Multifunctional solar emergency light

By designing a multifunctional solar emergency light that combines solar panels and multi-mode lighting components, the problems of limited battery life and single lighting modes in emergency lights have been solved. This enables continuous power supply and multi-scenario lighting, enhancing the flexibility and practicality of emergency lights.

CN224551343UActive Publication Date: 2026-07-24张徐芳
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
张徐芳
Filing Date
2025-09-28
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

Existing emergency lights rely on disposable batteries or external power sources, which have limited battery life and cannot meet the continuous use needs of long-term outdoor lighting or sudden power outages. Furthermore, charging methods are inconvenient, they cannot make full use of renewable energy sources, and their lighting modes are limited, making it difficult to meet diverse lighting needs.

Method used

Design a multi-functional solar emergency light that combines a solar panel, a rechargeable battery, a first lighting component, and a second lighting component to achieve self-powered operation and multi-mode lighting. Equipped with a handle and hook structure, it enhances flexibility and practicality.

Benefits of technology

It provides continuous power through solar panels to meet the lighting needs of various scenarios, and has the functions of wide-range and long-distance lighting. It is easy to carry and hang, extends its service life and reduces maintenance complexity.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224551343U_ABST
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Abstract

The utility model discloses a multifunctional solar emergency lamp, it includes the lamp cylinder casing, the lower end of this lamp cylinder casing is installed with first lighting part, the front end of this lamp cylinder casing is installed with second lighting part, the inner upper portion of this lamp cylinder casing is installed with control circuit board, the inner lower portion of this lamp cylinder casing is installed with rechargeable battery, the upper surface of this lamp cylinder casing is recessed with installation recess position, the installation recess position is embedded with solar panel, and the control circuit board is electrically connected between the solar panel, the rechargeable battery, the first lighting part and the second lighting part respectively. Can realize green energy supplement through solar panel, cooperate rechargeable battery and provide continuous electric energy, through the combination of first lighting part and second lighting part, realize the dual function of large range illumination and long distance spotlighting, satisfy the use demand of multiple scenes, and the emergency lamp is also equipped with portable part and hook, is convenient for carrying, can also realize hanging illumination, further improved the flexibility and practicality of use.
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Description

Technical Field

[0001] This utility model belongs to the field of emergency lighting technology, specifically relating to a multifunctional solar emergency light. Background Technology

[0002] Portable emergency lights play a vital role in daily life, outdoor activities, camping, rescue operations, and power outages, providing immediate illumination. However, most existing emergency lights still have significant limitations.

[0003] Traditional emergency lights primarily rely on disposable batteries or external power sources, resulting in limited battery life that cannot meet the continuous use requirements for extended outdoor lighting or sudden power outages. Furthermore, frequent battery replacements increase operating costs and maintenance complexity, and some lights lack convenient charging methods, failing to fully utilize renewable energy sources.

[0004] Existing emergency lights typically employ a single lighting mode, such as providing only wide-area diffused light or only focused long-range beams, making it difficult to meet multiple lighting needs and simultaneously satisfy the diverse requirements of indoor lighting, large-area outdoor lighting, and long-distance lighting.

[0005] Therefore, overcoming the shortcomings of the existing technology is an urgent problem to be solved in this technical field. Utility Model Content

[0006] In view of the technical problems mentioned in the background art, the purpose of this utility model is to provide a multifunctional solar emergency light to solve the technical problems mentioned in the background art.

[0007] To achieve the above objectives, the present invention provides the following technical solution: a multifunctional solar emergency light, comprising a lamp housing, a first lighting component mounted at the lower end of the lamp housing, a second lighting component mounted at the front end of the lamp housing, a control circuit board mounted in the upper inner part of the lamp housing, a rechargeable battery mounted in the lower inner part of the lamp housing, a mounting recess provided on the upper surface of the lamp housing, in which a solar panel is embedded, and the control circuit board is electrically connected to the solar panel, the rechargeable battery, the first lighting component, and the second lighting component.

