Smart glasses charging case

By designing an automatic locking and unlocking shell structure in the smart glasses charging case, the problem of insufficient charging stability of lightweight smart glasses is solved, achieving charging stability and reliability with automatic locking and unlocking, thus improving the user experience.

CN116849439BActive Publication Date: 2026-02-03GEER TECH CO LTD
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Patent Information

Application Number
CN202310793667.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-29
Publication Date
2026-02-03
Estimated Expiration
2043-06-29

AI Technical Summary

Technical Problem

In the process of miniaturization, the magnetic charging method of existing smart glasses charging cases results in insufficient charging stability and reliability, which cannot meet the charging needs of lightweight smart glasses.

Method used

A smart glasses charging case has been designed, comprising a shell, a clamping component, and a locking component. Automatic clamping and unlocking are achieved through movable holes and a locking state, ensuring the stability and reliability of the smart glasses during the charging process.

Benefits of technology

It enables automatic locking and unlocking without human intervention, ensuring the stability and reliability of the charging process and improving the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of intelligent glasses charging box, which is used for the charging of intelligent glasses, and the intelligent glasses charging box includes a shell, a compression assembly and a locking assembly.The shell is provided with a containing cavity and a mounting cavity arranged at intervals, and is further provided with a movable hole communicating the containing cavity and the mounting cavity.The containing cavity is used for placing the intelligent glasses.The compression assembly is arranged in the mounting cavity, and the compression assembly is provided with a compression head corresponding to the movable hole.The locking assembly is arranged in the mounting cavity.The intelligent glasses charging box has a locking state in which the locking assembly locks the compression assembly, and an unlocking state in which the locking assembly releases the compression assembly.In the locking state, the compression head penetrates through the movable hole to compress the intelligent glasses.In the unlocking state, the compression head is away from the intelligent glasses.The application aims to provide an intelligent glasses charging box that guarantees charging stability.The intelligent glasses charging box not only guarantees charging stability, but also guarantees reliability, achieving a good charging stability experience.
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Description

Technical Field

[0001] This invention relates to the field of smart glasses technology, and in particular to a smart glasses charging case. Background Technology

[0002] Smart glasses are opto-mechatronic composite products that require electricity to operate. They need to be charged when not in use to ensure sufficient power for future use. As the size of these products decreases, the capacity of their built-in batteries is limited, necessitating a charging case containing a high-capacity rechargeable battery. This large-capacity battery protects the smart glasses and provides them with a power source. However, considering that the charging case is carried by the user and its varying carrying status makes it impossible to determine the charging status of the glasses and the charging terminal. Poor contact will inevitably prevent charging. Therefore, the stability and reliability of charging when the smart glasses are placed in the charging case become crucial. Unstable and unreliable charging directly impacts product performance and user experience.

[0003] In related technologies, charging cases and smart glasses typically use magnetic charging to ensure the alignment and stability of the charging point. However, as the size and weight of smart glasses are decreasing, the space required for magnetic attraction also decreases accordingly, and the magnetic force also weakens. This poses a certain problem for charging stability and may limit the future development of smart glasses. Summary of the Invention

[0004] The main objective of this invention is to provide a smart glasses charging case that ensures charging stability. This smart glasses charging case not only guarantees charging stability but also reliability, thus achieving a good and stable charging experience.

[0005] To achieve the above objectives, the present invention proposes a smart glasses charging case for charging smart glasses, the smart glasses charging case comprising:

[0006] The housing has a spaced-apart accommodating cavity and a mounting cavity, and the housing also has a movable hole connecting the accommodating cavity and the mounting cavity, the accommodating cavity being used to hold smart glasses;

[0007] A clamping assembly, wherein the clamping assembly is disposed within the mounting cavity, and the clamping assembly is provided with a clamping head corresponding to the movable hole; and

[0008] A locking assembly is disposed within the mounting cavity;

[0009] The smart glasses charging case has a locked state in which the locking component locks the pressing component and an unlocked state in which the locking component releases the pressing component.

[0010] In the locked state, the clamping head passes through the movable hole and clamps the smart glasses;

[0011] In the unlocked state, the clamping head is away from the smart glasses.

[0012] In one embodiment, the housing further includes a movable hole communicating with the mounting cavity and the receiving cavity, and the clamping assembly includes:

[0013] A linkage component, movably disposed within the mounting cavity, the linkage component having an abutment portion, at least a portion of the abutment portion movably passing through the moving hole and extending into the receiving cavity; and

[0014] A clamping member is rotatably disposed within the mounting cavity and is connected to the linkage member in a transmission manner; the clamping member is provided with the clamping head.

[0015] The smart glasses press against the abutting part and drive the linkage to move, so that the locking assembly locks the linkage, and the pressing head passes through the movable hole to press the smart glasses.

[0016] In one embodiment, the clamping assembly further includes a reset member, one end of which is connected to the clamping member, and the other end of which elastically abuts against the inner wall of the mounting cavity;

[0017] In the locked state, the clamping member compresses the resetting member to store energy in the resetting member;

[0018] In the unlocked state, the reset member drives the clamping member to rotate, so that the clamping head moves away from the smart glasses.

