Intelligent microphone storage assembly and intelligent device
Through the design of the intelligent microphone storage component, the charging part and the supporting base can move relative to each other, solving the problems of complex circuit layout and high design cost in the existing technology, and realizing convenient storage of the microphone and simplified circuit design.
Patent Information
- Application Number
- CN202422526924.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-18
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-10-18
AI Technical Summary
In existing audio systems, the charging structure and the fixing base are integrated together, which leads to complex circuit layout, high design cost and great difficulty.
An intelligent microphone storage assembly is designed, including a cylinder, a charging part and a supporting base. The charging part and the supporting base can move relative to each other. The supporting base is driven to reciprocate along the opening direction by the moving part, thereby realizing convenient storage and charging of the microphone.
The circuit layout complexity and design cost of the charging component are reduced, the design difficulty is simplified, and the difficulty of removing the microphone is reduced.
Smart Images

Figure CN223379271U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of audio, and in particular to an intelligent microphone storage component and an intelligent device. Background Art
[0002] An audio system usually includes a microphone and a speaker. The microphone is used to receive sound, and the speaker is used to play sound. The audio system is mainly used in indoor places. The microphone does not have a fixed placement and is usually placed directly on the table. In order to facilitate the storage and placement of the microphone, the existing speaker is provided with a microphone slot. A fixing seat and a charging structure are installed at the bottom of the microphone slot. The fixing seat and the charging structure are fixedly connected together. When the microphone needs to be removed or after the microphone is charged, the charging structure and the fixing seat can be pushed upward to push the microphone upward. However, since the charging structure needs to be integrated with the fixing seat, the circuit layout is more complicated, resulting in higher design costs and greater design difficulty. Utility Model Content
[0003] To this end, the present invention provides an intelligent microphone storage assembly and an intelligent device, which solves the technical problem that the charging structure needs to be integrated with the fixing base, making the circuit layout more complicated, resulting in high design costs and greater design difficulty.
[0004] To achieve the above-mentioned objectives, the present invention specifically provides the following technical solutions: an intelligent microphone storage assembly, comprising: a cylinder, provided with a first accommodating groove, one end of the first accommodating groove extends to the outer wall of the cylinder to form an opening; the first accommodating groove is used to accommodate the microphone; a charging component is arranged in the first accommodating groove, and the charging component is in a fixed state; the charging component is used to charge the microphone; a supporting seat is arranged on the side of the first accommodating groove away from the opening; the supporting seat is used to support the microphone; the supporting seat can reciprocate in a direction close to or away from the opening; a moving member is connected to the supporting seat; the moving member can drive the supporting seat to reciprocate in a direction close to or away from the opening.
[0005] Optionally, the supporting seat is provided with a second accommodating groove and a through opening, the through opening is located on the side of the supporting seat close to the opening, the through opening is respectively connected to the second accommodating groove and the first accommodating groove, and the charging component is located in the second accommodating groove; the supporting seat can move to a first position and a second position in the first accommodating groove; the second position is located on the side of the first position away from the opening; the charging component can move from the first position to the second position after being driven, so that at least part of the charging component extends from the through opening to the outside of the second accommodating groove.
[0006] Optionally, a hook lock is further included, which is connected to the supporting seat; the hook lock has a locking state in which it rotates to engage with the cylinder after being pressed for the first time to limit the supporting seat from sliding upward relative to the cylinder, and has an unlocking state in which it rotates to separate from the cylinder after being pressed again.
[0007] Optionally, a plurality of hook locking members are provided and are symmetrically arranged relative to the direction in which the supporting seat moves between the first position and the second position.
[0008] Optionally, the movable part includes a first magnetic part, an electromagnet and a control element; the electromagnet is located on the side of the supporting seat away from the opening, the first magnetic part is arranged at an end of the supporting seat close to the electromagnet, and the control element is electrically connected to the electromagnet and can control and change the magnetic pole of the electromagnet.
