A shower head
By incorporating built-in wiring and water channels into the shower head, combined with a containment chamber and double-pipe structure, the safety and maintenance challenges caused by exposed wiring in outdoor shower heads are solved, improving safety and user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 杨金钰
- Filing Date
- 2025-06-09
- Publication Date
- 2026-06-02
AI Technical Summary
The exposed wiring of outdoor shower heads poses safety risks and makes maintenance difficult.
The wiring of the nozzle assembly and pump assembly is routed inside the connecting pipe using an internal wiring method. The wires and water lines are gathered through a housing, and the water and electrical lines are separated by a double-layer pipe. Combined with the bracket mechanism, it provides a variety of installation options.
It improves the safety hazards caused by exposed wires, reduces maintenance difficulty, ensures smooth water flow, enhances user comfort and safety, and is also aesthetically pleasing and tidy.
Smart Images

Figure CN224308659U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of furniture technology, and more specifically, to a shower head. Background Technology
[0002] As living standards improve, consumers are engaging in more diverse outdoor activities, leading to a growing demand for electric outdoor showers.
[0003] In existing technologies, outdoor electric showerheads typically use an external power supply. Outdoor environments are complex and variable, including humidity, dust, and the potential presence of corrosive substances. Exposed wires are prone to short circuits due to moisture, leading to electrical leakage and posing a serious threat to user safety. Furthermore, during use, exposed wires may be accidentally pulled or scratched, damaging their insulation and further increasing the risk of leakage. Moreover, long-term exposure to the outdoors exposes the wires to UV radiation, wind, rain, and temperature fluctuations, accelerating wire aging, shortening their lifespan, reducing the overall reliability of the showerhead, and increasing maintenance and replacement costs. Utility Model Content
[0004] The technical problem solved by this utility model is how to improve the safety problems and high maintenance difficulty caused by the exposed wires of outdoor shower heads in the prior art.
[0005] The embodiments of this utility model can be implemented as follows:
[0006] This utility model provides a shower head, comprising:
[0007] The nozzle assembly contains a first electrical mechanism;
[0008] The pump assembly contains a second electrical mechanism;
[0009] A connecting pipe is provided between the nozzle assembly and the pump assembly, through which the pump assembly supplies water to the nozzle assembly; the first electrical mechanism has at least one wire passing through the inside of the connecting pipe and electrically connected to the second electrical mechanism.
[0010] Optionally, the pump assembly further includes a water pump and a receiving chamber; the second electrical mechanism is electrically connected to the water pump; the wire passes through the interior of the receiving chamber and into the connecting pipe; the outlet of the water pump is connected to the receiving chamber; the receiving chamber is connected to the connecting pipe to supply water to the connecting pipe.
[0011] Optionally, the pump assembly further includes a housing; the housing has a first mounting cavity, a second mounting cavity, and a channel; the first mounting cavity and the receiving chamber are located at opposite ends of the second mounting cavity, and the channel is disposed adjacent to the second mounting cavity; the second electric motor is disposed inside the second mounting cavity, the water pump is disposed inside the first mounting cavity, and the outlet of the water pump is connected to the channel; both the channel and the second mounting cavity are open on the side near the receiving chamber and communicate with the internal space of the receiving chamber.
[0012] Optionally, the nozzle assembly further includes a housing and an adapter pipe; the housing has an assembly space and a water outlet chamber; the water outlet chamber has multiple water outlet holes on the side away from the assembly space; the first electric motor is disposed in the assembly space; the adapter pipe is disposed inside the assembly space, and one end of the adapter pipe is connected to the connecting pipe, and the other end is connected to the water outlet chamber; the wire passes through the adapter pipe into the water outlet chamber, and the wire exits the water outlet chamber and is electrically connected to the first electric motor.
[0013] Optionally, the first electrical component includes a power supply component and a control component, both of which are located in the assembly space; the wire connects the power supply component and the second electrical component; and the control component is electrically connected to the power supply component.
