Anti-falling LED down lamp

By designing a fixed connection structure of anti-fall components and fasteners in the LED downlight, the problem of damage to the LED downlight under vibration or impact is solved, achieving higher anti-fall performance and stable installation.

CN223004885UActive Publication Date: 2025-06-20PUDI DESIGN CONSULTANTS (SHENZHEN) CO LTD
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Patent Information

Application Number
CN202421836355.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-30
Publication Date
2025-06-20
Estimated Expiration
2034-07-30

AI Technical Summary

Technical Problem

LED downlights may cause damage to internal parts under vibration or impact, affecting the lighting effect and service life, and lack an effective anti-fall structure.

Method used

An anti-fall LED downlight including a cylinder, a anti-fall assembly and a fastener is designed. The anti-fall assembly is connected to the outside of the cylinder body, and the fastener is fixedly connected to the anti-fall assembly through screws to form a stable installation structure.

Benefits of technology

Through the buffering effect of the anti-fall assembly, it effectively disperses and reduces impact force, reduces direct damage to the downlight, enhances its anti-fall performance, and ensures stable installation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an anti-falling LED down lamp which comprises a tube body, a lamp holder is installed in the tube body, and the lamp holder emits a light source; the anti-falling flashlight further comprises an anti-falling assembly, the anti-falling assembly is fixedly connected with the flashlight body, the flashlight body is observed in the direction of a light source emitted by the lamp holder, and the anti-falling assembly is connected to the outer side of the flashlight body in a sleeving mode and located at the end, emitting the light source, of the flashlight body. The anti-falling LED down lamp further comprises a fastener which is fixedly connected with the anti-falling assembly, and the fastener is fixedly connected with the installation position of the anti-falling LED down lamp through a screw. Through the structure, the anti-falling purpose is achieved.
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Description

Technical Field

[0001] The present application relates to the field of lamps, and in particular to a drop-proof LED downlight. Background Art

[0002] LED downlights have gradually replaced traditional lighting downlights and become the mainstream choice in the market due to their advantages of high efficiency, energy saving, long life, environmental protection and pollution-free. At the same time, with the continuous development of science and technology, LED downlights are developing in the direction of intelligence, personalization and multi-function to meet the needs of different consumers and places.

[0003] In daily life and industrial applications, the installation location of the lamp may be subject to vibration or impact due to various reasons, such as building vibration, accidental collision during construction, etc. If the downlight does not have a good anti-fall structure, these impacts may cause damage to its internal parts, thereby affecting its lighting effect and service life. Therefore, a drop-proof LED downlight is needed. Utility Model Content

[0004] In view of this, it is necessary to provide a drop-proof LED downlight to solve the above problems.

[0005] The embodiment of the present application provides a drop-proof LED downlight, comprising: a cylinder, an anti-drop component and a fastener. The cylinder lamp holder is installed in the cylinder. The lamp holder emits a light source. The anti-drop component is fixedly connected to the cylinder. Observing along the direction of the light source emitted by the lamp holder, the anti-drop component is sleeved on the outside of the cylinder. And the anti-drop component is located at one end of the cylinder that emits the light source. The fastener is fixedly connected to the anti-drop component. The fastener is fixedly connected to the installation position of the drop-proof LED downlight by a screw.

[0006] In at least one embodiment of the present application, the anti-fall assembly includes: an anti-fall piece and a mounting piece. The anti-fall piece is annular. The anti-fall piece is fixedly connected to the cylinder. The mounting piece is fixedly connected to one end of the anti-fall piece away from the cylinder. The mounting piece is fixedly connected to one end of the fastener.

[0007] In at least one embodiment of the present application, when observed along the direction of the light source emitted by the lamp head, the anti-fall component is sleeved on the outside of the barrel, and the mounting component is sleeved on a side of the anti-fall component facing away from the barrel.

[0008] In at least one embodiment of the present application, the anti-fall LED downlight further includes a connecting rod, one end of which is connected to the anti-fall component, and the other end of which is fixedly connected to a connecting hole provided in the mounting component.

[0009] In at least one embodiment of the present application, the mounting member includes:

[0010] The socket part, which sockets the outer side of the anti-fall component;

[0011] The convex part, which is located at one end of the mounting part away from the anti-fall component and extends along the circumference of the socket part away from one end of the anti-fall component.