[0019] In one embodiment, the linkage member has a rack at one end away from the abutment portion, and the clamping member also has a gear, which meshes with the rack.

[0020] When the linkage drives the gear to move, the gear drives the clamping member to rotate, so that the clamping head passes through the movable hole to clamp or move away from the smart glasses.

[0021] In one embodiment, the clamping member includes a rotating part and a clamping part. The rotating part is rotatably disposed within the mounting cavity, and the clamping part is sleeved on the rotating part. The clamping part has a clamping head at one end away from the rotating part, and the rotating part is provided with the gear.

[0022] In one embodiment, the linkage includes a connecting part and a linkage part connected to each other, the abutting part is connected to the end of the connecting part away from the linkage part, and the rack is provided at the end of the linkage part away from the connecting part;

[0023] And / or, the end of the linkage member away from the abutment portion is located between the movable hole and the clamping member, and the linkage member is provided with an avoidance notch corresponding to the movable hole;

[0024] And / or, the gears include two, the clamping part is located between the two gears, and the linkage is provided with the rack for each gear.

[0025] In one embodiment, the housing is further provided with a pressing hole communicating with the mounting cavity, the locking assembly is provided with a fastening part and a pressing part disposed opposite to each other, the pressing part is movably inserted into the pressing hole and protrudes from the outer wall of the housing, and the clamping assembly is provided with a snap-fit ​​part;

[0026] The pressing part is pressed to cause the fastening part to engage or release the fastening part;

[0027] In the locked state, the fastening part engages with the locking part, so that the pressing head presses against the smart glasses;

[0028] In the unlocked state, the fastening part disengages from the locking part.

[0029] In one embodiment, the locking assembly includes a rotating plate and a rotating shaft. The rotating plate is rotatably mounted in the mounting cavity via the rotating shaft and movably abuts against the pressing assembly. One end of the rotating plate is provided with the fastening part, and the pressing part is connected to the end of the rotating plate away from the fastening part.

[0030] In one embodiment, the locking assembly further includes an elastic element, which is sleeved on the rotating shaft. One end of the elastic element elastically abuts against the rotating plate, and the other end of the elastic element elastically abuts against the inner wall of the mounting cavity.

[0031] And / or, the pressing part and the fastening part are located on both sides of the rotating shaft;

[0032] And / or, the rotating plate is provided with two support lugs on the side opposite to the fastening part, the two support lugs are spaced apart, each support lug is provided with a shaft hole, and the rotating shaft rotatably passes through the shaft hole;

[0033] And / or, the rotating plate is provided with a clearance opening at one end adjacent to the pressing part, and the clearance opening is provided corresponding to the pressing assembly;

[0034] And / or, the snap-fit ​​part is a snap hole or a snap groove, and the fastening part is a snap protrusion or a snap buckle.

[0035] In one embodiment, the smart glasses charging case includes two clamping components and two locking components. The two clamping components are spaced apart and located at both ends of the receiving cavity. The receiving cavity is provided with the movable hole corresponding to each clamping head. Each locking component is provided with a corresponding clamping component.

[0036] Alternatively, the smart glasses charging case includes two clamping components and a transmission component. The two clamping components are spaced apart and located at both ends of the receiving cavity. The receiving cavity has a movable hole corresponding to each clamping head. The locking component is connected to the two clamping components through the transmission component.

[0037] The smart glasses charging case of this invention features a housing cavity within the casing, facilitating the placement of smart glasses and enabling both storage and charging. A mounting cavity and a connecting hole connect the housing cavity and the mounting cavity. A clamping component and a locking component are located in the mounting cavity, with the clamping component having a clamping head corresponding to the connecting hole. The locking component allows the charging case to have both locked and unlocked states. In the locked state, the clamping head passes through the connecting hole to clamp the smart glasses, securing them firmly within the housing cavity and preventing movement or displacement. This ensures stable and reliable charging, providing a reliable charging experience. In the unlocked state, the clamping head is removed from the smart glasses, making them easier for the user to retrieve. Attached Figure Description

[0038] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0039] Figure 1 This is a schematic diagram of the structure of a smart glasses charging case according to an embodiment of the present invention;

[0040] Figure 2 This is a partial structural diagram of the smart glasses charging case in one embodiment of the present invention;

[0041] Figure 3 This is a schematic diagram of the mating structure of the pressing component and the locking component of the smart glasses charging case in one embodiment of the present invention;

[0042] Figure 4 This is an exploded view of the clamping and locking components of the smart glasses charging case in one embodiment of the present invention.

[0043] Explanation of icon numbers:

[0044]

[0045]

[0046] The realization of the objective, functional features and advantages of the present invention will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0047] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.

[0048] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present invention are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indication will also change accordingly.

