Accessory structure and intelligent glasses assembly
By using a modular external LTE module and an accessory structure powered by an independent power supply, the problems of space occupation and high power consumption of the LTE module are solved, enabling flexible communication and extended battery life for smart glasses.
Patent Information
- Application Number
- CN202520784031.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-23
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-04-23
AI Technical Summary
The LTE module is large and takes up internal space in smart glasses, affecting the appearance and portability. Its high power consumption also shortens the battery life. Existing designs cannot flexibly adapt to network connectivity requirements.
The modular accessory structure places the LTE module outside the smart glasses and connects it to the temples via an electrical connector. It is powered by an independent power supply, enabling flexible communication switching and saving power consumption.
The internal space utilization of the smart glasses has been optimized, improving portability and communication reliability, extending device battery life, and enhancing the wearing experience.
Smart Images

Figure CN223955916U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] Embodiments of the present application relate to the field of wearable technology, and more particularly, to an accessory structure and a smart glasses assembly. BACKGROUND
[0002] LTE module, as a wireless communication module integrating LTE communication technology, plays a vital role in practical applications. However, it also has some short boards that cannot be ignored. Its volume is relatively large, which will occupy more space inside the device; at the same time, the power consumption is maintained at a high level, which poses a challenge to the endurance of the device.
[0003] For example, when integrating the LTE module into smart glasses, on the one hand, the large volume of the module will seriously limit the overall appearance design of the smart glasses, affecting its aesthetic and portability. On the other hand, the high power consumption feature will significantly shorten the endurance time of the smart glasses. In addition, from the use logic, in the environment with stable network connection, the LTE module is actually in the state of unnecessary opening, but the existing design often cannot flexibly adapt to this demand, thereby causing unnecessary resource consumption.
[0004] Therefore, it is necessary to provide a new technical solution to solve the above technical problems. UTILITY MODEL CONTENT
[0005] The purpose of the present application is to provide a new technical solution of an accessory structure and a smart glasses assembly.
[0006] In a first aspect, embodiments of the present application provide an accessory structure. The accessory structure is applied to smart glasses, and the accessory structure comprises: a belt body and an LTE module, wherein the LTE module is arranged on the belt body.
[0007] The end of the belt body is provided with a first electrical connection part, and the first electrical connection part is used to connect with the temple of the smart glasses.
[0008] The LTE module is electrically connected with the first electrical connection part.
[0009] Optionally, the belt body is further provided with a power module, and the power module is electrically connected with the LTE module.
[0010] Optionally, the LTE module is electrically connected with the first electrical connection part through wired connection or wireless connection.
[0011] Optionally, the belt body comprises a first belt body and a second belt body, and the LTE module is located between the first belt body and the second belt body and is connected with the first belt body and the second belt body.
[0012] Optionally, the band body is internally formed with a receiving groove, and the LTE module is embedded in the receiving groove.
[0013] Optionally, the first electrical connection part comprises an interface module or the first electrical connection part comprises electrical contacts.
[0014] Optionally, the first electrical connection part is further provided with a locking component for locking connection with the temple of the smart glasses.
[0015] Optionally, the end of the band body is further provided with a first connection part for mechanical connection with the temple of the smart glasses.
[0016] In a second aspect, the embodiments of the present application further provide a smart glasses assembly. The smart glasses assembly comprises: smart glasses and the accessory structure as described in the first aspect, and the accessory structure is electrically connected with the temple of the smart glasses through the first electrical connection part.
[0017] Optionally, the temple of the smart glasses is provided with a second electrical connection part matched with the first electrical connection part.
[0018] According to the embodiments of the present application, the accessory structure has LTE function. When wearing the smart glasses, the wearer can choose to use the accessory structure according to actual needs. Since the accessory structure with LTE function is used as an accessory of the smart glasses, the LTE module does not need to be built-in the smart glasses, and does not occupy too much space in the smart glasses, and does not affect the appearance of the smart glasses. In addition, the accessory structure with LTE function is used as an accessory, which can save the power consumption of the smart glasses to a certain extent.
