Sodium hypochlorite generator with light

By installing a lighting device in the salt electrolytic device and using a battery as a power supply, the existing device's safety hazards and single functions are solved, and the multifunctional effects of low-voltage safety, night lighting and atmosphere adjustment are achieved.

CN222961556UActive Publication Date: 2025-06-10ZHEJIANG WEIBANG LEISURE ARTICLE
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Patent Information

Application Number
CN202420343019.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-02-23
Publication Date
2025-06-10
Estimated Expiration
2034-02-23

AI Technical Summary

Technical Problem

The existing salt electrolytic devices have safety hazards when used and have a single function, which cannot meet the needs of night lighting and atmosphere adjustment.

Method used

A sodium hypochlorite generator with light was designed, using a battery as a power supply, and a lighting device was installed on the generator body. The lighting device can customize the color and duration to meet the needs of lighting and atmosphere adjustment.

Benefits of technology

It realizes low-voltage safety of salt electrolytic devices, meets night lighting needs, and creates a rich entertainment atmosphere, diverse functions, and improves the effect of water quality disinfection.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a sodium hypochlorite generator with lamplight, and aims to overcome the defects that a salt electrolysis device is single in function, and potential safety hazards exist when mains supply is used as a power source. The generator comprises a generator body, and a light device is installed on the generator body. A circuit board and a storage battery are installed in the generator body, the lighting device is electrically connected with the circuit board, and the storage battery serves as a power source to supply power to the circuit board and the lighting device. The salt electrolysis device has a lighting effect, meets the lighting requirement at night, creates atmosphere and has an entertainment function; the salt electrolysis device adopts a storage battery as a power supply and is low-voltage and safe.
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Description

Technical Field

[0001] The utility model relates to a water purification device, and more specifically, to a sodium hypochlorite generator with a light. Background Art

[0002] The salt electrolysis device is a relatively common water purification equipment, which can continuously and controllably generate sodium hypochlorite disinfectant to achieve water purification. At present, many salt electrolysis generators use commercial power, and when in use, the live body needs to be in direct contact with water, which has certain potential safety hazards; moreover, the salt electrolysis device can only be used for disinfection, and its function is relatively single. Summary of the Utility Model

[0003] In order to overcome the above deficiencies, the utility model provides a sodium hypochlorite generator with a light, achieving two invention purposes. One is that the salt electrolysis device has a lighting effect, meeting the night lighting needs and creating an atmosphere to enrich the entertainment function; the other is that the salt electrolysis device uses a storage battery as the power supply, which is safe at low voltage.

[0004] In order to solve the above technical problems, the utility model adopts the following technical solution: A sodium hypochlorite generator with a light, including a generator body, and a lighting device is installed on the generator body.

[0005] In this patent, a lighting device is installed on the generator body. The lighting device can not only achieve the function of lighting, but also play a role in atmosphere adjustment. This salt electrolysis device with a lighting effect not only realizes the disinfection and purification of water quality, but also meets the night lighting needs and creates an atmosphere to enrich the entertainment function, with diverse functions, achieving the first invention purpose of this application.

[0006] In the first solution, the lighting device is installed at the top position of the generator body.

[0007] The lighting device is installed at the top position of the generator body, and the light is emitted upward and around. The user can customize the color and duration of the light.

[0008] Preferably, an upper cover is provided at the top of the generator body, and a plurality of mounting holes are provided on the upper cover. The lighting device includes a plurality of lamp beads, and the lamp beads are adaptively installed at the positions of the mounting holes.

[0009] The lamp beads emit light after being powered on, realizing the lighting function and playing a role in atmosphere adjustment. The mounting holes are provided on the upper cover, which facilitates the installation of the lamp beads.

[0010] In the second solution, the lighting device is installed on the side wall of the generator body near the middle position.

[0011] The lighting device is installed at the middle position of the generator body, and the light irradiates towards the pool wall, improving the brightness of the entire pool.

[0012] Preferably, a plurality of fixing holes are circumferentially spaced on the side wall of the generator body. The lighting device includes a plurality of lamp beads, and the lamp beads are adaptively installed at the positions of the fixing holes.

