Wireless induction power supply lamp applied underwater

By using wireless inductive power supply and a sealed structure design, the problem of poor sealing in existing technologies has been solved, achieving sealing for both the electrical contact device and underwater applications. This prevents water from entering the wiring points and improves the lifespan and safety of the lamps.

CN223691032UActive Publication Date: 2025-12-19SUZHOU HANRUI LIGHTING TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423288434.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-12-19
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Existing underwater lights mostly use wired cables for power supply, which have short lifespans and poor sealing, posing risks of water ingress, moisture damage, and electric shock. They also cannot be embedded in walls for sealed connection.

Method used

It adopts a wireless inductive power supply method, and the transmitter and cable are sealed inside by a sealing cylinder and a sealing plate. The lamp components are movably set inside the sealing cylinder. The sealing is improved by welding or bonding. It can be embedded in the wall and the joints are filled with sealant.

Benefits of technology

This achieves the sealing of both the wireless charging device and the contact device, preventing water from entering the wiring and improving the lifespan and safety of the lamps.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223691032U_ABST
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Abstract

The utility model discloses a wireless induction power supply lamp for underwater application, relates to the technical field of underwater lamps, and aims to provide a wireless induction power supply lamp for underwater application without underwater power connection, which comprises a power supply component, and the power supply component comprises a sealing cylinder, an emitter element and a cable electrically connected with the emitter element. A first sealing plate is fixedly welded in the sealing cylinder, the emitter element is fixedly arranged in the sealing cylinder, and the emitter element is attached to the first sealing plate. The utility model has the beneficial effects that the emitter element is fixedly arranged in the sealing cylinder, and the cable penetrates through the second sealing plate and is electrically connected with the emitter element; the emitter element, the cable and the joint of the emitter element and the cable are sealed in the sealing cylinder through the first sealing plate and the second sealing plate, water is prevented from entering the sealing cylinder, and the sealing performance is improved through fixed connection modes such as welding or bonding connection.
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Description

TECHNICAL FIELD

[0001] The utility model relates to underwater lamp technical field more specifically, it relates to a kind of wireless induction power supply lamps and lanterns of underwater application. BACKGROUND

[0002] Wireless radio technology can be implemented in a variety of ways, including but not limited to the application of electric field, magnetic field and electromagnetic wave. The transmitter converts electrical energy into the energy state of the corresponding field, and after transmission through a certain space, it is received by one or more receivers and converted back into electrical energy. It is suitable for places with high risk of electric shock, such as underwater lamps. Most of the underwater lamps currently use wired cables for power supply, and the service life of the lamps is not long, and they need to be replaced from time to time. They cannot be fixed in the wall using welding, adhesive bonding or other fixed connection methods. Therefore, it is not possible to embed the connection between the lamp and the cable in the wall for sealing. In summary, the connection between the lamp and the cable requires a movable connector with good sealing performance. When the sealing performance deteriorates, it is easy to get wet and even pose an electric shock hazard. SUMMARY

[0003] To solve the technical problems mentioned in the background art, the utility model provides a wireless induction power supply lamp for underwater application.

[0004] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a wireless induction power supply lamp for underwater application, comprising:

[0005] The power supply assembly includes a sealed cylinder, a transmitter element, and a cable electrically connected to the transmitter element. The first sealing plate is fixedly welded in the sealed cylinder. The transmitter element is fixedly arranged in the sealed cylinder, and the transmitter element and the first sealing plate are attached.

[0006] The lamp assembly includes a lamp cylinder, a receiver element, and a light emitting assembly electrically connected to the receiver element. The second sealing plate is fixedly welded to one end of the lamp cylinder. The transparent cover is fixedly welded to the other end of the lamp cylinder. The receiver element and the light emitting assembly are fixedly arranged in the lamp cylinder, and the receiver element and the second sealing plate are attached.

[0007] The lamp cylinder is movably arranged in the sealed cylinder, and the first sealing plate and the second sealing plate are attached.

[0008] The utility model is further provided with a third sealing plate fixedly arranged at one end of the sealed cylinder. The cable penetrates through the third sealing plate and is electrically connected to the transmitter element. The cable is sealingly connected to the third sealing plate, and the third sealing plate is sealingly connected to the sealed cylinder.

[0009] The utility model is further provided with a connecting sleeve fixedly connected to the outside of the lamp cylinder. The connecting sleeve is threadedly sleeved on the outside of the sealed cylinder.

[0010] The utility model further sets up, fixedly be equipped with mounting seat in the lamp barrel.

