Charging box for VR / AR wearable device
By designing a charging box that supports simultaneous charging and storage of multiple sets of VR/AR devices, the problem of inconvenient device management in existing technologies is solved, an efficient charging and storage solution is achieved, and the user experience is improved.
Patent Information
- Application Number
- CN202422870125.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-22
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-11-22
AI Technical Summary
Existing charging and storage issues with VR/AR wearable devices, especially the dedicated charging requirements and space limitations when multiple devices are used simultaneously, lead to inconvenient device management and inefficient use.
A charging box has been designed, which includes a charging panel, a support frame, and a detachable device holder and handle holder. It supports simultaneous and independent charging of multiple sets of VR/AR devices, has a reasonable storage function, uses elastic buffers to protect the devices, is equipped with rollers and a pull rod for portability, and is compatible with multiple charging interfaces.
It enables simultaneous charging and storage of multiple VR/AR devices, saves space, protects devices from damage, and improves user flexibility and selectivity. It is particularly suitable for environments with limited space.
Smart Images

Figure CN223462772U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to VR equipment technical field, especially related to a charging box for VR / AR wearing equipment. BACKGROUND
[0002] Although VR / AR wearing equipment has made great progress in function and technology, its charging and storage problems still trouble users in actual use.
[0003] At present, most high-end VR / AR wearing equipment is usually equipped with a special charger and charging base to ensure the high performance and safe charging of the equipment. Although this speciality ensures the charging efficiency and safety of the equipment, it also brings some inconvenience in actual use. On the one hand, the special charging equipment means that users must choose the original factory product when replacing or supplementing the charging accessories, which not only increases the economic burden of users, but also limits the selection range of users. On the other hand, the existing special charging solution fails to fully consider the demand for simultaneous charging of multiple groups of equipment, especially in some scenarios that require multiple VR / AR wearing equipment to work simultaneously, such as education and training centers, enterprise training rooms, etc. It is impossible to achieve simultaneous independent charging of multiple groups of equipment, which leads to inconvenience in equipment management and reduction in work efficiency.
[0004] In addition, the existing VR / AR wearing equipment charging solution also has problems in storage. Due to the lack of effective storage design, users often need to find additional space to properly store the equipment and its charging equipment when not in use, which is a big challenge for environments with limited space. Unreasonable storage method not only occupies space, but also may increase the risk of equipment damage. SUMMARY
[0005] In order to overcome the shortcomings of the prior art, the purpose of the utility model is to provide a charging box for VR / AR wearing equipment, which can not only meet the special charging demand, but also realize simultaneous independent charging of multiple groups of wearing equipment and has the function of reasonable storage. It is of great significance to improve the use experience of VR / AR wearing equipment.
[0006] The utility model provides an applied technical scheme as follows to solve the above -mentioned problem: a kind of charging box for VR / AR wearing equipment, comprising: charging box body, charging panel and support frame, the charging panel is fixed in the charging box body, the charging panel includes multiple charging output interface, key and power input socket, the support frame is embedded in the charging box body, the support frame includes device rack and handle rack, multiple first grooves are set on the device rack, the handle rack includes first handle rack and second handle rack, the second handle rack is below the first handle rack, the device rack is located at the side of the handle rack, multiple second grooves are set on the handle rack, and the number of second grooves is greater than or equal to the number of most first grooves.
[0007] Compared with prior art, the utility model has the beneficial effects that: the application combines the special charging structure of VR / AR wearing equipment with mobile charging box by optimizing the structure design of charging box, meets the needs of different customers, and can support the simultaneous independent charging of multiple VR / AR wearing equipment on the same charging platform. While designing the charging solution, the application considers the VR / AR wearing equipment and its accessories, especially the storage problem of handle, and by integrating the storage function, the application can provide an orderly space for charging and storing multiple equipment, which can charge synchronously and save space, protects the equipment from damage, especially in a limited space environment, greatly increases the flexibility and diversity of users when selecting charging accessories.
[0008] The charging box, each second groove is composed of a left handle groove and a right handle groove.