[0009] Optionally, the second accommodating groove includes a first groove and a second groove, the first groove is located near the opening of the second groove and is connected to the second groove; the charging part includes an abutting end and a connecting end, the connecting end is connected to the abutting end, the abutting end is movably set in the first groove, and the connecting end is movably set in the second groove, and the size of the cross-section of the first groove is larger than the size of the cross-section of the second groove and the size of the cross-section of the abutting end.
[0010] Optionally, a second elastic member is provided on a side portion of one end of the charging member close to the opening, and the charging member can be elastically connected to the microphone through the second elastic member.
[0011] Optionally, a second magnetic component is provided on a side of the supporting base close to the opening, and the second magnetic component is used to be adsorbed with the microphone.
[0012] Optionally, the movable member is a first elastic member, both ends of which are respectively connected to the bottom wall of the first accommodating groove and the supporting seat, and the first elastic member has an elastic restoring force that pushes the supporting seat to move from the second position to the first position.
[0013] In addition, a smart device is provided, comprising the above-mentioned smart microphone storage assembly.
[0014] Compared with the prior art, the present invention has the following beneficial effects: in an embodiment of the present invention, the microphone can be placed into the first accommodating groove between the openings; when the microphone is placed into the first accommodating groove, the microphone can push the supporting seat to move, so that the charging supporting seat can be moved in a direction away from the opening; the microphone can be supported by the supporting seat, and when the microphone needs to be taken out of the first accommodating groove, the supporting seat can be driven by the moving part to reciprocate in a direction close to or away from the opening, so that the microphone can be lifted by the supporting seat, reducing the difficulty of removing the microphone, and compared with the existing speaker in which the charging structure and the supporting structure are integrated together, the charging part and the supporting seat of the limiting sleeve can move relative to each other and separate from each other, so that the circuit layout of the charging part is relatively simple, the design cost is low and the design difficulty can be reduced. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0016] Figure 1 A schematic diagram of the structure of a smart device and a microphone provided in an embodiment of the present utility model;
[0017] Figure 2 A cross-sectional view of a smart microphone storage assembly provided by an embodiment of the present utility model;
[0018] Figure 3 A schematic structural diagram of a charging component, a supporting base, a moving component, and a hook and lock component of an intelligent microphone storage assembly provided in an embodiment of the present utility model;
[0019] Figure 4 A schematic structural diagram of a charging component, a supporting base, a moving component, and two hooking components of an intelligent microphone storage assembly provided in an embodiment of the present invention;
[0020] Figure 5 A schematic structural diagram of a charging component, a supporting base, and another moving component of a smart microphone storage assembly provided by an embodiment of the present utility model;
[0021] Figure 6 A cross-sectional view of a supporting base of a smart microphone storage assembly provided by an embodiment of the present utility model;
[0022] Figure 7 A schematic structural diagram of another charging component of a smart microphone storage assembly provided by an embodiment of the present utility model;
[0023] Figure 8 A schematic structural diagram of a cylinder, a charging component and a rotating arm of an intelligent microphone storage assembly provided in an embodiment of the present invention.
[0024] Reference numerals:
[0025] Microphone 10; barrel 100; slide groove 101; first accommodating groove 110; locking boss 111; first channel 112; second channel 113; avoidance groove 114; upper guide slope 115; opening 120; supporting seat 200; annular boss 201; through-port 210; second accommodating groove 220; first groove 221; second groove 222; second magnetic member 230; charging member 300; abutting end 310; connecting end 320; second elastic member 330; moving member 400; first magnetic member 410; electromagnet 420; hook lock member 500; rotating arm 510; rotating shaft portion 520; hook portion 530. DETAILED DESCRIPTION
[0026] In order to make the purpose, features, and advantages of the present invention more obvious and easy to understand, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the embodiments described below are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.
[0027] The technical solution of the present invention will be further described below with reference to the accompanying drawings and through specific implementation methods.
[0028] In the description of the present invention, it should be understood that the terms "upper", "lower", "top", "bottom", "inside", "outside", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing the present invention 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, and therefore cannot be understood as a limitation on the present invention.
[0029] Reference below Figures 1 to 8 The present invention describes an intelligent microphone storage assembly and an intelligent device.
