Gesture lamp

By introducing a rechargeable power supply component and a detachable solar module into the gesture light, the problems of uneconomical and inconvenient power supply for the gesture light are solved. This enables the power supply component to be recycled and charged conveniently, protects the LED beads, and improves ease of use and environmental friendliness.

CN224150850UActive Publication Date: 2026-04-21ALADDIN ZHIXING (DONGGUAN) LIGHTING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ALADDIN ZHIXING (DONGGUAN) LIGHTING CO LTD
Filing Date
2025-04-28
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Current gesture lights rely on disposable dry batteries or rechargeable lithium batteries for power, which is neither economical nor convenient, and charging is inconvenient.

Method used

Design a gesture light that uses a rechargeable power supply component and is equipped with a detachable solar module. The solar panel converts light energy into electrical energy to charge the power supply component.

Benefits of technology

It enables the recycling of power components, is economical and environmentally friendly, provides convenient power supply without the need for additional charging, protects LED beads, and enhances visual effects and ease of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a gesture lamp, which belongs to the technical field of lamp structures, and comprises a lamp body and a solar module, the lamp body comprises a lamp panel and a rechargeable power supply assembly, a plurality of LED lamp beads are arranged on one side of the lamp panel, the plurality of LED lamp beads can form different patterns, and the lamp panel is provided with a plurality of LED lamp beads. The lamp panel is arranged on the lamp body, the LED lamp beads are arranged on the lamp panel, the rechargeable power supply assembly is arranged on the lamp panel, electrically connected with the LED lamp beads and used for supplying power to the LED lamp beads, and the solar module is detachably connected to the lamp body and used for charging the power supply assembly. When the gesture lamp is used, the solar module is taken out and connected to the lamp body, power supply is convenient, and the gesture lamp does not need to be additionally taken down for charging.
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Description

Technical Field

[0001] This utility model relates to the technical field of lamp structure, and in particular to a gesture lamp. Background Technology

[0002] A hand signal light is a light used to warn other vehicles or pedestrians at night or in low-light conditions. It is usually battery-powered and fixed in a position such as a car window, and is an important automotive safety feature.

[0003] Most existing hand gesture lights rely on disposable dry cell batteries or rechargeable lithium batteries to power them, enabling them to light up and display different hand gestures or facial expressions. However, dry cell batteries can only be replaced and cannot be recycled, making them uneconomical and environmentally unfriendly. While rechargeable lithium batteries can be reused, when they run out of power, the hand gesture light still needs to be taken to a power source for charging, which is neither convenient nor economical.

[0004] There is currently no publicly available technical solution for designing a gesture light that is economical, environmentally friendly, and conveniently powered. Utility Model Content

[0005] In view of this, the purpose of this utility model is to provide a gesture light to solve the technical problem that gesture lights in the prior art cannot simultaneously achieve economy, environmental protection and convenient power supply.

[0006] This utility model provides a gesture light, including a light fixture body and a solar module, wherein the light fixture body includes:

[0007] The light panel has multiple LED beads on one side, and the multiple LED beads can form different patterns;

[0008] A rechargeable power supply component is disposed on the lamp board and electrically connected to the LED beads for supplying power to the LED beads;

[0009] The solar module is detachably connected to the lamp body and is used to charge the power supply component.

[0010] Optionally, the solar module includes a solar panel and a charging male connector, wherein the solar panel is used to convert light energy into electrical energy, and the charging male connector is electrically connected to the solar panel;

[0011] The power supply assembly includes a power supply body and a charging female connector. Both the charging female connector and the power supply body are mounted on the lamp board. The charging female connector and the power supply body are electrically connected, and the charging male connector is plugged into the charging female connector.

[0012] Optionally, the power supply body includes at least one button rechargeable battery, which is disposed on the side of the lamp panel facing away from the LED beads.

[0013] Optionally, it also includes:

[0014] A first reinforcing plate is disposed on the side of the lamp board with LED beads. The first reinforcing plate has a receiving hole, and the LED beads are located in the receiving hole.

[0015] A first shielding plate is disposed on the side of the first reinforcing plate facing away from the lamp plate and covers the receiving hole. The first shielding plate is light-transmitting.

[0016] Optionally, the lamp body further includes a vacuum suction cup, and the vacuum suction cup is provided in a plurality of them and is disposed on the side of the first shielding plate facing away from the first reinforcing plate.

