Intelligent device

By incorporating a storage slot and an automatic flip-drive component on the speaker body, the problem of frequent assembly between the speaker body and the speaker column is solved, enabling automatic storage and use of the speaker column and improving the user experience.

CN224192010UActive Publication Date: 2026-05-01广东台德智联科技有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
广东台德智联科技有限公司
Filing Date
2025-03-18
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

The existing speaker body and sound column require frequent assembly and disassembly, which is inconvenient to use and affects the user experience.

Method used

A storage slot is provided on the outer side of the speaker body, and an automatic flip-up drive component is installed in the storage slot. The speaker column can be automatically stored or used through this component. Combined with the lifting drive component and sensor, stability and convenience are ensured.

Benefits of technology

It enables automatic storage and use of the speaker column, improving the convenience of using the speaker and enhancing the user experience.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224192010U_ABST
    Figure CN224192010U_ABST
Patent Text Reader

Abstract

The utility model discloses an intelligent device, which is used for solving the technical problem that the existing sound box main body and the sound post need to be assembled when being used, so that the use is inconvenient. The sound box comprises a sound box main body and sound columns. The outer side surface of the sound box main body is provided with a storage groove used for storing the sound post, the storage groove is internally provided with an automatic overturning driving assembly, and the automatic overturning driving assembly is connected with the sound post. The sound post can be driven by the automatic overturning driving assembly to rotate relative to the storage groove so as to be stored in the storage groove or leave the storage groove. In the above design, the sound post is integrated on the sound box main body, and the sound box main body is provided with the accommodation groove for accommodating the sound post, so that a user can control the automatic overturning driving assembly to drive the sound post to rotate relative to the accommodation groove, thereby realizing the automatic accommodation or use function of the sound post, and effectively improving the use convenience of the sound box. And the use experience of the user is improved.
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Description

Technical Field

[0001] This utility model relates to the field of speaker design technology, and in particular to a smart device. Background Technology

[0002] With technological advancements, smart devices are ubiquitous in people's lives. Take speakers as an example; as a common audio player, speakers are widely used. Existing speakers typically incorporate low-frequency, high-frequency, and mid-frequency drivers. Because the wavelength of the low-frequency driver is longer than that of the high-frequency and mid-frequency drivers, when all three are integrated into a single cavity, the sound waves produced by the low-frequency driver can overpower the sound waves emitted by the mid-frequency and high-frequency drivers, resulting in a muddy sound. To overcome this problem, existing speaker designs generally include a speaker body and a separate sound column. The speaker body primarily houses the low-frequency driver, while the sound column typically houses the high-frequency driver or full-range driver. While this design effectively prevents the low-frequency driver from affecting the other speakers, it still has certain drawbacks.

[0003] Specifically, because the speaker body and the speaker column are separately configured in the aforementioned speaker, the user needs to insert the speaker column into the speaker body when using it, and then remove the speaker column from the speaker body and store it after use. As can be seen from the above process, the speaker column needs to be repeatedly inserted and removed each time it is used, causing inconvenience to the user and seriously affecting the user experience.

[0004] Therefore, finding a technical solution that can solve the above-mentioned technical problems has become an important research topic for those skilled in the art. Utility Model Content

[0005] This utility model discloses an intelligent device to solve the technical problem that existing speaker bodies and sound columns need to be assembled during use, resulting in inconvenience.

[0006] This utility model provides an intelligent device, including a speaker body and a speaker column;

[0007] The outer side of the speaker body is provided with a storage slot for storing the speaker column. An automatic flip drive component is provided in the storage slot. The automatic flip drive component is connected to the speaker column. The speaker column can rotate relative to the storage slot under the drive of the automatic flip drive component to be stored in the storage slot or leave the storage slot.

[0008] Optionally, the automatic flipping drive assembly includes at least one first motor;

[0009] The fixed end of the first motor is connected to the wall of the storage slot, and the movable end of the first motor is connected to the sound column.

[0010] Alternatively, the fixed end of the first motor is connected to the sound column, and the movable end of the first motor is connected to the wall of the storage slot.

