Intelligent sports glasses charging glasses box

CN224806038UActive Publication Date: 2026-09-29GUANGDONG SONGJIAN ELECTRIC VEHICLE CHARGING TECH CO LTD
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Patent Information

Application Number
CN202522522235.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-27
Publication Date
2026-09-29
Estimated Expiration
2035-11-27

AI Technical Summary

Technical Problem

[0004]然而,现有智能眼镜充电盒仍存在一定的缺陷,其中,传统设计多采用“一对一”专属适配模式,即眼镜盒与特定型号智能眼镜的形状轮廓、充电触点位置、磁吸强度等参数相匹配,这种设计导致不同型号、不同厂商的智能眼镜无法共用同一充电眼镜盒,用户若拥有多副智能眼镜则需额外购置多个专属充电盒,既造成资源浪费,又增加出行携带负担,更严重的是,现有的眼镜盒难以进行多种型号智能眼镜的充电兼容使用,影响使用的通用性和灵活性

Benefits of technology

[0022]本实用新型的有益效果:顶壳与底壳配对连接形成容纳空间,结合内衬件对智能眼镜的包裹式容纳,提供物理防护,内衬件设置的容纳腔与凸台结构形成支撑,通过凸台顶部的避让开口使放电接口显露,放电接口可连接为智能眼镜充电的充电线,使其能够兼容不同智能眼镜的充电需求,相对于传统眼镜盒的专属适配限制,通过放电接口实现多型号智能眼镜共用同一充电盒,实现同一充电盒兼容多种型号智能眼镜的充电需求,提升眼镜盒使用的通用性与灵活性,满足用户多智能眼镜设备共用场景需求,减少用户重复购置成本与出行携带负担,以及充电接口的侧面显露设计,从而可连接电源为电池补能,提高智能眼镜盒的兼用性和使用体验。

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Abstract

The utility model relates to a kind of sports intelligent glasses charging glasses box in the field of charging glasses box, including top shell and bottom shell, top shell and bottom shell are connected in pairs, accommodating groove is formed on the bottom shell, and accommodating groove is provided with lining piece in pairs, accommodating cavity for placing glasses is formed in the inside of lining piece, the middle part of accommodating cavity is formed with the boss of protrusion, the bottom of lining piece is equipped with the recessed mounting groove to the boss, discharge plate for discharging is arranged in mounting groove, discharge interface is electrically connected on discharge plate, discharge plate is electrically connected with battery for providing electric energy, the side of lining piece is provided with the charging plate for being electrically connected with battery, charging interface for charging battery is connected on charging plate, the utility model realizes that multiple models of intelligent glasses share same charging box by discharge interface, so that the charging demand of multiple models of intelligent glasses in same charging box can be realized, and the versatility and flexibility of use are improved.
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Description

Technical Field

[0001] This utility model relates to the field of charging glasses cases, specifically to a charging glasses case for sports smart glasses. Background Technology

[0002] With the rapid development of wearable smart devices, sports smart glasses, as portable electronic devices integrating display, camera, motion sensing, and health monitoring, are widely used in outdoor sports, fitness training, navigation, and positioning scenarios. These devices typically use miniature battery modules for power, and due to size constraints, their battery life is insufficient for extended outdoor use, making frequent charging a major pain point for users. Therefore, developing a compatible portable charging solution has become a key focus of technological innovation in the industry.

[0003] Various charging case solutions for smart glasses have emerged in the current technology. A typical structure includes a rigid outer shell as a physical protective carrier, a built-in rechargeable lithium battery module as an energy storage unit, and an electrical connection between the charging plate and the glasses body via a magnetic or contact-type charging plate. When the sports smart glasses are placed in the case, the charging plate automatically aligns with the charging contacts on the glasses, achieving automated "storage and charging" recharging. For smart glasses that are not paired, charging primarily relies on external charging devices. Conventional solutions employ a separate charging architecture: users need to carry an independent power bank or power adapter and connect it to the glasses' charging interface via a data cable to replenish power.

