A modular shower control panel and shower
By using a modularly designed shower control panel and adjusting the connection of the water flow channels with barrier components, the problem of incompatibility between different shower systems is solved, thus improving cost-effectiveness.
Patent Information
- Application Number
- CN202310770888.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-27
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2043-06-27
AI Technical Summary
The control panels of different shower systems are not interchangeable due to the different number of water outlet terminals, resulting in high production costs.
Design a modular shower control panel that adjusts the water flow channel connectivity by using different installation orientations of the barrier components, allowing it to connect to different water outlets or the same outlet, thus adapting to different numbers of water outlet terminals.
This allows a single control panel to be adapted to different numbers of water outlet terminals, reducing production costs.
Smart Images

Figure CN119195284B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to a bathroom product, in particular to a shower. BACKGROUND
[0002] Shower system is an indispensable device in the family. The shower system generally has a top spray shower and a second water outlet device and a water outlet controller. The top spray shower and the second water outlet device are connected to the water outlet controller through pipelines to form water outlet or water off.
[0003] With the improvement of people's living standards, there are more and more water outlet terminals in the shower system, such as lower water outlet, spray gun water outlet, shoulder shower water outlet, etc. This requires different water outlets to be set on the control panel to connect different water outlet terminals. However, the number of water outlet terminals on different product lines is not the same. For example, the entry-level product may only have two water outlet terminals of hand-held and shower, while the flagship product has four or more water outlet terminals, which causes the control panel of different shower systems to be not universal, and needs to be separately molded, which is very costly. SUMMARY
[0004] The main technical problem to be solved by the present application is to provide a control panel of a shower, which can be adapted to different shower systems for use, achieve the effect of modularization, and save the mold production cost of the manufacturer.
[0005] In order to solve the above technical problems, the present application provides a modularized shower control panel, which has an inlet flow channel and at least two outlet flow channels.
[0006] It also includes a blocking piece for blocking the two outlet flow channels, the blocking piece has a first installation direction and a second installation direction; when the blocking piece is installed in the first installation direction, the two outlet flow channels are blocked by the blocking piece, and the two outlet flow channels are respectively connected to different water outlets to connect different water outlet terminals; when the blocking piece is installed in the second installation direction, the two outlet flow channels are connected to each other, and the two outlet flow channels are connected to the same water outlet to connect the same water outlet terminal.
[0007] In a preferred embodiment, the connecting part between the two outlet flow channels is provided with a first water blocking rib and an opening for connecting the two outlet flow channels; the blocking piece has a second water blocking rib; when the blocking piece is installed in the first installation direction, the first water blocking rib and the second water blocking rib abut to block the opening; when the blocking piece is installed in the second installation direction, the first water blocking rib and the second water blocking rib are staggered.
[0008] In a preferred embodiment, the control panel has control switch installation positions corresponding to the water outlet channels, for installing control switches to control the water outlet channels to be in communication with the water inlet or disconnected.
[0009] In a preferred embodiment, when the partition is installed in the first installation direction, the control switch installation positions of the two water outlet channels are respectively installed with control switches; when the partition is installed in the second installation direction, one of the control switch installation positions of the two water outlet channels is installed with a control switch, and the other control switch installation position is provided with a plug.
[0010] In a preferred embodiment, the water inlet channel comprises a cold water inlet, a hot water inlet and a mixing valve; the cold water inlet and the hot water inlet are respectively in communication with the mixing valve.
[0011] In a preferred embodiment, temperature and flow sensors and a flow controller are arranged between the water outlet channel and the water inlet channel.
[0012] In a preferred embodiment, the flow controller is a water-saving sheet.
[0013] The present application also provides a shower, comprising a water outlet terminal and the control panel as described above.