[0014] Optionally, the connecting pipe includes an inner tube and an outer tube, with a first channel formed inside the inner tube; the inner tube is disposed inside the outer tube, and a second channel is formed between the outer wall of the inner tube and the inner wall of the outer tube; the wire passes through one of the first channel and the second channel; the water pump is connected to the nozzle assembly through the other of the first channel and the second channel to supply water to the nozzle assembly.
[0015] Optionally, the shower head also includes a support mechanism;
[0016] The support mechanism includes:
[0017] main body;
[0018] An adsorption element is detachably disposed on one side of the main body;
[0019] A pendant is attached to the top of the main body;
[0020] A clamping assembly is disposed on the side of the main body opposite to the adsorption member, and the clamping assembly is used to clamp the nozzle assembly.
[0021] Optionally, the clamping assembly includes a fixed base and a clamping member; the fixed base is fixed to the main body, one end of the clamping member is rotatably connected to the fixed base, and the other end is provided with a gripper for clamping the nozzle assembly.
[0022] Optionally, one end of the pendant is bent into a hook shape, and the other end of the pendant is rotatably connected to the main body.
[0023] Optionally, the main body has at least one mounting groove, and the adsorption element is detachably connected to the mounting groove.
[0024] The advantages of the shower head provided by this utility model compared to the prior art include:
[0025] In this showerhead, the connecting wires of the first electrical mechanism in the nozzle assembly and the second electrical mechanism in the pump assembly are routed inside the connecting pipe, effectively making the showerhead's wiring internal. This allows for internal wiring of the showerhead's wires, avoiding the safety and maintenance difficulties caused by external wiring. Therefore, this showerhead improves upon the safety issues and high maintenance difficulties caused by exposed wiring in existing outdoor showerheads.
[0026] Furthermore, the pump assembly has an internal containment chamber that not only allows water to flow through, facilitating the absorption of the water flow impact generated by the pump and reducing the impact force of the water sprayed from the nozzle assembly, thus ensuring user comfort, but also allows the wiring to be coiled within the containment chamber. This prevents excess wiring from clogging the connecting pipes, ensuring smooth water flow within the connecting pipes and ultimately guaranteeing that the nozzle assembly delivers the required amount of water. Attached Figure Description
[0027] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.
[0028] Figure 1 This is a schematic diagram of the shower head provided in the first embodiment of this application from a first-view perspective;
[0029] Figure 2 This is a schematic diagram of the shower head provided in the first embodiment of this application from a second perspective.
[0030] Figure 3 for Figure 2 Schematic diagram of the cross section at point DD;
[0031] Figure 4 This is a schematic cross-sectional view of the connecting pipe provided in the second embodiment of this application;
[0032] Figure 5 This is a cross-sectional schematic diagram of another connecting pipe provided in the second embodiment of this application;
[0033] Figure 6 This is a schematic diagram of the shower head provided in the third embodiment of this application.
[0034] Icons: Shower head 10, spray head assembly 100, spray head 110, handheld part 120, first electrical mechanism 130, power supply assembly 131, control assembly 132, adapter pipe 140, housing 150, water outlet chamber 151, assembly space 152, pump assembly 200, second electrical mechanism 210, water pump 220, receiving chamber 230, outer shell 240, first mounting cavity 241, second mounting cavity 242, channel 243, cover 244, connecting pipe 300, outer tube 310, second channel 322, inner tube 320, first channel 321, bracket mechanism 400, main body 410, mounting groove 411, suction component 420, hanging component 430, clamping assembly 440, fixing base 441, clamping component 442. Detailed Implementation
[0035] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. The components of the embodiments of this utility model described and shown in the accompanying drawings can generally be arranged and designed in various different configurations.
[0036] Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but merely to illustrate selected embodiments of the invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without inventive effort are within the scope of protection of the present invention.
[0037] It should be noted that similar labels and letters in the following figures indicate similar items. Therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.
[0038] In the description of this utility model, it should be noted that if terms such as "upper," "lower," "inner," or "outer" are used to indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship in which the utility model product is usually placed during use, they are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.
