Atmosphere lamp

Through the integration of the magnetic design of the magnetic cap and the light-emitting body and the charging base, the problems of insufficient existing ambient lighting effects and charging convenience are solved, diversified lighting effects and convenient charging are achieved, and personalized lighting and fill light needs are met.

CN223460357UActive Publication Date: 2025-10-21HANGZHOU HANGKE OPTOELECTRONICS CO LTD
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Patent Information

Application Number
CN202422792069.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-15
Publication Date
2025-10-21
Estimated Expiration
2034-11-15

AI Technical Summary

Technical Problem

Existing ambient lights have deficiencies in lighting effects and structural design, cannot meet diverse lighting needs, and the charging method is not convenient and safe enough.

Method used

The magnetic design of the magnetic cap and the light-emitting body is combined with a charging base and a multi-function socket strip to achieve flexible movement of the light-emitting body in the spherical light-transmitting cover and stable power supply, and integrates multiple interfaces to meet the charging needs of different devices.

Benefits of technology

It enhances the fun of using the atmosphere light and diversifies the lighting effects, provides continuous power support, improves the convenience and safety of charging, and meets the needs of personalized lighting and multi-functional fill lighting.

✦ Generated by Eureka AI based on patent content.

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Abstract

The atmosphere lamp comprises a base, a spherical light-transmitting cover, a flexible wire, a light-emitting body and a magnetic attraction cap, the spherical light-transmitting cover is arranged above the base, the light-emitting body arranged in the spherical light-transmitting cover in a wall-attached mode is arranged in the spherical light-transmitting cover, the magnetic attraction cap is arranged outside the spherical light-transmitting cover in a wall-attached mode, the magnetic attraction cap and the light-emitting body are magnetically attracted mutually, and the spherical light-transmitting cover is clamped by the magnetic attraction cap. The light-emitting body is arranged in the spherical light-transmitting cover and is magnetically attracted by the magnetic attraction cap and carries the light-emitting body to synchronously move along the wall along the spherical light-transmitting cover, a PCB and a power supply are arranged in the base, a switch is arranged on the outer side of the base, the light-emitting body is electrically connected to the PCB in the base through a flexible wire penetrating through the spherical light-transmitting cover, and the light-emitting body, the power supply and the switch are electrically connected with the PCB to form a control loop. Through the mutual magnetic attraction design of the magnetic attraction cap and the luminous body, a user controls the luminous body to move along the wall in the spherical light-transmitting cover, and the personalized illumination requirements in different scenes are met.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the lighting field, concretely relates to an atmosphere lamp. BACKGROUND

[0002] The atmosphere lamp is a kind of lighting lamp that creates environmental atmosphere by light effect, not only has certain lighting function, also has certain decorative effect, so there is certain elaboration on appearance design, not only want to be beautiful but also want to consider illumination effect, part of lamp also needs to make choice on color and brightness, of course, use LED as light source, the control of color and brightness becomes simple, so the key design of atmosphere lamp is still on specific structure.

[0003] Chinese patent publication number "CN117823839A" patent name "rotary device and its rotation body" discloses a kind of lamps, the lamps can be rotated using motor, and setting bright area and dark area, so that the lamps have the effect of moon phase, this design is mainly to hide motor and other structures, without referring to specific light structure.

[0004] Chinese patent publication number "CN204005702U" patent name "rotating structure of water lamp" discloses a kind of decorative lamps, although the design is relatively more beautiful, but the light body is located at the bottom, and the illumination effect is poor, only suitable for decorative lamps. UTILITY MODEL CONTENT

[0005] For the above prior art, the purpose of the present application is to provide a more practical atmosphere lamp.

[0006] The technical scheme of the present application is realized as follows: an atmosphere lamp, including base, spherical light-transmitting cover, flexible wire, light-emitting body and magnetic cap, the spherical light-transmitting cover is arranged above the base, and the light-emitting body is arranged in the spherical light-transmitting cover, the magnetic cap is arranged on the outer wall of the spherical light-transmitting cover, the magnetic cap and the light-emitting body are magnetically attracted to each other and clamp the spherical light-transmitting cover, and the light-emitting body is carried along the wall of the spherical light-transmitting cover by the magnetic cap, the base is provided with a PCB and a power supply, and a switch is arranged on the outer side of the base, the light-emitting body is connected to the PCB in the base by the flexible wire passing through the spherical light-transmitting cover, and the light-emitting body, the power supply and the switch are electrically connected to the PCB to form a control loop.