[0011] Optionally, the sound column includes a second outer shell and a sound column body disposed in the second outer shell;

[0012] The second housing is connected to the automatic flip drive assembly;

[0013] A second speaker assembly is provided on the main body of the sound column.

[0014] Optionally, the outer side of the second housing is provided with a second sound outlet corresponding to the second speaker assembly.

[0015] Optionally, the second housing is provided with a lifting drive assembly, which is connected to the main body of the sound column. The lifting drive assembly is used to drive the main body of the sound column to move along the height direction of the second housing to extend out of or retract into the second housing.

[0016] Optionally, the lifting drive assembly includes a second motor and a lead screw;

[0017] The second motor is installed inside the second housing and is connected to the lead screw. The lead screw extends along the height direction of the second housing and passes through the sound column body and is threadedly connected to the sound column body.

[0018] Optionally, the second speaker assembly includes a full-range speaker and / or a mid-range speaker and / or a high-frequency speaker.

[0019] Optionally, the speaker body includes a first outer shell and a first speaker assembly within the first outer shell;

[0020] The storage slot is formed on the outer side of the first outer shell;

[0021] The outer side of the storage slot is also provided with a first sound outlet corresponding to the first speaker assembly.

[0022] Optionally, the speaker body further includes a display screen and a microphone, wherein the display screen is hinged to the first housing and can be rotated relative to the first housing;

[0023] The first housing is further provided with a storage structure for storing the microphone, the microphone is stored in the storage structure, and a lifting component is installed in the storage structure. The lifting component is connected to the microphone to drive the microphone to extend out of the storage structure or be stored in the storage structure.

[0024] Optionally, the first speaker assembly includes at least a low-frequency speaker.

[0025] Compared with the prior art, the present invention has the following beneficial effects:

[0026] In this embodiment of the smart device, a storage slot for storing the speaker column is provided on the outer side of the speaker body. An automatic flip-drive component is installed in the storage slot and is connected to the speaker column. The speaker column can rotate relative to the storage slot under the drive of the automatic flip-drive component to be stored in or removed from the storage slot. In the above design, the speaker column is integrated into the speaker body, and a storage slot for storing the speaker column is provided in the speaker body. Through this design, the user can control the automatic flip-drive component to drive the speaker column to rotate relative to the storage slot, thereby realizing the automatic storage or use function of the speaker column, effectively improving the convenience of using the speaker and enhancing the user experience. Attached Figure Description

[0027] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0028] Figure 1 A schematic diagram of the structure of a smart device with a speaker column stored in a storage slot, provided by this utility model;

[0029] Figure 2 A schematic diagram of the structure of a smart device when the speaker column leaves the storage slot, provided by this utility model;

[0030] Figure 3 A schematic diagram of the structure of a smart device provided by this utility model when the sound column leaves the storage slot and the main body of the sound column is driven to extend out of the second outer shell;

[0031] Figure 4 A schematic diagram showing the connection relationship between the first motor and the sound column after part of the first outer shell has been removed from an intelligent device provided by this utility model;

[0032] Figure 5 A cross-sectional structural diagram of an intelligent device provided by this utility model;

[0033] Figure 6 A partial structural diagram of a smart device when the first motor is connected to the sound column, as provided by this utility model;

[0034] Figure 7 A cross-sectional structural diagram of a sound column in a smart device provided by this utility model;

[0035] Figure 8 An exploded view of a portion of the structure of an intelligent device provided by this utility model.

[0036] Figure 9 A schematic diagram of the structure of a smart device in which the display screen, microphone and speaker column are opened in conjunction;

[0037] Illustration: Speaker body 1; Speaker column 2; Storage slot 3; Second outer shell 4; Speaker column body 5; First motor 6; Second motor 7; Lead screw 8; First outer shell 9; Display screen 10; Storage structure 11; First speaker assembly 12; Microphone 13; Base 14. Detailed Implementation

[0038] This utility model discloses an intelligent device to solve the technical problem that existing speaker bodies and sound columns need to be assembled during use, resulting in inconvenience.