[0039] Furthermore, the terms "first" and "second" are used only to distinguish descriptions and should not be interpreted as indicating or implying relative importance.
[0040] It should be noted that, where there is no conflict, the features in the embodiments of this utility model can be combined with each other.
[0041] First Embodiment
[0042] Please see Figure 1 The embodiments of this application provide a shower head 10, which can improve the safety problems caused by the exposed wires of outdoor shower heads in the prior art and the high maintenance difficulty.
[0043] Please refer to the following: Figures 1 to 3 The shower head 10 includes a nozzle assembly 100, a pump assembly 200, and a connecting pipe 300. The nozzle assembly 100 contains a first electrical mechanism 130. The pump assembly 200 contains a second electrical mechanism 210. The connecting pipe 300 connects the nozzle assembly 100 and the pump assembly 200, and the pump assembly 200 supplies water to the nozzle assembly 100 through the connecting pipe 300. The first electrical mechanism 130 has at least one wire passing through the inside of the connecting pipe 300 and electrically connected to the second electrical mechanism 210. The nozzle assembly 100 is used for spraying water; the pump assembly 200 is used for drawing water and supplying water to the nozzle assembly 100; and the connecting pipe 300 is used to connect the nozzle assembly 100 and the pump assembly 200 to enable the pump assembly 200 to supply water to the nozzle assembly 100.
[0044] It should be noted that the length of the connecting pipe 300 shown in the attached figure is for illustrative purposes only. The actual length of the connecting pipe 300 can be designed according to actual needs to meet the user's requirements.
[0045] As described above, in this shower head 10, since the connecting wires of the first electrical mechanism 130 in the nozzle assembly 100 and the second electrical mechanism 210 in the pump assembly 200 are routed inside the connecting pipe 300, the wiring of the shower head 10 is internal. Based on this, the wiring of the shower head 10 can be routed internally, avoiding the safety issues and maintenance difficulties caused by external wiring. Therefore, this shower head 10 can improve the safety issues and high maintenance difficulties caused by exposed wiring in existing outdoor shower heads.
[0046] It is worth noting that the first electrical component 130 can be any electrical module located inside the nozzle assembly 100, such as the power supply component 131 and / or the control component 132. Similarly, the second electrical component 210 can be any electrical module located inside the pump assembly 200, such as the water pump 220 and / or the lamp assembly; in this embodiment, the second electrical component 210 is described as the motor driving the water pump 220.
[0047] Optionally, in this embodiment, the first electrical mechanism 130 is located inside the nozzle assembly 100, while the second electrical mechanism 210 is located inside the pump assembly 200. Therefore, through the connection of wires, the power supply assembly 131 can supply power to the second electrical mechanism 210 to enable the normal operation of the pump assembly 200.
[0048] In this embodiment, the pump assembly 200 further includes a water pump 220 and a receiving chamber 230; the second electrical mechanism 210 is electrically connected to the water pump 220. A wire passes through the inside of the receiving chamber 230 and into the connecting pipe 300; the outlet of the water pump 220 is connected to the receiving chamber 230; the receiving chamber 230 is connected to the connecting pipe 300 to supply water to the connecting pipe 300. That is, the water path and the wire's routing path are the same channel 243, directly providing protection to the wire through the water pipe.
[0049] It should be noted that in some cases, the water outlet of the water pump 220 and the solder joint of the wires of the second electrical mechanism 210 are not in the same location. Therefore, by setting up the receiving tank 230, the path of the wires and the water path can be converged together and then uniformly guided from the connecting pipe 300 to the nozzle assembly 100. In other words, by using the receiving tank 230 as a transfer point, the wires and water path can be conveniently guided to the nozzle assembly 100 together, which not only facilitates the routing of the wires but also avoids the formation of an overly complex water path, thus saving costs. Furthermore, it is precisely because of the setting up of the receiving tank 230 that excess wires can be coiled up, preventing excess wires from clogging the connecting pipe 300 and ensuring the smooth flow of water. In addition, the containment chamber 230 can also provide a buffer for the water discharged by the water pump 220, reducing the impact force of the water pump 220 to a certain extent, thereby ensuring that the impact force of the water discharged by the spray head assembly 100 is weakened after the water is guided to the spray head assembly 100, thus improving the user's comfort when using the shower head 10 while ensuring water volume.
