Electronic product

By using a drive mechanism to achieve dual-degree-of-freedom adjustment of electronic products, the problem of poor user experience and insufficient protection caused by fixed settings is solved, improving the product's usability and sense of ritual, and providing storage protection.

CN116528096BActive Publication Date: 2026-08-25WEIFANG GOERDYNA TECH CO LTD
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Patent Information

Application Number
CN202310426935.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-17
Publication Date
2026-08-25
Estimated Expiration
2043-04-17

AI Technical Summary

Technical Problem

Existing electronic products suffer from poor user experience and insufficient protection due to their fixed settings, and cannot flexibly adjust their orientation or provide a dynamic sense of ritual.

Method used

A drive mechanism, including a first drive component and a second drive component, is adopted to realize the dual rotational degrees of freedom adjustment of the product body. The first drive component rotates around a first rotation axis, and the second drive component rotates around a second rotation axis to adjust the orientation and posture of the product body.

Benefits of technology

It enhances the user experience and sense of ritual of electronic products, while also achieving product storage and protection, and increasing the level of intelligence.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an electronic product, which comprises a mounting carrier, a product body and a driving mechanism. The mounting carrier is provided with a mounting cavity and a mounting port communicating with the mounting cavity; the product body is arranged in the mounting cavity; the driving mechanism comprises a first driving assembly and a second driving assembly; the first driving assembly is used for driving the product body to rotate around a first rotation axis, so that the product body can be rotated to at least partially extend out of the mounting port; the second driving assembly is used for driving the first driving assembly to rotate around a second rotation axis intersecting with the first rotation axis, so as to adjust the orientation of the product body. The technical scheme of the application can improve the use experience of the electronic product and realize the storage protection of the electronic product.
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Description

Technical Field

[0001] This invention relates to the field of electronic product technology, and in particular to an electronic product. Background Technology

[0002] Currently, electronic products such as home speakers, car speakers, and in-car robots are typically fixed in place, which introduces certain drawbacks to their usability. For example, installation limitations restrict their orientation, potentially preventing them from facing the user effectively. Furthermore, their fixed position fails to provide a dynamic and engaging experience. Therefore, the user experience of these products needs improvement. On the other hand, fixed installations mean that these products are largely exposed, offering relatively poor protection. Summary of the Invention

[0003] The main objective of this invention is to provide an electronic product that improves the user experience and provides storage protection.

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

[0005] The mounting carrier has a mounting cavity and a mounting port communicating with the mounting cavity;

[0006] The product body, wherein the product body is disposed within the mounting cavity; and

[0007] The driving mechanism includes a first driving component and a second driving component. The first driving component drives the product body to rotate around a first rotation axis so that the product body can rotate to at least partially extend out of the mounting port. The second driving component drives the first driving component to rotate around a second rotation axis that intersects with the first rotation axis so as to adjust the orientation of the product body.

[0008] Optionally, the electronic product further includes a connecting bracket, the first driving component is mounted on the connecting bracket, and the second driving component can drive the connecting bracket to rotate around the second rotation axis.

[0009] Optionally, the connecting bracket includes a bearing seat and a support column, the support column protruding from the bearing seat on the side facing the product body;

[0010] The product body is provided with a first connecting shaft, which is rotatably connected to the end of the support column away from the bearing seat around the first rotation axis.

[0011] The first drive component is mounted on the carrier or the support column and connected to the first rotating shaft. The second drive component can drive the carrier to rotate around the second rotating axis.

[0012] Optionally, the first driving component includes:

[0013] A first driving member, the first driving member being mounted on the support; and

[0014] A first transmission assembly is connected to the first connecting shaft and the first driving member.

[0015] Optionally, the first transmission assembly includes:

[0016] A first transmission wheel, connected to the first driving member and capable of being driven to rotate by the first driving member; and

[0017] The second transmission wheel is connected to the first connecting shaft. The axis of the second transmission wheel and the axis of the first transmission wheel are arranged side by side. The second transmission wheel can be driven to rotate by the first transmission wheel.

[0018] Optionally, the first transmission assembly further includes a mounting shaft, a worm gear, and a worm. The mounting shaft is rotatably mounted on the bearing seat. The axis of the worm gear coincides with the axis of the first transmission wheel. Both the worm gear and the first transmission wheel are mounted on the first mounting shaft.

[0019] The worm is connected to the first driving member and can be driven to rotate by the first driving member. The worm also meshes with the worm wheel.

[0020] Optionally, the electronic product is defined to have a vertical direction, with the mounting port facing upwards;

[0021] In the vertical direction of the electronic product, the first drive wheel and the second drive wheel are staggered, and the first drive member is located below the second drive wheel.

[0022] Optionally, the connecting bracket is disposed on the outside of the mounting carrier, and the support column includes:

[0023] A first segment, one end of which is connected to the support base, and the other end extending in a direction toward the mounting carrier; and

[0024] The second segment is connected to the end of the first segment away from the support base. The second segment has an arc-shaped structure and the concave surface of the second segment faces the mounting carrier.

[0025] The first connecting shaft passes through the mounting carrier and is rotatably connected to the end of the second segment away from the first segment.

[0026] Optionally, the mounting carrier includes a main body cover, the inner space of the main body cover being formed as at least part of the mounting cavity, and both the inner and outer surfaces of the main body cover being spherical.

[0027] The concave surface of the second segment is disposed facing the outer surface of the main body cover, and the first connecting shaft passes through the main body cover to connect to the second segment.

[0028] Optionally, the mounting carrier further includes an annular cylinder, the opposite ends of which are open;

[0029] One end of the annular cylinder with an opening is connected to the main body cover, and the other end is enclosed to form the mounting port. In the direction from the bottom of the mounting cavity to the mounting port, the cross-sectional area of ​​the annular cylinder is increased.

[0030] Optionally, the electronic product further includes a fixed carrier, wherein the side of the carrier facing away from the support column is rotatably connected to the fixed carrier about the second rotation axis;

[0031] The second drive assembly includes a second drive member and a second transmission assembly. The second drive member is mounted on the fixed carrier, and the second transmission assembly is drively connected to the carrier and the second drive member.

[0032] Optionally, the second transmission assembly includes:

[0033] A drive gear, the drive gear being connected to the second drive member; and

[0034] The driven gear is connected to the bearing seat and meshes with the driving gear.

[0035] Optionally, the first drive assembly and the support column are located on one of the opposite sides of the bearing seat;

[0036] On a projection plane perpendicular to the second rotation axis, the projection of the driven gear is fan-shaped, and the driven gear is located on one of the opposite sides of the support.

[0037] Optionally, on a projection plane perpendicular to the second rotation axis, the included angle formed by the two opposing walls of the driven gear in its rotation direction is defined as α, satisfying the relationship: 130°≤α≤200°;

[0038] And / or, the driven gear includes a fixed plate and a transmission plate, the fixed plate being connected to the bearing seat; the transmission plate being connected to the edge of the fixed plate and arranged around the second rotation axis, the outer side wall of the transmission plate being provided with meshing teeth, the meshing teeth meshing with the driving gear.

[0039] Optionally, both the connecting bracket and the fixing carrier are located on the outside of the mounting carrier, and the first connecting shaft passes through the mounting carrier to connect to the support column;

[0040] The mounting carrier is provided with a connecting hole, and the bearing seat is provided with a through hole, the through hole and the connecting hole are arranged opposite to each other;

[0041] The electronic product also includes fasteners that pass through the through hole and are inserted into the connection hole to connect and fix the carrier and the mounting carrier.

[0042] Optionally, the mounting carrier has a first connecting post protruding on the side facing the support seat, and the first connecting post has the connecting hole.

[0043] Optionally, the connecting bracket further includes a second connecting post, which is connected to the bearing seat and is provided corresponding to the through hole;

[0044] The second connecting post has a insertion hole at the end away from the support, and the first connecting post is inserted into the insertion hole at the end away from the mounting carrier.

[0045] The second connecting post is also provided with a clearance hole that connects the insertion hole and the through hole. The fastener passes through the through hole and the clearance hole in sequence to be inserted into the connecting hole.

[0046] Optionally, the number of the second connecting posts is at least two, and the at least two second connecting posts are evenly distributed around the second rotation axis;

[0047] The number of the first connecting posts is the same as the number of the second connecting posts, and one of the first connecting posts is inserted into the insertion hole of one of the second connecting posts.

[0048] Optionally, the fixed carrier is provided with a connecting hole. On a projection plane perpendicular to the second rotation axis, the connecting hole and the through hole are staggered, and the distance between the connecting hole and the through hole and the second rotation axis is equal.

[0049] Optionally, the product body is a speaker assembly, a display module, or a vehicle-mounted robot;

[0050] And / or, the product body can rotate around the first rotation axis in a first direction or in a second direction opposite to the first direction. The rotational stroke of the product body around the first rotation axis is defined as X. When the product body rotates in the first direction, the relationship is satisfied: 250°≤X≤270°. When the product body rotates in the second direction, the relationship is satisfied: 90°≤X≤110°.