[0004] However, existing smart glasses charging cases still have certain shortcomings. Traditional designs often employ a "one-to-one" exclusive matching model, meaning the case's shape, charging contact location, magnetic strength, and other parameters are matched to a specific model of smart glasses. This design means that smart glasses of different models and manufacturers cannot share the same charging case. Users with multiple pairs of smart glasses need to purchase multiple dedicated charging cases, resulting in resource waste and increased carrying burden. More seriously, existing cases are not compatible with charging various smart glasses models, affecting versatility and flexibility. Therefore, this restricts the expansion of sports smart glasses and the user experience, necessitating an integrated design to ensure compatibility with different smart glasses and achieve both protection and charging functions. Utility Model Content

[0005] The purpose of this utility model is to overcome the above-mentioned defects and provide a charging case for sports smart glasses, so as to solve the technical problem of how to improve the versatility and flexibility of smart glasses cases, thereby improving the expansion and user experience of smart glasses.

[0006] The objective of this utility model is achieved through the following means:

[0007] A charging case for sports smart glasses includes a top shell and a bottom shell, which are paired and connected to form a receiving space for placing the sports smart glasses. A receiving groove is formed on the bottom shell, and an inner liner is paired and arranged within the groove. The inner liner has a receiving cavity for placing the glasses, with a raised boss in the center of the cavity. A mounting groove recesses into the boss at the bottom of the inner liner, and a discharge plate for discharging is arranged within the mounting groove. A discharge interface is electrically connected to the discharge plate. An clearance opening communicating with the mounting groove and the receiving cavity is provided on the boss, allowing the discharge interface to extend through the clearance opening into the receiving cavity. A battery for providing power is electrically connected to the discharge plate. A charging plate electrically connected to the battery is provided on the side of the inner liner, and a charging interface for charging the battery is connected to the charging plate. The charging interface is exposed to the outside through the bottom shell.

[0008] Furthermore, as described above, the edge of the inner liner is formed with a connecting flange, and the inner wall of the receiving groove is provided with a supporting flange for supporting the connecting flange. The inner liners are paired and disposed in the receiving groove so that the connecting flange and the supporting flange are in contact and connected by adhesive.

[0009] A secure and detachable connection between the inner liner and the base shell is achieved through a contact adhesive structure between the connecting flange and the supporting flange. This design ensures structural strength while allowing the inner liner to accommodate paired smart glasses, effectively solving the compatibility issues caused by traditional one-to-one dedicated adapters. It also reduces the resource waste of users needing to purchase multiple dedicated charging cases for multiple pairs of glasses, improving the versatility of the glasses case.

[0010] Furthermore, as described above, the interior of the mounting groove has a protruding snap-fit ​​bracket. There are two snap-fit ​​brackets, which are symmetrically arranged. The snap-fit ​​brackets have snap-fit ​​slots for mates with the batteries, so that the two ends of the batteries are mated and snapped into place.

[0011] The symmetrically arranged clip holders mechanically limit the two ends of the battery through the clip slots, ensuring the battery is securely installed during charging.

[0012] Furthermore, as described above, the discharge plate is connected to a first indicator light for discharge indication, and the protrusion has a first indicator hole that communicates with the receiving cavity.

[0013] The first indicator light on the discharge plate is exposed to the receiving cavity through the first indicator hole of the boss, forming an intuitive charging status feedback mechanism. Users can directly observe the indicator light status to judge the discharge process, avoiding repeated operations or overcharging of the device due to unclear charging status, thus improving safety and ease of use.

[0014] Furthermore, as described above, the side of the bottom shell is provided with a charging opening that communicates with the receiving groove, allowing the charging interface to be exposed to the outside through the charging opening. A second indicator light for charging indication is connected to the charging plate, and a second indicator hole that communicates with the receiving groove is provided on the side of the bottom shell.

[0015] The charging opening on the side of the bottom shell exposes the charging interface, which, together with the second indicator light connected to the charging board, forms a status feedback system. The exposed design of the charging interface allows users to directly plug and unplug the device, while the second indicator light displays the battery charging status in real time through a second indicator hole, enabling visual monitoring of the charging process.

[0016] Furthermore, as described above, both the charging interface and the discharging interface are composed of Type-C interfaces.

[0017] Both the charging and discharging interfaces use Type-C physical interfaces, leveraging their reversible plug-and-play capability and wide compatibility to overcome the model limitations of traditional proprietary interfaces. This design ensures reliable electrical connections while adapting to the charging protocols of mainstream smart glasses on the market, achieving "one box, multiple uses" hardware compatibility and improving the versatility and flexibility of the glasses case.

