Indicator lamp structure and conference equipment

By introducing a combined design of uniform light and translucent parts into the indicator light structure, the problems of poor light output and inconsistent external appearance are solved, and a more uniform light output and a more consistent appearance are achieved, which improves the user experience.

CN223204182UActive Publication Date: 2025-08-08ARASHI VISION INC
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Patent Information

Application Number
CN202422438886.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-09
Publication Date
2025-08-08
Estimated Expiration
2034-10-09

AI Technical Summary

Technical Problem

The indicator light structure of the existing conference equipment has poor lighting effects and the external appearance is inconsistent, which affects the user experience.

Method used

The combination of light homogenizer and light transmitting member is adopted. The light homogenizer is used to adjust the light uniformity. The light transmitting member allows light to pass through the colored semi-transparent area and blocks the light emitting component when it does not emit light. Combined with the reflective structure to enhance the light mixing effect.

Benefits of technology

It improves the light output effect and external appearance coordination of the indicator light structure, reduces color difference, and improves the user's appearance experience.

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Abstract

The utility model discloses an indicating lamp structure and conference equipment, and relates to the technical field of electronic equipment. The indicating lamp structure comprises a main body, a light-emitting assembly, a dodging piece and a light-transmitting piece, the main body forms an accommodating space, and the accommodating space comprises a first opening part communicated with the outer side of the main body; the light-emitting assembly is arranged in the containing space and used for generating light penetrating through the first opening part. The light uniformizing piece is arranged at the position corresponding to the first opening part and is used for adjusting the uniformity of light rays; the light-transmitting piece comprises a colored semi-transparent area and is connected to the main body, and the colored semi-transparent area corresponds to the first opening part.
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Description

Technical Field

[0001] The present application relates to, but is not limited to, the field of electronic equipment, and in particular to an indicator light structure and conference equipment. Background Art

[0002] Conference equipment is used to achieve remote communication and collaboration. Conference equipment is usually equipped with an indicator light structure, which can be used to indicate the working status of the conference equipment and convey information to users, thereby achieving human-computer interaction. However, the indicator light structure in related technologies has poor lighting effect and poor external appearance. Utility Model Content

[0003] The indicator light structure and conference equipment provided in this application can improve the lighting effect and provide a good external appearance.

[0004] In the first aspect, the present application provides an indicator light structure, including a main body, a light-emitting component, a light-distributing component and a light-transmitting component, the main body is formed with a accommodating space, the accommodating space includes a first opening portion connected to the outside of the main body; the light-emitting component is arranged in the accommodating space, and the light-emitting component is used to generate light passing through the first opening portion; the light-distributing component is arranged at a position corresponding to the first opening portion, and the light-distributing component is used to adjust the uniformity of the light; the light-transmitting component includes a colored semi-transparent area, the light-transmitting component is connected to the main body, and the colored semi-transparent area corresponds to the first opening portion.

[0005] In a possible implementation of the present application, the light homogenizer includes a connecting portion and a light homogenizing portion, the connecting portion is connected to the main body, and the light homogenizing portion covers the first opening.

[0006] In a possible implementation of the present application, the connecting portion and the light-homogenizing portion are stacked along a first direction, and the first direction and the plane where the first opening is located meet a vertical condition; the projection of the connecting portion along the first direction does not overlap with the projection of the first opening along the first direction; or, the connecting portion is arranged to be light-transmissive.

[0007] In a possible implementation of the present application, the light diffuser further includes a functional portion, which is made of a light diffusing material; and / or the functional portion is provided with a matte structure; and / or the functional portion includes a colored semi-transparent layer.

[0008] In a possible implementation of the present application, the functional portion is disposed between the light evening portion and the connecting portion; or, the functional portion and the connecting portion are respectively disposed on opposite sides of the light evening portion.

[0009] In a possible implementation of the present application, the light-transmitting member also includes a colored blocking area, wherein the colored semi-transparent area is arranged adjacent to the colored blocking area, and the projection of the first opening along the first direction covers the projection of the colored semi-transparent area along the first direction, and the first direction and the plane where the first opening is located meet the vertical condition.

[0010] In a possible implementation of the present application, the colored semi-transparent area is arranged between two colored blocking areas, so that the colored semi-transparent area forms a ring structure.

[0011] In a possible implementation of the present application, the light-emitting assembly includes a plurality of light-emitting elements, and the plurality of light-emitting elements are evenly arranged along a circumferential direction of the colored semi-transparent area.

[0012] In a possible implementation of the present application, the main body includes a first base and a second base, and a first opening portion is formed between the first base and the second base; wherein, a recess is formed on the side wall of the first base corresponding to the first opening portion, and / or a recess is formed on the side wall of the second base corresponding to the first opening portion, and the light homogenizer is installed through the recess.

[0013] In a possible implementation of the present application, a reflective structure is provided in the accommodating space, and the reflective structure is used to reflect and mix the light; the reflective structure is provided on at least one inner wall of the accommodating space; and / or the light-emitting component includes a connected carrier and a light-emitting component, and the reflective structure is provided on the side of the carrier facing the light-emitting component.

[0014] In a second aspect, an embodiment of the present application provides a conference device, which includes a device body and the indicator light structure of the first aspect, and the indicator light structure is arranged on the device body.

[0015] The indicator light structure and conference equipment provided in the embodiment of the present application have a main body that provides an installation base for the light-emitting component. The light-emitting component is arranged in the accommodating space and can generate light that passes through the first opening portion so that the user can observe the light emission of the light-emitting component through the first opening portion to achieve human-computer interaction. On this basis, a light-homogenizing member is also provided in the first opening portion. The light-homogenizing member can adjust the uniformity of the light generated by the light-emitting component, thereby improving the light-emitting effect, so that the user can receive the information transmitted by the indicator light structure. A light-transmitting member is also provided, and the colored semi-transparent area of the light-transmitting member corresponds to the first opening portion. The colored semi-transparent area allows the light emitted by the light-emitting component to pass through, and can also block the light-emitting component when the light-emitting component is not emitting light, so as to reduce the external color difference and improve the user's perception. Compared with the scheme in the related art where the external appearance of the indicator light structure is poor, the indicator light structure of the present application makes the external appearance of the indicator light structure more coordinated while maintaining the uniformity of the light by providing a light-homogenizing member and a colored semi-transparent area. The colored semi-transparent layer of the functional portion and the colored shielding area of the light-transmitting element can attenuate light, making the emitted light softer and reducing color variation, thereby maintaining consistency with the device's appearance and enhancing the user's visual experience. The light diffuser is installed through recessed portions in the first and / or second substrates to form a stepped structure, thereby reducing the possibility of light leakage. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1A schematic cross-sectional view of the indicator light structure provided in an embodiment of the present application;