[0014] Compared with the prior art, the technical scheme of the present application has the following beneficial effects:
[0015] The present application provides a modular shower control panel, by adjusting the installation direction of the partition, two water outlet channels can be separated or communicated with each other. In this way, the two water outlet channels can be connected to different water outlets or connected to the same water outlet, so as to adjust the number of water outlets, and further adjust the number of water outlet terminals that can be installed. In this way, without changing the internal structure of the control panel, the same control panel can be used to adapt to shower systems with different numbers of water outlet terminals, without the need to produce control panels for different shower systems, greatly reducing the production cost. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 Fig. 1 is a schematic view of a shower according to a preferred embodiment of the present application;
[0017] Figure 2 Fig. 2 is a schematic view of the water path of the shower according to a preferred embodiment of the present application (only the second control switch);
[0018] Figure 3 Fig. 3 is an exploded view of the control panel according to a preferred embodiment of the present application;
[0019] Figure 4 Fig. 4 is a schematic view of the water path flow direction of the control panel according to a preferred embodiment of the present application when in normal use;
[0020] Figure 5 Schematic diagram of water flow for shower of preferred embodiment of the present application (with second control switch and third control switch)
[0021] Figure 6 Schematic diagram of partial cross-section of water flow into cold water discharge channel for control panel in cold water discharge state of preferred embodiment of the present application;
[0022] Figure 7 Schematic diagram of cross-section of water flow into cold water discharge channel for control panel in cold water discharge state of preferred embodiment of the present application;
[0023] Figure 8 Schematic diagram of water flow for control panel in cold water discharge state of preferred embodiment of the present application;
[0024] Figure 9 Schematic diagram of residual water flow into first cold water discharge channel of preferred embodiment of the present application; Figure 10 Schematic diagram of lateral cross-section of control panel of preferred embodiment of the present application;
[0025] Figures 11-13 Respectively, Figure 8 Cross-sectional view at A-A, B-B, C-C positions.
[0026] Figure 14 Front view of control panel of preferred embodiment 1 of the present application;
[0027] Figure 15 Perspective view of blocking member installed in first direction of preferred embodiment 1 of the present application;
[0028] Figure 16 Cross-sectional view of blocking member blocking two water discharge channels of preferred embodiment 1 of the present application;
[0029] Figure 17 Cross-sectional view of Figure 16 ;
[0030] Figures 18-25 Planar cross-sectional view and perspective cross-sectional view of water discharge flow direction of four channels;
[0031] Figure 26 Figure 27 Different angle perspective views of blocking member of preferred embodiment 1 of the present application;
[0032] Figure 28 Front view of control panel of preferred embodiment 2 of the present application;
[0033] Figure 29 Schematic diagram of blocking member installed in second direction of preferred embodiment 2 of the present application;
[0034] Figure 30A sectional view of the barrier connecting two water outlet channels in the preferred embodiment 2 of the present application;
[0035] Figure 31 A sectional view of the barrier connecting two water outlet channels in the preferred embodiment 2 of the present application; Figure 30 A sectional view of the barrier connecting two water outlet channels in the preferred embodiment 2 of the present application;
[0036] Figure 32 A sectional view of the barrier connecting two water outlet channels in the preferred embodiment 2 of the present application; DETAILED DESCRIPTION
[0037] 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 some of the embodiments of the present application, but not all the embodiments of the present application, and all other embodiments obtained by a person of ordinary skill in the art without creative effort based on the embodiments in the present application shall fall within the scope of protection of the present application.
[0038] In the description of the present application, it should be noted that the terms "upper", "lower", "inner", "outer", "top / bottom end" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. In addition, the terms "first", "second" are only for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0039] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "provided with", "sleeved / connected", "connected" and the like should be broadly understood, for example, "connected" can be wall-mounted connection, can be detachable connection, or integral connection, can be mechanical connection, can be electrical connection, can be direct connection, can be indirect connection through an intermediate medium, can be internal communication of two elements, and for a person of ordinary skill in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0040] With reference to Figures 1-13 , the present embodiment provides a shower, comprising: a control panel 1 and a water outlet terminal 2 connected with the control panel 1; the water outlet terminal 2 in the present embodiment is four, which are two functional top spray water sprayers, one lower water outlet terminal and a handheld shower. This is only an example of the present embodiment, and the number of water outlet terminals 2 can be increased or decreased during specific design, which is a simple replacement of the present embodiment.
