Low-power-consumption intelligent shower

By introducing pressure sensors and heat recovery components into smart showers, the problems of low water flow accuracy and heat waste are solved, while the maintenance process is simplified, achieving a low-power and efficient showering experience.

CN223585819UActive Publication Date: 2025-11-25ZHEJIANG SUEZ SANITARY WARE CO LTD
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Patent Information

Application Number
CN202520128466.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2025-11-25
Estimated Expiration
2035-01-20

AI Technical Summary

Technical Problem

Existing smart showers have low water output accuracy, lack heat recovery structures, and are difficult to maintain.

Method used

A pressure sensor is used instead of a single infrared sensor for water outlet control, and a heat recovery component is set up for heat recovery. The main component and the installation component adopt a sliding sleeve design for easy disassembly and maintenance.

Benefits of technology

It improves the accuracy of water flow from the shower, enables heat reuse, reduces energy consumption, and simplifies the maintenance process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of bathroom equipment, and discloses a low-power-consumption intelligent shower which comprises a main body assembly, an installation assembly is arranged at the rear end of the main body assembly, a head top shower head is arranged above the front end of the main body assembly, a handheld shower head is arranged above the right end of the main body assembly, a supporting column is arranged below the main body assembly, and the supporting column is connected with the installation assembly. An infrared sensor is arranged below the front end of the supporting column. According to the utility model, through the arrangement of the concentric-square-shaped frame, the drainage net is laid at the upper end of the concentric-square-shaped frame in a concentric-square-shaped manner, the pressure sensor is installed in the embedded groove, the pressure sensor, the concentric-square-shaped frame and the drainage net form a square structure, the square structure is spliced with the embedded bottom plate, and a standing area is formed on the ground; when the infrared sensor is shielded by water vapor or other articles, the water outlet work is not affected as long as a washing person does not leave a standing area by means of cooperation of the pressure sensor, and compared with traditional single sensing control, the water outlet work of the shower is more accurate.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of bathroom equipment, concretely to a low -power consumption intelligent shower. BACKGROUND

[0002] The shower is the shower equipment that realizes the water -saving effect through reducing flow, prolonging service life, quantitative water supply and the like. The intelligent shower is a kind of shower equipment that is integrated with advanced technology and has multiple intelligent functions. It has the functions of intelligent temperature control, intelligent operation, accurate temperature control, water flow regulation and atmosphere regulation.

[0003] At present, the water outlet of the existing intelligent shower is mainly operated by relying on infrared sensor, and the infrared sensor has some problems, such as the head washing operation of a person in the shower process. If the hair washing foam falls on the infrared sensor and shields it, the water outlet will be paused. At the same time, the space of the shower room is not large, and when the water vapor diffuses in the whole space, it will also cause certain influence on the sensing range of the infrared sensor, affecting the water outlet accuracy of the intelligent shower. Secondly, in the use process, there is lack of heat recovery structure, and the sprayed hot water is directly discharged into the sewer, cannot be reused, and there is certain resource waste. Moreover, the existing intelligent shower is generally fixedly installed on the wall, and the whole body is integrally installed with the shower room wall surface, so when a fault occurs and needs to be repaired, it is more difficult and not convenient. Therefore, it is necessary to provide a low-power consumption intelligent shower to solve the existing problems. SUMMARY

[0004] (I) Technical problem solved

[0005] In view of the deficiencies of the prior art, the utility model provides a low-power consumption intelligent shower, which solves the problems of low water outlet accuracy of the existing intelligent shower, lack of heat recovery structure and difficult maintenance when a fault occurs.

[0006] (II) Technical scheme

[0007] To achieve the above object, the utility model discloses the following technical scheme: a low-power consumption intelligent shower, including main part assembly, the rear end of main part assembly is equipped with installation assembly, the top of main part assembly front end is equipped with overhead shower, the top of right -hand end of main part assembly is equipped with handheld shower, the lower part of main part assembly is equipped with support, the lower part of support front end is equipped with infrared sensor, the front side of support lower end is equipped with embedded floor, the lower end of embedded floor is equipped with regenerative assembly, the inner side of embedded floor upper end is equipped with treading assembly, the left and right sides of regenerative assembly front end are equipped with water inlet pipe, the inner side of regenerative assembly upper end is equipped with lining plate.