[0017] Figure 2 A schematic diagram of the positions of the light-transmitting member and the first opening in the indicator light structure provided in an embodiment of the present application;

[0018] Figure 3 A schematic diagram of the structure of the light uniformity part and the connecting part in the indicator light structure provided in an embodiment of the present application;

[0019] Figure 4 This is one of the schematic diagrams of the layout of the light-uniform part and the connecting part in the indicator light structure provided in an embodiment of the present application;

[0020] Figure 5 This is a second schematic diagram of the arrangement of the light-uniforming portion and the connecting portion in the indicator light structure provided in an embodiment of the present application;

[0021] Figure 6 A schematic diagram of the structure of the functional part of the indicator light structure provided in an embodiment of the present application;

[0022] Figure 7 A schematic diagram of the structure of the installation space and the light-transmitting member in the indicator light structure provided in an embodiment of the present application;

[0023] Figure 8 A schematic diagram of the structure of the colored semi-transparent area and the colored blocking area in the indicator light structure provided in an embodiment of the present application;

[0024] Figure 9 A schematic diagram of the positional relationship between the light-emitting element and the colored shielding area in the indicator light structure provided in an embodiment of the present application;

[0025] Figure 10 This is one of the schematic diagrams of the arrangement of the light-emitting components in the indicator light structure provided in an embodiment of the present application;

[0026] Figure 11 This is a second schematic diagram of the arrangement of light-emitting components in the indicator light structure provided in an embodiment of the present application;

[0027] Figure 12 A schematic structural diagram of a reflective structure in an indicator light structure provided in an embodiment of the present application;

[0028] Figure 13 A schematic diagram of the structure of the conference equipment provided in the embodiment of the present application;

[0029] Figure 14 A schematic diagram of the structure of the conference equipment provided in the embodiment of the present application;

[0030] Figure 15 A top view of the conference equipment provided in an embodiment of the present application;

[0031] Figure 16 A front view of the conference equipment provided in an embodiment of the present application;

[0032] Figure 17 Provided in the embodiments of this application Figure 16 Schematic diagram of the local enlarged structure at C in the middle;

[0033] Figure 18 A schematic diagram of the exploded structure of the conference equipment provided in an embodiment of the present application;

[0034] Figure 19 Provided in the embodiments of this application Figure 18 Schematic diagram of the local enlarged structure at D in the middle;

[0035] Figure 20 Provided in the embodiments of this application Figure 18 Schematic diagram of the local enlarged structure at E in the middle;

[0036] Figure 21 Provided in the embodiments of this application Figure 18 Schematic diagram of the local enlarged structure at F in the middle;

[0037] Figure 22 Provided in the embodiments of this application Figure 16 Schematic diagram of the structure cut along BB;

[0038] Figure 23 Provided in the embodiments of this application Figure 15 Schematic diagram of the structure cut along AA;

[0039] Figure 24 Provided in the embodiments of this application Figure 23 Schematic diagram of the locally enlarged structure at G in the middle.

[0040] Reference numerals:

[0041] 100-main body; 110-first base; 120-second base; 130-accommodating space; 131-first opening; 132-first inner wall; 133-second inner wall; 140-recess; 150-installation space; 151-second opening; 160-side wall; 200-light-emitting assembly; 210-light-emitting part; 220-carrying part; 300-light-distributing part; 310-connecting part; 320-light-distributing part; 330-functional part; 340-avoidance hole; 350-installation hole; 400-light-transmitting part; 410-colored semi-transparent area; 420-colored blocking area; 500-reflective structure; 600-device body; 700-lens module; T1-projection of the first opening along the first direction; T2-projection of the colored semi-transparent area along the first direction; L1-first size; L2-second size; X-first direction; Y-second direction. DETAILED DESCRIPTION

[0042] To make the purpose, technical solutions and advantages of the embodiments of the present application clearer, the specific technical solutions of the present application will be further described in detail below in conjunction with the drawings in the embodiments of the present application. The following embodiments are used to illustrate the present application but are not intended to limit the scope of the present application.

[0043] In the embodiments of this application, the terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include one or more of the features. In the description of the embodiments of this application, unless otherwise specified, "multiple" means two or more.

[0044] In addition, in the embodiments of the present application, directional terms such as "up", "down", "left" and "right" are defined relative to the orientation of the components in the drawings. It should be understood that these directional terms are relative concepts. They are used for relative description and clarification, and they may change accordingly according to changes in the orientation of the components in the drawings.

[0045] In the embodiments of the present application, unless otherwise clearly specified and limited, the term "connection" should be understood in a broad sense. For example, "connection" can be a fixed connection, a detachable connection, or an integrated connection; it can be a direct connection or an indirect connection through an intermediate medium.

[0046] In the embodiments of the present application, the terms "comprises," "comprising," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, article, or apparatus comprising a series of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not preclude the presence of other identical elements in the process, method, article, or apparatus comprising the element.

[0047] In the embodiments of this application, words such as "exemplary" or "for example" are used to indicate examples, illustrations, or descriptions. Any embodiment or design described as "exemplary" or "for example" in the embodiments of this application should not be interpreted as being preferred or advantageous over other embodiments or designs. Rather, the use of words such as "exemplary" or "for example" is intended to present the relevant concepts in a concrete manner.

[0048] An embodiment of the present application provides a conference device that can connect users in different locations to achieve remote communication and collaboration. The conference device can be used in scenarios such as remote conferencing, education and training, and product demonstrations.

[0049] Conference equipment may include an indicator light structure, which can emit light to convey information to the user, thereby realizing human-computer interaction. In some technical solutions, the indicator light structure includes a main body and a light-emitting component, but the light emitted by the light-emitting component is not uniform enough, affecting the lighting effect. However, setting a light guide column will increase the space occupied in the light-emitting direction, which is not conducive to the lightweight of the equipment. In addition, when the light-emitting component is not illuminated, there is a color difference between the indicator light structure and the equipment, which affects the user's perception.

[0050] Therefore, the embodiment of the present application also provides an indicator light structure, referring to Figure 1 、 Figure 2 、 Figure 3 and Figure 4 The indicator light structure includes a main body 100, a light-emitting component 200, a light-distributing member 300 and a light-transmitting member 400. The main body 100 is formed with a receiving space 130, and the receiving space 130 includes a first opening portion 131 connected to the outside of the main body 100; the light-emitting component 200 is arranged in the receiving space 130, and the light-emitting component 200 is used to generate light passing through the first opening portion 131; the light-distributing member 300 is arranged at a position corresponding to the first opening portion 131, and the light-distributing member 300 is used to adjust the uniformity of the light; the light-transmitting member 400 includes a colored semi-transparent area 410, and the light-transmitting member 400 is connected to the main body 100, and the colored semi-transparent area 410 corresponds to the first opening portion 131.