[0012] In at least one embodiment of the present application, the diameter of the convex part is set as a, and the maximum diameter of the cylinder is set as b, satisfying the relational expression:

[0013] a > b.

[0014] In at least one embodiment of the present application, the convex part is set as an anti-fall structure.

[0015] In at least one embodiment of the present application, the mounting part further includes a mounting portion, the mounting portion is a mounting groove opened for the socket part, and the mounting portion is fixedly connected with the fastener.

[0016] In at least one embodiment of the present application, the cylinder includes an integrally formed first connecting portion, and the first connecting portion is located at one end close to the anti-fall component.

[0017] In at least one embodiment of the present application, the anti-fall component includes an integrally formed second connecting portion, the second connecting portion is located at one end close to the cylinder, and the first connecting portion abuts against and is fixedly connected with the second connecting portion.

[0018] When the anti-fall LED downlight provided above accidentally falls, the anti-fall component can serve as an additional protective layer, effectively buffering and dispersing the impact force, thereby reducing the direct damage suffered by the downlight. In addition, the fastener is fixedly connected with the anti-fall component and is tightly fixed to the installation position by screws, ensuring the stable installation of the downlight and further enhancing its anti-fall performance. Brief Description of the Drawings

[0019] Figure 1 It is a perspective view of the anti-fall LED downlight described in the present application;

[0020] Figure 2 It is an exploded view of the anti-fall LED downlight described in the present application;

[0021] Figure 3 It is a schematic diagram of the anti-fall LED downlight along the light emission direction of the light source;

[0022] Figure 4 It is a sectional view of the anti-fall LED downlight described in the present application.

[0023] Description of the Main Element Symbols

[0024] 100. Anti-drop LED downlight; 10. Cylinder body; 20. Anti-drop component; 30. Fastener; 21. Anti-drop part; 22. Mounting part; 40. Connecting rod; 221. Socket part; 222. Protrusion part; 223. Mounting part; 11. First connection part; 211. Second connection part; F1. Light source emission direction. Detailed implementation manners

[0025] Next, the embodiments of the present application will be described with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments.

[0026] It should be noted that when a component is considered to be "connected" to another component, it can be directly connected to the other component or there may be an intermediate component at the same time. When a component is considered to be "arranged on" another component, it can be directly arranged on the other component or there may be an intermediate component at the same time. The terms "top", "bottom", "upper", "lower", "left", "right", "front", "rear", and similar expressions used herein are only for the purpose of illustration.

[0027] An embodiment of the present application provides an anti-drop LED downlight, including: a cylinder body, an anti-drop component, and a fastener. The lamp head of the cylinder body is installed in the cylinder body. The lamp head emits light. The anti-drop component is fixedly connected to the cylinder body. When observing along the direction of the light source emitted by the lamp head, the anti-drop component is sleeved outside the cylinder body. And the anti-drop component is located at one end of the cylinder body where the light source is emitted. The fastener is fixedly connected to the anti-drop component. The fastener is fixedly connected to the installation position of the anti-drop LED downlight through screws.

[0028] When the above-provided anti-drop LED downlight accidentally falls, the anti-drop component can serve as an additional protective layer, effectively buffering and dispersing the impact force, thereby reducing the direct damage suffered by the downlight. In addition, the fastener is fixedly connected to the anti-drop component and is tightly fixed to the installation position through screws, ensuring the stable installation of the downlight and further enhancing its anti-drop performance.

[0029] Next, some embodiments of the present application will be described in detail with reference to the accompanying drawings. Without conflict, the following embodiments and the features in the embodiments can be combined with each other.

[0030] Please refer to Figures 1-4, an embodiment of the present application provides a fall - resistant LED downlight 100, including: a cylinder body 10, a fall - resistant component 20, and a fastener 30. A lamp head is installed inside the cylinder body 10. The lamp head emits light sources. The fall - resistant component 20 is fixedly connected to the cylinder body 10. When observing along the direction of the light source emitted by the lamp head, the fall - resistant component 20 is sleeved outside the cylinder body 10. And the fall - resistant component 20 is located at the end of the cylinder body 10 where the light source is emitted. The fastener 30 is fixedly connected to the fall - resistant component 20. The fastener 30 is fixedly connected to the installation position of the fall - resistant LED downlight 100 through screws.

