Separated shower control module
The solenoid valve can be remotely controlled by a wireless controller in the separate shower control module, which solves the problems of waiting for hot water and water accumulation in traditional shower faucets, enabling rapid drainage, simplifying installation, and improving the user experience.
Patent Information
- Application Number
- CN202422854206.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-22
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-11-22
AI Technical Summary
Traditional shower faucets require waiting for hot water, and the solenoid valves are susceptible to failure or malfunction due to water accumulation. The complex wiring also increases the difficulty of installation and maintenance.
It adopts a separate shower control module, including the main shower valve body and a wireless controller. The solenoid valve can be remotely controlled through the wireless communication module. Combined with water temperature display and pre-draining cold water function, it avoids water accumulation and simplifies installation.
It achieves rapid drainage, convenient operation, and simplified installation, prevents switch failure, and improves user experience.
Smart Images

Figure CN223579043U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a shower field, concretely is a separated shower control module. BACKGROUND
[0002] Traditional shower faucet, pipeline cold water often needs to be discharged for a period of time, only hot water, need personnel to operate and wait on one side, lack of humanization, in addition with the increasing popularity of intelligent bathroom products, solenoid valve is applied in bathroom product has been more common, but these bathroom product's electric capacity switch often sets in the surface of shower product, like this easily affected by residual water, lead to switch appear failure or misoperation phenomenon. In addition, these products often because line interlaced complex, lead to product internal messy, greatly increased online installation and after-sales maintenance difficulty. SUMMARY
[0003] The utility model discloses a separated shower control module to solve the problem in the above background technology.
[0004] In order to achieve the above object, the utility model provides the following technical scheme: a separated shower control module, including shower main valve body and wireless controller, shower main valve body is connected with wireless controller signal, the top of shower main valve body is equipped with fixed shell, the inside of fixed shell is equipped with valve body controller, the top of fixed shell is equipped with battery, the middle part of shower main valve body is equipped with a plurality of water supply solenoid valve, one end of shower main valve body is equipped with rotary temperature regulating valve core, the side of shower main valve body close to rotary temperature regulating valve core is equipped with temperature probe, the bottom of shower main valve body is equipped with emergency switch, the side of shower main valve body back is equipped with cold water inlet pipe, the other side of shower main valve body back is equipped with hot water inlet pipe, the side of wireless controller front is equipped with water temperature display screen, battery electric connection has valve body power module, solenoid valve module, temperature sensing module and first wireless communication module, wireless controller electric connection has panel power module, display module, button control module and second wireless communication module.
[0005] Preferably, the wireless controller and the valve body controller are connected by the first wireless communication module and the second wireless communication module, the solenoid valve module, the temperature sensing module and the first wireless communication module are electrically connected with the valve body controller, the valve body controller is electrically connected with the valve body power module, and the valve body power module is used for supplying power to the valve body controller.
[0006] Preferably, the display module, the button control module and the second wireless communication module are electrically connected with the wireless controller, the wireless controller is electrically connected with the panel power module, and the panel power module is used for supplying power to the wireless controller.
[0007] Preferably, one end of the cold water inlet pipe and one end of the hot water inlet pipe are provided with external threads, and the length of the cold water inlet pipe and the length of the hot water inlet pipe are the same, so that cold and hot water can easily enter the shower main valve body.
[0008] Preferably, one side of the bottom of the shower main valve body is provided with a shower outlet, the other side of the bottom of the shower main valve body is provided with a top spray outlet, and the side of the bottom of the shower main valve body close to the top spray outlet is provided with a lower outlet.
[0009] Preferably, the surface of the wireless controller is provided with handheld shower keys, spray gun keys, top spray shower keys and lower outlet keys, and the center of one side of the wireless controller is further provided with a pre-discharge cold water key for realizing the pre-discharge cold water function.
