Charging emergency lamp
By combining the lamp housing, LED light bead board, battery and solar photovoltaic panel, and using snap-fit and top-pressing methods to assemble the emergency light, the problem of complex assembly of existing emergency lights is solved, and efficient production and stable and reliable lighting effects are achieved.
Patent Information
- Application Number
- CN202520071634.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-13
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-01-13
AI Technical Summary
Existing emergency lights use screws or clips for fixing, which makes the assembly process complicated, reduces production efficiency, and affects stability and service life.
The design combines a lamp housing, LED chip board, battery, solar photovoltaic panel, and plug, and is assembled by snap-fit and pressing, reducing the use of screws and ensuring structural stability and reliability.
It simplifies the assembly process, improves production efficiency, enhances product stability and durability, facilitates maintenance and replacement, reduces production costs, and provides better heat dissipation and lighting effects.
Smart Images

Figure CN223755303U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of emergency light, specifically relates to a charging emergency light. BACKGROUND
[0002] With the development of society and the progress of science and technology, LED lighting technology and solar energy utilization technology have been widely used in daily life. Especially in the field of outdoor lighting, household emergency lighting and the like, the charging emergency light gradually becomes the mainstream product in the market due to its energy-saving, environmental protection, portability and the like. The traditional charging emergency light is usually composed of a lamp shell, an LED lamp bead plate and a storage battery, and needs to be charged to meet the lighting demand.
[0003] The existing emergency light usually does not have a solar lamp charging function, and the existing emergency light needs to be fixed by using screws or buckles, which leads to a complex assembly process and low production efficiency. Due to the use of screws or buckles for fixing, the parts are prone to displacement due to screw loosening and the like, which affects the stability and service life of the emergency light. When the existing emergency light is repaired or replaced, the screws and the like need to be disassembled, which is tedious and time-consuming.
[0004] In view of this, the present application provides a charging emergency light to solve the above problems. CONTENT OF THE UTILITY MODEL
[0005] The present application aims to solve the technical problem that the existing emergency light needs to be fixed by using screws or buckles, which leads to a complex assembly process and low production efficiency.
[0006] To achieve the above-mentioned purpose, the utility model provides the following technical scheme:
[0007] A charging emergency light comprises a lamp shell, an LED lamp bead plate, a storage battery, a solar photovoltaic panel and a plug,
[0008] The lamp shell is in an inverted convex shape structure, a hollow groove is arranged in the lamp shell, and two U-shaped clamping grooves are arranged on the left and right ends of the inner side of the hollow groove and are integrally formed with the lamp shell; two groups of buckles are arranged on the front and back sides of the bottom wall of the hollow groove;
[0009] The LED lamp bead plate bears LED lamp beads for light emission and is clamped and positioned in the two U-shaped clamping grooves;
[0010] The storage battery is used for storing energy and supplying power to the LED lamp bead plate at night or in rainy weather, the two ends of the storage battery are limitingly inserted into the rectangular grooves on the inner side of the two buckling plates, and the two buckling plates are buckled on the two groups of buckles and located in the hollow groove;
[0011] The solar photovoltaic panel is responsible for converting solar light into electric energy and charging the storage battery, and the solar photovoltaic panel is clamped into the limiting guide groove arranged at the top end of the lamp shell;
[0012] The plugs are used for closing two ends of the lamp shell and fixing the LED lamp bead plate and the battery pack in the hollow groove, and the two plugs are buckled on the outer sides of the two ends of the lamp shell and abut against the solar photovoltaic panel, the LED lamp bead plate and the buckling plate.
[0013] As preferred, a lead hole is arranged at the center of the top of the lamp shell for inserting the electric wire, and the electric wire is used for connecting the solar photovoltaic panel and the battery. The design of the lead hole makes the electric wire easily pass through the lamp shell, connects the solar photovoltaic panel and the battery, and simplifies the process of circuit connection.