[0007] Further, the atmosphere lamp further includes a charging seat, the base is provided with a first conductive electrode electrically connected to the PCB, the charging seat is provided with a seat cabin accommodating the base, the seat cabin is provided with a second conductive electrode corresponding to the position of the first conductive electrode, the charging seat is provided with a power adapter inside or outside, the charging seat is provided with a power plug outside, the power plug is electrically connected to the second conductive electrode through the power adapter by cable, and the base is arranged in the seat cabin to form an electrically conductive connection between the first conductive electrode and the second conductive electrode.

[0008] Further, the first conductive electrode is arranged at the bottom of the base, the second conductive electrode is arranged at the bottom of the cabin, the bottom of the base abuts against the bottom of the cabin, and the first conductive electrode and the second conductive electrode are electrically connected.

[0009] Further, the first conductive electrode comprises a positive charging contact pin and a negative charging contact pin, and the second conductive electrode comprises a positive discharging contact ring and a negative discharging contact ring.

[0010] Or, the first conductive electrode comprises a positive charging contact ring and a negative charging contact ring, and the second conductive electrode comprises a positive discharging contact pin and a negative discharging contact pin.

[0011] Further, the charging base is a power strip, the power strip comprises a socket area and a functional module area, the socket area is provided with at least one power socket, the cabin is arranged in the functional module area, and the power taking plug is connected to the power connection end of each power socket through the first route of the cable passing through the power strip and is electrically connected to the power adapter through the second route.

[0012] Further, at least one USB interface, at least one Type-C interface and / or at least one USB Type-A interface are arranged on one side of the power strip; the USB interface, the Type-C interface and / or the USB Type-A interface are respectively electrically connected to the power adapter, and the socket end thereof penetrates through the power strip.

[0013] Further, a charging battery as a power source is arranged in the base, two ends of the charging battery are respectively electrically connected to the PCB board, and a digital display module or a power supply power indicator light electrically connected to the PCB board is arranged on the base.

[0014] Further, the base is in a cylindrical shape, and the cabin is correspondingly arranged in a cylindrical shape; or the base is in a rectangular shape, and the cabin is correspondingly arranged in a rectangular shape.

[0015] Further, the illuminant is a ring-shaped illuminant composed of at least one ring-shaped filament or composed of a board-mounted light source, and the illuminant further comprises an inner-pasting-wall sliding ring, the ring-shaped illuminant is arranged below the inner-pasting-wall sliding ring, and a plurality of first magnetic attraction members are arranged on the upper side of the ring-shaped illuminant.

[0016] The magnetic cap comprises an outer-pasting-wall sliding ring in a ring shape, a plurality of second magnetic attraction members are arranged on the outer-pasting-wall sliding ring, and the magnetic cap carries the illuminant along the wall of the spherical light-transmitting cover by the second magnetic attraction members.

[0017] Further, the flexible wire is arranged in a curve shape in the spherical light-transmitting cover.

[0018] Compared with the prior art, the atmosphere lamp described in the application enhances the interestingness of use by the mutual magnetic attraction design of the magnetic cap and the light emitter, the user controls the light emitter to move along the wall in the spherical light-transmitting cover, the light efficiency of the atmosphere lamp is more variable and dynamic, and the individualized lighting needs in different scenes are met, the rechargeable battery arranged in the base provides continuous power support for the atmosphere lamp, and the digital display module or the power supply power indicator light enables the user to intuitively understand the battery power state, the magnetic cap is directly above, the light is from top to bottom, thereby avoiding the discomfort caused by the direct light into the glasses, and the irradiation angle of the light emitter is adjusted along the spherical light-transmitting cover by the magnetic cap, thereby different atmosphere effects are generated in different environments, and the control is convenient and flexible.

[0019] The design of the charging base enables the atmosphere lamp to be conveniently connected when charging, the electrical conduction of the first conductive electrode and the second conductive electrode realizes a rapid and stable charging process, and meanwhile, the power adapter arranged in or outside the charging base ensures the stable supply of the power supply, improves the convenience and safety of use.

