Wireless microphone charging bin and wireless microphone charging system

By designing the rotating components of the fixed seat, rotary seat and elastic parts in the wireless microphone charging chamber, the problem of difficulty in maintaining the open cover is solved, and the stable opening and closing of the ceiling is achieved and the user experience is improved.

CN223168393UActive Publication Date: 2025-07-29SHENZHEN MAONO TECH CO LTD
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Patent Information

Application Number
CN202422437524.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-09
Publication Date
2025-07-29
Estimated Expiration
2034-10-09

AI Technical Summary

Technical Problem

The top cover of the wireless microphone charging chamber lacks rotation support, which makes it difficult to maintain the open cover state and is inconvenient for users to use.

Method used

A rotating assembly including a fixed seat, a rotating seat and an elastic member is designed so that the top cover is rotatably connected to the fixed seat through a rotating seat. The elastic member produces elastic deformation when the top cover rotates, providing support to maintain the open state of the top cover.

Benefits of technology

The top cover can be kept stably in the open state, improving the convenience and efficiency of users' use, and even without the user's need to apply additional force during the closing and opening of the cover, realizing automated operations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a wireless microphone charging bin and a wireless microphone charging system. The wireless microphone charging bin comprises a bin body, a top cover and a rotating assembly. A bin opening is formed in the bin body. The top cover has a first state for opening the bin opening and a second state for closing the bin opening, and the top cover is suitable for being switched between the first state and the second state. The rotating assembly comprises a fixed seat, a rotating seat and an elastic piece; the fixed seat is connected with the bin body; the rotating seat is connected with the top cover, and the rotating seat is rotationally connected with the fixed seat; the first end of the elastic piece is connected with the fixing base, the second end of the elastic piece is connected with the rotating base, and the elastic piece is suitable for generating elastic deformation when the top cover rotates. The elastic piece in the design can effectively support the top cover when the top cover is in the first state, so that the top cover can be maintained in the first state, and the use convenience of a user is effectively improved.
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Description

Technical Field

[0001] This application relates to the technical field of microphones, and particularly to a wireless microphone charging case and a wireless microphone charging system. Background Art

[0002] Wireless microphones are generally charged through a dedicated wireless microphone charging case. The charging case includes a case body and a top cover, and the top cover is rotatably connected to the case body; the top cover has an open cover state for opening the case opening of the case body and a closed cover state for closing the case opening of the case body. However, due to the lack of rotational support for the top cover in the related art, it is difficult to maintain the open cover state of the top cover, which is not convenient for users. Therefore, how to effectively improve the structure of the wireless microphone charging case so that the top cover can maintain the open cover state for the convenience of users has become an urgent problem to be solved. Summary of the Utility Model

[0003] The embodiments of this application provide a wireless microphone charging case and a wireless microphone charging system, which can solve the problem that in the related art, the open cover state of the top cover of the wireless microphone charging case is difficult to maintain due to the lack of rotational support for the top cover, which is not convenient for users.

[0004] In a first aspect, the embodiments of this application provide a wireless microphone charging case; the wireless microphone charging case includes a case body, a top cover, and a rotating assembly. The case body forms a case opening. The top cover has a first state for opening the case opening and a second state for closing the case opening. The top cover is adapted to switch between the first state and the second state. The rotating assembly includes a fixed seat, a rotating seat, and an elastic member. The fixed seat is connected to the case body, the rotating seat is connected to the top cover, and the rotating seat is rotatably connected to the fixed seat. The first end of the elastic member is connected to the fixed seat, and the second end of the elastic member is connected to the rotating seat. The elastic member is adapted to generate elastic deformation when the top cover rotates.

[0005] In a second aspect, the embodiments of this application provide a wireless microphone charging system; the wireless microphone charging system includes a wireless microphone and the above-mentioned wireless microphone charging case. The case body has a microphone mounting position, and the wireless microphone is mounted on the case body corresponding to the microphone mounting position.

[0006] Based on the wireless microphone charging case and the wireless microphone charging system of the embodiments of this application, by designing the fixed seat and the rotating seat, the top cover is rotatably connected to the case body through the rotating seat and the fixed seat; by designing the elastic member to be adapted to generate elastic deformation when the top cover rotates, so when the top cover is in the first state, since the position of the top cover relative to the case body is fixed, the elastic member will not generate elastic deformation. At this time, the elastic member provides support for the top cover so that the top cover can be maintained in the first state, thus facilitating the use of users. Description of the Drawings

[0007] To more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present application. For those skilled in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0008] Figure 1 Schematic diagram of the structure of a wireless microphone charging system in an embodiment of the present application;

[0009] Figure 2 Partial schematic diagram of the structure of a wireless microphone charging case in an embodiment of the present application;

[0010] Figure 3 For Figure 2 Enlarged schematic diagram of the structure at A in

[0011] Figure 4 Schematic diagram of the structure of a rotating component in an embodiment of the present application;

[0012] Figure 5 Exploded schematic diagram of the structure of a rotating component in an embodiment of the present application;

[0013] Figure 6 Cross-sectional schematic diagram of the top cover in the first state in an embodiment of the present application;

[0014] Figure 7 Cross-sectional schematic diagram of one position during the process of the top cover switching from the first state (second state) to the second state (first state) in an embodiment of the present application;

[0015] Figure 8 Cross-sectional schematic diagram of the top cover in the second state in an embodiment of the present application;

[0016] Figure 9 Schematic diagram of the structure of an elastic member in an embodiment of the present application;

[0017] Figure 10 Schematic diagram of the structure of a wireless microphone charging case in an embodiment of the present application.