[0014] As preferred, the LED lamp beads on the LED lamp bead plate are arranged downward, and the light emitted by the LED lamp beads is transmitted through the light-transmitting cover on the lamp shell. The downward arrangement of the LED lamp beads, combined with the design of the light-transmitting cover, can make the light more uniformly scattered, improving the lighting effect.
[0015] As preferred, a rectangular hole is arranged on the buckling plate for heat dissipation of the battery, and two buckling strips arranged in an eight-shaped manner at the bottom of the buckling plate are respectively buckled with the buckling holes on the buckling block. The design of the rectangular hole helps air circulation, improves the heat dissipation performance of the battery, prevents the battery from overheating, and prolongs the service life of the battery. The eight-shaped buckling strips are buckled with the buckling holes on the buckling block, providing a more stable fixing mode to prevent the battery from moving inside the lamp shell.
[0016] As preferred, a vertical plate is fixed on the inner bottom wall of the lamp shell and located between the two buckling strips to stably support the buckling plate in the lamp shell. The arrangement of the vertical plate enhances the stability of the buckling plate, making the structure of the entire lamp shell more stable.
[0017] As preferred, a limiting strip is integrally formed on the top wall of the lamp shell and located on both sides of the buckling plate. The limiting strip can ensure that the buckling plate is correctly installed at the predetermined position, preventing the buckling plate from being installed incorrectly or deviated.
[0018] As preferred, a guide block is integrally formed on the plug and inserted into the limiting guide slot and abuts against the solar photovoltaic panel, and the guide block and the inner bottom wall of the plug are respectively provided with buckling blocks buckled with the rectangular buckling hole at both ends of the lamp shell. The guide block can be accurately inserted into the limiting guide slot, ensuring the accurate position of the solar photovoltaic panel.
[0019] As preferred, an abutting strip A is fixed on the plug and abuts against the LED lamp bead plate, and an abutting strip B is also fixed on the plug and abuts against the buckling plate. The abutting strip A and the abutting strip B respectively abut against the LED lamp bead plate and the buckling plate, ensuring that these components are fixed in place in the lamp shell and preventing displacement during use.
[0020] Compared with the prior art, the technical effects and advantages of the utility model are:
[0021] The charging emergency light is based on solar charging and LED lighting technology. During the day, the solar photovoltaic panel absorbs sunlight and converts it into electrical energy through a photovoltaic inverter, which is transmitted to the storage battery through the built-in circuit in the lamp shell. At night or in rainy weather, the storage battery releases the stored electrical energy, which powers the LED lamp bead plate through the built-in circuit, thereby achieving the lighting function. The entire system design is compact, and the components are assembled through buckling and top pressing, ensuring the stability and reliability of the structure.
[0022] The charging emergency light is assembled through buckling and top pressing, simplifying the assembly process, improving production efficiency, reducing the use of screws and other accessories, and reducing production costs. Secondly, this structural design provides better stability, reduces failures caused by loose screws, and improves the durability and reliability of the product. In addition, the buckling design for quick disassembly makes maintenance and replacement of parts more convenient, saving time and human resources.
[0023] The emergency light also has excellent heat dissipation performance and lighting effect. The rectangular holes on the buckling plate help air circulation, improving the heat dissipation performance of the battery and prolonging its service life. The LED lamp bead plate is set downward and combined with the design of the light-transmitting cover, making the light more evenly scattered, reducing the intensity of direct light, reducing glare, and providing a more comfortable lighting environment. These design details not only improve user experience, but also enhance the market competitiveness of the product. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 is a structural diagram of the utility model;
[0025] Figure 2 is a first exploded view of the utility model;
[0026] Figure 3 is a second exploded view of the utility model;
[0027] Figure 4 is a structural diagram of the lamp shell of the utility model;
[0028] Figure 5 is a structural diagram of the buckling plate of the utility model;
[0029] Figure 6 is a structural diagram of the plug of the utility model.