[0051] In the embodiment of the present application, the main body 100 may be a block structure, a shell structure, or a frame structure. The outer contour of the main body 100 may be a regular or irregular shape such as a square, a circle, an ellipse, a triangle, a trapezoid, etc. In addition, the shell may be a single component or may be formed by connecting at least two components, which is not limited in the embodiment of the present application.

[0052] In the embodiment of the present application, the accommodation space 130 can be formed within a single component of the main body 100, or can be enclosed by multiple components of the main body 100. The outline of the accommodation space 130 can be the same as or different from the outer outline of the main body 100. For example, the accommodation space 130 can include a single chamber or multiple interconnected chambers. The accommodation space 130 can also be an annular structure, and the first opening 131 is also arranged in a corresponding annular shape. The first opening 131 refers to the portion of the accommodation space 130 that is connected to the outside of the main body 100.

[0053] In an embodiment of the present application, the accommodating space 130 can be an open structure, that is, the size of the first opening portion 131 is larger than the cross-sectional size of the remaining parts of the accommodating space 130; the accommodating space 130 can also be a closed structure, that is, the size of the first opening portion 131 is smaller than the cross-sectional size of the accommodating space 130; or, the cross-sectional sizes of each part of the accommodating space 130 are the same.

[0054] In the embodiment of the present application, the light emitting component 200 can be arranged on the wall of the accommodation space 130 facing the first opening 131, and the light generated by the light emitting component 200 can be directly emitted to the first opening 131, which makes the structure simpler. The light emitting component 200 can also be arranged on the other walls of the accommodation space 130, and the light generated by the light emitting component 200 is reflected by the wall and then emitted to the first opening 131. Figure 1 In a possible embodiment of the present application, the light emitting component 200 is disposed toward the first opening 131 .

[0055] In the embodiment of the present application, the light-transmitting member 400 is connected to the main body 100 to provide protection and decoration. The light-transmitting member 400 is provided with a colored semi-transparent area 410 at a position corresponding to the first opening 131. The colored semi-transparent area 410 allows light of some frequencies to pass through while blocking light of other frequencies. Specifically, the colored semi-transparent area 410 allows light generated by the light-emitting component 200 to pass through, so that the light emitted by the light-emitting component 200 can be received by the user. When the light-emitting component 200 is not emitting light, the colored semi-transparent area 410 acts as a shield, blocking the non-emitting light-emitting component 200. This allows the indicator light structure seen by the user to have a consistent color, which is more coordinated and improves the user's viewing experience.

[0056] In the embodiment of the present application, the light diffuser 300 can be disposed within the first opening 131, or can be disposed within the accommodating space 130 at a position directly opposite the first opening 131, that is, at a position where the projection of the light diffuser 300 along the first direction X overlaps with the projection of the first opening 131 along the first direction X, and the first direction X and the plane containing the first opening 131 meet a perpendicular condition. It should be noted that the projection of the first opening 131 along the first direction X is the projection of its smallest radial cross-section along the first direction X.

[0057] In the embodiment of the present application, the light diffuser 300 can be a regular or irregular shape such as a square, circle, ellipse, triangle, or trapezoid. The outline of the light diffuser 300 can be the same as or similar to the outline of the first opening 131. The light diffuser 300 is disposed corresponding to the first opening 131. Specifically, the light diffuser 300 is disposed at a position within the accommodating cavity where the first opening 131 is disposed, so that light generated by the light emitting assembly 200 passes through the light diffuser 300 and then exits the first opening 131.

[0058] In the embodiment of the present application, the light homogenizer 300 may be made of polymethyl methacrylate (PMMA), polycarbonate (PC), glass, etc., and the embodiment of the present application does not limit this.

[0059] According to the technical solution provided in the embodiment of the present application, the main body 100 provides an installation base for the light-emitting component 200. The light-emitting component 200 is arranged in the accommodating space 130 and can generate light passing through the first opening 131 so that the user can observe the light-emitting condition of the light-emitting component 200 through the first opening 131 to realize human-computer interaction.

[0060] On this basis, a light homogenizer 300 is also provided in the first opening 131. The light homogenizer 300 can adjust the uniformity of the light generated by the light-emitting component 200, thereby improving the lighting effect, so that the user can receive the information conveyed by the indicator light structure. In addition, a light-transmitting component 400 is also provided, and the colored semi-transparent area 410 of the light-transmitting component 400 corresponds to the first opening 131. The colored semi-transparent area 410 allows the light emitted by the light-emitting component 200 to pass through, and can also block the light-emitting component 200 when the light-emitting component 200 is not emitting light, so as to reduce external color difference and improve the user's viewing experience.

[0061] Compared with the solution in the related art in which the external appearance of the indicator light structure is poor, the indicator light structure of the present application provides a light homogenizer 300 and a colored semi-transparent area 410 to make the external appearance of the indicator light structure more coordinated while maintaining the uniformity of light.

[0062] Reference Figure 1 In some possible embodiments of the present application, a first dimension L1 of the light diffuser 300 along the first direction X is smaller than a second dimension L2 thereof along the second direction Y, wherein the second direction Y and the first direction X meet a perpendicular condition.

[0063] In the embodiment of the present application, the plane where the first opening 131 is located is the plane on the main body 100 where the first opening 131 is formed. The first direction X satisfies the perpendicular condition to the plane where the first opening 131 is located, that is, the first direction X is perpendicular or approximately perpendicular to the plane where the first opening 131 is located. The first direction X can also be understood as the axial direction of the first opening 131. It can be understood that the first direction X is the direction in which light is emitted or incident on the first opening 131. The second direction Y satisfies the perpendicular condition to the first direction X, that is, the second direction Y is perpendicular or approximately perpendicular to the first direction X. The second direction Y can be any direction parallel to the plane where the first opening 131 is located. The second direction Y can also be understood as the radial direction of the first opening 131.

[0064] In the embodiment of the present application, the size of the light homogenizer 300 along the first direction X can be a first size L1, and the size of the light homogenizer 300 along the first direction X perpendicular to the first direction X can be a second size L2. It can be understood that the light homogenizer 300 has different second sizes L2 along different second directions Y, and the first size L1 should be smaller than any second size L2, so that the light homogenizer 300 forms a thin plate structure parallel to the second direction Y, making the light homogenizer 300 lighter and thinner.

