown, a compression spring 121 is fitted onto the mounting shaft 120. One end of the compression spring 121 is fixedly connected to the mounting shaft 120, and the other end abuts against the mounting rod 320. When the gripper 300 is normally in the engaged state, the compression spring 121 is under a certain compression, providing elastic force to the mounting rod 320 to rotate towards the center of the receiving cavity 110, ensuring that the engaging part 310 can securely hold the microphone 600. When the drive rod assembly 500 pushes the mounting rod 320 to rotate around the mounting shaft 120, causing the gripper 300 to release from the microphone 600, the compression spring 121 will be further compressed; and when the button 400 is released, and the drive rod assembly 500 no longer applies a pushing force to the mounting rod 320, the elastic restoring force of the compression spring 121 will push the mounting rod 320 to rotate in the opposite direction, causing the gripper 300 to return to the initial engaged position, thereby realizing the elastic reset function of the gripper 300.

[0036] Correspondingly, based on the above embodiments, in a specific embodiment of this utility model, the driving component specifically consists of a pressure rod 510 and a support rod 520. The pressure rod 510 is connected to the button 400 to adjust its relative position within the housing 100 by changing the key travel of the button 400. The middle part of the support rod 520 is rotatably connected to the housing 100, forming a seesaw-like structure. One end of the support rod 520 is hinged to the pressure rod 510, allowing the pressure rod 510 to drive the support rod 520 to rotate when it moves. The other end of the support rod 520 is provided with a first push handle 521 and a second push handle 522 spaced at predetermined intervals. In the middle, the first push handle 521 corresponds to the position of the adjustment part 321 of one gripper 300, and the second push handle 522 corresponds to the position of the adjustment part 321 of the other gripper 300. When the user presses the button 400, the button 400 drives the pressure rod 510 to move. The movement of the pressure rod 510 drives the support rod 520 to rotate around its middle part. During the rotation of the support rod 520, the first push handle 521 and the second push handle 522 respectively apply a pushing force to the adjustment parts 321 of the two grippers 300, so that the two grippers 300 rotate in opposite directions around the mounting shaft 120, thereby driving the two engaging parts 310 away from the center of the storage cavity 110 and releasing the engagement of the microphone 600. When the user releases button 400, the support rod 520 returns to its initial position along with the pressure rod 510. The first push handle 521 and the second push handle 522 no longer apply force to the adjustment part 321 of the gripper 300. At this time, the elastic restoring force of the compression spring 121 pushes the mounting rod 320 and the gripper 300 back to their initial engagement position, preparing for the next microphone 600 storage.

[0037] In another possible embodiment of this utility model, such as Figure 1 and Figure 2As shown, to allow the button 400 to quickly reset and provide space for the reset of the pressure rod 510 and the support rod 520, in this embodiment, the housing 100 also includes a mounting cavity 130 disposed on one side of the receiving cavity 110. The button 400 is slidably disposed in the mounting cavity 130, and the pressing end of the button 400 for operation extends through the mounting cavity 130 to the outer surface of the housing 100. A reset spring 410 is disposed between the button 400 and the bottom plate of the mounting cavity 130 within the mounting cavity 130. A slotted structure can be provided on the base plate to provide clearance for the pressure lever 510 (with the return spring 410 fitted onto the pressure lever 510). When the user presses the button 400, the return spring 410 is compressed, accumulating elastic potential energy. When the user releases the button 400, the elastic restoring force of the return spring 410 pushes the button 400 back to its initial position quickly, thereby providing tension and necessary space for the return of the pressure lever 510 and the support rod 520, ensuring that the entire button-operated microphone storage compartment can operate smoothly and stably in a cyclical manner.

[0038] In actual setup, the button 400 is preferably located on the side of the housing 100 corresponding to the opening of the storage cavity 110, and the sliding direction of the button 400 corresponds to the direction of the central axis of the storage cavity 110. This setup allows the user to more intuitively and conveniently control the opening and closing of the gripper 300 when operating the button 400, thereby realizing the storage and removal of the microphone 600. Furthermore, to improve user comfort and convenience, the surface of the button 400 can be treated with an anti-slip finish, such as using a frosted material or an anti-slip texture. This allows the user's fingers to better contact the button 400 when pressing it, reducing slippage. Moreover, a sealing structure, such as a sealing ring, can be provided at the contact point between the button 400 and the housing 100 to prevent dust, moisture, and other impurities from entering the mounting cavity 130, affecting the normal sliding of the button 400 and the lifespan of components such as the return spring 410, thus ensuring stable and reliable operation of the button-operated microphone storage compartment in various environments.