[0030] In the figure: 1, lamp shell; 101, hollow groove; 102, U-shaped clamping groove; 103, buckle block; 104, limiting guide groove; 105, lead hole; 106, buckle hole; 107, vertical plate; 108, limiting strip; 109, rectangular buckle hole; 2, LED lamp bead plate; 3, storage battery; 4, buckle plate; 401, rectangular groove; 402, rectangular hole; 403, buckle strip; 5, solar photovoltaic panel; 6, plug; 601, guide block; 602, buckle block; 603, top bar A; 604, top bar B. DETAILED DESCRIPTION
[0031] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0032] The drawings will be described below in conjunction with the Figures 1-6 The present application will be further described in detail,
[0033] The embodiment of the present application discloses a charging emergency lamp, which comprises a lamp shell 1, an LED lamp bead plate 2, a storage battery 3, a solar photovoltaic panel 5, and a plug 6. The LED lamp bead plate 2 bears LED lamp beads for light emission. The storage battery 3 is used for storing energy and supplying power to the LED lamp bead plate 2 at night or in rainy weather. The solar photovoltaic panel 5 is responsible for converting sunlight into electrical energy and charging the storage battery 3. The plug 6 is used to close both ends of the lamp shell 1 and encapsulate and fix the LED lamp bead plate 2 and the storage battery 3 in the hollow groove 101 arranged in the lamp shell 1.
[0034] The charging emergency lamp is based on solar charging and LED lighting. During the day, the solar photovoltaic panel 5 receives sunlight and converts it into electrical energy through a photovoltaic inverter. The electrical energy is transmitted to the storage battery 3 through the circuit arranged in the lamp shell 1 for storage. The storage battery 3 serves as an energy storage unit, which stores the electrical energy converted by the solar photovoltaic panel 5 during the day, so as to be used at night or in rainy weather. When lighting is needed (such as at night or in rainy weather), the storage battery 3 releases the stored electrical energy, which is provided to the LED lamp bead plate 2 through the circuit. The lamp beads on the LED lamp bead plate 2 emit light to provide lighting.
[0035] A lead hole 105 is formed in the center of the top of the lamp shell 1 to accommodate the insertion of an electric wire for connecting the solar photovoltaic panel 5 and the battery 3. The design of the lead hole 105 allows the electric wire to easily pass through the lamp shell 1, connecting the solar photovoltaic panel 5 and the battery 3, simplifying the process of circuit connection. Wiring through the specially designed lead hole 105 can reduce wear and damage to the electric wire, improving the safety of the electric wire. Hiding the electric wire connection part makes the overall appearance of the product more neat and beautiful.
[0036] The LED lamp beads on the LED lamp bead plate 2 are arranged downward, and the light emitted by the LED lamp beads passes through the light-transmitting cover on the lamp shell 1. The downward arrangement of the LED lamp beads, combined with the design of the light-transmitting cover, can make the light more uniformly scattered, improving the lighting effect. The light-transmitting cover can provide protection for the LED lamp beads, preventing damage to the LED lamp beads from environmental factors such as dust and moisture. The design of the light-transmitting cover helps to reduce the intensity of direct light, reduce glare, and provide a more comfortable lighting environment.
[0037] The lamp shell 1 is an inverted convex letter structure, and the inside of the hollow groove 101 has two U-shaped clamping grooves 102 integrally formed with the lamp shell 1 at the left and right ends; the bottom wall of the hollow groove 101 has two groups of buckles 103 on the front and back sides; the LED lamp bead plate 2 is clamped and positioned in the two U-shaped clamping grooves 102; the two ends of the battery 3 are limitingly inserted into the rectangular grooves 401 on the inner side of the two buckling plates 4, and the two buckling plates 4 are buckled on the two groups of buckles 103 and located in the hollow groove 101; the solar photovoltaic panel 5 is clamped into the limit guide groove 104 provided at the top end of the lamp shell 1;
[0038] A vertical plate 107 is fixedly arranged on the inner bottom wall of the lamp shell 1 and located between the two buckling strips 403, stably supporting the buckling plate 4 in the lamp shell 1. The arrangement of the vertical plate 107 enhances the stability of the buckling plate 4, making the structure of the entire lamp shell 1 more firm and improving the durability of the product. The presence of the vertical plate 107 facilitates the installation and maintenance of the battery 3, reducing the difficulty of maintenance.
