Solar anti-lost device

By introducing solar panels to power the anti-lost device, the problem of short battery life of existing anti-lost devices is solved, long-term use and efficient power supply are achieved, and the user experience is improved.

CN223401293UActive Publication Date: 2025-09-30SHENZHEN DREAMLIFE INNOVATION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422664329.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-09-30
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

Existing anti-lost devices have small battery capacity and cannot last for a long time. They need to be charged frequently, which affects the user experience.

Method used

Solar panels are used to power the anti-lost device. Combined with the PCB board and sound module, the solar panels are used to power the battery module and communication module to extend the battery life.

Benefits of technology

Solar power supply extends the use time of the anti-lost device, reduces the charging frequency, and improves the battery life and user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of anti-lost devices, in particular to a solar anti-lost device. Comprising a shell, a PCB, a sound production module and a battery module, the shell is used for being connected with glasses, a window is formed in one side face of the shell, a solar panel is arranged in the window, the PCB is arranged in the shell and electrically connected with the solar panel, and a communication module electrically connected with the PCB is arranged on the PCB; the PCB is arranged in the shell, the sounding module is arranged in the shell, the sounding module and the solar panel are respectively arranged on two opposite sides of the PCB, the sounding module is electrically connected with the PCB, the battery module is arranged in the shell, and the battery module is electrically connected with the PCB. The problem that an anti-lost device in the prior art needs to be charged frequently and cannot run for a long time is solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of anti-lost devices, in particular to a solar anti-lost device. Background Art

[0002] For people with myopia or who need to wear glasses to correct their vision, glasses have long become an indispensable tool in life. However, some glasses wearers always face the problem of finding their glasses in the room, which is a great trouble for people with limited vision.

[0003] When wearers don't know where they've misplaced their glasses indoors, they can spend a significant amount of time and effort searching for them, severely impacting their daily lives and work. While there are numerous Bluetooth anti-lost devices on the market, many with two-way alarms, the battery capacity and size of these devices, when used on glasses, make them difficult to meet user needs.

[0004] Because the anti-lost device needs to be mounted on glasses for daily use, its weight and size often need to be small to ensure that it does not affect the normal use of the glasses, resulting in a small battery capacity. However, due to the small battery capacity, existing anti-lost devices cannot last long during use and need to be frequently charged, which is inconvenient. Utility Model Content

[0005] The technical problem to be solved by the embodiments of the present invention is to provide a solar anti-lost device to solve the problem that the anti-lost device in the prior art needs to be charged frequently and cannot last for a long time.

[0006] The utility model discloses a solar anti-loss device, comprising: a shell, a PCB board, a sound module and a battery module. The shell is used to be connected to glasses, a window is provided on one side surface of the shell, a solar panel is provided in the window, the PCB board is arranged in the shell, and the PCB board is electrically connected to the solar panel, and a communication module electrically connected to the PCB board is provided on the PCB board; the sound module is arranged in the shell, and the sound module and the solar panel are respectively arranged on opposite sides of the PCB board, the sound module is electrically connected to the PCB board, and the battery module is arranged in the shell, and the battery module is electrically connected to the PCB board.

[0007] Optionally, the shell is provided with an anti-slip cover, the anti-slip cover is provided with a connecting portion, so that the shell is connected to the glasses through the connecting portion, the window is provided on the shell, and the anti-slip cover is provided with a first avoidance groove corresponding to the window.

[0008] Optionally, the window cover is provided with a light-transmitting plate.

[0009] Optionally, the solar anti-loss device also includes a charging module, which is arranged at one end of the shell, and the charging module is electrically connected to the PCB board. The charging module includes a magnetic part and two charging contact pins, and the two charging contact pins are respectively arranged on opposite sides of the magnetic part, and the magnetic part is a magnetic part or a magnetically attractive metal.

[0010] Optionally, the solar anti-loss device further includes a function button, and the function button and the charging module are respectively arranged on opposite sides of the same end of the shell, and the function button and the window are located on the same side.