[0039] In another possible embodiment of this utility model, such as Figure 1 and Figure 2As shown, the aforementioned elastic base 200 specifically includes a base 210 and a lifting spring 220. The lifting spring 220 connects the housing 100 at the bottom of the corresponding storage cavity 110 and the base 210. The base 210 can be made of a material with certain elasticity and cushioning properties, such as silicone or soft plastic. In the temporary storage state, since the microphone 600 rests on the base 210 solely by its own weight, the compression degree of the lifting spring 220 is relatively small, which can maintain the stability of the base 210 and the microphone 600, while also allowing the user to easily access the microphone 600. In the fully stored state, when the user presses the microphone 600 to further compress the elastic base 200, the lifting spring 220 accumulates more elastic potential energy. When microphone 600 needs to be removed, press button 400 to release the gripper 300 from the microphone 600. The elastic potential energy stored in lifting spring 220 is quickly released, lifting microphone 600 upward and causing part of microphone 600 to pop out of storage cavity 110 for easy grabbing by the user.

[0040] The flexible base 200 ensures appropriate elasticity and cushioning when microphones 600 of varying weights are inserted. It also helps to distribute stress when the microphone is subjected to bumps or knocks, further protecting it from damage. Furthermore, the shape and size of the base 210 are adapted to the bottom shape of the microphone 600, increasing the contact area, improving stability, and preventing the microphone 600 from shaking within the storage cavity 110.

[0041] Based on the above embodiments, the actual usage process of the button-operated spring-loaded microphone storage compartment of this utility model is as follows: When using the microphone 600, if the user only needs to temporarily place it for easy access, the microphone 600 can be directly inserted into the storage cavity 110. Under its own weight, the bottom of the microphone 600 contacts the base 210 of the elastic base 200. At this time, the lifting spring 220 is slightly compressed, and part of the microphone 600 is exposed outside the housing 100, in a temporary storage state. In this state, the user can easily pick up the microphone 600 for use, and due to the combined action of the elastic base 200, the surrounding plate 111, and the sleeve 140, the microphone 600 can remain relatively stable and will not easily shake or fall off.

[0042] When the user needs to fully retract the microphone 600 to ensure its safety, stability, and to avoid occupying external space, the microphone 600 can be inserted into the storage cavity 110 and a certain amount of pressure applied. As the microphone 600 moves downward, its housing will press the engaging portion 310 of the clamp 300, causing the clamp 300 to rotate and separate along the mounting shaft 120. When the microphone 600 reaches the predetermined position within the storage cavity 110, the clamp 300 returns to its original position under the elastic restoring force of the compression spring 121, and the engaging portion 310 penetrates into the storage cavity 110 along the relief groove 112, accurately engaging a specific part of the microphone 600 (such as a tenon / groove or a custom slot structure), achieving a secure lock. At this point, the microphone 600 is completely hidden and stored within the housing 100, in a fully retracted state. In this state, even if the speaker is subjected to bumps or collisions, the microphone 600 will not detach from the storage cavity 110, effectively avoiding the risk of damage.

[0043] With the microphone 600 fully retracted, when the user needs to use the microphone 600 again, they simply press the button 400 located in the mounting cavity 130 on the side of the housing 100 with their finger. Upon pressure, the button 400 slides in a predetermined direction within the mounting cavity 130, compressing the return spring 410 and simultaneously moving the pressure rod 510 connected to the button 400. The movement of the pressure rod 510 drives the support rod 520 to rotate around its center. The first push handle 521 and the second push handle 522 at both ends of the support rod 520 apply a pushing force to the adjusting parts 321 of the two grippers 300, causing the two grippers 300 to rotate in opposite directions around the mounting shaft 120. The engaging part 310 then moves away from the center of the storage cavity 110, releasing the microphone 600 from its engagement. Simultaneously, the elastic potential energy stored in the lifting spring 220 of the elastic base 200 is rapidly released, lifting the microphone 600 upwards and partially ejecting it from the storage cavity 110, allowing the user to easily access the microphone 600.

[0044] This utility model's button-operated spring-loaded microphone storage compartment can achieve different storage effects for the microphone 600 to meet different user needs. At the same time, through the structural design of its storage cavity 110, claws, and elastic base 200, the microphone 600 in the storage state can be protected and vibration-damped, effectively preventing the microphone 600 from falling off and being damaged when the speaker is subjected to bumps or collisions.

[0045] Based on the above embodiments, this utility model also provides a smart speaker, which includes the button-operated spring-loaded microphone storage compartment described in the above embodiments, such as... Figure 1 , Figure 4 and Figure 5As shown, this button-operated spring-loaded microphone storage compartment for smart speakers includes: a housing, the housing including a storage cavity, and a flexible base at the bottom of the storage cavity; two grippers, symmetrically and elastically rotatably disposed on both sides of the housing corresponding to the storage cavity, each gripper including a locking part that penetrates into the storage cavity; and a button, which is slidably disposed on one side of the housing, with a drive rod assembly connected to the button. The drive rod assembly abuts against the two grippers respectively, and when the button moves, the drive rod assembly drives the two grippers to rotate in opposite directions. This invention, by providing a storage cavity within the housing, symmetrical grippers on both sides of the storage cavity, and controlling it with a button and drive rod assembly, can store and lock the microphone in the storage cavity. This button-operated spring-loaded microphone storage compartment can be used in outdoor speakers to store and protect the microphone, effectively preventing the microphone from falling off and being damaged when the speaker is subjected to bumps or collisions.