[0013] After the lamp beads are powered on, they emit light to achieve the lighting function and play a role in atmosphere adjustment. The setting of the fixing holes facilitates the installation of the lamp beads. When the lamp beads are placed below the water surface, the light irradiates towards the pool wall, improving the brightness of the entire pool; when the lamp beads are placed above the water surface, on the one hand, it can scatter light underwater to enhance the brightness of the pool, and on the other hand, the perspective effect and the atmosphere are different from those when the lamp beads are underwater; further, the position of the lamp beads on the water surface is adjusted by replacing floating fillers with different densities.

[0014] In the third solution, the lighting device is installed at a position on the side wall of the generator body close to the bottom.

[0015] The lighting device is installed at the bottom of the generator body, and the light irradiates towards the bottom of the pool, improving the brightness of the bottom of the pool.

[0016] Preferably, a plurality of assembly holes are circumferentially spaced at a position on the side wall of the generator body close to the bottom. The assembly holes are inclined downward from the inside to the outside. The lighting device includes a plurality of spotlights, and the spotlights are adaptively installed at the positions of the assembly holes.

[0017] After the spotlights are powered on, they irradiate the bottom of the pool to achieve the lighting function and play a role in atmosphere adjustment. The setting of the assembly holes facilitates the installation of the spotlights. The assembly holes are arranged in a downward inclination to ensure that the light can irradiate the bottom of the pool.

[0018] Preferably, the spotlights project a variety of changing patterns onto the bottom of the pool.

[0019] The spotlights irradiate a variety of changing patterns, increasing the atmosphere and aesthetics.

[0020] Preferably, a circuit board and a storage battery are installed inside the generator body. The lighting device is electrically connected to the circuit board, and the storage battery serves as a power source to supply power to the circuit board and the lighting device.

[0021] The salt electrolysis device uses a storage battery as a power source, which is low-voltage and safe, achieving the second invention object of this application.

[0022] Preferably, a protective mesh sleeve is detachably connected to the lower part of the generator body. An electrolysis component is arranged inside the protective mesh sleeve, and the lighting device is arranged above the protective mesh sleeve.

[0023] The protective mesh sleeve plays a protective role for the electrolysis component. The electrolysis component is arranged at the lower part of the generator body to ensure contact with water.

[0024] Compared with the prior art, the beneficial effects of the present utility model are as follows: (1) The salt electrolysis device has a lighting effect, which meets the night lighting needs and creates an atmosphere to enrich the entertainment function; (2) The salt electrolysis device uses a storage battery as the power source, which is safe at low voltage. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 is a schematic diagram of Embodiment 1 of the present utility model;

[0026] Figure 2 is a structural diagram of Embodiment 2 of the present utility model;

[0027] Figure 3 is an exploded view of Embodiment 2 of the present utility model;

[0028] Figure 4 is a structural diagram of Embodiment 3 of the present utility model;

[0029] Figure 5 is an exploded view of Embodiment 3 of the present utility model;

[0030] In the figures: 1, generator body; 2, protective mesh sleeve; 3, mesh holes; 4, electrolysis component; 5, circuit board; 6, storage battery; 7, outer shell; 8, encapsulation box; 9, buoyancy filler; 10, connection section; 11, shielding cover; 12, transparent cover; 13, key switch; 14, display panel; 15, avoidance window; 16, avoidance groove; 17, key soft pad; 18, perforation groove; 19, charging connector; 20, sealing gasket; 21, upper cover; 22, connecting flange; 23, buckle; 24, mounting hole; 25, lamp beads; 26, opening window; 27, charging port; 28, fixing hole; 29, assembly hole; 30, spotlight. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0031] The technical solutions of the present utility model will be further specifically described below through specific embodiments in conjunction with the drawings:

[0032] Embodiment 1: A sodium hypochlorite generator with lighting (see the attached Figure 1 ), which includes a generator body 1. The outer wall of the generator body 1 converges inward from top to bottom. A lighting device is installed on the generator body 1. The lower part of the generator body 1 is detachably connected to a protective mesh sleeve 2. A number of mesh holes 3 are provided on the protective mesh sleeve 2. An electrolysis component 4 is arranged inside the protective mesh sleeve 2. The lighting device is arranged above the protective mesh sleeve 2. A circuit board 5 and a storage battery 6 are installed inside the generator body 1. The lighting device is electrically connected to the circuit board 5. The storage battery 6 is used as the power source to supply power to the circuit board 5 and the lighting device.