[0018] Reference numerals: 1, wireless microphone charging case; 10, case body; 10a, case opening; 10b, microphone mounting position; 20, top cover; 30, rotating assembly; 31, fixed seat; 32, rotating seat; 33, elastic member; 331, first connecting portion; 3311, L-shaped elastic arm; 332, second connecting portion; 3321, C-shaped elastic arm; 333, third connecting portion; 3331, V-shaped elastic arm; 34, rotating shaft; 40, first attracting member; 41, first magnet; 50, second attracting member; 51, second magnet; 60, magnetic sensor; 70, magnetic conductive member; 2, wireless microphone; P1, first intersection point; P2, second intersection point; P3, third intersection point; P4, fourth intersection point; P5, fifth intersection point; L1, first connecting line; L2, second connecting line; L3, third connecting line; L4, fourth connecting line. Detailed implementation manners

[0019] In order to make the objectives, technical solutions and advantages of the present application clearer and more understandable, the present application 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 the present application and are not used to limit the present application.

[0020] Please refer to Figures 1-3 As shown, in a first aspect, the present application provides a wireless microphone charging case 1, which can improve the convenience of use for users.

[0021] The wireless microphone charging case 1 includes a case body 10, a top cover 20 and a rotating assembly 30. The case body 10 is formed with a case opening 10a. The top cover 20 has a first state of opening the case opening 10a and a second state of closing the case opening 10a, and the top cover 20 is adapted to switch between the first state and the second state. The rotating assembly 30 includes a fixed seat 31, a rotating seat 32 and an elastic member 33; the fixed seat 31 is connected to the case body 10; the rotating seat 32 is connected to the top cover 20, and the rotating seat 32 is rotatably connected to the fixed seat 31; the first end of the elastic member 33 is connected to the fixed seat 31, and the second end of the elastic member 33 is connected to the rotating seat 32, and the elastic member 33 is adapted to generate elastic deformation when the top cover 20 rotates.

[0022] The following will expand and introduce the specific structure of the wireless microphone charging case 1 with reference to Figures 1-10 the accompanying drawings.

[0023] As Figures 1-3 shown, the wireless microphone charging case 1 includes a case body 10, a top cover 20 and a rotating assembly 30.

[0024] The housing 10 serves as the housing of the wireless microphone charging case 1. The specific shape of the housing 10 is not limited here, and designers can make a reasonable design according to actual needs; for example, the outer contour shape of the housing 10 can be but is not limited to a cuboid-like or cylinder-like shape. The specific preparation material of the housing 10 is not limited here either, and designers can make a reasonable selection according to actual needs; for example, the preparation material of the housing 10 can be but is not limited to one of plastics or plastics; in this way, the raw material source is wide, it is easy to obtain, and the cost of the wireless microphone charging case 1 can be effectively reduced.

[0025] The housing 10 is formed with a housing opening 10a; the housing opening 10a is the opening of the housing 10 for the wireless microphone 2 to be inserted into the microphone mounting position 10b of the housing 10 (that is, the area in the housing 10 for accommodating the wireless microphone 2, such as an installation groove).

[0026] The top cover 20 serves as the cover of the wireless microphone charging case 1. The specific shape of the top cover 20 is not limited here, and designers can make a reasonable design according to actual needs; for example, the outer contour shape of the top cover 20 can be but is not limited to a cuboid-like or cylinder-like shape. The specific preparation material of the top cover 20 is not limited here either, and designers can make a reasonable selection according to actual needs; for example, the preparation material of the top cover 20 can be but is not limited to one of plastics or plastics; in this way, the raw material source is wide, it is easy to obtain, and the cost of the wireless microphone charging case 1 can be effectively reduced.

[0027] The top cover 20 has a first state and a second state; in the first state, the top cover 20 opens the housing opening 10a of the housing 10, and at this time, the user can take out the wireless microphone 2 to be used stored in the microphone mounting position 10b of the housing 10, or can insert the used wireless microphone 2 into the microphone mounting position 10b of the housing 10; in the second state, the top cover 20 closes the housing opening 10a of the housing 10, and at this time, the controller of the wireless microphone charging case 1 (not shown in the figure and introduced below) can control the battery of the wireless microphone charging case 1 (not shown in the figure) to charge the wireless microphone 2 stored in the microphone mounting position 10b of the housing 10 according to the actual situation. The top cover 20 can be switched between the above first state and the above second state.