[0051] And / or, the first drive component and the product body can rotate around the second rotation axis in a third direction and a fourth direction opposite to the third direction. The rotational stroke of the first drive component and the product body around the second axis is defined as Y. When the product body rotates in the third direction and the fourth direction, the following relationship is satisfied: 60°≤Y≤90°.

[0052] And / or, the electronic product is defined to have a vertical direction, the first rotation axis is set at an angle to both the vertical and horizontal directions, and the second rotation axis is parallel to the vertical direction;

[0053] And / or, the electronic product further includes a position identifier and a rotation controller, wherein the position identifier is used to identify the target location of the user; and the rotation controller is used to control the drive mechanism to drive the product body to rotate according to the identification information of the position identifier, so that the product body faces the target location.

[0054] In use, the electronic product of this invention allows the product body to rotate around a first rotation axis via a first driving component in the driving mechanism, enabling it to extend from the mounting opening of the mounting cavity. A second driving component drives the first driving component to rotate around a second rotation axis, allowing adjustment of the product body's orientation. In other words, the product body can adjust its mounting posture via the driving mechanism, and this adjustment has two degrees of rotational freedom. This diversifies the rotation path of the product body, effectively facilitating its orientation for user use. Simultaneously, the rotation of the product body driven by the driving mechanism provides a dynamic sense of ritual for the user. Therefore, the electronic product's usability and sense of ritual are enhanced, and the driving mechanism's high level of intelligence significantly improves the user experience. Furthermore, the rotation of the product body via the driving mechanism allows the product body to be in a state of use, extending from the mounting opening of the mounting cavity, and in a state of being stored within the mounting cavity. In this way, when the electronic product is not in use, the product body can be rotated into the mounting cavity by a drive mechanism for storage. Therefore, by rotatably mounting the electronic product body in the mounting cavity of the mounting carrier and providing a drive mechanism to move it, this solution can significantly improve the user experience of the electronic product while also achieving storage and protection. Attached Figure Description

[0055] To more clearly illustrate the technical solutions in the embodiments of the present invention 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 the present invention. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0056] Figure 1 This is a schematic diagram of the structure of an embodiment of the electronic product of the present invention;

[0057] Figure 2 for Figure 1 A schematic diagram showing the state of the electronic product body after it has been rotated.

[0058] Figure 3 for Figure 1 A schematic diagram of the exploded structure of a Chinese electronic product;

[0059] Figure 4 for Figure 3 A schematic diagram of the structure of a Chinese electronic product without its outer casing;

[0060] Figure 5 for Figure 4 Another partial structural diagram of a Chinese electronic product;

[0061] Figure 6 for Figure 5 A schematic diagram of a partial structure of a Chinese electronic product from another perspective;

[0062] Figure 7 for Figure 5 A schematic diagram of the assembly structure of the first driving component and the main body of the electronic product.

[0063] Figure 8 for Figure 7 A partial structural diagram of the first driving component in the diagram;

[0064] Figure 9 for Figure 8 Exploded view of the first drive component;

[0065] Figure 10 for Figure 6 A schematic diagram of the assembly structure of the second drive component, connecting bracket, and mounting carrier;

[0066] Figure 11 for Figure 10 Exploded view of the second drive assembly, connecting bracket, and mounting carrier;

[0067] Figure 12 for Figure 11 A schematic diagram of the driven gear in the second drive assembly from one perspective;

[0068] Figure 13 for Figure 12 A structural schematic diagram of the driven gear from another perspective;

[0069] Figure 14 A cross-sectional schematic diagram of the assembly structure of mounting carriers and connecting brackets in electronic products;

[0070] Figure 15 A schematic diagram of the assembly structure of the product body and the mounting carrier in an electronic product;

[0071] Figure 16 for Figure 15 The exploded structural diagram of the product body and the mounting carrier.

[0072] Explanation of icon numbers:

[0073]

[0074]

[0075] The realization of the objective, functional features and advantages of the present invention will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0076] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.

[0077] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present invention are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indication will also change accordingly.

[0078] In this invention, unless otherwise explicitly specified and limited, the terms "connection," "fixed," etc., should be interpreted broadly. For example, "fixed" can mean a fixed connection, a detachable connection, or an integral part; it can mean a mechanical connection or an electrical connection; it can mean a direct connection or an indirect connection through an intermediate medium; it can mean the internal communication of two components or the interaction between two components, unless otherwise explicitly limited. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.

[0079] Furthermore, the use of terms such as "first" and "second" in this invention is for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the word "and / or" throughout the text means including three parallel solutions; for example, "A and / or B" includes solution A, solution B, or a solution that simultaneously satisfies A and B. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of a person skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this invention.

[0080] Electronic products, which are power-based products, include home speakers, car speakers, display devices, and in-vehicle robots—all requiring a power source. Currently, these electronic products are typically fixed in place, meaning they cannot move. This presents certain drawbacks in their use. Specifically, firstly, installation is restricted, limiting their orientation and potentially preventing them from facing the user effectively. Furthermore, their fixed position lacks the dynamic feel of a mobile device, resulting in a less than ideal user experience. Secondly, their fixed placement means they are essentially exposed, offering relatively poor protection.

[0081] Therefore, based on the above considerations, and to address the relatively poor user experience and protection of some current electronic products in the industry, this application proposes a novel electronic product. This novel electronic product innovatively mounts the product body rotatably within a mounting cavity, and is equipped with a drive mechanism including a first drive component and a second drive component. The first drive component drives the product body, and the second drive component drives the first drive component, thereby adjusting the mounting posture of the product body. This allows the electronic product to face the user more effectively during use, providing a dynamic and ceremonial experience and improving the user experience. Simultaneously, the drive mechanism also allows the product body to rotate and be stored in the mounting cavity when not in use, thus achieving secure storage and protection for the electronic product.

[0082] It should be noted that the electronic products proposed in this application can be speakers (including home speakers and car speakers), display devices, or in-vehicle robot devices, etc. This application does not limit the specific type of electronic product, as long as it is an electronic product that needs to be rotated for use and rotated into the mounting cavity for storage.

[0083] The specific structure of the electronic product proposed in this application will be explained and described below with specific embodiments. In one embodiment of this application, please refer to the reference. Figures 1 to 6The electronic product 100 proposed in this application includes a mounting carrier 10, a product body 30, and a driving mechanism 50. The mounting carrier 10 has a mounting cavity 11 and a mounting port 13 communicating with the mounting cavity 11. The product body 30 is disposed within the mounting cavity 11. The driving mechanism 50 includes a first driving component 51 and a second driving component 53. The first driving component 51 drives the product body 30 to rotate around a first rotation axis, allowing the product body 30 to rotate to at least partially extend out of the mounting port 13. The second driving component 53 drives the first driving component 51 to rotate around a second rotation axis intersecting the first rotation axis, thereby adjusting the orientation of the product body 30.

[0084] The mounting carrier 10 can be used to form a mounting cavity 11 with a mounting opening 13, thereby forming a mounting position to accommodate the product body 30. The mounting carrier 10 can be approximately hemispherical, but can also be square, cylindrical, or any other shape; this application does not limit the shape of the mounting carrier 10. Similarly, the mounting cavity 11 can also be approximately hemispherical, square, or cylindrical; this application does not limit the shape of the mounting cavity 11. Of course, in some embodiments, to improve adaptability to the product body 30, the shapes of the mounting cavity 11 and the mounting carrier 10 can be correspondingly set according to the shape of the product body 30. For example, when the product body 30 is approximately hemispherical, the mounting cavity 11 and the mounting cavity 11 body can also be approximately hemispherical. Furthermore, when the electronic product 100 is in normal use, the mounting port 13 can be facing upwards, to one side, or downwards. This application does not make specific limitations on this, and can be adapted to meet the needs of the actual application scenario of the electronic product 100.

[0085] The product body 30 can serve as a carrier for inheriting the functions of the electronic product 100. For example, when the electronic product 100 is a speaker, the product body 30 can be a speaker assembly that enables sound production; when the electronic product 100 is a display device, the product body 30 can be a display module; when the electronic product 100 is a vehicle-mounted robot device, the product body 30 can be a vehicle-mounted robot that enables human-computer interaction. Therefore, this application does not limit the specific type of the product body 30, which is determined by the type of the electronic product 100. The product body 30 being disposed within the mounting cavity 11 includes the case where the entire product body 30 is housed within the mounting cavity 11, and also includes the case where a portion of the product body 30 protrudes from the mounting opening 13 of the mounting cavity 11.

