VR glasses

By optimizing the structure and component layout of VR glasses, the problems of poor wearing comfort and heat dissipation performance have been solved, resulting in better display effects and interactivity, adapting to the visual needs of different users, and improving the user experience.

CN223637827UActive Publication Date: 2025-12-05ALL VISION TECH CO LTD +1
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Patent Information

Application Number
CN202520093721.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-15
Publication Date
2025-12-05
Estimated Expiration
2035-01-15

AI Technical Summary

Technical Problem

Existing VR glasses have shortcomings in terms of wearing comfort, heat dissipation, and display effect. They are too bulky, have poor heat dissipation, and lack flexibility in display effect, which affects the user experience.

Method used

By optimizing the structural design of the main body and the ring, rationally arranging the internal components, enhancing heat dissipation and display effects, adopting a metal sheet and cover design, equipping it with optical lens groups and adjustable focal length display components, adding sound components and microphones, and incorporating environmental perception functions.

Benefits of technology

It improves the heat dissipation performance and wearing comfort of VR glasses, enhances the clarity and interactivity of the display, expands the intelligence and multi-functionality, and adapts to the visual needs of different users.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides VR glasses. The VR glasses comprise a glasses main body and an annular belt detachably connected with the glasses main body; the glasses main body comprises a first shell and a second shell, the first shell and the second shell are spliced to form a shell, a machine body is mounted in the shell, the machine body comprises a bracket, and a cooling fin, a main control board, a battery, a main camera and a display assembly which are mounted on the bracket, and the main control board, the battery, the main camera and the display assembly are electrically connected. Wherein the cooling fin and the main control board are vertically arranged, one side of the cooling fin is close to one side of the main control board, the other side of the cooling fin is close to the inner surface of the first shell, and the battery is arranged on the other side of the main control board; the main camera penetrates out of the outer wall of the first shell, and the display assembly penetrates out of the second shell. According to the VR glasses, the overall performance and the user experience of the VR glasses are improved by means of reasonably designing the structures of the glasses main body and the ring belt, optimizing the layout of the components in the machine body, enhancing the heat dissipation and display effects and the like.
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Description

TECHNICAL FIELD

[0001] The present application relates to virtual reality (VR) glasses technology, in particular to a VR glasses with reasonable structure and perfect function. BACKGROUND

[0002] With the rapid development of virtual reality technology, VR glasses as an important virtual reality device have been widely used in games, education, medical treatment and other fields.

[0003] However, the existing VR glasses still have some deficiencies in terms of wearing comfort, heat dissipation performance, display effect, etc. For example, the heat dissipation design of some VR glasses is not reasonable, which can easily cause the body to overheat; the display effect and focal length adjustment method are not flexible enough, which affects the user experience; in addition, the shell design of some VR glasses is not beautiful or difficult to adapt to different user needs.

[0004] Therefore, it is of great significance to develop a VR glasses with smaller size, better comfort, heat dissipation, display performance and function. CONTENT OF THE INVENTION

[0005] In order to overcome the defects of the prior art, the present application provides a VR glasses to solve the problems of large size, poor heat dissipation performance, poor display effect, poor wearing comfort and the like in the prior art. The present application improves the overall performance and user experience of the VR glasses by reasonably designing the structure of the glasses body and the ring belt, optimizing the layout of the internal components of the body, enhancing the heat dissipation and display effect, etc.

[0006] To achieve the above-mentioned purpose, the present application provides a VR glasses, the technical scheme of which is as follows:

[0007] The VR glasses provided comprises a glasses body and a ring belt detachably connected with the glasses body; the glasses body comprises a first shell and a second shell, the first shell and the second shell are spliced to form a shell body, a body is installed inside the shell body, the body comprises a support and a heat sink, a main control board, a battery, a main camera and a display assembly installed on the support, and the main control board, the battery, the main camera and the display assembly are electrically connected.

[0008] Among them, the heat sink and the main control board are vertically arranged, one side of the heat sink is close to one side of the main control board, the other side of the heat sink is close to the inner surface of the first shell, and the battery is arranged on the other side of the main control board; the main camera penetrates out of the outer wall of the first shell, and the display assembly penetrates out of the second shell.

[0009] In an alternative implementation, a metal sheet is arranged on the outer surface of the first shell.

