Magnetic combined induction lamp
By designing a magnetic combination sensor light, the magnetic connection and color switching of multiple individual lights are utilized, solving the problems of simple structure and single color of magnetic lights, and improving aesthetics, fun and convenience.
Patent Information
- Application Number
- CN202520344005.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2035-02-28
AI Technical Summary
Existing magnetic lights have a simple structure, display only a single color, lack interest and aesthetics, and occupy a large area, making them inconvenient.
A magnetic combination induction lamp was designed, which uses at least two lamp units connected by magnetic elements. The lamp units can present different appearances and colors, and the combination method is flexible. The magnetic elements can be attached to metal surfaces, making it easy to carry.
It enhances the aesthetics, fun, and convenience of magnetic lamps, with a simple structure, low space occupation, and easy portability.
Smart Images

Figure CN223768819U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of sensor light technology, specifically relating to a magnetic combination sensor light. Background Technology
[0002] Magnetic lights are renowned for their unique magnetic installation method. These lights utilize magnetic principles to connect the lamp body to a power source or other fixed components via magnetic attraction, greatly simplifying the complex installation process of traditional lighting fixtures. Due to their convenient installation and flexibility, magnetic lights are widely used in home lighting, commercial lighting, and decorative lighting in public places.
[0003] However, existing magnetic lights have a relatively simple structure, display only a single color, and have a monotonous appearance, lacking interest and aesthetics; in addition, existing magnetic lights occupy a large area and lack convenience. Utility Model Content
[0004] In order to overcome the shortcomings of the existing technology and solve the technical problems of existing magnetic lamps such as simple structure, single color display, lack of fun, lack of aesthetics and lack of convenience, this utility model provides a magnetic combination induction lamp.
[0005] This utility model is achieved through the following technical solution.
[0006] This utility model provides a magnetic attraction combined induction lamp, including at least two lamp units, which are magnetically connected to each other by a first magnetic element;
[0007] The lamp unit includes:
[0008] The base has a receiving cavity on its top surface;
[0009] Storage slot, wherein the storage slot is located in the receiving cavity;
[0010] A light source element, comprising a first light source and a second light source, wherein the first light source and the second light source are used to emit light of different colors, and the first light source and the second light source are disposed on a storage slot;
[0011] A sensing element is disposed on the storage slot at the location of the first light source and the second light source;
[0012] The second magnetic element is disposed on the storage slot.
[0013] The outer casing is disposed on the base outside the storage slot, and the outer casing is provided with a first magnetic element.
[0014] Furthermore, the magnetic combination induction lamp comprises two individual lamp units.
[0015] Furthermore, the magnetic attraction combination induction lamp includes three individual lamps.
[0016] Furthermore, the first magnetic element and the second magnetic element are magnets.
[0017] Furthermore, the lamp unit is in the form of a triangular pyramid structure, the storage slot is also in the form of a triangular pyramid, the bottom surface of the storage slot matches the bottom surface of the receiving cavity, and the sides of the storage slot are respectively provided with a first cylindrical slot, a second cylindrical slot and a third cylindrical slot. The first cylindrical slot is provided with a first light source and a sensing element, the second cylindrical slot is provided with a second light source and a sensing element, and the third cylindrical slot is provided with a second magnetic element.
[0018] Furthermore, the outer shell is configured in the shape of a bottomless triangular pyramid, and each side of the outer shell is provided with a first magnetic element.
[0019] Furthermore, the outer shell is made of a transparent material.
[0020] Furthermore, limiting holes are provided at the top corner of the base and the bottom corner of the outer shell.
[0021] Furthermore, both the first and second light sources are LED lights.
[0022] The beneficial effects achieved by this utility model are as follows: This utility model uses several individual lamp units, which can be connected by a first magnetic element. Different combination methods of two, three, or several lamp units present different appearances and different colors of light, enhancing aesthetics and interest. The first magnetic element can also be adsorbed onto metal surfaces, providing convenience. Using a first light source, a second light source, and a second magnetic element, when the second magnetic element of one lamp unit approaches the first light source of another lamp unit, the other lamp unit emits light of one color. When the second magnetic element of one lamp unit approaches the second light source of another lamp unit, the other lamp unit emits light of another color. When the second magnetic element of one lamp unit continues to approach the first or second light source of another lamp unit, a sensing element triggers the first or second light source to turn off. Furthermore, this utility model has a simple structure, small space occupation, and is easy to carry, improving convenience.