[0010] Preferably, the valve body power supply module includes a 3p socket, a capacitor C3, a resistor R1, a power chip U8, a resistor R2 and a resistor R3, the pin 1 of the 3p socket is connected with one end of the capacitor C3, one end of the resistor R1 and the pin 3 of the power chip U8, the pin 3 of the 3p socket is connected with the other end of the capacitor C3, the other end of the resistor R1 is connected with one end of the resistor R2 and the resistor R3, the pin 2 of the power chip U8 is connected with the valve body controller, the pin 1 of the 3p socket is connected with +6V power supply, the pin 1 of the power chip U8 is grounded, the pin 3 of the 3p socket is grounded, and the other end of the resistor R3 is grounded.
[0011] Preferably, the electromagnetic valve module comprises electromagnetic valve drive chip U3, electromagnetic valve drive chip U4, electromagnetic valve drive chip U5, electromagnetic valve drive chip U6, 2P socket 1, 2P socket 2, 2P socket 3, 2P socket 4, capacitor C12, capacitor C11, capacitor C10 and capacitor C9, pin 1 of the electromagnetic valve drive chip U3 is connected with pin 2 of 2P socket 1, pin 1 of the electromagnetic valve drive chip U4 is connected with pin 2 of 2P socket 2, pin 1 of the electromagnetic valve drive chip U5 is connected with pin 2 of 2P socket 3, pin 1 of the electromagnetic valve drive chip U6 is connected with pin 2 of 2P socket 4, pin 6 of the electromagnetic valve drive chip U3 is connected with pin 1 of 2P socket 1, pin 6 of the electromagnetic valve drive chip U4 is connected with pin 1 of 2P socket 2, pin 6 of the electromagnetic valve drive chip U5 is connected with pin 1 of 2P socket 3, pin 6 of the electromagnetic valve drive chip U6 is connected with pin 1 of 2P socket 4, pin 1 and pin 2 of 2P socket 1 are connected with both ends of capacitor C12 respectively, pin 1 and pin 2 of 2P socket 2 are connected with both ends of capacitor C11 respectively, pin 1 and pin 2 of 2P socket 3 are connected with both ends of capacitor C10 respectively, pin 1 and pin 2 of 2P socket 4 are connected with both ends of capacitor C9 respectively, pin 5 of the electromagnetic valve drive chip U3, electromagnetic valve drive chip U4, electromagnetic valve drive chip U5 and electromagnetic valve drive chip U6 is connected with +6V power supply, pin 2 of the electromagnetic valve drive chip U3 is grounded, pin 2 of the electromagnetic valve drive chip U4 is grounded, pin 2 of the electromagnetic valve drive chip U5 is grounded, pin 2 of the electromagnetic valve drive chip U6 is grounded.
[0012] Preferably, the temperature sensing module comprises thermistor NTC, resistor R13, resistor R14 and capacitor C13, pin 2 of the thermistor NTC is connected with one end of resistor R13 and one end of resistor R14, the other end of resistor R13 is connected with one end of capacitor C13, the other end of resistor R14 is connected with the other end of capacitor C13, pin 1 of the thermistor NTC is connected with +VDD, the other end of capacitor C13 is grounded.