[0030] According to the smart microphone storage assembly of the new embodiment of the first aspect of the present utility model, the smart microphone storage assembly includes a barrel 100, a charging component 300, a supporting seat 200 and a moving component 400; the barrel 100 is provided with a first accommodating groove 110, one end of the first accommodating groove 110 extends to the outer wall of the barrel 100 to form an opening 120; the first accommodating groove 110 is used to accommodate the microphone 10; the charging component 300 is arranged in the first accommodating groove 110, and the charging component 300 is in a fixed state; the charging component 300 is used to charge the microphone 10; the supporting seat 200 is arranged on a side of the first accommodating groove 110 away from the opening 120; the supporting seat 200 is used to support the microphone 10; the supporting seat can reciprocate in a direction close to or away from the opening; the moving component 400 is connected to the supporting seat 200; the moving component 400 can drive the supporting seat 200 to reciprocate in a direction close to or away from the opening.
[0031] In an embodiment of the present invention, the microphone 10 can be placed into the first accommodating groove 110 between the opening 120; when the microphone 10 is placed into the first accommodating groove 110, the microphone 10 can push the supporting base 200 to move, so that the charging supporting base 200 can be moved in a direction away from the opening 120; the microphone 10 can be supported by the supporting base 200, and when the microphone 10 needs to be taken out of the first accommodating groove 110, the supporting base 200 can be driven by the moving part 400 to reciprocate in a direction close to or away from the opening, so that the microphone 10 can be lifted by the supporting base 200, reducing the difficulty of removing the microphone 10, and compared with the existing speaker in which the charging structure and the supporting structure are integrated together, the charging part 300 of the limiting sleeve and the supporting base 200 can move relative to each other and separate from each other, so that the circuit layout of the charging part 300 is relatively simple, the design cost is low and the design difficulty can be reduced.
[0032] The charging component 300 is in a fixed state, that is, the charging component 300 is relatively fixed relative to the barrel 100, and the fixing seat can be connected to the barrel 100, or connected to other structures to achieve a fixed position relative to the barrel 100; wherein, the first accommodating groove 110 can be set through, so that the fixing seat 100 arranged on the side of the first accommodating groove 110 away from the opening 120 can be connected to the external structure to achieve the relative fixation of the charging component 300 relative to the barrel 100, so that the charging end of the charging component 300 is relatively fixed at the position of the first accommodating groove 110. Of course, the smart microphone storage component can be placed inside the smart device, and the fixing seat 100 can be connected to the box or other structures of the smart device to achieve the relative fixation of the charging component 300 relative to the barrel 100.
[0033] Specifically, refer to Figure 7The charging component 300 can be arranged on both sides of the supporting base 200, and a slide groove 101 is provided at the corresponding positions of the supporting base 200 and the charging component 300. The charging end of the charging component 300 can slide up and down in the slide groove 101. After the supporting base 200 moves from the first position to the second position, the charging component 300 can abut against the microphone 10 to charge the microphone 10.
[0034] Reference Figure 1 and Figure 2 It can be understood that the supporting base 200 is provided with a second accommodating groove 220 and a through-port 210. The through-port 210 is located on the side of the supporting base 200 close to the opening 120. The through-port 210 is connected to the second accommodating groove 220 and the first accommodating groove 110 respectively, and the charging component 300 is located in the second accommodating groove 220; the supporting base 200 can move to a first position and a second position in the first accommodating groove 110; the second position is located on the side of the first position away from the opening 120; the charging component 300 can move from the first position to the second position after being driven, so that at least part of the charging component 300 extends from the through-port 210 to the outside of the second accommodating groove 220.