[0028] As Figures 3-5 shown, the rotating assembly 30 serves as the connecting structure of the wireless microphone charging case 1 for connecting the top cover 20 and the housing 10; the rotating assembly 30 includes a fixed seat 31, a rotating seat 32 and an elastic member 33.

[0029] The fixed seat 31 serves as one of the connecting seats of the rotating assembly 30. The specific structure of the fixed seat 31 is not limited herein, and designers can make reasonable designs according to actual needs; for example, the fixed seat 31 can be, but is not limited to, in a plate-like structure. The specific preparation material of the fixed seat 31 is not limited herein, and designers can make reasonable selections according to actual needs; for example, the preparation material of the fixed seat 31 can be, but is not limited to, one of plastics or plastics; thus, the raw material source is wide, it is easy to obtain, and the cost of the wireless microphone charging case 1 can be effectively reduced. It should be noted that the preparation material of the fixed seat 31 and the preparation material of the case body 10 can be the same or different.

[0030] The fixed seat 31 is connected to the case body 10; the specific connection method between the fixed seat 31 and the case body 10 is not limited herein, and designers can make reasonable designs according to actual needs; for example, the fixed seat 31 can be, but is not limited to, detachably connected to the case body 10 by at least one of the methods such as screwing, clamping or plugging; again, for example, the fixed seat 31 can also be, but is not limited to, non-detachably connected to the case body 10 by means of riveting, gluing, injection molding or 3D printing.

[0031] The rotating seat 32 serves as the other connecting seat of the rotating assembly 30. The specific structure of the rotating seat 32 is not limited herein, and designers can make reasonable designs according to actual needs; for example, the rotating seat 32 can be, but is not limited to, in an angle seat structure. The specific preparation material of the rotating seat 32 is not limited herein, and designers can make reasonable selections according to actual needs; for example, the preparation material of the rotating seat 32 can be, but is not limited to, one of plastics or plastics; thus, the raw material source is wide, it is easy to obtain, and the cost of the wireless microphone charging case 1 can be effectively reduced. It should be noted that the preparation material of the rotating seat 32 and the preparation material of the top cover 20 can be the same or different.

[0032] The rotating seat 32 is connected to the top cover 20; the specific connection method between the rotating seat 32 and the top cover 20 is not limited herein, and designers can make reasonable designs according to actual needs; for example, the rotating seat 32 can be, but is not limited to, detachably connected to the top cover 20 by at least one of the methods such as screwing, clamping or plugging; again, for example, the rotating seat 32 can also be, but is not limited to, non-detachably connected to the top cover 20 by means of riveting, gluing, injection molding or 3D printing.

[0033] The rotating seat 32 is rotatably connected to the fixed seat 31; thus, the rotational connection between the top cover 20 and the case body 10 can be realized, and the top cover 20 can be flipped to switch between the first state and the second state. For example, the rotating assembly 30 may further include a rotating shaft 34, and the rotating seat 32 is rotatably connected to the fixed seat 31 through the rotating shaft 34.

[0034] The elastic member 33 serves as an enabling member for the rotating assembly 30. On the one hand, it is used to fix the position of the top cover 20 when it is in the above-mentioned first state / above-mentioned second state. On the other hand, it is used to drive the top cover 20 to switch between the above-mentioned first state and the second state. Here, the specific preparation material of the elastic member 33 is not limited, and the designer can make a reasonable choice according to actual needs. For example, the preparation material of the elastic member 33 can be, but is not limited to, carbon steel, low manganese steel, silicon manganese steel, chromium vanadium steel, metallic nickel, etc. The specific manifestation form of the elastic member 33 will be introduced in detail below.

[0035] The first end of the elastic member 33 is connected to the fixed seat 31, and the second end of the elastic member 33 is connected to the rotating seat 32. Here, the specific connection method between the elastic member 33 and the fixed seat 31 / rotating seat 32 is not limited, and the designer can make a reasonable design according to actual needs. For example, the elastic member 33 can be fixedly connected to the fixed seat 31 / rotating seat 32, or can be rotatably connected to the fixed seat 31 / rotating seat 32. And it can be understood that for different specific manifestation forms of the elastic member 33, the specific connection method between the elastic member 33 and the fixed seat 31 / rotating seat 32 is also different.

[0036] The elastic member 33 is adapted to generate elastic deformation when the top cover 20 rotates; that is to say, as long as the position of the top cover 20 relative to the bin body 10 changes, the elastic member 33 will undergo elastic deformation. And it can be understood that when the top cover 20 is in the above-mentioned first state, at this time the position of the top cover 20 relative to the bin body 10 is fixed, so the elastic member 33 will not generate elastic deformation; similarly, when the top cover 20 is in the above-mentioned second state, at this time the position of the top cover 20 relative to the bin body 10 is also fixed, so the elastic member 33 will not generate elastic deformation either. Thus, when the user needs to switch the top cover 20 from the above-mentioned first state to the above-mentioned second state, since the elastic member 33 will generate elastic deformation during the rotation of the top cover 20, the force applied by the user on the top cover 20 needs to overcome the reaction force corresponding to the elastic deformation of the elastic member 33 in order to make the top cover 20 rotate towards the direction of the bin opening 10a of the bin body 10 to switch from the above-mentioned first state to the above-mentioned second state; similarly, when the user needs to switch the top cover 20 from the above-mentioned second state to the above-mentioned first state, since the elastic member 33 will generate elastic deformation during the rotation of the top cover 20, the force applied by the user on the top cover 20 also needs to overcome the reaction force corresponding to the elastic deformation of the elastic member 33 in order to make the top cover 20 rotate towards the direction away from the bin opening 10a of the bin body 10 to switch from the above-mentioned second state to the above-mentioned first state.