[0013] Preferably, the first wireless communication module comprises a wireless receiving chip SYN590RL, a capacitor C1, a capacitor C2, a capacitor C4, a capacitor C5, a capacitor C7, a capacitor C8, an inductor L1, an inductor L2, an inductor L3, an inductor L4, a resistor R4, a resistor R18, a resistor R21, an oscillator Y1, an oscillator Y2, a temperature control chip U7, a first antenna and a second antenna, one end of the capacitor C2 and one end of the inductor L2 are connected with pin 2 of the wireless receiving chip SYN590RL, the other end of the capacitor C2 is connected with one end of the capacitor C1 and one end of the inductor L1, the other end of the inductor L2 is connected with the other end of the capacitor C1 and the other end of the inductor L1, and the other end of the inductor L1 is connected with the first antenna, one end of the capacitor C4 is connected with pin 3 of the wireless receiving chip SYN590RL, one end of the capacitor C5 is connected with pin 4 of the wireless receiving chip SYN590RL, the other end of the capacitor C5 is connected with the other end of the capacitor C4, one end of the resistor R18 is connected with pin 5 of the wireless receiving chip SYN590RL, one end of the resistor R21 is connected with pin 6 of the wireless receiving chip SYN590RL, pin 8 of the wireless receiving chip SYN590RL is connected with pin 1 of the oscillator Y1, +VDD is connected with one end of the capacitor C4, pin 1 of the wireless receiving chip SYN590RL, one end of the capacitor C1, the other end of the capacitor C4 and pins 2, 3 and 4 of the oscillator Y1 are grounded, pin 1 of the temperature control chip U7 is connected with pin 1 of the oscillator Y2, one end of the inductor L4 and one end of the capacitor C7 are connected with pin 5 of the temperature control chip U7, the other end of the inductor L4 is connected with one end of the resistor R4, the other end of the resistor R4 is connected with one end of the capacitor C8, the other end of the capacitor C7 is connected with one end of the inductor L3, the other end of the inductor L3 is connected with the second antenna, +VDD is connected with pin 6 of the temperature control chip U7 and the other end of the resistor R4, pin 2 of the temperature control chip U7 is grounded, the other end of the capacitor C8 is grounded, and pins 2, 3 and 4 of the oscillator Y2 are grounded.
[0014] Compared with the prior art, the utility model has the advantages of:
[0015] The water supply electromagnetic valve of the shower main valve body is remotely controlled through the wireless controller, so that the drainage function of the shower is realized, the water temperature display screen is convenient for grasping the water temperature in real time, the wireless controller can remotely and one-key pre-drain cold water, residual cold water in the pipeline is drained to speed up the drainage speed and shorten the drainage time, the wireless controller can be hung on the wall to prevent residual water from affecting the operation of the wireless controller, and the phenomenon of invalidation or misoperation of the switch is eliminated, the whole separated shower control module is convenient to operate and use, the one-key pre-drain cold water function can be realized through the remote wireless control mode, the controller and the shower faucet main body are separated, product design is facilitated, the complicated installation process of wiring is avoided, the production cycle is shortened, and the user experience is optimized. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a structural schematic view of the utility model;
[0017] Figure 2 It is a bottom structure view of the utility model shower main valve body;
[0018] Figure 3 It is an internal view of the utility model fixed shell;
[0019] Figure 4 It is a surface structure view of the utility model wireless controller;
[0020] Figure 5 It is a module view of the utility model valve body controller;
[0021] Figure 6 It is a module view of the utility model wireless controller;
[0022] Figure 7 It is a circuit diagram of the utility model valve body controller;
[0023] Figure 8 It is a circuit diagram of the utility model valve body power supply module;
[0024] Figure 9 It is a circuit diagram of the utility model electromagnetic valve module;
[0025] Figure 10 It is a circuit diagram of the utility model temperature sensing module;
[0026] Figure 11 It is a circuit diagram of the utility model first wireless communication module;
[0027] Figure 12 It is a circuit diagram of the utility model wireless controller;
[0028] Figure 13 It is a circuit diagram of the utility model faceplate power supply module;
[0029] Figure 14The circuit diagram of the display module of the utility model;
[0030] Figure 15 The circuit diagram of the key control module of the utility model;
[0031] Figure 16 The circuit diagram of the second wireless communication module of the utility model.