[0009] The charging box, the handle rack can be movably connected with the charging box body.
[0010] The charging box, the device rack can be movably connected with the charging box body.
[0011] The charging box, a buffer is arranged on the inner wall of the cover of the charging box body, and the buffer is made of elastic material.
[0012] The charging box, a pull rod, a roller and a handle are arranged on the charging box body, the roller is fixed to the bottom of the charging box body, the pull rod and the handle are fixed to the side of the charging box body, and the pull rod can be freely extended and retracted.
[0013] The charging box, the number of charging output interfaces is greater than or equal to the number of first grooves.
[0014] The charging box, a partition is arranged between two adjacent first grooves.
[0015] The charging panel is fixed in the charging box body by screws. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 The charging box structure of the embodiment of the utility model for the explosion map;
[0017] Figure 2 The charging box structure of the embodiment of the utility model for the explosion map; Figure 1
[0018] Figure 3 The charging box structure of the embodiment of the utility model for the explosion map; Figure 2
[0019] Brief description of drawings: 100 charging box body, 110 buffer, 120 pull rod, 130 roller, 140 handle, 200 charging panel, 210 charging output interface, 220 key, 230 power input socket, 240 screw, 300 support frame, 310 equipment placing rack, 311 first groove, 312 partition, 320 handle placing rack, 321 first handle placing rack, 322 second handle placing rack, 323 second groove, 324 left handle groove, 325 right handle groove. DETAILED DESCRIPTION
[0020] The embodiment of the utility model is described in detail below, and reference is made to Figures 1 to 3 The embodiment of the utility model provides a charging box for VR / AR wearing equipment, include: charging box body 100, charging panel 200 and support frame 300, charging panel 200 is fixed in charging box body 100, charging panel 200 includes a plurality of charging output interface 210, key 220 and power input socket 230, support frame 300 is embedded in charging box body 100, support frame 300 includes equipment rack 310 and handle rack 320, a plurality of first groove 311 are set up on equipment rack 310, handle rack 320 includes first handle rack 321 and second handle rack 322, second handle rack 322 is located below first handle rack 321, equipment rack 310 is located at one side of handle rack 320, a plurality of second groove 323 are set up on handle rack 320, and the number of second groove 323 is greater than or equal to the number of most first groove 311. The application is through optimizing the structure design of charging box, makes the special charging structure of VR / AR wearing equipment and the combination of mobile charging box, satisfies the demand of different customers, and can support multiple VR / AR wearing equipment's independent charging and the storage VR / AR wearing equipment's handle on the same charging platform. The application considers the equipment and its accessories, especially the storage problem of handle, through integrated storage function, the scheme can provide an orderly space for the user to charge multiple devices at the same time, synchronously store handle, can charge synchronously, save space, protect the equipment from the risk of damage, especially in the environment of limited space, greatly increase the flexibility and diversity of the user when selecting charging accessories.
[0021] Further, with reference to Figure 1, the single second groove body 323 is composed of a left handle groove 324 and a right handle groove 325, different brands of VR / AR wearable devices are designed with different handle structures, and generally a pair (i.e. two) of handles are provided for a VR / AR wearable device, one for the left hand and the other for the right hand, such a design is to enable the user to simulate natural hand movements in virtual reality, thereby achieving a more intuitive interactive experience. For example, the user can use the handle to shoot, grab objects and other operations in the game. The most common one is the Quest 2 series, therefore, for such products, the second groove body 323 provided on the handle groove of the application for placing the handle is composed of a left handle groove 324 and a right handle groove 325, so as to ensure the correct placement of the handle, avoid confusion and wear between the handles, and optimize the space utilization efficiency. Of course, the application does not limit the specific number of second grooves 323 on the first handle placing rack 321 and the second handle placing rack 322, preferably, the number of second grooves 323 on the first handle placing rack 321 and the second handle placing rack 322 is the same, and the total number of second grooves 323 on the first handle placing rack 321 and the second handle placing rack 322 is greater than or equal to the number of first grooves 311, so that the charging box can accommodate the required charging VR / AR wearable device and the matching handle, of course, the application does not limit the specific structure of the first groove 311 and the second groove 323, the first groove 311 is used to place the VR / AR wearable device, and the second groove 323 is used to place the matching handle of the VR / AR wearable device, and a partition plate 312 is arranged between adjacent two first grooves 311, which can effectively prevent the devices from colliding during placement, protect the surface of the devices from being scratched, and also help the user to clearly distinguish different devices.
