Video conference equipment

By setting elastic members and fasteners in the video conferencing equipment to absorb the low-frequency vibration of the speaker, combined with the vibration-absorbing component to weaken the vibration transmission, the overall vibration and picture blur caused by the low-frequency vibration of the speaker are solved, and the stable operation and clear communication of the device are achieved.

CN223207166UActive Publication Date: 2025-08-08ARASHI VISION INC
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Patent Information

Application Number
CN202422328423.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-23
Publication Date
2025-08-08
Estimated Expiration
2034-09-23

AI Technical Summary

Technical Problem

When the speaker is operating at low frequency, it will cause the entire video conferencing equipment to vibrate, generate abnormal noises, and lead to speech recognition failure and blurred lens module screen.

Method used

Elastic parts and fasteners are installed in the video conferencing equipment to absorb the low-frequency vibration energy of the speaker through the elastic parts, weaken or eliminate the vibration transmission between the lens case and the base case, and use vibration-absorbing components to weaken the vibration energy transmitted to the base case by the speaker, ensuring the clear picture of the lens module and the normal voice recognition function.

Benefits of technology

Effectively weaken or eliminate the vibration of the entire video conferencing equipment, ensuring the normal realization of the voice recognition function and the clarity of the lens module screen.

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Abstract

The utility model discloses video conference equipment, relates to the technical field of conferences, and aims to solve the problem that a loudspeaker drives the whole video conference equipment to vibrate when working at low frequency. The video conference equipment comprises a shell, a lens module, a loudspeaker and at least one elastic piece, the shell comprises a base shell and a lens shell, and the lens shell is arranged on the base shell. The lens module is arranged on the lens shell. The loudspeaker is arranged on the base shell. The elastic piece is arranged between the base shell and the lens shell, at least part of the elastic piece abuts against the position between the wall face of the lens shell and the wall face of the base shell, and a fastener penetrates through the elastic piece to connect the lens shell and the base shell. The video conference equipment provided by the utility model is used for interaction between online and offline personnel.
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Description

Technical Field

[0001] The present application relates to the technical field of conference equipment, and in particular to a video conferencing device. Background Art

[0002] Video conferencing equipment is commonly used to organize and participate in remote meetings. It can distribute a variety of information such as images, voice, text, pictures, etc. to each user's terminal device, allowing participants in different locations to communicate face to face, just like participating in a meeting in the same venue.

[0003] In related technologies, video conferencing equipment has a speaker and a lens module. The speaker is the basis for audio communication, while the lens module is the basis for video communication. The cooperation of the two enables communication between participants in different locations.

[0004] However, the speaker will vibrate when working at a low frequency, which will cause the entire video conferencing equipment to vibrate, produce abnormal noise, and easily lead to problems such as failure of voice recognition of the video conferencing equipment and blurred image of the lens module. Utility Model Content

[0005] In order to solve the above technical problems, the present application provides a video conferencing device for improving the problem that the speaker drives the entire video conferencing device to vibrate when working at a low frequency.

[0006] This application is implemented through the following technical solutions.

[0007] The present application provides a video conferencing device comprising a housing, a lens module, a speaker, and at least one elastic member. The housing comprises a base housing and a lens housing, wherein the lens housing is disposed on the base housing. The lens module is disposed on the lens housing. The speaker is disposed on the base housing. The elastic member is disposed between the base housing and the lens housing, with at least a portion of the elastic member abutting between a wall surface of the lens housing and a wall surface of the base housing. A fastener passes through the elastic member to connect the lens housing and the base housing.

[0008] In the technical solution of the embodiment of the present application, the speaker is arranged on the base shell, and the lens module is arranged on the lens shell. The speaker can make sounds, and the lens module can capture the picture of the conference site, so that participants in multiple locations can obtain each other's audio and picture information, thereby ensuring the normal progress of the meeting.

[0009] By arranging fasteners and elastic members, the fasteners can ensure the connection strength between the base shell and the lens shell. Since the elastic member is at least partially arranged between the lens shell and the base shell, when the speaker vibrates at a low frequency and the vibration energy is transmitted to the base shell, the elastic member can absorb the vibration energy at the connection position between the base shell and the lens shell, thereby weakening or eliminating the vibration energy that continues to be transmitted from the base shell to the lens shell, so that the vibration of the lens shell is weakened or disappears, thereby reducing the vibration and abnormal sound of the entire video conferencing equipment, ensuring the normal implementation of the voice recognition function of the video conferencing equipment, and ensuring the clarity of the image of the lens module.

[0010] In some embodiments of the present application, the lens module includes a motion bracket and a motion lens; the motion lens is disposed on the motion bracket;

[0011] There are multiple elastic parts, at least one of which is also arranged between the wall of the lens housing and the moving bracket. The elastic part at least partially abuts between the wall of the lens housing and the moving bracket, and a fastener passes through the elastic part to connect the lens housing and the moving bracket.

[0012] Through the above arrangement, the elastic member can also slow down the vibration energy transmitted from the lens housing to the motion bracket, thereby reducing the vibration of the motion bracket, making the motion lens picture clear, and also reducing the vibration and abnormal noise during the movement of the motion bracket.

[0013] In some embodiments of the present application, there are multiple elastic members, at least one elastic member is also arranged between the wall of the base shell and the speaker, the elastic member at least partially abuts between the wall of the base shell and the speaker, and a fastener passes through the elastic member to connect the speaker and the base shell.

[0014] Through the above arrangement, the elastic member can also slow down the vibration energy transmitted from the speaker to the base shell, thereby reducing the vibration of the base shell, making the entire video conferencing equipment run more smoothly and further reducing the vibration and abnormal sound of the entire machine.

[0015] In some embodiments of the present application, the speaker is spaced apart from the wall of the base shell; the video conferencing equipment also includes at least one vibration reduction component, which is arranged in the base shell and located between the speaker and the wall of the base shell. The vibration reduction component is respectively connected to the speaker and the base shell located on both sides thereof, and the vibration reduction component is used to weaken or eliminate the vibration energy transmitted from the speaker to the base shell.

[0016] Since the vibration reduction assembly is connected to the speaker and the base shell respectively, the speaker is arranged on the base shell through the vibration reduction assembly. Since the speaker and the wall of the base shell are spaced apart, the speaker and the base shell are connected only through the vibration reduction assembly. Therefore, when the speaker vibrates at a low frequency, the vibration energy will be transmitted to the base shell through the vibration reduction assembly. Since the vibration reduction assembly also has the function of weakening or eliminating the vibration energy, the vibration energy finally transmitted to the base shell by the speaker is very weak or even non-existent, so the vibration on the base shell can be weakened or eliminated, thereby weakening or eliminating abnormal noise, and ensuring the normal implementation of the voice recognition function of the video conferencing equipment, while ensuring the clarity of the image of the lens module of the video conferencing equipment.

[0017] In some embodiments of the present application, the vibration damping assembly includes a first connecting portion, a second connecting portion, and an elastic portion, wherein the elastic portion is capable of elastic deformation. The first connecting portion is disposed between the elastic portion and the speaker, and is connected to the elastic portion and the speaker, respectively. The second connecting portion is disposed between the elastic portion and a wall surface of the base housing, and is connected to the elastic portion and the base housing, respectively.

[0018] In this way, the first connecting part and the second connecting part are responsible for connecting the elastic part between the speaker and the wall of the base shell. The elastic part can weaken or eliminate the vibration energy transmitted from the speaker to the base shell by elastic deformation, thereby ensuring the normal implementation of the voice recognition function of the video conferencing equipment and ensuring the clarity of the image of the lens module of the video conferencing equipment.

[0019] In some embodiments of the present application, a first through hole is formed on the first connecting portion, and a first abutting portion is connected to the elastic portion through the first through hole and extends between the speaker and the first connecting portion, and the first abutting portion and the elastic portion respectively abut against the side surface of the first connecting portion on one side thereof; and / or,

[0020] A second through hole is opened on the second connecting part, and the elastic part is connected to a second abutting part which passes through the second through hole and extends between the wall surface of the base shell and the second connecting part. The second abutting part and the elastic part respectively abut the side surface of the second connecting part on their side.

[0021] With the above arrangement, the first abutting portion and the elastic portion respectively abut against both sides of the first connecting portion, allowing the elastic portion to be snapped onto the first connecting portion. Alternatively, the second abutting portion and the elastic portion respectively abut against both sides of the second connecting portion, allowing the elastic portion to be snapped onto the second connecting portion. The snap-fit connection of the elastic portion to the first and / or second connecting portions facilitates the installation of the elastic member therewith.