[0010] The metal sheet helps to improve the heat dissipation performance of the shell, ensuring that the VR glasses will not cause performance degradation or user discomfort due to overheating during long-term use.

[0011] In an alternative implementation, the outer surface of the second shell is provided with a cover body, the cover body forms a cover cavity with an opening, and the display assembly is arranged to protrude out of the second shell into the cover cavity.

[0012] The cover body can improve the wearing comfort.

[0013] In an alternative implementation, the body further comprises a sensor for sensing the proximity of the human body, and the sensor is exposed to the cover cavity.

[0014] The sensor can automatically sense the proximity of the user when wearing the VR glasses, further improving the intelligence of the device and the user experience.

[0015] In an alternative implementation, the body further comprises at least one sound emitting assembly, the sound emitting assembly is electrically connected to the main control board, and the sound emitting assembly is arranged on the side of the support.

[0016] The sound emitting assembly can provide immersive sound experience for the user, enhancing the interactivity and entertainment of the VR glasses in virtual reality applications.

[0017] In an alternative implementation, the main control board is provided with a microphone, and the bottom of the first shell is provided with a sound collecting hole, and the position of the microphone is matched with the sound collecting hole.

[0018] The microphone can receive external sound signals, facilitating voice interaction or environmental sound collection for the user, and improving the multifunctionality of the VR glasses.

[0019] In an alternative implementation, the display assembly comprises a display seat, a display screen for displaying virtual images, and an optical lens group for adjusting the viewing focal length, the display seat is mounted on the support, the display screen is mounted at the middle position of the display seat, the optical lens group is mounted on the display seat and covers the display screen at the bottom, and the display screen is electrically connected to the main control board.

[0020] By precisely adjusting the optical lens group, the focal length can be adjusted according to the vision needs of different users, ensuring clear display effect and meeting individual needs.

[0021] In an alternative implementation, the optical lens group comprises a lens barrel, a lens group, and a focusing barrel, the lens barrel is mounted at the bottom of the display seat, the lens group is arranged inside the lens barrel, the focusing barrel is movably sleeved on the lens barrel, and the focusing barrel is coupled to the lens group to adjust the imaging focal length of the lens group.

[0022] This design can realize manual adjustment of the focal length, adapt to the vision differences of different users, and improve the comfort and clarity of viewing virtual images.

[0023] In an alternative implementation, the body further comprises an auxiliary camera for assisting in acquiring environmental images, the auxiliary camera protruding from the outer surface of the first shell and being electrically connected to the main control board.

[0024] The design of the auxiliary camera can expand the application scenarios of the VR glasses, support environmental perception and augmented reality (AR) functions, and improve the multifunctionality of the device.

[0025] The VR glasses of the present application provide a more comfortable, stable, and intelligent virtual reality experience by optimizing the heat dissipation design, improving the display effect adjustment, and enhancing the audio and voice interaction functions. Specifically, the present application has at least the following advantages:

[0026] (1) By reasonably arranging the heat dissipation fins and designing the metal shell, the heat dissipation performance of the device is significantly improved, and the overheating problem is avoided.

[0027] (2) The design of the optical lens group and the adjustable focal length makes the display effect clearer, and adapts to the vision needs of different users. Moreover, through the optimization of the optical lens group, the volume of the glasses body is greatly reduced.

[0028] (3) The design of the sound emitting assembly and the microphone enhances the interactivity and immersion of the VR glasses.

[0029] (4) The addition of environmental perception function and augmented reality (AR) function improves the intelligence and multifunctionality of the device. BRIEF DESCRIPTION OF DRAWINGS

[0030] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0031] Figure 1 The structural schematic diagram of the VR glasses provided by an embodiment of the present application.

[0032] Figure 2 The exploded view of the glasses body provided by an embodiment of the present application.

[0033] Figure 3 The structural schematic diagram of the body provided by an embodiment of the present application.

[0034] Figure 4 Another angle structural schematic diagram of the body provided by an embodiment of the present application.

[0035] Figure 5The position diagram of main components of the body provided by an embodiment of the present application shows the arrangement order of the heat dissipation fin, the main control board, the battery and the display assembly.

[0036] Figure 6 The internal structure diagram of the body of the glasses provided by an embodiment of the present application.

[0037] Figure 7 The structure diagram of the body of the glasses provided by an embodiment of the present application.