[0023] Compared with existing technologies, this utility model has advantages such as diverse structures, the ability to present different colors of light, aesthetic appeal, fun, and convenience. Attached Figure Description
[0024] Figure 1 This is a structural schematic diagram of the base of this utility model;
[0025] Figure 2 This is a schematic diagram of the structure of the storage slot of this utility model;
[0026] Figure 3 This is a structural schematic diagram of the outer shell of this utility model.
[0027] In the figure: 1. Light fixture unit; 2. First magnetic element; 3. Base; 4. Receiving cavity; 5. Storage slot; 6. Light source element; 7. First light source; 8. Second light source; 9. Sensing element; 10. Second magnetic element; 11. Housing; 12. First cylindrical groove; 13. Second cylindrical groove; 14. Third cylindrical groove; 15. Limiting hole. Detailed Implementation
[0028] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments.
[0029] like Figures 1 to 3 As shown, the magnetic combination induction lamp includes at least two lamp units 1, which are magnetically connected by a first magnetic element 2. Several lamp units 1 can present different appearances and different colors of light by combining in different ways through the first magnetic element 2, which enhances aesthetics and fun. In addition, the first magnetic element 2 can also be attached to a metal surface, making it easy to carry and improving convenience.
[0030] The magnetic combination induction lamp includes two lamp units 1, which are connected together by a first magnetic element 2.
[0031] The magnetic combination induction lamp includes three lamp units 1, which are connected together by a first magnetic element 2. The combination of two lamp units 1 and the combination of three lamp units 1 have different appearances and present different colors of lamps, and the structural forms are not uniform.
[0032] The lamp unit 1 includes a base 3, the top surface of which has a receiving cavity 4 for placing a storage slot 5. The storage slot 5 is located within the receiving cavity 4. A light source element 6 includes a first light source 7 and a second light source 8, both of which are LED lights with built-in power supplies. The use of LED lights is energy-saving, environmentally friendly, and has a long lifespan, improving the durability and environmental friendliness of the lamp unit 1. The first and second light sources 7 and 8 are used to emit different colors of light and are located on the storage slot 5. A sensing element 9 is located on the storage slot 5 at the location of the first and second light sources 7 and 8. The sensing element 9 is used to sense a second magnetic element 10 in another lamp unit 1, causing the first and second light sources 7 and 8 to emit different colors of light. The second magnetic element 10 is located on the storage slot 5. A housing 11 is located on the base 3 outside the storage slot 5 and has a first magnetic element 2 on it. The first magnetic element 2 and the second magnetic element 10 are magnets. When multiple lamp units 1 are combined, the first magnetic element 2 presents different appearances and different colors of lamps in different ways, which enhances aesthetics and fun. In addition, the first magnetic element 2 can also be attached to metal surfaces, making it easy to carry and improving convenience.
[0033] The lamp unit 1 has a triangular pyramid structure, and the storage slot 5 is also triangular pyramid shaped. The bottom surface of the storage slot 5 matches the bottom surface of the receiving cavity 4 to prevent the storage slot 5 from moving within the receiving cavity 4. The storage slot 5 has a first cylindrical slot 12, a second cylindrical slot 13, and a third cylindrical slot 14 on its side. The first cylindrical slot 12 contains a first light source 7 and a sensing element 9. The second cylindrical slot 13 contains a second light source 8 and a sensing element 9. The third cylindrical slot 14 contains a second magnetic element 10. When two lamp units 1 are close to each other, when the second magnetic element 10 of one lamp unit 1 approaches the first light source 7 of the other lamp unit 1, the sensing element 9 will sense the approach of the second magnetic element 10 and cause the first light source 7 to emit a certain color of light. When the second magnetic element 10 of one lamp unit 1 approaches the second light source 8 of the other lamp unit 1, the sensing element 9 will sense the approach of the second magnetic element 10 and cause the second light source 8 to emit a different color of light. When the second magnetic element 10 of one lamp unit 1 continues to approach the first light source 7 or the second light source 8 of the other lamp unit 1, the sensing element 9 will similarly sense the approach and cause the first light source 7 or the second light source 8 to turn off.