[0041] In order to realize the water outlet of the four water outlet terminals 2, the control panel 1 has an inlet water channel composed of a cold water inlet 11, a hot water inlet 12 and a mixed water valve 13; and further has four water outlet channels 14 corresponding to the four water outlet terminals 2, each of which is provided with a water outlet 141 connected with the corresponding water outlet terminal 2. And each water outlet channel 14 is provided with a first control switch 142 for connecting or disconnecting the inlet water channel and the water outlet 141. The first control switch 142 can be a mechanical switch, an electronic switch or an electronic and mechanical linkage control switch. In the embodiment, the first control switch 142 is a mechanical switch, specifically a press switch rotary flow regulating valve. The four mechanical switches are connected in parallel, and each can control the water outlet of each water outlet channel 14.
[0042] The cold water and the hot water flow into the mixed water valve 13 through the cold water inlet 11 and the hot water inlet 12 respectively, and then mix to form mixed water, which flows out from the mixed water outlet 131 of the mixed water valve 13. The mixed water valve 13 adjusts the proportion of the cold water and the hot water entering the mixed water valve 13, so as to adjust the temperature of the mixed water.
[0043] The control panel 1 is provided with a temperature detection device 15 and a flow detection device 16 at the rear end of the mixed water outlet 131 of the mixed water valve 13, so that the temperature and flow of the mixed water can be detected in real time. The control panel 1 is further provided with a display screen 102 for displaying the temperature and flow, and the temperature and flow can be displayed on the display screen 102 in the form of numbers or symbols. The flow detection device 16 is provided for the following reason: the temperature detection device 15 is arranged in the inlet water channel, and has a long distance from the water outlet 141. Therefore, during the cold water discharge process, the temperature of the water outlet 141 is lower than that of the position of the temperature detection device 15. That is to say, when the temperature detection device detects that the temperature of the mixed water has reached the preset temperature, the temperature of the water outlet 141 is still lower than the preset temperature. If the cold water discharge is stopped at this time, the user will still feel that the water temperature is low. Therefore, the flow detection device 16 is provided, and when the temperature detection device detects that the water temperature has reached the preset temperature, the control panel 1 starts to record the flow information through the flow detection device 16, and the cold water discharge is ended when the flow reaches the set value, so as to ensure that the water temperature of the water outlet 141 reaches the set value of the user during the user's shower. The set value of the flow depends on the volume of the pipeline at the rear end of the temperature detection device 15. The connection between the inlet water channel and the water outlet channel 14 is provided with a flow controller 17, such as a water-saving sheet, so as to adjust the size of the water flow of each water outlet terminal 2.
[0044] Thus, the regular function of the control panel 1 is achieved, i.e. controlling different water outlets 2 to discharge water. The control panel 1 in the embodiment also has a main function, i.e. discharging residual water in the pipeline. The common way to discharge residual water is to discharge residual water through a separate residual water discharge outlet. Thus, a residual water discharge outlet needs to be additionally provided on the control panel 1, which is relatively complex in structure and not good in appearance. Therefore, the residual water discharge scheme adopted in the embodiment is to discharge residual water through the existing water outlet 2. To this end, the control panel 1 further comprises residual water discharge channels 18 corresponding to part or all of the water flow channels 14 and arranged in parallel with the water flow channels 14, the residual water discharge channels 18 and the water flow channels 14 corresponding thereto share a water outlet 141, and the residual water discharge channels 18 are provided with second control switches 181 for communicating or closing the residual water discharge channels 18 with the water inlet channels. In the embodiment, there are three residual water discharge channels 18 corresponding to three of the four water flow channels 14. Of course, four residual water discharge channels 18 can also be provided, each corresponding to one of the four water flow channels 14. By arranging the residual water discharge channels 18 in parallel with the water flow channels 14, the water outlet 141 of the water flow channel 14 can be used as the water outlet 141 of the residual water, so that residual water can be discharged from the water outlet 2 connected to the control panel 1. Moreover, the residual water discharge channels 18 can be arranged in multiple numbers and arranged in parallel with different water flow channels 14, so that multiple water outlets 2 can be simultaneously used for discharging residual water.
[0045] Moreover, since the residual water discharge channels 18 are arranged in parallel with the water flow channels 14 and the residual water discharge channels 18 are directly connected to the water outlet 141 of the water flow channel 14, the residual water discharge channels 18 can bypass the first control switch 142 arranged on the water flow channel 14. Thus, the user can achieve the residual water discharge operation by operating the second control switch 181, which is relatively simple.