[0037] Based on the wireless microphone charging case 1 in the embodiments of the present application, by designing the fixed seat 31 and the rotating seat 32, the top cover 20 is rotatably connected to the fixed seat 31 through the rotating seat 32 to achieve its rotational connection with the case body 10; by designing the elastic member 33 to be adapted to generate elastic deformation when the top cover 20 rotates, so when the top cover 20 is in the first state, since the position of the top cover 20 relative to the case body 10 is fixed, the elastic member 33 will not generate elastic deformation. At this time, the elastic member 33 provides support for the top cover 20 so that the top cover 20 can be maintained in the first state, thus facilitating user use.

[0038] As Figures 3-5 shown, the first end of the elastic member 33 is rotatably connected to one side of the fixed end of the fixed seat 31 close to the rotating seat 32, and the rotation axis of the first end of the elastic member 33 is eccentrically arranged relative to the rotation axis of the rotating seat 32; the second end of the elastic member 33 is rotatably connected to the free end of the rotating seat 32. The rotation axis of the first end of the elastic member 33 forms a first intersection point P1 in a plane perpendicular to the rotation axis of the rotating seat 32; the rotation axis of the second end of the elastic member 33 forms a second intersection point P2 in the same plane; the first intersection point P1 and the second intersection point P2 are used to form a first connection line L1, and the elastic member 33 is adapted to generate elastic deformation in the direction of the first connection line L1 when the top cover 20 rotates.

[0039] It can be understood that the rotation axis of the rotating seat 32 forms a third intersection point P3 in the above plane, and the third intersection point P3 and the second intersection point P2 are used to form a second connection line L2.

[0040] As Figures 6-8 shown, the locus M is a circular locus formed with the above first intersection point P1 as the center and the above first connection line L1 as the radius when the top cover 20 is in the above first state / above second state; the locus N is a circular locus formed with the above third intersection point P3 as the center and the above second connection line L2 as the radius when the top cover 20 is in the above first state / above second state. The locus M and the locus N intersect to obtain a fourth intersection point P4 and a fifth intersection point P5. A third connection line L3 is formed between the fourth intersection point P4 and the third intersection point P3, a fourth connection line L4 is formed between the fifth intersection point P5 and the third intersection point P3, and a rotation angle α is formed between the third connection line L3 and the fourth connection line L4.

[0041] As Figure 6 shown, Figure 6 is a schematic cross-sectional structure diagram of the top cover 20 in the first state in an embodiment of the present application. As Figure 6 can be seen, at this time, the position of the top cover 20 relative to the case body 10 is fixed, the second intersection point P2 coincides with the fourth intersection point P4, and the elastic member 33 does not generate elastic deformation (that is, it is in a natural elongation state).

[0042] As Figure 7 shown,Figure 7 This is a cross-sectional structural diagram of a top cover 20 in one embodiment of the present application in a process of switching from a first state (second state) to a second state (first state). Figure 7 It can be seen that at this time, the top cover 20 rotates relative to the chamber body 10 to the position shown in the figure, the second intersection point P2 deviates from the trajectory M and falls on the inner side of the trajectory M, and the elastic member 33 is compressed to generate elastic deformation.

[0043] like Figure 8 As shown, Figure 8 FIG2 is a schematic cross-sectional view of the top cover 20 in an embodiment of the present application when the top cover 20 is in the second state. Figure 8 It can be seen that at this time, the position of the top cover 20 relative to the storage body 10 is fixed, the second intersection point P2 coincides with the fifth intersection point P5, and the elastic member 33 does not produce elastic deformation (that is, it is in a natural extension state).

[0044] It should be noted that if Figure 7 As shown, during the process of the top cover 20 switching from the above-mentioned first state to the above-mentioned second state, the elastic member 33 is always in a state of being compressed and elastically deformed; wherein, when the top cover 20 rotates from the above-mentioned first state to the position of one-half of the rotation angle α, the elastic member 33 is compressed and the elastic deformation generated by the elastic member 33 gradually increases until the top cover 20 rotates to the position of one-half of the rotation angle α, at which time the elastic deformation generated by the compression of the elastic member 33 reaches the maximum; when the top cover 20 rotates from the position of one-half of the rotation angle α to the above-mentioned second state, the elastic member 33 is compressed and the elastic deformation generated by the elastic member 33 gradually decreases from the maximum and finally decreases to zero (that is, when the top cover 20 is in the above-mentioned second state). Similarly, during the process of switching the top cover 20 from the above-mentioned second state to the above-mentioned first state, the elastic member 33 is always in a state of being compressed and elastically deformed; wherein, when the top cover 20 rotates from the above-mentioned second state to the position of one-half of the rotation angle α, the elastic member 33 is compressed and the elastic deformation generated by the elastic member 33 gradually increases until the top cover 20 rotates to the position of one-half of the rotation angle α, at which time the elastic deformation generated by the compression of the elastic member 33 reaches the maximum; when the top cover 20 rotates from the position of one-half of the rotation angle α to the above-mentioned first state, the elastic member 33 is compressed and the elastic deformation generated by the elastic member 33 gradually decreases from the maximum and finally decreases to zero (that is, when the top cover 20 is in the above-mentioned first state).