[0022] In some embodiments of the present application, there are multiple elastic parts; the first abutting parts on adjacent elastic parts are connected to each other, and / or the second abutting parts on adjacent elastic parts are connected to each other.

[0023] By providing multiple elastic parts on a single vibration damping assembly, each of the elastic parts can weaken or eliminate the vibration energy transmitted from the speaker to the base housing. Connecting the multiple elastic parts together via the first abutting part and / or the second abutting part can increase the overall structural strength of the multiple elastic parts, further enhancing the vibration damping effect. Furthermore, this arrangement facilitates the snap-fit connection of the multiple elastic parts.

[0024] In some embodiments of the present application, the first abutting portion is made of an elastic material, and the first abutting portion and the elastic portion are an integrally formed structure; and / or, the second abutting portion is made of an elastic material, and the second abutting portion and the elastic portion are an integrally formed structure.

[0025] With this arrangement, when the elastic portion is clipped onto the first connecting portion, the first abutting portion can be squeezed, causing the first abutting portion to elastically deform and pass through the first through-hole, thereby clipping the elastic portion onto the first connecting portion. And / or, when the elastic portion is clipped onto the second connecting portion, the second abutting portion can be squeezed, causing the second abutting portion to elastically deform and pass through the second through-hole, thereby clipping the elastic portion onto the second connecting portion. This arrangement can improve the convenience of clipping.

[0026] In some embodiments of the present application, a first deformation space is formed on at least one of the elastic portion, the first abutting portion, and the second abutting portion, and the first deformation space is used to provide space for deformation of at least one of the elastic portion, the first abutting portion, and the second abutting portion.

[0027] By providing the first deformation space, at least one of the elastic portion, the first abutting portion and the second abutting portion is facilitated to undergo elastic deformation, thereby improving the vibration reduction capabilities of the elastic portion, the first abutting portion and the second abutting portion.

[0028] In some embodiments of the present application, the first connecting portion is snap-connected or bonded to the speaker; and / or the second connecting portion is snap-connected to the base shell.

[0029] The first connecting part is clamped or bonded to the speaker to achieve fixation of the two, thereby ensuring the stability of the connection between the first connecting part and the speaker. The second connecting part is clamped to the base shell to achieve fixation of the two, thereby ensuring the stability of the connection between the second connecting part and the base shell, thereby ensuring the stability of the entire vibration reduction assembly, thereby ensuring the stable realization of the vibration reduction function of the vibration reduction assembly.

[0030] In some embodiments of the present application, the base shell wraps the speaker; the speaker includes a sound emitting surface, a back surface opposite to the sound emitting surface, and a peripheral wall surface arranged between the sound emitting surface and the back surface; the vibration damping assembly is arranged between the peripheral wall surface and the wall surface of the base shell; the elastic member is arranged between the sound emitting surface and the wall surface of the base shell; and / or the elastic member is arranged between the back surface and the wall surface of the base shell.

[0031] In this way, the vibration-damping assembly and the elastic member are respectively located on different sides of the loudspeaker, which can ensure the connection strength between the loudspeaker and the housing and improve the shock-absorbing effect on the basis of vibration reduction.

[0032] In some embodiments of the present application, the elastic member includes: an elastic connecting portion and an elastic main body portion, wherein opposite ends of the elastic connecting portion are respectively connected to the elastic main body portion;

[0033] In the case where the elastic member is provided between the base shell and the lens shell, a mounting hole is provided on the base shell or the lens shell, the elastic connecting portion passes through the mounting hole, and the elastic body portion abuts against the wall surface of the base shell or the lens shell on the corresponding side of the mounting hole, or,

[0034] In the case where the mounting hole is opened between the lens housing and the motion bracket, the lens housing is provided with a mounting hole, the elastic connecting portion passes through the mounting hole, and the elastic body portion abuts against the wall surface of the lens housing on the side corresponding to the mounting hole, or,

[0035] When the elastic member is arranged between the base shell and the speaker, a mounting hole is provided on the base shell or the speaker, the elastic connecting part passes through the mounting hole, and the elastic body part abuts against the wall surface of the base shell or the speaker on one side corresponding to the mounting hole.

[0036] Through the above-mentioned arrangement, the elastic part can be clamped in the mounting hole, and the elastic main body and the elastic connection part can isolate the fastener, thereby weakening or eliminating the vibration energy transmitted from the base shell to the lens shell, or weakening or eliminating the vibration energy transmitted from the lens shell to the moving bracket, or weakening or eliminating the vibration energy transmitted from the speaker to the base shell, thereby comprehensively reducing the vibration energy at the fastener connection and improving the vibration reduction effect.

[0037] In some embodiments of the present application, the elastic body portion has a second deformation space, and the second deformation space is used to provide space for deformation of the elastic body portion.

[0038] In this way, the elastic body can be easily deformed, thereby facilitating the vibration reduction effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0039] Various other advantages and benefits will become apparent to those skilled in the art upon reading the detailed description of the preferred embodiment below. The accompanying drawings are for illustration purposes only and are not to be considered as limiting the present application. The same reference numerals are used throughout the drawings to denote the same components. In the drawings:

[0040] Figure 1 A schematic diagram of a portion of the external structure of a video conferencing device provided in some embodiments of the present application;

[0041] Figure 2 A schematic cross-sectional view of a base housing, an elastic member, and a lens housing provided in some embodiments of the present application;

[0042] Figure 3 A schematic diagram of the external structure of a lens housing and a lens module provided in some embodiments of the present application;

[0043] Figure 4 A schematic cross-sectional view of a lens housing, an elastic member, and a motion bracket provided in some embodiments of the present application;

[0044] Figure 5 for Figure 1 A partial enlarged schematic diagram of point A in the middle;

[0045] Figure 6 Another schematic cross-sectional view of the base housing, elastic member, and lens housing provided in some embodiments of the present application;

[0046] Figure 7 A schematic diagram of the external structure of an elastic member provided in some embodiments of the present application;

[0047] Figure 8 A cross-sectional schematic diagram showing the location of an elastic member provided in some embodiments of the present application;

[0048] Figure 9 Another cross-sectional schematic diagram showing the location of an elastic member provided in some embodiments of the present application;

[0049] Figure 10 A schematic diagram of a portion of the external structure of a video conferencing device provided in some embodiments of the present application;

[0050] Figure 11 for Figure 1 A partial enlarged schematic diagram of point B in the middle;

[0051] Figure 12 A schematic diagram of the external structure of a vibration reduction assembly provided in some embodiments of the present application;

[0052] Figure 13 An exploded schematic diagram of a vibration reduction assembly provided for some embodiments of the present application;

[0053] Figure 14 A schematic diagram of the external structure of the elastic portion, the first abutting portion, and the second abutting portion provided in some embodiments of the present application;

[0054] Figure 15 Schematic cross-sectional views of the elastic portion, the first abutting portion, and the second abutting portion provided in some embodiments of the present application.

[0055] Description of Reference Numerals

[0056] 01-Video conferencing equipment;

[0057] 1-housing; a-cavity; b-sound hole; d-slot; 11-base shell; 12-lens shell;

[0058] 2-speaker; 21-back; 22-surface; h-mounting hole;

[0059] 3-lens module; 31-fixed lens; 32-moving lens; 33-moving bracket;

[0060] 4-elastic member; 41-elastic connecting portion; 42-elastic body portion; 421-second deformation space; 422-reinforcement rib;

[0061] 5- Fasteners;

[0062] 6-vibration damping assembly; 61-elastic part; 62-first connecting part; 63-second connecting part; c-clamping hole; f-first through hole; 621-first abutting part; g-second through hole; 631-second abutting part; 64-first deformation space. DETAILED DESCRIPTION

[0063] The following embodiments of the technical solution of the present application will be described in detail with reference to the accompanying drawings. The following embodiments are only used to more clearly illustrate the technical solution of the present application and are therefore only examples and are not intended to limit the scope of protection of the present application.

[0064] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which this application belongs; the terms used herein are only for the purpose of describing specific embodiments and are not intended to limit this application; the terms "including" and "having" and any variations thereof in the specification and claims of this application and the above-mentioned figure descriptions are intended to cover non-exclusive inclusions.