[0008] Furthermore, the inner sides of the mounting recess are symmetrically provided with fixing buckles. The size of the mounting recess is larger than the size of the solar panel. The solar panel is embedded in the mounting recess, and the two fixing buckles are respectively fastened to the two sides of the solar panel.

[0009] Furthermore, the first lighting component includes a light source panel and a light-transmitting lampshade. The lower inner end of the lamp housing is provided with a panel slot and a lampshade slot, respectively. The light source panel is fitted into the panel slot, and the upper end of the light-transmitting lampshade is provided with a lampshade retaining ring. The lampshade retaining ring is embedded in the lower inner end of the lamp housing and engages with the lampshade slot to fix it, so that the light-transmitting lampshade is firmly installed at the lower end of the light source panel.

[0010] Furthermore, the second lighting component includes a light-emitting panel, a spotlight cup, and a fixing screw ring. The light-emitting panel is glued and fixed to the rear end of the spotlight cup. The front end of the lamp housing has a spotlight cup mounting part, and the spotlight cup is installed in the spotlight cup mounting part. The front end of the spotlight cup mounting part has a connecting screw ring. The front edge of the spotlight cup abuts against the inner side of the connecting screw ring, and the fixing screw ring is threadedly connected to the outer side of the connecting screw ring.

[0011] Furthermore, the upper inner part of the lamp housing is provided with a circuit board slot, in which the control circuit board is installed, thereby achieving a stable fixation of the control circuit board.

[0012] Furthermore, the upper part of the lamp housing is provided with a housing handle, and the upper middle part of the housing handle is provided with a hook connection part, on which an installation hook is movably connected.

[0013] The present invention has the following advantages: a first lighting component is installed at the lower end of the lamp housing, a second lighting component is installed at the front end of the lamp housing, a control circuit board is installed in the upper inner part of the lamp housing, a rechargeable battery is installed in the lower inner part of the lamp housing, and a mounting recess is provided on the upper surface of the lamp housing, in which a solar panel is embedded. The control circuit board is electrically connected to the solar panel, the rechargeable battery, the first lighting component, and the second lighting component. The multifunctional solar emergency light of the present invention can achieve green energy replenishment through the solar panel and provide continuous power in conjunction with the rechargeable battery. Through the combination of the first lighting component and the second lighting component, the dual functions of wide-area lighting and long-distance focused lighting are achieved, meeting the needs of multiple scenarios. The emergency light is also equipped with a handle and a hook, which is convenient to carry and can also achieve hanging lighting, further improving the flexibility and practicality of use. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the overall three-dimensional structure of this utility model.

[0015] Figure 2 This is a schematic diagram of the overall exploded structure of this utility model.

[0016] Figure 3 This is a schematic diagram of the lamp housing structure of this utility model.

[0017] Figure 4 This is a schematic diagram of the lamp housing structure of this utility model.

[0018] Reference numerals: lamp housing 10; first lighting component 20; second lighting component 30; control circuit board 40; rechargeable battery 50; mounting recess 11; solar panel 60; fixing buckle 111; light source panel 21; light-transmitting lampshade 22; panel slot 12; lampshade slot 13; lampshade retaining ring 221; light-emitting panel 31; spotlight cup 32; fixing screw ring 33; lamp cup mounting part 14; connecting screw ring 141; circuit board slot 15; battery mounting part 16; housing handle 17; hook connection part 171; mounting hook 18. Detailed Implementation

[0019] like Figures 1 to 4 As shown, a multifunctional solar emergency light includes a lamp housing 10. A first lighting component 20 is installed at the lower end of the lamp housing 10 for wide-area illumination. A second lighting component 30 is installed at the front end of the lamp housing 10 for focused illumination or long-range beam illumination, thus meeting the needs of different lighting scenarios. A control circuit board 40 is installed in the upper inner part of the lamp housing 10 for controlling the power distribution, lighting mode switching, and power management of the entire emergency light. A rechargeable battery 50 is installed in the lower inner part of the lamp housing 10 for storing electrical energy and providing power to the first lighting component 20 and the second lighting component 30. A mounting recess 11 is recessed on the upper surface of the lamp housing 10, in which a solar panel 60 is embedded. The solar panel 60 converts solar energy into electrical energy and inputs it into the rechargeable battery 50 for storage. The control circuit board 40 is electrically connected to the solar panel 60, the rechargeable battery 50, the first lighting component 20, and the second lighting component 30, respectively, ensuring that the power can be bidirectionally managed between the solar panel 60 and the rechargeable battery 50, and can supply power to different lighting components as needed.