[0050] Furthermore, in this embodiment, the pump assembly 200 also includes a housing 240. The housing 240 contains a first mounting cavity 241, a second mounting cavity 242, and a channel 243. The first mounting cavity 241 and the receiving chamber 230 are located at opposite ends of the second mounting cavity 242, and the channel 243 is disposed adjacent to the second mounting cavity 242. A second electrical mechanism 210 is disposed inside the second mounting cavity 242, and a water pump 220 is disposed inside the first mounting cavity 241. The output shaft of the second electrical mechanism 210 passes through the inner wall of the second mounting cavity 242 and is connected to the water pump 220 in the first mounting cavity 241 to provide power to the water pump 220. The outlet of the water pump 220 is connected to the channel 243; both the channel 243 and the side of the second mounting cavity 242 near the receiving chamber 230 are open and communicate with the internal space of the receiving chamber 230. The solder joints of the wires on the second electrical mechanism 210 are located at the opening of the second mounting cavity 242, so that the wires can directly enter the interior of the receiving chamber 230; similarly, the opening of the channel 243 corresponds to the receiving chamber 230, so that the water pump 220 can directly enter the interior of the receiving chamber 230 from the outlet of the channel 243, thus converging the water line, water path and wire path.
[0051] In addition, to facilitate the connection between the receiving chamber 230 and the connecting pipe 300, the receiving chamber 230 is provided with a protruding spout structure on the side near the connecting pipe 300, and the receiving chamber 230 communicates with the connecting pipe 300 through the protruding spout structure. In order to protect the water pump 220, the outer casing 240 is also provided with a cover 244 at the end away from the connecting pipe 300. The cover 244 covers the outside of the water pump 220, and the cover 244 is provided with multiple holes to allow water to enter the area where the water pump 220 is located.
[0052] In this embodiment, the nozzle assembly 100 further includes a housing 150 and an adapter pipe 140; the housing 150 has an assembly space 152 and a water outlet chamber 151; the water outlet chamber 151 has multiple water outlet holes on the side away from the assembly space 152; the first electrical mechanism 130 is disposed in the assembly space 152; the adapter pipe 140 is disposed inside the assembly space 152, and one end of the adapter pipe 140 is connected to the connecting pipe 300, and the other end is connected to the water outlet chamber 151; the wire enters the water outlet chamber 151 through the adapter pipe 140, and the wire exits the water outlet chamber 151 and is electrically connected to the first electrical mechanism 130. Optionally, in this embodiment, the outer shape of the housing 150 can be divided into two parts: a handheld part 120 and a nozzle head 110. The water outlet chamber 151 is disposed in the internal space of the front end portion of the nozzle head 110, and the internal space of the rear end portion of the nozzle head 110 and the internal space of the handheld part 120 form the assembly space 152. The adapter pipe 140 is connected to the connecting pipe 300 to facilitate the direct introduction of water into the water outlet chamber 151, thereby completing the water output of the shower head 10; while the first electrical mechanism 130 is set in the assembly space 152 to achieve water and electricity separation. The wires pass through the rear side wall of the water outlet chamber 151 to achieve electrical connection with the first electrical mechanism 130.
[0053] Optionally, in this embodiment, the first electrical mechanism 130 includes a power supply component 131 and a control component 132, both of which are located in the assembly space 152. A wire connects the power supply component 131 and the second electrical mechanism 210. The control component 132 is electrically connected to the power supply component 131. It should be noted that the power supply component 131 can provide electrical energy to the control component 132 and the second electrical mechanism 210. The second electrical mechanism 210 is used to drive the water pump 220. The control component 132 is used to precisely adjust the water flow rate and water outlet mode based on user operation commands, thereby achieving multiple functions.