[0065] In the technical solution provided by the embodiment of the present application, the first dimension L1 of the light homogenizer 300 along the first direction X is smaller than the second dimension L2 thereof along the second direction Y, that is, the light homogenizer 300 is thinner and lighter in the direction in which light passes through the first opening 131. While maintaining light uniformity, the space occupied by the indicator light structure in the first direction X is reduced, which is more conducive to the thinning and miniaturization of the indicator light structure.

[0066] In order to facilitate the connection between the light diffuser 300 and the main body 100, refer to Figure 3 、 Figure 4 and Figure 5 In some possible embodiments of the present application, the light homogenizer 300 includes a connecting portion 310 and a light homogenizer 320 , the connecting portion 310 is connected to the main body 100 , and the light homogenizer 320 covers the first opening 131 .

[0067] In the embodiment of the present application, the light homogenizing portion 320 can be a regular or irregular shape such as a square, circle, ellipse, triangle, trapezoid, etc., and the outline of the light homogenizing portion 320 is adapted to the outline of the first opening portion 131; the outline of the connecting portion 310 can be the same as or different from the outline of the light homogenizing portion 320, and one or more connecting portions 310 can be set on the light homogenizing portion 320.

[0068] In the embodiment of the present application, the connecting portion 310 and the light homogenizing portion 320 can be arranged along the first direction X. The connecting portion 310 can be arranged on the side of the light homogenizing portion 320 facing the light emitting assembly 200, or on the side of the light homogenizing portion 320 away from the light emitting assembly 200. The connecting portion 310 and the light homogenizing portion 320 can also be arranged along the second direction Y. When the light homogenizing portion 320 is a ring-shaped structure, the connecting portion 310 can be arranged on the inner side of the light homogenizing portion 320, or on the outer side of the light homogenizing portion 320.

[0069] In the embodiment of the present application, the connecting portion 310 and the light homogenizing portion 320 can be fixed together by integral molding, bonding, welding, clamping, etc.; the connection between the connecting portion 310 and the main body 100 can be bonding, welding, clamping, riveting, fastener connection, etc. For example, the connecting portion 310 and the light homogenizing portion 320 are integrally molded, and the connecting portion 310 is bonded and fixed to the main body 100.

[0070] In the embodiment of the present application, the light homogenizing portion 320 covers the first opening portion 131 specifically: the projection of the light homogenizing portion 320 along the first direction X completely covers the projection of the first opening portion 131 along the first direction X, wherein the projection area of the light homogenizing portion 320 along the first direction X can be greater than or equal to the projection area of the first opening portion 131 along the first direction X.

[0071] In the technical solution provided in the embodiment of the present application, the light homogenizer 300 includes a connecting portion 310 and a light homogenizer 320. The connecting portion 310 is connected to the main body 100 to fix the light homogenizer 320 relative to the main body 100, thereby providing stable support for the light homogenizer 320; the light homogenizer 320 covers the first opening 131, thereby mixing the light at the position of the first opening 131. The combination of the connecting portion 310 and the light homogenizer 320 has a clearer function.

[0072] In order to facilitate the production and processing of the light-distributing member 300, refer to Figure 4 and Figure 5 In some possible embodiments of the present application, the connecting portion 310 and the light homogenizing portion 320 are stacked along the first direction X. That is, the connecting portion 310 and the light homogenizing portion 320 have a uniform plate-like structure, and the overlapping portions of their projections along the stacking direction (the first direction X) remain connected. The projections of the connecting portion 310 and the light homogenizing portion 320 in the first direction X may partially overlap or completely overlap.

[0073] Reference Figure 5 In one possible embodiment of the present application, the projection of the connecting portion 310 along the first direction X does not overlap with the projection of the first opening 131 along the first direction X. That is, the light passing through the first opening 131 passes through the light homogenizing portion 320 but not the connecting portion 310. The connecting portion 310 has little effect on the light, and the connecting portion 310 can be made of an opaque material to block the uneven light at the edge of the first opening 131.

[0074] Reference Figure 4 and Figure 6 In another possible embodiment of the present application, the projection of the connecting portion 310 along the first direction X overlaps with the projection of the first opening 131 along the first direction X. The connecting portion 310 is transparent, thereby allowing light to pass through. The connecting portion 310 can extend to the edge of the light homogenizing portion 320, thereby improving the structural integrity of the connecting portion 310 and the light homogenizing portion 320 and making the edges smoother for easier processing.

[0075] The technical solution provided by the embodiment of the present application is that the connection part 310 and the light homogenizing part 320 arranged in a stacked manner are more reliably connected, the support is more stable, and the stacked arrangement is convenient for processing and easy to produce.

[0076] In order to enrich the functions of the light averaging parts, refer to Figure 6 and Figure 7 In some possible embodiments of the present application, the light homogenizer 300 further includes a functional portion 330, which is made of a light diffusing material; and / or the functional portion 330 is provided with a matte structure; and / or the functional portion 330 includes a colored semi-transparent layer.

[0077] In the embodiments of the present application, a light-diffusing material refers to a material that scatters light on its surface or within its interior, thereby changing the direction and distribution of the light. The functional portion 330 can be made entirely of a light-diffusing material, or the material used to make the functional portion 330 can include a light-diffusing additive. For example, the functional portion 330 is primarily made of PC material with a light-diffusing material added. The light-diffusing material can be silicon oxide, aluminum oxide, mica powder, calcium carbonate, polystyrene, or the like.

[0078] In the embodiment of the present application, the matte surface structure refers to a structure that changes the surface roughness of the functional portion 330 through processing to reduce the specular reflection of the surface. The matte surface structure can be formed by sandblasting, etching, frosting, coating, laser engraving, electroplating, etc. The matte surface structure can be either the light-emitting surface or the light-incident surface.

[0079] In the embodiments of the present application, the colored semi-transparent layer refers to a coating structure that allows light of certain frequencies to pass through while blocking light of other frequencies, thereby partially blocking the light. The colored semi-transparent layer can be implemented using a dyed polymer, such as dyed PMMA or dyed PC. The colored semi-transparent layer can also be implemented through processes such as spraying, dipping, silk-screening, and coating. For example, the colored semi-transparent layer is a black semi-transparent coating produced by silk-screening, which allows light generated by the light-emitting component 200 to pass through.

