Electronic product and vehicle equipment

By integrating the functional modules into the vehicle equipment and using a drive mechanism to achieve sliding and rotation, the inconvenience caused by the independent distribution of functional modules is solved, and the user experience and control convenience are improved.

CN223420630UActive Publication Date: 2025-10-10GOLDANA TECH CO LTD
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Patent Information

Application Number
CN202423122950.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2025-10-10
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

The functional modules in existing vehicle equipment are distributed independently, which causes inconvenience to users and affects the user experience.

Method used

An electronic product is designed. By integrating at least two functional modules into a movable product body, a driving mechanism is used to make the product slide along a first direction and rotate around a second direction, thereby achieving a high degree of integration and dynamic ritual of the functional modules and enhancing user convenience.

Benefits of technology

It achieves a high degree of integration of functional modules, making it easier for users to switch between them at the same location, improving the user experience, and enhancing the product's dynamic feel and ease of control through the intelligent movement of the drive mechanism.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an electronic product and vehicle equipment. The electronic product comprises an installation carrier, a product body and a driving mechanism. Wherein the mounting carrier is provided with an accommodating cavity and an exposing opening communicated with the accommodating cavity; the product body comprises a supporting carrier and at least two functional modules, the supporting carrier is arranged in the containing cavity and can slide in the first direction and rotate around a rotating axis parallel to the second direction, and the first direction intersects with the second direction; the at least two functional modules are arranged on the supporting carrier and are distributed around the rotating axis of the supporting carrier; the driving mechanism is configured to drive the supporting carrier to slide and rotate; the supporting carrier can slide to at least part of the product body in the first direction to stretch out and retract from the exposing opening. According to the technical scheme, the use experience of a user can be improved.
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Description

Technical Field

[0001] The present application relates to the technical field of electronic products, and in particular to an electronic product and vehicle equipment. Background Art

[0002] Vehicle equipment in related art is usually equipped with many functional modules, such as speakers, onboard robots, touch modules or ambient lights, etc. However, these functional modules are usually distributed independently, which makes them inconvenient to use and affects the user experience. Utility Model Content

[0003] The main purpose of this application is to provide an electronic product to enhance the user experience.

[0004] To achieve the above objectives, the electronic product proposed in this application includes:

[0005] An installation carrier is provided with a receiving cavity and an exposure port communicating with the receiving cavity;

[0006] The product body includes a support carrier and at least two functional modules. The support carrier is disposed in the accommodating cavity and is capable of sliding along a first direction and rotating around a rotation axis parallel to a second direction, the first direction and the second direction intersecting. The at least two functional modules are disposed on the support carrier and distributed around the rotation axis of the support carrier; and

[0007] a driving mechanism configured to drive the support carrier to slide and rotate;

[0008] The support carrier can slide along the first direction until at least a portion of the product body extends out of and retracts from the revealing opening.

[0009] Optionally, when the product body is in a state where at least a portion of the product body extends out of the exposure opening, the driving mechanism can drive the supporting carrier to rotate.

[0010] Optionally, the electronic product further includes a cover configured to open and cover the exposed opening.

[0011] The driving mechanism is further configured to drive the covering member to move so as to open and cover the exposure opening.

[0012] Optionally, the process in which the driving mechanism drives the cover to open the revealing opening and the process in which the driving mechanism drives the support carrier to slide until at least a portion of the product body extends out of the revealing opening are completed simultaneously;

[0013] The process in which the driving mechanism drives the supporting carrier to slide until at least a portion of the product body is retracted from the revealing opening is completed simultaneously with the process in which the driving mechanism drives the covering member to cover the revealing opening.

[0014] Optionally, the driving mechanism includes:

[0015] a first driving member, the first driving member being disposed on the mounting carrier;

[0016] A movable carrier is slidably disposed in the accommodating cavity along a first direction, and the supporting carrier is rotatably mounted on the movable carrier;

[0017] a first transmission module, the first transmission module transmission-connecting the first driving member, the covering member, and the movable carrier, so that the first driving member drives the covering member to move and drives the movable carrier to slide through the first transmission module; and

[0018] The second driving member is provided on the movable carrier and is configured to drive the supporting carrier to rotate.

[0019] Optionally, the first transmission module includes:

[0020] a first transmission assembly, the first transmission assembly being transmission-connected to the first driving member and the covering member, so that the first driving member drives the covering member to move via the first transmission assembly; and

[0021] The second transmission assembly is connected to the first driving member and the movable carrier in a transmission manner, so that the first driving member drives the movable carrier to slide through the second transmission assembly.

[0022] Optionally, the covering member is slidably arranged on the mounting carrier along the second direction or the third direction, and the third direction intersects the first direction and the second direction;

[0023] The first transmission assembly includes two rotatably connected connecting rods, and ends of the two connecting rods that are away from each other are rotatably connected to the first driving member and the covering member respectively.

[0024] Optionally, the second transmission assembly includes:

[0025] a first gear connected to the first driving member;

[0026] a rack, the rack being slidably disposed on the mounting carrier along the second direction or the third direction and meshing with the first gear, the third direction intersecting the first direction and the second direction; and

[0027] The pushing member is connected to the rack and is provided with an abutting surface which is an inclined surface or an arc surface. The abutting surface and the movable carrier abut against each other to abut and drive the movable carrier to slide in a direction close to the revealing opening when the pushing member is driven by the rack.

[0028] Optionally, the second transmission assembly further includes a second gear, the second gear is connected to the first driving member, and the second gear is an incomplete gear;

[0029] The first gear is a perfect gear, and the second gear can rotate to mesh with the first gear.