[0039] To enable those skilled in the art to better understand the present invention, the present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0040] Please see Figures 1 to 9 The present invention provides an intelligent device comprising a speaker body 1 and a speaker column 2;

[0041] The outer side of the speaker body 1 is provided with a storage slot 3 for storing the speaker column 2. An automatic flip drive component is provided in the storage slot 3. The automatic flip drive component is connected to the speaker column 2. The speaker column 2 can rotate relative to the storage slot 3 under the drive of the automatic flip drive component to be stored in the storage slot 3 or leave the storage slot 3.

[0042] In the above design, the speaker column 2 is integrated into the speaker body 1, and a storage slot 3 for storing the speaker column 2 is set in the speaker body 1. Through the above design, the user can control the automatic flip drive component to drive the speaker column 2 to rotate relative to the storage slot 3, thereby realizing the automatic storage or use function of the speaker column 2, which effectively improves the convenience of using the speaker and helps to enhance the user experience.

[0043] Furthermore, in one specific embodiment of the example, the automatic flipping drive assembly includes at least one first motor 6;

[0044] In this specific embodiment, the first motor 6 can be installed in two ways:

[0045] The first type: such as Figures 4 to 6 As shown, the fixed end of the first motor 6 is connected to the wall of the storage slot 3, and the movable end of the first motor 6 is connected to the sound column 2.

[0046] The second method: the fixed end of the first motor 6 is connected to the sound column 2, and the movable end of the first motor 6 is connected to the wall of the storage slot 3.

[0047] Designers can choose the installation method of the first motor 6 according to the actual situation.

[0048] It should be noted that, through the above design, such as Figure 2 As shown, when the first motor 6 is rotating in the forward direction, the speaker column 2 is driven to rotate relative to the storage slot 3 in the first rotation direction, thereby leaving the storage slot 3. When the first motor 6 stops running, the speaker column 2 is preferably set perpendicular to the top surface of the speaker body 1 to enter the use state. At this time, the sound output direction of the speaker column 2 is consistent with the sound output direction of the speaker body 1.

[0049] like Figure 1 As shown, when the first motor 6 is in reverse, the speaker column 2 is driven to rotate relative to the storage slot 3 in the second rotation direction, thereby entering the storage slot 3. When the first motor 6 stops operating, the speaker column 2 is stored in the storage slot 3, thus entering the storage state. In addition, when the speaker column 2 is in the storage state, it is preferable that the speaker column 2 is completely embedded in the storage slot 3 to avoid the outer surface of the speaker column 2 being exposed in the storage slot 3, which would affect the overall appearance of the speaker.

[0050] The first rotation direction can be counterclockwise, and the second rotation direction can be clockwise.

[0051] Furthermore, it should be emphasized that the first motor 6 used in this embodiment is a motor with a self-locking function. This self-locking function ensures that the position of the speaker column 2 is fixed in both its use and storage states, preventing displacement due to external forces. The aforementioned self-locking motor is existing technology, and those skilled in the art should understand that the specific structure of the self-locking motor is not described in detail here.

[0052] Furthermore, such as Figures 4 to 6 As shown, there can be two first motors 6. The two first motors 6 are respectively installed on two opposite walls of the storage slot 3, and the output shafts of the two first motors 6 are respectively connected to the opposite outer sides of the sound column 2.

[0053] Through the above design, the sound column 2 can be more stable and smooth during the driven rotation process. In addition, it should be noted that the number of first motors 6 can be selected according to the specific weight of the sound column 2. This embodiment does not limit the number of first motors 6.

[0054] In other specific embodiments of this example, the automatic flipping drive assembly can also be a structure of cylinder and movable connecting rod, cylinder and gear rack, cylinder and cam, etc. All of the above structures can realize the automatic flipping function of the sound column. Since the above structures are existing technologies, they will not be described one by one in this embodiment. Designers can select the appropriate type of automatic flipping drive assembly according to the actual situation (such as the weight of the sound column).

[0055] Furthermore, in this embodiment, the sound column 2 includes a second outer shell 4 and a sound column body 5 disposed on the second outer shell 4;

[0056] The automatic flipping drive component is specifically connected to the second outer shell 4 of the sound column 2, thereby driving the sound column 2 to rotate relative to the storage slot 3;

[0057] A second speaker assembly is provided on the main body 5 of the sound column.