[0086] The drive mechanism 50 can provide power, that is, the first drive component 51 can drive the product body 30 to rotate around the first rotation axis, and the second drive component 53 can drive the first drive component 51 to rotate around the second rotation axis, so as to realize the indirect drive of the product body 30 by the second drive component 53. Wherein, the product body 30, driven by the first drive component 51, can rotate to the point where at least part of it protrudes from the mounting port 13. This means that after the product body 30 rotates around the first rotation axis, the working surface of the product body 30 (when the product body 30 is a speaker assembly, this working surface 33 can be a sound-emitting surface; when the product body 30 is a display module, this working surface 33 can be a display surface; when the product body 30 is an in-vehicle robot, this working surface 33 can be a human-machine interaction surface) can protrude from the mounting port 13 and be in an upright state (e.g., Figure 2As shown in the diagram, in other words, the centerline of the product body 30 passing through the working surface 33 can be angled with the plane containing the mounting opening 13. Therefore, the fact that the product body 30 can rotate to at least partially protrude from the mounting opening 13 indicates the upright state that the product body 30 can have after rotation, and is not related to whether the product body 30 is partially protruding from the mounting opening 13 in its initial state before rotating around the first rotation axis. This means that even if the product body 30 is partially protruding from the mounting opening 13 in its initial state, it will not affect the subsequent operation of the product body 30 after rotating around the first rotation axis to protrude from the mounting opening 13. In addition, after rotating around the first rotation axis, the product body 30 can be in a state where it is completely protruding from the mounting opening 13, or it can be in a state where it is still partially located within the mounting cavity 11. The fact that the orientation of the product body 30 can be adjusted under the indirect drive of the second drive assembly 53 means that after rotating around the second rotation axis, the orientation of the working surface of the product body 30 can be adjusted to accommodate users at different positions in the circumferential direction. For example, in one embodiment, when the electronic product 100 is in a normal placement state, the electronic product 100 is defined to have a vertical direction, the mounting port 13 can be set upwards, the first rotation axis can be set at an angle to both the vertical and horizontal directions, and the second rotation axis can be parallel to the vertical direction. Of course, this application is not limited to this. In other embodiments, when the mounting port 13 is set to face the horizontal direction, the first rotation axis can also be parallel to the vertical direction, and the second rotation axis can be parallel to the horizontal direction. The specific first and second rotation axes can be adaptively set according to the orientation required by the electronic product 100 in the actual application scenario. Furthermore, the first driving component 51 and the second driving component 53 can work sequentially, causing the product body 30 to first rotate around the first rotation axis, and then rotate around the second rotation axis after reaching its position, thus facilitating corresponding control of different rotation processes. Of course, the first driving component 51 and the second driving component 53 can also work simultaneously, causing the product body 30 to rotate around both the first and second rotation axes simultaneously, thus making the movement of the product body 30 more novel and enhancing its sense of ceremony. Alternatively, the second drive assembly 53 and the first drive assembly 51 can operate sequentially, causing the product body 30 to rotate around the second rotation axis, and then rotate around the first rotation axis after reaching the desired position. Furthermore, when the first drive assembly 51 drives the product body 30 to rotate around the first rotation axis, it can stop at a fixed point only when it reaches a preset rotation stroke, or it can stop arbitrarily during the rotation to the preset rotation stroke, ensuring that it rotates until at least part of it extends out of the mounting port 13. The second drive assembly 53 is driven to adjust the orientation of the product body 30; therefore, to improve the adjustment effect...When the second drive assembly 53 drives the first drive assembly 51 and the product body 30 to rotate around the second rotation axis, it can stop arbitrarily during the rotation to a preset rotation stroke. Furthermore, the first drive assembly 51 can be a combination of the first drive member 511 and the first transmission assembly 512 as described below, or it can consist only of the first drive member 511, which directly drives the product body 30 to rotate. Similarly, the second drive assembly 53 can be a combination of the second drive member 531 and the second transmission assembly 532 as described below, or it can consist only of the second drive member 531, which directly drives the first drive assembly 51 to rotate. Moreover, the first drive assembly 51 and the second drive assembly 53 can be disposed within the mounting cavity 11 along with the product body 30. Alternatively, the drive mechanism 50 can be disposed outside the mounting carrier 10. In this case, one end of the product body 30 connected to the first drive assembly 51 and / or one end of the first drive assembly 51 connected to the product body 30 can pass through the mounting carrier 10. Therefore, this application does not limit the specific type and location of the first drive component 51 and the second drive component 53 in the drive mechanism 50.

[0087] In use, the electronic product 100 of the present invention allows the product body 30 to rotate around a first rotation axis via the first driving component 51 in the driving mechanism 50, enabling the product body 30 to extend from the mounting port 13 of the mounting cavity 11. The first driving component 51 can be driven by the second driving component 53 to rotate around a second rotation axis, allowing adjustment of the orientation of the product body 30. In other words, the product body 30 can adjust its mounting posture via the driving mechanism 50, and this adjustment has two degrees of rotational freedom. This diversifies the rotation path of the product body 30, effectively facilitating its orientation for user use. Simultaneously, the rotation of the product body 30 by the driving mechanism 50 provides the user with a dynamic sense of ritual. Therefore, the electronic product 100 is enhanced in both usability and aesthetic appeal, and the driving mechanism 50's high level of intelligence significantly improves the user experience. Furthermore, during the rotation of the product body 30 driven by the drive mechanism 50, the product body 30 of the electronic product 100 can be in a working state, extending from the mounting port 13 of the mounting cavity 11, and in a stored state, housed within the mounting cavity 11. Thus, when the electronic product 100 is not in use, the product body 30 can be rotated into the mounting cavity 11 by the drive mechanism 50 for storage. Therefore, by rotatably mounting the product body 30 of the electronic product 100 within the mounting cavity 11 of the mounting carrier 10, and by providing a drive mechanism 50 to drive it, this solution significantly improves the user experience of the electronic product 100 while also providing storage protection for the electronic product 100.

[0088] Please refer to Figure 4 In one embodiment of this application, the electronic product 100 further includes a connecting bracket 70, a first driving component 51 is mounted on the connecting bracket 70, and a second driving component 53 can drive the connecting bracket 70 to rotate around a second rotation axis.

[0089] The connecting bracket 70 provides a mounting position for mounting the first drive assembly 51. Simultaneously, the connecting bracket 70 connects to the second drive assembly 53, thereby indirectly driving the first drive assembly 51 as the second drive assembly 53 drives the connecting bracket 70 to rotate. The connecting bracket 70 can be a combination of the bearing seat 71 and the support column 73 described below, or it can be a plate structure. This application does not limit the specific structure and shape of the connecting bracket 70. Furthermore, when the drive mechanism 50 is positioned within the mounting cavity 11 along with the product body 30, the connecting bracket 70 can also be positioned within the mounting cavity 11. Similarly, when the drive mechanism 50 is positioned outside the mounting carrier 10, the connecting bracket 70 can also be positioned outside the mounting carrier 10.

[0090] In this embodiment, the connecting bracket 70 serves two purposes. First, it allows for the mounting of the first driving component 51 and its connection to the second driving component 53. This facilitates the installation of connecting and transmission structures on the connecting bracket 70, enabling the connection between the second driving component 53 and the first driving component 51. Second, the connecting bracket 70 eliminates the need for a direct connection between the second driving component 53 and the first driving component 51, reducing the requirements for the placement of the second driving component 53. It also helps ensure that the second rotation axis coincides with the center line of the product body 30, allowing for more regular rotation of the product body around the second rotation axis and reducing the possibility of interference with the mounting carrier 10 or other objects. Of course, in other embodiments, when the electronic product 100 does not have the connecting bracket 70, the second driving component 53 can be directly connected to the first driving component 51.

[0091] Please refer to the reference. Figure 4 , Figure 5 as well as Figure 7 In one embodiment of this application, the connecting bracket 70 includes a bearing seat 71 and a support column 73. The support column 73 protrudes from the bearing seat 71 on the side facing the product body 30. The product body 30 is provided with a first connecting shaft 31, which is rotatably connected to the end of the support column 73 away from the bearing seat 71 around a first rotation axis. A first driving component 51 is installed on the bearing seat 71 or the support column 73 and connected to the first rotation axis. The second driving component 53 can drive the bearing seat 71 to rotate around a second rotation axis.

[0092] The support base 71 can be spaced apart from the product body 30, while one end of the support column 73 can be connected to the support base 71, and the other end extends towards the product body 30. The support base 71 can be any structure such as a plate, cover, or block, while the support column 73 can be any structure such as an arc-shaped column, a linear column, or a combination of arc-shaped and linear columns. Alternatively, the support column 73 and the support base 71 can be an integral structure to enhance the overall strength of the connecting bracket 70 and improve the stability of the support, while also eliminating the need for connecting the two, thus improving the convenience of subsequent assembly of the electronic product 100. Of course, the support column 73 and the support base 71 can also be separate components, which can then be assembled together using screws, adhesives, or snap-fit ​​connections.