[0030] Optionally, the number of the functional modules is two, and the two functional modules are defined as a first functional module and a second functional module;

[0031] The first functional module has a first working surface, and the second functional module has a second working surface. The first working surface and the second working surface are arranged back to back.

[0032] Optionally, the first functional module is a speaker, a vehicle-mounted robot or an ambient light, and the second functional module is a touch module;

[0033] And / or, the product body is spherical, and the center of the sphere of the product body is located on the rotation axis of the support carrier;

[0034] And / or, the first direction is an up-down direction, and the first working surface and the second working surface are arranged back to back in the first direction.

[0035] The present application also proposes a vehicle device, comprising the above-mentioned electronic product.

[0036] The electronic product of the technical solution of the present application is integrated into a product body that is movably mounted in the accommodating cavity of the mounting carrier, so that when it is needed, the product body can be driven to slide along the first direction until at least a portion of the product body extends out of the exposure opening of the mounting carrier and is exposed, and the product body is driven to rotate around a rotation axis parallel to the second direction to adjust the orientation of the functional modules on the product body to a convenient state for use. Therefore, the structural setting of the electronic product in the technical solution realizes a high degree of integration of at least two functional modules, so that the user can switch between at least two functional modules at the same position, thereby facilitating the user to selectively control and use the at least two functional modules. At the same time, during the use of the electronic product, the product body is also accompanied by sliding motion along the first direction and rotating motion around a rotation axis parallel to the second direction, so that the product body can give a novel dynamic ritual sense. In this way, the dual effects of portable switching under the high integration of at least two functional modules and the dynamic ritual sense given by the product body are conducive to improving the user's experience of using the electronic product. Further. The setting of the driving mechanism can be used to drive the product body to slide and rotate, thereby helping to improve the intelligence of the product body's movement. BRIEF DESCRIPTION OF THE DRAWINGS

[0037] In order to more clearly illustrate the embodiments of the present application 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 application. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying any creative work.

[0038] Figure 1 This is a structural diagram of an embodiment of the electronic product of the present application;

[0039] Figure 2 for Figure 1 A schematic diagram of an electronic product in a state where the body of the product is in a sliding and extending state;

[0040] Figure 3 for Figure 2 A schematic diagram of a state in which the body of the electronic product is rotating to switch the orientation of the functional module;

[0041] Figure 4 for Figure 1 A schematic diagram of a partial structure of an electronic product.

[0042] Description of Figure Numbers:

[0043] Label name Label name 100 Electronics 42 Activity carrier 10 Installation carrier 43 First transmission module 11 Accommodation cavity 431 First transmission assembly 12 Exposed mouth 4311 link 20 Product body 433 Second transmission assembly 21 Support carrier 4331 First gear 22 Functional modules 4332 rack 22A First functional module 4333 Pusher 22A1 First working surface 4334 contact surface 22B Second functional module 4335 Second gear 22B1 Second working surface 45 Second driving member 30 Cover 46 Second transmission module 40 Drive mechanism 461 Third gear 41 First driving member 463 Fourth gear

[0044] The realization of the objectives, functional features and advantages of this application will be further explained in conjunction with embodiments and with reference to the accompanying drawings. DETAILED DESCRIPTION

[0045] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0046] It should be noted that all directional indications in the embodiments of the present application (such as up, down, left, right, front, back, etc.) are only used to explain the relative position relationship, movement status, etc. between the various components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication will also change accordingly.

[0047] In this application, unless otherwise specified or limited, the terms "connection" and "fixation" should be understood in a broad sense. For example, "fixation" can mean fixed connection, detachable connection, or integration; mechanical connection or electrical connection; direct connection or indirect connection through an intermediate medium; internal communication between two elements or interaction between two elements, unless otherwise specified. For those skilled in the art, the specific meanings of the above terms in this application can be understood according to specific circumstances.

[0048] In addition, the descriptions of "first", "second", etc. in this application are for descriptive purposes only and cannot be understood as indicating or implying their relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of such features. In addition, the meaning of "and / or" appearing throughout the text is to include three parallel solutions. Taking "A and / or B as an example", it includes solution A, or solution B, or a solution in which both A and B are satisfied. In addition, the technical solutions between the various embodiments can be combined with each other, but this must be based on the ability of ordinary technicians in this field to implement. When the combination of technical solutions is mutually contradictory or cannot be implemented, it should be deemed that such a combination of technical solutions does not exist and is not within the scope of protection required by this application.

[0049] This application proposes an electronic product, which can be a combination of two functional modules, or three or more functional modules. For example, the electronic product can be a combination of two functional modules: a speaker and a touch module, or a combination of two functional modules: a speaker and an ambient light, or a combination of three functional modules: a speaker, a touch module, and an ambient light. This application does not limit the specific type of electronic product.

[0050] Furthermore, it should be noted that the electronic product proposed in this application can be used in a vehicle, forming a vehicle-mounted product. Of course, the electronic product can also be used independently, forming a home reference or outdoor product. In other words, this application does not limit the use scenario of the electronic product.

[0051] Next, the structure of the electronic product proposed in this application is explained with an embodiment:

[0052] Please refer to Figures 1 to 3 In one embodiment of the present application, an electronic product 100 includes a mounting carrier 10 and a product body 20, the mounting carrier 10 is provided with a receiving cavity 11 and an exposure opening 12 connected to the receiving cavity 11; the product body 20 includes a support carrier 21 and at least two functional modules 22, the support carrier 21 is provided in the receiving cavity 11, and can slide along a first direction and rotate around a rotation axis parallel to a second direction, the first direction and the second direction intersect; at least two functional modules 22 are provided on the support carrier 21 and are distributed around the rotation axis of the support carrier 21; wherein, the support carrier 21 can slide along the first direction until at least a portion of the product body 20 extends out of and retracts from the exposure opening 12.