[0080] The technical solution provided in the embodiments of the present application can enrich the functions of the light diffuser 300 by providing a functional portion 330. Specifically, the functional portion 330 is made of a light-diffusing material, which can increase the light diffusion capability of the light diffuser 300, thereby mixing light and improving light uniformity. The functional portion 330 is provided with a matte structure to disperse light, thereby improving light uniformity and making the light softer. The functional portion 330 is provided with a colored semi-transparent layer, which can serve as a decorative shielding effect and also has the effect of weakening light intensity, making the emitted light softer. The provision of the colored semi-transparent layer does not affect light output and can also enhance the visual experience.

[0081] It should be noted that there are multiple possible arrangements for the functional portion 330. In some possible embodiments of the present application, the functional portion 330 is disposed between the light homogenizing portion 320 and the connecting portion 310. That is, the connecting portion 310, the functional portion 330, and the light homogenizing portion 320 are stacked in sequence along the first direction X to form a stacked structure, and the functional portion 330 is clamped between the connecting portion 310 and the light homogenizing portion 320, and the functional portion 330 can be protected by the connecting portion 310 and the light homogenizing portion 320.

[0082] Reference Figure 6 and Figure 7In some other possible embodiments of the present application, the functional portion 330 and the connecting portion 310 are respectively disposed on opposite sides of the light evening portion 320. That is, the functional portion 330, the light evening portion 320, and the connecting portion 310 are stacked in sequence along the first direction X to form a stacked structure, and the light evening portion 320 is sandwiched between the connecting portion 310 and the functional portion 330. The light evening portion 320 can be protected by the functional portion 330 and the connecting portion 310.

[0083] In the implementation of this application, when the light homogenizer 300 forms a three-layer stacked structure, the connecting portion 310 can be set on the side of the light homogenizer 300 close to the light-emitting component 200, or on the side of the light homogenizer 300 away from the light-emitting component 200. The embodiment of this application does not limit this.

[0084] The technical solution provided in the embodiment of the present application is that, according to the function of the functional part 330, the functional part 330 can be flexibly arranged between the light homogenizing part 320 and the connecting part 310, or the functional part 330 and the connecting part 310 are respectively arranged on opposite sides of the light homogenizing part 320, so that the functional part 330 can protect the light homogenizing part 320, thereby improving the life of the light homogenizing part 320.

[0085] In order to protect the light emitting assembly 200, the light homogenizing member 300, etc. in the accommodation space 130, refer to Figure 7 、 Figure 8 、 Figure 2 and Figure 18 In some possible embodiments of the present application, the indicator light structure further includes a light-transmitting member 400 , which is connected to the main body 100 to cover the first opening 131 .

[0086] In the embodiment of the present application, the light-transmitting member 400 can be made of glass, plastic, or other materials, such as PMMA, PC, etc. The outline of the light-transmitting member 400 can be a regular or irregular shape such as a square, circle, ellipse, triangle, or trapezoid, and the outline of the light-transmitting member 400 can be set according to the outline of the first opening 131 or the outline of the main body 100.

[0087] Reference Figure 7 and Figure 18 In one possible embodiment of the present application, the main body 100 is further provided with an installation space 150 for arranging the lens module 700 and the like. The installation space 150 has a second opening 151 formed on the surface of the main body 100. The first opening 131 and the second opening 151 are arranged on the same side of the main body 100. The light-transmitting member 400 is adapted to the surface to simultaneously cover the first opening 131 and the second opening 151. The first opening 131 can be annular and surround the outside of the second opening 151.

[0088] In the embodiment of the present application, the connection between the light-transmitting member 400 and the main body 100 can be bonding, welding, clamping, riveting, fastener connection, etc. For example, the light-transmitting member 400 and the main body 100 are bonded and fixed.

[0089] In the embodiment of the present application, the light-transmitting member 400 covers the first opening portion 131 specifically by: the projection of the light-transmitting member 400 along the first direction X completely covers the projection of the first opening portion 131 along the first direction X, wherein the projection area of the light-transmitting member 400 along the first direction X can be greater than or equal to the projection area of the first opening portion 131 along the first direction X.

[0090] It should be noted that, unless otherwise specified in the embodiments of the present application, covering only refers to the component closing the first opening 131 to prevent dust, moisture, etc. from entering the accommodating space 130 through the first opening 131, and does not restrict light from being emitted from or entering the first opening 131.

[0091] In the embodiment of the present application, when a light-transmitting member 400 is provided, the light-transmitting member 400 should be provided in contact with the light-distributing member 300. It should be noted that the light-transmitting member can be provided on the side of the light-distributing member 300 close to the light-emitting component 200 or on the side of the light-distributing member 300 away from the light-emitting component.

[0092] The technical solution provided in the embodiment of the present application is to set a light-transmitting member 400, which covers the first opening portion 131, so that the accommodating space 130 forms a closed space to protect the various components in the accommodating space 130 (such as the light-emitting component 200, the light-distributing member 300, etc.).

[0093] In order to improve the light effect, refer to Figure 8 、 Figure 2 、 Figure 16 and Figure 17 In some possible embodiments of the present application, the light-transmitting element 400 further includes a colored blocking area 420, wherein the colored semi-transparent area 410 is adjacent to the colored blocking area 420, and the projection T1 of the first opening portion 131 along the first direction X covers the projection T2 of the colored semi-transparent area 410 along the first direction X.

[0094] In the embodiment of the present application, the colored semi-transparent area 410 and the colored blocking area 420 can be realized by spraying, dipping, silk screen printing, coating and other processes. The colored semi-transparent area 410 and the colored blocking area 420 both have a blocking effect on light, wherein the transmittance of the colored semi-transparent area 410 is greater than the transmittance of the colored blocking area 420, that is, the frequency range of light allowed to penetrate the colored semi-transparent area 410 is greater than the frequency range of light allowed to penetrate the colored blocking area 420.

[0095] For example, the colored semi-transparent area 410 and the colored shielding area 420 are both black areas made by the silk-screening process, and the colored semi-transparent area 410 allows the light generated by the light-emitting component 200 to pass through, while the colored shielding area 420 does not allow the light generated by the light-emitting component 200 to pass through. When the light-emitting component 200 is emitting light, the colored shielding area 420 blocks the stray light at the edge of the first opening 131, and the colored semi-transparent area 410 allows the uniform light from the first opening 131 to pass through. When the light-emitting component 200 is not emitting light, the colored semi-transparent area 410 and the colored shielding area 420 made by the black semi-transparent spraying process both appear black, which is consistent with the appearance of the device, can reduce color difference to improve the user's visual experience, and can also reduce the exposure of the light-emitting component 200 to natural light, thereby increasing the service life.