[0035] In the embodiment of the present invention, the microphone 10 can be placed into the first receiving groove 110 between the opening 120; when the microphone 10 is placed in the first receiving groove 110, the microphone 10 can push the supporting base 200 to move, so that the charging supporting base 200 can move from the first position to the second position, so that at least part of the charging component 300 extends from the through opening 210 to the outside of the second receiving groove 220, so that the charging component 300 abuts against the microphone 10 and charges the microphone 10; the microphone 10 can be carried by the supporting base 200, and When the microphone 10 needs to be taken out of the first receiving groove 110, the movable part 400 can be used to drive the supporting base 200 to move from the second position to the first position, so that the microphone 10 can be lifted by the supporting base 200, reducing the difficulty of removing the microphone 10. Compared with the existing speakers, the charging structure is integrated with the supporting base 200. The charging part 300 of the limiting sleeve and the supporting base 200 can move relative to each other and separate from each other, so that the circuit layout of the charging part 300 is relatively simple, the design cost is low and the design difficulty can be reduced.
[0036] Specifically, the direction in which the supporting base 200 moves from the first position to the second position is a direction away from the opening, and the direction in which the supporting base 200 moves from the second position to the first position is a direction close to the opening.
[0037] Reference Figures 2 to 4 ,and Figure 8It can be understood that the smart microphone storage assembly also includes a hook lock 500, which is connected to the supporting seat 200; the hook lock 500 has a locked state after being pressed for the first time and rotates to engage with the cylinder 100 to limit the supporting seat 200 from sliding upward relative to the cylinder 100, and has an unlocked state after being pressed again and rotates to separate from the cylinder 100.
[0038] Specifically, the hook lock 500 includes a rotating arm 510 and a torsion spring. One end of the rotating arm 510 is connected to the bottom of the supporting seat 200. The torsion spring is connected to the rotating arm 510 and the supporting seat 200 respectively. Specifically, the upper end of the rotating arm 510 is provided with a rotating shaft portion 520 hinged to the supporting seat 200. The torsion spring is sleeved on the rotating shaft portion 520, and one torque arm of the torsion spring is fixedly connected to the supporting seat 200, and the other torque arm is fixedly connected to the rotating arm 510.
[0039] A hook portion 530 is provided at the lower end of the rotating arm 510 , and the bottom surface of the hook portion 530 is a pointed top structure.
[0040] The bottom of the first accommodating groove 110 is provided with an avoidance groove 114 for the lower end of the rotating arm 510 to be inserted, and the groove wall of the avoidance groove 114 is protruded with a locking boss 111. One side of the locking boss 111 is provided with a first channel 112 for the hook portion 530 to pass through, and the other side is provided with a second channel 113 for the hook portion 530 to pass through.
[0041] An upper guide slope 115 is provided on the top surface of locking boss 111. An upwardly recessed positioning slot is provided on the bottom surface of locking boss 111 near first channel 112. A lower guide slope is provided on the bottom surface of locking boss 111 near second channel 113. Both upper guide slope 115 and lower guide slope are arranged in an inclined downward direction from the end near second channel 113 toward the end near first channel 112.
[0042] A guide boss protruding toward the positioning slot is provided at the bottom of the avoidance slot 114 , corresponding to a position directly below the positioning slot.
[0043] When the torsion spring is in the natural state, the initial position of the hook portion 530 is opposite to the upper guide slope 115 , and the positioning slot deviates from the initial position of the hook portion 530 toward the direction close to the first channel 112 .
[0044] When the hook portion 530 is initially pressed and slides downward relative to the barrel 100, the upper guide slope 115 slides against the bottom surface of the hook portion 530, overcoming the elastic action of the torsion spring, guiding the hook portion 530 to disengage from the locking boss 111, and then enter the bottom of the avoidance groove 114 through the first channel 112; at this time, since the hook portion 530 has deviated from the initial position, it will always press against the right side of the guide boss to the left under the action of the torsion spring; at this time, the hook lock member is in a locked state.
[0045] When the hook lock member 500 is pressed again and slides downward relative to the fixed sleeve assembly, the rotating arm 510 slides downward and moves to the left and returns to the center position under the elastic force of the torsion spring. At this time, the hook portion 530 has deviated from the bottom of the positioning slot and moves to the bottom of the lower guide slope. After releasing the hand, the rotating arm 510 slides upward relative to the fixed sleeve assembly with the floating clamping claw member driven by the moving member 400. At this time, the top surface of the hook portion 530 will slide against the lower guide slope. Since the elastic force of the moving part 400 is greater than the elastic force of the torsion spring, the moving part 400 can make the hook part 530 continue to slide upward along the lower guide slope, and finally move upward through the second channel 113 (in this process, the hook part 530 will gradually deviate from the initial position to the left). When the hook part 530 moves upward to above the locking boss 111, the torsion spring can make the hook part 530 quickly rotate to the right by a certain angle to restore to the initial position in the center; at this time, the hook lock part is in the unlocked state.