[0053] The mounting carrier 10 can be used to form a receiving cavity 11 to accommodate the product body 20 and other components in the electronic product 100. The shape of the mounting carrier 10 can be a cube, a rectangular parallelepiped, a cylinder or a semi-cylinder, etc., and this application does not limit the shape of the mounting carrier 10. In addition, when the electronic product 100 is applied to vehicle equipment as described above, the mounting carrier 10 can be directly formed by a certain part of the vehicle equipment, for example, it can be directly formed by a part of the dashboard in the vehicle or the armrest part of the seat. Of course, the mounting carrier 10 can also be an object that is set separately from the vehicle equipment. Alternatively, a part of the mounting carrier 10 is formed by a certain part of the vehicle equipment, and the other part is an object that is set separately from the vehicle equipment. In addition, the shape of the receiving cavity 11 can be the same as the shape of the mounting carrier 10, for example, both are set to be rectangular parallelepiped, so as to expand the space size that can be set for the receiving cavity 11 under the limited volume of the mounting carrier 10. Of course, the shape of the accommodating cavity 11 and the shape of the mounting carrier 10 can also be set to be different. For example, the shape of the mounting carrier 10 can be set to be a cylinder, while the shape of the accommodating cavity 11 can be set to be a rectangular parallelepiped. In addition, the revealing opening 12 can be used to connect the accommodating cavity 11 with the outside world, so that at least part of the product body 20 can be extended and exposed. Among them, the shape of the revealing opening 12 can be adapted to the shape of the product body 20 to improve the compactness of the distribution between the product body 20 and the mounting carrier 10 and the overall aesthetics of the electronic product 100. Specifically, the shape of the revealing opening 12 can be any shape such as square, rectangular, circular or semicircular, and can be adaptively set according to the shape of the product body 20. Of course, in other embodiments, the shape of the revealing opening 12 can also be set to be different from the shape of the product body 20, so as to ensure that at least part of the product body 20 can be extended and retracted from the revealing opening 12. In addition, the revealing opening 12 can be on one side facing the first direction.

[0054] The product body 20 is provided with a mounting position via a support carrier 21, allowing for the integrated installation of at least two functional modules 22. Furthermore, the support carrier 21 can be directly or indirectly articulated with the mounting carrier 10, enabling the product body 20 to slide along a first direction and rotate about an axis parallel to a second direction. The support carrier 21 can be directly coupled via a rotating shaft and a slide groove, allowing the support carrier 21 to rotate along the slide groove and around the rotating shaft. Alternatively, the support carrier 21 can be rotatably mounted on an object, which then slides with the slide groove to enable the support carrier 21 to slide and rotate. Alternatively, the support carrier 21 can be directly rotatably mounted on a drive member that can extend and retract along the first direction, enabling the support carrier 21 to slide and rotate. This application does not limit the mounting structure of the support carrier 21 within the accommodating cavity 11. Furthermore, the support carrier 21 can be a housing structure. In this case, the functional modules 22 can be located inside or outside the support carrier 21. Of course, in other embodiments, the support carrier 21 may also be a block structure, etc. The shape of the support carrier 21 may be spherical, but it may also be cylindrical, cube-shaped, or rectangular. Clearly, this application does not limit the shape and structure of the support carrier 21. Furthermore, when the electronic product 100 is in normal use and installation, the first direction may be the up-down direction, and the second direction may be the horizontal direction, such that the first and second directions form a 90° angle. Of course, in other embodiments, the first and second directions may also be other directions. For example, the first direction may form a preset angle of 5° or 10° with the up-down direction, while the second direction may form an angle of any angle, such as 90°, 80°, or 70°, with the first direction. In this case, the support carrier 21 may slide along the first direction until the entire product body 20 extends through the revealing opening 12. Alternatively, it may slide until only a portion of the product body 20 extends through the revealing opening 12. Furthermore, the sliding and rotation of the support carrier 21 may be achieved by automatically driving the electronic product 100 by providing a drive mechanism 40, as described below. Of course, in other embodiments, the sliding and rotation of the support carrier 21 can also be manually driven by the user. Furthermore, the functional module 22 can serve as a carrier for realizing the use function of the electronic product 100. Among them, the functional module 22 can be a speaker so that it has a sound function. Of course, the functional module 22 can also be an atmosphere light so that it has a lighting effect function. Alternatively, the functional module 22 can also be a touch module or an in-vehicle robot, so that it has control and interactive functions. It can be seen that this application does not limit the specific type of the functional module 22.At the same time, there is no limitation on the number of the functional modules 22 , which can be two, three or more, as long as they can be arranged around the rotation axis of the support carrier 21 .

[0055] The electronic product 100 of the technical solution of the present application is configured by integrating at least two functional modules 22 into a product body 20 that is movably mounted in the accommodating cavity 11 of the mounting carrier 10, so that when it is needed, the product body 20 can be driven to slide along the first direction until at least a portion of the product body 20 extends out of the revealing opening 12 of the mounting carrier 10 and is revealed. Figure 2 As shown, the product body 20 is driven to rotate around a rotation axis parallel to the second direction to adjust the orientation of the functional module 22 on the product body 20 to a state convenient for use, such as Figure 3 As shown. Therefore, the structural setting of the electronic product 100 in the present technical solution realizes the high integration of at least two functional modules 22, so that the user can switch between at least two functional modules 22 at the same position, thereby facilitating the user to selectively manipulate and use the at least two functional modules 22. At the same time, during the use of the electronic product 100, the product body 20 is also accompanied by sliding motion along the first direction and rotational motion around a rotation axis parallel to the second direction, so that the product body 20 can give a novel dynamic ritual sense. In this way, under the dual effects of achieving portable switching use under the high integration of at least two functional modules 22 and the dynamic ritual sense given by the product body 20, it is conducive to improving the user experience of the electronic product 100.