[0045] like Figures 6-8As shown, when the top cover 20 switches from the above first state to the above second state; in the first half of the process of closing the top cover 20 (that is, during the process of rotating from the first state to the position of the above one-half rotation angle α), the top cover 20 will be affected by the reaction force corresponding to the gradually increasing elastic deformation generated by the compression of the elastic member 33. This reaction force effectively maintains the first state of the top cover 20; in the second half of the process of closing the top cover 20 (that is, during the process of rotating from the position of the above one-half rotation angle α to the above second state), the top cover 20 will be affected by the reaction force corresponding to the gradually decreasing elastic deformation generated by the compression of the elastic member 33. This reaction force is conducive to the top cover 20 rotating towards the direction of the hatch 10a of the housing 10 at this time, thereby improving the rotation efficiency of the top cover 20. Even in the second half of the process of closing the top cover 20, the top cover 20 can be automatically closed without the user applying a force to the top cover 20. In this way, the practicability of the wireless microphone charging case 1 can be effectively improved.

[0046] As Figures 6-8 shown, when the top cover 20 switches from the above second state to the above first state; in the first half of the process of opening the top cover 20 (that is, during the process of rotating from the second state to the position of the above one-half rotation angle α), the top cover 20 will be affected by the reaction force corresponding to the gradually increasing elastic deformation generated by the compression of the elastic member 33. This reaction force effectively maintains the second state of the top cover 20; in the second half of the process of opening the top cover 20 (that is, during the process of rotating from the position of the above one-half rotation angle α to the above first state), the top cover 20 will be affected by the reaction force corresponding to the gradually decreasing elastic deformation generated by the compression of the elastic member 33. This reaction force is conducive to the top cover 20 rotating in a direction away from the hatch 10a of the housing 10 at this time, thereby improving the rotation efficiency of the top cover 20. Even in the second half of the process of opening the top cover 20, the top cover 20 can be automatically opened without the user applying a force to the top cover 20. In this way, the practicability of the wireless microphone charging case 1 can be effectively improved.

[0047] As Figure 9 shown, the elastic member 33 includes a first connecting portion 331, a second connecting portion 332, and a third connecting portion 333; the first connecting portion 331 is rotatably connected to the fixed seat 31 as the first end of the elastic member 33; the second connecting portion 332 is rotatably connected to the free end of the rotating seat 32 as the second end of the elastic member 33; the third connecting portion 333 is connected between the first connecting portion 331 and the second connecting portion 332. The third connecting portion 333 is bent towards the rotating seat 32, and the third connecting portion 333 is adapted to generate the above elastic deformation.

[0048] Among them, the first connecting portion 331, the second connecting portion 332, and the third connecting portion 333 can be, but are not limited to, formed into an integral structure by injection molding or 3D printing.

[0049] By designing the first connecting portion 331, the first connecting portion 331 serves as the first end of the elastic member 33 to achieve the connection between the elastic member 33 and the fixed seat 31; by designing the second connecting portion 332, the second connecting portion 332 serves as the second end of the elastic member 33 to achieve the connection between the elastic member 33 and the free end of the rotating seat 32; by designing the third connecting portion 333, the third connecting portion 333 is used to generate the above-mentioned elastic deformation during the rotation of the top cover 20, and this elastic deformation not only facilitates the top cover 20 to maintain the opening / closing operation, but also facilitates the top cover 20 to switch between the second state and the first state.

[0050] As Figure 9 shown, the first connecting portion 331 includes two relatively arranged L-shaped elastic arms 3311 rotatably connected to the fixed seat 31; the second connecting portion 332 includes a U-shaped elastic arm 3321 rotatably connected to the rotating seat 32; the third connecting portion 333 includes two parallel V-shaped elastic arms 3331; the two L-shaped elastic arms 3311 are connected to the ends of the two V-shaped elastic arms 3331 close to the fixed seat 31 in a one-to-one correspondence, and the ends of the two V-shaped elastic arms 3331 far from the fixed seat 31 are respectively connected to the two ends of the U-shaped elastic arm 3321.

[0051] By designing the first connecting portion 331 as the L-shaped elastic arm 3311, the second connecting portion 332 as the U-shaped elastic arm 3321, and the third connecting portion 333 as the V-shaped elastic arm 3331, the elastic member 33 is formed into a simple bracket structure, which is convenient for the processing of the elastic member 33 on the one hand and can also serve the purpose of saving materials on the other hand.

