Backpack equipment for mobile VR glasses
By incorporating an electronic control module and a removable rechargeable battery into the backpack's base plate, the design solves the weight and battery life issues of existing VR glasses, achieving portability and long battery life for mobile VR devices and breaking the limitations of traditional fixed locations.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GEOMETRY ROBOTICS LTD
- Filing Date
- 2025-06-10
- Publication Date
- 2026-04-17
Smart Images

Figure CN224125449U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of backpack equipment technology, and relates to a backpack device for mobile VR glasses. Background Technology
[0002] With the continuous advancement of virtual reality (VR) technology, its application in tourism, cultural exhibitions, and other fields is becoming increasingly widespread. Traditional VR tourism experiences are usually confined to fixed locations, such as VR experience centers, which restricts the user's freedom of movement. Although existing VR glasses offer some portability, they integrate the electronic control module into the glasses, increasing their weight and resulting in insufficient battery life. Therefore, there is an urgent need to develop a backpack device for mobile VR glasses. Summary of the Invention
[0003] To address the shortcomings of existing technologies, this utility model provides a backpack device for mobile VR glasses.
[0004] To achieve the above objectives, the technical solution of this utility model is: a backpack device for mobile VR glasses, comprising a backpack base plate and a backpack body mounted on the backpack base plate, characterized in that an electronic control module for cooperating with VR glasses is mounted on the backpack base plate, the electronic control module including a rechargeable battery, the rechargeable battery being detachably mounted on the backpack base plate, the upper end of the backpack base plate being connected to the shoulder straps, the lower end of the backpack base plate being connected to an adjustment strap, the adjustment strap being connected to the shoulder straps via an adjustable component; the backpack body also has side ventilation windows and front ventilation windows.
[0005] The electronic control module also includes a PCB main control board, power supply one, power supply two, and a switching power supply. The rechargeable battery, power supply one, power supply two, and switching power supply are all electrically connected to the PCB main control board via lines.
[0006] The PCB main control board has multiple external data connection interfaces and multiple internal data connection interfaces.
[0007] The PCB main control board is also equipped with dual turbo fans.
[0008] The backpack bottom plate has a battery compartment for placing rechargeable batteries, and the access port of the battery compartment is equipped with a flexible baffle.
[0009] Several massage heads are also installed on the bottom plate of the backpack.
[0010] The adjustable component includes an auxiliary seat and a locking screw. The connecting lug of the auxiliary seat is connected by a cloth belt and a back strap. The adjusting belt has several threaded connectors. The locking screw is threadedly connected to the auxiliary seat and can be threadedly connected to the threaded connectors.
[0011] The threaded connector is a metal part, and the auxiliary seat also has a ring magnet, which can hold the threaded connector.
[0012] By adopting the above technical solution, the beneficial effects of this utility model are:
[0013] This invention places the electronic control module on the bottom plate of the backpack, allowing it to be carried on the body, which greatly reduces the weight of the entire VR glasses. The rechargeable battery can be quickly installed and removed, so that the user's movement is not restricted and can move freely. At the same time, the overall experience is also better. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the planar structure of this utility model.
[0015] Figure 2 This is a three-dimensional structural diagram of the present invention.
[0016] Figure 3 This is a three-dimensional structural diagram of the bottom plate of the backpack in this utility model.
[0017] Figure 4 This is a magnified view of a portion of A.
[0018] Figure 5 This is a three-dimensional structural diagram of the removed portion of this utility model.
[0019] Figure 6 This is a three-dimensional structural diagram of the adjustable component in this utility model.
[0020] In the diagram, 1. Backpack body; 1a. Handle; 1b. Side ventilation window; 1c. Front ventilation window; 2. Shoulder straps; 3. Backpack bottom plate; 3a. Massage head; 3b. Battery compartment; 4. Adjustment strap; 5. Switch button; 6. Elastic retaining strip; 7. Electronic control module; 7a. Power supply 1; 7b. Power supply 2; 7c. Switching power supply; 7d. Rechargeable battery; 7e. PCB main control board; 7e1. Dual turbo fans; 7e2. External data connection interface; 7e3. Internal data connection interface; 8. Fabric straps; 9. Locking screws; 10. Threaded connectors; 11. Connecting ears; 12. Auxiliary base; 13. Ring magnet. Detailed Implementation
[0021] To further explain the technical solution of this utility model, the following detailed description is provided through specific embodiments.
[0022] like Figure 1-6As shown, the backpack device used for this mobile VR glasses includes a backpack base plate 3 and a backpack body 1 mounted on the backpack base plate 3. Both the backpack body 1 and the backpack base plate 3 are made of rigid materials. The backpack body 1 is rectangular in shape and has a handle 1a on the top for easy carrying. An electronic control module 7 that works with the VR glasses is installed on the backpack base plate 3. The electronic control module 7 includes a rechargeable battery 7d, which is detachably mounted on the backpack base plate 3. The upper end of the backpack base plate 3 is connected to the shoulder strap 2, and the lower end of the backpack base plate 3 is connected to the adjustment strap 4. The adjustment strap 4 is connected to the shoulder strap 2 through an adjustable component. The backpack body 1 also has a side ventilation window 1b and a front ventilation window 1c. The VR glasses working with this backpack device utilizes existing technology. The VR glasses are equipped with a 4K high-definition display screen and a 200° ultra-wide field of view. Combined with an automatic interpupillary distance adjustment device, they achieve high definition and a wide field of view in visual presentation.