[0056] Please refer to Figure 1 In one embodiment of the present application, the number of functional modules 22 is two, and the two functional modules 22 are defined as a first functional module 22A and a second functional module 22B; the first functional module 22A has a first working surface 22A1, and the second functional module 22B has a second working surface 22B1, and the first working surface 22A1 and the second working surface 22B1 are arranged back to back.

[0057] The first working surface 22A1 and the second working surface 22B1 are the surfaces on which the functional module 22 works. For example, when the functional module 22 is a speaker, the working surface of the functional module 22 can be a sound-emitting surface; when the functional module 22 is an ambient light, the working surface of the functional module 22 can be a light-emitting surface; when the functional module 22 is a vehicle-mounted robot, the working surface of the functional module 22 can be an interactive interface; when the functional module 22 is a touch module, the working surface of the functional module 22 can be a control section or a button control surface. In addition, the first working surface 22A1 and the second working surface 22B1 can be arranged back to back in the first direction, and of course can also be arranged back to back in other directions, for example, a third direction intersecting the first direction and the second direction. This application does not limit the back-to-back direction of the first working surface 22A1 and the second working surface 22B1.

[0058] In this embodiment, the number of functional modules 22 is set to two, and they are arranged back to back. This allows the functional modules 22 to be distributed more regularly, facilitating installation and arrangement on the support carrier 21. At the same time, the overall volume of the product body 20 can be reduced, thereby facilitating installation within the limited space of the accommodating cavity 11.

[0059] Please refer to Figure 1 In one embodiment of the present application, the first direction is the up-down direction, and the first working surface 22A1 and the second working surface 22B1 are arranged back to back in the first direction.

[0060] In this embodiment, the first direction is set to the vertical direction, so that the product body 20 slides in the vertical direction to achieve extension and retraction from exposure. In this way, the vertical space can be fully utilized, and the horizontal occupied area can be reduced. Furthermore, the first working surface 22A1 and the second working surface 22B1 are arranged to be back-to-back in the first direction. This allows the product body 20 to slide out of the exposure opening 12 and only the functional module 22 required for use to be exposed upward, thereby fully displaying the functional module 22 and improving the use effect of the functional module 22.

[0061] Please refer to Figure 1 In one embodiment of the present application, the product body 20 is spherical, and the center of the product body 20 is located on the rotation axis of the support carrier 21.

[0062] In this embodiment, the product body 20 is spherical, and the center of the product body 20 is located on the rotation axis of the support carrier 21. This can make the shape of the product body 20 and the rotation trajectory of the product body 20 compatible, reduce the possibility of interference between the product body 20 and the mounting carrier 10 or other objects during rotation, and improve the stability of the movement. At the same time, it is also convenient to make the exposure port 12 and the product body 20 more adaptable and compact. It should be noted that the spherical shape here includes a complete sphere, that is, the product body 20 only includes a spherical surface. Of course, it also includes an incomplete sphere, that is, the product body 20 can include a spherical surface and a plane.

[0063] In one embodiment of the present application, the first functional module 22A is a speaker, a vehicle-mounted robot, or an ambient light, and the second functional module 22B is a touch module.

[0064] The touch module can be used to control the first functional module 22A. Of course, the two may not have a control relationship. In this case, the touch module can be used to control other modules, such as air conditioning or display screen.

[0065] In this embodiment, the first functional module 22A is configured as a speaker, an onboard robot, or an ambient light, and the second functional module 22B is configured as a touch module. This provides better control conditions and facilitates user operation. In particular, when the electronic product 100 is used in a vehicle, and when it is installed on the armrests of each seat, it can create a relatively independent driving experience for each passenger.

[0066] Please refer to Figure 1 and Figure 2 In one embodiment of the present application, the electronic product 100 further includes a cover 30 , which is configured to open and cover the exposure opening 12 .

[0067] The cover 30 can be a plate structure, or a cover structure, etc. This application does not limit the structural type of the cover 30. The shape of the cover 30 can be the same as the shape of the exposure opening 12, or they can be different. This application does not limit the shape of the cover 30. In addition, the cover 30 can be slidably or rotatably mounted on the mounting carrier 10, so that the exposure opening 12 can be opened or covered by driving the cover 30 to slide or rotate. In addition, the sliding or rotation of the cover 30 can be automatically driven by the electronic product 100 by providing a drive mechanism 40 as described below. Of course, in other embodiments, the sliding or rotation of the cover 30 can also be manually driven by the user. In addition, the cover 30 and the mounting carrier 10 can also be configured to be connected by a snap-fit ​​connection or a magnetic connection. In this case, the exposure opening 12 can be opened by detaching and removing the cover 30 from the mounting carrier 10. In addition, the cover 30 may be disposed on the outside of the mounting carrier 10 , or may be disposed on the inside of the mounting carrier 10 .

[0068] In this embodiment, the cover 30 can cover the exposure opening 12 when the product body 20 is not required to be extended for use, thereby protecting the product body 20 within the accommodating cavity 11. Furthermore, the cover 30 can also conceal the product body 20, thereby improving the aesthetics of the electronic product 100.