[0018] Furthermore, as described above, the side of the boss is provided with a limiting block, and the side of the boss is provided with a mounting groove for mating and installing the limiting block, so that the side of the limiting block and the mounting groove are mated and bonded. A charging cable for charging the smart glasses is provided in the receiving cavity. Two symmetrically distributed elastic limiting arms extend from the side of the limiting block, so that a holding gap is formed between the two elastic limiting parts. The limiting block can be used to hold the temple of the smart glasses or the charging cable through the elastic limiting arms. When the smart glasses do not need to be charged, the charging cable can be mated and held in the holding gap. When the smart glasses are folded and placed in the receiving cavity and charged through the charging cable connected to the discharge interface, the temple of the smart glasses can be folded and held in the holding gap.

[0019] The elastic limiting arms of the limiting block form a clamping gap, enabling flexible clamping and limiting of the temples of the smart glasses or the charging cable through a double-arm clamping structure. When the glasses are charging, the temples can be locked into the clamping gap to prevent movement; when charging is not needed, the charging cable can be stored in the clamping gap. This design, through the elastic adaptation of the physical structure, can clamp and limit the temples of different models of glasses, preventing the smart glasses from shaking within the housing cavity or detaching from the housing cavity in the event of a drop, thus improving the charging case's ability to safely limit the movement of multiple models of smart glasses.

[0020] Furthermore, as described above, the limiting block is made of silicone material.

[0021] The silicone limiting block utilizes its high elasticity and anti-slip properties to ensure clamping force while avoiding indentations or wear on the smart glasses.

[0022] The beneficial effects of this utility model are as follows: The top and bottom shells are paired and connected to form a receiving space, which, combined with the inner lining, provides physical protection for the smart glasses by wrapping them in place. The receiving cavity and the boss structure of the inner lining form a support, and the discharge interface is exposed through the clearance opening on the top of the boss. The discharge interface can be connected to the charging cable for charging the smart glasses, making it compatible with the charging needs of different smart glasses. Compared with the exclusive compatibility limitations of traditional glasses cases, the discharge interface allows multiple models of smart glasses to share the same charging case, enabling the same charging case to be compatible with the charging needs of multiple models of smart glasses. This improves the versatility and flexibility of the glasses case, meets the needs of users who use multiple smart glasses devices, reduces the cost of repeated purchases and the burden of carrying them when traveling, and the side exposure design of the charging interface allows for connection to a power source to replenish the battery, improving the versatility and user experience of the smart glasses case. Attached Figure Description

[0023] Figure 1 This is a perspective view of the front view angle in this embodiment;

[0024] Figure 2 This is a perspective view of the rear view in this embodiment;

[0025] Figure 3 This is a schematic diagram of the internal structure of this embodiment;

[0026] Figure 4 This is a top-down structural breakdown diagram of this embodiment;

[0027] Figure 5 This is a structural breakdown diagram from a bottom-view perspective in this embodiment;

[0028] The reference numerals in the figure are as follows: 1-top shell, 2-bottom shell, 3-accommodating groove, 4-inner liner, 5-accommodating cavity, 6-bore, 7-mounting groove, 8-discharge plate, 9-discharge interface, 10-avoidance opening, 11-battery, 12-charging plate, 13-charging interface, 14-connecting flange, 15-supporting flange, 16-clamping bracket, 17-first indicator light, 18-first indicator hole, 19-charging opening, 20-second indicator light, 21-second indicator hole, 22-limiting block, 23-charging cable, 24-elastic limiting arm. Detailed Implementation

[0029] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0030] To make the technical problem to be solved, the technical solution and the beneficial effects of this utility model clearer, the following describes the solution in further detail with reference to the accompanying drawings and embodiments.

[0031] It should be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", and "outer" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this scheme and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.