[0033] The generator body 1 includes a housing 7 and a packaging box 8. The packaging box 8 is installed inside the housing 7. A buoyancy filler 9 is installed between the outer wall of the packaging box 8 and the inner wall of the housing 7. The lower end of the packaging box 8 extends downward to form a connecting section 10. The connecting section 10 extends out of the lower end of the housing 7. External threads are provided on the outer wall of the connecting section 10, and internal threads are provided on the inner wall of the upper end of the protective mesh sleeve 2. The protective mesh sleeve 2 and the connecting section 10 are tightly connected through the cooperation of the internal threads and the external threads. Connecting terminals are provided at the bottom of the packaging box 8, and the electrolysis component 4 is electrically connected to the connecting terminals. The circuit board 5 and the battery 6 are both installed inside the packaging box 8, and the battery 6 is placed at the bottom of the packaging box 8. The battery 6 uses a lithium battery. The upper part of the packaging box 8 is connected to a shielding cover 11 and a transparent cover 12. The shielding cover 11 covers the circuit board 5, and the transparent cover 12 covers the shielding cover 11. A key switch 13 and a display panel 14 are provided on the circuit board 5. Avoidance windows 15 and avoidance grooves 16 are provided on the shielding cover 11. The display panel 14 is exposed through the avoidance window 15, and a key soft pad 17 is installed at the position of the avoidance groove 16. The key soft pad 17 is correspondingly arranged with the key switch 13. Perforation grooves 18 are correspondingly arranged on the transparent cover 12 and the key soft pad 17. The key soft pad 17 is exposed through the perforation groove 18. A charging connector 19 and a gasket 20 are installed at the upper edge of the packaging box 8. The gasket 20 hermetically covers the charging connector 19, and the charging connector 19 is electrically connected to the circuit board 5. The circuit board 5 and the battery 6 are encapsulated in the packaging box 8 to ensure the sealing performance.

[0034] The lighting device is installed at the top position of the generator body 1. An upper cover 21 is provided at the top of the generator body 1. The upper cover 21 covers the upper ends of the housing 7 and the packaging box 8. A connecting flange 22 that turns downward is provided at the edge of the upper cover 21. A plurality of card slots are provided on the side wall of the connecting flange 22. A plurality of buckles 23 are correspondingly provided on the upper edge of the housing 7 and the card slots one by one. After the upper cover 21 is connected to the housing 7, the buckles 23 are adaptively clamped with the card slots to achieve fastening. A plurality of mounting holes 24 are provided on the upper cover 21. The lighting device includes a plurality of lamp beads 25. The lamp beads 25 are adaptively installed at the positions of the mounting holes 24. An opening window 26 is correspondingly provided on the upper cover 21 and the transparent cover 12. The transparent cover 12 is adaptively installed at the position of the opening window 26. Mounting holes 24 are provided at the corner positions of the opening window 26, and lamp beads 25 are installed at the positions of the mounting holes 24. A charging port 27 is correspondingly provided on the upper cover 21 and the charging connector 19. The gasket 20 is tightly inserted at the charging port 27. The lamp beads 25 have an inverted T-shaped structure. The large-diameter end of the lamp beads 25 abuts against the lower surface of the upper cover 21 for positioning. The lamp beads 25 are electrically connected to the circuit board 5 through wires. The lamp beads 25 are LED lamp beads 25, and the color and lighting duration of the lamp beads 25 are controlled by the circuit board 5. The lighting device is installed at the top position of the generator body 1, and the light is emitted upward and around. The user can customize the color and duration of the light. After the lamp beads 25 are powered on, they emit light to achieve the lighting function and play a role in atmosphere adjustment. The provision of the mounting holes 24 on the upper cover 21 facilitates the installation of the lamp beads 25.

[0035] In this patent, a lighting device is installed on the generator body 1. The lighting device not only realizes the function of lighting, but also plays a role in atmosphere adjustment. This lighting effect of the salt electrolysis device not only realizes the disinfection and purification of water quality, but also meets the night lighting needs and creates an atmosphere to enrich the entertainment function. It has various functions and realizes the first invention object of this application. The salt electrolysis device uses the storage battery 6 as the power supply, which is low-voltage and safe, and realizes the second invention object of this application.