[0096] It should be noted that the colored semi-transparent area 410 and the colored semi-transparent layer of the above-mentioned functional part 330 have similar technical effects. In one embodiment, a colored semi-transparent layer may be provided instead of the colored semi-transparent area 410, that is, the projection T1 of the first opening portion 131 along the first direction X covers the projection T2 of the colored semi-transparent layer along the first direction X, and the colored semi-transparent layer replaces the colored semi-transparent area 410; in another embodiment, the colored semi-transparent area 410 may be provided instead of the colored semi-transparent layer, and the colored semi-transparent area 410 replaces the colored semi-transparent layer; in yet another embodiment, the colored semi-transparent area 410 and the colored semi-transparent layer are provided separately, and the effects of the two can be superimposed.

[0097] In the embodiment of the present application, the colored semi-transparent area 410 is disposed adjacent to the colored shielding area 420, that is, there may be one or more colored shielding areas 420, at least one of the multiple colored shielding areas 420 is disposed around the colored semi-transparent area 410, and the colored shielding area 420 is in contact with the colored semi-transparent area 410. The projection T1 of the first opening 131 along the first direction X covers the projection T2 of the colored semi-transparent area 410 along the first direction X. Specifically, the projection T2 of the colored semi-transparent area 410 along the first direction X completely overlaps with the projection T1 of the first opening 131 along the first direction X, and the projection T1 of the first opening 131 along the first direction X at least partially overlaps with the projection T2 of the colored semi-transparent area 410 along the first direction X.

[0098] In the technical solution provided by the embodiment of the present application, the colored blocking area 420 can block the light generated by the light-emitting component 200, and the colored semi-transparent area 410 allows the light to pass through so that it can be obtained by the user. By covering the projection T1 of the first opening 131 along the first direction X with the projection T2 of the colored semi-transparent area 410 along the first direction X, that is, the colored blocking area 420 can block the edge of the first opening 131 to block the light with poor uniformity at the edge of the first opening 131 from passing through, so that the user can see more uniform and recognizable light, thereby improving the light output effect.

[0099] In order to further improve the light effect, refer to Figure 8 、 Figure 2 、 Figure 16 and Figure 17 In some possible embodiments of the present application, the colored semi-transparent area 410 is disposed between two colored blocking areas 420 , so that the colored semi-transparent area 410 forms a ring-shaped structure.

[0100] In the embodiment of the present application, the annular structure of the colored semi-transparent area 410 can be a regular or irregular shape such as a circular ring, an elliptical ring, a square ring, a triangular ring, a regular polygonal ring, etc. The annular structure can be arranged in an axial direction, and the radial cross-sections of the annular structure can be arranged with equal diameters or with varying diameters.

[0101] In an embodiment of the present application, the colored semi-transparent area 410 can form a complete annular structure, or the light-transmitting element 400 is provided with multiple colored semi-transparent areas 410 arranged along an arc along an axis, that is, a single colored semi-transparent area 410 is a fan-ring structure, and multiple colored semi-transparent areas 410 are connected end to end to form an annular structure.

[0102] Reference Figure 7 、 Figure 8 and Figure 16 In a possible embodiment of the present application, the colored semi-transparent area 410 is a complete annular structure, and the colored blocking area 420 outside the colored semi-transparent area 410 extends to the edge of the main body 100.

[0103] The technical solution provided in the embodiment of the present application sets the colored semi-transparent area 410 between the two colored blocking areas 420, that is, the two colored blocking areas 420 are respectively located at the inner edge and the outer edge of the annular first opening portion 131, so that the edges on both sides of the annular first opening portion 131 are effectively blocked, and the stray light at the edge of the first opening portion 131 is blocked, which can further improve the light output effect.

[0104] In order to improve the uniformity of light output, refer to Figure 9 、 Figure 18 、 Figure 19 and Figure 20 In some possible embodiments of the present application, the light-emitting assembly 200 includes a plurality of light-emitting elements 210 , and the plurality of light-emitting elements 210 are evenly arranged along a surrounding direction of the colored semi-transparent area 410 .

[0105] In the embodiment of the present application, the light-emitting element 210 can be a light-emitting diode (LED), an electroluminescent (EL) component, a compact fluorescent lamp (CFL), an incandescent lamp, a halogen lamp, a laser, etc., and the embodiment of the present application does not limit this.

[0106] In the embodiment of the present application, the circumferential direction of the colored semi-transparent region 410 specifically refers to the circumferential direction of the annular structure formed by the colored semi-transparent region 410. The plurality of light-emitting elements 210 are evenly arranged along the circumferential direction of the colored semi-transparent region 410. Specifically, the plurality of light-emitting elements 210 form an annular light-emitting structure, i.e., a light-emitting structure includes a ring of light-emitting elements 210, and the spacing between two adjacent light-emitting elements 210 in the circumferential direction is the same.

[0107] It should be noted that the colored semi-transparent area 410 may be provided with one or more light-emitting structures, and the multiple light-emitting structures are concentrically arranged. Figure 10 , the light emitting elements 210 in two adjacent light emitting structures can be linearly distributed along the radial direction of the colored semi-transparent area 410 to form a centrally divergent shape; Figure 11 The light emitting elements 210 in two adjacent light emitting structures may also be staggeredly distributed along the circumference of the colored semi-transparent area 410 to form a more uniform light mixing effect.

[0108] The technical solution provided in the embodiment of the present application is to set up multiple light-emitting elements 210. The multiple light-emitting elements 210 are evenly arranged, so that the light mixing between the light-emitting elements 210 can be more uniform, thereby forming a ring-shaped uniform light-emitting effect.

[0109] In order to improve the light effect, refer to Figure 6 、 Figure 12 and Figure 18 In some possible embodiments of the present application, the main body 100 includes a first base 110 and a second base 120, and a first opening portion 131 is formed between the first base 110 and the second base 120; wherein, a recess 140 is formed on the side wall 160 of the first base 110 corresponding to the first opening portion 131, and / or a recess 140 is formed on the side wall 160 of the second base 120 corresponding to the first opening portion 131, and the light homogenizer 300 is installed through the recess 140.

[0110] In the embodiment of the present application, the first base 110 may be a block structure, a plate structure, a shell structure, a frame structure, etc., and the second base 120 may also be a block structure, a plate structure, a shell structure, a frame structure, etc., wherein the first base 110 and the second base 120 may be spliced or nested. For example, the second base 120 is formed with an installation space 150, and the first base 110 is nested outside the second base 120, and an accommodating space 130 is formed between the first base 110 and the second base 120.