[0054] In some embodiments, a light assembly can be installed on the exterior of the spray head 110. This light assembly can be electrically connected to the control component 132, allowing the user to control its on / off state. Additionally, a temperature sensor can be installed at the rear end of the water outlet chamber 151. The control component 132 can be electrically connected to this temperature sensor, allowing the user to determine the water temperature based on the temperature information obtained from the control component 132, and facilitating temperature adjustment.
[0055] In summary, based on the shower head 10 provided in this embodiment, the wires between the first electrical mechanism 130 and the second electrical mechanism 210 are routed inside the connecting pipe 300, avoiding safety issues and maintenance difficulties caused by exposed wires. Furthermore, the inclusion of the receiving chamber 230 facilitates the convergence of wire paths and water channels, and allows for the coiling of excess wires, preventing them from obstructing normal water flow and ensuring smooth water flow. Simultaneously, the receiving chamber 230 absorbs the impact force of the water flow, reducing the impact force and improving user comfort while maintaining water output. Additionally, the internal wiring makes the shower head 10 aesthetically pleasing and neat, avoiding the complex wiring, increased installation difficulty, and tangling issues caused by exposed wires.
[0056] Second Embodiment
[0057] Please refer to the following: Figures 3 to 5 This embodiment provides a shower head 10, which can also improve the safety problems and high maintenance difficulty caused by the exposed wires of outdoor shower heads in the prior art.
[0058] The shower head 10 provided in this embodiment differs from the shower head 10 provided in the first embodiment as follows:
[0059] In this embodiment, the connecting pipe 300 includes an inner pipe 320 and an outer pipe 310. A first channel 321 is formed within the inner pipe 320. The inner pipe 320 is disposed inside the outer pipe 310, and a second channel 322 is formed between the outer wall of the inner pipe 320 and the inner wall of the outer pipe 310. A wire passes through one of the first channel 321 and the second channel 322. The water pump 220 connects to the nozzle assembly 100 through the other of the first channel 321 and the second channel 322 to supply water to the nozzle assembly 100. In other words, the first embodiment uses a method where the wire path and the water path share a single path, i.e., a single-layer pipe configuration. In this embodiment, a double-layer pipe configuration is used to separate the water path and the wire path, achieving isolation between the water path and the electrical circuit, further improving safety.
[0060] It is worth noting that with the inner tube 320 and outer tube 310, the receiving chamber 230 in the outer shell 240 can be connected only to the receiving chamber 230, while the channel 243 can be connected from the outside of the receiving chamber 230 to the first channel 321 or the second channel 322, thus achieving complete separation of the water circuit and the electrical circuit. Similarly, when the wire passes through the first channel 321 or the second channel 322 into the nozzle assembly 100, it can be directly connected to the power supply assembly 131 without passing through the water outlet chamber 151; correspondingly, the adapter pipe 140 can be directly connected to the first channel 321 or the second channel 322 to realize the transfer of the water circuit.
[0061] Additionally, it should be noted that the double-layer tube can also be arranged as follows: the outer tube 310 and the inner tube 320 are partially wrapped together. For example, the outer tube 310 is crescent-shaped, while the inner tube 320 is located at the notch of the outer tube 310; or, for example, the outer tube 310 is a fan shape with an angle greater than 180°, while the inner tube 320 is a fan shape with an angle less than 180°, etc.
[0062] The shower head 10 provided in this embodiment not only improves the safety issues and maintenance difficulties caused by exposed wires in existing outdoor shower heads, but also further enhances the safety of the shower head 10 by completely separating the wire path from the water path through the double-layer pipe design.