[0011] Optionally, the shell is further provided with an anti-lost buckle, and the anti-lost buckle is used to connect with other wearable items.

[0012] Optionally, the anti-slip cover is provided with a second avoidance groove corresponding to the anti-lost buckle and a third avoidance groove corresponding to the charging module. The anti-slip cover is also provided with an identification pattern, and the identification pattern is arranged corresponding to the function button.

[0013] Optionally, the communication module is a Bluetooth communication module.

[0014] Optionally, the anti-slip cover is made of silicone.

[0015] Optionally, the connecting portion is a spring clip, or the connecting portion is a magnetic member, or the connecting portion is a sliding sleeve.

[0016] Compared to the prior art, the solar-powered anti-lost device provided by the present invention offers the following advantages: the housing of the device is designed to connect to the eyeglass frame, facilitating connection. A window is provided in the housing, within which a solar panel is installed to power the device. A printed circuit board (PCB) is housed within the housing, primarily used to control the device's sound generation function and connect various components. The PCB is electrically connected to the solar panel, allowing the PCB to receive electrical energy from the panel, ensuring proper operation of the device. A sound module is also provided to provide an audible reminder or alarm when the user needs to locate their glasses, indicating their specific orientation and location. In actual use, the solar-powered anti-lost device, when installed on the eyeglass frame, is compact, lightweight, and therefore minimizes interference with the normal use of the glasses. At the same time, if the glasses are forgotten or lost, the user can send a signal to the communication module in the solar anti-lost device, causing the sound module in the solar anti-lost device to emit a sound, allowing the user to locate and find the glasses. The solar anti-lost device with the above structure can be replenished with power at any time through the solar panel during daily use, which greatly extends the use time and battery life of the solar anti-lost device and reduces the impact of the solar anti-lost device on the glasses and the user during use. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] The technical solution of the present invention will be further described in detail below with reference to the accompanying drawings and embodiments, in which:

[0018] Figure 1 This is a schematic diagram of a solar anti-lost device provided by an embodiment of the present utility model;

[0019] Figure 2 This is the second schematic diagram of the solar anti-lost device provided by the embodiment of the utility model;

[0020] Figure 3 1 is a cross-sectional schematic diagram of a solar anti-lost device provided by an embodiment of the present utility model;

[0021] Figure 4 It is a schematic diagram of a housing provided by an embodiment of the present utility model.

[0022] The reference numerals in the figures are:

[0023] 1000, solar anti-loss device; 100, housing; 101, anti-slip cover; 1011, connecting part; 1012, first avoidance groove; 1013, second avoidance groove; 1014, third avoidance groove; 1015, identification pattern; 1021, window; 1022, solar panel; 200, PCB board; 300, sound module; 400, battery module; 500, light-transmitting plate; 600, charging module; 601, magnetic part; 602, charging contact pin; 700, function button; 800, anti-loss buckle. DETAILED DESCRIPTION

[0024] It should be noted that, in the absence of conflict, the embodiments and features of the embodiments in this application can be combined with each other. Now, in conjunction with the accompanying drawings, a detailed description of the preferred embodiments of the present utility model will be given.

[0025] The present invention provides a solar anti-lost device 1000, such as Figure 1-3 As shown, the solar anti-loss device 1000 includes: a shell 100, a PCB board 200, a sound module 300 and a battery module 400. The shell 100 is used to connect to the glasses. A window 1021 is provided on one side of the shell 100. A solar panel 1022 is provided in the window 1021. The PCB board 200 is arranged in the shell 100, and the PCB board 200 is electrically connected to the solar panel 1022. A communication module electrically connected to the PCB board 200 is provided on the PCB board 200. The sound module 300 is arranged in the shell 100, and the sound module 300 and the solar panel 1022 are respectively arranged on opposite sides of the PCB board 200. The sound module 300 is electrically connected to the PCB board 200. The battery module 400 is arranged in the shell 100, and the battery module 400 is electrically connected to the PCB board 200.