[0032] In this embodiment, refer to Figures 1-5 The present invention relates to a charging case for sports smart glasses, comprising a top shell 1 and a bottom shell 2, which are paired and connected to form a space for holding the sports smart glasses. A receiving groove 3 is formed on the bottom shell 2, and an inner liner 4 is paired and disposed within the receiving groove 3. The inner liner 4 has a receiving cavity 5 for holding the glasses, and a raised boss 6 is formed in the center of the receiving cavity 5. A mounting groove 7 is provided at the bottom of the inner liner 4, recessed towards the boss 6, and a mounting groove 7 is provided within the mounting groove 7 for... The discharge plate 8 is electrically connected to a discharge interface 9. The boss 6 has a clearance opening 10 that communicates with the mounting groove 7 and the receiving cavity 5, so that the discharge interface 9 extends through the clearance opening 10 into the receiving cavity 5. The discharge plate 8 is electrically connected to a battery 11 for providing power. The side of the inner liner 4 is provided with a charging plate 12 that is electrically connected to the battery 11. The charging plate 12 is connected to a charging interface 13 for charging the battery 11. The charging interface 13 is exposed to the outside through the bottom shell 2.

[0033] The inner liner 4 has a connecting flange 14 formed on its edge, and the inner wall of the receiving groove 3 is provided with a supporting flange 15 for supporting the connecting flange 14. The inner liner 4 is paired and arranged in the receiving groove 3 so that the connecting flange 14 and the supporting flange 15 are in contact and connected by adhesive.

[0034] The inner liner 4 and the bottom shell 2 are securely and detachably connected by a contact adhesive structure between the connecting flange 14 and the supporting flange 15. This design ensures structural strength while allowing the accommodating cavity 5 on the inner liner 4 to be used to place corresponding smart glasses, effectively solving the compatibility defects caused by traditional one-to-one exclusive fitting, reducing the resource waste of users who need to purchase multiple dedicated charging cases for multiple pairs of glasses, and improving the versatility of the glasses case.

[0035] In some embodiments, the inner liner 4 is paired with the receiving groove 3 of the bottom shell 2 as an independent module. The inner liner 4 can be replaced with a suitable one according to the size specifications of different smart glasses to ensure the stability and reliability of supporting and storing the smart glasses.

[0036] The mounting groove 7 has a protruding snap-fit ​​bracket 16 inside. There are two snap-fit ​​brackets 16, and the two snap-fit ​​brackets 16 are symmetrically arranged. The snap-fit ​​bracket 16 has a snap-fit ​​groove for matching the battery 11, so that the two ends of the battery 11 are matched and snap-fitted into the snap-fit ​​groove for installation.

[0037] The symmetrically arranged card holders 16 mechanically limit the two ends of the battery 11 through the card slots, ensuring the battery 11 is securely installed during the charging process.

[0038] The discharge plate 8 installed in the mounting groove 7 is powered by the battery 11. The discharge interface 9 extends to the receiving cavity 5 through the avoidance opening 10. The charging plate 12 and the charging interface 13 are integrated into the side of the inner liner 4 and exposed through the bottom shell 2, which ensures the stable installation of the charging components, makes reasonable use of the internal space, avoids component interference, and improves the overall compactness of the charging box structure.

[0039] The discharge plate 8 is connected to a first indicator light 17 for discharge indication, and the boss 6 is provided with a first indicator hole 18 that communicates with the receiving cavity 5.

[0040] The first indicator light 17 on the discharge plate 8 is exposed to the receiving cavity 5 through the first indicator hole 18 on the protrusion 6, forming an intuitive charging status feedback mechanism. Users can directly observe the indicator light status to judge the discharge process, avoiding repeated operations or overcharging due to unclear charging status, thus improving safety and ease of use.

[0041] The bottom shell 2 has a charging opening 19 on its side that communicates with the receiving groove 3, so that the charging interface 13 can be exposed to the outside through the charging opening 19. The charging plate 12 is connected to a second indicator light 20 for charging indication. The bottom shell 2 has a second indicator hole 21 that communicates with the receiving groove 3 on its side.

[0042] The charging opening 19 on the side of the bottom shell 2 exposes the charging interface 13, which, together with the second indicator light 20 connected to the charging board 12, forms a status feedback system. The exposed design of the charging interface 13 facilitates direct plugging and unplugging by the user, while the second indicator light 20 displays the charging status of the battery 11 in real time through the second indicator hole 21, realizing visual monitoring of the charging process.