[0063] Third Embodiment
[0064] Please see Figure 6 The shower head 10 provided in this embodiment differs from the shower head 10 in the first embodiment and the shower head 10 in the second embodiment in that the shower head 10 in this embodiment also includes a support mechanism 400. The support mechanism 400 is used to support the nozzle assembly 100, thereby facilitating user use of the shower head 10. It is worth noting that the support mechanism 400 provided in this embodiment can be applied to the shower head 10 in the first embodiment as well as the shower head 10 provided in the second embodiment.
[0065] In this embodiment, the support mechanism 400 includes a main body 410, an adsorption member 420, a hanging member 430, and a clamping assembly 440. The adsorption member 420 is detachably disposed on one side of the main body 410. The hanging member 430 is disposed on the top of the main body 410. The clamping assembly 440 is disposed on the side of the main body 410 opposite to the adsorption member 420, and the clamping assembly 440 is used to clamp the shower head assembly 100. When the shower head assembly 100 is clamped on the clamping assembly 440, the user can adsorb the support mechanism 400 onto the wall based on the adsorption member 420, or hang the support mechanism 400 on a pole or other position based on the hanging member 430, so as to place the shower head 10 at a high position for user convenience. It is worth noting that the use of the adsorption member 420 and the hanging member 430 can be selected by the user. The shower head 10 can be suspended using only the hanging member 430, or the shower head 10 can be adsorbed using only the adsorption member 420. Of course, it is also possible to suspend and adsorb simultaneously using the adsorption member 420.
[0066] The clamping assembly 440 includes a fixed base 441 and a clamping member 442. The fixed base 441 is fixed to the main body 410. One end of the clamping member 442 is rotatably connected to the fixed base 441, and the other end is provided with a gripper for clamping the nozzle assembly 100. Generally, the handle 120 of the nozzle assembly 100 is clamped by the gripper. While the clamping member 442 rotates relative to the fixed base 441, the orientation of the water outlet chamber 151 can be adjusted to adjust the water outlet direction.
[0067] In addition, one end of the hanger 430 is bent into a hook shape, and the other end of the hanger 430 is rotatably connected to the main body 410. The hook-shaped hanger 430 facilitates hanging, while the rotatable design of the other end of the hanger 430 allows it to be rotated to avoid the wall when only the suction member 420 is needed for suction, thus facilitating the attachment of the bracket mechanism 400 to the wall.
[0068] To facilitate the assembly and disassembly of the adsorption component 420, at least one mounting groove 411 is provided on the main body 410, and the adsorption component 420 is detachably connected to the mounting groove 411. In this embodiment, each mounting groove 411 is equipped with one adsorption component 420, and the adsorption component 420 can adopt a suction cup structure. To facilitate the disassembly of the adsorption component 420, the mounting groove 411 can be divided into two sections, one of which is wider to facilitate the insertion of the connection of the adsorption component 420 into the mounting groove 411; while the other section is narrower, so that after the adsorption component 420 is inserted into the mounting groove 411, it can be moved to the narrower section to limit the position of the adsorption component 420, ensuring that the adsorption component 420 can support the main body 410 and achieve adsorption of the support mechanism 400.
[0069] In summary, this shower head 10 not only addresses the safety issues and maintenance difficulties caused by exposed wiring in outdoor shower heads 10, but also, by incorporating a hanging bracket 430 and an adsorption component 420 on the bracket mechanism 400, allows for different installation methods for various scenarios, enabling the shower head 10 to meet diverse installation needs in outdoor environments. Furthermore, the rotation of the clamping component 442 allows for different water flow directions, enhancing user comfort. Moreover, the rotation of the hanging bracket 430 allows for wall-mounted adsorption installation of the bracket mechanism 400; the detachable connection between the adsorption component 420 and the mounting groove 411 also facilitates the installation and replacement of the adsorption component 420, reducing maintenance difficulty.
[0070] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the protection scope of the claims.
Claims
1. A shower head (10), characterized in that, include: The nozzle assembly (100) has a first electrical mechanism (130) inside. Pump assembly (200) with a second electrical mechanism (210) inside; A connecting pipe (300) is connected between the nozzle assembly (100) and the pump assembly (200), the pump assembly (200) supplying water to the nozzle assembly (100) through the connecting pipe (300); the first electrical mechanism (130) has at least one wire passing through the inside of the connecting pipe (300) and electrically connected to the second electrical mechanism (210).