[0065] In the description of the embodiments of this application, the technical terms "first," "second," "third," etc. are used only to distinguish different objects and should not be understood to indicate or imply relative importance or implicitly specify the quantity, specific order, or primary and secondary relationship of the indicated technical features. In the description of the embodiments of this application, the meaning of "plurality" is more than two, unless otherwise specifically defined.

[0066] References to "embodiments" herein mean that a particular feature, structure, or characteristic described in connection with the embodiments may be included in at least one embodiment of the present application. The appearance of this phrase in various places in the specification does not necessarily refer to the same embodiment, nor does it constitute an independent or alternative embodiment that is mutually exclusive of other embodiments. It is understood, both explicitly and implicitly, by those skilled in the art that the embodiments described herein may be combined with other embodiments.

[0067] In the description of the embodiments of this application, the term "and / or" is simply a description of the association relationship between associated objects, indicating that three relationships can exist. For example, A and / or B can represent the following three situations: A exists alone, A and B exist simultaneously, and B exists alone. In addition, the character " / " in this document generally indicates that the associated objects are in an "or" relationship.

[0068] In the description of the embodiments of the present application, the orientations or positional relationships indicated by technical terms such as "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", and "circumferential" are based on the orientations or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the embodiments of the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed, operated or used in a specific orientation. Therefore, they should not be understood as limitations on the embodiments of the present application.

[0069] In the description of the embodiments of the present application, unless otherwise expressly specified or limited, technical terms such as "installed," "connected," "connect," and "fixed" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integration; mechanical connections or electrical connections; direct connections or indirect connections through an intermediate medium; internal connections between two components or interactions between two components. Those skilled in the art can understand the specific meanings of the above terms in the embodiments of the present application based on specific circumstances.

[0070] In the description of the embodiments of the present application, unless otherwise clearly specified and limited, the technical term "contact" should be understood in a broad sense, and can be direct contact, contact through an intermediate medium layer, contact with essentially no interaction force between the two contacting parties, or contact with interaction force between the two contacting parties.

[0071] Below, this application is described in detail.

[0072] Video conferencing equipment is commonly used to organize and participate in remote meetings. It can distribute a variety of information such as images, voice, text, pictures, etc. to each user's terminal device, allowing participants in different locations to communicate face to face, just like participating in a meeting in the same venue.

[0073] Based on this, Figures 1 to 3As shown, the present application provides a video conferencing device 01, including a housing 1, a lens module 3, and a speaker 2. The housing 1 includes a base housing 11 and a lens housing 12, and the lens housing 12 is disposed on the base housing 11. The lens module 3 is disposed on the lens housing 12. The speaker 2 is disposed on the base housing 11.

[0074] In some examples, such as Figure 2 、 Figure 3 As shown, the lens module 3 includes a fixed lens 31 and a moving lens 32 mounted on a moving bracket 33. The moving bracket 33 is mounted on the lens housing 12, and the fixed lens 31 is mounted on the lens housing 12. The fixed lens 31 is used to capture the entire conference scene, while the moving bracket 33 drives the moving lens 32 to track and capture a moving person or object in the conference scene.

[0075] Exemplarily, the motion bracket 33 includes a pan-tilt assembly, which is used to drive the motion lens 32 to rotate up and down.

[0076] Through the above settings, the speaker 2 can generate sound, thereby realizing audio communication between online personnel and offline venue personnel. The lens module 3 can distribute various information such as images, text, pictures, etc. of people in the offline venue to the terminal devices of each user, thereby realizing video and picture communication between online personnel and offline venue personnel.

[0077] In the related art, the lens shell 12 is directly connected to the base shell 11. However, the speaker 2 will vibrate when working at a low frequency, which will drive the base shell 11, the lens shell 12 and the lens module 3 to vibrate. This will not only produce abnormal noises, but also easily lead to the failure of voice recognition of the video conferencing equipment 01, blurred images of the lens module 3 and other problems.

[0078] Based on this, Figure 2 As shown, the video conferencing equipment 01 provided in the present application also includes at least one elastic member 4, which is arranged between the base shell 11 and the lens shell 12. The elastic member 4 at least partially abuts between the wall surface of the lens shell 12 and the wall surface of the base shell 11, and the fastener 5 passes through the elastic member 4 to connect the lens shell 12 and the base shell 11.

[0079] In some examples, there are multiple elastic members 4 , for example, two, three, four, five or six elastic members may be provided.

[0080] In some examples, the fastener 5 can pass through the lens housing 12, the elastic member 4 and the base housing 11 in sequence, so that the fastener 5 is threadedly connected to the lens housing 12 and the base housing 11 respectively, thereby connecting the lens housing 12 to the base housing 11 using the fastener 5.

[0081] In other examples, the fastener 5 only passes through the elastic member 4, so that both ends of the fastener 5 are welded or bonded to the lens housing 12 and the base housing 11 on the corresponding side.

[0082] The elastic member 4 may be a gasket structure made of elastic material. Alternatively, the elastic member 4 may also include a spring.

[0083] In some examples, the fastener 5 may include a screw or a stepped screw, etc.

[0084] For example, the fastener 5 includes a stepped screw. A protrusion facing the elastic member 4 is formed on the lens housing 12, and a threaded hole is formed in the protrusion. The stepped screw passes through the base housing 11 and the elastic member 4 in sequence and extends into the threaded hole. The step on the stepped screw abuts the upper surface of the protrusion, and the nut of the stepped screw abuts the wall of the base housing 11. In this way, the stepped screw is used to fix the base housing 11 to the lens housing 12. Because the step on the stepped screw abuts the protrusion, the two can achieve a limited abutment, which can improve the stability of the connection between the stepped screw and the lens housing 12.

[0085] Through the above-mentioned arrangement, the fastener 5 can ensure the connection strength between the base shell 11 and the lens shell 12. Since the elastic member 4 is at least partially arranged between the lens shell 12 and the base shell 11, when the speaker 2 vibrates at a low frequency and the vibration energy is transmitted to the base shell 11, the elastic member 4 can absorb the vibration energy at the connection position between the base shell 11 and the lens shell 12, thereby weakening or eliminating the vibration energy that continues to be transmitted from the base shell 11 to the lens shell 12, so that the vibration of the lens shell 12 is weakened or disappears, thereby reducing the vibration and abnormal sound of the entire video conferencing equipment 01, ensuring the normal implementation of the voice recognition function of the video conferencing equipment 01, and ensuring the clear picture of the lens module 3.

[0086] On this basis, in some embodiments, such as Figure 3 、 Figure 4 As shown, the lens module 3 includes a moving bracket 33 and a moving lens 32; the moving lens 32 is arranged on the moving bracket 33; there are multiple elastic members 4, and at least one elastic member 4 is also arranged between the wall of the lens housing 12 and the moving bracket 33. The elastic member 4 at least partially abuts between the wall of the lens housing 12 and the moving bracket 33, and the fastener 5 passes through the elastic member 4 to connect the lens housing 12 and the moving bracket 33.

[0087] It can be understood that the elastic member 4 arranged between the motion bracket 33 and the lens housing 12 is the same as the elastic member 4 arranged between the lens housing 12 and the base housing 11. Therefore, they can be used as a reference when making specific settings and will not be repeated here.

[0088] Similarly, the fasteners 5 used to fix the motion bracket 33 and the lens housing 12 are the same as the fasteners 5 used to fix the lens housing 31 and the base housing 11. Therefore, they can be used as a reference when making specific settings and will not be described in detail here.

[0089] Through the above-mentioned arrangement, since the elastic member 4 at least partially abuts between the moving bracket 33 and the lens housing 12, and the elastic member 4 is elastic, the elastic member 4 can slow down or eliminate the vibration energy transmitted from the lens housing 12 to the moving bracket 33. Since the fastener 5 can connect the moving bracket 33 and the lens housing 12, the moving bracket 33 and the lens housing 12 can establish a more stable connection relationship. That is to say, the cooperation between the elastic member 4 and the fastener 5 not only ensures the connection strength between the moving bracket 33 and the lens housing 12, but also has a vibration reduction effect.

[0090] In some embodiments, as Figure 5 、 Figure 6 As shown, there are multiple elastic members 4, and at least one elastic member 4 is also arranged between the wall of the base shell 11 and the speaker 2. The elastic member 4 at least partially abuts between the wall of the base shell 11 and the speaker 2, and the fastener 5 passes through the elastic member 4 to connect the speaker 2 and the base shell 11.