[0058] In one specific embodiment, the outer side of the second housing 4 is provided with a second sound outlet corresponding to the second speaker assembly.

[0059] It should be noted that, in this specific embodiment, when the speaker column 2 is driven to rotate away from the storage slot 3 to enter the use state, the audio played by the second speaker assembly can be played directly through the second sound outlet.

[0060] In another specific embodiment, the second housing 4 does not need to be designed with a sound hole, such as Figure 3As shown, the second outer shell 4 is provided with a lifting drive assembly, which is connected to the sound column body 5. The lifting drive assembly is used to drive the sound column body 5 to move along the height direction of the second outer shell 4 to extend or retract into the second outer shell 4.

[0061] It should be noted that, in this specific embodiment, when the speaker column 2 is driven to rotate away from the storage slot 3 to enter the use state, the lifting drive component drives the speaker column body 5 to extend out of the second outer shell 4, so that the second speaker assembly can play directly outward.

[0062] In addition, the above design enables the second speaker assembly of the sound column body 5 to achieve sound propagation in a wider directional range, resulting in stronger sound diffusion and a larger sound field. This gives the sound column body 5 better sound quality and a better user experience.

[0063] Furthermore, the aforementioned second outer shell specifically includes a main body and a base 14 connected to the main body;

[0064] The lifting drive assembly can be installed on the base 14 to connect with the sound column body 5.

[0065] Alternatively, the fixed end or movable end of the first motor 6 can also be mounted on the base 14.

[0066] Specifically, such as Figure 7 As shown, one structure of the above-mentioned lifting drive assembly may include a second motor 7 and a lead screw 8;

[0067] The second motor 7 is mounted on the base 14 and is connected to the lead screw 8. The lead screw 8 extends along the height direction of the second housing 4 and passes through the sound column body 5 and is threadedly connected to the sound column body 5.

[0068] It should be noted that the second motor 7 drives the lead screw 8 to rotate, thereby moving the main body 5 of the sound column 5 in the height direction of the second outer shell 4, so that the main body 5 of the sound column 5 can extend out or be stored in the second outer shell 4.

[0069] Furthermore, the second speaker assembly in this embodiment includes a full-range speaker and / or a mid-range speaker and / or a high-frequency speaker.

[0070] In addition, in one preferred embodiment, the speakers in the second speaker assembly can be arranged sequentially along the height direction of the sound column body 5, and the sound output direction of each speaker can be set in different directions, thereby generating a larger sound field, giving the sound column 2 better sound quality, and providing users with a better experience.

[0071] Furthermore, in this embodiment, the slot of the storage groove 3 is provided with a baffle plate, which is hinged to the outer side of the speaker body 1;

[0072] The baffle plate can be rotated relative to the speaker body 1 to close or open the opening of the storage slot 3.

[0073] It should be noted that, through the above design, when the speaker column 2 is stored in the storage slot 3, the above-mentioned baffle plate closes the opening of the storage slot 3, thereby achieving the purpose of hiding the speaker column 2 and also making the appearance of the speaker more consistent.

[0074] When the speaker column 2 needs to leave the storage slot 3 to enter the use state, the user can open the baffle to expose the opening of the storage slot 3. At this time, the speaker column 2 can be driven to leave the storage slot 3.

[0075] In addition, to improve ease of use, the aforementioned baffle can be connected to an electric drive component, such as a motor, thereby enabling the baffle to open and close automatically.

[0076] Furthermore, such as Figure 8 As shown, the speaker body 1 in this embodiment specifically includes a first outer shell 9 and a first speaker assembly 12 inside the first outer shell 9;

[0077] The storage slot 3 is located on the outer side of the first outer shell 9;

[0078] The outer side of the storage slot 3 is also provided with a first sound outlet corresponding to the first speaker assembly 12.

[0079] Specifically, the first sound outlet and the storage slot 3 are preferably located on opposite outer sides of the first housing 9, that is, the first sound outlet can be located on the front side of the first housing 9 and the storage slot 3 can be located on the rear side of the first housing 9. This design can ensure the aesthetics of the speaker when in use.

