Integrated fountain equipment with water pump, lamplight and spray head
By integrating water pumps, lighting, and filtration functions into the fountain equipment, the problems of fragmented functions and limited effects of traditional fountain equipment have been solved. This has enabled efficient coordination of equipment and diversified fountain designs, enhancing the aesthetics and stability of the fountain.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- FOSHAN NANHAI HUIQI FOUNTAIN EQUIP CO LTD
- Filing Date
- 2025-04-22
- Publication Date
- 2026-05-08
AI Technical Summary
Existing fountain equipment is characterized by fragmented functions, complex equipment, high installation and maintenance costs, and difficulty in achieving diverse fountain shapes and dynamic effects, making it unable to flexibly meet the landscape design needs of different occasions.
An integrated water pump and lighting nozzle fountain system was designed, which integrates water pumping, lighting, water purification and diverse fountain shapes. Through the organic integration of nozzle components, water pump motor, lighting components and filter components, the equipment can work together efficiently.
It reduces the number of devices and the floor space required, decreases installation and maintenance costs, enhances the fountain's aesthetic appeal and operational stability, enriches the fountain's design and dynamic effects, and meets the landscape design needs of different scenarios.
Smart Images

Figure CN224208375U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of landscape fountain technology, and in particular to an integrated water pump and light nozzle fountain device. Background Technology
[0002] As a form of water feature that integrates art, engineering and nature, fountain landscapes involve multiple fields such as fluid mechanics, mechanical engineering, electrical engineering, aesthetic design and control systems. Through the application of electric water pumps, solenoid valves and programmable logic controllers (PLCs), fountains can achieve automated control, and water pattern changes can be linked with music and lighting.
[0003] Traditional fountain systems have many limitations in their construction. Firstly, fountain systems often require separate pumping equipment, lighting fixtures, and water purification devices, leading to complex equipment, high installation and maintenance costs, and difficulties in coordinating the operation of different components. Secondly, existing fountain installations are limited in their ability to create diverse fountain shapes and dynamic effects, failing to meet the increasingly sophisticated demands of landscape design. For example, common fountains cannot flexibly and efficiently change their styles to create different atmospheres for different seasons and occasions, and their lighting effects are relatively simple, failing to effectively complement the dynamic changes of the fountain. Therefore, we propose an integrated water pump and lighting nozzle fountain system. Utility Model Content
[0004] To address the aforementioned problems, this utility model provides an integrated water pump and lighting nozzle fountain device, which solves the problems of fragmented functions and monotonous fountain shapes and effects in existing fountain equipment. Through integrated design, it organically integrates functions such as fountain pumping, lighting, water purification, and diverse fountain shape creation, thereby enhancing the overall aesthetic appeal and functionality of the fountain landscape.
[0005] The technical solution of this utility model is:
[0006] The integrated water pump, light nozzle, and fountain equipment includes an inner tank body with a variable buckle at the top and a sealing plate at the bottom, all of which are integrally molded.
[0007] The nozzle assembly, located at the top of the inner tank, is used to spray fountains in special shapes;
[0008] The water inlet assembly is located at the bottom of the inner tank to prevent external impurities from entering.
[0009] The water pump motor, located inside the inner tank, is used to draw in water and spray it out.
[0010] The lighting unit is located on top of the water pump motor.
[0011] In a further technical solution, the nozzle assembly includes a nozzle, a silicone ring is installed at the bottom of the nozzle, and six mounting holes are evenly distributed in a ring on the outer periphery of both the nozzle and the silicone ring. A hexagonal nut is inserted into the mounting hole, and both the nozzle and the silicone ring are fixedly installed on the variable buckle by the hexagonal nut. A first nut is threaded to the tail end of the hexagonal nut.
[0012] In a further technical solution, the water pump motor includes a motor housing, inside which a stator is installed. A control board is mounted on the top of the stator. An upper stator frame and a lower stator frame are installed in the middle of the stator. An inner liner is installed at the bottom of the motor housing. The upper stator frame, the stator, and the lower stator frame are all fitted onto the surface of the inner liner. A rotor is installed in the middle of the inner liner. A ceramic sheet silicone sleeve and a ceramic sheet are sequentially fitted onto the bottom of the rotor. A ceramic ring and a ceramic ring silicone sleeve are sequentially fitted onto the top and bottom of the rotor. An inner liner cover is installed at the bottom of the inner liner. The outer periphery of the inner liner cover has a through hole in a ring shape. A third cross screw is inserted into the through hole. A third nut is threaded to the bottom of the third cross screw. A water vane is installed at the bottom of the inner liner cover. The water vane is fixedly installed on the rotor by a snap ring.