[0091] It can be understood that the elastic member 4 arranged between the base shell 11 and the speaker 2 is the same as the elastic member 4 arranged between the lens shell 12 and the base shell 11. Therefore, they can be used as a reference when making specific settings and will not be repeated here.

[0092] Similarly, the fasteners 5 for fixing the base shell 11 and the speaker 2 are the same as the fasteners 5 for fixing the lens shell 31 and the base shell 11. Therefore, they can be used as a reference when making specific settings and will not be described in detail here.

[0093] Through the above arrangement, since the elastic member 4 is at least partially in contact between the wall of the base shell 11 and the speaker 2, and the elastic member 4 is elastic, the elastic member 4 can slow down or eliminate the vibration energy transmitted from the speaker 2 to the base shell 11. Since the fastener 5 can connect the base shell 11 and the speaker 2, a more stable connection relationship can be established between the base shell 11 and the speaker 2. That is to say, the cooperation between the elastic member 4 and the fastener 5 not only ensures the connection strength between the shell 1 and the speaker 2, but also has a vibration reduction effect.

[0094] The elastic member 4 can be of various types, and can be a gasket structure made of elastic material, or an I-shaped structure, which will be described in detail below.

[0095] In some embodiments, as Figures 7 to 9 As shown, the elastic member 4 includes an elastic connecting portion 41 and an elastic main body portion 42 , and opposite ends of the elastic connecting portion 41 are respectively connected to the elastic main body portion 42 ;

[0096] like Figure 8 、 Figure 9 As shown, when the elastic member 4 is provided between the base shell 11 and the lens shell 12, a mounting hole h is provided on the base shell 11 or the lens shell 12, the elastic connecting portion 41 passes through the mounting hole h, and the elastic body portion 42 abuts against the wall of the base shell 11 or the lens shell 12 on the corresponding side of the mounting hole h, or,

[0097] like Figure 8 As shown, in the case where the mounting hole h is opened between the lens housing 12 and the motion bracket 33, the lens housing 12 is provided with a mounting hole h, the elastic connecting portion 41 passes through the mounting hole h, and the elastic body portion 42 respectively abuts against the wall surface of the lens housing 12 on the side corresponding to the mounting hole h, or,

[0098] like Figure 8 、 Figure 9 As shown, when the elastic member 4 is provided between the base shell 11 and the speaker 2, a mounting hole h is provided on the base shell 11 or the speaker 2, the elastic connecting portion 41 passes through the mounting hole h, and the elastic main body portion 42 respectively abuts against the wall surface of the base shell 11 or the speaker 2 on the corresponding side of the mounting hole h.

[0099] In some examples, the elastic body portion 42 is a pad-like structure made of an elastic material.

[0100] The following describes the specific configuration of the elastic member 4 by taking the elastic member 4 between the lens housing 12 and the base housing 11 as an example.

[0101] In some examples, such as Figure 8 As shown, the mounting hole h is formed in the base housing 11, and the fastener 5 comprises a stepped screw. The stepped screw passes through the elastic body portion 42, the elastic connecting portion 41, and the elastic body portion 42 in sequence from the side of the base housing 11 away from the lens housing 12, and is threadedly connected to the lens housing 12. The stepped portion of the stepped screw abuts against the lens housing 12, and the nut of the stepped screw abuts against the elastic body portion 42 on the side of the base housing 11 away from the lens housing 12. In this way, the lens housing 12 and the base housing 11 are connected.

[0102] In this case, the vibration energy on the base shell 11 can only be transmitted through the step screw. However, since the step screw and the base shell 11 are separated by the elastic main body 42 and the elastic connecting part 41, the vibration energy on the step screw will pass through the elastic main body 42 and the elastic connecting part 41 when it is transmitted to the lens shell 12. In this way, the vibration energy will disappear or weaken, which can achieve a good vibration reduction effect.

[0103] In other examples, such as Figure 9As shown, the mounting hole h is formed in the lens housing 12, and the fastener 5 includes a stepped screw. The stepped screw passes through the elastic body portion 42, the elastic connecting portion 41, and the elastic body portion 42 in sequence from the side of the lens housing 12 away from the base housing 11, and is threadedly connected to the base housing 11. The stepped portion of the stepped screw abuts against the base housing 11, and the nut of the stepped screw abuts against the elastic body portion 42 on the side of the lens housing 12 away from the base housing 11. In this way, the lens housing 12 and the base housing 11 are connected.

[0104] In this case, the vibration energy on the base shell 11 needs to be transmitted to the step screw through the elastic connecting part 41 and the elastic main body part 42, and then transmitted to the lens shell 12. Since the step screw and the lens shell 12 are separated by the elastic main body part 42 and the elastic connecting part 41, the vibration energy transmitted from the base shell 11 to the step screw will disappear or weaken, which can have a good vibration reduction effect.

[0105] The arrangement of the elastic member 4 between the lens housing 12 and the moving bracket 33 is similar to the arrangement of the elastic member 4 between the lens housing 12 and the base housing 11 , so the arrangement may be referred to and will not be repeated here.

[0106] Similarly, the arrangement of the elastic member 4 between the base shell 11 and the speaker 2 is similar to the arrangement of the elastic member 4 between the lens shell 12 and the base shell 11, so the arrangement can be referred to and will not be repeated here.

[0107] Through the above-mentioned arrangement, the elastic member 4 can be clamped in the mounting hole h, and the elastic main body portion 42 and the elastic connecting portion 41 can isolate the fastener 5, thereby weakening or eliminating the vibration energy transmitted from the base shell 11 to the fastener 5 and then to the lens shell 12, or weakening or eliminating the vibration energy transmitted from the lens shell 12 to the fastener 5 and then to the motion bracket 33, or weakening or eliminating the vibration energy transmitted from the speaker 2 to the fastener 5 and then to the base shell 11, thereby comprehensively reducing the vibration energy at the connection of the fastener 5 and improving the vibration reduction effect.

[0108] In some embodiments, as Figure 7 As shown, the elastic body portion 42 has a second deformation space 421 , and the second deformation space 421 is used to provide space for deformation of the elastic body portion 42 .

[0109] In some examples, the second deformation space 421 may be a second deformation hole, which may be a blind hole or a through hole. The second deformation hole extends along the arrangement direction of the elastic body portion 42 and the elastic connection portion 41 .

[0110] For example, a plurality of second deformation holes are provided, and the plurality of second deformation holes are spaced apart around the mounting hole h, so as to provide deformation space for the elastic body portion 42 in the circumferential direction of the elastic body portion 42 .

[0111] In other examples, the second deformation space 421 may include a deformation cavity, which is disposed inside the elastic body portion 42 .

[0112] In addition, the second deformation space 421 may be provided on both ends of the elastic body 42 of the elastic connection portion 41 , or the second deformation space 421 may be provided on only one of the elastic body 42 at both ends of the elastic connection portion 41 .

[0113] By providing the second deformation space 421 , the second deformation space 421 can provide space for the elastic deformation of the elastic body portion 42 , thereby facilitating the vibration reduction effect thereof.

[0114] In some embodiments, as Figure 7 As shown, the elastic body portion 42 is provided with a reinforcing rib 422 .

[0115] There may be multiple reinforcing ribs 422 , and the multiple reinforcing ribs 422 are spaced apart around the mounting hole h.

[0116] Of course, only one reinforcing rib 422 may be provided.

[0117] In addition, the reinforcing ribs 422 may be provided on both ends of the elastic main body 42 of the elastic connecting portion 41 , or the reinforcing ribs 422 may be provided on only one of the elastic main body 42 at both ends of the elastic connecting portion 41 .

[0118] In some examples, the reinforcing ribs 422 may be in a regular shape such as a strip or a block, or may be in an irregular shape.

[0119] In some examples, a plurality of second deformation holes are provided on the elastic body portion 42 , a plurality of reinforcing ribs 422 are provided on the elastic body portion 42 , and the second deformation spaces 421 and the reinforcing ribs 422 are alternately arranged around the mounting hole h.

[0120] By providing the reinforcing ribs 422 on the elastic body portion 42 , the structural strength of the elastic body portion 42 can be improved, thereby preventing the elastic body portion 42 from undergoing excessive elastic deformation, and also enhancing the clamping strength of the first elastic member 4 on the mounting hole h.

[0121] In some embodiments, as Figure 1 、 Figure 10As shown, speaker 2 is spaced apart from the wall of base housing 11. Video conferencing device 01 also includes at least one vibration reduction assembly 6, which is disposed within base housing 11 and positioned between speaker 2 and the wall of base housing 11. Vibration reduction assembly 6 is connected to speaker 2 and base housing 11 on either side thereof, respectively, and is used to attenuate or eliminate vibration energy transmitted from speaker 2 to base housing 11.