[0046] Reference Figures 2 to 4 It can be understood that there are multiple hook locking members and they are symmetrically arranged relative to the direction in which the supporting seat 200 moves between the first position and the second position.
[0047] The stability of the movement of the supporting seat 200 can be improved by setting multiple hook locking members; specifically, the second accommodating groove 220 is located at the central axis of the supporting seat 200, and the direction of movement of the supporting seat 200 between the first position and the second position is collinear with the central axis of the supporting seat 200.
[0048] Reference Figure 5 It can be understood that the movable part 400 includes a first magnetic part 410, an electromagnet 420 and a control element; the electromagnet 420 is located on the side of the supporting base 200 away from the opening 120, and the first magnetic part 410 is arranged at one end of the supporting base 200 close to the electromagnet 420; the control element is electrically connected to the electromagnet 420 and can control and change the magnetic pole of the electromagnet 420.
[0049] The control element can pass current into the electromagnet 420 so that the electromagnet 420 has magnetism, and can control the magnetic pole of the electromagnet 420 so that the first magnetic part 410 and the electromagnet 420 are attracted to each other to limit the position of the support base 200, so that the support base 200 is located at the second position.
[0050] When it is necessary to lift the supporting base 200 upward to lift the microphone 10, the magnetic poles of the electromagnet 420 can be controlled by the control element so that the first magnetic part 410 and the electromagnet 420 repel each other to lift the position of the supporting base 200, thereby moving the supporting base 200 from the second position to the first position.
[0051] Reference Figure 6 It can be understood that the second accommodating groove 220 includes a first groove 221 and a second groove 222, the first groove 221 is located near the opening 120 of the second groove 222, and is connected to the second groove 222; the charging component 300 includes an abutting end 310 and a connecting end 320, the connecting end 320 is connected to the abutting end 310, the abutting end 310 is movably set in the first groove 221, and the connecting end 320 is movably set in the second groove 222, and the size of the cross section of the first groove 221 is larger than the size of the cross section of the second groove 222 and the size of the cross section of the abutting end 310.
[0052] By setting the first groove 221, the moving position of the abutting end 310 can be limited, and by setting the second groove 222, the moving position of the connecting end 320 can be limited. Specifically, the extension direction of the second accommodating groove 220 is set in the same direction as the direction in which the moving member 400 moves between the first position and the second position.
[0053] Since the cross-section of the first groove 221 is larger than the cross-section of the abutting end 310, the abutting end 310 located in the first groove 221 cannot enter the first groove 221, so as to limit the position of the abutting end 310, thereby limiting the position of the supporting seat 200. When the moving part 400 pushes the charging part 300 from the second position to the first position, the charging part 300 abuts against the bottom wall of the first groove 221 and is located in the first position, thereby preventing the moving part 400 from excessively pushing the charging part 300.
[0054] Reference Figure 5 It can be understood that a second elastic member 330 is provided on the side of one end of the charging member 300 close to the opening 120, and the charging member 300 can be elastically connected to the microphone 10 through the second elastic member 330 to improve the stability of the connection between the charging member 300 and the microphone 10.
[0055] Specifically, the second elastic member 330 is a marble, and the bottom of the microphone 10 is provided with a groove structure that cooperates with the charging member 300. The top of the charging member 300 can be inserted into the groove structure, and the second elastic member 330 abuts against the inner wall of the groove structure to improve the stability of the connection; wherein, the inner wall of the groove structure is provided with a recessed structure that cooperates with the marble.
[0056] Reference Figure 5 and Figure 6 It is understandable that a second magnetic member 230 is provided at one end of the supporting base 200 close to the opening 120 , and the second magnetic member 230 is used to be attracted to the microphone 10 .