[0011] The utility model further sets up, the light emitting component includes lamp board and lamp pearl, and the lamp pearl is fixedly installed on the lamp board, and the lamp board is fixedly installed on the mounting seat.

[0012] Compared with the prior art, the utility model provides a wireless induction power supply lamp for underwater application, has the following beneficial effects:

[0013] 1, the utility model discloses the transmitter element fixedly arranged in the sealed cylinder, and the cable is through the second sealing plate and is electrically connected with the transmitter element, the transmitter element and the cable and the connecting place of both are sealed in the sealed cylinder through the first sealing plate and the second sealing plate, avoid the water to enter, improve its sealing performance through the welding or the adhesion connection such as fixed connection mode.

[0014] 2, the utility model discloses the sealed cylinder can be embedded in the wall body, and the connecting place of sealed cylinder and wall body is filled with sealant or other sealing material and is sealed, avoids the cable to soak in the water.

[0015] 3, the utility model discloses the lamp assembly is movably arranged in the sealed cylinder, when installing the lamp assembly, inserts it into the sealed cylinder, and the connecting sleeve and the sealed cylinder are screwed, realize the installation of the lamp assembly Fixed, when needing to replace the lamp assembly, it can be removed from the sealed cylinder, and the lamp assembly and the power supply assembly need not wired connection, avoid the water in the wiring. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is the whole structure schematic diagram of a wireless induction power supply lamp for underwater application in the utility model;

[0017] Figure 2 It is the structure schematic diagram of the power supply assembly and the lamp assembly of not connecting in the utility model;

[0018] Figure 3 It is the explosion structure schematic diagram of the power supply assembly in the utility model;

[0019] Figure 4 It is the explosion structure schematic diagram of the lamp assembly in the utility model;

[0020] Figure 5 It is the structure schematic diagram of the light emitting component in the utility model.

[0021] In the drawing: 1, power supply assembly;101, sealed cylinder;102, transmitter element;103, cable;104, first sealing plate;105, third sealing plate;

[0022] 2, lamp assembly; 201, lamp barrel; 202, receiver element; 203, light emitting assembly; 204, second sealing plate; 205, transparent cover; 206, connecting sleeve; 207, mounting seat;

[0023] 2031, lamp plate; 2032, lamp bead. DETAILED DESCRIPTION

[0024] It should be noted that the embodiments and features in the embodiments in the present application can be combined with each other without conflict. The present application will be described in detail below with reference to the drawings and in combination with the embodiments.

[0025] It should be noted that, unless otherwise specified, all technical and scientific terms used in the present application have the same meaning as generally understood by those skilled in the art to which the present application belongs.

[0026] In the present application, unless otherwise specified, the directions used such as "up, down" are generally with respect to the directions shown in the drawings, or with respect to the vertical, perpendicular or gravity directions; similarly, for the convenience of understanding and description, "left, right" are generally with respect to the left and right shown in the drawings; "inner, outer" refer to the inner and outer with respect to the contour of each component itself, but the above directional words are not used to limit the present application.

[0027] Please refer to Figures 1-5 A wireless induction power supply lamp for underwater application, characterized in that it comprises a power supply assembly 1, including a sealing cylinder 101, a transmitter element 102, and a cable 103 electrically connected to the transmitter element 102, a first sealing plate 104 is fixedly welded in the sealing cylinder 101, the transmitter element 102 is fixedly arranged in the sealing cylinder 101, and the transmitter element 102 and the first sealing plate 104 are attached; it further comprises a lamp assembly 2, including a lamp barrel 201, a receiver element 202, and a light emitting assembly 203 electrically connected to the receiver element 202, a second sealing plate 204 is fixedly welded at one end of the lamp barrel 201, a transparent cover 205 is fixedly welded at the other end of the lamp barrel 201, the receiver element 202 and the light emitting assembly 203 are both fixedly arranged in the lamp barrel 201, and the receiver element 202 and the second sealing plate 204 are attached. A third sealing plate 105 is fixedly arranged at one end of the sealing cylinder 101, the cable 103 penetrates through the third sealing plate 105 and is electrically connected to the transmitter element 102, and the cable 103 and the third sealing plate 105 are sealingly connected, and the third sealing plate 105 and the sealing cylinder 101 are sealingly connected.

[0028] In use, the transmitter element 102 is fixedly arranged in the sealed cylinder 101, and the cable 103 penetrates the third sealing plate 105 and is electrically connected with the transmitter element 102, the first sealing plate 104 is fixedly arranged in the sealed cylinder 101, and is connected by welding or adhesive connection or other sealing connection mode at the connection to improve the sealing performance, and the power supply element 1 is embedded in the wall of the pool or the pool bottom, and the joint is connected by welding or adhesive connection or other sealing connection mode to improve the sealing performance and avoid the contact of the cable 103 with the water in the pool.