[0008] Optionally, the main body assembly comprises a shell, a back plate, a tightening hole, a placing rod, a display screen, a control screen, a temperature control knob, a water distributor and a side water valve, the rear end of the shell is provided with the back plate, the lower part of the left end of the back plate is provided with the tightening hole, the upper part of the right end of the shell is provided with the placing rod, the upper part of the front end of the shell is provided with the display screen, the lower part of the display screen is provided with the control screen, the lower part of the control screen is provided with the temperature control knob, the upper part of the temperature control knob is provided with the water distributor, and the lower part of the temperature control knob is provided with the side water valve.

[0009] Optionally, the installation assembly comprises a clamping plate, a clamping groove, a reinforcing plate, a sliding groove and a tightening knob, the inner side of the front end of the clamping plate is provided with the clamping groove, the rear end of the clamping plate is provided with the reinforcing plate, the lower part of the left end of the clamping plate is provided with the sliding groove, and the inner side of the sliding groove is provided with the tightening knob.

[0010] Optionally, the heat recovery assembly comprises a water return tank, a water storage groove, a water supply pipe and a threading pipe, the inner side of the upper end of the water return tank is provided with the water storage groove, the rear middle part of the upper end of the water return tank is provided with the water supply pipe, and the left and right sides of the water supply pipe are provided with the threading pipe.

[0011] Optionally, the treading assembly comprises a meandering frame, a sewage net, an embedded groove, a pressure sensor, an electricity connection pipe and a positioning groove, the inner side of the meandering frame is provided with the sewage net, the middle part of the upper end of the sewage net is provided with the embedded groove, the inside of the embedded groove is provided with the pressure sensor, the left and right sides of the rear end of the meandering frame are provided with the electricity connection pipe, and the lower end of the meandering frame is provided with the positioning groove.

[0012] Optionally, the main body assembly and the installation assembly are in sliding sleeve connection, the main body assembly can slide in the interior of the installation assembly, the left and right ends of the installation assembly are fixed on the wall through expansion screws, the lower end of the main body assembly and the upper end of the support are in mutual adhesion, two conveying pipes are laid in the interior of the heat recovery assembly, two water inlet pipes are symmetrically distributed, the rear end of the water inlet pipe is in communication with the conveying pipe laid in the interior of the heat recovery assembly, and the inner lining plate is composed of a frame and a filter plate.

[0013] Optionally, two cold and hot water pipes are laid in the interior of the shell, the shell and the back plate are in one-piece structure, the interior of the one-piece structure is hollow, the temperature control knob, the water distributor and the side water valve are in communication with the cold and hot pipes laid in the interior of the shell.

[0014] Optionally, two notches are formed in the rear side of the lower end of the sewage net, threading pipes are arranged on the left and right sides of the rear end of the pressure sensor, and the positioning grooves are arranged in parallel and in alignment.

[0015] In summary, the technical effects and advantages of the utility model are as follows:

[0016] 1. The utility model discloses a reasonable structure, through the setting back -shaped frame, can install the sewer net on the outside of its upper end, installs the pressure sensor into the inlay groove, and constitutes a square structure with back -shaped frame and sewer net, after the square structure is embedded with inlay bottom plate and splices, forms a shower standing area on the ground, when the infrared sensor is shielded by water vapor or other articles when carrying out the spraying work, can also rely on the pressure sensor to play the role, as long as the washing personnel does not leave the shower standing area, the water work will not be affected, compared with the traditional single type induction control, the water work of shower will be more accurate.