[0057] By providing the second magnetic member 230 , the stability of the microphone 10 on the supporting base 200 can be improved, and the position slippage of the microphone 10 due to external factors during the charging process of the charging member 300 can be reduced, thereby ensuring a stable charging process.
[0058] Reference Figures 2 to 4 It can be understood that the moving member 400 is a first elastic member, the two ends of which are respectively connected to the bottom wall of the first accommodating groove 110 and the supporting seat 200, and the first elastic member has an elastic restoring force that pushes the supporting seat 200 to move from the second position to the first position.
[0059] After the microphone 10 enters the first receiving groove 110 from the opening 120, the microphone 10 abuts against the charging component 300 and presses down the charging component 300, so that the charging component 300 moves from the first position to the second position. The two ends of the first elastic component are respectively connected to the supporting seat 200 and the bottom wall of the first receiving groove 110, so that the first elastic component is squeezed and the first elastic component is in a compressed state. The first elastic component has an elastic restoring force that pushes the supporting seat 200 to move from the second position to the first position, and can lift the supporting seat 200 and the microphone 10.
[0060] Specifically, the first elastic member may be a spring.
[0061] Reference Figure 3 and Figure 4 It can be understood that the bearing seat 200 is provided with an annular boss 201 arranged on the circumferential side, and the two ends of the first elastic member are respectively in contact with the bottom wall of the first accommodating groove 110 and the annular boss 201.
[0062] The first elastic member is a spring, which is sleeved on the supporting seat 200. When the charging member 300 moves from the first position to the second position, it can drive the supporting seat 200 and the annular boss 201 to move downward, so that the annular boss 201 cooperates with the bottom wall of the first accommodating groove 110 to compress the first elastic member; by setting the annular boss 201, the difficulty of installing the first elastic member can be reduced.
[0063] Reference Figures 1 to 8 According to the smart device of the new embodiment of the second aspect of the present utility model, the smart device includes the smart microphone storage component of the embodiment of the first aspect mentioned above.
[0064] Specifically, the smart device may be a smart speaker, and the microphone may be placed inside the smart speaker. When the microphone is connected to the smart speaker, howling may occur if the distance between the microphone and the smart speaker is too close. The harsh howling sound emitted by the smart speaker may greatly affect the user experience. Especially when the smart speaker stores the microphone, the probability of howling caused by the impact and friction sounds between the microphone and the smart speaker during the storage process is higher. The microphone can be automatically shut down to prevent howling when the microphone is close to the smart speaker or when the smart speaker stores the microphone.
[0065] In some embodiments, the smart speaker is provided with a storage structure for storing the microphone. The storage structure can be a cavity for accommodating the microphone. Therefore, in an embodiment of the present invention, the storage structure is a first accommodating groove 110 in the barrel 100, and the microphone is inserted into the storage. The depth of the first accommodating groove 110 is greater than or equal to the length of the microphone. The first accommodating groove 110 is connected to the opening 120. Through the opening 120, the microphone is vertically or horizontally inserted into the first accommodating groove 110 along the length direction to achieve storage. A microphone fixing structure can be provided inside or outside the opening 120 to fix the microphone after it is stored. The opening 120 can be provided at any position of the smart speaker, including the top, side, and bottom of the smart speaker. The storage structure can also be a groove, and the microphone is embedded in the groove. The microphone fixing structure can be provided inside or outside the groove to fix the microphone after it is stored. The microphone is vertically or horizontally placed into the groove along the vertical direction of the length to achieve storage. The groove can be provided at any position of the smart speaker, including the top, side, and bottom of the smart speaker.
[0066] In some embodiments, the smart speaker may be connected to a screen via a movable structure and may be provided with a screen storage slot, into which the screen is stored when the screen is closed. The screen storage structure may be provided under the screen, so that when the screen is closed, the microphone is completely covered by the screen and completely stored within the smart speaker.