[0017] Optionally, the vacuum suction cup is provided with a flexible clamping member on the side facing the first shielding plate, and the first shielding plate is provided with a corresponding clamping hole, and the flexible clamping member is clamped into the clamping hole.

[0018] Optionally, at least four vacuum suction cups are provided, and the four vacuum suction cups are arranged in a rectangular pattern at the four corners of the first reinforcing plate.

[0019] Optionally, the lamp body further includes a shielding member, which is disposed on the side of the lamp panel facing away from the LED beads and covers the power supply component.

[0020] Optionally, the shielding member includes:

[0021] A second reinforcing plate is provided with a first clearance hole, and the power supply assembly is located inside the first clearance hole;

[0022] The second shielding plate is disposed on the side of the second reinforcing plate facing away from the light panel and blocks the first clearance hole.

[0023] Optionally, the solar module includes a third reinforcing plate, which is arranged along the length of the solar panel. The third reinforcing plate is provided with a second clearance hole, and the charging male connector is located in the second clearance hole and extends out from the side of the second clearance hole.

[0024] The technical solution of this utility model has the following advantages:

[0025] 1. The gesture light provided by this utility model features a rechargeable power supply component, allowing for cyclical use. When the power supply component is depleted, a solar module can be connected to the light fixture body to charge the power supply component using solar energy. This method of charging the power supply component via solar energy is highly economical and environmentally friendly. When charging is required, simply remove the solar module and connect it to the light fixture body for convenient power supply without having to remove the gesture light for charging. Furthermore, when not in use, the solar module can be removed from the light fixture body, preventing overcharging and damage to the power supply component.

[0026] 2. The gesture light provided by this utility model can protect the LED beads by setting a first shielding plate, preventing the LED beads from being exposed and easily damaged. At the same time, the first shielding plate can be set to be light-transmitting, so that the pattern formed by the LED beads when lit can be seen through the first shielding plate. Thus, it can both protect the LED beads and shield other components inside the lamp body. When the light is on, only the lit LED beads can be seen, which greatly improves the visual effect.

[0027] 3. The gesture light provided by this utility model can be directly attached to the car window glass through a vacuum suction cup, which is both stable and will not damage the car window glass. Attached Figure Description

[0028] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.

[0029] Figure 1 This is a schematic diagram of the overall structure of the gesture light of this utility model;

[0030] Figure 2 This is an exploded view of the hand gesture light from the front of this utility model;

[0031] Figure 3 This is an exploded view of the back of the gesture light in this utility model;

[0032] Figure 4 This is a schematic diagram of the structure of the lamp plate in this utility model;

[0033] Figure 5 This is a diagram illustrating the pattern effect of the LED beads being lit in this utility model.

[0034] Explanation of reference numerals in the attached figures:

[0035] 1. Lamp body; 11. Lamp panel; 12. Power supply assembly; 121. Power supply body; 122. Charging female connector; 13. First reinforcing plate; 14. First shielding plate; 15. Receiving hole; 16. Vacuum suction cup; 17. Flexible clamping component; 18. Clip hole; 19. Shielding component; 191. Second reinforcing plate; 192. Second shielding plate; 193. First clearance hole; 2. Solar module; 21. Solar panel; 22. Charging male connector; 23. Third reinforcing plate; 24. Second clearance hole; 3. LED lamp beads. Detailed Implementation

[0036] The specific embodiments of this utility model will now be described in detail with reference to the accompanying drawings. Obviously, the described embodiments are merely some, not all, of the embodiments of this utility model. Based on the description of this utility model, all other embodiments obtained by those skilled in the art without inventive effort are within the scope of protection of this utility model.

[0037] Unless otherwise explicitly specified and limited, the terms "setup," "installation," and "connection" should be interpreted broadly. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to mechanical connections or electrical connections; they can refer to direct connections or indirect connections through an intermediate medium. Those skilled in the art can understand the specific meaning of these terms based on the specific circumstances.

[0038] The terms “upper,” “lower,” “left,” “right,” “front,” “back,” “top,” “bottom,” “inner,” and “outer,” etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship commonly used when the product is in use. They are used only for the convenience of description and simplification, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0039] The terms “first,” “second,” “third,” etc., are used merely to distinguish elements with similar properties, not to indicate or imply relative importance or a specific order.

[0040] The terms “include,” “comprising,” or any other variation thereof are intended to cover non-exclusive inclusion, which includes not only the elements listed but also other elements not expressly listed.