[0049] Meanwhile, the meaning of "and / or" or "and / or" appearing throughout the text is that it includes three options. Taking "A and / or B" as an example, it includes option A, option B, or an option that satisfies both A and B.

[0050] Furthermore, in this invention, descriptions involving "first," "second," etc., are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of that feature. Additionally, the technical solutions of the various embodiments can be combined with each other, but only on the basis of being achievable by those skilled in the art. When the combination of technical solutions is contradictory or impossible to implement, such a combination of technical solutions should be considered non-existent and not within the scope of protection claimed by this invention.

[0051] Smart glasses are opto-mechatronic composite products that require electricity to operate. They need to be charged when not in use to ensure sufficient power for future use. As products become smaller, the capacity of the built-in battery is limited, and current battery technology restricts the ability to achieve a small size with high capacity. The only solution is to use an external rechargeable battery to achieve long battery life for smart glasses. This necessitates an external device similar to a mobile phone power bank, and the best carrier for this device is the glasses case, which requires a charging case containing a high-capacity rechargeable battery. Having a large-capacity rechargeable battery inside the charging case serves two purposes: protecting the smart glasses and providing them with power. However, considering that the charging case is carried by the user and its varying carrying status makes it impossible to determine the charging status of the glasses and the charging terminal. Poor contact will inevitably lead to charging failure. Therefore, the stability and reliability of charging when the smart glasses are placed in the charging case become crucial. Designing a structure or device that ensures stable charging regardless of the relative position of the glasses and the case is essential. Unstable and unreliable charging can directly affect product performance and user experience.

[0052] In related technologies, charging cases and smart glasses typically use magnetic charging to ensure the alignment and stability of the charging point. However, as the size and weight of smart glasses decrease, the space required for magnetic attachment also decreases, resulting in weaker magnetic force. This poses a challenge to charging stability and may limit the future development of smart glasses. Furthermore, with the increasing demand for lightweight and compact smart glasses, existing methods of securing cases using manual locking or magnetic attachment will inevitably fail to meet the future product's fixing requirements.

[0053] People's demands for product convenience are inevitably trending towards stable charging that can be achieved without manual operation. As smart glasses themselves become increasingly lightweight, the cases will inevitably take on more functions. In short, while charging is a strong need, charging stability and the ability to operate without human intervention are primary requirements.

[0054] Based on the above concepts and problems, this invention proposes a smart glasses charging case 100. It is understood that the smart glasses charging case 100 is used to store and charge smart glasses 4. The smart glasses charging case 100 of this application solves the problem of achieving both charging stability and locking simply by placing the smart glasses 4 into the charging case 100 without human intervention, thus reducing the number of operation steps and eliminating human intervention. This smart glasses charging case 100 not only ensures charging stability but also reliability, primarily addressing the charging stability issue and achieving stable charging through an adaptive self-locking device, thereby achieving a good and stable charging experience.

[0055] Please refer to the reference. Figures 1 to 4 As shown, in this embodiment of the invention, the smart glasses charging case 100 includes a housing 1, a pressing component 2, and a locking component 3. The housing 1 has a spaced-apart accommodating cavity 11 and a mounting cavity, and the housing 1 also has a movable hole connecting the accommodating cavity 11 and the mounting cavity. The accommodating cavity 11 is used to place the smart glasses 4. The pressing component 2 is disposed in the mounting cavity, and the pressing component 2 has a pressing head 221 corresponding to the movable hole. The locking component 3 is disposed in the mounting cavity. The smart glasses charging case 100 has a locked state in which the locking component 3 locks the pressing component 2, and an unlocked state in which the locking component 3 releases the pressing component 2. In the locked state, the pressing head 221 passes through the movable hole and presses the smart glasses 4. In the unlocked state, the pressing head 221 moves away from the smart glasses 4.

[0056] In this embodiment, the housing 1 is the main frame structure of the smart glasses charging case 100, used for installing, fixing, protecting and supporting components such as the clamping assembly 2 and the locking assembly 3. That is, the housing 1 provides the mounting base for components such as the clamping assembly 2 and the locking assembly 3. It is understood that the housing 1 can be a box, a case, a mounting shell or a charging case, etc., and is not limited here.

[0057] To provide storage and charging space for the smart glasses 4, the smart glasses charging case 100 has a receiving cavity 11 inside the housing 1. This cavity 11 is used to accommodate and place the smart glasses 4; that is, the receiving cavity 11 can both provide storage space for the smart glasses 4 and enable charging of the smart glasses 4. It is understood that the smart glasses charging case 100 also includes a charging circuit. The receiving cavity 11 also has contact pieces, and the charging circuit is connected to the contact pieces for conductivity. The smart glasses 4 has contacts, so when the smart glasses 4 is placed inside the receiving cavity 11, the contacts abut against the contact pieces for conductivity. Optionally, the charging circuit can be a rechargeable battery, lithium battery, or other structure, and is not limited here.