[0046] In summary, this utility model provides a button-operated spring-loaded microphone storage compartment and a smart speaker. The button-operated spring-loaded microphone storage compartment includes: a housing, which includes a storage cavity with a flexible base at its bottom; two grippers symmetrically and elastically rotatably disposed on opposite sides of the storage cavity within the housing, each gripper including a locking portion that penetrates into the storage cavity; and a button that is slidably engaged on one side of the housing, with a drive rod assembly connected to the button. The drive rod assembly abuts against the two grippers, and when the button moves, the drive rod assembly causes the two grippers to rotate in opposite directions. This utility model, by providing a storage cavity within the housing, symmetrical grippers on both sides of the storage cavity, and controlling the microphone through the button and drive rod assembly, can effectively store and lock the microphone within the storage cavity. This button-operated spring-loaded microphone storage compartment can be used in outdoor speakers to store and protect the microphone, effectively preventing the microphone from falling off and being damaged when the speaker is subjected to bumps or collisions.

[0047] 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 push-button type microphone storage compartment, characterized in that, The push-button microphone storage compartment includes: The housing includes a storage cavity, and a flexible base is provided at the bottom of the storage cavity; The grippers are symmetrically and elastically rotatably disposed on both sides of the housing corresponding to the storage cavity. Each gripper includes a locking part that penetrates into the storage cavity. A button is slidably mounted on one side of the housing. A drive rod assembly is connected to the button, and the drive rod assembly abuts against the two grippers respectively. When the button moves, the drive rod assembly drives the two grippers to rotate in opposite directions.

2. The push-button spring-loaded microphone storage compartment according to claim 1, characterized in that, The housing is provided with a surrounding plate corresponding to the position of the storage cavity, and the hollow space of the surrounding plate forms the storage cavity. The surrounding plate includes two hollowed-out and oppositely arranged clearance grooves. The engaging portion extends into the receiving cavity along the relief groove.

3. The push-button spring-loaded microphone storage compartment according to claim 2, characterized in that, The engaging part is arranged along a predetermined arc, and a guide surface is provided on the side of the engaging part facing the opening of the enclosure. The guide surface is inclined at a predetermined angle.

4. The push-button spring-loaded microphone storage compartment according to claim 2, characterized in that, The gripper includes a mounting rod, which is elastically rotatably mounted on a mounting shaft within the housing. One end of the mounting rod is fixedly connected to the engaging part, and the other end is bent at a certain angle to form an adjusting part. The driving rod assembly slides against the adjusting part.

5. The push-button spring-loaded microphone storage compartment according to claim 4, characterized in that, The drive lever assembly includes: A pressure rod, which is connected to the button; The support rod is rotatably connected to the housing at its middle part, and one end of the support rod is hinged to the pressure rod. A first push handle and a second push handle are provided at a predetermined distance on the other end of the support rod. The first push handle and the second push handle are respectively slidably abutting against the adjustment parts on the two grippers.

6. The push-button spring-loaded microphone storage compartment according to claim 4, characterized in that, A compression spring is fitted onto the mounting shaft. One end of the compression spring abuts against the mounting rod, and the other end abuts against a baffle located inside the housing corresponding to the position of the mounting shaft. The compression springs on the two grippers are arranged in opposite directions.

7. The push-button spring-loaded microphone storage compartment according to claim 1, characterized in that, The elastic base includes a base and a lifting spring. The lifting spring connects the housing corresponding to the bottom of the storage cavity and the base. The base is used to support the microphone.

8. The push-button spring-loaded microphone storage compartment according to claim 1, characterized in that, The housing includes a mounting cavity disposed on one side of the storage cavity, the button is slidably disposed in the mounting cavity, and the pressing end of the button extends out of the mounting cavity; A reset spring is provided inside the mounting cavity to elastically abut against the button.

9. The push-button spring-loaded microphone storage compartment according to claim 1, characterized in that, The button is located on the end face of the housing corresponding to the opening of the storage cavity, and the sliding direction of the button corresponds to the direction of the central axis of the storage cavity.

10. A smart speaker, characterized in that, The smart speaker includes the button-operated spring-loaded microphone storage compartment as described in any one of claims 1-9.

Citation Information

Patent Citations

  • Multifunctional multipoint wireless series outdoor karaoke Bluetooth sound equipment

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