[0019] Other features of the present specification and its advantages will become apparent from the following detailed description of exemplary embodiments of the present specification with reference to the drawings. BRIEF DESCRIPTION OF DRAWINGS
[0020] The accompanying drawings, which are incorporated in and constitute a part of the specification, illustrate embodiments of the present specification and, together with the description, serve to explain the principles of the present specification.
[0021] Figure 1 A schematic diagram of an accessory structure provided by an embodiment of the present application is shown Figure 1 .
[0022] Figure 2 A schematic diagram of an accessory structure provided by an embodiment of the present application is shown Figure 2 .
[0023] Figure 3 A schematic diagram of an accessory structure provided by an embodiment of the present application is shown Figure 3 .
[0024] Reference Signs List:
[0025] 1, accessory structure; 10, band body; 11, LTE module; 12, first electrical connection; 13, first connection; 14, power module; 101, first band body; 102, second band body. DETAILED DESCRIPTION
[0026] Various exemplary embodiments of the present application will now be described in detail with reference to the accompanying drawings. If need arises, the relative arrangement of the components and steps set forth in the embodiments, numerical expressions, and numerical values are not limiting to the scope of the present application.
[0027] The following description of at least one exemplary embodiment is merely exemplary in nature and is in no way intended to limit the scope of the application, its application, or uses.
[0028] Techniques and equipment known to those of ordinary skill in the relevant art can not be discussed in detail, but should be considered part of the specification where appropriate.
[0029] In all examples shown and discussed herein, any specific values should be interpreted as merely exemplary, and not as a limitation. Thus, other examples of the exemplary embodiments can have different values.
[0030] It should be noted that like reference numerals and letters refer to like items throughout the attached drawings, and as a result, once an item is defined in one drawing, it need not be discussed further in subsequent drawings.
[0031] The embodiment of the present application provides an accessory structure 1, which has LTE function. The accessory structure 1 solves the technical problem caused by directly integrating LTE module 11 in smart glasses. Specifically, it solves the technical problem that LTE module 11 occupies too much internal space of smart glasses due to its large size, and thus adversely affects the overall appearance design of smart glasses.
[0032] Reference Figures 1-3 The accessory structure 1 includes a band body 10 and an LTE module 11, and the LTE module 11 is arranged on the band body 10. The end of the band body 10 is provided with a first electrical connection 12, which is used to connect with the leg of the smart glasses; the LTE module 11 is electrically connected with the first electrical connection 12.
[0033] In the embodiment of the present application, in view of the structural particularity (large volume of module, more internal integration space occupation) and functional selectivity (as a backup communication scheme in stable network environment) of the LTE module 11, the LTE module 11 is externally arranged in the embodiment of the present application.
[0034] Specifically, by physically separating the LTE module 11 from the smart glasses, a modular smart wearable accessory structure 1 is constructed. In actual use, the accessory structure 1 can be selected for use based on real-time network conditions and personal communication needs, to achieve flexible switching of LTE communication function. This split design not only significantly optimizes the internal space utilization of the smart glasses, but also provides the device with a flexible functional architecture of "on-demand expansion and scene adaptation" through the detachable accessory form, effectively balancing the design contradiction between device portability and communication reliability.
[0035] The components in the accessory structure 1 will be introduced below.
[0036] In the embodiment of the present application, referring to Figures 1-3 , the accessory structure 1 is mainly composed of a band body 10 and an LTE module 11. The band body 10, as a supporting part of the smart wearable device, is specifically a headband design, which can not only be stably worn on the user's head, but also has LTE communication function. The LTE module 11, as a component for realizing wireless communication function, is integrated in the band body 10. The LTE module 11 has strong communication capability, which can ensure that the smart wearable device realizes high-speed and stable data transmission while maintaining portability.
[0037] The LTE module 11 is arranged on the band body 10, for example, the LTE module 11 can be arranged on the band body 10 by mechanical means such as buckle fixing, screw locking, or embedded in the band body 10, so that at least part of the LTE module 11 is firmly arranged in the band body 10.
[0038] In order to ensure communication between the LTE module 11 and the smart glasses when using the accessory structure 1, in the embodiment of the present application, the end of the band body 10 is provided with a first electrical connection part 12, the LTE module 11 is electrically connected with the first electrical connection part 12, and the first electrical connection part 12 is used to connect with the leg of the smart glasses.