[0067] In some embodiments, the microphone is automatically turned off by a sensing element sensing the distance between the smart speaker and the microphone. After sensing that the distance between the smart speaker and the microphone is less than or equal to a preset distance, the microphone automatically turns off. The sensing element can be one or more, and the sensing element can be a Hall element, a distance sensor, an infrared sensor, or any other single electronic component that can sense the distance between the smart speaker and the microphone, as well as any combination of electronic components. The sensing element can be set on the smart speaker and / or the microphone. Specifically, when the microphone is inserted into the first receiving slot 110, the sensing element can be set at the opening 120 so that the microphone is turned off immediately when the microphone is just inserted into the opening 120. The sensing element can also be set at one end of the first receiving slot 110 away from the opening 120 to prevent the sensing element from being exposed to the outside due to the opening 120 facing outward, which may cause the element to age. When the microphone is inserted into the first receiving slot 110, the sensing element can be set at one end, the middle, or both ends of the first receiving slot 110.
[0068] In some specific embodiments, the sensing element is a Hall element, and the smart speaker storage structure and the microphone each have corresponding positions. A magnetic structure is provided at the corresponding position of the microphone and a Hall element is provided at the corresponding position of the smart speaker, or a Hall element is provided at the corresponding position of the microphone and a magnetic structure is provided at the corresponding position of the smart speaker. The trigger condition of the Hall element can be that the detected magnetic field strength reaches a preset value. When the detected magnetic field strength is greater than or equal to the preset value, it means that the distance between the smart speaker and the microphone is sufficient to cause howling, and the microphone needs to be shut down. Preferably, a magnetic structure is provided at the corresponding position of the microphone and a Hall element is provided at the corresponding position of the smart speaker. Since the microphone moves around during karaoke and may move to other places with higher magnetic field strength, providing a Hall element on the microphone may cause the microphone to shut down incorrectly, thereby affecting the experience. The microphone can be inserted into the storage, with the Hall element provided at the opening of the first storage slot 110 or at the end of the first storage slot 110 away from the opening; the microphone can be inserted into the storage, with the Hall element provided at one end, the middle, or both ends of the first storage slot 110.
[0069] In some specific embodiments, the sensing element is a Hall element, and the smart speaker is provided with a corresponding charging structure, and the microphone is provided with a corresponding power receiving structure. The charging structure can be a charging component 300, and the trigger condition of the Hall element can be a change in the magnetic field caused by the moment the microphone is powered on when charging. When the magnetic field change is detected, it means that the distance between the smart speaker and the microphone is sufficient to cause howling, and the microphone needs to be turned off. The charging structure can be set on the surface of the smart speaker, or it can be provided in correspondence with the smart microphone storage component. The microphone can be inserted into the storage, and the charging structure is provided at the end of the first storage slot 110 away from the opening. The power receiving structure is provided at the bottom or bottom surface of the end of the microphone. The Hall element is provided near the charging structure. The Hall element can sense the change in the magnetic field caused by the moment of power on. The microphone can be inserted into the storage, and the charging structure is provided at one end, the middle, or both ends of the first storage slot 110. The power receiving structure is provided at the microphone. The Hall element is provided near the charging structure. The Hall element can sense the change in the magnetic field caused by the moment of power on.
[0070] In some specific embodiments, the sensing element is a Hall element, and the smart speaker is provided with a corresponding charging structure, and the storage structure and the microphone are each provided with a magnetic structure, wherein the charging structure can be a charging assembly 300, the magnetic structure fixes the microphone, and the magnetic structure is provided outside the inductive trigger range of the Hall element. The microphone can be stored in a drop-in manner, and the charging structure is provided at one end, the middle, or both ends of the first receiving slot 110. The microphone is provided with a corresponding power receiving structure, and the Hall element is provided near the charging structure. The Hall element can sense the change in the magnetic field caused by the moment of power-on. Preferably, the charging assembly 300 is provided at one end of the first receiving slot 110, and the magnetic member is provided at the other end or the middle of the first receiving slot 110. When the microphone is cylindrical, a button is provided on the surface of the microphone, and the magnetic structure is provided on the other side opposite to the button, so that the microphone button faces the outside of the first receiving slot 110.
[0071] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.
[0072] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
[0073] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that the technical solutions described in the aforementioned embodiments can still be modified, or some of the technical features thereof can be replaced by equivalents. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present invention.