[0041] Example

[0042] Reference Figures 1-5As shown, this utility model provides a gesture light, including a lamp body 1 and a solar module 2. The lamp body 1 and the solar module 2 are set separately and independently. The lamp body 1 includes a lamp board 11 and a power supply component 12. The lamp board 11 is a PCB board, and multiple LED beads 3 are arranged on the top side of the lamp board 11. The power supply component 12 is arranged on the lamp board 11 and electrically connected to the LED beads 3. The power supply component 12 is used to supply power to the LED beads 3. The multiple LED beads 3 are remotely controlled by a wireless remote control and controlled by the control program built into the lamp control IC to control the LED beads 3 in a certain area to light up, thereby forming eight different gestures or smiley face patterns. It can also realize multiple modes such as pair combination and cyclic lighting. The solar module 2 is detachably connected to the lamp body 1 and is used to charge the power supply component 12 by solar energy.

[0043] The power supply component 12 is rechargeable, allowing it to be used repeatedly. When the power supply component 12 is low on power, the solar module 2 can be detachably connected to the lamp body 1 to charge the power supply component 12 via solar energy. Charging the power supply component 12 via solar energy is economical and environmentally friendly. When charging is needed, simply remove the solar module 2 and connect it to the lamp body 1 for convenient power supply without having to remove the hand gesture light for charging. At the same time, when not in use, the solar module 2 can be removed from the lamp body 1, avoiding overcharging and damage to the power supply component 12.

[0044] Specifically, refer to Figure 2 and Figure 3 As shown, the solar module 2 includes a solar panel 21 and a charging connector 22. The solar panel 21 can convert light energy into electrical energy. The charging connector 22 is electrically connected to the solar panel 21 and is connected to the bottom of the solar panel 21. The output terminal of the solar panel 21 is connected to the charging connector 22 through a voltage regulator and charging management circuit, so that the solar panel 21 can deliver electrical energy to the charging connector 22.

[0045] The power supply assembly 12 includes a power supply body 121 and a charging female connector 122. Both the power supply body 121 and the charging female connector 122 are mounted on the lamp board 11. The charging female connector 122 is electrically connected to the power supply body 121. Specifically, the charging female connector 122 is connected to the power supply body 121 through the charging management circuit on the lamp board 11, so that the charging female connector 122 can charge the power supply body 121.

[0046] When charging, plug in the male charging connector 22 and the female charging connector 122. At this time, the solar module 2 can be detachably connected to the lamp body 1. At the same time, the power of the solar panel 21 can be input into the power supply body 121 through the male charging connector 22 and the female charging connector 122 to charge the power supply body 121. After the power supply body 121 is fully charged, the solar panel 21 can be removed, realizing convenient charging. In rainy weather, a mobile phone charger can also be used to charge the power supply body 121. In this embodiment, the male charging connector 22 and the female charging connector 122 are set as Type-C male and Type-C female connectors, but it is not limited to using only Type-C male connectors and Type-C female connectors. Other existing male charging connectors 22 and female charging connectors 122 structures can also be used, such as USB male charging connectors and USB female charging connectors, as long as the solar panel 21 can supply power to the power supply body 121.

[0047] In addition, the power supply body 121 includes a button rechargeable battery. At least one button rechargeable battery is provided and is located on the side of the light panel 11 facing away from the LED beads 3. In this embodiment, the button rechargeable battery is set as a CR2023 rechargeable battery and there are two of them. By setting the power supply body 121 as a CR2023 rechargeable battery, the safety performance is greatly improved, and the safety of the gesture light during charging is enhanced.

[0048] As one specific implementation method, refer to Figure 2 As shown, the lamp body 1 also includes a first reinforcing plate 13 and a first shielding plate 14. The first reinforcing plate 13 is made of rigid EVA and provides support for the lamp body 1. The first reinforcing plate 13 is located on the side of the lamp plate 11 with LED beads 3, and the first reinforcing plate 13 and the lamp plate 11 are the same size. The first reinforcing plate 13 and the lamp plate 11 are attached and glued together. At the same time, in order to prevent the first reinforcing plate 13 from affecting the LED beads 3, the first reinforcing plate 13 has a receiving hole 15. The size of the receiving hole 15 is exactly covering all the LED beads 3. When the first reinforcing plate 13 is bonded to the lamp plate 11, the LED bead 3 is located in the receiving hole 15. The first shielding plate 14 is made of PVC sheet and is light-transmitting. Specifically, the first shielding plate 14 is a milky white PVC sheet. The first shielding plate 14 is located on the side of the first reinforcing plate 13 facing away from the lamp plate 11. The first shielding plate 14 and the first reinforcing plate 13 are parallel and the same size. The first shielding plate 14 can just cover the entire first reinforcing plate 13. The first shielding plate 14 and the first reinforcing plate 13 are bonded together.