[0017] 2. In the utility model, through the setting back -shaped tank, because it is installed at the lower end of inlay bottom plate, when starting shower, water flow will enter storage tank through sewer net and lining plate and store, a certain degree of heating is carried out to the water flow in the storage tank internal delivery pipe, so that the water flow that enters heating device can reach the suitable temperature more quickly, the effect of reducing energy consumption is played, and then the stored water flow enters indoor ground circulation pipe through the drain pipe in the front middle part of back -shaped tank and heats the ground in the room, and the effect similar to floor heating is brought, so that the effect of recycling shower water heat is played, and the waste of resources is reduced.

[0018] 3. In the utility model, through the setting back plate and the slot, the shell and the clamping plate can be slidably connected with each other, when disassembling, only need to take out the tightening button from the tightening hole, separate the pipeline connected between the lower end of the shell and the support, can take out the shell from the upper end of the clamping plate for maintenance, and only need to reverse the above operation when installing, compared with the traditional integrated installation structure, the disassembly and assembly work will be more convenient and time -saving and labor -saving. ACCURACY

[0019] Figure 1 It is the three -dimensional structure schematic diagram of the utility model;

[0020] Figure 2 It is the three -dimensional explosion structure schematic diagram of the utility model main component and installation component;

[0021] Figure 3 It is the three -dimensional explosion structure schematic diagram of the utility model inlay bottom plate and treading component;

[0022] Figure 4 It is the three -dimensional explosion structure schematic diagram of the utility model back -heat component, lining plate and treading component;

[0023] Figure 5 It is the three -dimensional explosion structure schematic diagram of the utility model treading component.

[0024] In the figure: 1, main body assembly; 2, installation assembly; 3, overhead shower; 4, handheld shower; 5, support column; 6, infrared sensor; 7, embedded bottom plate; 8, heat recovery assembly; 9, stepping assembly; 10, water inlet pipe; 11, inner lining plate; 101, shell; 102, back plate; 103, tightening hole; 104, placing rod; 105, display screen; 106, control screen; 107, temperature control knob; 108, water distributor; 109, side water valve; 201, clamping plate; 202, clamping groove; 203, reinforcing plate; 204, sliding groove; 205, tightening knob; 801, water return tank; 802, water storage groove; 803, water supply pipe; 804, threading pipe; 901, return frame; 902, lower water net; 903, embedded groove; 904, pressure sensor; 905, power connection pipe; 906, positioning groove. DETAILED DESCRIPTION

[0025] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0026] Embodiment: Reference Figures 1-5The low-power intelligent shower shown, including the main component 1, the main component 1 and the installation component 2 are slidingly connected, and the main component 1 can slide in the inside of the installation component 2, the rear end of the main component 1 is provided with the installation component 2, the left and right ends of the installation component 2 are fixed on the wall through the expansion screws, the upper side of the front end of the main component 1 is provided with the overhead shower 3, the upper side of the right end of the main component 1 is provided with the handheld shower 4, the lower side of the main component 1 is provided with the support 5, the outer right side of the support 5 is provided with two connecting pipes, at the same time, the inside of the support 5 is paved with two hollow pipes, the left side of the inside is divided into two parts, and is communicated with the two connecting pipes arranged on the outer right side of the support 5, for being communicated with the external heating device, the right side of the inside is an integral pipe, and the lower ends of the two hollow pipes in the inside of the support 5 are communicated with the water supply pipe 803, the upper ends of the two hollow pipes are communicated with the two water supply pipes in the inside of the shell 101, the lower end of the main component 1 is communicated with the upper end of the support 5, the lower side of the front end of the support 5 is provided with the infrared sensor 6, the front side of the lower end of the support 5 is provided with the embedded bottom plate 7, the lower end of the embedded bottom plate 7 is provided with the heat recovery component 8, the inside of the heat recovery component 8 is paved with two conveying pipes, the two conveying pipes are both circularly paved in U shape, and the front ends of the two conveying pipes are communicated with the two water inlet pipes 10, and the rear ends of the two conveying pipes are communicated with the water supply pipe 803, the inside of the upper end of the embedded bottom plate 7 is provided with the stepping component 9, the left and right sides of the front end of the heat recovery component 8 are provided with the water inlet pipe 10, the water inlet pipe 10 is symmetrically distributed with two, the inside of the upper end of the heat recovery component 8 is provided with the lining plate 11, and the lining plate 11 is composed of the frame and the filter plate.