[0038] Figure 8 The structure diagram of the body of the glasses provided by an embodiment of the present application.

[0039] Figure 9 The structure diagram of the display assembly provided by an embodiment of the present application.

[0040] Explanation of reference signs:

[0041] 1, body of glasses; 2, ring belt;

[0042] 11, shell; 111, first shell; 1111, sound hole; 1112, sound receiving hole; 112, second shell; 1121, first through hole; 113, metal sheet; 114, cover body; 1141, cover cavity; 1142, nose groove; 1143, second through hole;

[0043] 12, body; 121, support; 122, heat dissipation fin; 1221, heat dissipation convex strip; 123, main control board; 124, battery; 125, main camera; 126, display assembly; 1261, display seat; 1262, optical lens group; 1263, lens barrel; 1264, lens group; 1265, focusing barrel; 127, inductor; 128, sound producing assembly; 129, auxiliary camera; 101, volume key; 102, power key; 103, control key; 104, memory card slot; 105, interface terminal. DETAILED DESCRIPTION

[0044] The technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0045] The terms "first", "second", etc. are used herein only for descriptive purposes and should not be construed as indicating or implying relative importance or an indicated number of technical features. Thus, features defined with "first", "second" can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "a plurality of" is two or more, unless otherwise specified.

[0046] In addition, herein, the orientation terms such as "upper", "lower", etc. are defined relative to the orientation of the structure shown in the drawings, and it should be understood that these directional terms are relative concepts, which are used for relative description and clarification, and can change accordingly according to the change of the orientation of the structure.

[0047] Referring to Figures 1 to 9 , an embodiment of the present application provides a VR glasses.

[0048] In combination Figure 1 As shown in the drawings, the VR glasses provided by the present application include a glasses body 1 and a ring band 2 detachably connected to the glasses body 1.

[0049] Among them, the ring band 2 can be adapted to the size of the head to be firmly worn, and the two ends of the ring band 2 can be connected to the two sides of the glasses body 1.

[0050] In combination Figures 2 to 5 As shown in the drawings, in the embodiment, the glasses body 1 includes a first shell 111 and a second shell 112, and the first shell 111 and the second shell 112 are spliced to form a shell 11. Inside the shell 11, a machine body 12 is installed, which includes a support 121 and a heat sink 122, a main control board 123, a battery 124, a main camera 125 and a display assembly 126 installed on the support 121. The main control board 123, the battery 124, the main camera 125 and the display assembly 126 are electrically connected.

[0051] Among them, the heat sink 122 and the main control board 123 are vertically arranged, one side of the heat sink 122 is close to one side of the main control board 123, the other side of the heat sink 122 is close to the inner surface of the first shell 111, and the battery 124 is arranged on the other side of the main control board 123; the main camera 125 penetrates the outer wall of the first shell 111, and the display assembly 126 penetrates the second shell 112.

[0052] In combination Figure 5 As shown in the drawings, in order to improve the heat dissipation effect of the heat sink 122, a plurality of heat dissipation ribs 1221 are arranged on the surface of the heat sink 122 facing the first shell 111, so as to increase the heat dissipation surface area.

[0053] Specifically, by optimizing the installation position of each component of the body 12, it is helpful to improve the internal heat dissipation, quickly conduct the heat generated by the main control board 123 through the heat dissipation fin 122, and conduct the heat to the outside through the shell 11, avoiding the internal overheating condition. Moreover, by improving the structure position, it is helpful to reduce the volume and improve the comfort of wearing and using.

[0054] As shown in Figure 2 In order to improve the heat dissipation performance of the shell 11, the outer surface of the first shell 111 is provided with a metal sheet 113. By enhancing the heat dissipation of the metal sheet 113, it can be ensured that the VR glasses will not cause performance degradation or user discomfort due to overheating during long-term use.

[0055] As shown in Figure 7 and Figure 8 In order to improve the wearing comfort, the outer surface of the second shell 112 is provided with a cover body 114, the cover body 114 forms a cover cavity 1141 with an opening, and the display assembly 126 is worn out of the second shell 112 to the cover cavity 1141.

[0056] Moreover, in order to adapt to users who wear myopia, hyperopia and other refractive glasses to directly use the VR glasses, the cover cavity 1141 of the present application is relatively large, and the refractive glasses can be directly used without being removed, improving the applicability.