[0013] In a further technical solution, a filter assembly is also provided inside the inner barrel, the filter assembly including filter cotton sleeved on the water pump motor for filtering water.
[0014] In a further technical solution, the lighting assembly includes a dimmable lamp, with fixing plates fixedly mounted on both sides of the dimmable lamp by screws, and the other end of the fixing plate fixedly mounted on the top of the water pump motor by a self-tapping screw.
[0015] In a further technical solution, the bottom end of the water pump motor is also provided with a positioning component. The positioning component includes three positioning posts. The positioning posts are fixedly installed on the periphery of the bottom end of the water pump motor by a first cross screw and are arranged in an equilateral triangle. The bottom end of the sealing plate is provided with an insertion hole. The bottom end of the positioning post passes through the insertion hole and is threaded with a second nut.
[0016] In a further technical solution, the water inlet assembly includes a water inlet screen, the side of which is provided with multiple filter holes, and the bottom of the water inlet screen is integrally formed with a mesh cover. The surface of the mesh cover is provided with three connecting holes, and a second cross screw passes through the connecting holes. The second cross screw passes from the outside of the mesh cover to the inside and is threaded to the bottom of the positioning post.
[0017] In a further technical solution, a wire protection sleeve is provided on the side of the mesh cover, and a wire locking head is installed on the lower surface of the sealing plate.
[0018] In a further technical solution, a wire is provided through the protective sleeve, the wire extends into the interior and passes through the locking head to be electrically connected to the water pump motor and the dimming lamp, and the other end of the wire is provided with a plug or connected to an external power source.
[0019] The beneficial effects of this utility model are:
[0020] 1. Compared with existing technologies, this device has multi-functional integration and efficient collaborative functions; it integrates water pumping, lighting, filtration and fountain shaping functions into one, reducing the number of equipment and floor space, lowering installation and maintenance costs, and improving the overall operating efficiency of the fountain system by having all functional components work together.
[0021] 2. Compared with existing technologies, this device has a rich variety of fountain shapes and dynamic effects; the diverse types of nozzles and flexible distribution design enable the fountain to present a variety of different shapes and dynamic changes, greatly enhancing the ornamental value and attractiveness of the fountain landscape and meeting the landscape design needs of different scenarios.
[0022] 3. Compared with existing technologies, this device ensures stable operation of the equipment; the bottom water inlet component effectively filters impurities, reduces the risk of damage to the low-suction pump, extends the service life of the equipment, reduces fountain maintenance interruptions caused by equipment failure, and ensures the continuous and stable operation of the fountain landscape.
[0023] 4. Compared with existing technologies, this device has the ability to enhance the creation of landscape atmosphere; the multi-color and multi-brightness change function of the waterproof lights, combined with the dynamic water spraying effect of the fountain, can create a rich and diverse landscape atmosphere, bringing a unique visual experience to the audience whether it is day or night. Attached Figure Description
[0024] Figure 1 This is an exploded structural diagram of an embodiment of the present invention;
[0025] Figure 2 This is a schematic diagram of the exploded structure of the water pump motor according to an embodiment of the present invention;
[0026] Figure 3 This is an overall exploded structural diagram of an embodiment of the present utility model;
[0027] Figure 4 This is a schematic diagram of the overall structure of an embodiment of the present utility model;
[0028] Figure 5 This is a schematic diagram of the internal structure of an embodiment of the present utility model;
[0029] Figure 6 This is a partial structural schematic diagram of the water blade in an embodiment of this utility model;
[0030] Figure 7 This is a partial structural schematic diagram of the stator in an embodiment of this utility model.
[0031] Explanation of reference numerals in the attached figures:
[0032] 1. Hex nut; 2. Nozzle; 3. Silicone ring; 4. Filter cotton; 5. Variable buckle ring; 6. First nut; 7. Inner tank body; 8. Sealing plate; 9. Dimmable light; 10. Fixing plate; 11. Self-tapping screw; 12. First Phillips screw; 13. Water pump motor; 14. Positioning post; 15. Second nut; 16. Water inlet screen; 17. Screen cover; 18. Cable sleeve; 19. Second Phillips screw; 20. Cable lock head;
[0033] 1301. Motor protective tube; 1302. Control board; 1303. Upper stator frame; 1304. Stator; 1305. Lower stator frame; 1306. Third Phillips head screw; 1307. Inner liner; 1308. Third nut; 1309. Ceramic ring silicone sleeve; 1310. Ceramic ring; 1311. Rotor; 1312. Ceramic plate silicone sleeve; 1313. Ceramic plate; 1314. Inner liner cover; 1315. Water vane; 1316. Snap ring. Detailed Implementation
[0034] The embodiments of this utility model will be further described below with reference to the accompanying drawings.