[0020] The charging base is designed in the form of a power strip, not only provides the charging function of the atmosphere lamp, but also integrates the power jack and various interfaces (such as USB, Type-C, etc.), realizes multifunctional integration, improves the space utilization rate, and also provides convenience for the charging of other electronic devices. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 is a sectional view of the atmosphere lamp;

[0022] Figure 2 is a perspective view of the atmosphere lamp;

[0023] Figure 3 is a schematic view of the atmosphere lamp in the use state of the charging base;

[0024] Figure 4 is a schematic view of the atmosphere lamp in the use state of the power strip;

[0025] Figure 5 is Figure 2 is a schematic view of the magnetic attraction structure of the magnetic cap and the light emitter;

[0026] Figure 6 is a schematic view of the structure of the light emitter using a ring filament;

[0027] Figure 7This is a structural diagram of a ring-shaped light source composed of onboard lamp beads as the light source. DETAILED DESCRIPTION

[0028] As needed, detailed embodiments of the present application are disclosed herein, but it should be understood that the disclosed embodiments are merely exemplary of the present application, and the present application may be implemented in different and alternative forms. The accompanying drawings are not necessarily drawn to scale, and certain features may be exaggerated or reduced to illustrate the details of specific components. Therefore, the specific structural and functional details disclosed herein should not be understood as having a limiting meaning, but merely as a representative basis to teach those skilled in the art to adopt the present application differently. Based on the embodiments in this application, all other embodiments obtained by those of ordinary skill in the art without making creative work are within the scope of protection of this application.

[0029] Example:

[0030] like Figures 1-7 As shown, an ambient light comprises a base 11, a spherical light-transmitting cover 1, a flexible conductor 3, a light-emitting element 2, and a magnetic cap 14. The spherical light-transmitting cover 1 is positioned above the base 11 and contains a light-emitting element 2 mounted against the wall. The light-emitting element 2 evenly illuminates the spherical light-transmitting cover 1, creating a soft light and shadow effect. The magnetic cap 14 is mounted against the wall outside the spherical light-transmitting cover 1 and stably adheres to the spherical light-transmitting cover 1 through magnetic force. The magnetic cap 14 and the light-emitting element 2 are magnetically attracted to each other and clamp the spherical light-transmitting cover 1. This magnetic design allows the user to easily adjust the position of the light-emitting element 2. Furthermore, the magnetic cap 14 attracts and carries the light-emitting element 2 along the wall of the spherical light-transmitting cover 1, allowing for flexible movement of the light-emitting element 2 within the spherical light-transmitting cover 1, increasing the fun and practicality of the ambient light. A PCB board 12 and a power supply are located within the base 11, providing stable power for the ambient light. A switch 13 is provided on the outside of the base 11 for convenient user control of the ambient light. The light-emitting element 2 is electrically connected to a PCB 12 within the base 11 by a flexible conductor 3 passing through the spherical light-transmitting cover 1. The design of the flexible conductor 3 ensures power supply to the light-emitting element 2 during movement while preventing the inconvenience of movement caused by the rigid conductor. The light-emitting element 2, power supply, and switch 13 are electrically connected to the PCB 12 to form a control circuit, enabling integrated control of the ambient light.

[0031] In addition, if Figure 3As shown, the atmosphere lamp further comprises a charging seat 4, which provides a convenient charging method for the atmosphere lamp. The base 11 is provided with a first conductive electrode 25 electrically connected with the PCB 12, and the charging seat 4 is provided with a seat cabin 40 accommodating the base 11. The seat cabin 40 is designed to enable the base 11 to be stably placed on the charging seat 4. The seat cabin 40 is provided with a second conductive electrode 45 corresponding to the position of the first conductive electrode 25. When the base 11 is placed in the seat cabin 40, the first conductive electrode 25 and the second conductive electrode 45 are in close contact, forming an electrically conductive connection and realizing the charging function. This contact charging method is simple and reliable, and improves the charging experience of users.

[0032] Further, as shown in the drawings, Figure 3 The first conductive electrode 25 is arranged at the bottom of the base 11, and the second conductive electrode 45 is arranged at the bottom of the seat cabin 40. The bottom of the base 11 abuts against the bottom of the seat cabin 40, ensuring the close contact and stable conduction of the first conductive electrode 25 and the second conductive electrode 45. The first conductive electrode 25 comprises a positive charging contact pin and a negative charging contact pin, and the second conductive electrode 45 comprises a positive discharging contact ring and a negative discharging contact ring. Alternatively, the first conductive electrode 25 comprises a positive charging contact ring and a negative charging contact ring, and the second conductive electrode 45 comprises a positive discharging contact pin and a negative discharging contact pin. Both of the two schemes can realize accurate butt joint of the positive and negative electrodes and power transmission.