[0069] Please refer to Figure 1 In one embodiment of the present application, the electronic product 100 further includes a drive mechanism 40. The drive mechanism 40 may be mounted on the mounting carrier 10 and may be configured to drive at least one of the following: sliding of the product body 20 in a first direction, rotation of the product body 20 in a second direction, and movement of the cover 30. This enhances the intelligence of the electronic product 100 and further improves the user experience of the electronic product 100. Furthermore, the drive mechanism 40 may be completely disposed within the accommodating cavity 11, or may be only partially disposed within the accommodating cavity 11.

[0070] Please refer to Figures 1 to 3 In one embodiment of the present application, the driving mechanism 40 can be configured to drive the support carrier 21 to slide and rotate.

[0071] In this embodiment, since the product body 20 has two movements, the driving mechanism 40 is configured to drive the product body 20 to slide and rotate, which is beneficial to improving the intelligence of the movement of the product body 20.

[0072] Please refer to Figure 2 and Figure 3In an embodiment of the present application, the driving mechanism 40 is capable of driving the support carrier 21 to rotate when the product body 20 is at least partially extended from the exposure opening 12.

[0073] In the embodiment, in other words, it can be said that the driving mechanism 40 drives the product body 20 to rotate after the product body 20 is extended from the exposure opening 12. In this way, the user can observe what kind of functional module 22 is currently exposed when the product body 20 is extended, and then select whether to drive the product body 20 to rotate to switch the exposed functional module 22, thereby further improving the convenience of using the electronic product 100 and enhancing the user experience. It should be noted that the present application is not limited to this, and in other embodiments, the driving mechanism 40 can also drive the support carrier 21 to rotate when the product body 20 is in the state of being accommodated in the accommodation cavity 11, so that the sliding movement and the rotating movement of the product body 20 are synchronized, or the rotating movement of the product body 20 is performed first, and then the product body 20 is driven to slide and extend from the exposure opening 12. It can be seen that the present application does not limit the timing between the sliding and rotating of the product body 20.

[0074] Please refer to 1 and Figure 2 In an embodiment of the present application, the driving mechanism 40 can also be configured to drive the cover 30 to move to open and cover the exposure opening 12.

[0075] When the cover 30 is arranged to be slidingly installed on the mounting carrier 10, the driving mechanism 40 can be used to drive the cover 30 to slide. When the cover 30 is arranged to be rotatably installed on the mounting carrier 10, the driving mechanism 40 can be used to drive the cover 30 to rotate.

[0076] In the embodiment, the driving mechanism 40 is further arranged to be capable of driving the cover 30 to move, so that the intelligence of the movement of the cover 30 can be further improved on the basis of improving the intelligence of the movement of the product body 20.

[0077] In an embodiment of the present application, the process of the driving mechanism 40 driving the cover 30 to open the exposure opening 12 is completed synchronously with the process of the driving mechanism 40 driving the support carrier 21 to slide to the state that the product body 20 is at least partially extended from the exposure opening 12. The process of the driving mechanism 40 driving the support carrier 21 to slide to the state that the product body 20 is at least partially retracted from the exposure opening 12 is completed synchronously with the process of the driving mechanism 40 driving the cover 30 to cover the exposure opening 12.

[0078] In this embodiment, when the cover 30 opens the opening 12, the product body 20 also extends to reveal the opening; when the product body 20 retracts, the cover 30 also covers the opening 12. This allows the opening of the cover 30 and the extension of the product body 20 to be completed simultaneously, as well as the retraction of the product body 20 and the covering of the cover 30 to be completed simultaneously. This improves the coordination and inertia between the various movements in the electronic product 100, thereby enhancing the visual effect and improving the user experience. At the same time, it also reduces the time required to open and close the electronic product 100, improving the opening and closing efficiency of the electronic product 100 and enhancing the user experience. Of course, the present application is not limited to this. In other embodiments, the drive mechanism 40 may first drive the cover 30 to open the opening 12 and then drive the product body 20 to slide and extend; or the drive mechanism 40 may first drive the product body 20 to slide and retract and then drive the cover 30 to move and close.

[0079] Please refer to Figures 1 to 4 In one embodiment of the present application, the driving mechanism 40 includes a first driving member 41, a movable carrier 42, a first transmission module 43 and a second driving member 45. The first driving member 41 is arranged on the mounting carrier 10; the movable carrier 42 is arranged in the accommodating cavity 11 and slides along the first direction, and the supporting carrier 21 is rotatably mounted on the movable carrier 42; the first transmission module 43 transmission-connects the first driving member 41 with the covering member 30 and the movable carrier 42, so that the first driving member 41 drives the covering member 30 to move and drives the movable carrier 42 to slide through the first transmission module 43; the second driving member 45 is arranged on the movable carrier 42 and is configured to drive the supporting carrier 21 to rotate.

[0080] The first drive member 41 can be used to provide driving force. The first drive member 41 can be used to provide rotational driving force. In this case, the first drive member 41 can be a rotary motor or a rotary cylinder. Of course, the first drive member 41 can also be used to provide linear driving force. In this case, the first drive member 41 can be a linear motor, a telescopic cylinder, or a linear module. The first transmission module 43 can be used to transmit power, transmitting the driving force provided by the first drive member 41 to the cover member 30 and the movable carrier 42. The first transmission module 43 can include a first transmission assembly 431 and a second transmission assembly 433, as described below, to transmit the rotational driving force of the first drive member 41 to the cover member 30 and the movable carrier 42, respectively. Of course, in other embodiments, the first transmission module 43 can also include only one transmission assembly, allowing the cover member 30 and the movable carrier 42 to share a single transmission assembly. The movable carrier 42 can be slidably mounted with the mounting carrier 10, while providing a mounting position for the rotational mounting of the support carrier 21 and the installation of the second drive member 45. Among them, the movable carrier 42 can be a rod structure or a plate structure, etc. In addition, the sliding installation of the movable carrier 42 can be that the mounting carrier 10 is provided with a slide groove or a slide hole for the sliding installation of the movable carrier 42. And the rotational installation of the supporting carrier 21 can be through the cooperation of the rotating shaft and the rotating hole. The second driving member 45 can be used to provide driving force. Among them, the second driving member can be used to provide rotational driving force. At this time, the second driving member 45 can be a rotary motor or a rotary cylinder, etc. Of course, the second driving member 45 can also be used to provide linear driving force. At this time, the second driving member 45 can be a linear motor, a telescopic cylinder, or a linear module, etc.