[0058] To ensure charging stability and reliability, and to secure the smart glasses 4 within the accommodating cavity 11, this embodiment also includes an installation cavity within the housing 1. This installation cavity is spaced apart from the accommodating cavity 11. In other words, the accommodating cavity within the housing 1 can be divided into the installation cavity and the accommodating cavity 11 by means of structures such as brackets, partitions, or support parts. It is understood that, for ease of handling the smart glasses 4, the housing 1 comprises a bottom shell and a top cover. The bottom shell has an accommodating groove, and the top cover opens or closes the accommodating groove of the bottom shell, allowing the top cover and bottom shell to cooperate and form the accommodating cavity 11.

[0059] Understandably, the upper cover and lower cover of housing 1 can be separately and independently configured, and detachably connected, to allow the upper cover to open or close the receiving slot of the lower cover for easy access to the smart glasses 4. Alternatively, the upper cover can be rotatably connected to the lower cover, facilitating the opening and closing of the receiving slot and allowing easy access to the smart glasses 4; this is not a limitation. In this embodiment, the lower cover is provided with a bracket or partition structure, dividing the cavity within the lower cover into an installation cavity. This bracket or partition structure is recessed into the installation cavity to form a receiving slot, facilitating the placement and support of the smart glasses 4.

[0060] In this embodiment, the mounting cavity of the housing 1 is used to install and protect the charging circuit, battery, circuit board, and other components of the smart glasses charging case 100. To secure the smart glasses 4 placed within the receiving cavity 11 and ensure the stability and reliability of the smart glasses 4 during charging, the housing 1 also has a movable hole connecting the receiving cavity 11 and the mounting cavity. A clamping component 2 and a locking component 3 are provided within the mounting cavity, such that the clamping component 2 has a clamping head 221 corresponding to the movable hole. The locking component 3 is used to lock or unlock the clamping component 2, giving the smart glasses charging case 100 both a locked and unlocked state. In the locked state, the clamping head 221 passes through the movable hole to clamp the smart glasses 4, thereby securing and clamping the smart glasses 4 to ensure stability and reliability during charging. Simultaneously, in the unlocked state, the clamping head 221 moves away from the smart glasses 4, thereby releasing or unlocking the smart glasses 4 for easy access by the user.

[0061] Understandably, the locking component 3 can be either an intelligent electric locking structure or a manual locking structure. To facilitate the self-adaptive locking of the smart glasses 4 by locking the clamping component 2, a sensor for sensing whether the smart glasses 4 are inside the accommodating cavity 11 can also be provided on the clamping component 2, or the sensing of the smart glasses 4 can be achieved through a mechanical structure; no limitation is made here.

[0062] The smart glasses charging case 100 of the present invention provides a receiving cavity 11 within the housing 1, which facilitates the placement of smart glasses 4. This allows for both storage and charging of the smart glasses 4. Furthermore, the housing 1 includes an installation cavity and a movable hole connecting the receiving cavity 11 and the installation cavity. A pressing component 2 and a locking component 3 are positioned within the installation cavity. The pressing component 2 has a pressing head 221 corresponding to the movable hole. The locking component 3 locks or releases the pressing component 2, giving the smart glasses charging case 100 a locked and unlocked state. In the locked state, the pressing head 221 passes through the movable hole to press the smart glasses 4 firmly within the receiving cavity 11, preventing shaking or displacement and ensuring the charging stability and reliability of the smart glasses 4, resulting in a stable charging experience. In the unlocked state, the pressing head is removed from the smart glasses 4, making it easier for the user to retrieve the smart glasses 4.

[0063] In one embodiment, the housing 1 is further provided with a movable hole connecting the mounting cavity and the receiving cavity 11. The pressing assembly 2 includes a linkage 21 and a pressing member 22. The linkage 21 is movably disposed in the mounting cavity and is provided with an abutment portion 211. At least part of the abutment portion 211 moves through the movable hole and extends into the receiving cavity 11. The pressing member 22 is rotatably disposed in the mounting cavity and is connected to the linkage 21 in a transmission manner. The pressing member 22 is provided with a pressing head 221. The smart glasses 4 presses against the abutment portion 211 and drives the linkage 21 to move so that the locking assembly 3 locks the linkage 21, and the pressing head 221 passes through the movable hole to press the smart glasses 4.

[0064] In this embodiment, as Figures 1 to 4 As shown, by providing a movable hole on the accommodating cavity 11 of the housing 1, and setting the clamping assembly 2 as a two-part structure of a linkage 21 and a clamping member 22, at least part of the abutting part 211 of the linkage 21 moves through the movable hole and extends into the accommodating cavity 11. In this way, the abutting part 211 can be used to mechanically sense whether the accommodating cavity 11 contains smart glasses 4.

[0065] Understandably, by rotating the clamping member 22 into the mounting cavity and connecting it with the linkage member 21, and by providing a clamping head 221 on the clamping member 22, when the smart glasses 4 presses against the abutting part 211 and drives the linkage member 21 to move, the locking assembly 3 locks the linkage member 21, and the clamping head 221 passes through the movable hole to clamp the smart glasses 4, thereby enabling the clamping assembly 2 to achieve adaptive clamping and locking of the smart glasses 4 in the receiving cavity 11.