[0033] As shown in the drawings, Figure 4 The charging seat 4 is a power strip 41, which integrates the functions of charging and power distribution. The power strip 41 comprises a jack area 42 and a functional module area 43. The jack area 42 is provided with at least one power jack 46, providing multiple power output interfaces for users. The seat cabin 40 is arranged in the functional module area 43, independent of the jack area 42, avoiding interference during charging. The power taking plug is connected to the power taking end of each power jack 46 in the first route through the power strip 41, providing power for the jack area 42; and is electrically connected to the power adapter in the second route, providing charging power for the atmosphere lamp. This design realizes the integration of charging and power distribution, improving the practicability of the power strip 41.

[0034] As shown in the drawings, Figure 4 The power strip 41 is provided with at least one USB interface 47, at least one Type-C interface 48 and / or at least one USB Type-A interface 49 on one side. These interfaces enrich the interface types of the power strip 41, meeting the charging needs of different devices. The USB interface 47, the Type-C interface 48 and / or the USB Type-A interface 49 are respectively electrically connected to the power adapter, and the plug end thereof penetrates through the power strip 41 and is arranged outward, facilitating users to insert charging devices.

[0035] AsFigure 1 、 3 As shown, the base 11 houses a rechargeable battery 10, which serves as a power source and provides continuous power to the ambient light. The two ends of the rechargeable battery 10 are electrically connected to a PCB 12, ensuring stable power transmission. The base 11 is also equipped with a digital display module or power indicator light, electrically connected to the PCB 12. This displays the battery's charge status in real time, allowing users to easily understand the ambient light's usage.

[0036] To accommodate different shapes of the base 11, if the base 11 is cylindrical, the cabin 40 is correspondingly configured as a cylindrical shape; or if the base 11 is rectangular, the cabin 40 is correspondingly configured as a rectangular shape. This design ensures a tight fit and stable placement between the base 11 and the cabin 40.

[0037] like Figure 6 As shown, the luminous body 2 is composed of at least one annular filament 23; or as Figure 7 As shown, the light-emitting body 2 is an annular light-emitting body 24 composed of a board-mounted lamp bead light source; this design enables the light-emitting body 2 to emit uniform light, thereby improving the lighting effect of the atmosphere light. The light-emitting body 2 also includes an inner wall-adhering sliding ring 15, which is arranged on the lower side of the inner wall-adhering sliding ring 15, and a plurality of first magnetic parts 18 are arranged around the upper side of the wall-adhering sliding ring 15; the magnetic cap 14 includes an annular outer wall-adhering sliding ring 21, and a plurality of second magnetic parts 22 are arranged around the outer wall-adhering sliding ring 21. The design of this magnetic structure enables the magnetic cap 14 to be stably adsorbed on the light-emitting body 2, and the spherical light-transmitting cover 1 is clamped by the mutual magnetic attraction of each second magnetic part 22 with each first magnetic part 18, thereby achieving stable movement and positioning of the light-emitting body 2 within the spherical light-transmitting cover 1.

[0038] like Figure 1 、 3 As shown, the flexible wire 3 is arranged in a curved shape within the spherical light-transmitting cover 1. This design prevents the wire from becoming stiff or stuck during the movement of the light-emitting element 2. When one end of the wire connecting the light-emitting element 2 moves to the end of the spherical light-transmitting cover 1 away from the base, the flexible wire 3 is stretched. At this point, the flexible wire 3 is fully extended but not completely straightened to prevent damage to the ends of the flexible wire 3 and the wire itself, and to prevent the light-emitting element 2 from being disengaged from the magnetic cap 14. This design ensures the stability and durability of the ambient light during use.