[0035] Example:
[0036] like Figures 1-7As shown, the integrated water pump and lighting nozzle fountain equipment includes an inner tank 7 with a variable buckle 5 at its top and a sealing plate 8 at its bottom, both integrally molded. A nozzle assembly is located at the top of the inner tank 7 and is used to spray a fountain in a special shape. The nozzle assembly includes a nozzle 2, with a silicone ring 3 installed at the bottom of the nozzle 2. Six evenly distributed mounting holes are formed in a ring around the outer periphery of both the nozzle 2 and the silicone ring 3. Hexagonal nuts 1 are inserted into these mounting holes. The nozzle 2 and the silicone ring 3 are fixedly mounted on the variable buckle 5 using the hexagonal nuts 1, and a first nut 6 is threaded onto the tail end of the hexagonal nut 1. The inner tank 7 can be a single unit with a specification of φ168*200. The water pump casing, measuring 1.5 mm, boasts excellent strength and corrosion resistance, enabling it to operate stably for extended periods in the complex aquatic environment of a fountain. Multiple water outlets are strategically distributed on the top surface of the nozzle 2. The size, number, angle, and position of these outlets can be varied to create diverse fountain shapes, depending on the design requirements. When the water pump motor 13 operates, a portion of the pumped water is ejected through the nozzle 2. For fountain applications, various special nozzle types can be selected, such as those capable of producing columnar, fan-shaped, circular, flower basket, trumpet-shaped, single / double-layered waist-shaped, crown-shaped, foam-shaped, phoenix-tail-shaped, heart-shaped, star-shaped, and scattering water flow patterns. By combining different types of nozzles, a rich variety of fountain designs can be created.
[0037] In another embodiment, such as Figures 1-7As shown, the water pump motor 13 is located inside the inner tank 7 and is used to draw in and spray water. The water pump motor 13 includes a motor housing 1301, a stator 1304 is installed inside the motor housing 1301, a control plate 1302 is installed at the top of the stator 1304, an upper stator frame 1303 and a lower stator frame 1305 are installed in the middle of the stator 1304, and an inner liner 1307 is installed at the bottom of the motor housing 1301. The upper stator frame 1303, the stator 1304 and the lower stator frame 1305 are all fitted inside the inner tank 7. On the surface of the inner liner 1307, a rotor 1311 is provided at the middle of the inner liner 1307. A ceramic silicone sleeve 1312 and a ceramic plate 1313 are sequentially fitted onto the bottom end of the rotor 1311. A ceramic ring 1310 and a ceramic ring silicone sleeve 1309 are sequentially fitted onto the top and bottom ends of the rotor 1311. An inner liner cover 1314 is provided at the bottom end of the inner liner 1307. The outer periphery of the inner liner cover 1314 has a through hole in a ring shape. A third cross screw 1306 is inserted into the through hole, and the bottom end of the third cross screw 1306 is threaded. A third nut 1308 is connected to the bottom of the inner tank cover 1314, and a water vane 1315 is installed thereon. The water vane 1315 is fixedly installed on the rotor 1311 by a snap ring 1316 and is located near the bottom of the inner tank body 7. The bottom suction pump motor 13 can draw water from the fountain pool from the lower position of the pipe bottom to ensure full utilization of the water source. The water pump motor 13 drives the water vane 1315 to rotate, generating a strong suction force to draw water into the inner tank body 7 through the water inlet at the middle position of the sealing plate 8 surface, and can also deliver it to the subsequent pipeline. The water pump motor 13 is waterproof, ensuring safe and stable operation in humid environments. The water pump motor 13 has a built-in control board 1302, which can be used by APP or remote control via wired or wireless communication to control the water pump motor 13 and the light-changing lights 9, realizing arbitrary combination and change of lights and water pump motor 13. It can also play music in sync with the APP to achieve a musical fountain effect, and can also run built-in slow high and slow low, jump and other water pattern changes. The built-in colored lights can also realize slow change, jump, running, color change and other effect changes.