[0039] A limiting strip 108 is integrally formed on the top wall of the lamp shell 1 and limits the buckling plate 4 on both sides. The limiting strip 108 can ensure that the buckling plate 4 is correctly installed at the predetermined position, preventing the buckling plate 4 from being installed incorrectly or deviating. The design of the limiting strip 108 can quickly position the buckling plate 4, speeding up the assembly and improving the production efficiency. The limiting strip 108 provides additional support for the buckling plate 4, enhancing the stability of the overall structure.
[0040] The buckle plate 4 is provided with a rectangular hole 402 for heat dissipation of the battery 3, and two buckle strips 403 arranged in an eight-shaped pattern at the bottom of the buckle plate 4 are respectively matched with the buckle holes 106 on the buckle block 103. The design of the rectangular hole 402 helps air circulation, improves the heat dissipation performance of the battery 3, prevents the battery 3 from overheating, and prolongs its service life. The eight-shaped buckle strip 403 is matched with the buckle hole 106 on the buckle block 103, providing a more stable fixing method to prevent the battery 3 from moving inside the lamp shell 1.
[0041] The two plugs 6 are buckled on the outer side of the two ends of the lamp shell 1 and abut against the solar photovoltaic panel 5, the LED lamp bead plate 2 and the buckle plate 4. The plug 6 is integrally formed with a guide block 601 inserted into the limiting guide groove 104 and abutting against the solar photovoltaic panel 5. The guide block 601 and the inner bottom wall of the plug 6 are both provided with a buckle block 602 matched with the rectangular buckle hole 109 at the two ends of the lamp shell 1. The guide block 601 can be accurately inserted into the limiting guide groove 104, ensuring the accurate position of the solar photovoltaic panel 5. The guide block 601 abuts against the solar photovoltaic panel 5, providing stable support and avoiding movement and shaking of the photovoltaic panel. The buckle block 602 is matched with the rectangular buckle hole 109 at the two ends of the lamp shell 1, facilitating the installation of the plug 6 without the need for additional fixing means. The combination of the buckle block 602 and the buckle hole of the lamp shell 1 enhances the connection strength between the plug 6 and the lamp shell 1, making the overall structure more stable.
[0042] The plug 6 is fixedly provided with an abutting strip A 603 abutting against the LED lamp bead plate 2, and is also fixedly provided with an abutting strip B 604 abutting against the buckle plate 4. The abutting strip A 603 and the abutting strip B 604 respectively abut against the LED lamp bead plate 2 and the buckle plate 4, ensuring that these components are fixed in place inside the lamp shell 1 and preventing displacement during use. Through the abutting strip A 603 and the abutting strip B 604, the need for other fixing parts can be reduced, simplifying the structural design of the product. The abutting strip A 603 and the abutting strip B 604 make the assembly process more convenient, reducing assembly time and improving production efficiency. The abutting strip A 603 and the abutting strip B 604 provide additional fixation, enhancing the reliability of the product and reducing potential failures caused by loose components.
[0043] The inverted U-shaped structure and the hollow groove 101 of the lamp shell 1 enable the LED lamp bead plate 2, the battery 3, the solar photovoltaic panel 5 and the plug 6 to be assembled together to form a compact and fully functional emergency lamp. The LED lamp bead plate 2 is clamped in the two U-shaped clamping grooves 102, ensuring accurate positioning and easy installation. The battery 3 is limitingly inserted into the rectangular groove 401 on the inner side of the buckle plate 4 at both ends and is fixed by the buckle block 103, ensuring the stability and safety of the battery 3. The solar photovoltaic panel 5 is clamped into the limiting guide groove 104 at the top end of the lamp shell 1, facilitating installation and fixation.