[0026] The housing 100 of the solar-powered anti-lost device 1000 is designed to connect to the frame of glasses, facilitating connection. A window 1021 is provided in the housing 100, and a solar panel 1022 is positioned within the housing 1021 to power the device 1000. A printed circuit board 200 is located within the housing 100. This board is primarily used to control the sound generation function of the device 1000 and connect various components. The PCB 200 is electrically connected to the solar panel 1022, allowing the PCB 200 to receive power from the panel 1022, ensuring proper operation of the device 1000. A sound module 300 is also provided to provide an audible reminder or alarm when the user needs to locate their glasses, indicating their specific location and position. During actual use, a solar anti-loss device 1000 is installed on the frame of the glasses. The solar anti-loss device 1000 has a compact structure, is small in size, and is lightweight, so it can avoid affecting the normal use of the glasses during daily use. At the same time, when the glasses are forgotten or lost, the user can send a signal to the communication module within the solar anti-loss device 1000, causing the sound module 300 within the solar anti-loss device to emit a sound, allowing the user to locate and find the glasses. The solar anti-loss device 1000 with the above structure can be replenished with electricity at any time during daily use through the solar panel 1022. This greatly extends the use time and battery life of the solar anti-loss device 1000 and reduces the impact of the solar anti-loss device 1000 on the glasses and the user during use.

[0027] The solar anti-lost device 1000 can be charged via the solar panel 1022, reducing its reliance on batteries and improving its sustainability and energy efficiency. This extends battery life and reduces the frequency of battery replacements. Furthermore, the battery module 400 provides the power required by the solar anti-lost device 1000. Electrically connected to the PCB 200, the battery module 400 provides a stable power source for the solar anti-lost device 1000, ensuring its reliable and long-term operation.

[0028] Specifically, the sound module 300 is located on the side of the PCB 200 facing away from the solar panel 1022. The sound module 300 is used to emit a sound signal to help the user find their lost glasses. Through the sound prompt, the user can more easily locate the position of the glasses, improving the practicality and ease of use of the solar anti-lost device 1000.

[0029] It should be noted that, in this embodiment, a patch buzzer is used as the sound module 300, making the overall volume more compact and lightweight.

[0030] refer to Figure 1 The outer shell 100 is provided with an anti-slip cover 101, and the anti-slip cover 101 is provided with a connecting portion 1011, so that the outer shell 100 is connected to the glasses through the connecting portion 1011, and a window 1021 is provided on the outer shell 100, and the anti-slip cover 101 is provided with a first avoidance groove 1012 corresponding to the window 1021.

[0031] The solar anti-lost device 1000 is fitted with a protective cover 101 over its housing 100. The anti-slip cover 101 protects the device and provides a stable connection to the eyeglass frame via a connector 1011, enhancing the device's stability. The anti-slip cover 101 secures the device 1000 to the eyeglass frame, preventing it from accidentally slipping or shaking during use, thus improving its safety and stability.

[0032] The connection portion 1011 for connecting to the glasses is located on the anti-slip cover 101. The connection portion 1011 can help the solar anti-lost device 1000 to be easily fixed on the glasses, which can reduce the complexity of the installation between the solar anti-lost device 1000 and the glasses and improve the convenience of using the solar anti-lost device 1000.

[0033] Specifically, the window 1021 is located on the housing 100, and the anti-slip cover 101 is provided with a first avoidance groove 1012 corresponding to the window 1021. This design ensures that the anti-slip cover 101 does not block the window 1021, thereby avoiding interference with the solar panel 1022 installed in the window 1021 and affecting the normal use of the solar anti-lost device 1000.

[0034] refer to Figure 1 and Figure 3 The window 1021 is covered with a light-transmitting plate 500.

[0035] On the one hand, the light-transmitting plate 500 protects the window 1021 and the solar panel 1022 disposed therein, thereby enhancing the sealing of the housing 100 and preventing the external environment from affecting or interfering with the electronic components within the housing 100. On the other hand, the light-transmitting plate 500 is made of a transparent material with a low refractive index for sunlight, allowing sunlight to pass through and directly illuminate the solar panel 1022, thereby ensuring the normal power supply of the solar anti-lost device 1000.