[0032] In the drawing: 1, shower main valve body; 2, wireless controller; 3, second wireless communication module; 4, rotary temperature regulating valve core; 5, temperature probe; 6, water supply electromagnetic valve; 7, fixed shell; 8, cold water inlet pipe; 9, hot water inlet pipe; 10, threaded outer thread; 11, shower outlet; 12, lower water outlet; 13, top spray water outlet; 14, emergency switch; 15, valve body controller; 16, battery; 17, water temperature display screen; 18, handheld shower key; 19, spray gun key; 20, top spray shower key; 21, lower water outlet key; 22, pre-discharge cold water key; 23, valve body power supply module; 24, electromagnetic valve module; 25, temperature sensing module; 26, first wireless communication module; 27, panel power supply module; 28, display module; 29, key control module. DETAILED DESCRIPTION
[0033] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0034] Please refer to Figures 1-16 The utility model provides a separate shower control module, including shower main valve body 1 and wireless controller 2, shower main valve body 1 is connected with wireless controller 2 signal, the top of shower main valve body 1 is equipped with fixed shell 7, the inside of fixed shell 7 is equipped with valve body controller 15, the top of fixed shell 7 is equipped with battery 16, the middle part of shower main valve body 1 is equipped with a plurality of water supply electromagnetic valve 6, one end of shower main valve body 1 is equipped with rotary temperature regulating valve core 4, the side of shower main valve body 1 close to rotary temperature regulating valve core 4 is equipped with temperature probe 5, the bottom of shower main valve body 1 is equipped with emergency switch 14, the side of the back of shower main valve body 1 is equipped with cold water inlet pipe 8, the other side of the back of shower main valve body 1 is equipped with hot water inlet pipe 9, the side of the front of wireless controller 2 is equipped with water temperature display screen 17, battery 16 electrically connected with valve body power supply module 23, electromagnetic valve module 24, temperature sensing module 25 and first wireless communication module 26, wireless controller 2 electrically connected with panel power supply module 27, display module 28, key control module 29 and second wireless communication module 3;
[0035] In this embodiment, during use, the water supply electromagnetic valve 6 of the shower main valve body 1 can be remotely controlled by the wireless controller 2 to realize the drainage function of the shower. The wireless controller 2 is also provided with a temperature water temperature display screen 17 to realize real-time control of the water temperature. The wireless controller 2 can remotely control the pre-drainage of cold water to drain the residual cold water in the pipeline. When the water temperature reaches a certain value, the water outlet is automatically closed. The wireless controller 2 can also realize single water outlet or simultaneous water outlet of multiple water outlets to speed up the drainage speed and shorten the drainage time. The wireless controller 2 can be hung on the wall to prevent residual water from affecting the operation of the wireless controller 2 and prevent the switch from being ineffective or misoperated.
[0036] Referring to Figures 1-16 The wireless controller 2 and the valve body controller 15 are signal connected through the first wireless communication module 26 and the second wireless communication module 3. The electromagnetic valve module 24, the temperature sensing module 25, and the first wireless communication module 26 are electrically connected with the valve body controller 15. The valve body controller 15 is electrically connected with the valve body power supply module 23. The display module 28, the key control module 29, and the second wireless communication module 3 are electrically connected with the wireless controller 2. The wireless controller 2 is electrically connected with the panel power supply module 27.
[0037] In this embodiment, the key control module 29 of the wireless controller 2 can input commands. The wireless controller 2 sends the commands to the first wireless communication module 26 through the second wireless communication module 3. The first wireless communication module 26 sends the commands to the valve body controller 15. The valve body controller 15 can control the electromagnetic valve module 24 to work according to the commands to drain water. The temperature sensing module 25 detects the water temperature and feeds back to the second wireless communication module 3 through the valve body controller 15 and the first wireless communication module 26. Then, the wireless controller 2 displays the water temperature through the display module 28 after receiving the temperature feedback.
[0038] Referring to Figures 1-4 One end of the cold water inlet pipe 8 and one end of the hot water inlet pipe 9 are provided with threaded outer threads 10. The length of the cold water inlet pipe 8 is the same as that of the hot water inlet pipe 9. One side of the bottom of the shower main valve body 1 is provided with a shower water outlet 11. The other side of the bottom of the shower main valve body 1 is provided with a top spray water outlet 13. The side of the bottom of the shower main valve body 1 close to the top spray water outlet 13 is provided with a lower water outlet 12. The surface of the wireless controller 2 is provided with a handheld shower key 18, a spray gun key 19, a top spray shower key 20, and a lower water outlet key 21. The center of one side of the wireless controller 2 is also provided with a pre-drainage cold water key 22.