[0027] As an optional implementation in the embodiment, as Figure 1 and Figure 2As shown, the main assembly 1 includes a shell 101, a back plate 102, a tightening hole 103, a placing rod 104, a display screen 105, a control screen 106, a temperature control knob 107, a water distributor 108 and a side water valve 109, the inside of the shell 101 is paved with two cold and hot water pipes, the rear end of the shell 101 is provided with the back plate 102, the shell 101 and the back plate 102 are in an integral structure, and the inside of the integral structure is hollow, the lower left end of the back plate 102 is provided with the tightening hole 103, the upper right end of the shell 101 is provided with the placing rod 104, the upper front end of the shell 101 is provided with the display screen 105, the lower side of the display screen 105 is provided with the control screen 106, the lower side of the control screen 106 is provided with the temperature control knob 107, the upper side of the temperature control knob 107 is provided with the water distributor 108, and the lower side of the temperature control knob 107 is provided with the side water valve 109, and the temperature control knob 107, the water distributor 108 and the side water valve 109 are in communication with the cold and hot pipes paved in the inside of the shell 101, the communication mode between the four is the same as the existing internal communication mode of the shower, which is the existing known technology, so it will not be described in detail in the specification; the installation assembly 2 includes a clamping plate 201, a clamping groove 202, a reinforcing plate 203, a sliding groove 204 and a tightening knob 205, the inner side of the front end of the clamping plate 201 is provided with the clamping groove 202, the rear end of the clamping plate 201 is provided with the reinforcing plate 203, the lower left end of the clamping plate 201 is provided with the sliding groove 204, and the inner side of the sliding groove 204 is provided with the tightening knob 205.

[0028] By setting the back plate 102 and the clamping groove 202, the shell 101 and the clamping plate 201 can be slidably connected to each other, when disassembly is needed, only the tightening knob 205 needs to be taken out of the tightening hole 103, and the pipe connected between the lower end of the shell 101 and the support 5 needs to be separated, so that the shell 101 can be taken out from the upper end of the clamping plate 201 for maintenance, and the reverse operation can be completed during subsequent installation, compared with the traditional integral installation structure, the disassembly and assembly work will be more convenient and time-saving.

[0029] As shown in Figure 3 and Figure 4 In this embodiment, the heat recovery assembly 8 includes a water return tank 801, a water storage groove 802, a water supply pipe 803 and a wire penetrating pipe 804, the inner side of the upper end of the water return tank 801 is provided with the water storage groove 802, the rear middle part of the upper end of the water return tank 801 is provided with the water supply pipe 803, and the left and right sides of the water supply pipe 803 are provided with the wire penetrating pipe 804.

[0030] By setting the backwater tank 801, since it is installed at the lower end of the embedded bottom plate 7, when starting to shower, the water flow will pass through the lower water net 902 and the inner lining plate 11 into the water storage tank 802 for storage, and the water flow passing through the water conveying pipe inside the water storage tank 802 is heated to a certain extent, so that the water flow entering the heating device can reach the appropriate temperature more quickly, thereby reducing energy consumption. After that, the stored water flow enters the indoor floor circulation pipe through the drain pipe at the front end of the backwater tank 801, and heats the indoor floor, which has a similar effect to floor heating, thereby achieving the effect of reusing shower water heat and reducing resource waste.