[0020] In practical implementation, symmetrical fixing buckles 111 are provided on both inner sides of the mounting recess 11. The size of the mounting recess 11 is larger than the size of the solar panel 60. The solar panel 60 is embedded in the mounting recess 11. At the same time, the two fixing buckles 111 are respectively fastened to the two side edges of the solar panel 60, so that the solar panel 60 is firmly installed on the upper surface of the lamp housing 10, preventing it from loosening or falling off due to shaking or collision. In use, the solar panel 60 can be reliably positioned by the fixing buckles 111, which not only ensures the stable electrical connection between it and the control circuit board 40, but also facilitates disassembly and replacement in the future, improving the product's maintenance convenience and service life.

[0021] In practical implementation, the first lighting component 20 includes a light source panel 21 and a light-transmitting lampshade 22. The lower inner end of the lamp housing 10 is provided with a panel slot 12 and a lampshade slot 13. The light source panel 21 is fitted into the panel slot 12, thus achieving a stable fixation of the light source. The upper end of the light-transmitting lampshade 22 is provided with a lampshade retaining ring 221, which is embedded in the lower inner end of the lamp housing 10 and engages with the lampshade slot 13 for fixation, allowing the light-transmitting lampshade 22 to be securely installed at the lower end of the light source panel 21. In use, the light source panel 21 emits light when powered on, and the light-transmitting lampshade 22 can uniformly scatter and protect the light, not only improving the lighting effect but also effectively preventing external foreign objects from directly contacting the light source panel 21, thus providing protection and extending its service life. Meanwhile, the engagement method between the lampshade retaining ring 221 and the lampshade retaining slot 13 makes it easy to disassemble, replace or maintain the light-transmitting lampshade 22 when needed.

[0022] In practical implementation, the second lighting component 30 includes a light-emitting panel 31, a spotlight cup 32, and a fixing screw ring 33. The light-emitting panel 31 is attached and fixed to the rear end of the spotlight cup 32 to provide a light source. A spotlight cup mounting portion 14 is provided at the front end of the lamp housing 10. The spotlight cup 32 is installed in the spotlight cup mounting portion 14, and a connecting screw ring 141 is provided at the front end of the spotlight cup mounting portion 14. The front edge of the spotlight cup 32 abuts against the inner side of the connecting screw ring 141, and the fixing screw ring 33 is threadedly connected to the outer side of the connecting screw ring 141, thereby reliably limiting and fixing the spotlight cup 32 within the lamp housing 10. In use, the light-emitting panel 31 emits light when powered on, and the light is reflected and focused by the spotlight cup 32 to form a long-range beam, meeting the needs of directional and long-distance lighting. The fixing ring 33 not only ensures the stable installation of the spotlight cup 32, but also makes it easy to unscrew for disassembly and replacement when needed, thereby improving the maintainability and versatility of the product.

[0023] In practical implementation, the upper inner part of the lamp housing 10 is provided with a circuit board slot 15, in which the control circuit board 40 is secured, thereby preventing it from loosening due to vibration or external force during use. The lower inner part of the lamp housing 10 is provided with a battery mounting part 16, in which the rechargeable battery 50 is secured, ensuring reliable battery positioning.

[0024] In practical implementation, the upper part of the lamp housing 10 is provided with a housing handle 17, and the upper middle part of the housing handle 17 is provided with a hook connection part 171. A mounting hook 18 is movably connected to the hook connection part 171. During use, the user can directly carry and move the emergency light through the housing handle, making it easy to carry and walk. At the same time, when fixed lighting is required, the mounting hook can be hung on a wall, tree branch or other support, so that the emergency light can be used in a suspended manner, thereby freeing up the hands and meeting the lighting needs of multiple angles and scenarios. This structural design not only improves the flexibility and convenience of use, but also expands the application range of this multi-functional solar emergency light.