[0122] It can be understood that the speaker 2 is spaced apart from the wall of the base housing 11 , which means that the outer wall of the speaker 2 is not in contact with the wall of the base housing 11 .

[0123] In some examples, such as Figure 1 As shown, the base shell 11 wraps the loudspeaker 2 , so that the base shell 11 can protect the loudspeaker 2 from being damaged.

[0124] For example, Figure 1 、 Figure 10 As shown, the base shell 11 has a cavity a and a sound outlet b connected to the cavity a. The speaker 2 is arranged in the cavity a, and the sound outlet surface of the speaker 2 faces the sound outlet b, so that the base shell 11 wraps the speaker 2 and realizes sound output at the same time.

[0125] In this case, the outer wall surface of the speaker 2 is spaced apart from the inner wall surface of the cavity a.

[0126] The number of the sound holes b can be multiple, for example, five, ten, or twenty.

[0127] Exemplarily, a groove body is formed on the base shell 11 , the speaker 2 is arranged in the groove body, and the sound output surface of the speaker 2 can extend out of the groove body through the groove opening of the groove body, so that the wall surface of the groove body can wrap the speaker 2 .

[0128] In this case, the wall surface of the speaker 2 is spaced apart from the bottom of the groove body and the peripheral surface of the groove body.

[0129] In other examples, the speaker 2 is disposed on one side of the outer wall of the base shell 11 , so that the speaker 2 is only spaced apart from the outer wall of the base shell 11 .

[0130] In a specific example, Figure 10 、 Figure 11 As shown, the loudspeaker 2 includes a sound-emitting surface, a back surface 21 opposite the sound-emitting surface, and a peripheral wall 22 disposed between the sound-emitting surface and the back surface 21. A vibration-damping assembly 6 is disposed between the peripheral wall 22 and the wall surface of the base housing 11. Multiple vibration-damping assemblies 6 are provided, and these multiple vibration-damping assemblies 6 are arranged along the perimeter of the peripheral wall 22. These multiple vibration-damping assemblies 6 can provide vibration damping around the perimeter of the loudspeaker 2, thereby improving the vibration-damping effect.

[0131] In some examples, the vibration reduction method of the vibration reduction component 6 can be an elastic vibration reduction method or a pneumatic vibration reduction method.

[0132] Through the above-mentioned arrangement, since the vibration reduction assembly 6 is respectively connected to the speaker 2 and the base shell 11, the speaker 2 is arranged on the base shell 11 through the vibration reduction assembly 6. Since the speaker 2 and the wall of the base shell 11 are spaced apart, the speaker 2 and the base shell 11 are connected only through the vibration reduction assembly 6. Therefore, when the speaker 2 vibrates at a low frequency, the vibration energy will be transmitted to the base shell 11 through the vibration reduction assembly 6. Since the vibration reduction assembly 6 has the function of weakening or eliminating the vibration energy, the vibration energy finally transmitted to the base shell 11 by the speaker 2 is very weak or even non-existent. Therefore, it can be ensured that the vibration of the entire video conferencing equipment 01 is weakened or disappears, thereby weakening or eliminating abnormal noise, and ensuring the normal implementation of the voice recognition function of the video conferencing equipment 01, while ensuring that the lens module 3 of the video conferencing equipment 01 has a clear picture.

[0133] The structure of the vibration reduction assembly 6 can be various, and the structure of the vibration reduction assembly 6 is introduced below with examples.

[0134] In the first possible implementation, Figure 11 、 Figure 12 As shown, the vibration damping assembly 6 includes a first connecting portion 62, a second connecting portion 63, and an elastic portion 61. The elastic portion 61 is capable of elastic deformation. The first connecting portion 62 is disposed between the elastic portion 61 and the speaker 2, and is connected to the elastic portion 61 and the speaker 2, respectively. The second connecting portion 63 is disposed between the elastic portion 61 and the wall surface of the base housing 11, and is connected to the elastic portion 61 and the base housing 11, respectively.

[0135] The elastic portion 61 may be a spring, or an elastic gasket.

[0136] Exemplarily, the material of the elastic gasket may include rubber or elastomeric plastic, etc. For example, the rubber may include natural rubber, synthetic rubber or silicone, etc.

[0137] In some examples, the first connection portion 62 may be in a plate-shaped, sheet-shaped, or block-shaped structure.

[0138] Exemplarily, the first connecting part 62 includes a first connecting plate, and the thickness direction of the first connecting plate is the arrangement direction of the first connecting part 62 and the second connecting part 63. In this way, not only can the structural strength of the first connecting part 62 be guaranteed, but also the distance between the speaker 2 and the wall of the base shell 11 can be reduced, thereby facilitating the overall miniaturization design of the video conferencing equipment 01.

[0139] In some examples, the first connection portion 62 is snap-fitted to the speaker 2 , screw-fastened, bonded, or welded.

[0140] In some examples, the first connection portion 62 is snap-fitted to the elastic portion 61 , screw-fastened, bonded, or welded.

[0141] In some examples, the second connection portion 63 may be in a plate-shaped, sheet-shaped, or block-shaped structure.

[0142] Exemplarily, the second connecting part 63 includes a second connecting plate, and the thickness direction of the second connecting plate is the arrangement direction of the first connecting part 62 and the second connecting part 63. In this way, not only can the structural strength of the second connecting part 63 be guaranteed, but also the distance between the speaker 2 and the wall of the base shell 11 can be reduced, thereby facilitating the overall miniaturization design of the video conferencing equipment 01.

[0143] In some examples, the second connection portion 63 is snap-fitted to the wall surface of the base shell 11 , screw-fastened, bonded, or welded.

[0144] In some examples, the second connection portion 63 is snap-fitted to the elastic portion 61 , screw-fastened, bonded, or welded.

[0145] In this way, the first connecting part 62 and the second connecting part 63 are responsible for connecting the elastic part 61 between the speaker 2 and the wall of the base shell 11. The elastic part 61 can weaken or eliminate the vibration energy transmitted from the speaker 2 to the base shell 11 by elastic deformation, thereby slowing down the overall vibration of the video conferencing equipment 01, ensuring the normal implementation of the voice recognition function of the video conferencing equipment 01, and at the same time ensuring that the picture of the lens module 3 of the video conferencing equipment 01 is clear.

[0146] In a second possible implementation, the vibration damping assembly 6 includes only an elastic portion 61, with at least one elastic portion 61 provided. One end of the elastic portion 61 is connected to the speaker 2, and the other end of the elastic portion 61 is connected to the wall of the base housing 11. The elastic deformation of the elastic portion 61 reduces the vibration energy transmitted from the speaker 2 to the base housing 11.

[0147] There are various ways to connect the first connecting portion 62 to the speaker 2 , and there are various ways to connect the second connecting portion 63 to the base housing 11 , which are described below with examples.

[0148] In some embodiments, as Figure 11 、 Figure 12 As shown, the first connecting portion 62 is snap-fitted or bonded to the speaker 2 .

[0149] For example, the first connecting portion 62 and the speaker 2 may be bonded together by means of structural adhesive or the like.

[0150] For example, Figure 11 、 Figure 12As shown, there is a snap-in hole c on the first connecting portion 62, and a snap-in arm on the speaker 2. The snap-in arm extends into the snap-in hole c and snaps in with the snap-in hole c. In this way, the snap-in connection between the first connecting portion 62 and the speaker 2 is achieved through the cooperation between the snap-in arm and the snap-in hole c.

[0151] Alternatively, a first snap-fit structure is provided between the first connecting portion 62 and the loudspeaker 2 , and the loudspeaker 2 and the first connecting portion 62 are snap-fitted together by the first snap-fit structure.

[0152] Through the above-mentioned setting, the first connecting part 62 and the speaker 2 can be connected together by snapping or bonding, so as to ensure the connection stability between the first connecting part 62 and the speaker 2, thereby ensuring the overall stability of the vibration reduction assembly 6, thereby ensuring the stable realization of the vibration reduction function of the vibration reduction assembly 6.

[0153] In other embodiments, Figure 11 As shown, the second connecting portion 63 is engaged with the base shell 11 .