[0039] In this embodiment, the wireless controller 2 is placed in a position convenient for people to operate. The shower main valve body 1 is the main valve component of the shower. The water temperature can be adjusted by rotating the temperature valve core 4. The shower water outlet 11, the top spray water outlet 13, and the lower water outlet 12 are used for water drainage during showering.
[0040] The valve body power supply module 23 includes a 3p socket, a capacitor C3, a resistor R1, a power supply chip U8, a resistor R2 and a resistor R3, the pin 1 of the 3p socket is connected with one end of the capacitor C3, one end of the resistor R1 and the pin 3 of the power supply chip U8, the pin 3 of the 3p socket is connected with the other end of the capacitor C3, the other end of the resistor R1 is connected with one end of the resistor R2 and the resistor R3, the pin 2 of the power supply chip U8 is connected with the valve body controller 15, the pin 1 of the 3p socket is connected with +6V power supply, the pin 1 of the power supply chip U8 is grounded, the pin 3 of the 3p socket is grounded, and the other end of the resistor R3 is grounded.
[0041] The electromagnetic valve module 24 includes an electromagnetic valve drive chip U3, an electromagnetic valve drive chip U4, an electromagnetic valve drive chip U5, an electromagnetic valve drive chip U6, a 2p socket 1, a 2p socket 2, a 2p socket 3, a 2p socket 4, a capacitor C12, a capacitor C11, a capacitor C10 and a capacitor C9, the pin 1 of the electromagnetic valve drive chip U3 is connected with the pin 2 of the 2p socket 1, the pin 1 of the electromagnetic valve drive chip U4 is connected with the pin 2 of the 2p socket 2, the pin 1 of the electromagnetic valve drive chip U5 is connected with the pin 2 of the 2p socket 3, the pin 1 of the electromagnetic valve drive chip U6 is connected with the pin 2 of the 2p socket 4, the pin 6 of the electromagnetic valve drive chip U3 is connected with the pin 1 of the 2p socket 1, the pin 6 of the electromagnetic valve drive chip U4 is connected with the pin 1 of the 2p socket 2, the pin 6 of the electromagnetic valve drive chip U5 is connected with the pin 1 of the 2p socket 3, the pin 6 of the electromagnetic valve drive chip U6 is connected with the pin 1 of the 2p socket 4, the pin 1 and the pin 2 of the 2p socket 1 are respectively connected with two ends of the capacitor C12, the pin 1 and the pin 2 of the 2p socket 2 are respectively connected with two ends of the capacitor C11, the pin 1 and the pin 2 of the 2p socket 3 are respectively connected with two ends of the capacitor C10, the pin 1 and the pin 2 of the 2p socket 4 are respectively connected with two ends of the capacitor C9, the pin 5 of the electromagnetic valve drive chip U3, the pin 5 of the electromagnetic valve drive chip U4, the pin 5 of the electromagnetic valve drive chip U5 and the pin 5 of the electromagnetic valve drive chip U6 are connected with +6V power supply, the pin 2 of the electromagnetic valve drive chip U3 is grounded, the pin 2 of the electromagnetic valve drive chip U4 is grounded, the pin 2 of the electromagnetic valve drive chip U5 is grounded, and the pin 2 of the electromagnetic valve drive chip U6 is grounded.
[0042] The temperature sensing module 25 includes a thermistor NTC, a resistor R13, a resistor R14 and a capacitor C13, the pin 2 of the thermistor NTC is connected with one end of the resistor R13 and one end of the resistor R14, the other end of the resistor R13 is connected with one end of the capacitor C13, the other end of the resistor R14 is connected with the other end of the capacitor C13, the pin 1 of the thermistor NTC is connected with +VDD, and the other end of the capacitor C13 is grounded.