[0093] In this embodiment, by configuring the connecting bracket 70 to include a bearing seat 71 and a support column 73, the support column 73 provides a mounting position so that the product body 30 can be rotatably mounted on the support column 73 via the first connecting shaft 31. The support provided by the support column 73 improves the stability of the product body 30 during installation and subsequent rotation. Furthermore, the single support column 73 allows for unilateral rotational connection of the product body 30, eliminating the need to consider the collinearity of the axes on both sides during rotation, thus improving the convenience of rotatably connecting the product body 30. The bearing seat 71 connects to the second drive assembly 53. Since the bearing seat 71 and the product body 30 are positioned opposite each other, the rotation axis of the bearing seat 71 coincides with the center line of the product body 30, ensuring regularity when the product body 30 rotates around the second rotation axis. Additionally, the structure of the connecting bracket 70, including the bearing seat 71 and the support column 73, is relatively simple, thus improving manufacturing convenience.

[0094] Please refer to the reference. Figure 5 and Figure 7 In one embodiment of this application, the first drive assembly 51 includes a first drive member 511 and a first transmission assembly 512. The first drive member 511 is mounted on the support 71; the first transmission assembly 512 is drively connected to the first connecting shaft 31 and the first drive member 511.

[0095] The first driving component 511 can be used to provide power, while the first transmission assembly 512 can be used to transmit the motion of the first driving component 511 to the product body 30, thereby indirectly driving the product body 30 through the first driving component 511. The first driving component 511 can be a motor, such as a stepper motor or a servo motor, which is not limited in this application. Alternatively, the first driving component 511 can also be a rotary cylinder. That is, the first driving component 511 only needs to be able to provide rotational driving force. The second transmission assembly 532 can be a combination of a first transmission wheel 513 and a second transmission wheel 514 as described below, or it can further include a combination of a conveyor belt 515 or a chain.

[0096] In this embodiment, the first driving assembly 51 is configured to include a first driving member 511 and a first transmission assembly 512, allowing the first driving member 511 to be mounted on a relatively large-area support 71, thereby improving the ease of installation of the first driving member 511. It also allows for a more compact installation of the first driving member 511, the connecting bracket 70, and the second driving member 531, thus reducing the overall size of the electronic product 100. The first transmission assembly 512 ensures that even after the first driving member 511 is mounted on the support 71, its movement can still be transmitted to the first connecting shaft 31 of the product body 30. Furthermore, the first transmission assembly 512 allows the product body 30 to achieve a suitable transmission ratio, preventing excessive rotation of the product body 30 and ensuring the stability of the electronic product 100 during use. Of course, in other embodiments, when the first driving assembly 51 does not include the first transmission assembly 512, the first driving member 511 can be directly mounted on the support column 73.

[0097] Please refer to the reference. Figure 5 and Figure 7 In one embodiment of this application, the first transmission assembly 512 includes a first transmission wheel 513 and a second transmission wheel 514. The first transmission wheel 513 is connected to the first driving member 511 and can be driven to rotate by the first driving member 511. The second transmission wheel 514 is connected to the first connecting shaft 31. The axis of the second transmission wheel 514 and the axis of the first transmission wheel 513 are arranged side by side. The second transmission wheel 514 can be driven to rotate by the first transmission wheel 513.

[0098] The first transmission wheel 513 and the second transmission wheel 514 can be rollers, in which case they need to be used in conjunction with the conveyor belt 515. Alternatively, the first transmission wheel 513 and the second transmission wheel 514 can be gears, which can be directly meshed or further used in conjunction with the conveyor belt 515. Or, the first transmission wheel 513 and the second transmission wheel 514 can be sprockets, in which case they need to be used in conjunction with a conveyor chain. Therefore, this application does not limit the specific type of the first transmission wheel 513 and the second transmission wheel 514 in the transmission assembly, as long as the first transmission wheel 513 can transmit the rotation of the driving member to the second transmission wheel 514. Furthermore, the first transmission wheel 513 can be directly mounted on the first driving member 511, or it can be rotatably mounted on other objects.

[0099] In this embodiment, the first transmission component 512 is configured as a first transmission wheel 513 and a second transmission wheel 514. This allows for the transmission of the first driving member 511 mounted on the bearing seat 71 and the first connecting shaft 31 mounted on the support column 73, while also simplifying the structure of the first transmission component 512 and improving the ease of manufacturing the first transmission component 512.

[0100] Please refer to Figure 7 In one embodiment of this application, the first transmission wheel 513 and the second transmission wheel 514 are gears.

[0101] In this embodiment, the first transmission wheel 513 and the second transmission wheel 514 are configured as gears, and the gears have convex teeth, which helps to increase the driving force of the first transmission wheel 513 on the second transmission wheel 514, so that the first transmission assembly 512 can effectively drive the product body 30 to rotate.

[0102] Please refer to Figure 7 In one embodiment of this application, the first transmission assembly 512 further includes a conveyor belt 515, the two ends of which are sleeved on the first transmission wheel 513 and the second transmission wheel 514.

[0103] In this embodiment, after the first drive wheel 513 is driven to rotate by the first drive member 511, it can drive the conveyor belt 515 to rotate. Simultaneously, the rotating conveyor belt 515 drives the second drive wheel 514. At this time, there is no direct meshing relationship between the first drive wheel 513 and the second drive wheel 514, so the placement of the first drive member 511 and the first drive wheel 513 is not affected by the meshing between the first drive wheel 513 and the second drive wheel 514. This allows the distance between the first drive member 511 and the first drive wheel 513 and the second drive wheel 514 to be adaptively set according to actual needs. That is, after designing the distance between the first drive member 511 and the first drive wheel 513 and the second drive wheel 514, a conveyor belt 515 of corresponding length can be used, thereby improving the convenience of setting up the first drive member 511 and the first drive wheel 513. Furthermore, when both the first transmission wheel 513 and the second transmission wheel 514 are gears, in order to further improve the stability of the transmission, the conveyor belt 515 may be provided with meshing teeth 537 that mesh with the first transmission wheel 513 and the second transmission wheel 514.

[0104] Please refer to Figure 5 In one embodiment of this application, when the electronic product 100 has a vertical direction, the mounting port 13 can be positioned upwards, and the second rotation axis can be parallel to the vertical direction. In this case, to further improve the compactness of the distribution between the first drive assembly 51 and the connecting bracket 70, the first connecting shaft 31 can be inclined downwards, so that the first transmission wheel 513 arranged side-by-side and the first drive member 511 connected to the first transmission wheel 513 can be positioned closer to the inner side of the support 71, thereby reducing the size of this part of the structure.

[0105] Please refer to the reference. Figure 5 , Figure 7 as well as Figure 8 In one embodiment of this application, the first transmission assembly 512 further includes a mounting shaft 516, a worm gear 517, and a worm 518. The mounting shaft 516 is rotatably mounted on the bearing seat 71. The axis of the worm gear 517 coincides with the axis of the first transmission wheel 513. Both the worm gear 517 and the first transmission wheel 513 are mounted on the first mounting shaft 516. The worm 518 is connected to the first driving member 511 and can be driven to rotate by the first driving member 511. The worm 518 also meshes with the worm gear 517.

[0106] In this embodiment, the first transmission assembly 512 further includes a mounting shaft 516, a worm gear 517, and a worm 518, so that the first driving member 511 and the first transmission wheel 513 do not need to be sequentially distributed along the axial direction of the first transmission wheel 513, but rather the axes of the first driving member 511 and the first transmission wheel 513 can be arranged in an intersecting manner. This can further improve the compactness of the distribution between the first driving member 511 and the first transmission assembly 512, so as to reduce the overall size of the electronic product 100 and improve the convenience of its subsequent placement. Of course, in other embodiments, when the first transmission assembly 512 does not include the mounting shaft 516, the worm gear 517, and the worm 518, the first transmission wheel 513 can also be directly disposed on the first driving member 511.

[0107] Please refer to Figure 7 In one embodiment of this application, the electronic product 100 is defined to have a vertical direction, with the mounting port 13 facing upward; in the vertical direction of the electronic product 100, the first transmission wheel 513 and the second transmission wheel 514 are staggered, and the first driving member 511 is located below the second transmission wheel 514.

[0108] In this embodiment, the first transmission wheel 513 and the second transmission wheel 514 are staggered, allowing at least a portion of the first driving member 511 to be positioned below the second transmission wheel 514. This fully utilizes the space on either side below the second transmission wheel 514, further improving the compactness of the distribution among the first driving member 511, the first transmission assembly 512, and the connecting bracket 70, thereby further reducing the overall size of the electronic product 100. Of course, in other embodiments, the first transmission wheel 513 and the second transmission wheel 514 can also be arranged side-by-side in the horizontal direction, or the first transmission wheel 513 can be positioned below the second transmission wheel 514.

[0109] Please refer to the reference. Figure 5 and Figure 8 In one embodiment of this application, the first drive assembly 51 further includes a mounting base 519, which is mounted on the support base 71. The first drive member 511, the worm gear 518, and the mounting shaft 516 are all mounted on the mounting base 519.