[0046] In order to increase the efficiency of discharging residual water, the second control switch 181 is used to control the residual water discharge channels 18 to be opened or closed simultaneously. Thus, when the second control switch 181 is opened, the three water outlets 2 connected to the residual water discharge channels 18 can discharge residual water simultaneously, which improves the efficiency of discharging residual water compared with the traditional way of discharging residual water from different water outlets one by one.
[0047] The second control switch 181 is preferably an electromagnetic valve. Before the user enters the shower, the second control switch 181 is opened by remote wireless control, and the three water outlets 2 connected with the cold water discharge channel 18 are simultaneously discharged, so that the residual water in the top spray, the handheld shower and the lower water outlet is discharged at one time. Of course, other methods can also be used, for example, a distance sensor is added to the control panel, and when the user approaches the shower, the distance sensor is electrically connected with the control mainboard, and then the control mainboard controls the opening of the control switch 181 to perform full cold water discharge. The control mainboard on the control panel 1 can also be set to discharge cold water at intervals, and the discharge time of each cold water discharge is set, for example, cold water is discharged every 4 hours, and each cold water discharge lasts for 10 seconds. The program on the control mainboard of the control panel can be set.
[0048] At the same time, in order to avoid that the residual water in the cold water discharge channel 18 flows into the water outlet channel 14, a first check valve 182 is arranged in the cold water discharge channel 18, which allows the residual water in the cold water discharge channel 18 to flow in one direction towards the water outlet 141. In this way, the residual water in the cold water discharge channel 18 can only flow in one direction, and there is no need to worry that the residual water will enter the water outlet channel 14 and flow out of the water outlet channel 14 when the user normally showers.
[0049] In order to further increase the functions of the control panel 1, a third control switch 191 is arranged between the second control switch 181 and the water inlet channel in the embodiment. The third control switch 191 is connected with the water outlet channel 14 through a water supplement channel 192. In this way, the residual water has two flow modes: mode one: when the second control switch 181 is closed and the third control switch 191 is opened, the water supplement channel 192 is connected with the water inlet channel, and at this time, the residual water enters the water inlet channel to supplement water, and the water amount of the water outlet terminal 2 is increased when the water outlet terminal 2 normally discharges water; mode two: when the second control switch 181 and the third control switch 191 are both opened, the cold water discharge channel 18 is connected with the water inlet channel, and at this time, the residual water is discharged from the water outlet terminal 2 through the cold water discharge channel 18.
[0050] Similarly, in order to avoid that the water in the water supplement channel 192 flows in the opposite direction, a second check valve 193 is arranged in the water supplement channel 192, which allows the water in the water supplement channel 192 to flow in one direction towards the water outlet channel 14. At the same time, it can also avoid that the mixed water in the water mixing valve flows through the flow probe to the second control switch 181 and then to the cold water discharge channel 18, because the water path of the mixed water in the water mixing valve through the flow probe is always filled with water, and if the check valve is installed in the opposite direction, when the second control switch is opened, the water path of the residual water will be in a water leakage state.
[0051] Referring to Figure 4 , Figure 5 andFigure 6 The cold and hot mixed water from the mixing valve passes through the flow controller and then through the four first control switches 142 and finally through the handheld, top spray or lower water outlet for the user to shower and bathe. The other way passes through the second control switch 181 and then through the residual water channel to discharge the residual water from the same water outlet at the terminal. For the arrangement of the water outlet channel 14 and the cold water discharge channel 18, in this embodiment, the water outlet channel 14 is connected to the water inlet channel through the bypass 143, the bypass 143 is also connected to the side water outlet 145 through the upper water inlet 144, and the side water outlet 145 is connected to the cold water discharge channel 18; the electromagnetic valve installation cavity 146 is arranged at the connection between the bypass 143 and the upper water inlet 144, so that the second control switch 182 is used to control the conduction and closing of the bypass 143 and the upper water inlet 144. Thus, when the second control switch 182 is opened, the residual water enters the upper water inlet 144 from the bypass 143 and then enters the cold water discharge channel 18 from the side water outlet 145.