[0154] In some examples, a snap-fit groove d is formed on the base shell 11 , and the second connecting portion 63 extends into the snap-fit groove d to snap-fit with the snap-fit groove d, thereby achieving snap-fit between the second connecting portion 63 and the base shell 11 .

[0155] In other examples, a second snap-fit structure is provided between the second connecting portion 63 and the base shell 11 , and the second snap-fit structure is used to achieve snap connection between the base shell 11 and the second connecting portion 63 .

[0156] Through the above arrangement, the second connecting portion 63 and the base shell 11 can be connected together by a snap-fit connection, thereby ensuring the stability of the connection between the second connecting portion 63 and the base shell 11, thereby ensuring the overall stability of the vibration damping assembly 6, and thus ensuring the stable realization of the vibration damping function of the vibration damping assembly 6. In addition, the installation and removal of the second connecting portion 63 can also be facilitated.

[0157] In other embodiments, Figure 11 、 Figure 12 As shown, the first connecting portion 62 is snap-fitted or bonded to the loudspeaker 2 , and the second connecting portion 63 is snap-fitted to the base housing 11 .

[0158] The first connecting portion 62 is snapped or bonded to the speaker 2 to secure them together, ensuring a stable connection between them. The second connecting portion 63 is snapped to the base housing 11 to secure them together, ensuring a stable connection between them. This ensures the overall stability of the vibration damping assembly 6 and the stable performance of the vibration damping function of the vibration damping assembly 6. Furthermore, this facilitates the installation of the first connecting portion 62 and the second connecting portion 63.

[0159] The elastic portion 61 and the first connecting portion 62 and the second connecting portion 63 can be connected by means of clamping, screw fastening, etc. The details are described below.

[0160] In some embodiments, as Figure 12 、 Figure 13 As shown, a first through hole f is provided on the first connecting portion 62, and a first abutting portion 621 is connected to the elastic portion 61 and extends through the first through hole f and extends between the speaker 2 and the first connecting portion 62. The first abutting portion 621 and the elastic portion 61 respectively abut on the side surface of the first connecting portion 62 on their side.

[0161] In some examples, the first through hole f may be a regular hole such as a circular hole, a square hole, or an irregular hole.

[0162] In some examples, the first abutment portion 621 includes a first abutment plate, and the thickness direction of the first abutment plate is along the arrangement direction of the first connecting portion 62 and the second connecting portion 63. In this way, the side surface of the first abutment plate abuts against the first connecting portion 62, so the abutment area is large, so the abutment strength can be guaranteed. At the same time, along the thickness direction of the first abutment plate, the distance between the speaker 2 and the wall of the base shell 11 can be reduced, which facilitates the miniaturization design of the video conferencing equipment 01.

[0163] Through the above arrangement, the first abutting portion 621 and the elastic portion 61 respectively abut against both sides of the first connecting portion 62, so that the elastic portion 61 can be snapped onto the first connecting portion 62. The elastic portion 61 is connected to the first connecting portion 62 and the second connecting portion 63 by snapping, which facilitates the installation of the elastic portion 61 and the first connecting portion 62.

[0164] In other embodiments, Figure 12 、 Figure 13 As shown, a second through hole g is opened on the second connecting portion 63, and the elastic portion 61 is connected to a second abutting portion 631 which passes through the second through hole g and extends between the wall surface of the base shell 11 and the second connecting portion 63. The second abutting portion 631 and the elastic portion 61 respectively abut on the side surface of the second connecting portion 63 on their side.

[0165] In some examples, the second through hole g may be a regular hole such as a circular hole, a square hole, or an irregular hole.

[0166] In some examples, the second abutment portion 631 includes a second abutment plate, and the thickness direction of the second abutment plate is along the arrangement direction of the first connecting portion 62 and the second connecting portion 63. In this way, the side surface of the second abutment plate abuts against the second connecting portion 63, so the abutment area is large, so the abutment strength can be guaranteed. At the same time, along the thickness direction of the second abutment plate, the distance between the speaker 2 and the wall of the base shell 11 can be reduced, which facilitates the miniaturization design of the video conferencing equipment 01.

[0167] Through the above arrangement, the second abutting portion 631 and the elastic portion 61 respectively abut against both sides of the second connecting portion 63, so that the elastic portion 61 can be snapped onto the second connecting portion 63. The elastic portion 61 is snapped onto the second connecting portion 63, which facilitates the installation of the elastic portion 61 and the second connecting portion 63.

[0168] In other embodiments, Figure 12 、 Figure 13 As shown, the first connecting portion 62 is provided with a first through-hole f. The elastic portion 61 is connected to a first abutting portion 621 that passes through the first through-hole f and extends between the speaker 2 and the first connecting portion 62. The first abutting portion 621 and the elastic portion 61 respectively abut against the side surface of the first connecting portion 62 on their respective sides. Furthermore, the second connecting portion 63 is provided with a second through-hole g. The elastic portion 61 is connected to a second abutting portion 631 that passes through the second through-hole g and extends between the wall surface of the base housing 11 and the second connecting portion 63. The second abutting portion 631 and the elastic portion 61 respectively abut against the side surface of the second connecting portion 63 on their respective sides.

[0169] Through the above arrangement, the first abutting portion 621 and the elastic portion 61 respectively abut against both sides of the first connecting portion 62, so that the elastic portion 61 can be snapped onto the first connecting portion 62. Furthermore, the second abutting portion 631 and the elastic portion 61 respectively abut against both sides of the second connecting portion 63, so that the elastic portion 61 can be snapped onto the second connecting portion 63. The snap-fit connection of the elastic portion 61 to the first connecting portion 62 and the second connecting portion 63 facilitates the installation of the elastic portion 61 with the first connecting portion 62 and the second connecting portion 63.

[0170] In some embodiments, the first abutting portion 621 is made of an elastic material, and the first abutting portion 621 and the elastic portion 61 are an integrally formed structure.

[0171] In some examples, the elastic material may include rubber or elastomeric plastic, for example, the rubber may include natural rubber, synthetic rubber, or silicone.

[0172] In some examples, the elastic portion 61 and the first abutting portion 621 are both made of elastic material, which can reduce the difficulty of integrally forming the elastic portion 61 and the first abutting portion 621 .

[0173] With this arrangement, when the elastic portion 61 is clipped onto the first connecting portion 62, the first abutting portion 621 can be squeezed, causing the first abutting portion 621 to elastically deform and pass through the first through-hole f. After passing through the first through-hole f, the first abutting portion 621 deforms back again, so that the first abutting portion 621 and the elastic portion 61 respectively abut against opposite sides of the first connecting portion 62, thereby clipping the elastic portion 61 onto the first connecting portion 62. This arrangement improves the convenience of clipping. In addition, because the first abutting portion 621 and the elastic portion 61 are an integral structure, no secondary processing is required when processing the first abutting portion 621 and the elastic portion 61.

[0174] In other embodiments, the second abutting portion 631 is made of an elastic material, and the second abutting portion 631 and the elastic portion 61 are an integrally formed structure.

[0175] In some examples, the elastic material may include rubber or elastomeric plastic, for example, the rubber may include natural rubber, synthetic rubber, or silicone.

[0176] In some examples, the elastic portion 61 and the second abutting portion 631 are both made of elastic material, which can reduce the difficulty of integrally forming the elastic portion 61 and the second abutting portion 631 .

[0177] With this arrangement, when the elastic portion 61 is snapped onto the second connecting portion 63, the second abutting portion 631 can be squeezed, causing the second abutting portion 631 to elastically deform and pass through the second through hole g. After passing through the second through hole g, the second abutting portion 631 deforms back again, so that the second abutting portion 631 and the elastic portion 61 respectively abut against opposite sides of the second connecting portion 63, thereby snapping the elastic portion 61 onto the second connecting portion 63. This arrangement improves the convenience of snapping. In addition, because the second abutting portion 631 and the elastic portion 61 are an integral structure, no secondary processing is required when processing the second abutting portion 631 and the elastic portion 61.

[0178] In some embodiments, the first abutting portion 621 is made of elastic material, and the first abutting portion 621 and the elastic portion 61 are integrally formed. The second abutting portion 631 is also made of elastic material, and the second abutting portion 631 and the elastic portion 61 are integrally formed.