[0110] Mounting base 519 can be used to provide a mounting position for mounting the first drive member 511, worm gear 518, and mounting shaft 516. Mounting base 519 can be a single plate structure, a combination of multiple plates, or a frame structure composed of multiple columns. This application does not limit the shape and structure of mounting base 519, as long as it can be used to mount the first drive member 511, worm gear 518, and mounting shaft 516.

[0111] In this embodiment, the first driving component 511, the worm gear 518, and the mounting shaft 516 are all mounted on the mounting base 519. This simplifies the number of components in the electronic product 100, thereby simplifying its structure and improving manufacturing convenience. Furthermore, mounting the first driving component 511, the worm gear 518, and the mounting shaft 516 on the mounting base 519 facilitates one-time installation onto the carrier 71, improving assembly convenience. Of course, this application is not limited to this; in other embodiments, the first driving component 511, the worm gear 518, and the mounting shaft 516 can also be mounted using separate carriers.

[0112] Please refer to the reference. Figure 8 and Figure 9 In one embodiment of this application, the mounting base 519 is provided with a receiving groove 520, and the first driving member 511 is mounted on the outside of the mounting base 519; the worm gear 518 is rotatably mounted on at least one of the two opposite groove walls of the receiving groove 520, and the mounting shaft 516 is rotatably mounted on at least one of the other two opposite groove walls of the receiving groove 520.

[0113] In this embodiment, the first driving member 511 is disposed on the outer side of the mounting base 519, and the worm gear 518 and the mounting shaft 516 are installed crosswise in the receiving groove 520 of the mounting base 519. This allows the first driving member 511, the worm gear 518, and the worm wheel 517 to all have good mounting positions, thereby improving the convenience of their installation on the mounting base 519. At the same time, the space on the inner and outer sides of the mounting base 519 can be fully utilized, thereby further improving the compactness of the distribution between the first driving member 511 and the first transmission assembly 512. In addition, it should be noted that when the first transmission wheel 513 and the worm wheel 517 are rotatably mounted on the mounting shaft 516, the mounting shaft 516 can also be fixedly disposed on the mounting base 519.

[0114] Please refer to the reference. Figure 8 and Figure 9 In one embodiment of this application, the groove wall of the receiving groove 520 is provided with a first mounting groove 521 at one end away from the bottom of the receiving groove 520, and at least one end of the worm gear 518 is installed in the first mounting groove 521; the first drive assembly 51 also includes a first clamping member 523, which is connected to the mounting base 519 and cooperates with the mounting base 519 to limit the worm gear 518 housed in the first mounting groove 521.

[0115] At least one end of the worm gear 518 is installed in the first mounting groove 521. That is, the receiving groove 520 can have two first mounting grooves 521 on its wall, so that the two ends of the worm gear 518 can be installed in the two first mounting grooves 521 respectively. Alternatively, since one end of the worm gear 518 is connected to the first driving member 511, the receiving groove 520 can also have only one first mounting groove 521, so that the end of the worm gear 518 away from the first driving member 511 is installed in this receiving groove 520. In this case, the end of the first driving member 511 connected to the worm gear 518 and / or the end of the worm gear 518 connected to the first driving member 511 can pass through the mounting base 519. The first clamping member 523 can cooperate with the mounting base 519 to limit the worm gear 518 housed in the first mounting groove 521. Therefore, the first mounting groove 521 can be semi-circular and together with the first clamping member 523 form an integral circular hole for accommodating and accommodating the worm gear 518.

[0116] In this embodiment, a first mounting groove 521 is provided at the end of the accommodating groove 520 away from the bottom of the groove, and a first clamping member 523 is provided in conjunction with it. This makes it easier to process and shape the first mounting groove 521. Furthermore, it allows the worm gear 518 to be installed into the first mounting groove 521 first, and then the first clamping member 523 to be closed, thus achieving installation limitation of the worm gear 518. At this time, the worm gear 518 can be installed into the first mounting groove 521 relatively smoothly, thereby improving the convenience of installing the worm gear 518. Further, to improve the smoothness of the rotation of the worm gear 518, a bearing can be sleeved on the end of the worm gear 518. And to improve the convenience of maintenance and replacement of the worm gear 518, the first clamping member 523 can be detachably connected to the mounting base 519. Specifically, the first clamping member 523 can be connected by screws to improve the stability of the connection between the first clamping member 523 and the mounting base 519, while simplifying the assembly and disassembly process of the first connector. Alternatively, the first clamping member 523 can also be connected to the mounting base 519 by snap-fit ​​or magnetic connection. In some embodiments, the first clamping member 523 may also be fixedly mounted.

[0117] Please refer to the reference. Figure 8 and Figure 9 In one embodiment of this application, the wall of the receiving groove 520 is provided with a second mounting groove 522 at one end away from the bottom of the receiving groove 520, and at least one end of the mounting shaft 516 is installed in the second mounting groove 522; the first drive assembly 51 also includes a second clamping member 524, which is connected to the mounting base 519 and cooperates with the mounting base 519 to limit the mounting shaft 516 that is received in the second mounting groove 522.

[0118] At least one end of the mounting shaft 516 is installed in the second mounting groove 522. That is, the receiving groove 520 can have two second mounting grooves 522 on its wall, so that the two ends of the mounting shaft 516 are respectively installed in the two second mounting grooves 522. Alternatively, the receiving groove 520 can have only one second mounting groove 522, in which case one end of the mounting shaft 516 is installed in that receiving groove 520. The second clamping member 524 can cooperate with the mounting base 519 to limit the mounting shaft 516 housed in the second mounting groove 522. Therefore, the second mounting groove 522 can be semi-circular and, together with the second clamping member 524, form an integral circular hole for accommodating the mounting shaft 516.

[0119] In this embodiment, a second mounting groove 522 is provided at the end of the accommodating groove 520 away from the bottom of the accommodating groove 520, and a second clamping member 524 is provided in conjunction with it. This makes it easier to process and shape the second mounting groove 522. Furthermore, it allows the mounting shaft 516 to be installed into the second mounting groove 522 first, and then the second clamping member 524 to be closed, thus achieving installation limitation of the mounting shaft 516. At this time, the mounting shaft 516 can be installed into the second mounting groove 522 relatively smoothly, thereby improving the convenience of installing the mounting shaft 516. Further, to improve the smoothness of rotation of the mounting shaft 516, a bearing can be sleeved on the end of the mounting shaft 516. And to improve the convenience of maintenance and replacement of the mounting shaft 516, the second clamping member 524 can be detachably connected to the mounting base 519. Specifically, the second clamping member 524 can be connected by screws to improve the stability of the connection between the second clamping member 524 and the mounting base 519, while simplifying the assembly and disassembly process of the first connector. Alternatively, the second clamping member 524 can also be connected to the mounting base 519 by snap-fit ​​or magnetic connection. In some embodiments, the second clamping member 524 may also be fixedly mounted.

[0120] Please refer to the reference. Figure 10 and Figure 11 In one embodiment of this application, the connecting bracket 70 is disposed on the outside of the mounting carrier 10, and the support column 73 includes a first segment 731 and a second segment 733. One end of the first segment 731 is connected to the bearing seat 71, and the other end extends in the direction toward the mounting carrier 10. The second segment 733 is connected to the end of the first segment 731 away from the bearing seat 71. The second segment 733 has an arc-shaped structure, and the concave surface of the second segment 733 faces the mounting carrier 10. The first connecting shaft 31 passes through the mounting carrier 10 and is rotatably connected to the end of the second segment 733 away from the first segment 731.

[0121] In this embodiment, the support column 73 is configured as a linear first segment 731 and an arc-shaped second segment 733. This allows the support column 73 to adapt to the rotation trajectory of the product body 30 via the second segment 733, thereby improving the compactness of the distribution between the second segment 733 and the product body 30. Furthermore, the first segment 731 can be positioned close to the center of the support base 71, further improving the compactness of the distribution between the first segment 731 and the support base 71. Therefore, this configuration of the support column 73 simultaneously improves the compactness of the distribution among the connecting bracket 70, the product body 30, and the support base 71, thus facilitating a further reduction in the size of this structural component. The first segment 731 and the second segment 733 can be integrally formed to enhance the overall strength of the support column 73. Simultaneously, the connection step between the two is omitted, thereby improving the convenience of subsequent assembly of the electronic product 100. Of course, in other embodiments, the first segment 731 and the second segment 733 may also be separate components, and may be further connected by adhesive bonding or screws, etc. Additionally, please refer to the references... Figure 10 , Figure 14 , Figure 15 as well as Figure 16 The mounting carrier 10 may be provided with a clearance hole 18 communicating with the mounting cavity 11 to allow the first connecting shaft 31 to pass through. To facilitate the first connecting shaft 31's passage through the clearance hole when the product body 30 is installed in the mounting cavity 11, the mounting carrier 10 may also be provided with a mounting hole 19 communicating with the clearance hole 18. Thus, when the product body 30 is installed in the mounting cavity 11, the first connecting shaft 31 can first pass through the mounting hole 19, and then, after the product body 30 is adjusted to a preset mounting posture, the first connecting shaft 31 can correspondingly enter the clearance hole 18 from the mounting hole 19. The mounting hole 19 may be strip-shaped so that after passing through the mounting hole 19, the first connecting shaft 31 can slide into the clearance hole 18 along the extension direction of the mounting hole 19.