[0057] As shown in Figure 7 In order to avoid that the cover body 114 produces excessive pressure on the user's nose bridge, the lower part of the cover body 114 is recessed to be provided with a nose groove 1142 to adapt to the user's nose bridge.

[0058] As shown in Figure 2 In order to facilitate the display assembly 126 to be worn out, the second shell 112 is provided with a first through hole 1121 matched with the display assembly 126, and the cover body 114 is provided with a second through hole 1143 matched with the display assembly 126.

[0059] As shown in Figure 3 , Figure 6 and Figure 7 In the embodiment, the body 12 further comprises a sensor 127 for sensing the distance of the human body, and the sensor 127 is exposed in the cover cavity 1141.

[0060] The sensor 127 can automatically sense the proximity of the user when wearing the VR glasses, further improving the intelligent degree of the device and the user experience. Moreover, by pre-setting the program, when the user takes off the VR glasses, the sensor 127 senses that the distance from the human body increases, and can enter the sleep mode to save power consumption.

[0061] Specifically, the sensor 127 can adopt a commercially available distance sensor 127 such as an infrared sensor 127.

[0062] Combination Figure 3 , Figure 4 and Figure 6 As shown in the present application, the body 12 also includes at least one sound-generating component 128, which is electrically connected to the main control board 123 and is disposed on the side of the bracket 121.

[0063] The sound-generating component 128 can provide users with an immersive sound experience, enhancing the interactivity and entertainment value of VR glasses in virtual reality applications.

[0064] In one embodiment, two sound-generating components 128 may be provided, respectively disposed on both sides of the bracket 121, to provide a more stereo sound effect.

[0065] Specifically, the sound-generating component 128 can be made of conventional commercially available speakers or other sound-generating devices.

[0066] Combination Figure 6 and Figure 8 As shown, in this embodiment, the first outer shell 111 is provided with a sound hole 1111, and the position of the sound hole 1111 is adapted to the position of the sound-generating component 128.

[0067] The design of the 1111 sound hole optimizes sound propagation, ensuring that sound is delivered to the user's ears clearly and naturally.

[0068] Combination Figure 8 As shown, in this embodiment, the main control board 123 is provided with a microphone (not shown in the figure), and the bottom of the first housing 111 is provided with a microphone hole 1112, and the positions of the microphone and the microphone hole 1112 are adapted to each other.

[0069] This microphone can receive external sound signals, facilitating voice interaction or ambient sound collection for users and enhancing the versatility of VR glasses.

[0070] Specifically, two microphones can be configured, one on each side of the bottom of the housing 11, to achieve a clearer sound pickup effect.

[0071] Combination Figure 9 As shown in the figure, in this application, the display component 126 includes a display stand 1261, a display screen (not shown) for displaying virtual images, and an optical lens group 1262 for adjusting the viewing focal length. The display stand 1261 is mounted on the bracket 121, the display screen is mounted in the middle of the display stand 1261, the optical lens group 1262 is mounted on the display stand 1261 and covers the display screen at the bottom, and the display screen is electrically connected to the main control board 123.

[0072] Specifically, in the embodiment, the optical lens group 1262 includes a lens barrel 1263, a lens group 1264, and a focusing barrel 1265. The lens barrel 1263 is mounted at the bottom of the display seat 1261. The lens group 1264 is arranged inside the lens barrel 1263. The focusing barrel 1265 is movably sleeved on the lens barrel 1263. The focusing barrel 1265 is coupled to the lens group 1264 to adjust the imaging focal length of the lens group 1264.

[0073] The design can realize manual adjustment of the focal length, adapt to the vision difference of different users, and improve the comfort and clarity of watching virtual images.

[0074] The lens group 1264 can be composed of multiple different lenses to adjust the focal length of the display screen imaging to the human eye and improve the viewing clarity.

[0075] Specifically, in the embodiment, the display assembly 126 is provided in two, and the two display assemblies 126 are arranged in parallel, and the distance between the two display assemblies 126 is adapted to the normal distance of the human eye.

[0076] In combination with Figure 1 and Figure 4 As shown in another embodiment, the body 12 further includes an auxiliary camera 129 for assisting in acquiring environmental images. The auxiliary camera 129 protrudes from the outer surface of the first shell 111, and the auxiliary camera 129 is electrically connected to the main control board 123.