[0039] Specifically, the first electrical connection part 12 is arranged at the end of the band body 10, which plays a "bridge" role in communication between the LTE module 11 and the smart glasses. The first electrical connection part 12 plays a role in transmitting electrical signals, ensuring that the data processed by the LTE module 11 can be accurately transmitted to the smart glasses, and also timely returns the instructions and feedback of the smart glasses to the LTE module 11.
[0040] Exemplarily, the first electrical connection part 12 is arranged at at least one end of the band body 10. For example, the band body 10 has two ends connected with the temples of the smart glasses, and each end can be provided with the first electrical connection part 12.
[0041] In addition, in this embodiment, the first electrical connection part 12 is arranged at the end of the band body 10, which also functions to mechanically connect the accessory structure 1 and the smart glasses to some extent. In this way, the accessory structure 1 is combined with the smart glasses, which not only ensures stable transmission of electrical signals, but also ensures stable connection of the two in physical structure.
[0042] Therefore, in the embodiment of the present application, an accessory structure 1 with LTE function is provided. When wearing smart glasses, the wearer can choose to use the accessory structure 1 according to actual needs. Since the accessory structure 1 with LTE function is used as an accessory of the smart glasses, the LTE module 11 does not need to be built-in in the smart glasses, does not occupy too much space in the smart glasses, and does not affect the appearance of the smart glasses. In addition, the accessory structure 1 with LTE function is used as an accessory, which can save the power consumption of the smart glasses to some extent.
[0043] In the embodiment of the present application, with reference to Figure 1 and Figure 3 , the band body 10 is further provided with a power supply module 14, which is electrically connected with the LTE module 11.
[0044] In the prior art, there is a significant problem that the high power consumption of the LTE module 11 greatly consumes the battery of the smart glasses, thereby shortening the endurance time, which reduces the use experience of the wearer.
[0045] Based on this, the embodiment additionally provides a power supply module 14 on the band body 10 of the accessory structure 1. When the wearer wears the smart glasses and uses the accessory structure 1, the LTE module 11 will no longer directly rely on the built-in battery of the smart glasses for power supply, but will be provided with power by the independent power supply module 14 on the band body 10. In this way, the LTE module 11 will not affect the endurance of the smart glasses, and improve the wearing experience of the wearer.
[0046] In some embodiments of the present application, with reference to Figures 1-3 , the LTE module 11 is electrically connected with the first electrical connection part 12 in a wired connection mode or a wireless connection mode.
[0047] In this embodiment, with reference to Figure 1 and Figure 3The LTE module 11 can be electrically connected to the first electrical connection unit 12 via a wired connection, for example, via a data cable. (See reference...) Figure 2 The LTE module 11 can also be electrically connected to the first electrical connection unit 12 via a wireless connection, such as via Bluetooth or Wi-Fi.
[0048] Among them, reference Figure 1 and Figure 3 When the power module 14 is provided in the main body 10, and the LTE module 11 is electrically connected to the first electrical connection part 12 via a wired connection, the power module 14 provided in the main body 10 can serve as a backup power source for the smart glasses. The power module 14 provided in the main body 10 can supply power to the LTE module 11 and other modules inside the smart glasses. That is, when the power module 14 is provided in the main body 10, the LTE module 11 is electrically connected to the first electrical connection part 12 via a wired connection. This wired connection not only carries the transmission of communication signals but also has the function of transmitting electrical energy.
[0049] In the embodiments of this application, reference is made to Figure 1 and Figure 3 The belt body 10 includes a first belt body 101 and a second belt body 102. The LTE module 11 is located between the first belt body 101 and the second belt body 102, and is mechanically connected to the first belt body 101 and the second belt body 102 respectively.
[0050] In this embodiment, the belt body 10 includes a first belt body 101 and a second belt body 102. The LTE module 11 is integrated between the two belt bodies and is mechanically connected to the first belt body 101 and the second belt body 102 respectively to achieve a stable assembly.
[0051] For example, one end of the first strap 101 is connected to the LTE module 11, and the other end of the first strap 101 is provided with a first electrical connection part 12, which is used to connect to the temple of the smart glasses. Similarly, one end of the second strap 102 is connected to the LTE module 11, and the other end of the second strap 102 may also be provided with a first electrical connection part 12, which is used to connect to the temple of the smart glasses.