[0049] By setting the first shield 14, the LED beads 3 can be protected, preventing them from being exposed and easily damaged. At the same time, the first shield 14 is light-transmitting, allowing the pattern formed by the LED beads 3 to shine through it. This not only protects the LED beads 3 but also shields other components inside the lamp body 1. When the lamp is lit, only the lit LED beads 3 are visible, greatly improving the visual effect.

[0050] As one specific implementation method, refer to Figure 2 As shown, the lamp body 1 also includes a vacuum suction cup 16. Several vacuum suction cups 16 are provided, and several vacuum suction cups 16 are detachably connected to the side of the first shielding plate 14 facing away from the first reinforcing plate 13. Furthermore, four vacuum suction cups 16 are provided, and the four vacuum suction cups 16 are arranged in a rectangular pattern at the four corners of the side of the first reinforcing plate 13 facing away from the first reinforcing plate 13. Through the vacuum suction cups 16, the hand gesture light can be directly attached to the car window glass, which is both stable and will not damage the car window glass. At the same time, there are four vacuum suction cups 16, which are located at the four corners, to ensure that the lamp body 1 is evenly stressed, prevent single corner from falling off, and enhance the stability of attachment to the car window glass.

[0051] Furthermore, a flexible clamping member 17 is provided on the side of the vacuum suction cup 16 facing the first shielding plate 14. A corresponding locking hole 18 is provided on the first shielding plate 14. The flexible clamping member 17 is inserted into the locking hole 18. Specifically, the flexible clamping member 17 is made of silicone. The elastic locking of the flexible clamping member 17 and the locking hole 18 enables the quick assembly and disassembly of the vacuum suction cup 16 and the first shielding plate 14, which facilitates the replacement of damaged vacuum suction cup 16. At the same time, the flexible clamping member 17 is made of silicone, which avoids the risk of breakage caused by the rigid fixation of the vacuum suction cup 16 and the first shielding plate 14.

[0052] As one specific implementation method, refer to Figure 2 and Figure 3 As shown, the lamp body 1 also includes a shielding member 19. The shielding member 19 is bonded and fixed to the side of the lamp plate 11 facing away from the LED beads 3 and covers the power supply component 12. By setting the shielding member 19, the power supply component 12 can be prevented from being exposed, the battery can be protected, the battery can be prevented from contacting the external structure, and the internal wiring can be hidden, improving the appearance and safety of the gesture light.

[0053] Specifically, the shielding member 19 includes a second reinforcing plate 191 and a second shielding plate 192. The second reinforcing plate 191 is made of rigid EVA and is disposed on the side of the lamp panel 11 with the power supply assembly 12, and the lamp panel 11 is bonded and fixed thereto. The second reinforcing plate 191 has multiple first clearance holes 193, corresponding to the power supply body 121 and the charging female connector 122, respectively. When the second reinforcing plate 191 is fixed to the lamp panel 11, the power supply assembly 12 is located within the first clearance holes 193. The second shield 192 does not protrude from the first clearance hole 193. It is made of black PVC sheet and is located on the side of the second reinforcing plate 191 facing away from the lamp panel 11. The second shield 192 and the second reinforcing plate 191 are parallel and the same size. The second shield 192 can cover the entire second reinforcing plate 191. The second shield 192 and the second reinforcing plate 191 are bonded together. While blocking the external structure from contacting the power supply assembly 12, the power supply assembly 12 can be observed by simply removing the second shield 192, which is convenient to use.

[0054] As another implementation method, refer to Figure 2 As shown, the solar module 2 also includes a third reinforcing plate 23, which is made of rigid EVA. The third reinforcing plate 23 is arranged along the length of the solar panel 21. The third reinforcing plate 23 is parallel to the solar panel 21 and is the same size. Specifically, the third reinforcing plate 23 is located at the bottom of the solar panel 21. The second reinforcing plate 191 is provided with a second clearance hole 24, which penetrates the top and bottom walls of the third reinforcing plate 23 and extends to the side wall of the third reinforcing plate 23 until it penetrates one side wall of the third reinforcing plate 23. The male charging head 22 extends towards the female charging head 122 and passes through the second clearance hole 24, so that the male charging head 22 protrudes from the third reinforcing plate 23, making it easy to plug into the female charging head 122. By setting the third reinforcing plate 23, the solar module 2 can be supported and the male charging head 22 can be protected.