[0036] Specifically, the light-transmitting plate 500 can protect the internal components. The light-transmitting plate 500 can prevent external impurities such as dust and water vapor from entering the interior, protect key components such as the solar panel 1022, and extend the service life of the solar anti-lost device 1000.

[0037] On the other hand, the use of the light-transmitting plate 500 can improve the light transmission performance of the solar anti-lost device 1000, allowing the solar panel 1022 to more easily receive light and charge. This helps to improve the charging efficiency of the solar anti-lost device 1000 and ensure that the solar anti-lost device 1000 can fully utilize solar resources in a well-lit environment.

[0038] It should be noted that, based on the above functional requirements, the light-transmitting plate 500 is usually made of organic glass (acrylic), which is a common light-transmitting material with good light transmission performance and durability. Other materials can also be selected, such as glass, polycarbonate (PC), and polymethyl methacrylate (PMMA).

[0039] refer to Figure 1 and Figure 2 The solar anti-lost device 1000 also includes a charging module 600, which is arranged at one end of the solar anti-lost device 1000. The charging module 600 is electrically connected to the PCB board 200. The charging module 600 includes a magnetic part 601 and two charging contact pins 602. The two charging contact pins 602 are respectively arranged on opposite sides of the magnetic part 601. The magnetic part 601 is a magnetic part or a magnetically attractive metal.

[0040] The charging module 600 is electrically connected to the PCB 200, allowing users to directly charge the solar anti-lost device 1000 to maintain power. The charging module 600 includes a magnetic portion 601 and charging contact pins 602 located on opposite sides of the magnetic portion 601. The magnetic portion 601 is used to magnetically connect to a charger, enhancing the stability and firmness of the connection between the solar anti-lost device 1000 and the charger, thereby ensuring stable and reliable charging of the solar anti-lost device 1000.

[0041] The charging module 600 and the solar panel 1022 transmit external electrical energy to the battery module 400 through the PCB, and the battery module 400 stores the electrical energy.

[0042] Specifically, the two charging contact pins 602 are respectively arranged on both sides of the magnetic part 601, and can maintain a stable electrical connection with the charger after the magnetic part 601 is magnetically connected to the corresponding charger, so as to maintain a stable connection through the charging contact pins 602 to ensure a good charging effect.

[0043] refer to Figure 1 、 Figure 2 and Figure 4The solar anti-lost device 1000 also includes a function button. The function button and the charging module 600 are respectively arranged on opposite sides of the same end of the shell 100, and the function button and the window 1021 are located on the same side.

[0044] The function buttons and charging module 600 are located on opposite sides of the housing 100, making the solar anti-lost device 1000 more rational and compact. This reduces the size and structure of the solar anti-lost device 1000, making it easier for users to use and carry. Furthermore, users can conveniently operate the function buttons and charge the device simultaneously while using the solar anti-lost device 1000, improving user convenience.

[0045] On the other hand, placing the function button and the charging module 600 on opposite sides of the same end of the shell 100 can effectively prevent the user from accidentally touching the function button during the charging operation, reduce the possibility of misoperation of the function button, and thus improve the reliability and stability of the solar anti-loss device 1000.

[0046] Specifically, the function button and the window 1021 are located on the same side because during use, the side of the solar anti-loss device 1000 where the window 1021 is set needs to be set outward to avoid blocking the window 1021 and the solar panel 1022, so that light can pass through the window 1021 to the solar panel 1022. Therefore, the function button is also set on the outward side of the solar anti-loss device 1000, which is convenient for users to operate the buttons of the solar anti-loss device 1000 when wearing glasses, thereby improving the practicality of the solar anti-loss device 1000 and improving the user experience.

[0047] refer to Figure 4 The shell 100 is also provided with an anti-lost buckle 800, which is used to connect with other wearable items.