[0052] The LTE module 11 can be mechanically connected to the first strip 101 and the second strip 102 in the following ways:
[0053] 1) Snap-fit connection: Corresponding snap-fit structures are designed on the first strip body 101 and the second strip body 102, and matching slots or snap-fits are provided on the LTE module 11. Through the tight cooperation between the snap-fits and the slots, a stable connection between the LTE module 11 and the strip body is achieved.
[0054] 2) Screw fixation: screw holes are reserved on the LTE module 11 and the straps, and the LTE module 11 is fixed between the two straps by screws.
[0055] 3) Slot connection: slots are designed on the first strap 101 and the second strap 102, and the LTE module 11 is designed with plug blocks matching the shape of the slots. The LTE module 11 is connected with the straps by the plug blocks and the slots.
[0056] Alternatively, the LTE module 11 has an encapsulation part which is integrally formed with the first strap 101 and the second strap 102. For example, the encapsulation part and the first strap 101 and the second strap 102 are made by injection molding or other integral molding processes.
[0057] In another embodiment, referring to Figure 2 , the strap body 10 is internally formed with a receiving slot, and the LTE module 11 is embedded in the receiving slot.
[0058] In this embodiment, another mechanical way of arranging the LTE module 11 on the strap body 10 is provided. In this way, the strap body 10 is internally formed with a receiving slot of a specific shape and size, and the LTE module 11 is installed in the receiving slot in an embedded manner to achieve close combination with the strap body 10. In addition, the connection strength between the LTE module 11 and the strap body 10 can be enhanced by buckling, adhesive or welding during embedding.
[0059] In some embodiments of the present application, referring to Figures 1-3 , the first electrical connection part 12 includes an interface module or the first electrical connection part 12 includes electrical contacts. Further, the first electrical connection part 12 is further provided with a locking component (not shown in the figure), which is used for locking connection with the temple of the smart glasses.
[0060] In this embodiment, referring to Figure 1 and Figure 3 , the end of the strap body 10 is provided with a first electrical connection part 12 which is used for connection with the temple of the smart glasses. The first electrical connection part 12 can include an interface module, or the first connection part 13 can include electrical contacts.
[0061] The interface module integrates a plurality of electrical connection points for realizing transmission of power, signals or data. Alternatively, the first electrical connection part 12 is designed with electrical contacts to realize electrical connection by bare or covered contacts with conductive materials.
[0062] Exemplarily, in the case where the first electrical connection part 12 includes an interface module, a matching interface is arranged on the temple of the smart glasses to match the interface module.
[0063] The type of the interface module can be selected according to specific requirements, such as USB, Type-C, magnetic interface, etc. The interface on the temple needs to be matched with the interface module in shape, size and connection mode to achieve close and reliable connection.
[0064] The interface module and the interface on the temple are connected by plugging, which is convenient for the wearer to quickly install and remove. In addition, in order to ensure the stability of the connection, the first electrical connection part 12 can be designed with a locking component, such as a buckle, a screw or a magnetic attraction, etc. to prevent the interface module from falling off during wearing, ensuring the reliability of electrical connection and mechanical connection.
[0065] Exemplarily, referring to Figure 2 In the case that the first electrical connection part 12 includes an electrical contact, the temple of the smart glasses is provided with a matching part matched with the electrical contact. The matching part can be a spring structure or a metal contact, etc.
[0066] In addition, in order to ensure the stability of the connection, the first electrical connection part 12 can also be provided with a locking component, for example, the locking component is a groove, the electrical contact is located in the groove, and correspondingly, the temple of the smart glasses is provided with a protrusion, and the matching part is formed on the protrusion, and the connection stability is ensured by the groove-protrusion cooperation. Or the locking component is a magnetic part, the electrical contact and the matching part are connected by magnetic attraction, ensuring the stability of electrical connection and mechanical connection.
[0067] In the alternative embodiment of the present application, referring to Figure 3 The end of the strap body 10 is also provided with a first connection part 13, which is used for mechanical connection with the temple of the smart glasses.
[0068] In this alternative embodiment, the end of the strap body 10 is also provided with a first connection part 13, and the design of the first connection part 13 further ensures the mechanical connection reliability of the accessory structure 1 and the smart glasses.