[0036] Embodiment 2: A sodium hypochlorite generator with a light (see the attached Figure 2 and the attached Figure 3 ), which includes a generator body 1. The outer wall of the generator body 1 converges inward from top to bottom. A lighting device is installed on the generator body 1. A protective net sleeve 2 is detachably connected to the lower part of the generator body 1. A plurality of mesh holes 3 are provided on the protective net sleeve 2. An electrolysis component 4 is arranged inside the protective net sleeve 2. The lighting device is arranged above the protective net sleeve 2. A circuit board 5 and a storage battery 6 are installed inside the generator body 1. The lighting device is electrically connected to the circuit board 5. The storage battery 6 is used as the power supply to supply power to the circuit board 5 and the lighting device.

[0037] The generator body 1 includes a housing 7 and a packaging box 8. The packaging box 8 is installed inside the housing 7. A buoyancy filler 9 is installed between the outer wall of the packaging box 8 and the inner wall of the housing 7. The lower end of the packaging box 8 extends downward to form a connection section 10. The connection section 10 extends out of the lower end of the housing 7. External threads are provided on the outer wall of the connection section 10. Internal threads are provided on the inner wall of the upper end of the protective net sleeve 2. The protective net sleeve 2 and the connection section 10 are tightly connected through the cooperation of the internal threads and the external threads. Connection terminals are arranged at the bottom of the packaging box 8. The electrolysis component 4 is electrically connected to the connection terminals. The circuit board 5 and the storage battery 6 are both installed inside the packaging box 8. The storage battery 6 is placed at the bottom of the packaging box 8. The storage battery 6 uses a lithium battery. The upper part of the packaging box 8 is connected with a shielding cover 11 and a transparent cover 12. The shielding cover 11 covers the circuit board 5. The transparent cover 12 covers the shielding cover 11. A key switch 13 and a display panel 14 are arranged on the circuit board 5. Avoidance windows 15 and avoidance grooves 16 are arranged on the shielding cover 11. The display panel 14 is exposed through the avoidance window 15. A key soft pad 17 is installed at the position of the avoidance groove 16. The key soft pad 17 is correspondingly arranged with the key switch 13. Perforation grooves 18 are correspondingly arranged on the transparent cover 12 and the key soft pad 17. The key soft pad 17 is exposed through the perforation groove 18. A charging connector 19 and a sealing gasket 20 are installed at the upper edge of the packaging box 8. The sealing gasket 20 hermetically covers the charging connector 19. The charging connector 19 is electrically connected to the circuit board 5. The circuit board 5 and the storage battery 6 are encapsulated in the packaging box 8 to ensure the sealing performance.

[0038] The lighting device is installed on the side wall of the generator body 1 near the middle position. A number of fixing holes 28 are circumferentially spaced on the side wall of the generator body 1. The fixing holes 28 are provided on the outer shell 7. The lighting device includes a number of lamp beads 25, and the lamp beads 25 are adaptively installed at the positions of the fixing holes 28. An upper cover 21 is provided on the top of the generator body 1. The upper cover 21 covers the upper ends of the outer shell 7 and the encapsulation box 8. A connecting flange 22 that turns downwards is provided at the edge of the upper cover 21. A number of card slots are provided on the side wall of the connecting flange 22. A number of buckles 23 are provided on the upper edge of the outer shell 7 corresponding to the card slots one by one. After the upper cover 21 is connected to the outer shell 7, the buckles 23 are adaptively clamped with the card slots to achieve fastening. An opening window 26 is provided on the upper cover 21 corresponding to the transparent cover 12, and the transparent cover 12 is adaptively installed at the position of the opening window 26. A charging port 27 is provided on the upper cover 21 corresponding to the charging connector 19, and the sealing gasket 20 is tightly inserted at the charging port 27. The lamp bead 25 has an inverted T-shaped structure. The large-diameter end of the lamp bead 25 abuts against the inner wall of the outer shell 7 to achieve positioning. The lamp bead 25 is electrically connected to the circuit board 5 through a wire. The lamp bead 25 is an LED lamp bead 25, and the color and lighting duration of the lamp bead 25 are controlled by the circuit board 5. When the lighting device is installed at the middle position of the generator body 1 and the lamp bead 25 is placed below the water surface, the light is irradiated towards the pool wall, improving the brightness of the entire pool. When the lamp bead 25 is placed above the water surface, on the one hand, it can scatter light underwater to enhance the brightness of the pool. On the other hand, the viewing angle effect and the atmosphere are different from those when the lamp bead 25 is underwater. Further, the position of the lamp bead 25 on the water surface is adjusted by replacing floating fillers 9 with different densities. After the lamp bead 25 is powered on, it emits light, realizing the lighting function and playing the role of atmosphere adjustment. The setting of the fixing holes 28 facilitates the installation of the lamp beads 25.