[0031] Specifically, the cylinder body 10 is the main frame of the LED downlight, carrying the lamp head, the fall - resistant component 20, and other internal circuits. It not only provides an installation space for the lamp head but also ensures the overall structural strength of the LED downlight. The cylinder body 10 is usually made of aluminum alloy material with appropriate thickness, high strength, and good fire - resistance performance. This material has good heat - conduction performance, can dissipate heat quickly, and ensures that the lamp does not overheat during long - term operation. The stable structure of the cylinder body 10 not only protects the internal lamp head and other sensitive components but also improves the service life and safety of the LED downlight.

[0032] Further, the lamp head is equipped with an LED light source inside, which is responsible for generating and emitting light. The LED light source emits light through semiconductor materials under the action of current. It does not need to use heat to convert electrical energy into light energy, so it has high luminous efficiency and long life.

[0033] When current acts on the semiconductor wafer of the LED through a wire, electrons and holes recombine in the quantum well and emit energy in the form of photons, that is, light. The color (wavelength) of the light is determined by the material forming the P - N junction. The high - efficiency light - emitting and long - life characteristics of the LED light source make the LED downlight have the advantages of energy - saving and high efficiency, and its energy consumption is only about 1 / 10 of that of traditional incandescent lamps.

[0034] Furthermore, the fall - resistant component 20 is the key innovation point of the LED downlight, which is used to enhance the fall - resistant performance of the downlight. It is sleeved outside the cylinder body 10 and is located at the end of the cylinder body 10 where the light source is emitted. When the downlight falls, it plays a role in buffering and dispersing the impact force.

[0035] The fall - resistant component 20 may include a fall - resistant part 21 and a mounting part 22. The fall - resistant part 21 is annular and is fixedly connected to the cylinder body 10; the mounting part 22 is fixedly connected to the other end of the fall - resistant part 21 and is connected to the fastener 30. The design of the mounting part 22 may include a sleeved part 221, a convex part 222, and a mounting part 223 to ensure a firm connection with the cylinder body 10 and the fastener 30. The design of the fall - resistant component 20 greatly reduces the damage suffered by the LED downlight when it falls and extends its service life.

[0036] Furthermore, the fastener 30 is used to fix the LED downlight to the installation position to ensure the stability of the downlight. It is usually fixed to the installation position by screws and connected to the mounting member 22 of the anti-fall component 20. The design of the fastener 30 may match the first connecting portion 11 of the barrel 10 and the second connecting portion 211 of the anti-fall member 21 to achieve a stable abutment and fixed connection. The fixing effect of the fastener 30 ensures the stability and safety of the LED downlight and prevents the problem of falling off or damage caused by loose installation.

[0037] In summary, when installing the LED downlight, first install the lamp holder inside the barrel 10, then sleeve and fix the anti-drop assembly 20 on the outside of the barrel 10. Next, the LED downlight is fixedly connected to the installation position by the fastener 30. When the LED downlight falls accidentally, the anti-drop assembly 20 will quickly play a buffering role, dispersing and reducing the damage of the impact force to the barrel 10 and the lamp holder.

[0038] In a specific implementation example, the anti-fall component 20 includes: an anti-fall component 21 and a mounting component 22. The anti-fall component 21 is annular. The anti-fall component 21 is fixedly connected to the cylinder 10. The mounting component 22 is fixedly connected to one end of the anti-fall component 21 away from the cylinder 10. The mounting component 22 is fixedly connected to one end of the fastener 30.

[0039] Specifically, when the LED downlight accidentally falls, the anti-fall piece 21 will quickly absorb and disperse the impact force. Since the anti-fall piece 21 is made of a specific material (such as rubber or plastic), it has good elasticity and can effectively reduce the impact force and reduce its direct damage to the inside of the LED downlight.

[0040] Furthermore, the ring-shaped design enables the anti-fall member 21 to evenly disperse the impact force, further improving its anti-fall performance. The anti-fall ability of the LED downlight is greatly enhanced, so that it can remain intact and work normally even if it accidentally falls. The service life of the LED downlight is extended, and the maintenance and replacement costs caused by falling are reduced.