[0043] The first wireless communication module 26 comprises a wireless receiving chip SYN590RL, a capacitor C1, a capacitor C2, a capacitor C4, a capacitor C5, a capacitor C7, a capacitor C8, an inductor L1, an inductor L2, an inductor L3, an inductor L4, a resistor R4, a resistor R18, a resistor R21, an oscillator Y1, an oscillator Y2, a temperature control chip U7, a first antenna and a second antenna, a pin 2 of the wireless receiving chip SYN590RL is connected with one end of the capacitor C2 and one end of the inductor L2, the other end of the capacitor C2 is connected with one end of the capacitor C1 and one end of the inductor L1, the other end of the inductor L2 is connected with the other end of the capacitor C1 and the other end of the inductor L1, and the other end of the inductor L1 is connected with the first antenna, a pin 3 of the wireless receiving chip SYN590RL is connected with one end of the capacitor C4, a pin 4 of the wireless receiving chip SYN590RL is connected with one end of the capacitor C5, the other end of the capacitor C5 is connected with the other end of the capacitor C4, a pin 5 of the wireless receiving chip SYN590RL is connected with one end of the resistor R18, a pin 6 of the wireless receiving chip SYN590RL is connected with one end of the resistor R21, a pin 8 of the wireless receiving chip SYN590RL is connected with a pin 1 of the oscillator Y1, one end of the capacitor C4 is connected with +VDD, a pin 1 of the wireless receiving chip SYN590RL, one end of the capacitor C1, the other end of the capacitor C4 and pins 2, 3 and 4 of the oscillator Y1 are grounded, a pin 1 of the temperature control chip U7 is connected with a pin 1 of the oscillator Y2, a pin 5 of the temperature control chip U7 is connected with one end of the inductor L4 and one end of the capacitor C7, the other end of the inductor L4 is connected with one end of the resistor R4, the other end of the resistor R4 is connected with one end of the capacitor C8, the other end of the capacitor C7 is connected with one end of the inductor L3, the other end of the inductor L3 is connected with the second antenna, a pin 6 of the temperature control chip U7 and the other end of the resistor R4 are connected with +VDD, a pin 2 of the temperature control chip U7 is grounded, the other end of the capacitor C8 is grounded, and pins 2, 3 and 4 of the oscillator Y2 are grounded.
[0044] In specific use, the utility model discloses a shower control module of separation type, and wireless controller 2 is placed to the position of personnel convenient operation, and shower main valve body 1 is the main valve part of shower, and cold water inlet pipe 8 and hot water inlet pipe 9 are connected with cold water and hot water, and shower outlet 11 and top spray outlet 13 are connected with the pipeline of connecting shower, and in the use process, the water supply solenoid valve 6 of shower main valve body 1 can be remotely controlled through wireless controller 2, and then realizes the drainage function of shower, and wireless controller 2 is also equipped with temperature water temperature display screen 17, and the water temperature is grasped in real time, and wireless controller 2 can remotely one -key pre -drainage cold water, and the residual cold water on the pipeline is discharged, and when the outlet temperature reaches a certain value, the water outlet is automatically closed, and single water outlet or multiple water outlets can also be realized simultaneously, and the water drainage speed is accelerated, and the water drainage time is shortened, and wireless controller 2 can be hung on the wall, prevents residual accumulated water from influencing the control of wireless controller 2, and eliminates the failure or misoperation phenomenon of switch, and the shower main valve body 1 of the device is also equipped with emergency switch 14, when the product is short of electricity or has a fault, emergency use can be realized, when the battery is out of power, opening this switch water can flow from shower outlet 11, and the whole shower control module of separation type is convenient to operate and use, and the one -key pre -drainage cold water function can be realized by the mode of remote wireless control, and the controller and shower faucet main body separation type device, facilitate product design, and the complicated installation procedure of no wiring is reduced, and the production cycle is shortened, and the user experience is optimized.
[0045] Although the utility model has been described in detail with reference to the foregoing embodiments, for those skilled in the art, the technical scheme recorded in the foregoing embodiments can be modified, or part of the technical features can be replaced, and any modification, equivalent replacement, improvement, etc. within the spirit and principle of the utility model should be included in the protection scope of the utility model.