[0029] Please refer to Figures 1-5 As an embodiment of the light-emitting assembly 203, the lamp cylinder 201 is movably arranged in the sealed cylinder 101, and the first sealing plate 104 and the second sealing plate 204 are attached. The lamp cylinder 201 is externally fixedly connected with a connecting sleeve 206, and the connecting sleeve 206 is threadedly sleeved outside the sealed cylinder 101. The lamp cylinder 201 is internally fixedly provided with a mounting seat 207. The light-emitting assembly 203 comprises a lamp plate 2031 and a lamp bead 2032, the lamp bead 2032 is fixedly mounted on the lamp plate 2031, and the lamp plate 2031 is fixedly mounted on the mounting seat 207.

[0030] More specifically, the lamp bead 2032 is fixedly mounted on the lamp plate 2031, the mounting seat 207 is fixedly arranged in the lamp cylinder 201, the lamp plate 2031 and the mounting seat 207 are fixedly connected, the receiver element 202 and the lamp plate 2031 are electrically connected, and the receiver element 202 is fixedly arranged in the lamp cylinder 201. The second sealing plate 204 is fixedly mounted on one side of the lamp cylinder 201 close to the receiver element 202, and the transparent cover 205 is fixedly mounted on one side of the lamp cylinder 201 close to the lamp bead 2032. The receiver element 202 and the light-emitting assembly 203 are sealed in the lamp cylinder 201 by cooperation of the transparent cover 205 and the second sealing plate 204. When the lamp assembly 2 needs to be installed, the lamp cylinder 201 is inserted into the sealed cylinder 101, and the connecting sleeve 206 is threadedly sleeved outside the sealed cylinder 101 to complete the installation and fixation of the lamp cylinder 201. At this time, the first sealing plate 104 and the second sealing plate 204 are attached, the transmitter element 102 can convert electrical energy into corresponding field energy state, the receiver element 202 converts it into electrical energy after receiving, and supplies power to the lamp bead 2032 to make it emit light.

[0031] In all the above-mentioned solutions, the connection between the two components can be selected according to the actual situation, such as welding, bolt and nut connection, bolt or screw connection or other known connection mode, which will not be described here. In the above, whenever there is a fixed connection, welding is preferred. Although the embodiments of the utility model have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A wireless induction-powered lighting fixture for underwater applications, characterized in that, include: The power supply assembly (1) includes a sealing cylinder (101), a transmitter element (102), and a cable (103) electrically connected to the transmitter element (102). A first sealing plate (104) is fixedly welded inside the sealing cylinder (101). The transmitter element (102) is fixedly disposed inside the sealing cylinder (101), and the transmitter element (102) and the first sealing plate (104) are in contact. The lighting assembly (2) includes a lamp tube (201), a receiver element (202), and a light-emitting component (203) electrically connected to the receiver element (202). A second sealing plate (204) is fixedly welded to one end of the lamp tube (201), and a transparent cover (205) is fixedly welded to the other end of the lamp tube (201). The receiver element (202) and the light-emitting component (203) are both fixedly disposed inside the lamp tube (201), and the receiver element (202) is attached to the second sealing plate (204). The lamp tube (201) is movably disposed inside the sealing tube (101), and the first sealing plate (104) and the second sealing plate (204) are in contact.

2. The wireless induction-powered lighting fixture for underwater applications according to claim 1, characterized in that, One end of the sealing cylinder (101) is fixedly provided with a third sealing plate (105), the cable (103) passes through the third sealing plate (105) and is electrically connected to the transmitter element (102), and the cable (103) and the third sealing plate (105) are sealed together, and the third sealing plate (105) and the sealing cylinder (101) are sealed together.

3. A wireless induction-powered lighting fixture for underwater applications according to claim 1, characterized in that, A connecting sleeve (206) is fixedly connected to the outside of the lamp tube (201), and the connecting sleeve (206) is threaded onto the outside of the sealing tube (101).

4. A wireless induction-powered lighting fixture for underwater applications according to claim 1, characterized in that, The lamp tube (201) is fixedly provided with a mounting base (207).

5. A wireless induction-powered lighting fixture for underwater applications according to claim 4, characterized in that, The light-emitting component (203) includes a lamp board (2031) and lamp beads (2032). The lamp beads (2032) are fixedly installed on the lamp board (2031), and the lamp board (2031) is fixedly installed on the mounting base (207).