[0080] Furthermore, the first speaker assembly 12 in this embodiment includes at least a low-frequency speaker.

[0081] In addition, the first speaker may also include a high-frequency speaker and / or a mid-frequency speaker and / or a full-range speaker.

[0082] In some specific embodiments, the first speaker assembly 12 may include a low-frequency speaker and a high-frequency speaker; or, the first speaker assembly 12 may include a low-frequency speaker, a high-frequency speaker, and a mid-frequency speaker; or, the first speaker assembly 12 may include a low-frequency speaker, a high-frequency speaker, a full-range speaker, etc.; or, the first speaker assembly 12 may include a low-frequency speaker, a high-frequency speaker, a mid-frequency speaker, and a full-range speaker. The structure of the first speaker assembly 12 in this embodiment is not limited.

[0083] It should be noted that in the above design, the low-frequency speaker is placed separately inside the speaker body 1. This design can prevent the low-frequency speaker from interfering with the sound column 2 and affecting the sound quality when the speaker is working.

[0084] Furthermore, to prevent the speaker column 2 from interfering with external obstacles during rotation, relevant sensors, such as distance sensors and infrared sensors, can be installed on the speaker body 1 or speaker column 2 in this embodiment to detect obstacles that appear during the rotation of the speaker column 2. When the above sensors detect an obstacle, the automatic flip drive component can immediately stop the rotation of the speaker column or drive the speaker column to rotate away from the obstacle, thereby preventing the speaker column 2 from interfering with the obstacle and protecting the speaker column 2.

[0085] Furthermore, in this embodiment, the first outer shell 9 is also provided with a storage structure 11 for storing the microphone 13. The storage structure 11 can be a receiving groove, which is recessed into the interior of the first outer shell 9. The microphone 13 is stored in the receiving groove. In addition, to facilitate the user to remove the microphone 13, a lifting component can be provided in the receiving groove to drive the microphone 13 out of the receiving groove or store it in the receiving groove. Alternatively, an elastic pressing component can be installed in the receiving groove. The user can lock the microphone 13 in the receiving groove by pressing it, and the user can press the microphone 13 again to unlock and float it so that the user can remove it. The above-mentioned elastic pressing component is prior art, and this embodiment will not describe it in detail.

[0086] Furthermore, the speaker body 1 in this embodiment also includes a display screen 10 and a control circuit board;

[0087] The display screen 10 is hinged to the first housing 9. The outer side of the first housing 9 is provided with a storage compartment for storing the display screen 10. The storage compartment is recessed into the interior of the first housing 9. When the display screen 10 is rotated relative to the first housing 9 to a preset angle, the display screen 10 is stored in the storage compartment and is flush with the outer side of the first housing 9.

[0088] The control circuit board is installed inside the first housing 9, and the first speaker assembly 12, the sound column 2, the display screen 10 and the lifting assembly of the storage structure 11 are all electrically connected to the control circuit board. A communication module is also electrically connected to the control circuit board, and the microphone 13 is wirelessly connected to the control circuit board through the communication module.

[0089] It should be noted that the microphone 13 is connected to the control circuit board via a communication module, so that the user's voice signal can be processed by the control circuit board and then played through the speaker.

[0090] In addition, in the speaker of this embodiment, when there are two or more microphones 13, the user can control the two or more microphones 13 to rise and fall synchronously or individually, depending on the selection. The above process can be obtained by programming on the control circuit board, which can be implemented by those skilled in the art. This embodiment will not describe it in detail.

[0091] Furthermore, the display screen 10 in this embodiment can be opened electrically or manually. This embodiment does not impose any limitations on this, and designers can design it according to actual needs. In addition, in this embodiment, the display screen 10 can be linked with the lifting assembly via a control circuit board, such as... Figure 9 As shown, when the display screen 10 is turned on, the lifting component simultaneously drives the microphone 13 to rise and extend out of the receiving slot, and the automatic flipping drive component simultaneously drives the sound column 2 to rotate relative to the storage slot 3 to leave the storage slot 3, thereby entering the use state. The above method can also be implemented by those skilled in the art, and the embodiment does not describe this implementation method in detail.