[0043] Both the charging interface 13 and the discharging interface 9 are composed of Type C interfaces.

[0044] Both charging port 13 and discharging port 9 use Type-C physical interfaces, leveraging their reversible plug-and-play characteristics and wide compatibility to overcome the model limitations of traditional proprietary interfaces. This design ensures reliable electrical connections while adapting to the charging protocols of mainstream smart glasses on the market, achieving "one box, multiple uses" hardware compatibility and improving the versatility and flexibility of the glasses case.

[0045] The protrusion 6 has a limiting block 22 on its side and a mounting groove for matching the limiting block 22 on its side, so that the side of the limiting block 22 is matched and bonded to the mounting groove. The receiving cavity 5 is provided with a charging cable 23 for charging the smart glasses. The side of the limiting block 22 extends with two symmetrically distributed elastic limiting arms 24, so that a holding gap is formed between the two elastic limiting parts. The limiting block 22 can be used to hold the temple of the smart glasses or the charging cable 23 through the elastic limiting arms 24. When the smart glasses do not need to be charged, the charging cable 23 can be matched and held in the holding gap. When the smart glasses are folded and placed in the receiving cavity 5 and charged by connecting the charging cable 23 to the discharge interface 9, the temple of the smart glasses can be folded and held in the holding gap.

[0046] The elastic limiting arm 24 of the limiting block 22 forms a clamping gap, and the double-arm clamping structure enables flexible clamping and limiting of the temples of the smart glasses or the charging cable 23. When the glasses are charging, the temples can be locked into the clamping gap to prevent shaking; when charging is not required, the charging cable 23 can be stored in the clamping gap. This design, through the elastic adaptation of the physical structure, can clamp and limit the temples of different models of glasses to prevent the smart glasses from shaking in the receiving cavity 5, or from falling out of the receiving cavity 5 and colliding with it, thus improving the charging case's ability to safely limit the movement of multiple models of smart glasses.

[0047] Specifically, in this embodiment, both ends of the charging cable 23 are Type-C connectors. The charging cable 23 can be used to connect the discharge interface 9 and the smart glasses, and the charging cable 23 can also be used to connect the charging interface 13 and an external power source.

[0048] The limiting block 22 is made of silicone. The silicone material of the limiting block 22 utilizes its high elasticity and anti-slip properties to ensure clamping force while avoiding indentations or wear on the smart glasses body.

[0049] The specific operating principle in this embodiment is as follows:

[0050] The battery 11 and discharge plate 8 are housed within the mounting groove 7. Simultaneously, the charging plate 12 is mounted on the side of the inner liner 4. The inner liner 4 is then glued to the receiving groove 3 of the bottom shell 2. The discharge interface 9 is exposed on the clearance opening 10, and the charging interface 13 is exposed on the charging opening 19. The top shell 1 and bottom shell 2 are paired and connected to form a receiving space. Combined with the inner liner 4's enveloping housing of the smart glasses, it provides physical protection. The receiving cavity 5 and the protrusion 6 structure of the inner liner 4 form a support. When the smart glasses need charging, they are placed in the receiving cavity 5 and connected to the smart glasses case's discharge interface 9 via the charging cable 23. This allows for charging the smart glasses. Specifically, one end of the charging cable 23 is the input end, which is paired with the Type-C discharge interface 9. The other end of the charging cable 23 can be a Type-C output end or the output end corresponding to the smart glasses. This allows for different charging cables 23 to be used with different smart glasses, or a Type-C port can be provided for the smart glasses' input, thus making both ends of the charging cable 23 Type-C. C, to accommodate smart glasses of different shapes and sizes, all of which use Type-C ports.

[0051] When the smart glasses are placed in the housing cavity 5 for charging, the temples of the smart glasses are folded and held between the holding gaps of the two elastic limiting arms 24. When the glasses case falls from a height, this can reduce the phenomenon of the smart glasses falling out of the housing cavity 5, further enhancing the safety and reliability of storing the smart glasses, while ensuring the stability of the charging of the smart glasses.

[0052] When the smart glasses are taken out for use, the charging cable 23 is stored in the receiving cavity 5 around the protrusion 6 and is held and limited by two elastic limiting arms 24 to reduce the shaking of the charging cable 23, thereby enhancing the storage effect of the charging cable 23.