[0122] Please refer to the reference. Figure 10 and Figure 11 In one embodiment of this application, the mounting carrier 10 includes a main body cover 15, the inner space of the main body cover 15 is formed as at least part of the mounting cavity 11, and the inner and outer surfaces of the main body cover 15 are both spherical; the concave surface of the second segment 733 is disposed facing the outer surface of the main body cover 15, and the first connecting shaft 31 passes through the main body cover 15 to connect to the second segment 733.

[0123] The inner space of the main body cover 15 is formed as at least a part of the mounting cavity 11, that is, the mounting cavity 11 can be entirely formed by the inner side of the main body cover 15. Of course, it is also possible that, as described below, when the mounting carrier 10 further includes an annular cylinder 17, the mounting cavity 11 is formed by the combination of the inner sides of the main body cover 15 and the annular cylinder 17.

[0124] In this embodiment, the mounting carrier 10 includes a spherical main body cover 15, which allows the mounting carrier 10 to correspond with the arc-shaped second segment 733. At this time, the main body cover 15 and the second segment 733 can fit together more closely, thereby further improving the compactness of their distribution and further reducing the overall size of the electronic product 100, thus improving the convenience of its subsequent placement.

[0125] Please refer to Figure 11 In one embodiment of this application, the mounting carrier 10 further includes an annular cylinder 17, with open ends at opposite ends; one open end of the annular cylinder 17 is connected to the main body cover 15, and the other open end forms an mounting port 13. In the direction from the bottom of the mounting cavity 11 to the mounting port 13, the cross-sectional area of ​​the channel of the annular cylinder 17 is increased.

[0126] The cross-sectional area of ​​the channel of the annular cylinder 17 is increased, that is, the opening of the annular cylinder 17 at the end near the main body cover 15 is smaller than the opening at the end away from the main body cover 15.

[0127] In this embodiment, the annular cylinder 17 is configured such that the mounting cavity 11 is flared near the mounting opening 13. This allows the annular cylinder 17 to better avoid the sound radiated from or the projected image from the working surface 33 when the product body 30 is rotated to the point where the working surface 33 extends from the mounting opening 13 and is in an upright position, thereby improving the sound output or video playback effect of the product body 30. Especially for high-frequency speakers with strong directivity, the flared annular cylinder 17 is particularly beneficial for the normal and effective propagation of sound.

[0128] Please refer to the reference. Figure 6 , Figure 10 as well as Figure 11 In one embodiment of this application, the electronic product 100 further includes a fixed carrier 80, and the side of the support seat 71 facing away from the support column 73 is rotatably connected to the fixed carrier 80 around a second rotation axis; the second drive assembly 53 includes a second drive member 531 and a second transmission assembly 532, the second drive member 531 is mounted on the fixed carrier 80, and the second transmission assembly 532 is drively connected to the support seat 71 and the second drive member 531.

[0129] The fixed carrier 80 can provide a mounting position for mounting the carrier 71, and can also mount the second drive component 531. The fixed carrier 80 can be a plate structure or a cover structure, etc., and this application does not limit the structure and shape of the fixed carrier 80. The carrier 71 is rotatably connected to the fixed carrier 80; please refer to [reference needed]. Figure 14 Alternatively, the support 71 may have a second connecting shaft 710 protruding from it, through which it is rotatably inserted into the fixed carrier 80. Conversely, the fixed carrier 80 may also have a second connecting shaft 710 protruding from it, through which it is rotatably inserted into the support 71. The arrangement of the second transmission assembly 532 allows the second driving member 531 to be arranged side-by-side with the second rotation axis, and it can still drive the support 71 to rotate.

[0130] In this embodiment, by providing a fixed carrier 80, the support base 71 can be rotatably connected to the fixed carrier 80, thereby improving the stability of the support base 71 during installation. Furthermore, the second driving member 531 can also be installed on the fixed carrier 80, allowing both the support base 71 and the second driving member 531 to be installed on the same object. This facilitates the subsequent installation of the outer casing 90 into the electronic product 100 in one go. The outer casing 90 can then have an opening 91 for the mounting carrier 10 to form the mounting port 13 and for the product body 30 to be exposed. The second transmission component 532 allows the second driving member 531 to be installed on one side of the support base 71, thus avoiding occupying a large space on the second rotation axis and reducing the overall size of the electronic product 100. On the other hand, the second transmission component 532 enables the product body 30 to ultimately obtain a more suitable transmission ratio on the second rotation axis, preventing the product body 30 from rotating too fast around the second rotation axis and affecting the stability of the electronic product 100. Of course, in other embodiments, when the second drive component 53 is not provided with the second transmission component 532, the second drive component 531 and the support base 71 can also be directly connected.

[0131] Please refer to Figure 10 In one embodiment of this application, the second transmission component 532 includes a drive gear 533 and a driven gear 534. The drive gear 533 is connected to the second drive member 531; the driven gear 534 is connected to the support seat 71 and meshes with the drive gear 533.

[0132] In this embodiment, the second transmission component 532 is configured as a combination of a driving gear 533 and a driven gear 534, resulting in relatively fewer components. This facilitates manufacturing and reduces the space occupied by the second transmission component 532. Furthermore, gear transmission offers advantages such as transmission stability and vibration damping, thereby improving the stability of the second driving member 531's drive on the support seat 71 and reducing noise generation. Of course, this application is not limited to this; in other embodiments, the second transmission component 532 may also use a combination of a belt and pulley, or a combination of a sprocket and a chain, etc.

[0133] Please refer to the reference. Figure 6 , Figure 10 , Figure 11 as well as Figure 12 In one embodiment of this application, the first drive assembly 51 and the support column 73 are disposed on one of the opposite sides of the support seat 71; on a projection plane perpendicular to the second rotation axis, the projection of the driven gear 534 is fan-shaped, and the driven gear 534 is disposed on the other of the opposite sides of the support seat 71.

[0134] In this embodiment, the driven gear 534 is configured as a sector-shaped structure, which makes its volume relatively small. This facilitates the placement of the first drive assembly 51 and the driven gear 534 on opposite sides of the support 71, making full use of the space on both sides of the support 71. This significantly improves the compactness of the distribution among the first drive assembly 51, the second drive assembly 53, and the connecting bracket 70. Simultaneously, the raw materials required for manufacturing the driven gear 534 are relatively small, thus reducing manufacturing costs. It should be noted that this application is not limited to this; in other embodiments, the driven gear 534 can also be circular, provided that the driven gear 534 and the first drive assembly 51 mounted on the support 71 do not interfere with each other.

[0135] Please refer to Figure 12 In one embodiment of this application, on a projection plane perpendicular to the second rotation axis, the included angle formed by the two opposing walls of the driven gear 534 in its rotation direction is defined as α, satisfying the relationship: 130°≤α≤200°.

[0136] In this embodiment, the included angle α formed by the two opposing walls of the driven gear 534 in its rotational direction is set to 130° to 200°. This ensures that the value of the included angle α is not too small, which would affect the rotational stroke of the support 71 and thus the range of orientation adjustment of the product body 30 around the second rotation axis. Simultaneously, it also ensures that the value of the included angle α is not too large, which would cause the driven gear 534 to become too large and easily interfere with the first drive mechanism 50 mounted on the support 71. Therefore, setting the included angle α formed by the two opposing walls of the driven gear 534 in its rotational direction to 130° to 200° balances the range of orientation adjustment of the product body 30 and the reasonable layout between the driven gear 534 and the first drive mechanism 50. The value of the included angle α can be 130°, 140°, 150°, 160°, 170°, 180°, 190°, or 200°, or any value within the above range. Of course, in other embodiments, it is also possible to set the included angle α to be less than 130° or greater than 200°.

[0137] Please refer to Figure 13 In one embodiment of this application, the driven gear 534 includes a fixed plate 535 and a transmission plate 536. The fixed plate 535 is connected to the support 71. The transmission plate 536 is connected to the edge of the fixed plate 535 and is arranged around the second rotation axis. The outer side wall of the transmission plate 536 is provided with meshing teeth 537, which mesh with the driving gear 533.

[0138] In this embodiment, the driven gear 534 is configured to include a fixed plate 535 and a transmission plate 536. The fixed plate 535 allows for a connection structure, facilitating the mounting of the driven gear 534 onto the support base 71. The transmission plate 536 provides meshing teeth 537 to enable a transmission connection between the driven gear 534 and the driving gear 533. However, this application is not limited to this. In other embodiments, when the driven gear 534 only includes the transmission plate 536, it can be integrally formed with the support base 71.