Claims
1. Smart microphone storage component, characterized in that: include: The barrel (100) is provided with a first accommodating groove (110), one end of the first accommodating groove (110) extending to the outer wall of the barrel (100) to form an opening (120); the first accommodating groove (110) is used to accommodate a microphone (10); A charging component (300) is disposed in the first receiving groove (110), and the charging component (300) is in a fixed state; the charging component (300) is used to charge the microphone (10); A supporting seat (200) is provided on a side of the first receiving groove (110) away from the opening (120); the supporting seat (200) is used to support the microphone (10); the supporting seat is capable of reciprocating in a direction approaching or away from the opening; A moving member (400) is connected to the bearing seat (200); the moving member (400) is capable of driving the bearing seat (200) to reciprocate in a direction approaching or away from the opening.
2. The smart microphone storage assembly according to claim 1, characterized in that: The supporting seat (200) is provided with a second accommodating groove (220) and a through-port (210), wherein the through-port (210) is located on a side of the supporting seat (200) close to the opening (120), and the through-port (210) is connected to the second accommodating groove (220) and the first accommodating groove (110) respectively, and the charging component (300) is located in the second accommodating groove (220); the supporting seat (200) can move to a first position and a second position in the first accommodating groove (110); the second position is located on a side of the first position away from the opening (120); the charging component (300) can move from the first position to the second position after being driven, so that at least part of the charging component (300) extends from the through-port (210) to the outside of the second accommodating groove (220).
3. The smart microphone storage assembly according to claim 1, characterized in that: The invention also includes a hook lock member (500), wherein the hook lock member (500) is connected to the supporting seat (200); the hook lock member (500) has a locked state after being pressed for the first time and rotates to engage with the cylinder (100) to limit the supporting seat (200) from sliding upward relative to the cylinder (100), and has an unlocked state after being pressed again and rotates to be separated from the cylinder (100).
4. The smart microphone storage assembly according to claim 3, characterized in that: The hooking and locking members (500) are provided in plurality and are symmetrically arranged relative to the direction in which the bearing seat (200) moves between the first position and the second position.
5. The smart microphone storage assembly according to claim 1, characterized in that: The movable member (400) includes a first magnetic member (410), an electromagnet (420) and a control element; the electromagnet (420) is located on a side of the supporting seat (200) away from the opening (120); the first magnetic member (410) is arranged at an end of the supporting seat (200) close to the electromagnet (420); the control element is electrically connected to the electromagnet (420) and can control and change the magnetic pole of the electromagnet (420).
6. The smart microphone storage assembly according to claim 2, characterized in that: The second accommodating groove (220) includes a first groove (221) and a second groove (222), wherein the first groove (221) is located near the opening (120) of the second groove (222) and is connected to the second groove (222); the charging component (300) includes an abutting end (310) and a connecting end (320), wherein the connecting end (320) is connected to the abutting end (310), the abutting end (310) is movably arranged in the first groove (221), and the connecting end (320) is movably arranged in the second groove (222), and the size of the cross section of the first groove (221) is larger than the size of the cross section of the second groove (222) and the size of the cross section of the abutting end (310).
7. The smart microphone storage assembly according to claim 1, characterized in that: A second elastic member (330) is provided on a side portion of one end of the charging member (300) close to the opening (120), and the charging member (300) can be elastically connected to the microphone (10) via the second elastic member (330).
8. The smart microphone storage assembly according to any one of claims 1 to 4, characterized in that: A second magnetic component (230) is provided on one side of the supporting seat (200) close to the opening (120), and the second magnetic component (230) is used for adsorption with the microphone (10).
9. The smart microphone storage assembly according to claim 1, characterized in that: The moving member (400) is a first elastic member, the two ends of which are respectively connected to the bottom wall of the first accommodating groove (110) and the supporting seat (200), and the first elastic member has an elastic restoring force that pushes the supporting seat (200) to move from the second position to the first position.
10. Smart device, characterized in that, include: The smart microphone storage assembly according to any one of claims 1 to 9.