[0179] With this arrangement, when the elastic portion 61 is attached to the first connecting portion 62, the first abutting portion 621 can be squeezed, causing the first abutting portion 621 to elastically deform and pass through the first through-hole f, thereby securing the elastic portion 61 to the first connecting portion 62. Furthermore, when the elastic portion 61 is attached to the second connecting portion 63, the second abutting portion 631 can be squeezed, causing the second abutting portion 631 to elastically deform and pass through the second through-hole g, thereby securing the elastic portion 61 to the second connecting portion 63. This arrangement improves the convenience of attachment. Furthermore, the first abutting portion 621, the second abutting portion 631, and the elastic portion 61 can be integrally formed, eliminating the need for secondary processing.

[0180] On this basis, in some embodiments, such as Figure 14 As shown, a first deformation space 64 is formed on at least one of the elastic portion 61 , the first abutting portion 621 , and the second abutting portion 631 . The first deformation space 64 is used to provide space for deformation of at least one of the elastic portion 61 , the first abutting portion 621 , and the second abutting portion 631 .

[0181] In some examples, the elastic portion 61 includes an elastic gasket, and a first deformation space 64 is formed on the elastic gasket.

[0182] Exemplarily, an inner cavity is formed on the elastic gasket, and the inner cavity forms the first deformation space 64 .

[0183] Exemplarily, a first deformation hole is formed on the elastic gasket, and the first deformation hole forms a first deformation space 64 .

[0184] In some examples, such as Figure 15 As shown, the first deformation space 64 includes a first deformation hole, the elastic portion 61 includes an elastic gasket, and the first deformation hole is formed on the first abutting portion 621, the second abutting portion 631, and the elastic portion 61. The first deformation hole on the first abutting portion 621, the first deformation hole on the second abutting portion 631, and the first deformation hole on the elastic portion 61 are located on the same central axis. In this way, during processing, the first abutting portion 621, the elastic portion 61, and the second abutting portion 631 can be drilled at one time, which can facilitate processing.

[0185] By providing the first deformation space 64, when at least one of the elastic portion 61, the first abutting portion 621, and the second abutting portion 631 is deformed, the first deformation space 64 thereon can provide space for deformation, thereby facilitating elastic deformation of at least one of the elastic portion 61, the first abutting portion 621, and the second abutting portion 631, thereby improving the vibration damping capabilities of the elastic portion 61, the first abutting portion 621, and the second abutting portion 631. Furthermore, when at least one of the first abutting portion 621 and the second abutting portion 631 is provided with the first deformation space 64, when the elastic portion 61 is attached to the first connecting portion 62 and the second connecting portion 63, the elastic deformation of the first abutting portion 621 and the second abutting portion 631 can be facilitated. This facilitates the first abutting portion 621 to pass through the first through hole f and the second abutting portion 631 to pass through the second through hole g, thereby facilitating the attachment of the elastic portion 61.

[0186] In some embodiments, as Figure 13 、 Figure 14 As shown, there are multiple elastic portions 61 , and the multiple elastic portions 61 are located in the same plane perpendicular to the arrangement direction of the first connecting portion 62 and the second connecting portion 63 .

[0187] In some examples, the number of elastic parts 61 on a vibration reduction assembly 6 may be two, three, four, five, ten, or the like. Figure 14 2 shows a case where the number of elastic parts 61 is two.

[0188] In some examples, the multiple elastic portions 61 on one vibration-damping assembly 6 are sequentially arranged along the arrangement direction of a first edge and a second edge opposite to the peripheral wall surface 22 of the loudspeaker 2 .

[0189] In other examples, the multiple elastic portions 61 on one vibration-damping assembly 6 are sequentially arranged along the circumferential direction of the peripheral wall surface 22 of the speaker 2 .

[0190] In some examples, such as Figure 10 As shown, the vibration-damping assembly 6 is disposed between the peripheral wall surface 22 of the speaker 2 and the wall surface of the base housing 11. Multiple vibration-damping assemblies 6 are provided, and the multiple vibration-damping assemblies 6 are sequentially arranged along the circumferential direction of the peripheral wall surface 22 of the speaker 2. The multiple elastic portions 61 in each vibration-damping assembly 6 are sequentially arranged from the first edge to the second edge of the peripheral wall surface 22. In this way, the elastic portions 61 in the multiple vibration-damping assemblies 6 can reduce vibration along the circumference of the peripheral wall surface 22, and the multiple elastic portions 61 in each vibration-damping assembly 6 can reduce vibration along the first and second edges of the peripheral wall surface 22, thereby effectively reducing the vibration of the speaker 2.

[0191] Exemplarily, the multiple elastic portions 61 in each vibration-damping assembly 6 extend along a first direction, which is perpendicular to the rear surface 21 of the loudspeaker 2 and the arrangement direction of the sound emitting surface of the loudspeaker 2 .

[0192] It can be understood that the number of elastic parts 61 on a vibration damping assembly 6 should be selected according to the size of the elastic part 61 and the dimension between the first edge and the second edge of the peripheral wall surface 22 .

[0193] In some examples, when multiple elastic portions 61 are provided on a vibration damping assembly 6, the number of first through holes f on the first connecting portion 62 may be multiple, with each first through hole f corresponding to one elastic portion 61. Alternatively, the number of first through hole f on the first connecting portion 62 may be one, with one first through hole f corresponding to multiple elastic portions 61.

[0194] Similarly, in other examples, when multiple elastic portions 61 are provided on a vibration damping assembly 6, the number of second through holes g on the second connecting portion 63 may be multiple, with each second through hole g corresponding to one elastic portion 61. Alternatively, the number of second through hole g on the second connecting portion 63 may be one, with one second through hole g corresponding to multiple elastic portions 61.

[0195] By providing a plurality of elastic portions 61 on a vibration reduction assembly 6, the plurality of elastic portions 61 can weaken or eliminate the vibration energy transmitted from the speaker 2 to the base shell 11. Since each elastic portion 61 is connected to the first connecting portion 62 and the second connecting portion 63, when a plurality of elastic portions 61 are provided, the number of the first connecting portion 62 and the second connecting portion 63 provided can be reduced. In this way, the number of connections between the first connecting portion 62 and the speaker 2 and the number of connections between the second connecting portion 63 and the base shell 11 can be reduced, thereby improving installation efficiency.

[0196] In some embodiments, as Figure 13 、 Figure 14 As shown, there are multiple elastic parts 61; the first abutting parts 621 on adjacent elastic parts 61 are connected to each other, and / or the second abutting parts 631 on adjacent elastic parts 61 are connected to each other.

[0197] In some examples, such as Figure 13 As shown, the first abutting portion 621, the second abutting portion 631, and the elastic portion 61 are all made of an elastic material. The second abutting portions 631 on adjacent elastic portions 61 are connected to each other to form an integrally formed structure. The first connecting portion 62 has a plurality of first through holes f, and the second connecting portion 63 has a plurality of second through holes g. The plurality of first through holes f is provided correspondingly to the plurality of second through holes g, and the plurality of elastic portions 61 is provided correspondingly to the plurality of first through holes f.

[0198] As such, when the elastic portion 61 is mounted on the first connecting portion 62 and the second connecting portion 63, the elastic portion 61, the first abutting portion 621, and the second abutting portion 631 are positioned on the side of the second through-hole g away from the first connecting portion 62. The first abutting portion 621 and the elastic portion 61 are then elastically deformed and pass through the corresponding second through-holes g, so that the adjacent second abutting portions 631 and the elastic portions 61 respectively abut against both sides of the second connecting portion 63. Furthermore, the multiple independent first abutting portions 621 are elastically deformed to pass through the corresponding first through-holes f, so that the multiple first abutting portions 621 and the multiple elastic portions 61 respectively abut against opposite sides of the first connecting portion 62, thereby achieving mounting. This not only facilitates the snap-fitting of the multiple elastic portions 61, but also enhances the connection strength of the multiple elastic portions 61.

[0199] In some examples, the first abutting portions 621 on adjacent elastic portions 61 are connected to each other by, for example, attaching multiple elastic portions 61 to the first connecting portion 62 and then bonding or screwing the first abutting portions 621 on adjacent elastic portions 61 together. Alternatively, the first abutting portions 621 on multiple elastic portions 61 are first connected together and then the multiple elastic portions 61 are attached to the first connecting portion 62.

[0200] Similarly, in some examples, the second abutting portions 631 on adjacent elastic portions 61 are connected to each other by, for example, first snapping multiple elastic portions 61 onto the second connecting portion 63 and then bonding or screwing the second abutting portions 631 on adjacent elastic portions 61 together. Alternatively, the second abutting portions 631 on multiple elastic portions 61 may be first connected together and then the multiple elastic portions 61 may be snapped onto the second connecting portion 63.