[0092] Furthermore, the depth of the receiving groove is greater than or equal to the length of the microphone 13. The microphone 13 is inserted into the receiving groove vertically or horizontally along the length direction through the opening of the receiving groove to achieve storage. A microphone 13 fixing structure can be set inside or outside the opening so that the microphone 13 is fixed after being stored. The opening of the receiving groove can be set at any position of the first housing 9, including the outer side of the first housing 9, such as the upper, lower, left and right outer sides.

[0093] In some embodiments, the first housing 9 can also be connected to the display screen 10 via a movable structure, such as the hinge method mentioned in this embodiment. In addition, the first housing 9 can also be provided with a storage compartment for storing the display screen 10. After the display screen 10 is closed, the display screen 10 is stored in the storage compartment. The storage compartment can be located below the display screen 10, and the opening of the receiving slot can be located on the top surface of the storage compartment. With this design, after the display screen 10 is closed, the microphone 13 is completely covered by the display screen 10 and completely stored in the first housing 9.

[0094] Furthermore, when the microphone 13 is connected to the speaker, for example, if the microphone 13 is too close to the speaker, it will cause the speaker to howl. The speaker emits a piercing howl, which greatly affects the user experience. Especially when the microphone 13 is stored in the speaker, the probability of howling is higher due to the impact and friction of the microphone 13 with the first housing 9 during storage. The microphone 13 can be automatically turned off when it is stored in the receiving slot to prevent howling from occurring when the microphone 13 is close to the speaker or when the speaker stores the microphone 13.

[0095] In some embodiments, the microphone 13 is automatically powered off by a sensing element detecting the distance between the speaker and the microphone 13. Once the distance between the speaker and the microphone 13 is less than or equal to a preset distance, the microphone 13 automatically powers off. The sensing element can be one or more, and can be a Hall effect sensor, a proximity sensor, an infrared sensor, or any other single electronic component capable of sensing the distance between the speaker and the microphone 13, or any combination of electronic components. The sensing element can be positioned on the speaker and / or the microphone 13. Specifically, when the microphone 13 is inserted into the receiving slot, the sensing element can be positioned at the opening of the receiving slot so that the microphone 13 powers off immediately upon insertion. The sensing element can also be positioned at the end of the receiving slot away from the opening to prevent the sensing element from being exposed and aging due to the opening facing outwards.

[0096] In one specific embodiment, the sensing element is a Hall element. The housing structure 11 and the microphone 13 each have corresponding positions. A magnetic element is provided at the corresponding position of the microphone 13, and a Hall element is provided at the corresponding position of the first housing 9. Alternatively, a Hall element is provided at the corresponding position of the microphone 13, and a magnetic element is provided at the corresponding position of the first housing 9. The trigger condition for 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 speaker and the microphone 13 is sufficient to trigger feedback, and the microphone 13 needs to be turned off. Preferably, a magnetic element is provided at the corresponding position of the microphone 13, and a Hall element is provided at the corresponding position of the first housing 9. Since the microphone 13 moves around during karaoke, it may move to other places with strong magnetic fields. Providing a Hall element on the microphone 13 may cause the microphone 13 to turn off incorrectly, thus affecting the experience. When the microphone 13 is inserted into the receiving slot, the Hall element is located at the opening of the receiving slot of the first housing 9 or at the end away from the opening.

[0097] In another specific embodiment, the sensing element is a Hall element. The first housing 9 is provided with a charging structure, and the microphone 13 is provided with a power receiving structure. The trigger condition for the Hall element can be the change in magnetic field caused by the instant the microphone 13 is powered on during charging. When the change in magnetic field is detected, it means that the distance between the speaker and the microphone 13 is sufficient to trigger feedback, and the microphone 13 needs to be turned off. The charging structure can be located on the outer side of the first housing 9, or it can be located in a corresponding receiving slot. The microphone 13 can be inserted into the housing. The charging structure is located at the end of the receiving slot of the first housing 9 away from the opening. The bottom or end face of the microphone 13 is provided with a corresponding power receiving structure. The Hall element is located near the charging structure. The Hall element can sense the change in magnetic field caused by the instant the power is applied.