[0038] In another embodiment, such as Figures 1-7 As shown, the inner barrel 7 is also equipped with a filter assembly, which includes filter cotton 4 fitted on the water pump motor 13 for filtering water.
[0039] In another embodiment, such as Figures 1-7As shown, the lighting assembly is located at the top of the water pump motor 13. The lighting assembly includes a variable light 9. Fixing plates 10 are fixed to both sides of the variable light 9 with screws. The other end of the fixing plate 10 is fixed to the top of the water pump motor 13 with a self-tapping screw 11. It is installed inside the inner tank 7 near the top. The variable light 9 is made of a high-transmittance and high-strength waterproof material. The variable light 9 not only illuminates the inside of the fountain, but also creates a colorful visual effect by changing the color and brightness of the light, in conjunction with the water spraying effect of the fountain. For example, at night, different atmospheres such as romantic and cheerful can be created by changing the color of the light.
[0040] In another embodiment, such as Figures 1-7 As shown, the bottom end of the water pump motor 13 is also provided with a positioning component. The positioning component includes three positioning posts 14. The positioning posts 14 are fixedly installed on the outer periphery of the bottom end of the water pump motor 13 by the first cross screw 12 and are arranged in an equilateral triangle. The bottom end of the sealing plate 8 is provided with an insertion hole. The bottom end of the positioning post 14 passes through the insertion hole and is threaded with a second nut 15.
[0041] In another embodiment, such as Figures 1-7 As shown, the water inlet assembly includes a water inlet screen 16, with multiple filter holes on its side. A screen cover 17 is integrally formed at the bottom of the screen 16. Three connection holes are formed on the surface of the screen cover 17, with a second cross screw 19 passing through each hole. The second cross screw 19 passes from the outside of the screen cover 17 to the inside and is threaded to the bottom of the positioning post 14. A wire protector 18 is provided on the side of the screen cover 17. A wire locking head 20 is installed on the lower surface of the sealing plate 8. An electric wire passes through the wire protector 18, extending inside and passing through the wire locking head 20 to electrically connect to the water pump motor 13 and the dimming lamp 9. The other end of the electric wire is provided with a plug or connected to an external power source. A detachable water inlet screen 16 is provided at the bottom. The filter hole size is customized according to the size of common impurities in the fountain pool. Installed at the bottom of the pipe via a threaded detachable connection, it effectively filters larger particles such as leaves and sand in the water, preventing them from entering the pump body and causing damage. It also maintains the cleanliness of the fountain water, ensuring the normal operation and aesthetics of the fountain.
[0042] The installation process for this device is as follows:
[0043] First, use the positioning post 14 to securely install the water pump motor 13 inside the pipe near the bottom, ensuring that the motor wiring is correct and that comprehensive waterproofing is done to prevent safety issues such as electric leakage in the humid environment of the fountain.
[0044] Next, install the dimmer lamp 9 inside the tube near the top using a special lamp holder, connect the power cord, and perform a tight waterproof seal to ensure that the light shines stably and is not affected by water when the fountain is running.
[0045] Then, install the inlet screen 16 at the bottom of the stainless steel pipe using the pre-designed threaded connection. Carefully check to ensure that the filter screen is installed tightly without any gaps to ensure good filtration effect.
[0046] Finally, the nozzle 2 is connected to the outlet of the water pump motor 13 through a pipe. According to the fountain design scheme, the angle and position of the nozzle 2 are precisely adjusted to ensure that each nozzle 2 can spray water in different shapes as expected, so as to jointly create the ideal fountain shape.
[0047] The device is used as follows:
[0048] Place the device in a suitable position in the fountain pool, ensuring that the bottom of the pipe is in full contact with the pool water so that the water pump motor 13 can smoothly draw water from the pool.
[0049] When the power supply to the water pump motor 13 and the variable light 9 is turned on, the water pump motor 13 starts and draws water from the bottom of the pipe. The water is transported through the pump body, and part of it is sprayed out through the nozzle 2 to form various fountain shapes. At the same time, the variable light 9 lights up and changes the color and brightness of the light according to the preset program, which works in conjunction with the water spraying effect of the fountain to create a magnificent landscape effect.
[0050] During fountain operation, regularly check the bottom filter cotton 4 and the water inlet screen 16. If a lot of impurities are found to have accumulated on the filter cotton 4 and the water inlet screen 16, remove the filter cotton 4 and the water inlet screen 16 in time for cleaning or replacement to maintain their good filtration performance and ensure the stable operation of the fountain system.