Claims

1. An atmosphere lamp, characterized by The ambient light comprises a base (11), a spherical light-transmitting cover (1), a flexible wire (3), a light-emitting body (2) and a magnetic cap (14). The spherical light-transmitting cover (1) is arranged above the base (11) and has the light-emitting body (2) arranged on the inner wall. The magnetic cap (14) is arranged on the outer wall of the spherical light-transmitting cover (1). The magnetic cap (14) and the light-emitting body (2) are magnetically attracted to each other and clamp the spherical light-transmitting cover. The magnetic cap (14) and the light-emitting body (2) are magnetically attracted to each other and move along the wall synchronously along the spherical light-transmitting cover (1). The base (11) is provided with a PCB (12) and a power supply. The outer side of the base (11) is provided with a switch (13). The light-emitting body (2) is connected to the PCB (12) in the base (11) through the spherical light-transmitting cover (1) by the flexible wire (3). The light-emitting body (2), the power supply and the switch (13) are electrically connected to the PCB (12) to form a control loop.

2. The ambient light of claim 1, wherein, The ambient light further comprises a charging base (4). The base (11) is provided with a first conductive electrode (25) electrically connected to the PCB (12). The charging base (4) is provided with a seat (40) accommodating the base (11). The seat (40) is provided with a second conductive electrode (45) corresponding to the position of the first conductive electrode (25). The charging base (4) is provided with a power adapter inside or outside. The charging base (4) is provided with a power plug. The power plug is electrically connected to the second conductive electrode (45) through the power adapter by a cable. The base (11) is arranged in the seat (40) to form an electrically conductive connection between the first conductive electrode (25) and the second conductive electrode (45).

3. The ambient light of claim 2, wherein, The first conductive electrode (25) is arranged at the bottom of the base (11). The second conductive electrode (45) is arranged at the bottom of the seat (40). The bottom of the base (11) abuts against the bottom of the seat (40). The first conductive electrode (25) and the second conductive electrode (45) form an electrically conductive connection.

4. The ambient light of claim 3, wherein, The first conductive electrode (25) comprises a positive charging contact pin and a negative charging contact pin. The second conductive electrode (45) comprises a positive discharging contact ring and a negative discharging contact ring. Or, the first conductive electrode (25) comprises a positive charging contact ring and a negative charging contact ring. The second conductive electrode (45) comprises a positive discharging contact pin and a negative discharging contact pin.

5. The ambient light of claim 2, wherein, The charging base (4) is a power strip (41). The power strip (41) comprises a jack area (42) and a functional module area (43). The jack area (42) is provided with at least one power jack (46). The seat (40) is arranged in the functional module area (43). The power plug is connected to the power connection end of each power jack (46) by a cable through the power strip (41) in a first path and is electrically connected to the power adapter in a second path.

6. The ambient light of claim 5, wherein, The power strip (41) is provided with at least one USB interface (47), at least one Type-C interface (48) and / or at least one USB Type-A interface (49) on one side; the USB interface (47), the Type-C interface (48) and / or the USB Type-A interface (49) are respectively electrically connected to the power adapter, and the plug end thereof is arranged outwardly through the power strip (41).

7. The ambient light of claim 1, wherein, The base (11) is provided with a charging battery (10) as a power supply, two poles of the charging battery (10) are respectively electrically connected to the PCB (12); the base (11) is provided with a digital display module or a power supply power indicator lamp which is electrically connected to the PCB (12).

8. The ambient light of claim 1, wherein, The base (11) is in a cylindrical shape, and the cabin (40) is correspondingly provided in a cylindrical shape. Or, the base (11) is in a cuboid shape, and the cabin (40) is correspondingly provided in a cuboid shape.

9. The ambient light of claim 1, wherein, The illuminant (2) is a ring-shaped illuminant (24) composed of at least one ring-shaped filament (23) or composed of a board-mounted lamp bead light source, and further comprises an inner-wall sliding ring (15) arranged on the lower side of the inner-wall sliding ring (15), and a plurality of first magnetic attraction members (18) are arranged on the upper side of the inner-wall sliding ring (15). The magnetic cap (14) comprises an outer-wall sliding ring (21) in a ring shape, a plurality of second magnetic attraction members (22) are arranged on the outer-wall sliding ring (21), and the magnetic cap (14) is clamped to the spherical light-transmitting cover (1) by the mutual magnetic attraction between the second magnetic attraction members (22) and the first magnetic attraction members (18).

10. The ambient light of claim 1, wherein, The flexible wire (3) is arranged in a curve shape in the spherical light-transmitting cover (1).

Citation Information

Patent Citations

  • Rotating device and self-rotating body thereof

    CN117823839A

  • Rotary structure for water lamp

    CN204005702U