[0111] In the embodiment of the present application, the first substrate 110 corresponds to the side wall 160 of the first opening portion 131, that is, the first substrate 110 forms the side wall 160 of the first opening portion 131; correspondingly, the second substrate 120 corresponds to the side wall 160 of the first opening, that is, the second substrate 120 forms the side wall 160 of the second opening portion 151. It can be understood that the side wall 160 of the first substrate 110 corresponding to the first opening portion 131 and the side wall 160 of the second substrate 120 corresponding to the first opening portion 131 are arranged opposite to each other.

[0112] In the embodiment of the present application, the position of the recess 140 is not limited. In one example, the first base 110 is provided with a recess 140 on the side wall 160 corresponding to the first opening 131, while the second base 120 is not provided with the recess 140; in another example, the second base 120 is provided with a recess 140 on the side wall 160 corresponding to the first opening 131, while the first base 110 is not provided with the recess 140; in yet another example, both the first base 110 and the second base 120 are provided with the recess 140.

[0113] In the embodiment of the present application, the recess 140 refers to the portion formed by the side wall 160 of the first base 110 or the second base 120 used to form the first opening 131 being recessed along the second direction Y, wherein the recess 140 can be a groove-shaped structure, or the recess 140 can form a step structure, that is, the recess 140 extends to the outer surface of the corresponding first base 110 or the second base 120.

[0114] In the embodiment of the present application, the light diffuser 300 is installed through the recess 140. Specifically, the light diffuser 300 extends into the corresponding recess 140 to connect with the corresponding first base 110 or second base 120. It is understandable that when the light diffuser 300 extends into the recess 140, the gap between the light diffuser 300 and the first base 110 / second base 120 is not arranged in a straight line along the first direction X. Therefore, light cannot pass through the gap between the light diffuser 300 and the first base 110 / second base 120, thereby reducing the possibility of light leakage.

[0115] The technical solution provided in the embodiment of the present application is to form a recess 140 on the side wall 160 corresponding to the first opening 131 of the first base 110 or the second base 120, and the light homogenizer 300 is installed through the recess 140. Compared with the solution in which the light homogenizer 300 is directly set on the side wall 160, the possibility of light leakage through the gap between the side wall 160 and the light homogenizer 300 can be solved, thereby improving the light output effect.

[0116] To improve the uniformity of light, refer to Figure 12 In some possible embodiments of the present application, a reflective structure 500 is provided in the accommodating space 130, and the reflective structure 500 is used to reflect and mix the light; the reflective structure 500 is provided on at least one inner wall of the accommodating space 130; and / or, the light-emitting component 200 includes a connected carrier 220 and a light-emitting component 210, and the reflective structure 500 is provided on the side of the carrier 220 facing the light-emitting component 210.

[0117] In the embodiment of the present application, the reflective structure 500 may be a mirror reflective structure 500, a diffuse reflective structure 500, etc. The mirror reflective structure 500 may be formed by processes such as plating, polishing, and coating. For example, the reflective structure 500 is a white reflective coating on the surface of the component, which has a strong light reflection effect.

[0118] In the embodiment of the present application, a reflective structure 500 is formed on at least one inner wall of the storage space 130. For example, the storage space 130 includes a first inner wall 132 and a second inner wall 133. The first inner wall 132 is disposed opposite the first opening 131, and the second inner wall 133 is disposed between the first inner wall 132 and the first opening 131. The reflective structure 500 can be disposed on one, two, or all of the inner walls. For example, the second inner wall 133 of the storage space 130 is provided with a white reflective coating.

[0119] In the embodiment of the present application, the carrier 220 may be a plate-shaped structure, a block-shaped structure, a rod-shaped structure, or the like. To reduce the space occupied by the carrier 220 along the first direction X, the carrier 220 is configured as a plate-shaped structure parallel to the second direction Y. The carrier 220 may be made of materials such as metal, plastic, rubber, and fiber. For example, the carrier 220 is a printed circuit board (PCB), on which various electronic components that drive the LEDs, as well as circuits that electrically connect the electronic components and the LEDs, may be arranged.

[0120] In the embodiment of the present application, the carrier 220 can be connected to the main body 100 by means of clamping, bonding, welding, fastener connection, etc. For example, the carrier 220 is connected to the main body 100 by fasteners such as screws, which is convenient for disassembly and easy maintenance.

[0121] In the embodiment of the present application, the reflective structure 500 can be disposed on the inner wall of the accommodating space 130 or on the surface of the carrier 220, or both the inner wall of the accommodating space 130 and the surface of the carrier 220 are provided with the reflective structure 500. For example, the second inner wall 133 of the accommodating space and the surface of the carrier 220 facing the light-emitting element 210 are both provided with a white reflective coating.

[0122] The technical solution provided in the embodiment of the present application is to set a reflective structure 500 in the accommodating space 130. The reflective structure 500 can reflect the light of the light-emitting component 200. The light can be fully mixed through the reflection of the emitting structure, thereby improving the uniformity of the light and further improving the light output effect.

[0123] Reference Figure 1 and 10 In some possible embodiments of the present application, the conference device includes a device body 600 and the indicator light structure of the first aspect (including the main body 100), and the indicator light structure is arranged on the device body 600.

[0124] In the embodiment of the present application, the conference equipment may include a combination of one or more of a camera, a sound generating device, a display device, a recording device, a projection device, an indicator device, and a keyboard device. For example, the conference equipment also includes a lens module 700, and the light-emitting element 210 of the indicator light structure is arranged around the lens module 700.

[0125] The technical solution provided by the embodiment of the present application is that since the conference equipment includes the indicator light structure of the above embodiment, the first size L1 of the light-distributing member 300 in the indicator light structure is smaller than the second size L2. While maintaining the uniformity of light, the indicator light structure is thinner and more compact, thereby making the conference equipment thinner and more compact.

[0126] Reference Figure 15 、 Figure 16 、 Figure 18 and Figure 22 In a possible embodiment of the present application, the indicator light structure is arranged in a conference device. The main body 100 of the indicator light structure includes a first base 110 (only a partial structure is shown in the figure) and a second base 120. The first base 110 is the outer shell of the conference device, and the second base 120 is the lens holder of the conference device. A lens module 700 is installed in the first base 110, and the lens module 700 realizes shooting through the second opening 151 on the second base 120.