[0052] As Figure 5 shown, the wireless microphone charging case 1 further includes a hook structure (not shown in the figure), and the second end of the elastic member 33 is connected to the free end of the rotating seat 32 via the hook structure. In this way, the connection between the second end of the elastic member 33 and the free end of the rotating seat 32 can be achieved by hooking, so as to facilitate the assembly between the elastic member 33 and the rotating seat 32.

[0053] Specifically, the hook structure includes a hook (not shown in the figure) and a slot (not shown in the figure); the hook is provided on at least one of the second end of the elastic member 33 and the free end of the rotating seat 32; the slot is provided on at least the other of the second end of the elastic member 33 and the free end of the rotating seat 32; the hook is engaged with the slot. Among them, the hook can, but is not limited to, form an integral structure with the second end of the elastic member 33 and / or the free end of the rotating seat 32 by injection molding or 3D printing; the slot can also, but is not limited to, be formed on the free end of the rotating seat 32 and / or the second end of the elastic member 33 by injection molding or 3D printing. By designing the hook and the slot, the connection between the second end of the elastic member 33 and the free end of the rotating seat 32 can be realized by the engagement of the hook and the slot, thereby realizing the assembly between the elastic member 33 and the rotating seat 32, and the operation is simple.

[0054] As Figure 10 shown, the wireless microphone charging case 1 further includes a first attracting member 40, and the first attracting member 40 is provided on the edge of the case body 10 close to the case opening 10a; the wireless microphone charging case 1 further includes a second attracting member 50, and the second attracting member 50 is provided on the free end of the top cover 20 and is correspondingly arranged with the first attracting member 40; the first attracting member 40 and the second attracting member 50 are connected by magnetic attraction.

[0055] Among them, the first attracting member 40 can, but is not limited to, include at least one of a magnet and a steel sheet; the second attracting member 50 can also, but is not limited to, include at least one of a magnet and a steel sheet. For example, when the first attracting member 40 is a magnet and the corresponding second attracting member 50 is a steel sheet, the magnet serving as the first attracting member 40 attracts the steel sheet serving as the second attracting member 50 at this time; another example is that when the first attracting member 40 is a steel sheet and the corresponding second attracting member 50 is a magnet, the magnet serving as the second attracting member 50 attracts the steel sheet serving as the first attracting member 40 at this time; still another example is that when the first attracting member 40 is a magnet and the corresponding second attracting member 50 is also a magnet, the magnet serving as the first attracting member 40 and the magnet serving as the second attracting member 50 attract each other at this time.

[0056] By designing the first adsorbing member 40 and the second adsorbing member 50, a magnetic adsorption force is generated between the first adsorbing member 40 and the second adsorbing member 50. In the latter half of the process of closing the top cover 20, the top cover 20 gradually rotates towards the direction of the opening 10a of the housing 10, causing the second adsorbing member 50 to gradually approach the first adsorbing member 40 in space. A magnetic adsorption force is generated between the second adsorbing member 50 and the first adsorbing member 40, and this magnetic adsorption force can cooperate with the reaction force corresponding to the gradually decreasing elastic deformation generated by the compression of the elastic member 33 to further facilitate the rotation of the top cover 20 towards the direction of the opening 10a of the housing 10, thereby further improving the rotation efficiency of the top cover 20. By designing the first adsorbing member 40 and the second adsorbing member 50, when the top cover 20 is in the above-mentioned second state, the magnetic adsorption force generated between the second adsorbing member 50 and the first adsorbing member 40 can make the top cover 20 stably positioned on the housing 10, so as to effectively improve the connection stability between the top cover 20 and the housing 10 when the top cover 20 is in the above-mentioned second state.

[0057] Specifically, as Figure 10 shown, the first adsorbing member 40 includes a first magnet 41 connected to the housing 10; the second adsorbing member 50 includes a second magnet 51 connected to the top cover 20.

[0058] Among them, the number of the first magnets 41 can be one or more (more than two); and when the number of the first magnets 41 is more than one, the multiple first magnets 41 can be, but are not limited to, arranged at equal intervals along the edge of the opening 10a of the housing 10. Here, the specific connection method between the first magnet 41 and the housing 10 is not limited, and designers can make a reasonable design according to actual needs; for example, the first magnet 41 can be, but are not limited to, detachably connected to the housing 10 by at least one of screwing, clamping or plugging; or for another example, the first magnet 41 can also be, but are not limited to, non-detachably connected to the housing 10 by gluing.

[0059] The number of the second magnets 51 can be one or more (more than two); and when the number of the second magnets 51 is more than one, the multiple second magnets 51 can be, but are not limited to, arranged at intervals at the free end of the top cover 20. Here, the specific connection method between the second magnet 51 and the top cover 20 is not limited, and designers can make a reasonable design according to actual needs; for example, the second magnet 51 can be, but are not limited to, detachably connected to the top cover 20 by at least one of screwing, clamping or plugging; or for another example, the second magnet 51 can also be, but are not limited to, non-detachably connected to the top cover 20 by gluing.