[0139] Please refer to the reference. Figure 10 and Figure 14 In one embodiment of this application, the connecting bracket 70 and the fixing carrier 80 are both located on the outside of the mounting carrier 10. The first connecting shaft 31 passes through the mounting carrier 10 to connect to the support column 73. The mounting carrier 10 is provided with a connecting hole 151, and the bearing seat 71 is provided with a through hole 711. The through hole 711 and the connecting hole 151 are arranged opposite to each other. The electronic product 100 also includes a fastener, which passes through the through hole 711 and is inserted into the connecting hole 151 to connect and fix the bearing seat 71 and the mounting carrier 10.

[0140] In this embodiment, both the connecting bracket 70 and the fixing carrier 80 are disposed on the outer side of the mounting carrier 10, which improves the compactness of the distribution between the product body 30 and the mounting carrier 10. The mounting carrier 10 and the support base 71 are connected by fasteners, allowing the mounting carrier 10 to be connected to the connecting bracket 70 without the need for additional support objects, thus simplifying the number of components in the electronic product 100. The fasteners can be screws, and the connecting hole 151 can be a threaded hole. When the mounting carrier 10 includes a main body cover 15 and an annular cylinder 17, the connecting hole 151 can be located on the main body cover 15.

[0141] Please refer to the reference. Figure 10 and Figure 14 In one embodiment of this application, the mounting carrier 10 has a first connecting post 153 protruding on the side facing the support seat 71, and the first connecting post 153 has a connecting hole 151.

[0142] In this embodiment, the first connecting post 153 is conveniently located near the support base 71. Furthermore, by providing a connecting hole 151 on the first connecting post 153, it is convenient to use shorter fasteners for subsequent connection. More importantly, the wall thickness of the main body cover 15 of the mounting carrier 10 does not need to be made thicker due to the setting of the connecting hole 151, which helps to reduce the overall volume of the mounting carrier 10 and reduce the raw materials required for manufacturing, thereby reducing manufacturing costs.

[0143] Please refer to the reference. Figure 10 and Figure 14 In one embodiment of this application, the connecting bracket 70 further includes a second connecting post 75, which is connected to the support base 71 and is provided with a corresponding through hole 711; the end of the second connecting post 75 away from the support base 71 is provided with a plug hole 751, and the end of the first connecting post 153 away from the mounting carrier 10 is inserted into the plug hole 751; the second connecting post 75 is also provided with a clearance hole 753 that connects the plug hole 751 and the through hole 711, and the fastener passes through the through hole 711 and the clearance hole 753 in sequence to be inserted into the connecting hole 151.

[0144] In this embodiment, by providing a second connecting post 75, the first connecting post 153 can be inserted into the second connecting post 75, thereby playing a positioning role during installation and improving the accuracy of the installation of the mounting carrier 10 on the connecting bracket 70. Simultaneously, when tightening the fastener, the insertion hole 751 on the second connecting post 75 can also limit the movement of the first connecting post 153, preventing movement and ensuring the stability of the subsequent connection. Furthermore, because of the second connecting post 75, the first connecting post 153 does not need to be relatively long, thus improving its support strength and making it less prone to bending. To further shorten the required length of the fastener, the second connecting post 75 can also be provided with a receiving hole 755, which connects to the through hole 711 and the clearance hole 753 on the bearing seat 71. The end of the fastener furthest from the second connecting post 75 can pass through the through hole 711 on the bearing seat 71 and be directly received into the receiving hole 755. The area of ​​the receiving hole 755 can be the same as the area of ​​the clearance hole 753 on the bearing seat 71, so that when the second connecting post 75 and the bearing seat 71 are set as an integral structure, it is convenient to form the hole structure of this part.

[0145] Please refer to Figure 11 In one embodiment of this application, the number of second connecting posts 75 is at least two, and the at least two second connecting posts 75 are evenly distributed around the second rotation axis; the number of first connecting posts 153 is the same as the number of second connecting posts 75, and one first connecting post 153 is inserted into the insertion hole 751 of one second connecting post 75.

[0146] In this embodiment, the arrangement of at least two second connecting posts 75 and the first connecting post 153 allows for support and locking of the mounting carrier 10 at at least two points, thereby improving the stability of the mounting carrier 10. Furthermore, the uniform distribution of at least two second connecting posts 75 around the second rotation axis ensures that the mounting carrier 10 receives a uniform locking force throughout its circumference, further enhancing the locking effect.

[0147] Please refer to the reference. Figure 10 and Figure 11 In one embodiment of this application, the fixed carrier 80 is provided with a connecting hole 81. On a projection plane perpendicular to the second rotation axis, the connecting hole 81 and the through hole 711 are staggered, and the distance between the connecting hole 81 and the through hole 711 and the second rotation axis is equal.

[0148] In this embodiment, the connecting hole 81 allows fasteners to be inserted through it when the mounting carrier 10 is connected to the second connecting post 75 on the support 71 via the first connecting post 153. The staggered arrangement of the connecting hole 81 and the through hole 711 prevents the support 71 from disassembling the fastener until it aligns with the through hole 711, thus preventing disassembly. Two connecting holes 81 can be provided, corresponding to opposite sides of the fan-shaped driven gear 534. This allows the support 71 to pass through the corresponding through hole 711 and fasten the fastener when at least two connecting posts 153 and 75 are provided, during the bidirectional rotation of the support 71 within its limited rotational stroke.

[0149] Please refer to Figure 15 In one embodiment of this application, the product body 30 can rotate around a first rotation axis in a first direction or in a second direction opposite to the first direction. The rotational stroke of the product body 30 around the first rotation axis is defined as X. When the product body 30 rotates in the first direction, the following relationship is satisfied: 250°≤X≤270°. When the product body 30 rotates in the second direction, the following relationship is satisfied: 90°≤X≤110°.

[0150] In this embodiment, rotating the product body 30 along the first direction by 250° to 270° increases the sense of movement due to the larger rotational stroke. Rotating the product body 30 along the second direction (opposite to the first direction) by 90° to 110° reduces the rotational stroke, thus improving the working efficiency of the product body 30. When rotating the product body 30 along the first direction, the rotation can be 250°, 255°, 260°, 265°, or 270°, or any value within this range. When rotating the product body 30 along the second direction (opposite to the first direction), the rotation can be 90°, 95°, 100°, 105°, or 110°, or any value within this range. Furthermore, regardless of whether the product body 30 rotates around the first axis along the first direction or along the second direction, after the aforementioned rotational stroke, the working surface 33 of the product body 30 is either upright or slightly tilted. At this time, the working surface 33 of the product body 30 can be positioned facing the user, providing the user with a better visual and auditory experience, thereby further enhancing the user's experience with the electronic product 100. Especially when combined with the flared annular cylinder 17 in the mounting carrier 10, the sound emitted by the product body 30 through the working surface 33 can be smoothly transmitted towards the user, or the images played by the product body 30 through the working surface 33 can be better received by external users.

[0151] In one embodiment of this application, the first drive component 51 and the product body 30 can rotate around the second rotation axis in a third direction and a fourth direction opposite to the third direction. The rotational stroke of the first drive component 51 and the product body 30 around the second axis is defined as Y. When the product body 30 rotates in the third direction and the fourth direction, the following relationship is satisfied: 60°≤Y≤90°.

[0152] In this embodiment, the first driving component 51 is driven by the second driving component 53 to rotate bidirectionally around the second rotation axis. This essentially means that the product body 30, connected to the first driving component 51, rotates bidirectionally around the second rotation axis. This allows the product body 30 to adjust its orientation bidirectionally around the second rotation axis, thereby improving the orientation adjustment effect. Furthermore, setting the rotational stroke Y of the product body 30 around the second axis to 60° to 90° ensures that the rotational stroke is not too small, which would affect the orientation adjustment effect. At the same time, it also prevents the product body 30 and the support base 71 from colliding easily with the first driving component 51 when driven by the second driving component 53, due to an excessively large rotational stroke. Therefore, setting the rotational stroke Y of the product body 30 around the second axis to 60° to 90° balances the orientation adjustment effect of the product body 30 with the safety of movement between the second driving component 53 and the first driving component 51. The value of Y can be 60°, 65°, 70°, 75°, 80°, 85°, or 90°, or any value within the above range. Of course, in other embodiments, it is also possible to set the value of Y to be less than 60° or greater than 90°.

[0153] In one embodiment of this application, the electronic product 100 further includes a position identifier and a rotation controller. The position identifier is used to identify the target position where the user is located. The rotation controller is used to control the drive mechanism 50 to drive the product body 30 to rotate according to the identification information of the position identifier, so that the product body 30 faces the target position.

[0154] A position recognizer can identify the user's target location and transmit this location information to a rotation controller. The rotation controller then uses this target location information to control the drive mechanism 50, causing the product body 30 to rotate by a corresponding angle, ensuring the working surface 33 of the product body 30 is aligned with the user's target location. The position recognizer can be a camera module that identifies the user's location by taking a picture of them. Alternatively, it can be a microphone module that identifies the user's location by capturing their voice. Both the position recognizer and the rotation controller can be mounted on the electronic product 100, or on other carriers. For example, if the product body 30 is a vehicle-mounted product (car speaker or vehicle robot), the position recognizer and rotation controller can be directly mounted on the vehicle.