Claims
1. A separate shower control module, comprising a main shower valve body (1) and a wireless controller (2), characterized in that: The main shower valve body (1) is connected to the wireless controller (2) via signal. A fixed shell (7) is provided on the top of the main shower valve body (1). A valve body controller (15) is provided inside the fixed shell (7). A battery (16) is provided on the top of the fixed shell (7). Several water supply solenoid valves (6) are provided in the middle of the main shower valve body (1). A rotary thermostatic valve core (4) is provided at one end of the main shower valve body (1). A temperature probe (5) is provided on the side of the main shower valve body (1) near the rotary thermostatic valve core (4). An emergency switch (14) is provided at the bottom of the main shower valve body (1). The shower main valve body (1) has a cold water inlet pipe (8) on one side of its back and a hot water inlet pipe (9) on the other side of its back. The wireless controller (2) has a water temperature display screen (17) on one side of its front. The battery (16) is electrically connected to a valve body power supply module (23), a solenoid valve module (24), a temperature sensing module (25), and a first wireless communication module (26). The wireless controller (2) is electrically connected to a panel power supply module (27), a display module (28), a button control module (29), and a second wireless communication module (3).
2. The split shower control module according to claim 1, characterized in that: The wireless controller (2) and the valve body controller (15) are connected by a first wireless communication module (26) and a second wireless communication module (3).
3. A separate shower control module according to claim 1, characterized in that: The solenoid valve module (24), temperature sensing module (25) and first wireless communication module (26) are all electrically connected to the valve body controller (15), and the valve body controller (15) is electrically connected to the valve body power supply module (23).
4. A split-type shower control module according to claim 1, characterized in that: The display module (28), the button control module (29), and the second wireless communication module (3) are all electrically connected to the wireless controller (2), and the wireless controller (2) is electrically connected to the panel power supply module (27).
5. A separate shower control module according to claim 1, characterized in that: Both the cold water inlet pipe (8) and the hot water inlet pipe (9) are provided with external threads (10), and the length of the cold water inlet pipe (8) is the same as the length of the hot water inlet pipe (9).
6. A separate shower control module according to claim 1, characterized in that: The shower main valve body (1) has a shower head outlet (11) on one side of its bottom and a top spray outlet (13) on the other side of its bottom. The shower main valve body (1) has a bottom outlet (12) on the side of its bottom near the top spray outlet (13). The surface of the wireless controller (2) has a handheld shower head button (18), a spray gun button (19), a top spray shower head button (20), and a bottom outlet button (21). The center of one side of the wireless controller (2) also has a pre-drain cold water button (22).
7. A split-type shower control module according to claim 1, characterized in that: The valve body power supply module (23) includes a 3p socket, a capacitor C3, a resistor R1, a power chip U8, a resistor R2, and a resistor R3. Pin 1 of the 3p socket is connected to one end of the capacitor C3, one end of the resistor R1, and pin 3 of the power chip U8. Pin 3 of the 3p socket is connected to the other end of the capacitor C3. The other end of the resistor R1 is connected to one end of the resistor R2 and the resistor R3. Pin 2 of the power chip U8 is connected to the valve body controller (15). Pin 1 of the 3p socket is connected to a +6V power supply. Pin 1 of the power chip U8 is grounded. Pin 3 of the 3p socket is grounded. The other end of the resistor R3 is grounded.