[0039] In this patent, a lighting device is installed on the generator body 1. The lighting device can not only achieve the lighting function but also play the role of atmosphere adjustment. This salt electrolysis device with a lighting effect not only realizes the disinfection and purification of water quality but also meets the night lighting needs and creates an atmosphere to enrich the entertainment function. It has various functions and realizes the first invention purpose of this application. The salt electrolysis device uses the storage battery 6 as the power supply, which is low-voltage and safe, realizing the second invention purpose of this application.

[0040] Embodiment 3: A sodium hypochlorite generator with a light (see attached Figure 4 and attached Figure 5 ), which includes a generator body 1. The outer wall of the generator body 1 converges inwards from top to bottom. A lighting device is installed on the generator body 1. A protective mesh sleeve 2 is detachably connected to the lower part of the generator body 1. A number of mesh holes 3 are provided on the protective mesh sleeve 2. An electrolysis component 4 is arranged inside the protective mesh sleeve 2, and the lighting device is arranged above the protective mesh sleeve 2. A circuit board 5 and a storage battery 6 are installed inside the generator body 1. The lighting device is electrically connected to the circuit board 5, and the storage battery 6 is used as the power supply to supply power to the circuit board 5 and the lighting device.

[0041] The generator body 1 includes a housing 7 and a packaging box 8. The packaging box 8 is installed inside the housing 7. A buoyancy filler 9 is installed between the outer wall of the packaging box 8 and the inner wall of the housing 7. The lower end of the packaging box 8 extends downward to form a connecting section 10. The connecting section 10 extends out of the lower end of the housing 7. External threads are provided on the outer wall of the connecting section 10, and internal threads are provided on the inner wall of the upper end of the protective mesh sleeve 2. The protective mesh sleeve 2 and the connecting section 10 are tightly connected through the cooperation of the internal threads and the external threads. Connecting terminals are provided at the bottom of the packaging box 8, and the electrolysis component 4 is electrically connected to the connecting terminals. The circuit board 5 and the battery 6 are both installed inside the packaging box 8, and the battery 6 is placed at the bottom of the packaging box 8. The battery 6 uses a lithium battery. The upper part of the packaging box 8 is connected to a shielding cover 11 and a transparent cover 12. The shielding cover 11 covers the circuit board 5, and the transparent cover 12 covers the shielding cover 11. A key switch 13 and a display panel 14 are provided on the circuit board 5. Avoidance windows 15 and avoidance grooves 16 are provided on the shielding cover 11. The display panel 14 is exposed through the avoidance window 15, and a key soft pad 17 is installed at the position of the avoidance groove 16. The key soft pad 17 is arranged corresponding to the key switch 13. Perforation grooves 18 are provided on the transparent cover 12 corresponding to the key soft pad 17, and the key soft pad 17 is exposed through the perforation grooves 18. A charging connector 19 and a gasket 20 are installed at the upper edge of the packaging box 8. The gasket 20 hermetically covers the charging connector 19, and the charging connector 19 is electrically connected to the circuit board 5. The circuit board 5 and the battery 6 are encapsulated in the packaging box 8 to ensure the sealing performance.