[0025] In summary, the lower end of the lamp housing 10 is equipped with a first lighting component 20, the front end of the lamp housing 10 is equipped with a second lighting component 30, the upper inner part of the lamp housing 10 is equipped with a control circuit board 40, the lower inner part of the lamp housing 10 is equipped with a rechargeable battery 50, the upper surface of the lamp housing 10 is recessed with a mounting recess 11, and a solar panel 60 is embedded in the mounting recess 11. The control circuit board 40 is electrically connected to the solar panel 60, the rechargeable battery 50, the first lighting component 20, and the second lighting component 30. The multifunctional solar emergency light of this utility model can achieve green energy replenishment through the solar panel and provide continuous power in conjunction with the rechargeable battery. Through the combination of the first lighting component and the second lighting component, it achieves the dual functions of wide-area lighting and long-distance focused lighting, meeting the needs of multiple scenarios. The emergency light is also equipped with a handle and hook, which is convenient to carry and can also achieve hanging lighting, further improving the flexibility and practicality of use.

Claims

1. A multifunctional solar emergency light, characterized in that, It includes a lamp housing (10), a first lighting component (20) is installed at the lower end of the lamp housing (10), a second lighting component (30) is installed at the front end of the lamp housing (10), a control circuit board (40) is installed in the upper inner part of the lamp housing (10), a rechargeable battery (50) is installed in the lower inner part of the lamp housing (10), a mounting recess (11) is recessed on the upper surface of the lamp housing (10), a solar panel (60) is embedded in the mounting recess (11), and the control circuit board (40) is electrically connected to the solar panel (60), the rechargeable battery (50), the first lighting component (20) and the second lighting component (30) respectively.

2. The multifunctional solar emergency light according to claim 1, characterized in that, The mounting recess (11) has symmetrical protrusions of fixing buckles (111) on both sides. The size of the mounting recess (11) is larger than the size of the solar panel (60). The solar panel (60) is embedded in the mounting recess (11). At the same time, the two fixing buckles (111) are respectively fastened to the two sides of the solar panel (60).

3. The multifunctional solar emergency light according to claim 1, characterized in that, The first lighting component (20) includes a light source plate (21) and a light-transmitting lampshade (22). The lower inner end of the lamp housing (10) is provided with a light plate slot (12) and a lampshade slot (13). The light source plate (21) is fitted in the light plate slot (12). The upper end of the light-transmitting lampshade (22) is provided with a lampshade retaining ring (221). The lampshade retaining ring (221) is embedded in the lower inner end of the lamp housing (10) and engages with the lampshade slot (13) to fix it, so that the light-transmitting lampshade (22) is firmly installed at the lower end of the light source plate (21).

4. The multifunctional solar emergency light according to claim 3, characterized in that, The second lighting component (30) includes a light-emitting plate (31), a spotlight cup (32), and a fixing screw ring (33). The light-emitting plate (31) is attached to the rear end of the spotlight cup (32). The front end of the lamp housing (10) is provided with a lamp cup mounting part (14). The spotlight cup (32) is installed in the lamp cup mounting part (14). The front end of the lamp cup mounting part (14) is provided with a connecting screw ring (141). The front edge of the spotlight cup (32) abuts against the inner side of the connecting screw ring (141). The fixing screw ring (33) is threadedly connected to the outer side of the connecting screw ring (141).

5. The multifunctional solar emergency light according to claim 1, characterized in that, The upper inner part of the lamp housing (10) is provided with a circuit board slot (15), and the control circuit board (40) is installed in the circuit board slot (15) to achieve a stable fixation of the control circuit board (40).

6. The multifunctional solar emergency light according to claim 1, characterized in that, The upper part of the lamp housing (10) is provided with a housing handle (17), and the upper middle part of the housing handle (17) is provided with a hook connection (171), and an installation hook (18) is movably connected to the hook connection (171).