[0052] After the residual water flows out of the side water outlet 145, it first enters the first cold water discharge channel 183; the residual water entering the first cold water discharge channel 183 is divided into two ways, one way flows in from the two water inlets 1835 on the inner side of the first cold water discharge channel 183, then passes through the two check valves of the two channels inside the water channel assembly, and then flows out from the first flow-out hole 1831 and the second flow-out hole 1832, respectively. The residual water passing through the first flow-out hole 1831 is discharged from the first water outlet 1841 through the second cold water discharge channel 184, and the residual water passing through the second flow-out hole 1832 is discharged from the second water outlet 1851 through the third cold water discharge channel 185. The other way continues to flow down through the first cold water discharge channel 183, then flows into the water channel through the third flow inlet 1833, passes through the internal passage and then flows out from the third water outlet 1834; in this way, the water channel assembly has a compact water channel arrangement, the water flow does not mix, and the space is compact.
[0053] Reference Figure 11 , the residual water flows in from the third flow inlet 1833 and flows out from the third water outlet 1834 through the check valve, and the residual water flows from bottom to top to the left side of Figure 11 .
[0054] Reference Figure 12 , the residual water flows out from the first flow-out hole 1831 through the check valve and is discharged from the first water outlet 1841, and the residual water flows from top to bottom to the right side of Figure 12 .
[0055] Reference Figure 13 , the residual water flows out from the second flow-out hole 1832 through the check valve and is discharged from the second water outlet 1851; the water flows from bottom to top to the left side of Figure 13 .
[0056] In addition, the shower rod is provided with a human sensor 103 for sensing the position of the user, which can be an infrared, microwave, laser, or other distance sensor. The human sensor 103 can detect whether the user is within the water outlet coverage range of the shower device. In normal use of the shower, if the human sensor 103 identifies that the user has left the coverage range of the shower, the flow rate of the current water outlet terminal 2 is automatically reduced, thereby achieving water and energy saving.
[0057] The second control switch 181 described above is an electric control valve, which is used in cooperation with a wireless remote controller. The wireless remote controller can send a cold air discharge instruction to the control mainboard 10 of the shower, and the control mainboard 10 controls the second control switch 181 to open after receiving the instruction, thereby executing the cold air discharge action.
[0058] Further referring to Figures 14-27 In the embodiment, the four water outlet channels 14 are independent of each other, and four water outlet openings are correspondingly provided on the control panel 1, which are a first upper water outlet opening 104, a second upper water outlet opening 108, a lower water outlet opening 106, and a handheld shower water outlet opening 107. In order to prevent water from flowing between the four water outlet channels 14, the control panel 1 further comprises a blocking piece 105 for blocking two adjacent water outlet channels 14. The blocking piece 105 is installed in a first installation direction, and the two adjacent water outlet channels 14 are blocked by the blocking piece 105. The two water outlet channels 14 are connected to different water outlet openings to connect different water outlet terminals. In this way, the four water outlet channels 14 are blocked from each other.
[0059] In order to achieve the blocking effect described above, the connection part between the two water outlet channels 14 is provided with a first water blocking rib 143 and an opening 144 for connecting the two water outlet channels 14. The blocking piece 105 has a second water blocking rib 1051. When the blocking piece 105 is installed in the first installation direction, the first water blocking rib 143 and the second water blocking rib 1051 abut to block the opening 144.
[0060] Specifically, the blocking piece 105 is welded with the water channel wall on the control panel 1. When hot plate welding is performed, glue overflow occurs. The groove is used to accommodate the glue overflow, and the outermost circle is used to hide the ugliness. The blocking piece 105 and the water channel wall are respectively provided with a groove and a blocking wall outside the first water blocking rib 143 and the second water blocking rib 1051. The groove is used to accommodate the glue overflow generated during the welding process of the first water blocking rib 143 and the second water blocking rib 1051, and the blocking wall is used to hide the welded joint, so that the product is more beautiful.
[0061] The water outlet schematic diagram of the four water outlet openings is shown in Figures 18-25 , Figure 18 and 19 is a schematic diagram of the water flow direction of the first upper water outlet opening 104; Figure 20 and Figure 21The water outlet flow direction diagram of the second upper water outlet 108;
[0062] Figure 22 And Figure 23 The water outlet flow direction diagram of the lower water outlet 106; Figure 24 And Figure 25 The water outlet flow direction diagram of the handheld shower water outlet 107.