[0053] In summary, the discharge port 9 of the Type-C port can be connected to the charging cable 23 for charging smart glasses, making it compatible with the charging needs of different smart glasses. Compared with the exclusive compatibility limitations of traditional glasses cases, the discharge port 9 allows multiple models of smart glasses to share the same charging case, enabling the same charging case to meet the charging needs of multiple models of smart glasses. This improves the versatility and flexibility of device use, meets the needs of users who use multiple devices, reduces the cost of repeated purchases and the burden of carrying them when traveling, and the exposed design of the charging port 13 on the side allows it to be connected to a power source to recharge the battery 11, improving the versatility and user experience of the smart glasses case.

[0054] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any way. Although the present utility model has been disclosed above with reference to a preferred embodiment, it is not intended to limit the present utility model. Any person skilled in the art can make some changes or modifications to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present utility model. Any simple modifications, equivalent changes, and modifications made to the above embodiments based on the present utility model without departing from the scope of the present utility model shall fall within the scope of the present utility model.

Claims

1. A charging case for sports smart glasses, comprising a top shell and a bottom shell, the top shell and the bottom shell being paired and connected, such that a receiving space for placing the sports smart glasses is provided between the top shell and the bottom shell, characterized in that: The bottom shell has a receiving groove, and inner liners are paired and arranged in the receiving groove. The inner liner has a receiving cavity for placing the glasses. A raised boss is formed in the middle of the receiving cavity. The bottom of the inner liner has a mounting groove that is recessed into the boss. A discharge plate for discharging is arranged in the mounting groove. A discharge interface is electrically connected to the discharge plate. An avoidance opening is opened on the boss to communicate with the mounting groove and the receiving cavity, so that the discharge interface extends through the avoidance opening into the receiving cavity. A battery for providing power is electrically connected to the discharge plate. A charging plate electrically connected to the battery is arranged on the side of the inner liner. A charging interface for charging the battery is connected to the charging plate. The charging interface is exposed to the outside through the bottom shell.

2. The charging case for sports smart glasses according to claim 1, characterized in that: The inner liner has a connecting flange on its edge, and the inner wall of the receiving groove is provided with a support flange for supporting the connecting flange. The inner liners are paired and arranged in the receiving groove so that the connecting flange and the support flange are in contact and connected by adhesive.

3. The charging case for sports smart glasses according to claim 1, characterized in that: The mounting groove has a raised snap-fit ​​bracket inside. There are two snap-fit ​​brackets, which are symmetrically arranged. The snap-fit ​​brackets have snap-fit ​​slots for matching batteries, so that the two ends of the battery are matched and snapped into the snap-fit ​​slots for installation.

4. The charging case for sports smart glasses according to claim 1, characterized in that: The discharge plate is connected to a first indicator light for discharge indication, and the protrusion has a first indicator hole that communicates with the receiving cavity.

5. The charging case for sports smart glasses according to claim 1, characterized in that: The bottom shell has a charging opening on its side that communicates with the receiving groove, allowing the charging interface to be exposed to the outside through the charging opening. A second indicator light for charging indication is connected to the charging plate, and a second indicator hole that communicates with the receiving groove is provided on the side of the bottom shell.

6. A charging case for sports smart glasses according to any one of claims 1-5, characterized in that: Both the charging and discharging interfaces are composed of Type-C interfaces.

7. A charging case for sports smart glasses according to any one of claims 1-5, characterized in that: The protrusion has a limiting block on its side and a mounting groove for mating and mounting the limiting block on its side, so that the side of the limiting block and the mounting groove are mated and bonded. A charging cable for charging the smart glasses is provided in the receiving cavity. Two symmetrically distributed elastic limiting arms extend from the side of the limiting block, so that a holding gap is formed between the two elastic limiting parts. The limiting block can be used to hold the temple of the smart glasses or the charging cable through the elastic limiting arms. When the smart glasses do not need to be charged, the charging cable can be mated and held in the holding gap. When the smart glasses are folded and placed in the receiving cavity and charged through the charging cable connected to the discharge interface, the temple of the smart glasses can be folded and held in the holding gap.

8. The charging case for sports smart glasses according to claim 7, characterized in that: The limiting block is made of silicone material.