[0066] To facilitate the automatic reset of the abutment portion 211 of the linkage 21 and the clamping head 221 of the clamping member 22 after unlocking, in one embodiment, the clamping assembly 2 further includes a reset member 23. One end of the reset member 23 is connected to the clamping member 22, and the other end of the reset member 23 elastically abuts against the inner wall of the mounting cavity. In the locked state, the clamping member 22 compresses the reset member 23 to store energy. In the unlocked state, the reset member 23 drives the clamping member 22 to rotate so that the clamping head 221 moves away from the smart glasses 4.

[0067] In this embodiment, as Figures 2 to 4 As shown, the reset member 23 is disposed within the mounting cavity. One end of the reset member 23 is connected to the clamping member 22, and the other end of the reset member 23 elastically abuts against the inner wall of the mounting cavity. Thus, the reset member 23 automatically resets the abutment portion 211 of the linkage member 21 and the clamping head 221 of the clamping member 22, thereby simplifying the structure and avoiding manual operation. Optionally, the reset member 23 can be a reset spring or a return torsion spring.

[0068] Understandably, the reset member 23 has a spirally arranged main body with a cavity. The reset member 23 also has a fixed end and an elastic end connected to both ends of the main body. The reset member 23 is sleeved on the clamping member 22 through the cavity of the main body and fixed to the clamping member 22 by the fixed part. The elastic end elastically abuts against the inner wall of the mounting cavity. Thus, when the smart glasses 4 presses against the abutting part 211 and drives the linkage 21 to move, the clamping member 22 drives the clamping head 221 to pass through the movable hole and clamp the smart glasses 4, so that the reset member 23 stores energy. Thus, after the unlocking state, the reset member 23 drives the clamping member 22 to rotate, so that the clamping head 221 moves away from the smart glasses 4.

[0069] In one embodiment, the end of the linkage 21 away from the abutment 211 is provided with a rack 212, and the clamping member 22 is also provided with a gear 222, which meshes with the rack 212; wherein, when the linkage 21 drives the gear 222 to move, the gear 222 drives the clamping member 22 to rotate, so that the clamping head 221 passes through the movable hole to clamp or move away from the smart glasses 4.

[0070] In this embodiment, as Figures 2 to 4 As shown, by setting a rack 212 on the linkage 21 and a gear 222 on the clamping member 22, when the linkage 21 moves, it drives the rack 212 to move, thereby causing the rack 212 to drive the gear 222 to rotate. In this way, the clamping member 22 drives the clamping head 221 to rotate, so that the clamping head 221 passes through the movable hole to clamp or move away from the smart glasses 4.

[0071] Understandably, the extending direction of rack 212 is the same as the moving direction of linkage 21. In this example, as... Figures 2 to 4As shown, the linkage 21 includes a connecting part 213 and a linkage part 214 connected to each other. The abutting part 211 is connected to the end of the connecting part 213 away from the linkage part 214. The end of the linkage part 214 away from the connecting part 213 is provided with a rack 212.

[0072] In this embodiment, the abutting portion 211, connecting portion 213, and linkage portion 214 of the linkage member 21 can be selected as an integrally formed structure, which can improve the structural strength and consistency of the linkage member 21. Optionally, the abutting portion 211 and the linkage portion 214 are arranged in parallel. It is understood that the linkage member 21 can be selected as a U-shaped structure. A rack 212 is provided at the end of the linkage portion 214 away from the connecting portion 213.

[0073] It should be noted that a sliding groove is provided on the inner wall of the mounting cavity, and the linkage 21 is slidably disposed within this sliding groove. That is, the sliding groove provides movement guidance and limitation for the movement of the linkage 21. In this embodiment, as... Figures 2 to 4 As shown, the end of the linkage 21 away from the abutment 211 is located between the movable hole and the clamping member 22, and the linkage 21 is provided with an avoidance notch 215 corresponding to the movable hole.

[0074] In one embodiment, the clamping member 22 includes a rotating part 223 and a clamping part 224. The rotating part 223 is rotatably disposed in the mounting cavity, and the clamping part 224 is sleeved on the rotating part 223. A clamping head 221 is provided at one end of the clamping part 224 away from the rotating part 223, and a gear 222 is provided on the rotating part 223.

[0075] In this embodiment, as Figures 2 to 4 As shown, the cavity wall of the mounting cavity is provided with a shaft hole or a mounting lug. The rotating part 223 of the clamping member 22 can be a rotating shaft structure. Both ends of the rotating part 223 are rotatably inserted through the shaft hole or rotatably connected to the mounting lug. The clamping part 224 is sleeved on the rotating part 223, and a clamping head 221 is provided at the end of the clamping part 224 away from the rotating part 223. It can be understood that the clamping part 224 and the rotating part 223 can be a separate structure or an integral structure, which is not limited here.