[0063] Embodiment 2
[0064] With reference to Figures 28-32 , the difference between this embodiment and embodiment 1 is that in this embodiment, the water outlet panel has only two water outlets, namely the upper water outlet 101 and the handheld shower water outlet 107 in embodiment 1. The control panel 1 is the same as that in embodiment 1, and still has four water flow channels 14. In order to adapt the control panel 1 with four water flow channels 14 to the shower system with only two water outlets, in this embodiment, the blocking piece 105 is only installed in the second installation direction, so that the first and second water blocking ribs 143 and 1051 are staggered, so that the opening 144 between the two water flow channels 14 is not blocked, so that the two adjacent water flow channels 14 are connected together, so that the control panel 1 originally having four water flow channels 14 can be adapted to two water outlets, so that the two adjacent water flow channels 14 are connected to each other and to the same water outlet to connect the same water terminal. In this way, the lower water outlet 106 of the original lower water outlet is blocked, the original lower water outlet flows out from the upper water outlet 101 to the cavity of the blocking piece 105 and flows out from the handheld shower water outlet 107, and the original lower water outlet switch can control the opening and closing of the handheld water outlet.
[0065] By adjusting the installation direction of the blocking piece, the two water flow channels 14 can be separated or connected to each other. In this way, the two water flow channels 14 can be connected to different water outlets or to the same water outlet, so as to adjust the number of water outlets and the number of water terminals that can be installed. In this way, the same control panel 1 can be used to adapt to shower systems with different numbers of water terminals without changing the internal structure of the control panel 1, without the need to produce control panels 1 for different shower systems, greatly reducing production costs.
[0066] Since the technical solution of embodiment 2 needs to control two water flow channels 14 instead of four as in embodiment 1, the number of first control switches 142 is also reduced from four in embodiment 1 to two, so that there are two redundant first control switch installation positions on the control panel 1, which need to be sealed with plugs.
[0067] The above merely describes preferred specific embodiments of the present application, but the design concept of the present application is not limited thereto, and any person skilled in the art, within the technical scope disclosed by the present application, can make non-essential modifications to the present application using the concept, and such modifications shall not be deemed to be within the scope of the present application.
Claims
1. A modular shower control panel characterised in that: The control panel has a water inlet channel and at least two water outlet channels; Further comprising a blocking piece for blocking the two water outlet channels, the blocking piece having a first installation direction and a second installation direction; when the blocking piece is installed in the first installation direction, the two water outlet channels are blocked by the blocking piece, and the two water outlet channels are respectively connected to different water outlets to connect different water terminal ends; when the blocking piece is installed in the second installation direction, the two water outlet channels are connected to each other, and the two water outlet channels are connected to the same water outlet to connect the same water terminal end.
2. A modular shower control panel according to claim 1, wherein: The connecting part between the two water outlet channels is provided with a first water blocking rib and an opening for connecting the two water outlet channels; the blocking piece has a second water blocking rib; when the blocking piece is installed in the first installation direction, the first water blocking rib abuts against the second water blocking rib to block the opening; when the blocking piece is installed in the second installation direction, the first water blocking rib is misaligned with the second water blocking rib.
3. A modular shower control panel according to claim 1, wherein: The control panel has control switch installation positions corresponding to the water outlet channels, for installing control switches to control the connection or disconnection of the water outlet channels and the water inlet.
4. A modular shower control panel according to claim 3, wherein: When the blocking piece is installed in the first installation direction, the control switch installation positions of the two water outlet channels are respectively installed with control switches; when the blocking piece is installed in the second installation direction, one of the control switch installation positions of the two water outlet channels is installed with a control switch, and the other control switch installation position is provided with a plug.
5. A modular shower control panel according to claim 1, wherein: The water inlet channel comprises a cold water inlet, a hot water inlet and a mixing valve; the cold water inlet and the hot water inlet are respectively connected to the mixing valve.
6. A modular shower control panel according to claim 1, wherein: Temperature and flow sensors and a flow controller are arranged between the water outlet channels and the water inlet channel.
7. A modular shower control panel according to claim 6, wherein: The flow controller is a water-saving sheet.
8. A shower characterized in that It comprises: a water terminal and the control panel according to any one of claims 1-7.
Citation Information
Patent Citations
Back spraying type shower device and shower screen
CN213664990U
Shower faucet
CN217713767U