[0055] The working principle of this embodiment is as follows: The power supply component 12 is designed to be rechargeable, thus enabling cyclical use. When the power supply component 12 is about to run out of power, the solar module 2 can be detachably connected to the lamp body 1, allowing the power supply component 12 to be charged by solar energy. Charging the power supply component 12 by solar energy is economical and environmentally friendly. When charging is required, simply remove the solar module 2 and connect it to the lamp body 1 for convenient power supply without having to remove the hand gesture light for charging. At the same time, when not in use, the solar module 2 can be removed from the lamp body 1, avoiding overcharging and damage to the power supply component 12. In use, it can be directly attached to the car window glass using the vacuum suction cup 16.

[0056] The above description is only a specific embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any changes or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in the present utility model should be included within the protection scope of the present utility model.

Claims

1. A gesture light, characterized in that, The lamp includes a lamp body (1) and a solar module (2), wherein the lamp body (1) includes: The light panel (11) has multiple LED beads (3) on one side, and the multiple LED beads (3) can form different patterns; A rechargeable power supply component (12) is disposed on the lamp board (11) and electrically connected to the LED beads (3) for supplying power to the LED beads (3); The solar module (2) is detachably connected to the lamp body (1) for charging the power supply component (12).

2. The gesture lamp of claim 1, wherein, The solar module (2) includes a solar panel (21) and a charging male connector (22). The solar panel (21) is used to convert light energy into electrical energy, and the charging male connector (22) and the solar panel (21) are electrically connected. The power supply assembly (12) includes a power supply body (121) and a charging female connector (122). The charging female connector (122) and the power supply body (121) are both disposed on the lamp panel (11). The charging female connector (122) and the power supply body (121) are electrically connected. The charging male connector (22) is plugged into the charging female connector (122).

3. The gesture light of claim 2, wherein, The power supply body (121) includes at least one button rechargeable battery, which is disposed on the side of the lamp panel (11) facing away from the LED beads (3).

4. The gesture lamp of claim 1, wherein, Also includes: A first reinforcing plate (13) is disposed on the side of the lamp plate (11) with LED beads (3). A receiving hole (15) is provided on the first reinforcing plate (13), and the LED beads (3) are located in the receiving hole (15). The first shielding plate (14) is disposed on the side of the first reinforcing plate (13) facing away from the lamp plate (11) and covers the receiving hole (15). The first shielding plate (14) is light-transmitting.

5. The gesture light of claim 4, wherein, The lamp body (1) also includes a vacuum suction cup (16), and the vacuum suction cup (16) is provided in a plurality of them and is provided on the side of the first shielding plate (14) facing away from the first reinforcing plate (13).

6. The gesture lamp of claim 5, wherein, The vacuum suction cup (16) is provided with a flexible clamping member (17) on the side facing the first shielding plate (14), and a corresponding clamping hole (18) is provided on the first shielding plate (14), and the flexible clamping member (17) is inserted into the clamping hole (18).

7. The gesture lamp of claim 6, wherein, At least four vacuum suction cups (16) are provided, and the four vacuum suction cups (16) are arranged in a rectangular pattern on the four corners of the first reinforcing plate (13).

8. The gesture lamp of claim 1, wherein, The lamp body (1) also includes a shield (19), which is disposed on the side of the lamp plate (11) facing away from the LED beads (3) and covers the power supply assembly (12).

9. The gesture lamp of claim 8, wherein, The shielding element (19) includes: The second reinforcing plate (191) has a first clearance hole (193) and the power supply assembly (12) is located inside the first clearance hole (193). The second shielding plate (192) is disposed on the side of the second reinforcing plate (191) facing away from the lamp plate (11) and blocks the first clearance hole (193).

10. The gesture lamp of claim 2, wherein, The solar module (2) includes a third reinforcing plate (23), which is arranged along the length of the solar panel (21). The third reinforcing plate (23) is provided with a second clearance hole (24), and the charging male connector (22) is located inside the second clearance hole (24) and extends out from the side of the second clearance hole (24).