[0076] Understandably, the rotating part 223 of the clamping member 22 is equipped with a gear 222. Thus, the clamping member 22 can be rotatably installed in the mounting cavity through the rotating part 223, and can also be connected to the linkage member 21 through the gear 222. When the linkage member 21 moves, the rack 212 moves with the linkage member 21, causing the gear 222 to drive the clamping member 22 to rotate, thereby realizing the rotation of the clamping head 221 to swing through the clearance notch 215 and the movable hole.

[0077] To further improve the stability and balance of the transmission connection between the clamping component 22 and the linkage component 21, such as Figures 2 to 4As shown, there are two gears 222, and the clamping part 224 is located between the two gears 222. The linkage 21 is provided with a rack 212 corresponding to each gear 222.

[0078] In one embodiment, the housing 1 is further provided with a pressing hole 12 communicating with the mounting cavity, and the locking assembly 3 is provided with a fastening part 31 and a pressing part 32 disposed opposite to each other. The pressing part 32 is movably inserted into the pressing hole 12 and protrudes from the outer wall of the housing 1. The pressing assembly 2 is provided with a locking part 216. The pressing part 32 is pressed to make the fastening part 31 engage or release the locking part 216. In the locked state, the fastening part 31 engages with the locking part 216 so that the pressing head 221 presses the smart glasses 4. In the unlocked state, the fastening part 31 disengages from the locking part 216.

[0079] In this embodiment, as Figures 1 to 4 As shown, the locking assembly 3 can be configured as an automatic locking and manual unlocking structure. By providing a latching part 31 and a pressing part 32 on the locking assembly 3, the pressing part 32 is movably inserted into the pressing hole 12 and protrudes from the outer wall of the housing 1. The locking part 216 engages or disengages from the locking part 216 of the pressing assembly 2, thereby enabling the locking assembly 3 to lock or unlock and release the pressing assembly 2.

[0080] Understandably, the snap-fit ​​part 216 can be a snap-fit ​​hole or a snap-fit ​​groove, and the fastening part 31 can be a snap-fit ​​protrusion or a snap-fit. In this embodiment, the linkage part 214 of the linkage member 21 in the pressing assembly 2 is provided with the snap-fit ​​part 216, and the fastening part 31 and the pressing part 32 of the locking assembly 3 can optionally be provided on opposite sides of the locking assembly 3.

[0081] In one embodiment, such as Figures 2 to 4 As shown, the locking assembly 3 includes a rotating plate 33 and a rotating shaft 34. The rotating plate 33 is rotatably installed in the mounting cavity through the rotating shaft 34 and movably abuts against the pressing assembly 2. One end of the rotating plate 33 is provided with a fastening part 31, and a pressing part 32 is connected to the end of the rotating plate 33 away from the fastening part 31.

[0082] In this embodiment, the inner wall of the mounting cavity is provided with a rotating hole or a rotating lug. The locking assembly 3 is rotatably inserted through the rotating hole or rotatably connected to the rotating lug via a rotating shaft 34, and the rotating plate 33 is rotatably sleeved on the rotating shaft 34. It is understood that one end of the rotating plate 33 is provided with a fastening part 31, and the other end of the rotating plate 33 is connected to a pressing part 32. The fastening part 31 and the pressing part 32 are located on opposite sides of the rotating plate 33 and protrude or extend in opposite directions. Optionally, the pressing part 32 and the fastening part 31 are located on opposite sides of the rotating shaft 34.

[0083] To achieve automatic reset of the pressing part 32, in one embodiment, such as Figures 2 to 4As shown, the locking assembly 3 also includes an elastic element 35, which is sleeved on the rotating shaft 34. One end of the elastic element 35 elastically abuts against the rotating plate 33, and the other end of the elastic element 35 elastically abuts against the inner wall of the mounting cavity.

[0084] Understandably, the elastic element 35 can be selected as a return spring or a rebound torsion spring. To facilitate the installation of the elastic element 35 and improve installation stability, the rotating plate 33 has two support lugs 331 on the side facing away from the fastening part 31. The two support lugs 331 are spaced apart, and each support lug 331 has a shaft hole through which the rotating shaft 34 rotatably passes. Optionally, the elastic element 35 is located between the two support lugs 331.

[0085] To facilitate user pressing of the pressing part 32, in this embodiment, the rotating plate 33 is also provided with a clearance opening 332 at one end adjacent to the pressing part 32. The clearance opening 332 is provided corresponding to the pressing component 2. It can be understood that when the pressing part 32 is pressed, allowing the rotating plate 33 to rotate around the rotating shaft 34, the clearance opening 332 of the rotating plate 33 provides clearance space for the linkage 21 of the pressing component 2.

[0086] In one embodiment, the smart glasses charging case 100 includes two clamping components 2 and two locking components 3. The two clamping components 2 are spaced apart and located at both ends of the receiving cavity 11. The receiving cavity 11 is provided with a movable hole corresponding to each clamping head 221. Each locking component 3 is provided with a corresponding clamping component 2.