2. The shower head (10) according to claim 1, characterized in that, The pump assembly (200) further includes a water pump (220) and a container (230); the second electrical unit (210) is electrically connected to the water pump (220); the wire passes through the inside of the container (230) and into the connecting pipe (300); the outlet of the water pump (220) is connected to the container (230); the container (230) is connected to the connecting pipe (300) to supply water to the connecting pipe (300).
3. The shower head (10) according to claim 2, characterized in that, The pump assembly (200) further includes a housing (240); the housing (240) is provided with a first mounting cavity (241), a second mounting cavity (242), and a channel (243); the first mounting cavity (241) and the receiving chamber (230) are respectively located at opposite ends of the second mounting cavity (242), and the channel (243) is arranged adjacent to the second mounting cavity (242); the second electrical mechanism (210) is located inside the second mounting cavity (242), the water pump (220) is located inside the first mounting cavity (241), and the outlet of the water pump (220) is connected to the channel (243); the channel (243) and the second mounting cavity (242) are both open on the side near the receiving chamber (230) and are both connected to the internal space of the receiving chamber (230).
4. The shower head (10) according to claim 1, characterized in that, The nozzle assembly (100) further includes a housing (150) and an adapter pipe (140); the housing (150) is provided with an assembly space (152) and a water outlet chamber (151); the water outlet chamber (151) is provided with multiple water outlet holes on the side away from the assembly space (152); the first electrical mechanism (130) is located in the assembly space (152); the adapter pipe (140) is located inside the assembly space (152), and one end of the adapter pipe (140) is connected to the connecting pipe (300), and the other end is connected to the water outlet chamber (151); the wire enters the water outlet chamber (151) through the adapter pipe (140), and the wire passes out of the water outlet chamber (151) and is electrically connected to the first electrical mechanism (130).
5. The shower head (10) according to claim 4, characterized in that, The first electrical mechanism (130) includes a power supply component (131) and a control component (132), both of which are located in the assembly space (152); the wire connects the power supply component (131) and the second electrical mechanism (210); the control component (132) is electrically connected to the power supply component (131).
6. The shower head (10) according to claim 2, characterized in that, The connecting pipe (300) includes an inner pipe (320) and an outer pipe (310). A first channel (321) is formed inside the inner pipe (320). The inner pipe (320) is located inside the outer pipe (310) and a second channel (322) is formed between the outer wall of the inner pipe (320) and the inner wall of the outer pipe (310). The wire passes through one of the first channel (321) and the second channel (322). The water pump (220) is connected to the nozzle assembly (100) through the other of the first channel (321) and the second channel (322) to supply water to the nozzle assembly (100).
7. The shower head (10) according to any one of claims 1-6, characterized in that, The shower head (10) also includes a support mechanism (400); The support mechanism (400) includes: Main body (410); An adsorption element (420) is detachably disposed on one side of the main body (410); A pendant (430) is provided on the top of the main body (410); A clamping assembly (440) is provided on one side of the main body (410) opposite to the adsorption member (420), and the clamping assembly (440) is used to clamp the nozzle assembly (100).
8. The shower head (10) according to claim 7, characterized in that, The clamping assembly (440) includes a fixed base (441) and a clamping member (442); the fixed base (441) is fixed to the main body (410), one end of the clamping member (442) is rotatably connected to the fixed base (441), and the other end is provided with a gripper for clamping the nozzle assembly (100).
9. The shower head (10) according to claim 7, characterized in that, One end of the pendant (430) is bent into a hook shape, and the other end of the pendant (430) is rotatably connected to the main body (410).
10. The shower head (10) according to claim 7, characterized in that, At least one mounting groove (411) is provided on the main body (410), and the adsorption member (420) is detachably connected to the mounting groove (411).