[0048] The anti-lost buckle 800 can help users connect the solar anti-lost device 1000 directly to a fixed object, or connect it to the object to be prevented from being lost through a connecting piece such as a lanyard. In this way, users can firmly connect the solar anti-lost device 1000 to the object through the anti-lost buckle 800, effectively preventing the object from being lost, and expanding the application range of the solar anti-lost device 1000.

[0049] It is easy to understand that the solar anti-lost device 1000 can be easily hung or carried on the user's body or on items that need to be prevented from being lost, such as hanging it on keys, backpacks, or electronic products through a lanyard through the anti-lost buckle 800. The anti-lost buckle 800 makes the solar anti-lost device 1000 applicable to a variety of devices and items.

[0050] refer to Figure 2 and Figure 4The anti-slip cover 101 is respectively provided with a second avoidance groove 1013 corresponding to the anti-lost buckle 800, and a third avoidance groove 1014 corresponding to the charging module 600. The anti-slip cover 101 is also provided with an identification pattern 1015, which is set corresponding to the function button.

[0051] A second escape groove 1013 is provided on the anti-slip cover 101, corresponding to the anti-loss buckle 800, to prevent the anti-loss buckle 800 from being blocked, allowing it to be exposed and connected to an object or a lanyard. A third escape groove 1014 is also provided, corresponding to the charging module 600, to prevent interference with the normal charging function of the solar anti-loss device 1000.

[0052] The identification pattern 1015 is provided on the anti-slip cover 101 and corresponds to the function button, which helps the user to more easily identify and operate the function button. The presence of the identification pattern 1015 allows the user to quickly find the required function button, improving the efficiency and accuracy of the user's operation of the solar anti-lost device 1000.

[0053] In an optional implementation of the present invention, the communication module is a Bluetooth communication module, which is disposed in the housing 100 and electrically connected to the PCB board 200 .

[0054] The Bluetooth communication module can connect the solar anti-lost device 1000 to a mobile phone or other Bluetooth device to realize the positioning function of the solar anti-lost device 1000. When the user accidentally loses an item, the mobile phone application can trigger the Bluetooth communication module, causing the solar anti-lost device 1000 to emit a sound signal to help the user quickly locate the item.

[0055] Specifically, the Bluetooth communication module can facilitate users to more conveniently use the solar anti-lost device 1000. Users can connect to the solar anti-lost device 1000 through their mobile phones to monitor the location of items in real time, effectively preventing items from being lost or stolen.

[0056] In an optional embodiment of the present invention, the anti-slip cover 101 is made of silicone.

[0057] The anti-slip cover 101 needs to be able to be stably placed on the outer shell 100 to protect the solar anti-lost device 1000. Therefore, the anti-slip cover 101 needs to have a certain protective effect and strong friction with the outer shell 100 to prevent the anti-slip cover 101 from slipping off the outer shell 100. Silicone material itself has excellent anti-slip properties, which can effectively increase the friction between the anti-slip cover 101 and the outer shell 100 of the solar anti-lost device 1000. It also increases the friction between the anti-slip cover 101 and the human hand, reducing the possibility of accidental slipping. The anti-slip properties of silicone material help improve user safety.

[0058] On the other hand, silicone is soft and elastic, giving users a comfortable touch when worn in the hand or on glasses, reducing discomfort during prolonged use. This improves the user experience and makes it more comfortable to use.

[0059] Silicone has good wear resistance and durability, which can effectively extend the service life of the anti-slip cover 101. Silicone generally has good waterproof properties, which can effectively prevent moisture from penetrating into the anti-slip cover 101, protecting the electronic components inside the solar anti-lost device 1000 from damage, thereby extending the service life of the solar anti-lost device 1000.

[0060] In an optional embodiment of the present invention, the connecting portion 1011 is a spring clip, or the connecting portion 1011 is a magnetic member, or the connecting portion 1011 is a sliding sleeve.