[0087] Understandably, each locking component 3 is correspondingly set with a pressing component 2, so that the locking component 3 and the pressing component 2 cooperate to form a locking mechanism. By setting two sets of locking components 3 and pressing components 2 cooperative structures (i.e. two locking mechanisms), the smart glasses 4 in the accommodating cavity 11 can be stably pressed and fixed by the two locking mechanisms, thereby further improving the charging stability and reliability.

[0088] In this embodiment, two locking mechanisms are disposed at both ends of the receiving cavity 11, that is, the two locking mechanisms respectively press and fix the two ends of the smart glasses 3 inside the receiving cavity 11. Optionally, the two locking mechanisms are arranged symmetrically. Of course, in other embodiments, the two locking mechanisms may also be arranged at intervals, which is not limited here.

[0089] In one embodiment, the smart glasses charging case 100 includes two clamping components 2 and a transmission component. The two clamping components 2 are spaced apart and located at both ends of the receiving cavity 11. The receiving cavity 11 is provided with a movable hole corresponding to each clamping head 221. The locking component 3 is connected to the two clamping components 2 through the transmission component.

[0090] Understandably, by setting two clamping components 2, the two clamping components 2 are connected to the locking component 3 through a transmission component, so that the locking component 3 can be used to control the locking or unlocking of the two clamping components 2 simultaneously through the transmission component.

[0091] In this embodiment, when the smart glasses 4 are placed in the accommodating cavity 11, they simultaneously press against the abutment portions 211 of the two pressing components 2. The two abutment portions 211 respectively drive the linkage members 211 to move downward, so that the rack 212 of each linkage member 211 drives the gear 222 of each pressing member 22 to rotate, thereby driving the pressing head 221 of each pressing member 22 to rotate, so as to pass through the movable hole and press against the smart glasses 4. When the pressing portion 21 on the outside of the housing 1 is pressed, the rotating plate 33 is driven to rotate, so that the fastening portion 31 disengages from the locking portion 216 of the linkage member 21, so that the pressing component 2 is reset under the action of the reset member 23. At the same time, the pressing portion 21 drives the transmission member to move together, so that the other pressing component 2 is reset under the action of the reset member 23.

[0092] Understandably, the smart glasses charging case 100 includes two pressing components 2, two locking components 3, and a transmission component. Each locking component 3 is set to correspond to one pressing component 2. Only one of the two locking components 3 has a pressing part 32, while the other does not. When the pressing part 32 is pressed, the transmission component drives the rotating plate 33 of the other locking component 3 to rotate, so that the fastening part 31 disengages from the locking part 216 of the linkage 21, and the pressing component 2 is reset under the action of the reset component 23. This is not limited here.

[0093] During use, when the smart glasses 4 are placed into the receiving cavity 11 of the housing 1, the smart glasses 4 are triggered and press against the abutment part 211 under their own weight or external force. The abutment part 211 drives the linkage 21 to move downward, and when it drives the rack 212 to move, it drives the gear 222 to rotate, so that the gear 222 drives the pressing head 221 of the pressing member 22 to rotate, and the pressing head 221 of the pressing member 22 passes through the movable hole and extends into the receiving cavity 11 to press the smart glasses 4 in the receiving cavity 11. At this time, the reset member 23 is in the force storage stage. At the same time, when the linkage 21 moves downward, it slides relative to the fastening part 31 of the locking assembly 3, and the fastening part 31 is engaged with the locking part 214. The locking part 216 is used to lock the smart glasses 4, preventing the entire clamping assembly 2 from moving upwards and thus ensuring stability and reliability during charging. To remove the smart glasses 4 from the charging case 100, the pressing part 32 protruding from the housing 1 of the locking assembly 3 is pressed, causing the rotating plate 33 to rotate around the rotating shaft 34. This causes the latching part 31 to disengage from the locking part 216. The gear 222 rotates under the action of the reset member 23 and drives the linkage member 21 of the clamping assembly 2 to move upwards, thereby causing the clamping head 221 to retract into the movable hole to release the smart glasses 4. This allows the user to easily remove the smart glasses 4 from the housing cavity 11.

[0094] Understandably, in the locked state, the elastic element 35 of the locking component 3 keeps the latching part 31 always within the corresponding hole engagement part 216, and the entire mechanism is locked when the pressing part 32 is not pressed by external force. In the unlocked state, after unlocking, the elastic element 35 can ensure that there is torque when the product is pressed, and once the pressing part 32 is pressed, the elastic element 35 is in a force-releasing state, releasing the smart glasses 4.

[0095] The above description is merely an optional embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structural transformations made under the concept of the present invention using the description and drawings of the present invention, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present invention.