[0022] Further, the application does not limit the connection relationship between the device placing rack 310 and the handle placing rack 320 and the charging box body 100, referring to Figure 1 , preferably, the handle placing rack 320 is movably connected with the charging box body 100; the device placing rack 310 is movably connected with the charging box body 100, so that the handle placing rack 320 and the device placing rack 310 can be independently detached from the charging box body 100, and the user can also adjust the positions of the handle placing rack 320 and the device placing rack 310 according to the actual situation, improving the flexibility of device storage and meeting the storage needs of different quantities and sizes. Further, a buffer 110 is arranged on the inner wall of the cover of the charging box body 100, and the buffer 110 is made of elastic material. When the required device stops charging, the buffer 110 in the cover can effectively reduce the shock during transportation of the charging box, protecting the VR / AR wearable device and the handle from damage caused by physical impact and prolonging the service life of the device. Further, referring to Figure 1 andFigure 3 The charging box body 100 is provided with a pull rod 120, a roller 130 and a hand carrying part. The roller 130 is fixed to the bottom of the charging box body 100, the pull rod 120 and the hand carrying part are fixed to the side of the charging box body 100, and the pull rod 120 can be freely extended and retracted. By providing the pull rod 120, the roller 130 and the hand carrying part on the charging box body 100, the charging box has portability, which facilitates users to carry it to different use places, and is particularly suitable for application scenarios where the device needs to be frequently moved. Further, the charging output interface 210 is not limited to an AC socket, but can also be various USB charging interfaces such as Type-A, Type-C, etc. Specifically, when the charging output interface 210 is an AC socket, it is connected to the charger that is standard equipped with the VR / AR wearable device to charge the VR / AR wearable device. When the charging output interface 210 is a USB, the VR / AR wearable device can be charged by plugging the corresponding USB line into the interface, without using the standard charger of the VR / AR wearable device.
[0023] Further, the number of charging output interfaces 210 is greater than or equal to the number of first groove bodies 311. Referring to Figure 2 The charging box mentioned in the present application is used in the following way. First, the outer cover of the charging box body 100 is opened, the power input socket 230 is connected to an external power source to power the entire charging box, and the power input socket 230 and the key 220 can be arranged inside the charging box body 100, as shown in Figure 2 When the power input socket 230 is located inside the charging box body 100, the cover of the charging box body 100 must be opened when charging the VR / AR wearable device. When the power input socket 230 is located outside the charging box body 100, such as being arranged on the box outside the charging box body 100, the cover of the charging box body 100 can be closed when charging the VR / AR wearable device. The charging box body 100 and the cover are locked by a padlock to prevent the loss of the VR / AR wearable device. At the same time, the present application does not limit the specific structure of the power input socket 230. Preferably, referring to Figure 2The power input socket 230 is an integrated structure of the socket hole, fuse and key switch 220, of course, the socket hole, fuse and key switch 220 can also be independent of each other, or two combinations. Further, the key switch 220 is internally provided with an LED indicator light, when the power input socket 230 is connected to an external power supply, the LED indicator light in the key switch 220 will light up, indicating that the charging box has been powered on, when the charging output interface 210 is a USB, an LED indicator light will be provided beside each USB interface to show whether the VR / AR wearable device is fully charged, helping users monitor the charging progress of the device and avoid overcharging or undercharging. Further, the utility model does not limit the external box structure of the charging box body 100, since heat will be generated in the box when charging the VR / AR wearable device, in order to ensure the safety and service life of the electronic device in the box, the external charging box body 100 can be provided with a cooling fan, the utility model does not limit the specific position of the cooling fan, preferably, the cooling fan can communicate with the inside of the charging box body 100 to form a circulating gas channel.