[0127] Reference Figure 22 、 Figure 23 and Figure 24The second base 120 is provided with two second openings 151. Each second opening 151 is surrounded by an accommodating space 130. Taking one of the accommodating spaces 130 as an example, refer to Figure 19 and Figure 20 A light-emitting component 200 is arranged in the accommodating space 130. The light-emitting component 200 includes a carrier 220 and a light-emitting component 210. The carrier 220 is a circuit board, and the light-emitting component 210 is an LED. There are multiple light-emitting components 210, and the multiple light-emitting components 210 are evenly arranged in a circular shape on the circuit board, which can generate an aperture surrounding the second opening portion 151.

[0128] Here, the accommodating space 130 includes a first opening portion 131, which is enclosed by the inner wall of the first base 110 and the outer wall of the second base 120, and is in a circular shape corresponding to multiple LEDs. A light homogenizer 300 is arranged in the first opening portion 131, and a recess 140 is opened on the side wall 160 of the first base 110 corresponding to the first opening portion 131, that is, the first base 110 forms a step structure, and the light homogenizer 300 extends into the recess 140 along the second direction Y to reduce the possibility of light leakage.

[0129] Reference Figure 24 The light homogenizer 300 includes a connecting portion 310, a light homogenizer 320 and a functional portion 330. The connecting portion 310, the light homogenizer 320 and the functional portion 330 are stacked in sequence along the first direction X. The connecting portion 310 is bonded to the first substrate 110. The functional portion 330 is made of a material including a light diffusion additive, and the functional portion 330 includes an atomized structure and a black semi-transparent coating made by a silk-screen printing process. The colored semi-transparent layer can play a decorative and shielding role, and the colored semi-transparent layer also has the effect of weakening the light intensity, making the emitted light softer.

[0130] In addition, the light diffuser 300 is provided with an avoidance hole 340 at a position corresponding to the second opening 151. The shape of the avoidance hole 340 matches the shape of the second opening 151, and both are circular. Figure 18 and Figure 21 The light homogenizer 300 is further provided with a mounting hole 350 , which is adapted to the mounting structure on the first substrate 110 and the second substrate 120 so that the light homogenizer 300 can be mounted on the first substrate 110 and the second substrate 120 by fasteners such as screws.

[0131] On this basis, a light-transmitting member 400 is also provided. Figure 17 and Figure 21The light-transmitting member 400 covers the first opening 131 and the second opening 151, and the light-transmitting member 400 includes a colored blocking area 420 and a colored semi-transparent area 410. The colored semi-transparent area 410 and the colored blocking area 420 are both black areas made by the silk-screen printing process. The colored semi-transparent area 410 is circular corresponding to the first opening 131, and the projection of the first opening 131 along the first direction X covers the projection of the colored semi-transparent area 410 along the first direction X. The colored semi-transparent area 410 and the colored blocking area 420 made by the black semi-transparent spraying process are both black, which is consistent with the appearance of the device. The two are consistent in color, which can reduce color difference and improve the user's viewing experience.

[0132] Reference Figure 24 The second inner wall 133 of the accommodating space 130 and the surface of the carrier 220 facing the light-emitting component 210 are both provided with a white reflective coating, so that the light generated by the light-emitting component 200 is reflected and mixed in the accommodating space 130 after passing through the white reflective coating. When it is emitted through the first opening 131 through the light homogenizer 300, it is further uniformed by the light homogenizer 300, and under the shielding effect of the colored shielding area 420, a ring-shaped uniform light output effect is formed, which is beneficial for users to obtain information.

[0133] The serial numbers of the embodiments of this application are for descriptive purposes only and do not represent the superiority or inferiority of the embodiments. The above are only preferred embodiments of this application and do not limit the scope of the patent of this application. Any equivalent structure or equivalent process transformation made by using the contents of the description and drawings of this application, or directly or indirectly applied in other related technical fields, are also included in the scope of patent protection of this application.

Claims

1. An indicator light structure, characterized in that: include: A main body is formed with a receiving space, wherein the receiving space includes a first opening portion communicating with the outside of the main body; a light-emitting component, disposed in the accommodation space, and configured to generate light that passes through the first opening; a light homogenizer, disposed at a position corresponding to the first opening, and configured to adjust the uniformity of the light; The light-transmitting member includes a colored semi-transparent area. The light-transmitting member is connected to the main body, and the colored semi-transparent area corresponds to the first opening.

2. The indicator light structure according to claim 1, characterized in that: The light homogenizer includes a connecting portion and a light homogenizing portion, the connecting portion is connected to the main body, and the light homogenizing portion covers the first opening.

3. The indicator light structure according to claim 2, characterized in that: The connecting portion and the light homogenizing portion are stacked along a first direction, and the first direction and the plane where the first opening is located meet a perpendicular condition; A projection of the connecting portion along the first direction does not overlap with a projection of the first opening along the first direction; or, the connecting portion is light-transmissive.

4. The indicator light structure according to claim 3, characterized in that: The light homogenizer further includes a functional portion, which is made of a light diffusion material; and / or the functional portion is provided with a matte structure; and / or the functional portion includes a colored semi-transparent layer.

5. The indicator light structure according to claim 4, characterized in that: The functional portion is arranged between the light evening portion and the connecting portion; or, the functional portion and the connecting portion are respectively arranged on opposite sides of the light evening portion.

6. The indicator light structure according to claim 1, characterized in that: The light-transmitting member also includes a colored blocking area, wherein the colored semi-transparent area is arranged adjacent to the colored blocking area, and the projection of the first opening along the first direction covers the projection of the colored semi-transparent area along the first direction, and the first direction and the plane where the first opening is located meet the vertical condition.

7. The indicator light structure according to claim 6, characterized in that: The colored semi-transparent area is arranged between the two colored shielding areas, so that the colored semi-transparent area forms a ring structure.

8. The indicator light structure according to claim 7, characterized in that: The light-emitting assembly includes a plurality of light-emitting elements, and the plurality of light-emitting elements are evenly arranged along a surrounding direction of the colored semi-transparent area.

9. The indicator light structure according to claim 1, characterized in that: The main body includes a first base and a second base, and the first opening is formed between the first base and the second base; The first base body has a concave portion formed on a side wall corresponding to the first opening, and / or the second base body has a concave portion formed on a side wall corresponding to the first opening, and the light diffuser is installed via the concave portion.

10. The indicator light structure according to any one of claims 1 to 9, characterized in that: A reflective structure is provided in the accommodation space, and the reflective structure is used for reflecting and mixing the light; The reflective structure is arranged on at least one inner wall of the accommodating space; and / or the light-emitting assembly includes a supporting member and a light-emitting member connected to each other, and the reflective structure is arranged on a side of the supporting member facing the light-emitting member.

11. A conference device, characterized in that: include: The indicator light structure according to any one of claims 1 to 10; The lens module is connected to the indicator light structure.