[0042] The lighting device is installed on the side wall of the generator body 1, biased towards the bottom position. A number of assembly holes 29 are circumferentially spaced on the side wall of the generator body 1, biased towards the bottom position. The assembly holes 29 are provided on the outer shell 7. The lower part of the outer shell 7 is inclined inward from top to bottom. The assembly holes 29 are provided at the inclined part of the outer shell 7. The assembly holes 29 are inclined downward from inside to outside. The lighting device includes a number of spotlights 30, and the spotlights 30 are adaptively installed at the positions of the assembly holes 29. The spotlights 30 are laser spotlights 30, and the spotlights 30 project onto the bottom of the pool to form a variety of changing patterns. A top cover 21 is provided at the top of the generator body 1. The top cover 21 covers the upper ends of the outer shell 7 and the encapsulation box 8. A connecting flange 22 that turns downwards is provided at the edge of the top cover 21. A number of card slots are provided on the side wall of the connecting flange 22. A number of buckles 23 are provided on the upper edge of the outer shell 7 corresponding to the card slots one by one. After the top cover 21 is connected to the outer shell 7, the buckles 23 are adaptively clamped with the card slots to achieve fastening. An opening window 26 is provided on the top cover 21 corresponding to the transparent cover 12. The transparent cover 12 is adaptively installed at the position of the opening window 26. A charging port 27 is provided on the top cover 21 corresponding to the charging connector 19. The sealing gasket 20 is tightly inserted at the charging port 27. The spotlights 30 are electrically connected to the circuit board 5 through wires. The color, pattern and lighting duration of the spotlights 30 are controlled by the circuit board 5. The lighting device is installed at the bottom position of the generator body 1, and the light is directed towards the bottom of the pool to improve the brightness of the bottom of the pool. After the spotlights 30 are powered on, they irradiate the bottom of the pool to achieve the lighting function and play a role in atmosphere adjustment. The setting of the assembly holes 29 facilitates the installation of the spotlights 30. The assembly holes 29 are arranged in a downward inclination to ensure that the light can irradiate the bottom of the pool. The spotlights 30 irradiate a variety of changing patterns, increasing the sense of atmosphere and aesthetics.

[0043] In this patent, a lighting device is installed on the generator body 1. The lighting device can not only achieve the lighting function, but also play a role in atmosphere adjustment. This salt electrolysis device with lighting effect not only realizes the disinfection and purification of water quality, but also meets the night lighting needs and creates an atmosphere to enrich the entertainment function. It has diverse functions and realizes the first invention object of this application. The salt electrolysis device uses the storage battery 6 as the power source, which is low-voltage and safe, realizing the second invention object of this application.

[0044] The above-described embodiments are only the preferred solutions of the present utility model, and do not impose any form of limitation on the present utility model. There are other variants and modifications without exceeding the technical solutions recorded in the claims.

Claims

1. A sodium hypochlorite generator with light, characterized in that: The generator body comprises a generator body, on which a lighting device is installed; the generator body comprises an outer shell and a packaging box, the packaging box is installed in the outer shell, and a buoyancy filler is installed between the outer wall of the packaging box and the inner wall of the outer shell.

2. A sodium hypochlorite generator with light according to claim 1, characterized in that: The lighting device is installed on the top of the generator body.

3. A sodium hypochlorite generator with light according to claim 2, characterized in that: An upper cover is arranged on the top of the generator body, a plurality of mounting holes are arranged on the upper cover, and the lighting device comprises a plurality of lamp beads, which are adapted to be mounted at the positions of the mounting holes.

4. The sodium hypochlorite generator with light according to claim 1, characterized in that: The lighting device is installed on the side wall of the generator body near the middle.

5. A sodium hypochlorite generator with light according to claim 4, characterized in that: A plurality of fixing holes are arranged at intervals in the circumferential direction on the side wall of the generator body, and the lighting device comprises a plurality of lamp beads, which are adapted to be installed in the positions of the fixing holes.

6. The sodium hypochlorite generator with light according to claim 1, characterized in that: The lighting device is installed on the side wall of the generator body toward the bottom.

7. A sodium hypochlorite generator with light according to claim 6, characterized in that: A plurality of assembly holes are arranged at intervals in the circumferential direction on the side wall of the generator body, which is biased toward the bottom. The assembly holes are arranged to be inclined downward from the inside to the outside. The lighting device includes a plurality of spotlights, which are adapted to be installed at the assembly holes.

8. The sodium hypochlorite generator with light according to claim 7, characterized in that: Spotlights are projected onto the bottom of the pool to create a variety of changing patterns.

9. A sodium hypochlorite generator with light according to any one of claims 1 to 8, characterized in that: A circuit board and a storage battery are installed in the generator body, the lighting device is electrically connected to the circuit board, and the storage battery serves as a power source to supply power to the circuit board and the lighting device.

10. A sodium hypochlorite generator with light according to any one of claims 1 to 8, characterized in that: The lower part of the generator body is detachably connected to a protective net sleeve, an electrolytic component is arranged in the protective net sleeve, and a lighting device is arranged above the protective net sleeve.