[0081] In this embodiment, the drive mechanism 40 is configured to include a first drive member 41, a movable carrier 42, a first transmission module 43, and a second drive member 45. This allows the sliding of the product body 20 and the movement of the cover member 30 to share a single second drive member 45, making it easier to control them to achieve the improved coordinated inertia between the various movements in the electronic product 100 as described above. At the same time, such a configuration can also simplify the number of drive members provided, thereby reducing the energy consumption of the electronic product 100. Of course, it should be noted that the present application is not limited to this. In other implementations, the drive mechanism 40 can also be directly configured to include three drive members, so that the three drive members can respectively drive the sliding of the product body 20, the rotation of the product body 20, and the movement of the cover member 30.

[0082] Please refer to Figure 1 and Figure 2In one embodiment of the present application, the first transmission module 43 includes a first transmission component 431 and a second transmission component 433. The first transmission component 431 is transmission-connected to the first driving member 41 and the covering member 30 so that the first driving member 41 drives the covering member 30 to move through the first transmission component 431; the second transmission component 433 is transmission-connected to the first driving member 41 and the movable carrier 42 so that the first driving member 41 drives the movable carrier 42 to slide through the second transmission component 433.

[0083] In this embodiment, the transmission assembly is set as a first transmission assembly 431 and a second transmission assembly 433, which can be connected and driven with the cover member 30 and the movable carrier 42 respectively, so as to facilitate the separate setting according to the respective positions and movement types of the cover member 30 and the movable carrier 42, thereby improving the convenience of the structural setting of the first transmission module 43.

[0084] Please refer to Figure 1 and Figure 2 In one embodiment of the present application, the covering member 30 is slidably arranged on the mounting carrier 10 along the second direction or the third direction, and the third direction intersects the first direction and the second direction; the first transmission assembly 431 includes two rotatably connected connecting rods 4311, and the ends of the two connecting rods 4311 that are away from each other are rotatably connected to the first driving member 41 and the covering member 30 respectively.

[0085] The second direction and the third direction can be two intersecting horizontal directions. In addition, the connecting rod 4311 provided near the first driving member 41 can be the output shaft directly connected to the first driving member 41, and certainly can also be the transmission shaft connected to the output shaft of the first driving member 41.

[0086] In this embodiment, the cover 30 is configured to be slidably mounted, so that the position on the mounting carrier 10 for stacking the opened cover 30 can serve as the movement path of the cover 30, thereby reducing the possibility of interference between the cover 30 and other objects during the opening process and improving the stability of the movement of the cover 30. Furthermore, the first transmission assembly 431 includes two rotatably connected connecting rods 4311, which can make the structure of the first transmission assembly 431 relatively simple, and facilitate its processing, manufacturing and installation. At the same time, the first driving member 41 can be a rotary motor or rotary cylinder for providing a rotating driving member as described above, which can be smaller and reduce the space occupied. In addition, the connecting rod 4311 can also rotate toward the side away from the product body 20 during the sliding extension of the product body 20, which can help reduce the possibility of interference between the two and further improve the stability of each movement in the electronic product 100.

[0087] Please refer to Figure 1 and Figure 2In one embodiment of the present application, the second transmission assembly 433 includes a first gear 4331, a rack 4332 and a pushing member 4333, the first gear 4331 is connected to the first driving member 41; the rack 4332 is arranged on the mounting carrier 10 and slides along the second direction or the third direction, and is engaged with the first gear 4331, and the third direction intersects with the first direction and the second direction; the pushing member 4333 is connected to the rack 4332, and the pushing member 4333 is provided with an abutting surface 4334 which is an inclined surface or an arc surface, and the abutting surface 4334 is in abutment with the movable carrier 42, so that when the pushing member 4333 is driven by the rack 4332, the movable carrier 42 is driven to slide along the direction close to the exposure port 12.

[0088] In this embodiment, the second transmission assembly 433 is configured to include a first gear 4331, a rack 4332, and a pusher 4333, so that the movement of the rack 4332 and the pusher 4333 in the second transmission assembly 433 can be the same as the movement type of the cover 30. In this way, the main parts of the first transmission assembly 431 and the second transmission assembly 433 can be set to the side of the product body 20 that is opened toward the cover 30, so that they are located on the same side and are conveniently connected to the first driving member 41, thereby improving the convenience of installing and arranging the driving mechanism 40. At the same time, the second transmission assembly 433 and the movable carrier 42 also adopt abutment and matching transmission, such as Figure 1 and Figure 2 As shown, the horizontal rightward sliding of the pusher 4333 pushes the movable carrier 42 to slide upward, thereby simplifying the connection between the second transmission assembly 433 and the movable carrier 42. The product body 20 can also be retracted by the product body 20's own gravity, causing it to descend and reset. Alternatively, a magnetic attraction can exist between the pusher 4333 and the movable carrier 42, thereby driving the product body 20 to reset. Furthermore, the pusher 4333 can be a block structure, or a plate structure, as long as it forms an abutment surface 4334 that abuts the movable carrier 42 of the product body 20. Furthermore, the movable carrier 42 can be provided with a mating surface that mates with the abutment surface 4334, or it can be provided with a roller that abuts the abutment surface 4334. Furthermore, the first gear 4331 and the first driving member 41 can be directly connected, or indirectly connected via the second gear 4335, as described below.