[0061] In this embodiment, the connecting portion 1011 is a sliding sleeve, which is a structure provided on the anti-slip sleeve 101 through which the glasses frame can pass, so that the glasses frame can directly pass through the anti-slip sleeve 101, thereby enhancing the stability and firmness of the connection between the solar anti-loss device 1000 and the glasses.

[0062] On the other hand, the user can adjust the position of the solar anti-loss device 1000 on the glasses frame as needed, thereby improving the flexibility of use of the solar anti-loss device 1000.

[0063] In addition to the aforementioned configurations, the connection portion 1011 can be configured in other ways. When the connection portion 1011 is a spring clip, the spring clip can provide a strong clamping force, ensuring a secure connection between the solar anti-lost device 1000 and the eyeglass frame or other object, preventing it from loosening or falling off, and thus increasing the reliability of the solar anti-lost device 1000. The spring clip design is relatively simple, allowing users to easily secure the solar anti-lost device 1000 to the eyeglass frame without complex installation steps, thus improving the ease of use of the solar anti-lost device 1000. The spring clip can adapt to eyeglass frames of different shapes and sizes, providing a certain degree of flexibility and applicability to meet the needs of different users.

[0064] When the connecting part 1011 is a magnetic part, the magnetic part design can achieve quick connection and disassembly. The user only needs to place the solar anti-lost device 1000 close to the glasses frame made of magnetic metal material, so that the solar anti-lost device 1000 can be magnetically connected to the glasses frame. This connection method is more convenient and quick.

[0065] It should be understood that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Those skilled in the art may modify the technical solutions described in the above embodiments, or make equivalent replacements for some of the technical features therein; and all these modifications and replacements should fall within the scope of protection of the claims attached to the present invention.

Claims

1. A solar anti-lost device, characterized in that: include: A housing, the housing being used to connect to the glasses, a side surface of the housing being provided with a window, and a solar panel being provided in the window; A PCB board, the PCB board is arranged in the housing and is electrically connected to the solar panel, and the PCB board is provided with a communication module electrically connected thereto; A sound module, the sound module being disposed in the housing, and the sound module and the solar panel being disposed on opposite sides of the PCB, respectively, and the sound module being electrically connected to the PCB; A battery module is disposed in the housing and is electrically connected to the PCB.

2. The solar anti-lost device according to claim 1, characterized in that: The shell is provided with an anti-slip cover, and the anti-slip cover is provided with a connecting portion so that the shell is connected to the glasses through the connecting portion. The window is provided on the shell, and the anti-slip cover is provided with a first avoidance groove corresponding to the window.

3. The solar anti-lost device according to claim 2, characterized in that: The window upper cover is provided with a light-transmitting plate.

4. The solar anti-lost device according to claim 2, characterized in that: The solar anti-loss device also includes a charging module, which is arranged at one end of the shell and electrically connected to the PCB board. The charging module includes a magnetic part and two charging contact pins, and the two charging contact pins are respectively arranged on opposite sides of the magnetic part. The magnetic part is a magnetic part or a magnetically attractive metal.

5. The solar anti-lost device according to claim 4, characterized in that: The solar anti-lost device also includes a function button, and the function button and the charging module are respectively arranged on opposite sides of the same end of the shell, and the function button and the window are located on the same side.

6. The solar anti-lost device according to claim 5, characterized in that: The shell is also provided with an anti-lost buckle, which is used to connect with other wearable items.

7. The solar anti-lost device according to claim 6, characterized in that: The anti-slip cover is respectively provided with a second avoidance groove corresponding to the anti-lost buckle and a third avoidance groove corresponding to the charging module. The anti-slip cover is also provided with an identification pattern, and the identification pattern is arranged corresponding to the function button.

8. The solar anti-lost device according to any one of claims 1 to 7, characterized in that: The communication module is a Bluetooth communication module.

9. The solar anti-lost device according to claim 2, characterized in that: The anti-slip cover is made of silicone.

10. The solar anti-lost device according to claim 2, characterized in that: The connecting portion is a spring clip, or the connecting portion is a magnetic member, or the connecting portion is a sliding sleeve.