[0041] Furthermore, the mounting member 22 serves as a bridge connecting the anti-fall member 21 and the fastener 30, ensuring a firm connection between the two. It is tightly connected to the anti-fall member 21 and the fastener 30 through a specific design (such as a buckle, a thread, etc.), preventing the problem of falling off or damage caused by a loose connection.

[0042] Furthermore, the mounting member 22 also has a certain adjustment function and can be adjusted according to different installation positions and angles, enabling the LED downlight to better adapt to various environments. The stable connection design makes the LED downlight not easy to fall off or be damaged during long-term use, improving its stability and safety. The flexible adjustment function enables the LED downlight to adapt to more application scenarios, enhancing its applicability and flexibility.

[0043] In summary, when installing the LED downlight, first install the lamp head inside the cylinder body 10 and ensure it is firmly fixed. Then, sleeved the anti-drop member 21 on the outside of the cylinder body 10 to ensure it fits tightly with the cylinder body 10. Next, sleeved the mounting member 22 on the end of the anti-drop member 21 facing away from the cylinder body 10 and fix one end of the mounting component to the anti-drop member 21, while the other end is fixedly connected to one end of the fastener 30. Finally, fix the LED downlight at the desired position through the fastener 30. The entire installation process is simple and fast, without the need for complex tools or operations.

[0044] In a specific embodiment, when observing along the direction of the light source emitted by the lamp head, the anti-drop member 21 is sleeved on the outside of the cylinder body 10, and the mounting member 22 is sleeved on the side of the anti-drop member 21 facing away from the cylinder body 10.

[0045] Specifically, the mounting member 22 is located outside the anti-drop member 21, forming a hierarchical structure. This structure helps to better disperse the impact force because the impact force will first be absorbed by the mounting member 22 and then further dispersed through the anti-drop member 21, thereby reducing the direct impact on the cylinder body 10 and the lamp head.

[0046] Furthermore, the connections between the mounting member 22, the anti-drop member 21, and the fastener 30 are stable, which ensures that the anti-drop assembly 20 can be stably fixed on the cylinder body 10 as a whole and prevents it from loosening or falling off during use.

[0047] Still further, since the mounting member 22 is located outside, it provides a convenient interface to connect the fastener 30. This makes the installation and disassembly process of the LED downlight simpler and faster, reducing the maintenance cost.

[0048] Even further, through the hierarchical structure design of the anti-drop member 21 and the mounting member 22, the LED downlight can more effectively disperse the impact force when it falls, thereby enhancing its anti-drop performance. The design of the anti-drop assembly 20 protects the key components such as the cylinder body 10 and the lamp head inside it, reducing the risk of damage caused by falling.

[0049] In summary, the stable connection ensures the stability between the anti-drop component 20 and the cylinder body 10, preventing problems such as detachment or damage caused by loose connection. The design of the mounting member 22 makes the installation and disassembly process of the LED downlight more convenient and fast, improving work efficiency.

[0050] In a specific embodiment, the anti-drop LED downlight 100 further includes a connecting rod 40. One end of the connecting rod 40 is connected to the anti-drop member 21, and the other end of the connecting rod 40 is fixedly connected to a connection hole formed in the mounting member 22.

[0051] Specifically, the connecting rod 40 is an independent component. One end of it is connected to the anti-drop member 21, and the other end is fixedly connected to the connection hole formed in the mounting member 22. The length, diameter, and material of the connecting rod 40 can be selected and designed according to actual needs to ensure that it can withstand sufficient tensile and compressive forces and guarantee the stability of the connection.

[0052] Furthermore, fixedly connecting the anti-drop member 21 and the mounting member 22 through the connecting rod 40 can greatly improve the structural stability of the entire anti-drop LED downlight 100. Even under external force impact or vibration, the connecting rod 40 can effectively prevent loosening or detachment between the anti-drop member 21 and the mounting member 22.

[0053] Still further, the use of the connecting rod 40 makes the installation process simpler and faster. The staff only needs to connect one end of the connecting rod 40 to the anti-drop member 21, insert the other end into the connection hole of the mounting member 22, and fix it through appropriate fixing methods (such as screws, buckles, etc.).