[0034] The outer shell 11 is a bottomless triangular pyramid shape, which facilitates the enclosure of the storage slot 5 inside. The sides of the outer shell 11 are provided with first magnetic elements 2. The outer shell 11 is made of transparent material, which facilitates the projection of the first light source 7 or the second light source 8.
[0035] Limiting holes 15 are provided at the top corner of the top surface of the base 3 and at the bottom corner of the bottom of the outer shell 11. The setting of the limiting holes 15 further makes the connection between the base 3 and the outer shell 11 more stable.
[0036] The working process of this utility model is as follows:
[0037] When selecting the quantity of lamp unit 1:
[0038] Select an appropriate number of individual lamp units 1 and combine them in different ways through the first magnetic element 2 to present lamps of different colors.
[0039] When the two individual lamps 1 are close together:
[0040] When the second magnetic element 10 of one lamp unit 1 approaches the first light source 7 or the second light source 8 of another lamp unit 1, the sensing element 9 will sense the approach of the second magnetic element 10 and cause the first light source 7 or the second light source 8 to emit light of a different color. When the second magnetic element 10 of one lamp unit 1 continues to approach the first light source 7 or the second light source 8 of another lamp unit 1, the sensing element 9 will also sense the approach and cause the first light source 7 or the second light source 8 to turn off.
[0041] When carrying and using:
[0042] The first magnetic element 2 of the lamp unit 1 can be adsorbed onto the metal surface.
[0043] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, modifications can still be made to the embodiments. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A magnetically attractable combination induction lamp characterized by: The magnetic combination induction lamp comprises at least two lamp monomers (1), and the lamp monomers (1) are connected by first magnetic elements (2). The lamp monomer (1) comprises: a base (3) provided with a containing cavity (4) on the top surface; a storage groove (5) arranged at the containing cavity (4); a light source element (6) comprising first and second light sources (7) and (8) for emitting light of different colors, the first and second light sources (7) and (8) being arranged on the storage groove (5); an induction element (9) arranged on the storage groove (5) at the first and second light sources (7) and (8); a second magnetic element (10) arranged on the storage groove (5), an outer shell (11) arranged on the base (3) outside the storage groove (5), the outer shell (11) being provided with the first magnetic element (2).
2. The magnetic combination induction lamp according to claim 1, characterized in that: The magnetic combination induction lamp comprises two lamp monomers (1).
3. The magnetic combination induction lamp of claim 1, wherein: The magnetic combination induction lamp comprises three lamp monomers (1).
4. The magnetic combination induction lamp of claim 1, wherein: The first and second magnetic elements (2) and (10) are magnets.
5. The magnetic combination induction lamp according to claim 4, characterized in that: The lamp monomer (1) has a triangular pyramid structure, the storage groove (5) has a triangular pyramid structure, the bottom surface of the storage groove (5) matches the bottom surface of the containing cavity (4), the side surface of the storage groove (5) is respectively provided with first, second and third cylindrical grooves (12), (13) and (14), the first cylindrical groove (12) is provided with the first light source (7) and the induction element (9), the second cylindrical groove (13) is provided with the second light source (8) and the induction element (9), and the third cylindrical groove (14) is provided with the second magnetic element (10).
6. The magnetic combination induction lamp according to claim 5, characterized in that: The outer shell (11) has a bottomless triangular pyramid structure, and the side surface of the outer shell (11) is provided with the first magnetic element (2).
7. The magnetic combination induction lamp according to claim 6, characterized in that: The outer shell (11) is made of transparent material.
8. The magnetic combination induction lamp according to claim 7, characterized in that: Limiting holes (15) are arranged at the top corners of the top surface of the base (3) and the bottom corners of the bottom surface of the outer shell (11).
9. The magnetic combination induction lamp according to claim 8, characterized in that: The first and second light sources (7) and (8) are LED lamps.