[0031] As shown in Figures 3 to 5 In this embodiment, the stepping assembly 9 includes a back-shaped frame 901, a lower water net 902, an embedded groove 903, a pressure sensor 904, an electrical connection pipe 905, and a positioning groove 906. The inner side of the back-shaped frame 901 is provided with the lower water net 902. Two notches are formed at the rear side of the lower end of the lower water net 902, which facilitates the laying work of the wire pipe of the pressure sensor 904. An embedded groove 903 is formed at the middle of the upper end of the lower water net 902. The pressure sensor 904 is arranged inside the embedded groove 903. Wire pipes are arranged at the left and right sides of the rear end of the pressure sensor 904. The left and right sides of the rear end of the back-shaped frame 901 are provided with the electrical connection pipe 905. The lower end of the back-shaped frame 901 is provided with the positioning groove 906, which is arranged in parallel and in a row.

[0032] By setting the back-shaped frame 901, the lower water net 902 can be laid and installed on the outer side of the upper end of the back-shaped frame 901. The pressure sensor 904 is installed in the embedded groove 903, and the back-shaped frame 901 and the lower water net 902 form a square structure. Then, the square structure is embedded and spliced with the embedded bottom plate 7 to form a shower standing area on the ground. When the infrared sensor 6 is blocked by water vapor or other objects during the spraying work, the pressure sensor 904 can still play a role. As long as the person washing does not leave the shower standing area, the water outlet work will not be affected. Compared with the traditional single type of sensing control, the water outlet work of the shower is more accurate.

[0033] The utility model discloses a low -power consumption intelligence shower, through the back -shaped frame 901 that sets up, can install the sewer net 902 of back type on its upper end outside, installs the pressure sensor 904 into the inlay groove 903 with back -shaped frame 901 and sewer net 902 constitute a square structure, after square structure and inlay bottom plate 7 carry out inlay splicing, form a shower standing area on the ground, when infrared sensor 6 is shielded by water vapor or other articles when carrying out the spray work, still can rely on pressure sensor 904 to play a role, as long as the person who washes does not leave the shower standing area, the water work will not be affected, compared with traditional single formula induction control, let the water work of shower be more accurate, and, through the backwater tank 801 that sets up, because it is installed in the lower end of inlay bottom plate 7, when starting shower, water flow will enter storage tank 802 through sewer net 902 and inner lining plate 11 and store, the water flow in the conveying pipe in storage tank 802 is heated to a certain degree, let water flow enter heating device can reach suitable temperature more quickly, play the role of reducing energy consumption, and the water flow that stores passes through the drain pipe in the front middle part of backwater tank 801 and enters indoor ground circulation pipe, heats the ground in the room, and brings up similar to the effect of floor heating, thereby play the effect of reusing shower water heat, reduce the waste of resources, second, through the backboard 102 and the clamping groove 202 that set up, can let the shell 101 and the clamping plate 201 mutually between the sliding sleeve connection, when needing to disassemble, only need to take out the tightening button 205 from the tightening hole 103, separate the pipeline that the lower end of shell 101 is connected with the support 5, can take out shell 101 from the upper end of clamping plate 201 and maintain, and when installing subsequently, only need to complete by reversing the above operation, compared with the traditional integrated mounting structure, the dismounting work will be more convenient and save time and effort.

[0034] Finally, it should be noted that: the above only for preferred embodiment of the utility model has been described, and does not limit the utility model, although the utility model has been described in detail with reference to the foregoing embodiments, for the person skilled in the art, still can modify the technical scheme recorded in the foregoing each embodiment, or equivalent replacement to some technical features, any modification, equivalent replacement, improvement etc. that is made within the spirit and principle of the utility model, should be included in the protection scope of the utility model.

Claims

1. A low power consumption intelligent shower comprising a main body assembly (1), characterized in that: The rear end of the main assembly (1) is provided with a mounting assembly (2), the upper front end of the main assembly (1) is provided with a head shower (3), the upper right end of the main assembly (1) is provided with a handheld shower (4), the lower side of the main assembly (1) is provided with a support column (5), the lower front end of the support column (5) is provided with an infrared sensor (6), the front side of the lower end of the support column (5) is provided with an embedded bottom plate (7), the lower end of the embedded bottom plate (7) is provided with a heat recovery assembly (8), the inner side of the upper end of the embedded bottom plate (7) is provided with a stepping assembly (9), the left and right sides of the front end of the heat recovery assembly (8) are provided with water inlet pipes (10), and the inner side of the upper end of the heat recovery assembly (8) is provided with a lining plate (11).