[0089] Please refer to Figure 1 and Figure 4In one embodiment of the present application, the second transmission assembly 433 also includes a second gear 4335, which is connected to the first driving member 41, and the second gear 4335 is an incomplete gear; the first gear 4331 is a complete gear, and the second gear 4335 can rotate to engage with the first gear 4331, and the first gear 4331 is engaged with the rack 4332.

[0090] In this embodiment, the second gear 4335 is configured as an incomplete gear, so that when the electronic product 100 is started, the first driving member 41 can first drive the cover 30 to slide for a certain distance, and then drive the first gear 4331 to rotate and drive the product body 20 to rise. This can reduce the possibility of collision between the product body 20 and the cover 30 during the rising process, and can achieve the simultaneous opening of the cover 30 and extension of the product body 20 as described above. In addition, the second gear 4335 can be directly connected to the output shaft of the first driving member 41, or it can be connected to a transmission shaft connected to the output shaft of the first driving member 41.

[0091] In addition, it should be noted that, when the first driving member 41 is used to provide a rotational driving force as described above, when the axis of the first driving member 41 intersects the sliding direction of the product body 20:

[0092] The first transmission assembly 431 may also include two bevel gears, a transmission shaft, a spur gear, and a transmission rack. One bevel gear is connected to the first drive member 41, and the other bevel gear is connected to the lower end of the transmission shaft. The spur gear is connected to the upper end of the transmission shaft. The transmission rack meshes with the spur gear and is connected to the cover member 30. In this case, the bevel gear assembly can drive the transmission shaft to rotate, thereby driving the spur gear. The rotation of the spur gear can drive the transmission rack to slide, thereby driving the cover member 30 connected to the transmission rack to slide. The second transmission assembly 433 may also include a driving pulley, a driven pulley, a belt, and a cam. The driving pulley can be driven by the driving member, and the driven pulley can transmit its rotation to the driven pulley via the belt. The cam can be coaxial with the driving pulley or directly connected to be driven, thereby lifting the movable carrier 42 through the side surface of the cam.

[0093] When the axis of the first driving member 41 is parallel to the sliding direction of the product body 20, the first transmission assembly 431 may include a transmission shaft, a spur gear, and a transmission rack. The transmission shaft can be driven by the first driving member 41, thereby driving the spur gear at the upper end of the transmission shaft to rotate; the spur gear can in turn drive the transmission rack to slide, thereby driving the cover member 30 connected to the transmission rack to slide. The second transmission assembly 433 may include a screw and a slider. The screw can be driven by the first driving member 41, and the slider can be mounted on the screw, and the slider can also be connected to the movable carrier 42.

[0094] If the first drive member 41 is used to provide a linear driving force as described above, the first transmission assembly 431 and the second transmission assembly 433 can both include a pull cord and an elastic member, so that when the first drive member 41 extends upward, it can release the pull cord connected to the product body 20 and the pull cord connected to the cover 30. In this case, the product body 20 can be driven upward by the action of the corresponding elastic member, and the cover 30 can be driven to move open by the action of the corresponding elastic member. When the first drive member 41 retracts downward, it can pull the pull cord connected to the product body 20 and the pull cord connected to the cover 30. In this case, the product body 20 can be lowered under the action of the tension of the corresponding pull cord, overcoming the elastic force of the corresponding elastic member, while the cover 30 can be moved closed under the action of the tension of the corresponding pull cord, overcoming the elastic force of the corresponding elastic member.

[0095] It can be seen that the present application does not limit the structures of the first transmission assembly 431 and the second transmission assembly 433 .

[0096] Furthermore, it should be noted that, when the first transmission module 43, as described above, comprises only one transmission assembly, so that the cover 30 and the movable carrier 42 share a common transmission assembly, the transmission assembly may include a transmission frame that can be connected to the first drive member 41 and driven to slide. The upper end of the transmission frame can be connected to the cover 30, and the lower end can be provided with an abutment surface 4334 as described above, thereby driving the cover 30 and the product body 20 as the transmission frame slides. Alternatively, the transmission assembly may include a screw, a slider, an upper transmission rod, and a lower transmission rod. The screw can be connected to the first drive member 41 and driven to rotate, and the rotating screw can drive the slider mounted on the screw to slide. The upper transmission rod may include two segments, the adjacent ends of the two segments being rotatably connected, and the distal ends being connected to the slider and the cover 30, respectively. The lower transmission rod can have one end rotatably connected to the lower end of the movable carrier 42 and the other end rotatably connected to the slider. In this way, during the horizontal sliding of the slider, the upper transmission rod and the lower transmission rod can drive the covering member 30 and the product body 20 to slide.

[0097] It can be seen that the present application does not limit the structure of the first transmission module 43 .

[0098] Please refer to Figures 1 to 3 In one embodiment of the present application, the driving mechanism 40 also includes a second transmission module 46, the second transmission module 46 includes a third gear 461 and a fourth gear 463, the third gear 461 is connected to the second driving member 45; the fourth gear 463 is provided on the supporting carrier 21 and meshes with the third gear 461.