[0155] In this embodiment, by setting a position recognizer and a rotation controller, the user's location can be automatically identified, thereby controlling the product body 30 to automatically rotate to face the user for operation. This further improves the intelligence level of the electronic product 100, thereby enhancing the user experience. Since the second drive component 53 is used to drive the product body 30 to adjust the orientation of the working surface 33, allowing it to stop at any position within a preset rotation stroke, the rotation controller can at least control the rotation angle of the product body 30 driven by the second drive component 53 based on the recognition information from the position recognizer. Alternatively, if the product body 30 is configured to rotate around a first rotation axis and can stop at any point during rotation, the rotation controller can also further control the rotation angle of the product body 30 driven by the first drive component 51 based on the recognition information from the position recognizer.

[0156] The above description is merely a preferred embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structural transformations made using the contents of the present invention's specification and drawings under the inventive concept of the present invention, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present invention.

Claims

1. An electronic product, characterized in that, include: The mounting carrier has a mounting cavity and a mounting port communicating with the mounting cavity; The product body is disposed within the mounting cavity; as well as A driving mechanism, comprising a first driving component and a second driving component, wherein the first driving component drives the product body to rotate about a first rotation axis so that the product body can rotate to at least partially protrude from the mounting port; and the second driving component drives the first driving component to rotate about a second rotation axis intersecting the first rotation axis so as to adjust the orientation of the product body. The electronic product also includes a carrier and a fixed carrier. The mounting carrier is connected to the carrier. The second driving component can drive the carrier to rotate around the second rotation axis. The carrier is rotatably connected to the fixed carrier. The carrier is provided with a through hole. The fixed carrier is provided with a connecting hole. On a projection plane perpendicular to the second rotation axis, the connecting hole and the through hole are staggered.

2. The electronic product as described in claim 1, characterized in that, The electronic product also includes a connecting bracket, the first driving component is mounted on the connecting bracket, and the second driving component can drive the connecting bracket to rotate around the second rotation axis.

3. The electronic product as described in claim 2, characterized in that, The connecting bracket includes a bearing seat and a support column, with the support column protruding from the bearing seat on the side facing the product body; The product body is provided with a first connecting shaft, which is rotatably connected to the end of the support column away from the bearing seat around the first rotation axis. The first drive component is mounted on the bearing seat or the support column and is connected to the first rotating shaft.

4. The electronic product as described in claim 3, characterized in that, The first driving component includes: A first driving member, the first driving member being mounted on the support; and A first transmission assembly is connected to the first connecting shaft and the first driving member.

5. The electronic product as described in claim 4, characterized in that, The first transmission assembly includes: A first transmission wheel, connected to the first driving member and capable of being driven to rotate by the first driving member; and The second transmission wheel is connected to the first connecting shaft. The axis of the second transmission wheel and the axis of the first transmission wheel are arranged side by side. The second transmission wheel can be driven to rotate by the first transmission wheel.

6. The electronic product as described in claim 5, characterized in that, The first transmission assembly further includes a mounting shaft, a worm gear, and a worm. The mounting shaft is rotatably mounted on the bearing seat. The axis of the worm gear coincides with the axis of the first transmission wheel. Both the worm gear and the first transmission wheel are mounted on the mounting shaft. The worm is connected to the first driving member and can be driven to rotate by the first driving member. The worm also meshes with the worm wheel.

7. The electronic product as described in claim 6, characterized in that, The electronic product is defined to have a vertical direction, with the mounting port facing upwards; In the vertical direction of the electronic product, the first drive wheel and the second drive wheel are staggered, and the first drive member is located below the second drive wheel.

8. The electronic product as described in claim 3, characterized in that, The connecting bracket is located on the outside of the mounting carrier, and the support column includes: A first segment, one end of which is connected to the support base, and the other end extending in a direction toward the mounting carrier; and The second segment is connected to the end of the first segment away from the support base. The second segment has an arc-shaped structure and the concave surface of the second segment faces the mounting carrier. The first connecting shaft passes through the mounting carrier and is rotatably connected to the end of the second segment away from the first segment.

9. The electronic product as described in claim 8, characterized in that, The mounting carrier includes a main body cover, the inner space of the main body cover is formed as at least part of the mounting cavity, and both the inner and outer surfaces of the main body cover are spherical. The concave surface of the second segment is disposed facing the outer surface of the main body cover, and the first connecting shaft passes through the main body cover to connect to the second segment.

10. The electronic product as described in claim 9, characterized in that, The mounting carrier also includes an annular cylinder, the opposite ends of which are open; One end of the annular cylinder with an opening is connected to the main body cover, and the other end is enclosed to form the mounting port. In the direction from the bottom of the mounting cavity to the mounting port, the cross-sectional area of ​​the annular cylinder is increased.

11. The electronic product as described in any one of claims 3 to 10, characterized in that, The side of the bearing seat opposite to the support column is rotatably connected to the fixed carrier around the second rotation axis; The second drive assembly includes a second drive member and a second transmission assembly. The second drive member is mounted on the fixed carrier, and the second transmission assembly is drively connected to the carrier and the second drive member.

12. The electronic product as described in claim 11, characterized in that, The second transmission assembly includes: A drive gear, the drive gear being connected to the second drive member; and The driven gear is connected to the bearing seat and meshes with the driving gear.

13. The electronic product as described in claim 12, characterized in that, The first drive assembly and the support column are located on one of the opposite sides of the bearing seat; On a projection plane perpendicular to the second rotation axis, the projection of the driven gear is fan-shaped, and the driven gear is located on one of the opposite sides of the support.

14. The electronic product as described in claim 13, characterized in that, On a projection plane perpendicular to the second rotation axis, the included angle formed by the two opposing walls of the driven gear in its rotation direction is defined as α, satisfying the relationship: 130°≤α≤200°; And / or, the driven gear includes a fixed plate and a transmission plate, the fixed plate being connected to the bearing seat; the transmission plate being connected to the edge of the fixed plate and arranged around the second rotation axis, the outer side wall of the transmission plate being provided with meshing teeth, the meshing teeth meshing with the driving gear.

15. The electronic product as described in claim 11, characterized in that, Both the connecting bracket and the fixing carrier are located on the outside of the mounting carrier, and the first connecting shaft passes through the mounting carrier to connect to the support column; The mounting carrier is provided with a connecting hole, and the through hole and the connecting hole are arranged opposite to each other; The electronic product also includes fasteners that pass through the through hole and are inserted into the connection hole to connect and fix the carrier and the mounting carrier.

16. The electronic product as described in claim 15, characterized in that, The mounting carrier has a first connecting post protruding on the side facing the support seat, and the first connecting post has the connecting hole.

17. The electronic product as described in claim 16, characterized in that, The connecting bracket further includes a second connecting column, which is connected to the bearing seat and is provided corresponding to the through hole; The second connecting post has a insertion hole at the end away from the support, and the first connecting post is inserted into the insertion hole at the end away from the mounting carrier. The second connecting post is also provided with a clearance hole that connects the insertion hole and the through hole. The fastener passes through the through hole and the clearance hole in sequence to be inserted into the connecting hole.

18. The electronic product as described in claim 17, characterized in that, The number of the second connecting posts is at least two, and the at least two second connecting posts are evenly distributed around the second rotation axis; The number of the first connecting posts is the same as the number of the second connecting posts, and one of the first connecting posts is inserted into the insertion hole of one of the second connecting posts.

19. The electronic product as described in claim 15, characterized in that, The distances between the connecting hole and the through hole and the second rotation axis are equal.

20. The electronic product as described in claim 1, characterized in that, The product itself can be a speaker assembly, a display module, or a vehicle-mounted robot; And / or, the product body can rotate around the first rotation axis in a first direction or in a second direction opposite to the first direction. The rotational stroke of the product body around the first rotation axis is defined as X. When the product body rotates in the first direction, the relationship is satisfied: 250°≤X≤270°. When the product body rotates in the second direction, the relationship is satisfied: 90°≤X≤110°. And / or, the first drive component and the product body can rotate around the second rotation axis in a third direction and a fourth direction opposite to the third direction. The rotational stroke of the first drive component and the product body around the second rotation axis is defined as Y. When the product body rotates in the third direction and the fourth direction, the following relationship is satisfied: 60°≤Y≤90°. And / or, the electronic product is defined to have a vertical direction, the first rotation axis is set at an angle to both the vertical and horizontal directions, and the second rotation axis is parallel to the vertical direction; And / or, the electronic product further includes a position identifier and a rotation controller, wherein the position identifier is used to identify the target location of the user; and the rotation controller is used to control the drive mechanism to drive the product body to rotate according to the identification information of the position identifier, so that the product body faces the target location.

Citation Information

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