[0098] In the storage structure 11 of this embodiment, when the user needs to use the microphone 13, the lifting component can be controlled to automatically extend the microphone 13 into the opening of the receiving slot. At this time, the user can directly take out the microphone 13 and use it. When the user does not need to use the microphone 13, the microphone 13 can be directly inserted into the receiving slot. Then, the lifting component drives the microphone 13 to automatically descend and be stored in the receiving slot. Through the above design, the microphone 13 can be easily and directly taken out and put in, greatly reducing the difficulty of taking out and putting in, effectively improving the efficiency of taking out and putting in, and bringing a good user experience.

[0099] The present invention has provided a detailed description of an intelligent device. For those skilled in the art, based on the ideas of the embodiments of the present invention, there will be changes in the specific implementation methods and application scope. Therefore, the content of this specification should not be construed as a limitation of the present invention.

Claims

1. A smart device, characterized in that, Includes the speaker body (1) and the speaker column (2); The outer side of the speaker body (1) is provided with a storage slot (3) for storing the speaker column (2). An automatic flip drive component is provided in the storage slot (3). The automatic flip drive component is connected to the speaker column (2). The speaker column (2) can rotate relative to the storage slot (3) under the drive of the automatic flip drive component to be stored in the storage slot (3) or leave the storage slot (3).

2. The intelligent device according to claim 1, characterized in that, The automatic flip drive assembly includes at least one first motor (6); The fixed end of the first motor (6) is connected to the wall of the storage slot (3), and the movable end of the first motor (6) is connected to the sound column (2). Alternatively, the fixed end of the first motor is connected to the sound column (2), and the movable end of the first motor (6) is connected to the wall of the storage slot (3).

3. The intelligent device according to claim 1, characterized in that, The sound column (2) includes a second outer shell (4) and a sound column body (5) disposed in the second outer shell (4); The second housing (4) is connected to the automatic flip drive assembly; A second loudspeaker assembly is provided on the main body (5) of the sound column.

4. The intelligent device according to claim 3, characterized in that, The outer side of the second housing (4) is provided with a second sound outlet corresponding to the second speaker assembly.

5. The intelligent device according to claim 3, characterized in that, The second outer shell (4) is provided with a lifting drive assembly, which is connected to the sound column body (5). The lifting drive assembly is used to drive the sound column body (5) to move along the height direction of the second outer shell (4) to extend or retract into the second outer shell (4).

6. The intelligent device according to claim 5, characterized in that, The lifting drive assembly includes a second motor (7) and a lead screw (8); The second motor (7) is installed inside the second housing (4). The second motor (7) is connected to the lead screw (8). The lead screw (8) extends along the height direction of the second housing (4). The lead screw (8) passes through the sound column body (5) and is threadedly connected to the sound column body (5).

7. The intelligent device according to claim 3, characterized in that, The second speaker assembly includes a full-range speaker and / or a mid-range speaker and / or a high-frequency speaker.

8. The intelligent device according to claim 1, characterized in that, The speaker body (1) includes a first outer shell (9) and a first speaker assembly (12) inside the first outer shell (9); The storage slot (3) is formed on the outer side of the first outer shell (9); The outer side of the storage slot (3) is also provided with a first sound outlet corresponding to the first speaker assembly (12).

9. The intelligent device according to claim 8, characterized in that, The speaker body also includes a display screen (10) and a microphone (13), wherein the display screen (10) is hinged to the first housing (9) and can be rotated relative to the first housing (9) by a drive; The first housing (9) is also provided with a storage structure (11) for storing the microphone (13), the microphone (13) is stored in the storage structure (11), and a lifting component is installed in the storage structure (11). The lifting component is connected to the microphone (13) to drive the microphone (13) to extend out of the storage structure (11) or be stored in the storage structure (11).

10. The intelligent device according to claim 8, characterized in that, The first speaker assembly (12) includes at least a low-frequency speaker.