[0054] Even further, the design of the connecting rod 40 can be adjusted according to different installation environments and requirements. For example, connecting rods 40 of different lengths can be selected to adapt to different installation heights and distances; connecting rods 40 of different materials can also be selected to adapt to different working environments and temperature conditions.

[0055] In summary, in this embodiment, the connecting rod 40, together with the first connecting portion 11 and the second connecting portion 211, constitutes a stable connection structure of the anti-drop LED downlight 100. The first connecting portion 11 and the second connecting portion 211 achieve a tight connection between the cylinder body 10 and the anti-drop member 21 through abutting and fixed connection; while the connecting rod 40 further strengthens this connection structure, enabling the entire anti-drop LED downlight 100 to remain stable and firm when subjected to external force impact.

[0056] In a specific embodiment, the mounting member 22 includes a socket portion 221 and a protrusion portion 222. The socket portion 221 is sleeved on the outer side of the anti-drop member 21. The protrusion portion 222 is located at one end of the mounting member 22 away from the anti-drop member 21, and extends along the circumference of the socket portion 221 away from the anti-drop member 21.

[0057] Specifically, the socket portion 221 is an important part of the mounting member 22, and it is sleeved on the outer side of the anti-drop member 21. Such a design ensures a firm connection between the mounting member 22 and the anti-drop member 21, thus forming an integral structure. The inner wall of the socket portion 221 may be closely fitted with the outer side of the anti-drop member 21, and the connection firmness is ensured through frictional force or additional fixing structures (such as buckles, threads, etc.).

[0058] Furthermore, the protrusion portion 222 is located at one end of the mounting member 22 away from the anti-drop member 21, and extends along the circumference of the socket portion 221 away from the anti-drop member 21. The shape and size of the protrusion portion 222 can be designed according to specific requirements, but generally it provides one or more fixing points for connecting with the fastener 30 or other mounting structures. Such a design enables the mounting member 22 to be conveniently fixed at the required position, such as on a wall, ceiling or other mounting surfaces.

[0059] Still further, the cooperation between the socket portion 221 and the protrusion portion 222 forms a firm connection between the mounting member 22 and the anti-drop member 21, thereby enhancing the structural strength of the entire anti-drop assembly 20. This helps to maintain the stability and integrity of the LED downlight when it is impacted or dropped.

[0060] Even further, through the connection between the protrusion portion 222 and the fastener 30 or other mounting structures, the installation process becomes simpler and faster. The staff only needs to sleeve the socket portion 221 on the anti-drop member 21, and then fix the protrusion portion 222 with the fastener 30. This reduces the installation difficulty and improves the work efficiency.

[0061] In summary, the design of the protrusion portion 222 can be adjusted according to different installation requirements, such as changing its shape, size or quantity. This enables the anti-drop LED downlight 100 to adapt to more installation scenarios and improves its adaptability and flexibility.

[0062] In a specific embodiment, the diameter of the protrusion portion 222 is set as a, and the maximum diameter of the cylinder 10 is set as b, satisfying the relationship:

[0063] a > b.

[0064] Specifically, when the diameter a of the convex portion 222 is greater than the maximum diameter b of the cylinder body 10, when the mounting member 22 is fixed to a wall, ceiling or other mounting surface, it can cover and exceed the maximum diameter of the cylinder body 10. This means that the mounting member 22 not only contacts the cylinder body 10 itself, but also can form an additional support area around the cylinder body 10.

[0065] Furthermore, since the convex portion 222 provides a larger contact surface, the connection between the mounting member 22 and the mounting surface is more stable, reducing the risk of loosening or falling off due to vibration or external force. The larger contact surface means that the mounting member 22 can bear a greater weight and tensile force, which is particularly important for occasions where a heavier LED downlight needs to be suspended or supported.

[0066] Still further, the design of the convex portion 222 enables the mounting member 22 to adapt to mounting holes or fixing points of different shapes and sizes, improving the flexibility and adaptability of installation. Since the convex portion 222 provides an additional support area, installers can more easily align and fix the mounting member 22 with the mounting surface, thus simplifying the installation process.

[0067] In a specific embodiment, the convex portion 222 is provided with a drop-resistant structure.