[0069] Exemplarily, two first connection parts 13 are provided at the end of the strap body 10, and the two first connection parts 13 are respectively located on both sides of the first electrical connection part 12, i.e. the first electrical connection part 12 is located between the two first connection parts 13. The first electrical connection part 12 realizes electrical connection with the temple of the smart glasses, and the first connection part 13 realizes mechanical connection with the temple of the smart glasses.
[0070] Exemplarily, the first connection part 13 can be a magnetic component or a buckle, etc.
[0071] The embodiment of the present application also provides a smart glasses assembly. The smart glasses assembly comprises a smart glasses and an accessory structure 1 as described above, and the accessory structure 1 is electrically connected with the temple of the smart glasses through the first electrical connection part 12.
[0072] In the embodiments of the present application, the smart glasses assembly includes smart glasses and an accessory structure 1 with LTE function. When wearing the smart glasses, the wearer can choose to use the accessory structure 1 according to actual needs. Since the accessory structure 1 with LTE function is used as an accessory of the smart glasses, the LTE module 11 does not need to be built into the smart glasses, does not occupy too much space in the smart glasses, and does not affect the appearance of the smart glasses. In addition, the accessory structure 1 with LTE function is used as an accessory, which can save the power consumption of the smart glasses to a certain extent.
[0073] In the embodiments of the present application, the temple of the smart glasses is provided with a second electrical connection part matched with the first electrical connection part 12.
[0074] In this embodiment, the second electrical connection part is arranged on the temple of the smart glasses, for example, the second electrical connection part is arranged on the side of the temple of the smart glasses away from the frame. The type of the second electrical connection part is matched with the first electrical connection part 12, for example, the second electrical connection part can be a matching interface matched with the interface module or a matching part matched with the electrical contact.
[0075] The above embodiments mainly describe the differences between the embodiments, and the different optimization features between the embodiments can be combined to form a better embodiment as long as they are not contradictory. Considering the brevity of the writing, it will not be repeated here.
[0076] Although some specific embodiments of the present application have been described in detail through examples, those skilled in the art should understand that the above examples are only for illustration, not for limiting the scope of the present application. Those skilled in the art should understand that the above embodiments can be modified without departing from the scope and spirit of the present application. The scope of the present application is defined by the appended claims.
Claims
1. An accessory structure, characterized by, The accessory structure is applied to smart glasses, and comprises a band body (10) and an LTE module (11), wherein the LTE module (11) is arranged on the band body (10); An end of the band body (10) is provided with a first electrical connection part (12) for connecting with a leg of the smart glasses; The LTE module (11) is electrically connected with the first electrical connection part (12).
2. The fitment structure of claim 1, wherein, The band body (10) is further provided with a power module (14) electrically connected with the LTE module (11).
3. The fitment structure of claim 1 or 2, wherein, The LTE module (11) is electrically connected with the first electrical connection part (12) through a wired connection mode or a wireless connection mode.
4. The fitment structure of claim 1, wherein, The band body (10) comprises a first band body (101) and a second band body (102), and the LTE module (11) is located between the first band body (101) and the second band body (102) and is mechanically connected with the first band body (101) and the second band body (102) respectively.
5. The fitment structure of claim 1, wherein, The band body (10) is internally formed with a receiving groove, and the LTE module (11) is embedded in the receiving groove.
6. The fitment structure of claim 1, wherein, The first electrical connection part (12) comprises an interface module or the first electrical connection part (12) comprises an electrical contact.
7. The fitment structure of claim 6, wherein, The first electrical connection part (12) is further provided with a locking part for locking connection with the leg of the smart glasses.
8. The fitment structure of claim 1, wherein, An end of the band body (10) is further provided with a first connection part (13) for mechanically connecting with the leg of the smart glasses.
9. A smart eyewear assembly, characterized by, The smart glasses assembly comprises the smart glasses and the accessory structure (1) according to any one of claims 1-8, and the accessory structure (1) is electrically connected with the leg of the smart glasses through the first electrical connection part (12).
10. The smart glasses assembly of claim 9, wherein, The leg of the smart glasses is provided with a second electrical connection part matched with the first electrical connection part (12).