[0024] Further, the VR / AR wearable device and the handle to be charged are respectively placed in the first groove body 311 and the second groove body 323, each first groove body 311 is specially placed with a pair of VR / AR wearable devices, each VR / AR wearable device is connected with the charging output interface 210 through the charging line of the VR / AR wearable device, ensuring that each device has a corresponding power socket, of course, the utility model can also satisfy the charging of the handle, the principle is the same as that of the VR / AR wearable device charging, further, the charging panel 200 is fixed in the inside of the charging box body 100 through the screw 240. The firmness of the charging panel 200 is ensured, the looseness caused by long-time use or movement is avoided, and the safety and stability of the charging process are ensured.
[0025] It should be noted that, in the description of the utility model, if there is a direction description, for example, the direction or position relationship indicated by the upper, lower, front, rear, left, right and the like, it is based on the direction or position relationship shown in the drawing, only for the convenience of describing the utility model and simplifying the description, and does not indicate or imply that the device or element must have a specific direction, be constructed or operated in a specific direction, and cannot be understood as a limitation on the utility model.
[0026] In the description of the utility model, the meaning of several is one or more, the meaning of multiple is two and above, greater than, less than, exceed and the like are understood as not including the number, above, below, within and the like are understood as including the number. If there is a description of first or second and the like, it is only used for distinguishing technical features for the purpose, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features or implicitly indicating the sequence of indicated technical features.
[0027] In the description of the utility model, unless otherwise explicitly limited, the words such as setting, installation, connection and the like should be understood in a broad sense, and the person skilled in the art can reasonably determine the specific meaning of the above words in the utility model according to the specific content of the technical scheme.
[0028] The above-mentioned embodiments are only preferred embodiments of the utility model, which cannot be used to limit the range of protection of the utility model, and any non-substantial changes and replacements made by the person skilled in the art on the basis of the utility model belong to the range of protection required by the utility model.
Claims
1. A charging box for a VR / AR wearable device, characterized by, The utility model relates to a charging box, which comprises a charging box body (100), a charging panel (200) and a support frame (300), the charging panel (200) is fixed in the charging box body (100), the charging panel (200) comprises a plurality of charging output interfaces (210), a key (220) and a power input socket (230), the support frame (300) is embedded in the charging box body (100), the support frame (300) comprises a device placing rack (310) and a handle placing rack (320), a plurality of first grooves (311) are formed in the device placing rack (310), the handle placing rack (320) comprises a first handle placing rack (321) and a second handle placing rack (322), the second handle placing rack (322) is located below the first handle placing rack (321), the device placing rack (310) is located on one side of the handle placing rack (320), a plurality of second grooves (323) are formed in the handle placing rack (320), the number of the second grooves (323) is greater than or equal to the number of the first grooves (311). Each of the second grooves (323) is composed of a left handle groove (324) and a right handle groove (325).
2. The charging box of claim 1, wherein, The handle placing rack (320) is movably connected with the charging box body (100).
3. The charging box of claim 1, wherein, The device placing rack (310) is movably connected with the charging box body (100).
4. The charging box of claim 1, wherein, A buffer (110) is arranged on the inner wall of the outer cover of the charging box body (100), and the buffer (110) is made of elastic material.
5. The charging box of claim 1, wherein, A pull rod (120), a roller (130) and a hand-held part are arranged on the charging box body (100), the roller (130) is fixed to the bottom of the charging box body (100), the pull rod (120) and the hand-held part are fixed to the side of the charging box body (100), and the pull rod (120) can be freely extended and retracted.
6. The charging box of claim 1, wherein, The number of the charging output interfaces (210) is greater than or equal to the number of the first grooves (311).
7. The charging box of claim 1, wherein, A partition (312) is arranged between two adjacent first grooves (311).
8. The charging box of claim 1, wherein, The charging panel (200) is fixed in the charging box body (100) by means of screws (240).
9. The charging box of claim 1, wherein,