[0060] By designing the first attracting member 40 as the first magnet 41 and the second attracting member 50 as the second magnet 51, in the latter half of the process of closing the top cover 20, the top cover 20 gradually rotates towards the direction of the opening 10a of the housing 10, so that the second magnet 51 gradually approaches the first magnet 41 in space, and a magnetic adsorption force is generated between the second magnet 51 and the first magnet 41. This magnetic adsorption force can cooperate with the reaction force corresponding to the gradually decreasing elastic deformation generated by the compression of the elastic member 33, so as to further facilitate the rotation of the top cover 20 towards the direction of the opening 10a of the housing 10, thereby further improving the rotation efficiency of the top cover 20. By designing the first attracting member 40 as the first magnet 41 and the second attracting member 50 as the second magnet 51, when the top cover 20 is in the above-mentioned second state, the magnetic adsorption force generated between the second magnet 51 and the first magnet 41 can make the top cover 20 stably positioned on the housing 10, so that the connection stability between the top cover 20 and the housing 10 in the above-mentioned second state can be effectively improved.

[0061] As Figure 10 shown, the wireless microphone charging bin 1 further includes a magnetic sensor 60 and a controller (not shown in the figure) disposed in the housing 10; the magnetic sensor 60 is used to sense the change of the magnetic field and generate a corresponding electrical signal; the controller is electrically connected to the magnetic sensor 60; the wireless microphone charging bin 1 further includes a prompting member (not shown in the figure) disposed on the housing 10; the controller is electrically connected to the prompting member, and the controller controls the prompting member to perform corresponding operations according to the electrical signal.

[0062] Wherein, when the magnetic sensor 60 senses that the magnetic field around the first magnet 41 changes, a first electrical signal (one of the above electrical signals, such as the digital signal "1") is generated. At this time, the controller controls the prompting member to be in the first prompting state according to the first electrical signal; when the magnetic sensor 60 senses that the magnetic field around the first magnet 41 does not change, a second electrical signal (another electrical signal different from the first electrical signal among the above electrical signals, such as the digital signal "0") is generated. At this time, the controller controls the prompting member to be in the second prompting state according to the second electrical signal.

[0063] The magnetic sensor 60 can be but is not limited to a Hall sensor.

[0064] The prompting member can be but is not limited to a speaker or an indicator light. For example, when the prompting member is a speaker, in the above-mentioned first prompting state, the speaker can broadcast voice prompts such as "the top cover 20 has been closed", and in the above-mentioned second prompting state, the speaker can broadcast voice prompts such as "the top cover 20 has been opened". Another example is that when the prompting member is an indicator light, in the above-mentioned first prompting state, the indicator light can display visual prompts such as "red", and in the above-mentioned second prompting state, the indicator light can display visual prompts such as "green".

[0065] By designing a controller, a magnetic field sensor, and a reminder, the controller can control the reminder to perform corresponding operations according to the electrical signal generated by the magnetic field change sensed by the magnetic field sensor. The user can then judge the current state of the top cover 20 based on the reminder, thus greatly improving the convenience of user use.

[0066] As Figure 10 shown, the wireless microphone charging case 1 further includes a magnetic conductive member 70 disposed in the case body 10. One end of the magnetic conductive member 70 extends to one side of the first magnet 41, and the other end of the magnetic conductive member 70 extends to one side of the magnetic sensor 60.

[0067] Among them, the specific preparation material of the magnetic conductive member 70 can be but is not limited to one of ferrite, cobalt-iron alloy, nickel-iron alloy, and ferrite. The specific structure of the magnetic conductive member 70 is not limited here, and the designer can make a reasonable design according to actual needs; for example, the magnetic conductive member 70 can be but is not limited to a columnar structure, a block structure, or a sheet structure.

[0068] By designing the magnetic conductive member 70, the magnetic conductive member 70 can conduct the magnetism of the first magnet 41 and the magnetism of the second magnet 51 corresponding to the first magnet 41 to the magnetic sensor 60, so that the magnetic sensor 60 can effectively sense the magnetic field change and generate a corresponding electrical signal.

[0069] It should be noted that the wireless microphone charging case 1 further includes a charging PCB board. The number of charging PCB boards is one group. The charging PCB board is disposed below the microphone mounting position 10b. The magnetic sensor 60 can be disposed on the charging PCB. After the magnetic conductive member 70 extends, the magnetism of the first magnet 41 disposed on the edge of the case body 10 close to the case opening 10a and the magnetism of the second magnet 51 corresponding to the first magnet 41 can both extend through the magnetic conductive member 70 and cover the magnetic sensor 60, without specially adding a separate circuit board for the magnetic sensor 60 for installation and connection. In this way, the number of circuit boards can be reduced to achieve space optimization.

[0070] Please refer to Figure 1 shown. In a second aspect, the present application proposes a wireless microphone charging system. The wireless microphone charging system includes a wireless microphone 2 and the above-mentioned wireless microphone charging case 1; the case body 10 has a microphone mounting position 10b; the wireless microphone 2 is mounted on the case body 10 corresponding to the microphone mounting position 10b.