8. A split-type shower control module according to claim 1, characterized in that: The solenoid valve module (24) includes solenoid valve driver chip U3, solenoid valve driver chip U4, solenoid valve driver chip U5, solenoid valve driver chip U6, 2P socket 1, 2P socket 2, 2P socket 3, 2P socket 4, capacitor C12, capacitor C11, capacitor C10, and capacitor C9. Pin 1 of solenoid valve driver chip U3 is connected to pin 2 of 2P socket 1; pin 1 of solenoid valve driver chip U4 is connected to pin 2 of 2P socket 2; pin 1 of solenoid valve driver chip U5 is connected to pin 2 of 2P socket 3; pin 1 of solenoid valve driver chip U6 is connected to pin 2 of 2P socket 4; pin 6 of solenoid valve driver chip U3 is connected to pin 1 of 2P socket 1; pin 6 of solenoid valve driver chip U4 is connected to pin 1 of 2P socket 2; and pins of solenoid valve driver chip U5 are connected to pins of other components. Pin 6 of the solenoid valve driver chip U6 is connected to pin 1 of the 2P socket 3. Pin 6 of the solenoid valve driver chip U6 is connected to pin 1 of the 2P socket 4. Pins 1 and 2 of the 2P socket 1 are connected to the two ends of capacitor C12, pins 1 and 2 of the 2P socket 2 are connected to the two ends of capacitor C11, pins 1 and 2 of the 2P socket 3 are connected to the two ends of capacitor C10, pins 1 and 2 of the 2P socket 4 are connected to the two ends of capacitor C9. Pin 5 of the solenoid valve driver chips U3, U4, U5, and U6 is connected to a +6V power supply. Pin 2 of the solenoid valve driver chip U3 is grounded, pin 2 of the solenoid valve driver chip U4 is grounded, pin 2 of the solenoid valve driver chip U5 is grounded, and pin 2 of the solenoid valve driver chip U6 is grounded.
9. A split-type shower control module according to claim 1, characterized in that: The temperature sensing module (25) includes a thermistor NTC, a resistor R13, a resistor R14, and a capacitor C13. Pin 2 of the thermistor NTC is connected to one end of the resistor R13 and one end of the resistor R14. The other end of the resistor R13 is connected to one end of the capacitor C13. The other end of the resistor R14 is connected to the other end of the capacitor C13. Pin 1 of the thermistor NTC is connected to +VDD. The other end of the capacitor C13 is grounded.
10. A split-type shower control module according to claim 1, characterized in that: The first wireless communication module (26) includes a wireless receiver chip SYN590RL, capacitors C1, C2, C4, C5, C7, and C8, inductors L1, L2, L3, and L4, resistors R4, R18, and R21, oscillators Y1 and Y2, a temperature control chip U7, a first antenna, and a second antenna. Pin 2 of the wireless receiver chip SYN590RL is connected to one end of capacitor C2 and one end of inductor L2, and the other end of capacitor C2 is connected to... One end of capacitor C1 is connected to one end of inductor L1. The other end of inductor L2 is connected to the other ends of capacitor C1 and inductor L1. The other end of inductor L1 is connected to a first antenna. Pin 3 of the wireless receiver chip SYN590RL is connected to one end of capacitor C4. Pin 4 of the wireless receiver chip SYN590RL is connected to one end of capacitor C5. The other end of capacitor C5 is connected to the other end of capacitor C4. Pin 5 of the wireless receiver chip SYN590RL is connected to one end of resistor R18. The wireless receiver chip SYN590RL's pin 6 is connected to one end of resistor R21, and its pin 8 is connected to pin 1 of oscillator Y1. One end of capacitor C4 is connected to +VDD. Pin 1 of the wireless receiver chip SYN590RL, one end of capacitor C1, the other end of capacitor C4, and pins 2, 3, and 4 of oscillator Y1 are all grounded. Pin 1 of temperature control chip U7 is connected to pin 1 of oscillator Y2, and pin 5 of temperature control chip U7... One end of inductor L4 and one end of capacitor C7 are connected. The other end of inductor L4 is connected to one end of resistor R4. The other end of resistor R4 is connected to one end of capacitor C8. The other end of capacitor C7 is connected to one end of inductor L3. The other end of inductor L3 is connected to a second antenna. Pin 6 of temperature control chip U7 and the other end of resistor R4 are both connected to +VDD. Pin 2 of temperature control chip U7 is grounded. The other end of capacitor C8 is grounded. Pins 2, 3, and 4 of oscillator Y2 are all grounded.