[0068] Specifically, setting the convex portion 222 with a drop-resistant structure means that it has higher impact resistance and drop resistance. When the LED downlight accidentally falls or is impacted by an external force, the convex portion 222, as the part directly contacting the external mounting surface, bears the impact force first. The design of the drop-resistant structure can effectively disperse and absorb these impact forces, thus reducing the damage to the cylinder body 10 and the lamp head inside it.

[0069] Furthermore, materials with higher toughness and strength are selected to manufacture the convex portion 222, such as high-strength plastics, rubbers or alloys, etc. These materials can withstand a greater impact force without being easily broken or deformed.

[0070] Still further, some strengthening structures are added inside or outside the convex portion 222, such as reinforcing ribs, grooves or honeycomb structures, etc. These structures can increase the rigidity and stability of the convex portion 222 and improve its impact resistance.

[0071] Even further, a shock-absorbing material or shock-absorbing structure is added between the convex portion 222 and the mounting surface, such as a rubber pad, a spring or an air cushion, etc. These shock-absorbing measures can reduce the direct action of the impact force on the convex portion 222, thus reducing the damage to the cylinder body 10.

[0072] In a specific embodiment, the mounting member 22 further includes a mounting portion 223, the mounting portion 223 is a mounting groove opened for the socket portion 221, and the mounting portion 223 is fixedly connected to the fastener 30.

[0073] Specifically, the installation part 223 is an installation groove formed on the socket part 221. This installation groove is designed to be fixedly connected to the fastener 30. The shape, size, and position of the installation groove should match the fastener 30 used to ensure that they can be connected tightly and firmly together.

[0074] Furthermore, the installation groove provides a clear fixing point for the fastener 30, enabling the installation part 22 to be accurately fixed at the desired position, such as on a wall, ceiling, or other installation surface. Through the tight connection between the fastener 30 and the installation groove, the connection between the installation part 22 and the installation surface is more stable, thereby improving the stability of the entire LED downlight. The design of the installation groove allows the fastener 30 to be easily and quickly connected to the installation part 22 without complex operations or tools, thus simplifying the installation process.

[0075] Still further, the installation part 223 (i.e., the installation groove) is located on the socket part 221, and the socket part 221 is sleeved on the outside of the anti-drop part 21. The convex part 222 is located at one end of the installation part 22 away from the anti-drop part 21 and extends along the circumference of the socket part 221 away from one end of the anti-drop part 21. Such a design enables a stable overall structure to be formed among the installation part 22, the anti-drop part 21, and the fastener 30, which can not only protect the cylinder body 10 and its internal lamp head but also ensure the stable installation of the LED downlight.

[0076] In a specific embodiment, the cylinder body 10 includes an integrally formed first connection part 11, and the first connection part 11 is located at one end close to the anti-drop part 21.

[0077] Specifically, the first connection part 11 and the cylinder body 10 itself are a whole, made by a one-time forming process without additional splicing or assembling processes. Such a design not only improves the structural strength of the entire cylinder body 10 but also makes the entire LED downlight more durable.

[0078] Furthermore, the fact that the first connection part 11 is located at one end of the cylinder body 10 close to the anti-drop part 21 enables the first connection part 11 to directly participate in the connection and fixation of the anti-drop structure, thereby enhancing the anti-drop effect.

[0079] Still further, there are no seams or weaknesses between the integrally formed first connection part 11 and the cylinder body 10, so it can withstand greater external impacts and tensile forces, improving the structural strength of the entire LED downlight.

[0080] Even further, the first connection part 11 can serve as a basis for installation and fixation, connecting to the anti-drop part 21 or other components. Since it is integral with the cylinder body 10, the connection is more stable and reliable, not easily loosening or falling off.

[0081] Furthermore, the first connecting portion 11 is located at one end of the cylinder 10 close to the anti-fall member 21 and can directly participate in the work of the anti-fall structure. When the LED downlight falls or is impacted, the first connecting portion 11 can cooperate with other components to disperse the impact force and reduce the damage to the cylinder 10 and the internal lamp holder.

[0082] In a specific embodiment, the anti-fall member 21 includes an integrally formed second connecting portion 211. The second connecting portion 211 is located at one end close to the cylinder 10, and the first connecting portion 11 abuts against and is fixedly connected to the second connecting portion 211.