[0201] In some examples, the first abutting portions 621 on adjacent elastic portions 61 may be an integrally formed structure.

[0202] In some examples, the second abutting portions 631 on adjacent elastic portions 61 may be an integrally formed structure.

[0203] Through the above-mentioned setting, multiple elastic parts 61 are connected together through the first abutting part 621 and / or the second abutting part 631, which not only facilitates the installation of multiple elastic parts 61 to the first connecting part 62 and the second connecting part 63, but also increases the overall structural strength of the multiple elastic parts 61 and enhances the vibration reduction effect.

[0204] In some embodiments, as Figure 14 、 Figure 15 As shown, along the arrangement direction of the first connection portion 62 and the second connection portion 63 , the radial dimension of the elastic portion 61 first increases and then decreases.

[0205] In some examples, in a direction perpendicular to the arrangement of the first connection portion 62 and the second connection portion 63 , the cross-section of the elastic portion 61 may be circular, elliptical, or polygonal. For example, the polygon may be a triangle, a square, a pentagon, or the like.

[0206] Such an arrangement not only facilitates elastic deformation of the elastic portion 61 to reduce vibration of the elastic portion 61 , but also maintains the structural strength of the elastic portion 61 to a certain extent, thereby ensuring the connection stability of the speaker 2 .

[0207] Of course, in other embodiments, along the arrangement direction of the first connection portion 62 and the second connection portion 63 , the radial dimension of the elastic portion 61 remains unchanged.

[0208] In some embodiments, as Figure 10 As shown, the base housing 11 encloses the speaker 2; the speaker 2 includes a sound-emitting surface, a back surface 21 opposite the sound-emitting surface, and a peripheral wall 22 disposed between the sound-emitting surface and the back surface 21. The vibration damping assembly 6 is disposed between the peripheral wall 22 and the wall surface of the base housing 11; the elastic member 4 is disposed between the sound-emitting surface and the wall surface of the base housing 11; and / or the elastic member 4 is disposed between the back surface 21 and the wall surface of the base housing 11.

[0209] It can be understood that the base shell 11 enclosing the speaker 2 means that the speaker 2 is at least partially located inside the base shell 11 .

[0210] Exemplarily, the base shell 11 has a cavity a and a sound outlet b connected to the cavity a. The speaker 2 is arranged in the cavity a, and the sound outlet surface of the speaker 2 faces the sound outlet b. In this way, the sound output of the speaker 2 is ensured on the basis of wrapping the speaker 2 with the base shell 11.

[0211] In some examples, there is only one elastic member 4, which is disposed in the middle of the upper edge or the middle of the lower edge of the sound outlet surface and / or back surface 21. This can minimize the number of elastic members 4 and reduce component costs while ensuring a stable connection between the base housing 11 and the speaker 2.

[0212] In some examples, there are multiple elastic members 4, each of which is disposed at the top corners of the sound outlet surface and / or the back surface 21. This can minimize the number of elastic members 4 and reduce component costs while ensuring a stable connection between the base housing 11 and the speaker 2.

[0213] In this way, the vibration reduction component 6 can reduce vibration between the peripheral wall surface 22 and the base shell 11, while the elastic member 4 can reduce vibration between the sound output surface and / or back surface 21 and the base shell 11. In this way, vibration reduction can be achieved from different directions, the vibration reduction treatment of the speaker 2 can be better performed, and the connection stability and connection strength between the speaker 2 and the base shell 11 can also be ensured.

[0214] The above are only preferred embodiments of the present application and do not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made using the contents of the present application specification and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present application.

Claims

1. A video conferencing device, characterized in that: include: The housing comprises a base housing and a lens housing, wherein the lens housing is arranged on the base housing; A lens module is arranged on the lens housing; A speaker is arranged on the base shell; At least one elastic member is arranged between the base shell and the lens shell, and the elastic member at least partially abuts between the wall surface of the lens shell and the wall surface of the base shell. A fastener passes through the elastic member to connect the lens shell and the base shell.

2. The video conferencing device according to claim 1, wherein: The lens module includes a motion bracket and a motion lens; the motion lens is arranged on the motion bracket; There are multiple elastic members, at least one of which is further arranged between the wall of the lens housing and the moving bracket. The elastic member at least partially abuts between the wall of the lens housing and the moving bracket, and a fastener passes through the elastic member to connect the lens housing and the moving bracket.

3. The video conferencing device according to claim 1, wherein: There are multiple elastic members, at least one of which is further arranged between the wall of the base shell and the speaker. The elastic member at least partially abuts between the wall of the base shell and the speaker, and a fastener passes through the elastic member to connect the speaker and the base shell.

4. The video conferencing device according to claim 3, wherein: The speaker is spaced apart from the wall of the base shell; the video conferencing device further includes: At least one vibration-damping assembly is provided on the base shell and is located between the speaker and the wall of the base shell. The vibration-damping assembly is respectively connected to the speaker and the base shell located on both sides thereof. The vibration-damping assembly is used to weaken or eliminate the vibration energy transmitted from the speaker to the base shell.

5. The video conferencing device according to claim 4, characterized in that The vibration reduction assembly comprises: an elastic portion capable of elastic deformation; a first connecting portion, disposed between the elastic portion and the speaker, and connected to the elastic portion and the speaker respectively; The second connecting portion is disposed between the elastic portion and the wall surface of the base shell, and is connected to the elastic portion and the base shell respectively.

6. The video conferencing device according to claim 5, characterized in that The first connecting portion is provided with a first through hole, the elastic portion is connected to a first abutting portion extending through the first through hole and extending between the speaker and the first connecting portion, the first abutting portion and the elastic portion respectively abut against a side surface of the first connecting portion on one side thereof; and / or, A second through hole is provided on the second connecting portion, and the elastic portion is connected to a second abutting portion which passes through the second through hole and extends between the wall surface of the base shell and the second connecting portion. The second abutting portion and the elastic portion respectively abut against the side surface of the second connecting portion on their side.

7. The video conferencing device according to claim 6, wherein: There are multiple elastic parts; the first abutting parts on adjacent elastic parts are connected to each other, and / or the second abutting parts on adjacent elastic parts are connected to each other.

8. The video conferencing device according to claim 6, wherein: The first abutting portion is made of an elastic material, and the first abutting portion and the elastic portion are an integrally formed structure; and / or the second abutting portion is made of an elastic material, and the second abutting portion and the elastic portion are an integrally formed structure.

9. The video conferencing device according to claim 6, wherein: A first deformation space is formed on at least one of the elastic portion, the first abutting portion, and the second abutting portion, and the first deformation space is used to provide space for deformation of at least one of the elastic portion, the first abutting portion, and the second abutting portion.

10. The video conferencing device according to claim 5, wherein: The first connecting portion is snap-connected or bonded to the speaker; and / or the second connecting portion is snap-connected to the base shell.

11. The video conferencing device according to claim 4, wherein: The base shell wraps the speaker; the speaker includes a sound emitting surface, a back surface opposite to the sound emitting surface, and a peripheral wall surface arranged between the sound emitting surface and the back surface; the vibration damping assembly is arranged between the peripheral wall surface and the wall surface of the base shell; the elastic member is arranged between the sound emitting surface and the wall surface of the base shell; and / or, the elastic member is arranged between the back surface and the wall surface of the base shell.

12. The video conferencing device according to claim 2, wherein: The elastic member includes an elastic connecting portion and an elastic main body portion, wherein opposite ends of the elastic connecting portion are respectively connected to the elastic main body portion; In the case where the elastic member is provided between the base shell and the lens shell, a mounting hole is provided on the base shell or the lens shell, the elastic connecting portion passes through the mounting hole, and the elastic body portion abuts against the wall surface of the base shell or the lens shell on the corresponding side of the mounting hole, or, In the case where the mounting hole is opened between the lens housing and the motion bracket, the lens housing is provided with a mounting hole, the elastic connecting portion passes through the mounting hole, and the elastic body portion abuts against the wall surface of the lens housing on the corresponding side of the mounting hole, or, When the elastic member is arranged between the base shell and the speaker, a mounting hole is provided on the base shell or the speaker, the elastic connecting portion passes through the mounting hole, and the elastic body portion abuts against the wall surface of the base shell or the speaker on the corresponding side of the mounting hole.

13. The video conferencing device according to claim 12, wherein: The elastic body portion has a second deformation space thereon, and the second deformation space is used to provide space for deformation of the elastic body portion.