Claims
1. An integrated water pump, light, nozzle, and fountain system, characterized in that: include The inner barrel body (7) has a variable buckle (5) at its top and a sealing plate (8) at its bottom, both of which are integrally molded. The nozzle assembly is located at the top of the inner barrel (7) and is used to spray out a fountain of a special shape; The water inlet assembly is located at the bottom of the inner tank (7) to prevent external impurities from entering; A water pump motor (13) is installed inside the inner tank (7) to draw in water and spray it out; The lighting assembly is located on top of the water pump motor (13).
2. The integrated water pump and lighting nozzle fountain device according to claim 1, characterized in that: The nozzle assembly includes a nozzle (2), a silicone ring (3) is installed at the bottom of the nozzle (2), and six mounting holes are evenly distributed in a ring on the outer periphery of the nozzle (2) and the silicone ring (3). A hexagonal nut (1) is inserted into the mounting hole. The nozzle (2) and the silicone ring (3) are fixedly installed on the variable buckle (5) by the hexagonal nut (1), and a first nut (6) is threaded to the tail end of the hexagonal nut (1).
3. The integrated water pump and lighting nozzle fountain device according to claim 1, characterized in that: The water pump motor (13) includes a motor housing (1301), inside which a stator (1304) is installed. A control board (1302) is installed at the top of the stator (1304). An upper stator frame (1303) and a lower stator frame (1305) are installed at the middle of the stator (1304). An inner liner (1307) is installed at the bottom of the motor housing (1301). The upper stator frame (1303), the stator (1304), and the lower stator frame (1305) are all fitted onto the surface of the inner liner (1307). A rotor (1311) is installed at the middle of the inner liner (1307). The bottom of the rotor (1311) is sequentially fitted with... The rotor (1311) is equipped with a ceramic plate silicone sleeve (1312) and a ceramic plate (1313). The top and bottom ends of the rotor (1311) are respectively fitted with a ceramic ring (1310) and a ceramic ring silicone sleeve (1309). The bottom end of the inner liner (1307) is provided with an inner liner cover (1314). The outer periphery of the inner liner cover (1314) has a through hole in a ring shape. A third cross screw (1306) is inserted into the through hole. The bottom end of the third cross screw (1306) is threaded with a third nut (1308). The bottom end of the inner liner cover (1314) is equipped with a water blade (1315). The water blade (1315) is fixedly installed on the rotor (1311) by a snap ring (1316).
4. The integrated water pump and lighting nozzle fountain device according to claim 1, characterized in that: The inner barrel (7) is also equipped with a filter assembly, which includes filter cotton (4) fitted on the water pump motor (13) for filtering water.
5. The integrated water pump and lighting nozzle fountain device according to claim 1, characterized in that: The lighting assembly includes a dimmable lamp (9), and fixing plates (10) are fixedly installed on both sides of the dimmable lamp (9) by screws. The other end of the fixing plate (10) is fixedly installed on the top of the water pump motor (13) by a self-tapping screw (11).
6. The integrated water pump and lighting nozzle fountain device according to claim 1, characterized in that: The bottom end of the water pump motor (13) is also provided with a positioning component. The positioning component includes three positioning posts (14). The positioning posts (14) are fixedly installed on the periphery of the bottom end of the water pump motor (13) by a first cross screw (12) and are arranged in an equilateral triangle. The bottom end of the sealing plate (8) is provided with an insertion hole. The bottom end of the positioning post (14) passes through the insertion hole and is threaded with a second nut (15).
7. The integrated water pump and lighting nozzle fountain device according to claim 1, characterized in that: The water inlet assembly includes a water inlet screen (16), which has multiple filter holes on its side. The bottom of the water inlet screen (16) is integrally formed with a screen cover (17). The surface of the screen cover (17) has three connection holes. A second cross screw (19) passes through the connection holes. The second cross screw (19) passes through the outside of the screen cover (17) to the inside and is threaded to the bottom of the positioning post (14).
8. The integrated water pump and light nozzle fountain device according to claim 7, characterized in that: The side of the mesh cover (17) is provided with a wire protection sleeve (18), and the lower surface of the sealing plate (8) is equipped with a wire locking head (20).
9. The integrated water pump and light nozzle fountain device according to claim 8, characterized in that: A wire is installed through the protective sleeve (18), the wire extends into the interior and passes through the locking head (20) to be electrically connected to the water pump motor (13) and the dimming lamp (9), and the other end of the wire is provided with a plug or connected to an external power source.