[0044] The whole emergency lamp is assembled by buckling, without using screws. For example, two U-shaped clamping grooves 102 and buckling blocks 103 are used to fix the LED lamp bead plate 2 and the battery 3, and the plugs 6 are buckled to close the two ends of the lamp shell 1. The plugs 6 are buckled to the outer side of the two ends of the lamp shell 1, and abut against the solar photovoltaic panel 5, the LED lamp bead plate 2 and the buckling plate 4, so that the parts are tightly assembled together without additional fixing.
[0045] The whole charging emergency lamp is buckled and assembled, without using screwdrivers and other tools, which simplifies the assembly process and improves the production efficiency. The use of screws and other accessories is reduced, and the production cost is reduced. The buckling assembly and abutting and pressing can provide better stability, reduce the failure caused by loose screws, and avoid the exposure of screws, so that the appearance of the product is more neat and beautiful.
[0046] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and not for limiting the present application, although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, it still can modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part of the technical features, any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application, should be included in the protection scope of the present application.
Claims
1. A charge emergency light, characterized in that, The utility model relates to a solar energy street lamp, which comprises a lamp shell (1) in an inverted convex letter structure, a hollow groove (101) arranged in the lamp shell (1), two U-shaped clamping grooves (102) arranged on the inner side of the hollow groove (101), two groups of buckling blocks (103) arranged on the front and back sides of the bottom wall of the hollow groove (101), an LED lamp bead plate (2) clamped and positioned in the two U-shaped clamping grooves (102), a storage battery (3) used for storing energy and supplying power to the LED lamp bead plate (2) at night or on rainy days, the two ends of the storage battery (3) being inserted and limited in the rectangular grooves (401) on the inner side of two buckling plates (4), the two buckling plates (4) being buckled on the two groups of buckling blocks (103) and located in the hollow groove (101), a solar photovoltaic panel (5) responsible for converting sunlight into electric energy and charging the storage battery (3), the solar photovoltaic panel (5) being clamped into the limiting guide grooves (104) arranged at the top end of the lamp shell (1), and two plugs (6) used for closing the two ends of the lamp shell (1) and packaging and fixing the LED lamp bead plate (2) and the storage battery (3) in the hollow groove (101), the two plugs (6) being buckled on the outer side of the two ends of the lamp shell (1) and abutting against the solar photovoltaic panel (5), the LED lamp bead plate (2) and the buckling plate (4). The top center of the lamp shell (1) is provided with a lead hole (105) for inserting an electric wire, and the electric wire is used for connecting the solar photovoltaic panel (5) and the storage battery (3). The LED lamp beads on the LED lamp bead plate (2) are arranged downward, and the light emitted by the LED lamp beads is transmitted through the light-transmitting cover on the lamp shell (1). The buckling plate (4) is provided with a rectangular hole (402) for heat dissipation of the storage battery (3), and the two buckling strips (403) arranged in an eight-shaped manner on the bottom of the buckling plate (4) are respectively buckled with the buckling holes (106) on the buckling blocks (103). The inner bottom wall of the lamp shell (1) is fixedly provided with a vertical plate (107) located between the two buckling strips (403) and stably supporting the buckling plate (4) in the lamp shell (1). The top wall of the lamp shell (1) is integrally formed with a limiting strip (108) limiting the buckling plate (4) on both sides.
2. The emergency charging light of claim 1, wherein: The plug (6) is integrally formed with a guide block (601) inserted into the limiting guide groove (104) and abutting against the solar photovoltaic panel (5), and the guide block (601) and the inner bottom wall of the plug (6) are both provided with buckling blocks (602) buckled with the rectangular buckling holes (109) on the two ends of the lamp shell (1).
3. The emergency charging light of claim 1, wherein: The plug (6) is fixedly provided with an abutting strip A (603) abutting against the LED lamp bead plate (2), and the plug (6) is also fixedly provided with an abutting strip B (604) abutting against the buckling plate (4).
4. The emergency charging light of claim 1, wherein: 5. A charge emergency light according to claim 4, characterized in that: 6. The emergency charging light of claim 1, wherein: 7. The emergency charging light of claim 1, wherein: 8. The emergency charging light of claim 1, wherein:
Citation Information
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