[0071] Based on the wireless microphone charging system in the embodiments of the present application, having the above-mentioned wireless microphone charging case 1, the elastic member 33 can effectively support the top cover 20 when the top cover 20 is in the above-mentioned first state, so that the top cover 20 can be maintained in the first state, thereby effectively improving the convenience of user use.

[0072] In the drawings of this embodiment, the same or similar reference numerals correspond to the same or similar components; in the description of this application, it should be understood that if there are terms such as "upper", "lower", "left", "right", etc. indicating the orientation or positional relationship, it is based on the orientation or positional relationship shown in the drawings. This is only for the convenience of describing this application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, the terms describing the positional relationship in the drawings are only for illustrative purposes and cannot be understood as a limitation of this patent. For those of ordinary skill in the art, the specific meanings of the above terms can be understood according to specific circumstances.

[0073] The above are only the preferred embodiments of this application and are not intended to limit this application. Any modifications, equivalent replacements, and improvements made within the spirit and principle of this application shall be included in the protection scope of this application.

Claims

1. A wireless microphone charging case, characterized in that, Comprising: A bin body, which is formed with a bin opening; A top cover, having a first state of opening the bin opening and a second state of closing the bin opening, and the top cover is adapted to switch between the first state and the second state; A rotating assembly, including a fixed seat, a rotating seat and an elastic member, the fixed seat is connected to the bin body, the rotating seat is connected to the top cover, the rotating seat is rotatably connected to the fixed seat, a first end of the elastic member is connected to the fixed seat, a second end of the elastic member is connected to the rotating seat, and the elastic member is adapted to generate elastic deformation when the top cover rotates.

2. The wireless microphone charging bin according to claim 1, wherein The first end of the elastic member is rotatably connected to one side of the fixed end of the fixed seat close to the rotating seat, and the rotation axis of the first end of the elastic member is eccentrically arranged relative to the rotation axis of the rotating seat; The second end of the elastic member is rotatably connected to the free end of the rotating seat; Wherein, the rotation axis of the first end of the elastic member forms a first intersection point in a plane perpendicular to the rotation axis of the rotating seat, the rotation axis of the second end of the elastic member forms a second intersection point in the same plane, the first intersection point and the second intersection point are used to form a first connection line, and the elastic member is adapted to generate the elastic deformation in the direction of the first connection line when the top cover rotates.

3. The wireless microphone charging case according to claim 2, wherein, The elastic member includes: A first connecting portion, which is rotatably connected to the fixed seat as the first end of the elastic member; A second connecting portion, which is rotatably connected to the free end of the rotating seat as the second end of the elastic member; A third connecting portion, which is connected between the first connecting portion and the second connecting portion, bends towards the rotating seat, and is adapted to generate the elastic deformation.

4. The wireless microphone charging bin according to claim 3, wherein The first connecting portion includes two oppositely arranged L-shaped elastic arms rotatably connected to the fixed seat, the second connecting portion includes a U-shaped elastic arm rotatably connected to the rotating seat, and the third connecting portion includes two parallel V-shaped elastic arms; the two L-shaped elastic arms are respectively connected to one end of the two V-shaped elastic arms close to the fixed seat in a one-to-one correspondence, and the two ends of the two V-shaped elastic arms away from the fixed seat are respectively connected to the two ends of the U-shaped elastic arm.

5. The wireless microphone charging bin according to claim 2, wherein The wireless microphone charging bin further includes a hook structure, and the second end of the elastic member is connected to the free end of the rotating seat via the hook structure.

6. The wireless microphone charging bin according to claim 5, wherein The hook structure includes a hook and a slot, the hook is arranged on at least one of the second end of the elastic member and the free end of the rotating seat, the slot is arranged on at least the other of the second end of the elastic member and the free end of the rotating seat, and the hook is engaged with the slot.

7. The wireless microphone charging bin according to any one of claims 1-6, wherein The wireless microphone charging case further includes a first attracting member, which is disposed on the edge of the case body near the case opening; the wireless microphone charging case further includes a second attracting member, which is disposed at the free end of the top cover and corresponds to the first attracting member; the first attracting member and the second attracting member are connected by magnetic attraction.

8. The wireless microphone charging case according to claim 7, wherein the first attracting member includes a first magnet connected to the case body, and the second attracting member includes a second magnet connected to the top cover.

9. The wireless microphone charging case according to claim 8, wherein the wireless microphone charging case further includes a magnetic sensor and a controller disposed in the case body, the magnetic sensor is configured to sense a magnetic field change and generate a corresponding electrical signal, and the controller is electrically connected to the magnetic sensor; the wireless microphone charging case further includes a prompting member disposed on the case body, and the controller is electrically connected to the prompting member; the controller controls the prompting member to perform a corresponding operation according to the electrical signal.

10. A wireless microphone charging system, characterized in that, including: the wireless microphone charging case according to any one of claims 1-9, wherein the case body has a microphone mounting position; and a wireless microphone, which is mounted on the case body corresponding to the microphone mounting position.