2. The low-power intelligent shower according to claim 1, characterized in that: The main assembly (1) comprises a shell (101), a back plate (102), a tightening hole (103), a placing rod (104), a display screen (105), a control screen (106), a temperature control knob (107), a water distributor (108) and a side water valve (109), the rear end of the shell (101) is provided with a back plate (102), the lower left end of the back plate (102) is provided with a tightening hole (103), the upper right end of the shell (101) is provided with a placing rod (104), the upper inner side of the front end of the shell (101) is provided with a display screen (105), the lower side of the display screen (105) is provided with a control screen (106), the lower side of the control screen (106) is provided with a temperature control knob (107), the upper side of the temperature control knob (107) is provided with a water distributor (108), and the lower side of the temperature control knob (107) is provided with a side water valve (109).

3. The low power consumption intelligent shower according to claim 1, characterized in that: The mounting assembly (2) comprises a clamping plate (201), a clamping groove (202), a reinforcing plate (203), a sliding groove (204) and a tightening knob (205), the inner side of the front end of the clamping plate (201) is provided with a clamping groove (202), the rear end of the clamping plate (201) is provided with a reinforcing plate (203), the lower left end of the clamping plate (201) is provided with a sliding groove (204), and the inner side of the sliding groove (204) is provided with a tightening knob (205).

4. The low power consumption intelligent shower according to claim 1, characterized in that: The heat recovery assembly (8) comprises a water return tank (801), a water storage groove (802), a water supply pipe (803) and a threading pipe (804), the inner side of the upper end of the water return tank (801) is provided with a water storage groove (802), the rear side of the upper end of the water return tank (801) is provided with a water supply pipe (803), and the left and right sides of the water supply pipe (803) are provided with threading pipes (804).

5. The low power consumption intelligent shower according to claim 1, characterized in that: The stepping assembly (9) comprises a meandering frame (901), a drain net (902), an embedded groove (903), a pressure sensor (904), an electricity connection pipe (905) and a positioning groove (906), the inner side of the meandering frame (901) is provided with a drain net (902), the upper end of the drain net (902) is provided with an embedded groove (903) in the middle, the inside of the embedded groove (903) is provided with a pressure sensor (904), the left and right sides of the rear end of the meandering frame (901) are provided with electricity connection pipes (905), and the lower end of the meandering frame (901) is provided with a positioning groove (906).

6. The low power consumption intelligent shower according to claim 1, characterized in that: The main body assembly (1) is in sliding sleeve connection with the mounting assembly (2), and the main body assembly (1) can slide in the mounting assembly (2), the left and right ends of the mounting assembly (2) are fixed on the wall through expansion screws, the lower end of the main body assembly (1) is in mutual adhesion with the upper end of the support (5), two conveying pipes are arranged in the heat recovery assembly (8), two water inlet pipes (10) are symmetrically arranged, and the rear end of the water inlet pipe (10) is in communication with the conveying pipe arranged in the heat recovery assembly (8), and the inner lining plate (11) is composed of a frame and a filter plate.

7. The low power consumption intelligent shower according to claim 2, characterized in that: The inside of the shell (101) is provided with two cold and hot water pipes, the shell (101) and the back plate (102) are in an integrated structure, and the inside of the integrated structure is hollow, the temperature control knob (107), the water distributor (108) and the side water valve (109) are in communication with the cold and hot pipelines arranged in the shell (101).

8. The low power consumption intelligent shower according to claim 5, characterized in that: The rear side of the lower water net (902) is provided with two notches, the left and right sides of the rear end of the pressure sensor (904) are provided with wire penetrating pipes, and the positioning grooves (906) are arranged in parallel and in a row.