[0083] Specifically, the integral molding of the second connecting portion 211 ensures the structural strength and connection stability between the second connecting portion 211 and other parts of the anti-fall member 21. The second connecting portion 211 is located at one end of the anti-fall member 21 close to the cylinder 10, and such a layout enables it to make direct and close contact and connection with the first connecting portion 11 of the cylinder 10.

[0084] Furthermore, the first connecting portion 11 and the second connecting portion 211 abut against each other during assembly to form a tight and seamless connection interface. In addition to abutting, these two connecting portions are also fixedly connected by some means (such as screws, buckles, welding, etc.) to ensure the firm and reliable connection between them, and it is not easy to loosen or fall off.

[0085] Still further, since both the first connecting portion 11 and the second connecting portion 211 are integrally formed and they are fixedly connected to each other, the structural strength of the entire anti-fall LED downlight 100 is significantly enhanced. The tight connection between the first connecting portion 11 and the second connecting portion 211 ensures the stability between the anti-fall member 21 and the cylinder 10, reducing potential safety hazards caused by insecure installation. Due to the adoption of the abutting and fixed connection methods, the installation process becomes simpler and faster, without the need for complex operations or tools.

[0086] Thereby, an anti-fall LED downlight 100 provided above can, when the downlight accidentally falls, serve as an additional protective layer to effectively buffer and disperse the impact force, thereby reducing the direct damage suffered by the downlight. In addition, the fastener 30 is fixedly connected to the anti-fall assembly 20 and is tightly fixed to the installation position by screws, ensuring the stable installation of the downlight and further enhancing its anti-fall performance.

[0087] The above are only the implementation manners of the present application. It should be noted here that for those of ordinary skill in the art, without departing from the creative concept of the present application, improvements can still be made, but these all fall within the protection scope of the present application.

Claims

1. A drop-proof LED downlight, characterized in that: include: A barrel, a lamp holder is installed in the barrel, and the lamp holder emits a light source; An anti-fall component, which is fixedly connected to the barrel and is sleeved on the outside of the barrel when viewed in the direction of the light source emitted by the lamp head, and is located at one end of the barrel from which the light source is emitted; A fastener is fixedly connected to the anti-fall component, and the fastener is fixedly connected to the installation position of the anti-fall LED downlight through a screw.

2. The drop-proof LED downlight according to claim 1, characterized in that: The anti-fall component comprises: The anti-fall piece is annular and fixedly connected to the cylinder; The mounting piece is fixedly connected to one end of the anti-fall piece away from the cylinder body, and is fixedly connected to one end of the fastener.

3. The drop-proof LED downlight according to claim 2, characterized in that: Observing along the direction of the light source emitted by the lamp holder, the anti-fall component is sleeved on the outside of the cylinder, and the mounting component is sleeved on the side of the anti-fall component away from the cylinder.

4. The drop-proof LED downlight according to claim 2, characterized in that: The anti-fall LED downlight also includes a connecting rod, one end of which is connected to the anti-fall component, and the other end of which is fixedly connected to a connecting hole provided in the mounting component.

5. The drop-proof LED downlight according to claim 2, characterized in that: The mounting member comprises: A sleeve portion, sleeved on the outer side of the cylinder; The raised portion is located at one end of the mounting member away from the anti-fall member and is extended along the circumference of the sleeve portion away from one end of the anti-fall member.

6. The drop-proof LED downlight according to claim 5, characterized in that: The diameter of the protrusion is set to a, and the maximum diameter of the cylinder is set to b, satisfying the relationship: a>b.

7. The drop-proof LED downlight according to claim 5, characterized in that: The protrusion is configured as an anti-fall structure.

8. The drop-proof LED downlight according to claim 5, characterized in that: The mounting member further comprises a mounting portion, which is a mounting groove provided in the sleeve portion, and the mounting portion is fixedly connected to the fastener.

9. The drop-proof LED downlight according to claim 2, characterized in that: The cylinder includes an integrally formed first connecting portion, and the first connecting portion is located at one end close to the anti-fall component.

10. The drop-proof LED downlight according to claim 9, characterized in that: The anti-fall component includes an integrally formed second connection portion, the second connection portion is located close to one end of the cylinder, and the first connection portion abuts against and is fixedly connected to the second connection portion.