Claims

1. A smart glasses charging case for charging smart glasses, characterized in that, The smart glasses charging case includes: The housing has a spaced-apart accommodating cavity and a mounting cavity, and the housing also has a movable hole connecting the accommodating cavity and the mounting cavity, and a sliding hole connecting the mounting cavity and the accommodating cavity, wherein the accommodating cavity is used to hold smart glasses; A clamping assembly is disposed within the mounting cavity. The clamping assembly has a clamping head corresponding to the movable hole. The clamping assembly includes a linkage member and a clamping member. The linkage member is movably disposed within the mounting cavity and has an abutment portion. At least a portion of the abutment portion movably passes through the movable hole and extends into the receiving cavity. The clamping member is rotatably disposed within the mounting cavity and is drively connected to the linkage member. The clamping member has the clamping head. A locking assembly is provided in the mounting cavity. The smart glasses press against the abutment part and drive the linkage to move so that the locking assembly locks the linkage, and the pressing head passes through the movable hole to press the smart glasses. The smart glasses charging case has a locked state in which the locking component locks the pressing component and an unlocked state in which the locking component releases the pressing component. In the locked state, the clamping head passes through the movable hole and clamps the smart glasses; In the unlocked state, the clamping head is away from the smart glasses.

2. The smart glasses charging case as described in claim 1, characterized in that, The clamping assembly further includes a reset member, one end of which is connected to the clamping member, and the other end of which elastically abuts against the inner wall of the mounting cavity. In the locked state, the clamping member compresses the resetting member to store energy in the resetting member; In the unlocked state, the reset member drives the clamping member to rotate, so that the clamping head moves away from the smart glasses.

3. The smart glasses charging case as described in claim 1, characterized in that, The linkage component is provided with a rack at one end away from the abutment portion, and the clamping component is also provided with a gear, which meshes with the rack. When the linkage drives the gear to move, the gear drives the clamping member to rotate, so that the clamping head passes through the movable hole to clamp or move away from the smart glasses.

4. The smart glasses charging case as described in claim 3, characterized in that, The clamping component includes a rotating part and a clamping part. The rotating part is rotatably disposed within the mounting cavity. The clamping part is sleeved on the rotating part. The clamping part has a clamping head at one end away from the rotating part. The rotating part is provided with the gear.

5. The smart glasses charging case as described in claim 4, characterized in that, The linkage component includes a connecting part and a linkage part connected to each other. The abutting part is connected to the end of the connecting part away from the linkage part, and the linkage part is provided with the rack at the end away from the connecting part. And / or, the end of the linkage member away from the abutment portion is located between the movable hole and the clamping member, and the linkage member is provided with an avoidance notch corresponding to the movable hole; And / or, the gears include two, the clamping part is located between the two gears, and the linkage is provided with the rack for each gear.

6. The smart glasses charging case as described in any one of claims 1 to 5, characterized in that, The housing is also provided with a pressing hole communicating with the mounting cavity. The locking assembly is provided with a fastening part and a pressing part that are arranged opposite to each other. The pressing part is movably inserted into the pressing hole and protrudes from the outer wall of the housing. The clamping assembly is provided with a snap-fit ​​part. The pressing part is pressed to cause the fastening part to engage or release the fastening part; In the locked state, the fastening part engages with the locking part, so that the pressing head presses against the smart glasses; In the unlocked state, the fastening part disengages from the locking part.

7. The smart glasses charging case as described in claim 6, characterized in that, The locking assembly includes a rotating plate and a rotating shaft. The rotating plate is rotatably mounted in the mounting cavity via the rotating shaft and movably abuts against the pressing assembly. One end of the rotating plate is provided with the fastening part, and the pressing part is connected to the end of the rotating plate away from the fastening part.

8. The smart glasses charging case as described in claim 7, characterized in that, The locking assembly further includes an elastic element, which is sleeved on the rotating shaft. One end of the elastic element elastically abuts against the rotating plate, and the other end of the elastic element elastically abuts against the inner wall of the mounting cavity. And / or, the pressing part and the fastening part are located on both sides of the rotating shaft; And / or, the rotating plate is provided with two support lugs on the side opposite to the fastening part, the two support lugs are spaced apart, each support lug is provided with a shaft hole, and the rotating shaft rotatably passes through the shaft hole; And / or, the rotating plate is provided with a clearance opening at one end adjacent to the pressing part, and the clearance opening is provided corresponding to the pressing assembly; And / or, the snap-fit ​​part is a snap hole or a snap groove, and the fastening part is a snap protrusion or a snap buckle.

9. The smart glasses charging case as described in claim 1, characterized in that, The smart glasses charging case includes two clamping components and two locking components. The two clamping components are spaced apart and located at both ends of the receiving cavity. The receiving cavity is provided with the movable hole corresponding to each clamping head. Each locking component is provided with a corresponding clamping component. Alternatively, the smart glasses charging case includes two clamping components and a transmission component. The two clamping components are spaced apart and located at both ends of the receiving cavity. The receiving cavity has a movable hole corresponding to each clamping head. The locking component is connected to the two clamping components through the transmission component.

Citation Information

Patent Citations

  • VR glasses storage box with protection function

    CN214179462U