[0099] In this embodiment, by providing the third gear 461 and the fourth gear 463 , the rotation speed transmitted to the product body 20 can be adjusted, so as to improve the rotation stability of the product body 20 .

[0100] Please refer to Figure 1 and Figure 2 In one embodiment of the present application, the cover 30 can be slid open and then stacked on the inner side of the mounting carrier 10 to conceal the cover, reduce the possibility of interference with external objects, and improve the aesthetics of the product. At the same time, it can also facilitate connection with the drive mechanism 40 within the enclosed accommodating cavity 11.

[0101] The present application also proposes a vehicle device, which includes an electronic product 100. The specific structure of the electronic product 100 refers to the above-mentioned embodiment. Since the present vehicle device adopts all the technical solutions of all the above-mentioned embodiments, it has at least all the beneficial effects brought about by the technical solutions of the above-mentioned embodiments, which will not be described one by one here. Among them, the vehicle device can also include a vehicle body, and the vehicle body includes a seat and a dashboard. In this case, the electronic product 100 can be provided on the armrest of the seat so that the passenger on the seat can use it accordingly. Of course, the electronic product 100 can also be provided on the dashboard. Alternatively, the electronic product 100 can be provided on both the armrest of the seat and the dashboard.

[0102] The above description is only a preferred embodiment of the present application and does not limit the patent scope of the present application. All equivalent structural transformations made by using the contents of the present application description and drawings under the inventive concept of the present application, or direct / indirect application in other related technical fields are included in the patent protection scope of the present application.

Claims

1. An electronic product, characterized in that: include: A mounting carrier, the mounting carrier being provided with a receiving cavity and a revealing opening communicating with the receiving cavity; and A product body, comprising a support carrier and at least two functional modules, wherein the support carrier is disposed in the accommodating cavity and is capable of sliding along a first direction and rotating about a rotation axis parallel to a second direction, wherein the first direction and the second direction intersect; and at least two functional modules are disposed on the support carrier and distributed around the rotation axis of the support carrier; as well as a driving mechanism configured to drive the support carrier to slide and rotate; The support carrier can slide along the first direction until at least a portion of the product body extends out of and retracts from the revealing opening.

2. The electronic product according to claim 1, wherein: When the product body is at least partially extended from the revealing opening, the driving mechanism can drive the supporting carrier to rotate.

3. The electronic product according to claim 1, wherein: The electronic product further includes a cover configured to open and cover the exposure port; The driving mechanism is further configured to drive the covering member to move so as to open and cover the exposure port.

4. The electronic product according to claim 3, wherein: The process in which the driving mechanism drives the cover to open the revealing opening and the process in which the driving mechanism drives the support carrier to slide until at least a portion of the product body extends out of the revealing opening are simultaneously completed; The process in which the driving mechanism drives the supporting carrier to slide until at least a portion of the product body is retracted from the revealing opening and the process in which the driving mechanism drives the covering member to cover the revealing opening are completed synchronously.

5. The electronic product according to claim 3, wherein: The driving mechanism comprises: a first driving member, the first driving member being disposed on the mounting carrier; a movable carrier, the movable carrier being slidably disposed in the accommodating cavity along the first direction, and the supporting carrier being rotatably mounted on the movable carrier; a first transmission module, the first transmission module transmission-connecting the first driving member, the covering member, and the movable carrier, so that the first driving member drives the covering member to move and the movable carrier to slide via the first transmission module; and A second driving member is provided on the movable carrier and is configured to drive the supporting carrier to rotate.

6. The electronic product according to claim 5, wherein: The first transmission module includes: a first transmission assembly, the first transmission assembly transmittingly connecting the first driving member and the covering member, so that the first driving member drives the covering member to move via the first transmission assembly; and The second transmission assembly is connected to the first driving member and the movable carrier in a transmission manner, so that the first driving member drives the movable carrier to slide through the second transmission assembly.

7. The electronic product according to claim 6, wherein: The covering member is slidably arranged on the mounting carrier along a second direction or a third direction, and the third direction intersects the first direction and the second direction; The first transmission assembly includes two rotatably connected connecting rods, and ends of the two connecting rods that are separated from each other are rotatably connected to the first driving member and the covering member respectively.

8. The electronic product according to claim 6, wherein: The second transmission assembly includes: a first gear connected to the first driving member; a rack, the rack being slidably disposed on the mounting carrier along a second direction or a third direction and meshing with the first gear, the third direction intersecting the first direction and the second direction; and A pushing member is connected to the rack, and the pushing member is provided with an abutting surface in the form of an inclined surface or an arc surface, and the abutting surface and the movable carrier abut against each other to abut and drive the movable carrier to slide in a direction close to the revealing opening when the pushing member is driven by the rack.

9. The electronic product according to claim 8, wherein: The second transmission assembly further includes a second gear, the second gear is connected to the first driving member, and the second gear is an incomplete gear; The first gear is a full gear, and the second gear can rotate to mesh with the first gear.

10. The electronic product according to any one of claims 1 to 9, wherein: There are two functional modules, and the two functional modules are defined as a first functional module and a second functional module; The first functional module has a first working surface, the second functional module has a second working surface, and the first working surface and the second working surface are arranged back to back.

11. The electronic product according to claim 10, wherein: The first functional module is a speaker, an in-vehicle robot or an ambient light, and the second functional module is a touch module; And / or, the product body is spherical, and the center of the sphere of the product body is located on the rotation axis of the support carrier; And / or, the first direction is an up-down direction, and the first working surface and the second working surface are arranged back to back in the first direction.

12. A vehicle device, characterized in that: The electronic product comprises the electronic product according to any one of claims 1 to 11.