[0077] The design of the auxiliary camera 129 can expand the application scenarios of the VR glasses, support environmental perception and augmented reality (AR) functions, and improve the multifunctionality of the device.

[0078] Specifically, in an embodiment, the main camera 125 can adopt a conventional small camera, which is mounted on the bracket 121. The auxiliary camera 129 can also adopt a conventional small camera, which is mounted on the bracket 121. In another embodiment, the auxiliary camera 129 can adopt an external camera device.

[0079] In combination with Figure 7 , Figure 8 As shown, in order to improve the operation convenience, the glasses body 1 is provided with a volume key 101, a power key 102, and a control key 103. The volume key 101, the power key 102, and the control key 103 are all electrically connected to the main control board 123. In the embodiment, the volume key 101, the power key 102, and the control key 103 are distributed and arranged on the two sides of the shell 11, which is convenient for user operation.

[0080] In combination with Figure 8 As shown, the glasses body 1 is further provided with a storage card slot 104 for expanding the storage space and an interface terminal 105 for connecting charging or data transmission. The storage card slot 104 and the interface terminal 105 are arranged at the bottom of the shell 11 to improve the overall aesthetics.

[0081] The VR glasses provided by the embodiments of the present application are described in detail above, the principles and implementation manners of the present application are explained by applying specific examples, and the above description is only used to help understand the method of the present application and its core mechanism; meanwhile, for those skilled in the art, according to the idea of the present application, there will be changes in specific examples and application ranges, and the above description should not be understood as a limitation on the present application.

Claims

1. A VR glasses, characterized in that, The VR glasses comprise a glasses main body and a ring band detachably connected with the glasses main body; The glasses main body comprises a first shell and a second shell, the first shell and the second shell are spliced to form a shell, a machine body is installed inside the shell, the machine body comprises a support and a heat sink, a main control board, a battery, a main camera and a display assembly installed on the support, and the main control board, the battery, the main camera and the display assembly are electrically connected; The heat sink and the main control board are vertically arranged, one side of the heat sink is close to one side of the main control board, the other side of the heat sink is close to the inner surface of the first shell, and the battery is arranged on the other side of the main control board; the main camera penetrates out of the outer wall of the first shell, and the display assembly penetrates out of the second shell.

2. The VR glasses of claim 1, wherein: The outer surface of the first shell is provided with a metal sheet.

3. The VR glasses of claim 1, wherein: The outer surface of the second shell is provided with a cover body, the cover body forms a cover cavity with an opening, and the display assembly penetrates out of the second shell to the cover cavity.

4. The VR glasses of claim 3, wherein: The machine body further comprises a sensor for sensing the close distance of the human body, and the sensor is exposed in the cover cavity.

5. The VR glasses of claim 1, wherein: The machine body further comprises at least one sound emitting assembly, the sound emitting assembly is electrically connected with the main control board, and the sound emitting assembly is arranged on the side of the support.

6. The VR glasses of claim 5, wherein: The first shell is provided with a sound hole, and the position of the sound hole is matched with the position of the sound emitting assembly.

7. The VR glasses of claim 1, wherein: The main control board is provided with a sound pickup, and the bottom of the first shell is provided with a sound collecting hole, and the position of the sound pickup is matched with the position of the sound collecting hole.

8. The VR glasses of claim 1, wherein: The display assembly comprises a display seat, a display screen for displaying virtual images and an optical lens group for adjusting the viewing focal length, the display seat is installed on the support, the display screen is installed at the middle position of the display seat, the optical lens group is installed on the display seat and covers the display screen at the bottom, and the display screen is electrically connected with the main control board.

9. The VR glasses of claim 8, wherein: The optical lens group comprises a lens barrel, a lens group and a focusing barrel, the lens barrel is installed at the bottom of the display seat, the lens group is arranged inside the lens barrel, the focusing barrel is movably sleeved on the lens barrel, and the focusing barrel is coupled with the lens group to adjust the imaging focal length of the lens group.

10. The VR glasses of claim 1, wherein: The machine body further comprises an auxiliary camera for assisting in acquiring environmental images, the auxiliary camera protrudes from the outer surface of the first shell, and the auxiliary camera is electrically connected with the main control board.