[0023] The electronic control module 7 also includes a PCB main control board 7e, a power supply 7a, a power supply 7b, and a switching power supply 7c. The rechargeable battery 7d, power supply 7a, power supply 7b, and switching power supply 7c are all electrically connected to the PCB main control board 7e via wiring. The PCB main control board 7e has multiple external data connection interfaces 7e2 and multiple internal data connection interfaces 7e3, which is existing technology and does not require redesign of its electrical connections. At the same time, a switch button 5 is also installed on the backpack body 1, which is connected to the electronic control module 7 using existing wiring.
[0024] The PCB main control board 7e is also equipped with dual turbo fans 7e1, which work in conjunction with the side heat dissipation window 1b and the front heat dissipation window 1c to achieve internal heat dissipation.
[0025] The backpack base plate 3 has a battery storage compartment 3b for placing a rechargeable battery 7d. The battery storage compartment 3b has an elastic baffle 6 installed at the access port. This structure prevents the rechargeable battery 7d from accidentally falling out. The rechargeable battery 7d is a rechargeable lithium battery that provides power to the entire system and has a power monitoring function. When the power is lower than a preset threshold, it will issue a low power reminder to the user through the VR glasses. This feature is based on existing technology.
[0026] Several massage heads 3a are also installed on the bottom plate 3 of the backpack. The massage heads 3a are existing products, that is, made of silicone material, which can gently massage the back muscles during the user's carrying process to relieve fatigue.
[0027] The adjustable components include an auxiliary seat 12 and a locking screw 9. The connecting ear 11 of the auxiliary seat 12 is connected to the back strap 2 via a cloth belt 8. The adjusting belt 4 has several threaded connectors 10. The locking screw 9 is threaded onto the auxiliary seat 12 and can be threaded onto the threaded connectors 10. The threaded connectors 10 are metal parts. The auxiliary seat 12 also has a ring magnet 13, which can hold the threaded connectors 10. When adjusting the length, the ring magnet 13 holds and positions the corresponding threaded connectors 10, and then the locking screw 9 is connected to the threaded connectors 10 to complete the length adjustment of the back strap 2. Since the distribution of the threaded connectors 10 on each side is consistent, it is easier to adjust the back straps 2 on both sides to the same length. In summary, users can adjust the length of the back strap 2 according to their own needs.
[0028] Combining VR glasses with backpack devices breaks the limitations of traditional VR devices being confined to fixed locations, providing a brand-new mobile experience mode for virtual travel.
[0029] In practice, existing positioning modules, including GPS positioning units and inertial navigation units, can also be installed on the backpack base plate 3; a communication module that supports 5G network communication and Wi-Fi communication; and a storage module that stores 3D model data, audio data, and scene switching logic programs for multiple different spatiotemporal scenarios.
[0030] All of the above components are general standard parts or components known to those skilled in the art. Their structure and principles can be learned by those skilled in the art through technical manuals or conventional experimental methods.
[0031] The above embodiments and figures are not intended to limit the product form and style of this utility model. Any appropriate changes or modifications made by those skilled in the art should be considered as not departing from the patent scope of this utility model.
Claims
1. A backpack device for mobile VR glasses, comprising a backpack base plate (3) and a backpack body (1) mounted on the backpack base plate (3), characterized in that, The backpack base plate (3) is equipped with an electronic control module (7) that works with VR glasses. The electronic control module (7) includes a rechargeable battery (7d). The rechargeable battery (7d) is installed on the backpack base plate (3) in a detachable manner. The upper end of the backpack base plate (3) is connected to the shoulder strap (2), and the lower end of the backpack base plate (3) is connected to the adjustment strap (4). The adjustment strap (4) is connected to the shoulder strap (2) through an adjustable component. The backpack body (1) also has a side heat dissipation window (1b) and a front heat dissipation window (1c).
2. The backpack device for mobile VR glasses according to claim 1, characterized in that, The electronic control module (7) also includes a PCB main control board (7e), power supply one (7a), power supply two (7b) and a switching power supply (7c). The rechargeable battery (7d), power supply one (7a), power supply two (7b) and switching power supply (7c) are all electrically connected to the PCB main control board (7e) via lines.
3. The backpack device for mobile VR glasses according to claim 2, characterized in that, The PCB main control board (7e) has multiple external data connection interfaces (7e2) and multiple internal data connection interfaces (7e3).
4. The backpack device for mobile VR glasses according to claim 3, characterized in that, The PCB main control board (7e) is also equipped with dual turbo fans (7e1).
5. The backpack device for mobile VR glasses of claim 1, wherein, The backpack base plate (3) has a battery compartment (3b) for placing a rechargeable battery (7d), and an elastic baffle (6) is installed at the opening of the battery compartment (3b).
6. The backpack device for mobile VR glasses of claim 1, wherein, Several massage heads (3a) are also installed on the bottom plate (3) of the backpack.
7. The backpack device for mobile VR glasses of claim 1, wherein, The adjustable component includes an auxiliary seat (12) and a locking screw (9). The connecting lug (11) of the auxiliary seat (12) is connected to the back strap (2) via a cloth belt (8). The adjustment belt (4) has several threaded connectors (10). The locking screw (9) is threadedly connected to the auxiliary seat (12) and can be threadedly connected to the threaded connectors (10).
8. The backpack device for mobile VR glasses according to claim 7, characterized in that, The threaded connector (10) is a metal part, and the auxiliary seat (12) also has a ring magnet (13), and the ring magnet (13) can hold the threaded connector (10).